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CN217034518U - Processing box - Google Patents

Processing box Download PDF

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Publication number
CN217034518U
CN217034518U CN202220611605.4U CN202220611605U CN217034518U CN 217034518 U CN217034518 U CN 217034518U CN 202220611605 U CN202220611605 U CN 202220611605U CN 217034518 U CN217034518 U CN 217034518U
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CN
China
Prior art keywords
driving force
driving
process cartridge
force receiving
braking
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202220611605.4U
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Chinese (zh)
Inventor
不公告发明人
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhuhai Yuzhi Technology Co ltd
Original Assignee
Zhuhai Yuzhi Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zhuhai Yuzhi Technology Co ltd filed Critical Zhuhai Yuzhi Technology Co ltd
Application granted granted Critical
Publication of CN217034518U publication Critical patent/CN217034518U/en
Priority to PCT/CN2022/131575 priority Critical patent/WO2023083339A1/en
Priority to EP22892132.6A priority patent/EP4432016A1/en
Priority to PCT/CN2023/082376 priority patent/WO2023174432A1/en
Priority to US18/661,578 priority patent/US20240295852A1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03GELECTROGRAPHY; ELECTROPHOTOGRAPHY; MAGNETOGRAPHY
    • G03G21/00Arrangements not provided for by groups G03G13/00 - G03G19/00, e.g. cleaning, elimination of residual charge
    • G03G21/16Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements
    • G03G21/18Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements using a processing cartridge, whereby the process cartridge comprises at least two image processing means in a single unit
    • G03G21/1803Arrangements or disposition of the complete process cartridge or parts thereof
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03GELECTROGRAPHY; ELECTROPHOTOGRAPHY; MAGNETOGRAPHY
    • G03G21/00Arrangements not provided for by groups G03G13/00 - G03G19/00, e.g. cleaning, elimination of residual charge
    • G03G21/16Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements
    • G03G21/18Mechanical means for facilitating the maintenance of the apparatus, e.g. modular arrangements using a processing cartridge, whereby the process cartridge comprises at least two image processing means in a single unit
    • G03G21/1839Means for handling the process cartridge in the apparatus body
    • G03G21/1857Means for handling the process cartridge in the apparatus body for transmitting mechanical drive power to the process cartridge, drive mechanisms, gears, couplings, braking mechanisms
    • G03G21/186Axial couplings

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  • Engineering & Computer Science (AREA)
  • Computer Vision & Pattern Recognition (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Electrophotography Configuration And Component (AREA)

Abstract

The present invention relates to a process cartridge detachably mountable to an apparatus provided with a driving force output member including a driving portion and a braking portion which are close to or partially overlapped with each other, the driving portion and the braking portion being rotatable in the same direction, the driving portion being capable of applying a driving force to an external member, the braking portion being capable of applying a braking force to the external member; the process cartridge includes a casing, a rotary member in the casing, and a driving force receiving member at an end of the rotary member; the driving portion or the braking portion transmits the driving force to the driving force receiving member when the driving force receiving member is engaged with the driving force output member; when the manner in which the driving portion transmits the driving force to the driving force receiving member is adopted, the braking portion is shielded or, in a circumferential direction of the rotary member, the braking portion does not transmit the driving force to the driving force receiving member in the process of returning the process cartridge from the operating state to the inoperative state, and with this technical solution, at least one of the structure of the driving force receiving member for receiving the driving force from the apparatus and the structure of the apparatus can be simplified.

Description

Processing box
The present invention claims priority from a prior application entitled "process cartridge" filed by the applicant at 11/12/2021 with the chinese patent office under application number CN202122784760.4, the entire contents of which are incorporated herein by reference.
Technical Field
The present invention relates to the field of electrophotographic image forming, and more particularly to a process cartridge detachably mountable in an electrophotographic image forming apparatus.
Background
A process cartridge is a consumable used in an electrophotographic image forming apparatus (hereinafter, simply referred to as "apparatus"), in which a developing roller and a photosensitive drum are rotatably mounted, the surface of the photosensitive drum forming an electrostatic latent image required for development after being charged and irradiated with laser light, the developing roller supplying toner to the photosensitive drum for developing the electrostatic latent image.
The photosensitive drum receives a driving force from the image forming apparatus through a driving force receiving member provided at a longitudinal end thereof, and the related art image forming apparatus is provided with a driving member which transmits the driving force to the driving force receiving member and a braking member which stops a further rotation of the driving force receiving member, the driving member transmitting the driving force to the driving force receiving member when the process cartridge is operated, and the further rotation of the driving force receiving member being stopped by the braking member when the process cartridge is stopped.
The driving force receiving member is provided with a guide surface that separates the driving element from the braking member during mounting of the process cartridge to the apparatus such that a portion of the driving force receiving member enters between the driving element that applies the driving force to the driving force receiving member and the braking member that applies the braking force to the driving force receiving member, and the braking member returns to a position in which the driving element is close to or partially overlaps with each other when the process cartridge is removed from the apparatus.
SUMMERY OF THE UTILITY MODEL
In order to allow the photosensitive drum to receive the driving force, the driving force receiving member must be provided with a guide surface for separating the driving element and the braking member from each other, and at the same time, the apparatus must be provided with a guide surface for returning the braking member to the original position where the driving element is close to or partially overlapped with the driving element, which is complicated in both the structure of the driving force receiving member and the structure of the apparatus.
To this end, the present invention provides a process cartridge such that at least one of a structure of a driving force receiving member for receiving a driving force for a rotating member in the process cartridge and a structure of an apparatus is simplified, in particular, by:
a process cartridge detachably mountable to an apparatus provided with a driving force output member including a driving portion and a braking portion which are adjacent to or partially overlapped with each other, and which rotate in the same direction when the apparatus is operated, the driving portion being capable of applying a driving force to an external member, and the braking portion being capable of applying a braking force to the external member; the process cartridge includes a casing, a rotary member rotatably mounted in the casing, and a driving force receiving member at an end of the rotary member; when the process cartridge is mounted to the apparatus, the driving force receiving member is engaged with the driving force output member, and the driving portion or the braking portion transmits the driving force to the driving force receiving member; when the manner in which the driving part transmits the driving force to the driving force receiving part is adopted, the braking part is shielded in the process of returning the process cartridge from the operating state to the non-operating state.
Or, when the process cartridge is mounted to the apparatus, the driving force receiving member is combined with the driving force output member and receives the driving force from the driving portion or the braking portion to drive the rotary member to rotate; when the manner in which the driving portion transmits the driving force to the driving force receiving member is adopted, the braking portion does not transmit the acting force to the driving force receiving member in the circumferential direction of the rotary member in the process of returning the rotary member from the rotated state to the non-rotated state.
In some embodiments employing the braking portion to transmit the driving force to the driving force receiving member, at this time, the driving portion does not transmit the force to the driving force receiving member in the circumferential direction of the rotary member; alternatively, the driving part may apply a braking force to the driving force receiving part, and in particular, the driving force receiving part is provided with a driving space that can accommodate the driving part and the braking part at the same time.
In some embodiments employing the driving part to transmit the driving force to the driving force receiving part, the driving force receiving part is provided with a guide surface separating the driving part and the braking part during the coupling of the driving force receiving part with the driving force output part; on this basis, in some embodiments, the driving portion may apply a braking force to the driving force receiving member.
In some embodiments, at least one of the driving portion and the braking portion is provided to be extendable and retractable along a rotational axis thereof, and the driving portion or the braking portion is retracted into the apparatus when the driving force receiving member is coupled with the driving force output member; in actual use, the process cartridge is mounted in a direction parallel to the rotational axis of the rotary member, in which mounting direction the distal end face of the driving force receiving member presses the driving portion or the braking portion.
In the process cartridge adopting the above-described technical solution, at least one of the structure of the driving force receiving member for receiving the driving force from the apparatus and the structure of the apparatus can be simplified.
Drawings
Fig. 1A and 1B are perspective views of a process cartridge according to the present invention.
Fig. 2A is a perspective view of a photosensitive drum having a first driving force receiving member in a process cartridge according to the present invention.
Fig. 2B is a perspective view of the first driving force receiving member in the process cartridge according to the present invention.
Fig. 2C is a side view of the first driving force receiving member in the process cartridge according to the present invention as viewed along the rotational axis thereof.
Fig. 3A is a perspective view of a second driving force receiving member in the process cartridge according to the present invention.
Fig. 3B is a side view of the second driving force receiving member in the process cartridge according to the present invention as viewed along the rotational axis thereof.
Fig. 4A is a perspective view of a third driving force receiving member in the process cartridge according to the present invention.
Fig. 4B is a side view of the third driving force receiving member in the process cartridge relating to the present invention, as viewed along the rotational axis thereof.
Fig. 5 is a perspective view of a fourth driving force receiving member in the process cartridge according to the present invention.
Fig. 6A and 6B are schematic views of a state before and after the fourth driving force receiving member is combined with the driving part and the braking part in the apparatus in the process cartridge according to the present invention.
Fig. 7 is a sectional view taken along a plane perpendicular to a rotation axis of a fourth driving force receiving member in the process cartridge according to the present invention, after the fourth driving force receiving member is combined with a driving portion and a braking portion in the apparatus.
Fig. 8A and 8B are schematic views of a state before and after the fifth driving force receiving member is combined with the driving part and the braking part in the apparatus in the process cartridge according to the present invention.
Fig. 9 is an exploded schematic view of a first separation contact mechanism and a process cartridge case in the process cartridge according to the present invention.
Fig. 10 is a side view of the first separation contact mechanism attached to the process cartridge casing as viewed from left to right in the left-right direction of the process cartridge according to the present invention.
Fig. 11 is a side view of the second separation and contact mechanism attached to the process cartridge casing, as viewed from left to right in the left-right direction of the process cartridge according to the present invention.
Fig. 12 is an exploded schematic view of a third separation contact mechanism and a process cartridge case in the process cartridge according to the present invention.
Fig. 13A to 13G are schematic views showing the movement of the third separation and contact mechanism for controlling the separation and contact of the developing roller and the photosensitive drum by the separation control mechanism in the process cartridge according to the present invention.
Fig. 14 is an exploded schematic view of a fourth separation contact mechanism and a process cartridge case in the process cartridge according to the present invention.
Fig. 15 is a side view of the fourth contact and separation mechanism attached to the process cartridge casing, as viewed from left to right in the left-right direction of the process cartridge according to the present invention.
Fig. 16 is an exploded schematic view of a fifth separation contact mechanism and a process cartridge case in the process cartridge according to the present invention.
Fig. 17a and 17b are side views of the fifth separation and contact mechanism attached to the process cartridge casing, as viewed from left to right in the left-right direction of the process cartridge according to the present invention.
Detailed Description
Embodiments of the present invention are described in detail below with reference to the accompanying drawings.
Fig. 1A and 1B are perspective views of a process cartridge according to the present invention. The process cartridge C includes the first unit 100 and the second unit 200 coupled to each other, and the first and second caps 300 and 400 at both longitudinal ends of the process cartridge, and the first and second units 100 and 200 may be coupled to each other by the first and second caps 300 and 400, or may be coupled by means such as pins, snaps, and the like, and the first and second caps 300 and 400 may be provided as a part of the first unit 100 or the second unit 200, or as a separate component from the first unit 100 or the second unit 200, as long as the first unit 100 and the second unit 200 can be coupled. The developing roller 11 is rotatably mounted in the casing 1 of the first unit 100, the photosensitive drum 21 is rotatably mounted in the casing 2 of the second unit 200, and when the process cartridge C is operated, the photosensitive drum 21 comes into contact with the developing roller 11, and the developing roller 11 supplies toner to the photosensitive drum 21.
For convenience of the following description, it is defined herein that a side of the process cartridge C on which the photosensitive drum 21 and the developing roller 11 are mounted is directed to a side on which the photosensitive drum 21 and the developing roller 11 are not mounted is an upper side, a side opposite to the upper side is a lower side, a direction directed to the second unit 200 by the first unit 100 is a front side, a side opposite to the front side is a rear side, a side receiving the driving force is a left side, and a side opposite to the left side is a right side, the process cartridge C is mounted to the apparatus from the top down in the up-down direction, the left side may also be referred to as a driving end C1, the right side may also be referred to as a non-driving end C2, the first end cap 300 is mounted to the driving end C1, the second end cap 400 is mounted to the non-driving end C2, and the first driving force receiver 3 for receiving the driving force for the developing roller 11 and the second driving force receiver 4 for receiving the driving force for the photosensitive drum 21 are exposed from the first end cap 300.
As shown in fig. 1B, the process cartridge C further includes a separation receiving mechanism 5 therein, and when the process cartridge C does not need to be operated in the apparatus, the separation receiving mechanism 5 receives a separating force from the apparatus to force the developing roller 11 and the photosensitive drum 21 to be separated from each other, and the surface of the photosensitive drum 21 is contaminated or the surface of the developing roller 11 is inhibited from being deformed. Wherein, the separation receiving mechanism 5 is provided near the longitudinal end of the process cartridge, and the number thereof may be one or two.
The first driving force receiver 3 and the second driving force receiver 4 are used for receiving driving force from the apparatus and transmitting the driving force to the developing roller 11 and the photosensitive drum 21, respectively, by direct or indirect means, and further, a charging roller for charging the surface of the photosensitive drum 21, a toner feeding roller for supplying toner to the developing roller 11, an agitating member for agitating the toner, and the like are provided in the process cartridge C, and these components are driven to rotate when the process cartridge C is in operation, and thus, these components may be collectively referred to as a rotating member, and hereinafter, description will be made by taking as an example that the second driving force receiver 4 is directly mounted on the end of the photosensitive drum 21.
[ second Driving force receiver ]
Example one
Fig. 2A is a perspective view of a photosensitive drum having a first kind of driving force receiving member in a process cartridge according to the present invention; fig. 2B is a perspective view of a first driving force receiving member in the process cartridge according to the present invention; fig. 2C is a side view of the first driving force receiving member in the process cartridge according to the present invention as viewed along the rotational axis thereof.
The photosensitive drum 21 has a rotation axis L21, the second driving force receiver 4 includes a connection portion 41 (shown in fig. 2B), a chassis 42, a base 43, and a coupling portion 44, the connection portion 41, the chassis 42, the base 43, and the coupling portion 44 being arranged in this order along the rotation axis L21, the connection portion 42 effecting connection of the second driving force receiver 4 with the photosensitive drum 21 by being embedded inside the photosensitive drum 21, the chassis 42 being abutted with the photosensitive drum 21 so that the second driving force receiver 4 is positioned with respect to the photosensitive drum 21, the base 43 extending from the chassis 42, the coupling portion 44 extending from the base 43 in a direction away from the chassis 42; as a simplified structure, the chassis 42 may be omitted and the base 43 may extend directly from the connecting portion 41, and more simply, the base 43 may also be omitted and the coupling portion 44 may extend from the connecting portion 41. The structure of the joint portion 44 will be described below, and other structures of the second driving force receiving member 4 are not limited thereto.
The combining portion 44 includes a center post 45 through which the rotation axis L21 passes, and driving force receiving portions 46 extending radially outward from the center post 45, the two driving force receiving portions 46 being disposed radially opposite to each other on the outer periphery of the center post 45. As shown in fig. 2A and 2B, each driving force receiving portion 46 includes a base portion 461 connected to the center post 45 and a projection 462 extending from the base portion 461, a guide face 463 extends from the base portion 461 toward the projection 462, the projection 462 has a first surface 464 and a second surface 465 adjacent to the guide face 463, and the first surface 464 and the second surface 465 are both parallel to the rotation axis L21.
A driving force output member for outputting a driving force to the outside is provided in the apparatus, and includes a driving portion 91 and a stopper portion 92 which rotate in the same direction, and the driving portion 91 and the stopper portion 92 are brought close to each other or the driving portion 91 and the stopper portion 92 are partially overlapped (as shown in fig. 4B) before the process cartridge C is mounted to the apparatus, and the stopper portion 92 is located downstream of the driving portion 91 in the rotational direction. As the process cartridge C is mounted toward a predetermined position of the apparatus, the guide surface 463 guides the stopper portion 92 to move relative to the driving portion 91 so that the driving force receiving portion 46 reaches between the driving portion 91 and the stopper portion 92, the driving portion 91 abuts against the first surface 464, the second surface 465 and the stopper portion 92 are spaced from each other, and when the driving portion 91 rotates in the rotational direction r1, the driving force is transmitted to the coupling portion 44 through the first surface 464, and further, the photosensitive drum 21 is driven to rotate about the rotational axis L21.
Since the second surface 465 and the braking portion 92 are spaced from each other, that is, the second driving force receiving member 4 no longer needs to be braked when it stops operating, the braking portion 92 does not apply the acting force/braking force to the driving force receiving member in the circumferential direction of the photosensitive drum 21 during the process cartridge C is returned from the operating state to the inoperative state or during the process drum 21 is returned from the rotating state to the non-rotating state, and the braking portion 92 is shielded, which is advantageous for reducing the wear of the second driving force receiving member 4 when it operates, further, after the second driving force receiving member 4 according to the present embodiment is adopted, the braking portion 92 in the apparatus no longer needs to be returned to a position close to or partially overlapping the driving portion 91, which is advantageous for simplifying the structure of the apparatus, and the guiding surface 463 does not need to be provided for the driving portion 91 and the braking portion 92 which are already in the separated state, the structure of the process cartridge C can also be simplified.
Example two
Fig. 3A is a perspective view of a second driving force receiving member in the process cartridge according to the present invention; fig. 3B is a side view of the second driving force receiving member in the process cartridge relating to the present invention, as viewed along the rotational axis thereof. For ease of understanding, the same structures as those of the above-described first driving force receiving member 4 will be given the same reference numerals.
The second driving force receiving member in this embodiment is the same in basic structure as the second driving force receiving member in the above-described embodiment, but the structure of the driving force receiving portion 46 is different. As shown in the drawings, the driving force receiving portion 46 in this embodiment is formed as at least a pair of projections 46a/46b spaced from each other, the lugs 46a/46b extend from the center post 45 away from the axis of rotation L21, forming a drive space 46c therebetween, each lug having opposed first and second surfaces 464,465, as shown in fig. 3B, the second surface 465 of the bump 46a and the first surface 464 of the bump 46B are formed as edges of the driving space 46c, when the process cartridge C is mounted, the driving portion 91 enters the driving space 46C, the stopper portion 92 is located outside the driving space 46C, and when the process cartridge C is operated, the driving part 91 abuts on the first surface 464 of the boss 46b, the stopper part 92 is away from the second surface 465 of the boss 46b, and the second driving force receiving member 4 is rotated about the rotation axis L21 in the direction indicated by r1 by the driving action of the driving part 91.
Unlike the first embodiment, the second driving force receiving member 4 according to the present embodiment has a braked function, specifically, when the driving portion 91 stops applying the driving force to the first surface 464 of the projection 46b, the photosensitive drum 21/the second driving force receiving member 4 may continue to rotate in the direction indicated by r1 by inertia, at which time, the second surface 465 of the projection 46a will abut against the driving portion 91, since the driving portion 91 has stopped rotating, the second driving force receiving member 4 is braked by the braking action of the driving portion 91, that is, during the process of returning the process cartridge C from the operative state to the inoperative state or during the process of returning the photosensitive drum 21 from the rotating state to the non-rotating state, the braking portion 92 does not apply the urging/braking force to the driving force receiving member in the circumferential direction of the photosensitive drum 21, equivalent to the braking portion 92 being shielded, the braking of the driving force receiving member 4 is performed by the driving portion 91.
Also, with the second driving force receiving member 4 according to the embodiment, the stopper portion 92 in the apparatus does not need to return to a position where the driving portion 91 is close to or partially overlaps with each other, which is advantageous in simplifying the structure of the apparatus, and the second driving force receiving member 4 of the next cartridge may not be provided with the guide surface 463 for the driving portion 91 and the stopper portion 92 which are already in the separated state, and the structure of the cartridge C can be simplified.
Wherein, for the sake of distinction, the projection 46a may be referred to as a first projection, and the projection 46b may be referred to as a second projection, the first projection 46a being located upstream of the second projection 46b in the rotational direction r1 of the photosensitive drum 21/second driving force receiving member 4; it can be understood that when the process cartridge C is operated in the apparatus, the minimum distance between the second surface of the first projection 46a and the driving portion 91 is smaller than the minimum distance between the second surface of the second projection 46b and the braking portion 92 to ensure that the first projection 46a abuts the driving portion 91 and the second projection 46b does not abut the braking portion 92 during the braking of the second driving force receiving member 4.
EXAMPLE III
Fig. 4A is a perspective view of a third driving force receiving member in the process cartridge according to the present invention; fig. 4B is a side view of the third driving force receiving member in the process cartridge according to the present invention as seen along the rotational axis thereof. For ease of understanding, the same structures as those of the above-described first driving force receiving member 4 will be given the same reference numerals.
The second driving force receiving member in this embodiment has the same basic structure as that of the second driving force receiving member in the above-described embodiment, but the structure of the driving force receiving portion 46 is different. As shown in fig. 4A, in the present embodiment, the driving force receiving portion 46 is simplified to at least one independent projection 462, the projection 462 also has a first surface 464 and a second surface 465 which are opposed, the first surface 464 is located upstream of the second surface 465 in the rotational direction r1, and when the process cartridge C is mounted to the apparatus at a predetermined position, the first surface 464 reaches downstream of the stopper portion 92, at which time, the first surface 464 is opposed to the stopper portion 92.
When the process cartridge C starts to operate, the stopper portion 92 rotates together with the driving portion 91, and at this time, the stopper portion 92 abuts against the first surface 464 and drives the second driving force receiving member 4 to rotate in the rotating direction r1, and as with the first embodiment, the second driving force receiving member 4 in this embodiment does not need to be stopped when the operation is stopped, which is advantageous for reducing the wear of the second driving force receiving member 4 when the operation is stopped; in the process of returning the process cartridge C from the operating state to the non-operating state or in the process of returning the photosensitive drum 21 from the rotating state to the non-rotating state, the driving portion 91 does not apply the urging force/braking force to the driving force receiving member in the circumferential direction of the photosensitive drum 21, corresponding to the driving portion 91 being shielded.
Contrary to the above embodiment, the process cartridge C using the second driving force receiving member 4 according to the present embodiment does not require the driving portion 91 and the braking portion 92 to be separated from each other in the apparatus during operation, and they are always maintained in a state of being close to or partially overlapping each other, and for the process cartridge C, the second driving force receiving member 4 is not required to be provided with the guide surface 463 so that the structure is simplified, and for the apparatus, the driving portion 91 is not functional any more, the driving portion 91 and the braking portion 92 correspond to a member for driving the second driving force receiving member 4 to rotate, and for the apparatus, it is not required to be provided with a means for returning the braking portion 92 to a state of being close to or partially overlapping the driving portion 91 so that the structure is simplified.
Example four
Fig. 5 is a perspective view of a fourth driving force receiving member in the process cartridge according to the present invention; fig. 6A and 6B are schematic views of a state before and after the fourth driving force receiving member is combined with the driving portion and the braking portion in the apparatus in the process cartridge according to the present invention; fig. 7 is a sectional view taken along a plane perpendicular to a rotation axis of a fourth driving force receiving member in the process cartridge according to the present invention, after the fourth driving force receiving member is combined with a driving portion and a braking portion in the apparatus.
In the present embodiment, the second driving force receiver 4 still includes the connecting portion 41, the chassis 42, the base 43, and the coupling portion 44, the connecting portion 41 being connected to the photosensitive drum, the chassis 42 being abutted against the photosensitive drum, the second driving force receiver 4 being fixed to the photosensitive drum 21, the base 43 extending from the chassis 42, and the coupling portion 44 extending from the base 43 in a direction away from the chassis 42; as in the first embodiment, at least one of the chassis 42 and the base 43 may be omitted. The combining portion 44 includes a center post 45 and a driving force receiving portion 46 extending radially outward from the center post 43, the rotation axis L21 passes through the center post 45, two driving force receiving portions 46 are disposed on the outer periphery of the center post 45 in a diametrically opposed manner, in the case where the base 43 is provided, preferably, the driving force receiving portion 46 is formed integrally with the base 43, two driving spaces 46c are formed between the two driving force receiving portions 46 in the circumferential direction of the second driving force receiving member 4, each driving space 46c can accommodate both the driving portion 91 and the stopper portion 92 in the apparatus, when the driving portion 91 and the stopper portion 92 are not overlapped in the rotation direction r1, the arc degree corresponding to each driving space 46c is not less than the sum of the arc degree corresponding to the driving portion 91 and the arc degree corresponding to the stopper portion 92, and when the driving portion 91 and the stopper portion 92 are overlapped in the rotation direction r1, the arc degree corresponding to each driving space 46c is not less than the sum of the arc degree corresponding to the driving portion 91 and the stopper portion 92 The sum of the radians and the difference of the radians corresponding to the overlapping part of the radians.
As shown in fig. 6A, the photosensitive drum 21 on which the second driving force receiving member 4 is mounted leftward in the right-left direction along with the process cartridge C, the distal end face/driving force receiving portion 46 of the second driving force receiving member 4 has the distal end face 47 positioned at the distal end in the mounting direction, and during the mounting of the process cartridge C toward the driving portion 91/braking portion 92, if the driving portion 91 and the braking portion 92 are just opposite to the driving space 46C, the driving portion 91 and the braking portion 92 will directly enter the driving space 46C, and if the driving portion 91 and the braking portion 92 cannot be completely opposite to the driving space 46C, the driving portion 91 and the braking portion 92 can finally enter the driving space 46C along with the rotation of the driving portion 91/braking portion 92.
In the rotation direction r1, the braking portion 92 transmits the driving force to the driving force receiving portion 46 to drive the second driving force receiving member 4 to rotate, and as in the second embodiment, when the braking portion 92 stops transmitting the driving force to the driving force receiving portion 46, the driving portion 91 will brake the second driving force receiving member 4 which continues to rotate, that is, when the process cartridge C adopts the second driving force receiving member 4 according to the present embodiment, the functions of the driving portion 91 and the braking portion 92 in the apparatus will be reversed, that is, during the operation of the process cartridge C, the braking portion 92 in the apparatus plays a driving role, during the process cartridge C needs to return to the non-operation state or during the process of returning the photosensitive drum 21 from the rotation state to the non-rotation state, the driving portion 91 in the apparatus plays a braking role, thus, during the operation of the process cartridge C and during the return from the operation state to the non-operation state or during the return of the photosensitive drum 21 from the rotation state to the non-rotation state, the driving portion 91 and the stopping portion 92 do not have to be separated but are always kept in a state of being close to or partially overlapping each other, which contributes to simplification of the structure of the second driving force receiving member 4 and the structure of the apparatus.
EXAMPLE five
Fig. 8A and 8B are schematic views of a state before and after the fifth driving force receiving member is combined with the driving portion and the braking portion in the apparatus in the process cartridge according to the present invention.
In the present embodiment, at least one of the driving portion 91 and the braking portion 92 in the apparatus is provided telescopically along the rotational axis thereof, the driving space 46C is still provided between the two driving force receiving portions 46 of the second driving force receiving member 4, and when the second driving force receiving member 4 is mounted leftward with the process cartridge C, the distal end face 47 of the second driving force receiving member 4 will abut against one of the driving portion 91 and the braking portion 92, or the distal end face 47 abuts against both the driving portion 91 and the braking portion 92, and thus, at least one of the driving portion 91 and the braking portion 92 is pressed to retract inward of the apparatus.
As shown in fig. 8B, when the driving part 91 or the stopper part 92 enters the driving space 46c, the driving part 91 or the stopper part 92 will drive the second driving force receiving member 4 to rotate in the direction shown by r1 about the rotational axis L21 with the start of the apparatus; when the driving part 91 and the braking part 92 are simultaneously pressed, the driving part 91 and the braking part 92 simultaneously start to rotate with the start of the apparatus, but the second driving force receiving member 4 is not driven until one of the driving part 92 and the braking part 92 enters the driving space 46 c.
The second driving force receiving member 4 in this embodiment can be driven by the driving portion 91 or the braking portion 92, and when the second driving force receiving member 4 is driven by the driving portion 91, the braking portion 92 is pressed by the distal end surface 47 to retract, which corresponds to the braking portion 92 being shielded, and the braking portion 92 is no longer operative during the operation of the process cartridge C and during the process cartridge C returns from the operating state to the inoperative state, and the braking portion 92 no longer transmits a force to the driving force receiving member in the circumferential direction of the photosensitive drum 21; when the second driving force receiving member 4 is driven by the braking portion 92, the driving portion 91 is pressed by the distal end surface 47 to retract, corresponding to the driving portion 91 being shielded, and the driving portion 91 no longer transmits a force to the driving force receiving member, i.e., the driving portion 91 no longer functions, in the circumferential direction of the photosensitive drum 21 during the operation of the process cartridge C and during the process cartridge C returns from the operation state to the non-operation state or during the photosensitive drum 21 returns from the rotation state to the non-rotation state; also, the structure of the second driving force receiving member 4 and the structure of the apparatus are simplified.
As understood from the above-described embodiment, either the driving portion 91 or the braking portion 92 in the driving force output member can transmit the driving force to the driving force receiving member 4, and when the manner in which the driving portion 91 transmits the driving force to the driving force receiving member 4 is adopted, the braking portion 92 does not transmit the acting force to the driving force receiving member in the circumferential direction of the photosensitive drum 21 during the process cartridge is returned from the operating state to the inoperative state or the photosensitive drum 21 is returned from the rotating state to the non-rotating state, at this time, the braking portion 92 is shielded, specifically, the braking portion 92 may be kept away from the driving force receiving portion 44 in the driving force receiving member 4, or the braking portion 92 may be pressed to the retracted state by the distal end surface 47 of the driving force receiving member 4, and similarly, the shielding manner is also applied to the driving portion 91.
[ separation contact mechanism between developing roller and photosensitive drum ]
Before describing the separation contact mechanism 5, the separation control mechanism 93 associated with the apparatus will be described with reference to fig. 10, and as shown in the drawing, the separation control mechanism 93 is in a shape of a concave as a whole, extends in the front-rear direction, and includes a separation force applying portion 93a located in the front and a restoring force applying portion 93b located in the rear, and a movable chamber 93c is formed therebetween.
When the process cartridge C reaches a predetermined position of the apparatus, at least a part of the separation contact mechanism 5 enters the movable chamber 93C, but the separation contact mechanism 5 does not contact the separation control mechanism 93. When the process cartridge C does not need to be operated in the apparatus, the separation control mechanism 93 starts to move from front to back, the separation force applying portion 93a comes into contact with the separation contact mechanism 5 and applies a separation force to the separation contact mechanism 5, and subsequently, the separation control mechanism 93 starts to move from back to front, at which time the separation force applying portion 93a separates from the separation contact mechanism 5 until the separation control mechanism 93 does not come into contact with the separation contact mechanism 5 again, but the developing roller 11 and the photosensitive drum 21 remain in a state of being separated from each other; when the process cartridge C needs to be operated again in the apparatus, the separation control mechanism 93 continues to move from the rear to the front, the restoring force applying portion 93b comes into contact with the separation contact mechanism 5 and applies the restoring force to the separation contact mechanism 5, and subsequently, the separation control mechanism 93 starts to move from the front to the rear, at which time the restoring force applying portion 93b separates again from the separation contact mechanism 5 until the separation control mechanism 93 is again out of contact with the separation contact mechanism 5, but the developing roller 11 and the photosensitive drum 21 return to the state of mutual contact.
That is, the separation control mechanism 93 is reciprocally movable in the front-rear direction between a neutral position, a separating force applying position and a restoring force applying position, which are located on both sides of the neutral position, respectively. Specifically, when the process cartridge C is operated in the apparatus, the separation control mechanism 93 is located at the intermediate position at which the developing roller 11 and the photosensitive drum 21 are in contact with each other; when the process cartridge C does not need to be operated in the apparatus, the separation control mechanism 93 moves from the intermediate position to the separation force application position first and then returns from the separation force application position to the intermediate position, at which time the developing roller 11 and the photosensitive drum 21 are separated from each other; when the process cartridge C needs to be operated again in the apparatus, the separation control mechanism 93 moves from the intermediate position to the restoring-force applying position first and then returns from the restoring-force applying position to the intermediate position, at which time the developing roller 11 and the photosensitive drum 21 return to the state of contact with each other.
Example one
Fig. 9 is an exploded schematic view of a first separation contact mechanism and a process cartridge case in the process cartridge according to the present invention; fig. 10 is a side view of the first separation and contact mechanism attached to the process cartridge casing, as viewed from left to right in the left-right direction of the process cartridge according to the present invention.
The separation contact mechanism 5 is movably provided on the left and/or right side of the process cartridge C, as shown in fig. 9, the separation contact mechanism 5 is a rotating lever rotatably mounted in the process cartridge C, and includes an acting portion 51, a main body 52, and a locking portion 53, the acting portion 51 being for interacting with the separation control mechanism 93, and having a separation force receiving portion 511 and a restoring force receiving portion 512 which are provided oppositely, wherein the separation force receiving portion 511 is for receiving a separation force for separating the developing roller 11 and the photosensitive drum 21 from each other from the separation control mechanism 93, and the restoring force receiving portion 512 is for receiving a restoring force for contacting the developing roller 11 and the photosensitive drum 21 with each other from the separation control mechanism 93; when the acting portion 51 receives the separating force or the restoring force, the main body 52 rotates the acting portion 51 and the locking portion 53, and further, the locking portion 53 is engaged with a locked portion provided in the process cartridge C, and at the same time, the rotating lever 5 forces the developing roller 11 and the photosensitive drum 21 to be separated from each other.
In the present embodiment, the rotating lever 5 is rotatably mounted on the end of the first unit housing 1 between the first unit housing 1 and the end cap 300/400, as shown in the drawing, the first unit housing 1 is provided with the circular arc-shaped guide rail 12 at the end thereof, the main body 52 of the rotating lever 5 is provided with the guide groove 54 that is fitted with the guide rail 12, and the guide groove 54 surrounds the guide rail 12; under the action of the separation control mechanism 93, the rotating lever 5 rotates along the guide rail 12, and the lower surface 541 of the guide groove 54 presses the lower surface 121 of the guide rail 12, thereby rotating the first unit 100 about the rotation axis L of the first power receiving member 3, at which time the developing roller 11 and the photosensitive drum 21 are separated from each other; as shown in fig. 10, it is preferable that the guide groove 54 and the guide rail 12 are both provided concentrically with the first driving force receiving member 3, and a straight line D is made along the front-rear direction of the process cartridge C through the rotation axis L, and the straight line D passes through the guide rail 12 to ensure stable rotation of the rotating lever 5, and more preferably, the straight line D passes through the middle point of the arc of the guide rail 12, and when the rotating lever 5 rotates, the force applied to the guide rail 12 is more uniform in the up-down direction, which not only facilitates stable rotation of the first unit 100 and the rotating lever 5, but also ensures smoother rotation of the rotating lever 5.
On the contrary, the positions of the guide rail 12 and the guide groove 54 may be interchanged, that is, the guide rail 12 is provided on the main body 52 and the guide groove 54 is provided on the housing 1, and when the rotating lever 5 is rotated, the upper surface of the guide rail 12 pushes the upper surface of the guide groove 54, and the first unit 100 is also rotated, and the mutual separation of the developing roller 11 and the photosensitive drum 21 is achieved.
It is realizable that the rotating lever 5 may further be provided with a forced pushing portion, and accordingly, the first unit 100 is provided with a forced pushing portion corresponding to the forced pushing portion, and by the forced pushing portion, the first unit 100 is rotated about the rotation axis L while the rotating lever 5 is rotated, and the developing roller 11 and the photosensitive drum 21 are separated from each other; the urging portion and the urging portion may be solid bodies that contact each other, for example, the above-mentioned guide groove 54 may be regarded as the urging portion, and the guide rail 12 may be regarded as the urging portion, but of course, the urging portion and the urging portion may also be magnets having magnetism, and the ends having the same polarity are opposite to each other, and as the rotating lever 5 rotates, the repulsive force between the urging portion and the urging portion gradually increases until the first unit 100 is rotated about the rotation axis L.
According to the inventive concept of the present embodiment, the guide rail 12 may also be provided on the end cap 300, the mutual separation of the developing roller 11 and the photosensitive drum 21 is achieved by the interaction of the urging portion provided on the rotating lever 5 and the urging portion provided on the first unit 100; conversely, the mutual separation of the developing roller 11 and the photosensitive drum 21 can also be achieved by rotating the second unit 200 around the rotation axis L21 of the second power receiving member 4 by means of the rotation of the rotating rod 5, and the structure for forcing the first unit 100 to rotate can be used for reference, and will not be described in detail herein.
As shown in fig. 10, the locking portion 53 includes a first protruding portion 531 provided on the main body 52, and the locked portion includes a base plate 22 provided on the first unit 100 or the second unit 200 or the end cap 300 and a second protruding portion 23 protruding from the base plate 22. When the separation control mechanism 93 moves from the intermediate position to the separating force application position, the rotating lever 5 rotates in the direction indicated by r2, the urging portion urges the urging portion, the developing roller 11 and the photosensitive drum 21 are separated from each other, and at the same time, the first projecting portion 531 passes over the second projecting portion 23 and reaches the front of the second projecting portion 23, and the engagement of the locking portion 53 with the locked portion is achieved, at which time, even if the separation control mechanism 93 returns from the separating force application position to the intermediate position, the developing roller 11 and the photosensitive drum 21 remain separated from each other; when the separation control mechanism 93 moves from the intermediate position to the restoring force application position, the rotating lever 5 rotates in the reverse direction of the direction indicated by r2, the first projecting portion 531 again passes over the second projecting portion 23 and reaches the rear of the second projecting portion 23, unlocking of the locking portion 53 from the locked portion is achieved, and the developing roller 11 and the photosensitive drum 21 return to the state of mutual contact under the action of the compression spring C3 between the first unit 100 and the second unit 200.
Preferably, one end of the base plate 22 is fixed to one of the first unit 100, the second unit 200 and the end cap 300, and the other end is in a suspended state, so that the base plate 22 has a certain amount of elastic deformation, the locking and unlocking is more easily performed, and the frictional force between the locking part 53 and the locked part is smaller.
Example two
Fig. 11 is a side view of the second separation and contact mechanism attached to the process cartridge casing, as viewed from left to right in the left-right direction of the process cartridge according to the present invention.
As shown in fig. 11, the process cartridge C further includes a cover 14 mounted at one end of the first unit 100, the first driving force receiving member 3 is located between the first unit casing 1 and the cover 14 to be protected, the cover 14 is fixedly mounted on the casing 1, the separation contact mechanism 5 is formed to extend downward from the cover 14, a lower portion of the separation contact mechanism 5 forms an acting portion 51, and a separation force receiving portion 511 and a restoring force receiving portion 512, which are oppositely distributed in the front-rear direction, are located on the acting portion, so that, when a separation force or a restoring force is applied to the separation contact mechanism, the separation contact mechanism 5 can drive the cover 14 to move together, then the cover 14 drives the first unit casing 1 to move, and finally, separation and contact of the developing roller 11 and the photosensitive drum 21 are achieved.
The separation and contact mechanism 5 and the protective cover 14 may be integrally formed or may be separately formed, and further, the protective cover 14 may be considered as a part of the separation and contact mechanism 5, for example, the protective cover 14 is deformed from the main body 52 of the separation and contact mechanism 5. When the separation contact mechanism 5 and the protective cover 14 are formed separately, they may be either fixedly connected or movably connected, as long as the separation contact mechanism 5 can transmit the received separation force or restoring force to the protective cover 14 and separate or contact the developing roller 11 and the photosensitive drum 21 from each other.
As in the first embodiment, a locking portion 53 is provided above the protective cover 14, a locked portion is provided on the first unit 100 or the second unit 200 or the end cap 300, the locking portion 53 includes a first protrusion 531, the locked portion includes a base plate 22 and a second protrusion 23 protruding from the base plate 22, and the locking portion 53 and the locked portion are engaged with each other so that the developing roller 11 and the photosensitive drum 21 are maintained in a state of being separated from each other as the separation force receiving portion 511 receives the separation force; as the restoring-force receiving portion 512 receives the restoring force, the lock between the locking portion 53 and the locked portion is released so that the developing roller 11 and the photosensitive drum 21 are returned to the state of mutual contact.
EXAMPLE III
FIG. 12 is an exploded schematic view of a third separation contact mechanism and a process cartridge case in the process cartridge relating to the present invention; fig. 13A to 13G are schematic diagrams illustrating the movement of the third separation and contact mechanism for controlling the separation and contact between the developing roller and the photosensitive drum by the separation control mechanism in the process cartridge according to the present invention.
The separation and contact mechanism 5 according to the present embodiment is movably mounted, and includes a main body 52 and an acting portion 51 provided on the main body, and when the acting portion 51 receives the separation force from the separation control mechanism 93, the acting portion 51 itself or a member linked with the acting portion causes the first unit 100 to rotate about the rotation axis L in the direction indicated by r2, the developing roller 11 and the photosensitive drum 21 are separated from each other, and a part of the acting portion 51 abuts against the separation control mechanism 93 and is locked, and the developing roller 11 and the photosensitive drum 21 are kept in a state of being separated from each other; when the working portion 51 receives the restoring force from the separation control mechanism 93, the locked state of the working portion 51 is released, the first unit 100 rotates about the rotation axis L in the reverse direction of the direction indicated by r2, and the developing roller 11 and the photosensitive drum 21 contact each other. Specifically, the separation contact mechanism 5 further includes a locking assembly 6 disposed in the acting portion 51, and the movement of the locking assembly 6 will be described with reference to fig. 13A to 13G.
The locking member 6 includes a first movable member 61, a second movable member 62, and a rotating member 63, wherein the first movable member 61 and the second movable member 62 each extend in the front-rear direction and are movable in the front-rear direction by an urging force of the separation control mechanism 93, the rotating member 63 is configured to connect the first movable member 61 and the second movable member 62, the rotating member 63 transmits the urging force to one of the first movable member 61 and the second movable member 62 when the urging force is applied to the other of the first movable member 61 and the second movable member 62, and as a whole, the locking member 6 is formed as a link mechanism, and the rotating member 63 is locked with at least one of the first movable member 61 and the second movable member 62 when the developing roller 11 and the photosensitive drum 21 are in contact with each other and the developing roller 11 and the photosensitive drum 21 are separated from each other, and hereinafter, the rotating member 63 is described as an example in which the rotating member 63 can be locked with the first movable member 61.
As shown in fig. 13A, the locking assembly 6 further includes a first elastic member 64 abutting against the first movable member 61 and a second elastic member 65 abutting against the second movable member 62, when the process cartridge C is reached to the predetermined position of the apparatus, the acting portion 51 enters the movable chamber 93C, neither the first movable member 61 nor the second movable member 62 contacts with the separation control mechanism 93 in the apparatus, at least one of the first movable member 61 and the second movable member 62 is a rack, the rotating member 63 includes a gear capable of meshing with the rack and a stopper portion 632 directly or indirectly connected to the gear, and an escape portion 631 is provided adjacent to the stopper portion 632, and the stopper portion 632 is capable of rotating with the rotation of the gear.
The first movable member 61 is provided with teeth 611 and toothless portions 612 which are distributed adjacently, the second movable member 62 is provided with teeth 621, the developing roller 11 and the photosensitive drum 21 are in contact with each other in an initial stage shown in fig. 13A, a front end (first force receiving end) 6a of the first movable member 61 and a rear end (second force receiving end) 6b of the second movable member 62 are located outside the acting portion 51, and a distance between the first force receiving end 6a and the second force receiving end 6b in the front-rear direction is d1, or a dimension of the locking member 6 in the front-rear direction is d 1; the gear of the rotating member is engaged with the first moving-member teeth 611 and the second moving-member teeth 621 at the same time, at least the first elastic member 64 of the first elastic member 64 and the second elastic member 65 is in an elastically deformed state, and the stopper portion 632 is engaged with the first moving-member teeth 611 at the rear of the gear of the rotating member, although the first elastic member 64 has a tendency of pushing the first moving member 61 forward or the second elastic member 65 has a tendency of pushing the second moving member 62 backward, under the interaction between the stopper portion 632 and the first moving-member teeth 611, the locking assembly 6 is in a self-locking state as a whole and remains stationary.
When the process cartridge C does not need to be operated in the apparatus, the separation control mechanism 93 moves from the intermediate position toward the separation force application position, and as shown in fig. 13B, the separation force application portion 93a comes into contact with the front distal end (first force receiving end) 6a of the first movable member 61, at which time the developing roller 11 and the photosensitive drum 21 remain in contact with each other, and as the separation control mechanism 93 pushes the first force receiving end 6a rearward, the first movable member 61 moves rearward, and the first elastic member 64 elastically deforms. When the stopping portion 632 is opposite to the toothless portion 612, the rotating member 63 rotates in the direction indicated by r3 in fig. 13C, as shown in fig. 13C, the first movable member 61 has a tendency of moving forward under the elastic force of the first elastic member 64, at the same time, the gear of the rotating member and the elastic force of the second elastic member 65 both drive the second movable member 62 to move backward, the second stressed end 6b abuts against the abutted portion 15 provided in the first unit 100, further, the first unit 100 can rotate in the direction indicated by r2 around the rotation axis L, the developing roller 11 and the photosensitive drum 21 are separated from each other, a first gap g1 is formed between the two, and obviously, the elastic force of the second elastic member 65 is greater than the elastic force of the compression spring C3.
As shown in fig. 13D, after the separation control mechanism 93 applies the separation force to the locking member 6, the separation control mechanism starts to move from the separation force application position to the intermediate position, the first elastic member 64 releases the elastic force, the first movable member 61 moves forward following the separation control mechanism 93, the second movable member 62 moves forward slightly by a distance under the reaction force of the first unit 100 while the stopper portion 632 passes through the tooth-lacking portion 612, the developing roller 11 and the photosensitive drum 21 are still separated from each other, but the distance therebetween is reduced to g2 until the state shown in fig. 13D is reached, the stopper portion 632 engages with the first tooth portion 611 in front of the gear of the rotating member, the first applied end 6a is kept in contact with the separation force application portion 93a, the first movable member 61 is locked, and accordingly, the second movable member 62 does not move any more, at this time, the dimension of the locking member 6 in the forward and backward direction is D2, satisfying d2 > d 1.
When the process cartridge C needs to start operating again in the apparatus, as shown in fig. 13E, the separation control mechanism 93 starts moving from the intermediate position toward the restoring force applying position, at which time the developing roller 11 and the photosensitive drum 21 are still maintained in a state of being separated from each other, and the stopper portion 632 opposes the engaging groove 613 provided on the first movable member. As shown in fig. 13F, the restoring force applying portion 93b comes into abutment with the second movable member 62, and the second movable member 62 rotates the rotating member 63 in the direction indicated by r4 in the drawing by the restoring force applying portion 93b, and at the same time, the rotating member 63 moves the first movable member 61 backward, the second elastic member 65 elastically deforms again, the first unit 100 is not abutted any more, and thus, the developing roller 11 and the photosensitive drum 21 return to the position of mutual contact again.
When the separation control mechanism 93 starts to move from the restoring force application position to the intermediate position after moving forward by a predetermined stroke, as shown in fig. 13G, the second movable element 62 stops moving forward, the rotating element 63 and the first movable element 61 also stop moving synchronously, the stopper portion 632 is again engaged with the first movable element tooth portion 611 at the rear of the gear of the rotating element, and the locking assembly is again in the self-locking state and remains stationary as a whole.
As described above, the stopper portion 632 can also be engaged with the tooth portion 621 of the second movable member 62 to lock the second movable member 62, and at this time, it is necessary to provide a tooth-missing portion on the second movable member 62, so that when the developing roller 11 and the photosensitive drum 21 contact each other, the stopper portion 632 is engaged with the second movable member tooth portion 621 in front of the gear of the rotating member, and when the developing roller 11 and the photosensitive drum 21 are separated from each other, the stopper portion 632 is engaged with the second movable member tooth portion 621 in back of the gear of the rotating member.
Alternatively, the stopping portion 632 and the avoiding portion 631 may be provided on a rotating body that is provided coaxially with the rotating member gear and has a diameter larger than that of the rotating member gear, or the avoiding portion 631 may not be provided, and the diameter of the rotating body may be set smaller than that of the rotating member gear, and the stopping portion 632 may protrude from the rotating body, as long as it is ensured that the stopping portion 632 can be engaged with the first movable member 61 or the second movable member 62 so that the locking assembly 6 is maintained in the self-locking state when the developing roller 11 and the photosensitive drum 21 are in contact with and separated from each other.
Likewise, the separation contact mechanism 5 may be provided on the second unit 200 or the end cap 300, and when the separation contact mechanism 5 is provided on the second unit 200, the locking assembly 6 will rotate the second unit 200 about the rotation axis L21 to achieve the mutual separation of the developing roller 11 and the photosensitive drum 21; when the separation contact mechanism 5 is provided at the end cap 300, the lock assembly 6 can rotate both the first unit 100 and the second unit 200 about the rotation axes L21, but can achieve mutual separation of the developing roller 11 and the photosensitive drum 21.
The first movable member 61 and the second movable member 62 are preferably provided with racks, alternatively, the first movable member 61 and the second movable member 62 may also be provided with a surface such as a frosted surface, a rubber surface, and the like, and the teeth of the gear of the rotating member 63 may also be replaced with a surface having a frosted surface, a rubber surface, and the like, as long as the acting force can be transmitted between the first movable member 61 and the second movable member 62, and when the developing roller 11 and the photosensitive drum 21 are contacted with each other or separated from each other, the stopper portion 632 is abutted against the first movable member 61 or the second movable member 62 so that the locking assembly 6 is integrally maintained in the self-locking state.
Further, in order to prevent the contact and separation mechanism 5 from interfering with the inner wall of the apparatus during the movement of the process cartridge C toward the predetermined position of the apparatus, the contact and separation mechanism 5 is in a "retracted" state before the process cartridge C in this embodiment reaches the predetermined position, so that the contact and separation mechanism 5 does not contact the inner wall of the apparatus regardless of whether the process cartridge C is directly moved downward to the predetermined position, or is pre-installed downward first and then moved forward to the predetermined position.
As shown in fig. 12, a pressed portion 57 is formed at the upper end of the main body 52, and the main body 52 is further provided with a movable groove 55 and a pushing member (not shown) installed in the movable groove 55, the longitudinal end of the first unit housing 1 is provided with a supporting body 13, one end of the pushing member abuts against the supporting body 13, and the other end abuts against the end of the movable groove 55, under the pushing action of the pushing member, the whole separation contact mechanism 5 is pushed up to a position not exceeding the lowermost position of the first unit 100, the second unit 200 and the end cap 300, when the processing cartridge C reaches a predetermined position, the pressed portion 57 is pressed by a pressing mechanism preset in the apparatus, and the separation contact mechanism 57 overcomes the pushing force of the pushing member to make at least the acting portion 51 "extend out", that is, the acting portion 51 exceeds the lowermost position of the first unit 100, the second unit 200 and the end cap 300. It is to be understood that the structure in which the separation/contact mechanism 5 is provided to be extendable and retractable in the vertical direction may be applied to the separation/contact mechanisms of the first and second embodiments.
Example four
Fig. 14 is an exploded schematic view of a fourth separation contact mechanism and a process cartridge case in the process cartridge relating to the present invention; fig. 15 is a side view of the fourth contact-and-separation mechanism attached to the process cartridge casing, as viewed from left to right in the left-right direction of the process cartridge according to the present invention.
The separation and contact mechanism 5 according to the present embodiment has substantially the same structure as that of the third embodiment, except that in the present embodiment, the separation and contact mechanism 5 is connected to the protective cover 14, and when the developing roller 11 and the photosensitive drum 21 need to be separated from each other, the position against which the second movable member 62 of the lock assembly 6 abuts is different.
As shown in fig. 14 and 15, the first movable piece 61 and the second movable piece 62 each extend from the acting portion 51 for engagement with the separating force applying portion 93a and the restoring force applying portion 93b of the separation control mechanism 93, respectively. In the process of implementing the present embodiment, the second moving member 62 further needs to be provided with a transmission protrusion 622 (as shown in fig. 13A-13G), and the movement process of the locking assembly 6 in the present embodiment is the same as that of the embodiment, so the movement process of the locking assembly 6 will not be described herein, it should be noted that, unlike the above-mentioned embodiment, the separating force applied by the separating force applying portion 93A is transmitted to the acting portion 51 by the transmission protrusion 622, and then the separating force is transmitted to the protective cover 14 by the acting portion 51, and finally the protective cover 14 drives the first unit 100 to rotate around the rotation axis L along the direction shown by r2, so as to separate the developing roller 11 and the photosensitive drum 21 from each other.
EXAMPLE five
Fig. 16 is an exploded schematic view of a fifth separation contact mechanism and a process cartridge casing in the process cartridge relating to the present invention; fig. 17a and 17b are side views of the fifth separation and contact mechanism attached to the process cartridge casing, as viewed from left to right in the left-right direction of the process cartridge according to the present invention.
In the present embodiment, the separating force applied by the separating force applying portion 93a is still transmitted to the protective cover 14 by the acting portion 51, and then the protective cover 14 rotates the first unit 100 around the rotation axis L in the direction indicated by r2, so that the developing roller 11 and the photosensitive drum 21 are separated from each other.
As described above, in order to prevent the separation contact mechanism 5 from interfering with the inner wall of the apparatus during the mounting of the process cartridge C to the predetermined position of the apparatus, the separation contact mechanism 5 is provided so as to be movable in the up-down direction of the process cartridge C, the separation contact mechanism 5 is in the retracted state before the process cartridge C is mounted to the predetermined position of the apparatus, and when the process cartridge C reaches the predetermined position of the apparatus and is pressed by the inner wall of the apparatus, the separation contact mechanism 5 is extended, and at least the acting portion 51 enters the movable chamber 93C.
As shown in fig. 16, the main body 52 is also provided with a movable groove 55 and a pressed portion 57 as shown in fig. 12, one end of a not-shown urging member abuts against the movable groove 55, the other end abuts against the supporting body 13, and the pressed portion 57 is slightly longer, so that when the pressed portion 57 receives a downward pressing force from the inner wall of the apparatus, as shown in fig. 17a and 17b, the pressed portion 57 can abut against the rib 17 of the cover 14. When the separating force applying portion 93c applies the separating force to the locking member 6, the first movable member 61 is locked, the separating force is transmitted to the main body 52 through the transmission protrusion 622, so that the main body 52 rotates counterclockwise about the support body 13, and at the same time, the rib 17 is pushed by the pressing portion 57 so that the first unit 100 rotates in the direction indicated by r2 about the rotation axis L, and the developing roller 11 and the photosensitive drum 21 are separated from each other. In contrast, when the restoring force applying portion 93b applies the restoring force to the lock assembly 6, the lock of the first movable member 61 is released, and the first unit 100 is rotated about the rotation axis L in the direction opposite to the direction indicated by r2 by the compression spring C3, and the developing roller 11 and the photosensitive drum 21 are returned to the state of being in contact with each other.
As described above, the separation control mechanism 93 in the apparatus returns to the intermediate position where it is no longer in contact with the separation contact mechanism 5 after applying both the separation force and the restoring force to the separation contact mechanism 5, and when the separation control mechanism 93 applies the acting force (including the separation force and the restoring force) to the separation contact mechanism 5, the stroke of the respective components (the separation force applying portion 93a and the restoring force applying portion 93b) of the separation control mechanism 93 can be shortened, which is advantageous for reducing the size of the apparatus; further, the separation and contact mechanism 5 according to the present invention has a locking function, and after the developing roller 11 and the photosensitive drum 21 are separated from each other, the separation and contact mechanism 5 is locked, and even if the apparatus is shaken by an external force, the developing roller 11 and the photosensitive drum 21 can be stably maintained in a state of being separated from each other.

Claims (9)

1. A process cartridge detachably mountable to an apparatus provided with a driving force output member including a driving portion and a braking portion which are close to or partially overlap with each other, the driving portion and the braking portion rotating in a same direction when the apparatus is operated, the driving portion being capable of applying a driving force to an external member, the braking portion being capable of applying a braking force to the external member;
the process cartridge includes a casing, a rotary member rotatably mounted in the casing, and a driving force receiving member at an end of the rotary member;
it is characterized in that the preparation method is characterized in that,
when the process cartridge is mounted to the apparatus, the driving force receiving member is engaged with the driving force output member, and the driving portion or the braking portion transmits the driving force to the driving force receiving member;
when the manner in which the driving portion transmits the driving force to the driving force receiving member is adopted, the braking portion is shielded in the process of returning the process cartridge from the operating state to the non-operating state.
2. A process cartridge detachably mountable to an apparatus provided with a driving force output member including a driving portion and a braking portion which are close to or partially overlap with each other, the driving portion and the braking portion rotating in a same direction when the apparatus is operated, the driving portion being capable of applying a driving force to an external member, the braking portion being capable of applying a braking force to the external member;
the process cartridge includes a housing, a rotary member rotatably mounted in the housing, and a driving force receiving member at an end of the rotary member;
it is characterized in that the preparation method is characterized in that,
when the process cartridge is mounted to the apparatus, the driving force receiving member is engaged with the driving force output member and receives a driving force from the driving portion or the braking portion to drive the rotary member to rotate;
when the manner in which the driving part transmits the driving force to the driving force receiving part is adopted, the braking part does not transmit the force to the driving force receiving part in the circumferential direction of the rotary member in the process of returning the rotary member from the rotated state to the non-rotated state.
3. A process cartridge according to claim 1 or 2, wherein when the braking portion is adopted to transmit the driving force to the driving force receiving member, the driving portion does not transmit the acting force to the driving force receiving member in a circumferential direction of the rotary member.
4. A process cartridge according to claim 1 or 2, wherein the driving portion is adapted to apply the braking force to the driving force receiving member when the braking portion is used to transmit the driving force to the driving force receiving member.
5. A process cartridge according to claim 4, wherein the driving force receiving member is provided with a driving space in which the driving portion and the braking portion are accommodated simultaneously.
6. A process cartridge according to claim 1 or 2, wherein the driving force receiving member is provided with a guide surface which separates the driving portion and the braking portion in the process of engagement of the driving force receiving member with the driving force output member.
7. A process cartridge according to claim 6, wherein the driving portion is adapted to apply the braking force to the driving force receiving member.
8. A process cartridge according to claim 1 or 2, wherein at least one of the driving portion and the braking portion is provided telescopically along a rotation axis thereof, and the driving portion or the braking portion is retracted into the apparatus when the driving force receiving member is coupled with the driving force output member.
9. A process cartridge according to claim 8, wherein the process cartridge is mounted in a direction parallel to a rotational axis of the rotary member, in which mounting direction the distal end face of the driving force receiving member presses the driving portion or the braking portion.
CN202220611605.4U 2021-11-12 2022-03-18 Processing box Active CN217034518U (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
PCT/CN2022/131575 WO2023083339A1 (en) 2021-11-12 2022-11-12 Driving force receiver, rotating assembly and process cartridge
EP22892132.6A EP4432016A1 (en) 2021-11-12 2022-11-12 Driving force receiver, rotating assembly and process cartridge
PCT/CN2023/082376 WO2023174432A1 (en) 2022-03-18 2023-03-18 Driving force receiving member, rotating assembly, and processing box
US18/661,578 US20240295852A1 (en) 2021-11-12 2024-05-11 Driving force receiving member and process cartridge

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202122784760 2021-11-12
CN2021227847604 2021-11-12

Publications (1)

Publication Number Publication Date
CN217034518U true CN217034518U (en) 2022-07-22

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CN202210269282.XA Pending CN114637175A (en) 2021-11-12 2022-03-18 Processing box
CN202223016137.5U Active CN219392473U (en) 2021-11-12 2022-11-12 Process cartridge

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CN202223016137.5U Active CN219392473U (en) 2021-11-12 2022-11-12 Process cartridge

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023083339A1 (en) * 2021-11-12 2023-05-19 珠海益之印科技有限公司 Driving force receiver, rotating assembly and process cartridge
WO2023174432A1 (en) * 2022-03-18 2023-09-21 珠海益之印科技有限公司 Driving force receiving member, rotating assembly, and processing box

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2024041458A1 (en) * 2022-08-20 2024-02-29 王微娜 Power receiving unit and process cartridge
CN220651070U (en) * 2022-08-29 2024-03-22 珠海纳思达信息技术有限公司 Processing box
WO2024067875A1 (en) * 2022-10-01 2024-04-04 珠海益之印科技有限公司 Driving force receiving member, and process cartridge
CN219590676U (en) * 2022-10-18 2023-08-25 珠海联合天润打印耗材有限公司 Coupling, rotating member and process cartridge

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023083339A1 (en) * 2021-11-12 2023-05-19 珠海益之印科技有限公司 Driving force receiver, rotating assembly and process cartridge
WO2023174432A1 (en) * 2022-03-18 2023-09-21 珠海益之印科技有限公司 Driving force receiving member, rotating assembly, and processing box

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CN114637175A (en) 2022-06-17
CN219392473U (en) 2023-07-21

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