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CN110276882B - Cash box, cash recycling device and cash box assembling method - Google Patents

Cash box, cash recycling device and cash box assembling method Download PDF

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Publication number
CN110276882B
CN110276882B CN201810211621.2A CN201810211621A CN110276882B CN 110276882 B CN110276882 B CN 110276882B CN 201810211621 A CN201810211621 A CN 201810211621A CN 110276882 B CN110276882 B CN 110276882B
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CN
China
Prior art keywords
assembly
plate
box body
box
cash
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CN201810211621.2A
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Chinese (zh)
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CN110276882A (en
Inventor
洪浙丰
郑磊
袁勇
许加波
丛强滋
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.)
Shandong New Beiyang Information Technology Co Ltd
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Shandong New Beiyang Information Technology Co Ltd
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Priority to CN201810211621.2A priority Critical patent/CN110276882B/en
Publication of CN110276882A publication Critical patent/CN110276882A/en
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D11/00Devices accepting coins; Devices accepting, dispensing, sorting or counting valuable papers
    • G07D11/009Depositing devices
    • G07D11/0093Drop boxes
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D11/00Devices accepting coins; Devices accepting, dispensing, sorting or counting valuable papers
    • G07D11/10Mechanical details
    • G07D11/14Inlet or outlet ports
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D11/00Devices accepting coins; Devices accepting, dispensing, sorting or counting valuable papers
    • G07D11/10Mechanical details
    • G07D11/16Handling of valuable papers
    • G07D11/18Diverting into different paths or containers
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D11/00Devices accepting coins; Devices accepting, dispensing, sorting or counting valuable papers
    • G07D11/40Device architecture, e.g. modular construction

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Sheets, Magazines, And Separation Thereof (AREA)
  • Pile Receivers (AREA)
  • Inspection Of Paper Currency And Valuable Securities (AREA)

Abstract

The invention provides a cash box, cash recycling equipment and a cash box assembling method, and belongs to the technical field of financial machinery. The money box mainly comprises a money box body, a box door assembly, a side plate assembly, a top plate assembly and a collecting and separating assembly; and the structures for connecting the parts are all positioned in the box body. According to the money box assembling method, the parts are assembled together, and meanwhile, no connecting piece capable of disassembling the money box is left outside the money box, so that the money box cannot be opened in an external disassembling mode. The cash recycling device comprises the cash box. Therefore, the safety performance of the cash box and the cash recycling processing equipment can be ensured, and the cash box is prevented from being opened abnormally.

Description

Cash box, cash recycling device and cash box assembling method
Technical Field
The invention relates to the technical field of financial machinery, in particular to a cash box, cash recycling equipment and a cash box assembling method.
Background
The cash circulation processing equipment (billrecyclingterminal) is a financial self-service equipment which combines multiple functions of cash circulation, deposit, withdrawal, temporary storage, clearing, counting, counterfeit identification, serial number recording, continuous and uninterrupted cash feeding, cash storage at the end of a day, inquiry and the like, and can realize the circulation of RMB of various denominations of paper currency circulating in China.
A cash recycling apparatus generally includes a depositing unit, a dispensing unit, a buffer unit, a discriminating unit, a plurality of cassettes, and a bill transfer unit connected between the depositing unit and the cassettes. When a deposit operation is carried out, paper money is placed at the paper money inlet device, the paper money is conveyed to the recognition device, the recognition device carries out paper money recognition, and the paper money recognized as true is input into the temporary storage device and is temporarily reserved; if the bill is determined to be unidentifiable, the bill is input to the bill output device, and the unidentifiable bill is retrieved by the user. When the deposit is confirmed, the paper money temporarily reserved in the temporary storage device is conveyed to the recognition device again for paper money recognition, and the paper money recognized as correct is input into a corresponding paper money box one by one for storage; when the deposit is cancelled, the shutter of the temporary storage device is opened, and the user can take out the temporarily reserved paper money.
The safety performance of the banknote box, which is an important part for storing banknotes, is particularly important, namely, the banknote in the banknote box can be prevented from being abnormally obtained by lawbreakers.
Disclosure of Invention
The invention aims to provide a banknote box and cash recycling equipment, wherein the exterior of the whole banknote box has no connecting trace, so that a lawless person is prevented from disassembling the banknote box to obtain internal banknotes.
The invention aims to provide a banknote box assembling method, which can ensure that no connecting trace exists outside the whole banknote box, thereby preventing lawless persons from disassembling the banknote box to obtain internal banknotes.
The embodiment of the invention is realized by the following steps:
a paper money box is a cuboid and comprises: the cash box comprises a cash box body, a collecting and separating assembly, a top plate assembly, a box door assembly and a side plate assembly; the money box body comprises an accommodating space; the collecting and separating assembly, the box door assembly and the side plate assembly are all connected with the inner wall of the cash box body; the top plate component is connected with the money box body; the money box body, the top plate assembly, the box door assembly and the side plate assembly form a cuboid together; the accumulation separation assembly is arranged in the accommodating space and is used for conveying paper money to the inside of the paper money box or the outside of the paper money box; the assembly and separation assembly is adjacent to the top plate assembly.
Preferably, the banknote box body comprises a first rectangular body plate, a second rectangular body plate and a third rectangular body plate, the second rectangular body plate and the third rectangular body plate are vertically connected with two adjacent edges of the first rectangular body plate, and the second rectangular body plate is vertically connected with the third rectangular body plate;
the box door component is connected with the inner wall of the third body plate; the side plate assembly is connected to the edge of the first body plate and is disposed opposite to the third body plate.
Preferably, the door assembly includes a support assembly and a door, the support assembly is connected to the inner wall of the third body panel, the door is pivotally connected to the support assembly, and the door has a closed position that rotates about the pivotal axis to connect to the side panel assembly.
A cash recycling device comprises any one of the cash boxes.
A banknote box assembling method is used for assembling any one banknote box, and comprises the following steps:
a. connecting the collecting and separating assembly to the inner wall of the money box body; the money box body comprises an accommodating space, and the collecting and separating assembly is arranged in the accommodating space; b. connecting the side wall of the top plate component with the money box body, and enabling the opening of the top plate component to be communicated with the inlet and the outlet of the collecting and separating component; c. the driving component is arranged in the accommodating space and is connected to the inner wall of the cash box body; d. assembling the supporting plate component in the accommodating space, and enabling the supporting plate component to be in sliding connection with the money box body; the driving assembly is in transmission connection with the supporting plate assembly, so that the supporting plate assembly can slide relative to the cash box body to be close to or far away from the top plate assembly; e. connecting the box door assembly with the inner wall of the cash box body; f. connecting the side plate assembly to the inner wall of the money box body; the paper money box body, the top plate assembly, the box door assembly and the side plate assembly can form a cuboid.
Preferably, the method also comprises a step g of arranging the reference plate in the accommodating space and connecting the reference plate with the cash box body; and enables the pallet assembly to be slip-fitted to the reference plate.
Preferably, the money box body comprises a plurality of connecting parts, the connecting parts are convexly arranged on the inner wall of the money box body, and connecting blind holes are formed in the connecting parts;
the collecting and separating assembly is provided with an assembly through hole, and the collecting and separating assembly penetrates through the assembly through hole by using a fastener and then is connected with the connecting blind hole.
Preferably, the step b further comprises assembling the positioning shaft to the top plate assembly and the banknote box body; the top plate assembly is provided with a through hole;
the money box body comprises a positioning hole, and the positioning shaft penetrates through the positioning hole and the through hole.
Preferably, the money box body comprises two limiting plates which are oppositely spaced, the positioning holes are formed in the limiting plates, and one end of the positioning shaft is provided with the positioning platform;
after the positioning shaft penetrates through the positioning hole and the through hole, the positioning table is abutted to the limiting plate, the fastener is connected to one end of the positioning shaft, and the axial degree of freedom of the positioning shaft is limited by the fastener and the limiting plate together.
Preferably, two insertion grooves are formed in the top plate assembly, and the step b further includes inserting the limit plate into the insertion grooves.
Preferably, a fixing plate is arranged on the inner wall of the money box body, a blind hole is formed in the fixing plate, a plurality of connecting plates are arranged on the inner wall of the box door assembly, and through holes are formed in the connecting plates; and e, connecting the money box body and the box door assembly with the blind holes in the fixing plate by using fasteners to penetrate through the through holes in the connecting plate.
The technical scheme of the invention has the beneficial effects that:
according to the money box provided by the invention, all the connecting structures are positioned inside the money box, and no connecting piece capable of disassembling the money box is left outside the money box. When the money box needs to be disassembled, the box door of the money box can only be normally opened firstly, and then the internal connecting structure is disassembled; i.e. the cassette cannot be disassembled from the outside. Therefore, the banknote box assembling method can prevent a lawbreaker from abnormally opening the banknote box so as to obtain the banknotes in the banknote box.
The cash recycling device provided by the invention adopts the cash box, so that the cash in the cash box can be prevented from being obtained by abnormally opening the cash box; thus improving the overall safety performance.
The banknote box assembled by the banknote box assembling method provided by the invention has the advantage that the banknote box cannot be disassembled from the outside because no connecting piece for disassembling the banknote box is left outside the banknote box. Therefore, the safety performance of the money box can be improved by assembling the money box by the assembling method.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained according to the drawings without inventive efforts.
Fig. 1 is a schematic view of the overall configuration of a cash recycling apparatus provided in embodiment 1 of the present invention;
fig. 2 is an overall structural schematic diagram of a banknote box provided in embodiment 1 of the present invention;
fig. 3 is a cross-sectional view of a banknote cassette provided in embodiment 1 of the present invention;
FIG. 4 is a basic flow diagram of a banknote cassette assembly method provided by an embodiment of the invention;
fig. 5 is a schematic view of a banknote cassette in which a stacking and separating assembly is assembled with a banknote cassette body according to an embodiment of the present invention;
fig. 6 is a top view of the banknote cassette provided in the embodiment of the present invention after the stacking and separating assembly and the banknote cassette body are assembled;
fig. 7 is an assembly schematic diagram of a banknote cassette in which a top plate assembly, a collecting and separating assembly, and a banknote cassette body are assembled;
fig. 8 is a top view of the banknote cassette provided in the embodiment of the present invention after the top plate assembly, the stacking and separating assembly, and the banknote cassette body are assembled;
FIG. 9 is a schematic view of a cassette mount drive assembly provided in an embodiment of the invention;
fig. 10 is a schematic structural diagram of the banknote cassette provided in the embodiment of the present invention after the driving assembly is assembled;
FIG. 11 is a schematic structural diagram of a banknote cassette in which a pallet assembly is mounted according to an embodiment of the present invention;
FIG. 12 is a schematic structural diagram of the banknote cassette provided in the embodiment of the present invention after the assembly of the pallet assembly is completed;
FIG. 13 is a schematic view of a cassette door assembly of a cassette according to an embodiment of the present invention;
FIG. 14 is a schematic structural diagram of a banknote cassette assembled with side plate assemblies according to an embodiment of the present invention;
FIG. 15 is a schematic structural diagram of a banknote cassette provided in an embodiment of the present invention at an assembly reference plate;
fig. 16 is a schematic structural diagram of the banknote cassette provided in the embodiment of the present invention after the assembly of the reference plate is completed;
fig. 17 is a schematic structural diagram of a banknote box according to an embodiment of the present invention.
Icon: 010-cash recycling devices; 100-money box; 110-banknote box body; 111-a first body plate; 115-a first connection; 116-a second connection; 117-fixation plate; 112-a second body plate; 113-a third body plate; 114-a first connecting post; 118-a second connecting column; 120-a bulk separation module; 122-a guide rail plate; 123-a limiting groove; 130-a top plate assembly; 131-an opening; 132-a side wall; 133-a plug groove; 134-positioning shaft; 135-fasteners; 136-a through hole; 140-a drive assembly; 141-a drive section; 142-a transmission member; 150-a pallet assembly; 152-a pulley; 154-mounting groove; 170-a door assembly; 172-a support assembly; 174-a door; 176-a rotating shaft; 180-side plate assembly; 182-side plate main body; 184-strip-shaped plates; 190-a reference plate; 191-a positioning plate; 193-a limiting plate; 195-a positioning hole; 197-a groove; 200-a coin-in device; 300-a coin dispensing device; 400-identification means; 500-temporary storage.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the technical solutions of the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings of the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all embodiments of the present invention. All other embodiments, which can be obtained by a person skilled in the art without any inventive step based on the embodiments of the present invention, are within the scope of the present invention.
Thus, the following detailed description of the embodiments of the present invention, presented in the figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. All other embodiments, which can be obtained by a person skilled in the art without any inventive step based on the embodiments of the present invention, are within the scope of the present invention.
In the description of the present invention, it is to be understood that the terms indicating an orientation or positional relationship are based on the orientation or positional relationship shown in the drawings only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
In addition, in the present disclosure, "vertical connection" is not limited to absolute vertical, and a certain error is allowed without affecting the use.
Example 1:
as shown in fig. 1, the present embodiment provides a cash recycling device 010, which mainly includes a coin depositing device 200, a coin dispensing device 300, a temporary storage device 500, a recognition device 400, a plurality of cash boxes 100, and a cash conveying device connected between the above devices and the cash boxes 100.
When a deposit operation is performed, banknotes are placed at the depositing unit 200, the banknotes are transported to the recognition unit 400, the banknotes are recognized by the recognition unit 400, and the banknotes recognized as genuine are input to the escrow unit 500 to be temporarily held; when the recognition device 400 determines that the bill is not recognized, the bill is input to the bill dispensing device 300, and the bill that is not recognized is retrieved by the user. When the deposit is confirmed, the banknotes temporarily retained in the temporary storage device 500 are conveyed to the recognition device 400 again for banknote recognition, and the banknotes recognized as correct are input into the corresponding banknote box 100 one by one for storage; when the deposit is cancelled, the shutter of the escrow device 500 is opened, and the user can take out the temporarily held paper money.
As shown in fig. 2 and 13, the banknote cassette 100 is a box-like structure of a rectangular parallelepiped shape, and its external structure mainly includes a banknote cassette body 110, a top plate assembly 130, a cassette door assembly 170, and a side plate assembly 180. The cassette door assembly 170 includes a supporting assembly 172 and a cassette door 174, and the cassette door 174 is pivotally connected to the supporting assembly 172 through a rotating shaft 176. The support assembly 172 is connected to the inner wall of the cassette body 110 and the cassette door 174 is rotatable about the axis of the pivot shaft 176 to a closed position connected to the side plate assembly 180. A safety lock is disposed between the door assembly 170 and the side plate assembly 180 for locking the door 174 in the closed position, and when the door 174 is in the closed position, the above components together form a rectangular parallelepiped structure. When the cash box 100 needs to be opened, the safety lock is opened, and the door 174 in the door assembly 170 can be rotated to open the interior of the cash box 100.
As shown in fig. 3, a stacking and separating unit 120 is provided inside the banknote cassette 100 at a position close to the top plate unit 130, and the top plate unit 130 is provided with a strip-shaped opening 131. The accumulating and separating assembly 120 comprises a coin kicking roller, a coin resisting roller and a coin separating roller, wherein the coin kicking roller can rotate when power is input, so that the paper money contacted with the coin kicking roller is driven to move; the coin resisting rollers and the coin separating rollers are oppositely arranged at intervals to form a paper money inlet and outlet which is opposite to and communicated with the opening 131 on the top plate assembly 130. When currency is discharged, the currency kicking roller drives the paper currency contacted with the currency kicking roller to move towards the currency resisting roller and the currency separating roller, the currency separating roller rotates to drive the paper currency contacted with the currency to be output from a paper currency inlet and outlet, the currency resisting roller does not move or reversely rotates to prevent the paper currency contacted with the currency from moving, so that only single paper currency is output, and finally the paper currency is output from the paper currency box 100 through the opening 131 in the top plate assembly 130, wherein when currency is input, the paper currency conveyed by the paper currency conveying device reaches the paper currency inlet and outlet of the paper currency collecting and separating assembly 120 through the opening 131 in the top plate assembly 130, and the currency separating roller and the currency resisting roller rotate to drive the paper currency to enter the paper currency box 100. The specific structure and operation principle of the assembly and separation assembly 120 are not important in the present invention, and therefore, the detailed description thereof is omitted.
In addition, a driving assembly 140 and a supporting plate assembly 150 are further arranged in the banknote box 100, and the driving assembly 140 is used for driving the supporting plate assembly 150 to move away from or close to the accumulating and separating assembly 120; when the paper money is conveyed into the paper money box 100, the supporting plate component 150 receives the paper money conveyed by the collecting and separating component 120, and the paper money is stacked on the supporting plate component 150; when the paper money on the supporting plate assembly 150 needs to be conveyed out of the paper money box 100, the supporting plate assembly 150 presses the paper money on the kicking roller of the accumulating and separating assembly 120, and the paper money is driven to be output by the accumulating and separating assembly 120.
The paper money in the paper money box 100 is stacked between the supporting plate component 150 and the collecting and separating component 120, when the paper money enters the paper money box 100, the supporting plate component 150 and the collecting and separating component 120 move relatively far away, and therefore a space is reserved for the following paper money; when the paper money in the paper money box 100 is output, the supporting plate component 150 moves towards the direction close to the accumulation separation component 120, so that the topmost paper money on the supporting plate is pressed on the kicking roller of the accumulation separation component 120 to be contacted; since the uppermost sheet of stacked banknotes contacts the kick roller of the accumulation separation assembly 120, the kick roller rotates to drive the banknotes in contact therewith toward the dispensing roller.
The structure of the cassette body 110 and other components will be described in embodiment 2 in conjunction with the assembly method.
Example 2:
as shown in fig. 4, fig. 4 is a basic flow chart of the assembling method of the banknote cassette 100. The embodiment provides an assembling method of a banknote box 100, wherein the banknote box 100 is integrally rectangular, and the assembling method mainly comprises the following steps: a. connecting the accumulation separation assembly 120 to the banknote box body 110; b. assembling the top plate assembly 130; c. assembling the drive assembly 140; d. assembling the pallet assembly 150; e. assembling the bin door assembly 170; f. assembling the side plate assembly 180; g. a reference plate 190 is assembled. Moreover, the connection parts of the components that are matched with each other are all located inside the banknote box 100, so that the banknote box 100 cannot be opened in an external disassembly mode.
Specifically, referring to fig. 5, fig. 5 is a schematic view illustrating the assembly of the accumulation separation assembly 120 and the banknote box body 110. The banknote box body 110 is an integral framework of the banknote box 100, and the accumulating and separating assembly 120 is used for conveying banknotes conveyed by other devices into the banknote box 100 and outputting the banknotes in the banknote box 100 out of the banknote box 100.
The cash box body 110 comprises a first body plate 111, a second body plate 112, a third body plate 113 and two connecting columns; the first body plate 111, the second body plate 112 and the third body plate 113 are all rectangular plates, wherein the second body plate 112 and the third body plate 113 are respectively vertically connected to two adjacent edges of the first body plate 111; and, the second body plate 112 is vertically connected to the third body plate 113. The two connecting columns are respectively vertically arranged at two corners of the first body plate 111, wherein the first connecting column 114 is connected with the third body plate 113, and the second connecting column 118 is oppositely arranged with the second body plate 112 at an interval and vertically connected with the first body plate 111, so that the first body plate 111, the second body plate 112, the third body plate 113, the first connecting column 114 and the second connecting column 118 jointly enclose a rectangular accommodating space. A plurality of first connecting portions 115 are provided on the inner wall of the first body plate 111, and connecting blind holes are provided on the first connecting portions 115. In this embodiment, the first connecting portion 115 is a cylindrical structure perpendicular to the first body plate 111, and the connecting blind hole extends along the axial direction of the cylinder. In other embodiments, the first connection portion 115 may have other structures, for example, a plate-shaped structure, and the connection blind holes are provided on the plate.
Accordingly, the assembly and separation assembly 120 is provided with an assembly through hole for engaging with the first connection portion 115. Other structural details of the assembly and separation assembly 120 are not relevant to the present invention and will not be described again.
During specific assembly, the banknote box body 110 is laid flat, namely the first body plate 111 is laid flat, then the collecting and separating assembly 120 is placed in the accommodating space of the banknote box body 110, and the collecting and separating assembly 120 is located at the end part of the banknote box body 110; and then coupled with the coupling blind holes of the first coupling portion 115 of the first body plate 111 through the fitting through-holes of the integrated separating assembly 120 with fasteners such as screws.
It should be noted that the blind connecting hole in this embodiment may be a threaded hole provided with threads, or may also be an unthreaded hole, when the blind connecting hole is a threaded hole, the fastener connected thereto may be a bolt or a screw, and when the blind connecting hole is an unthreaded hole, the fastener connected thereto may be a self-tapping screw, or the like.
Referring to fig. 6, fig. 6 is a top view of the stacking and separating assembly 120 and the banknote cassette body 110 after assembly. Since the hole of the first connection portion 115 for connection is a blind hole, the screw does not leave a trace on the outside; therefore, the collecting and separating assembly 120 and the banknote box body 110 can be prevented from being disassembled from the outside by lawless persons.
Referring to fig. 7, fig. 7 is an assembly view of the top plate assembly 130, the accumulation separation assembly 120 and the banknote cassette body 110. The top plate assembly 130 is used to enclose the accumulation separation assembly 120 within the cassette body 110.
The top plate assembly 130 is a rectangular plate-shaped structure, the top plate assembly 130 is provided with an opening 131 penetrating the top plate assembly 130 along the second direction, and the paper money enters the paper money inlet/outlet of the stacking and separating assembly 120 through the opening 131. Through holes 136 are further formed in two side walls 132 of the top plate assembly 130 along a first direction (a-B direction in fig. 7), two insertion grooves 133 are further formed in the top plate assembly 130 at intervals, and the two insertion grooves 133 are arranged at intervals along the first direction and penetrate through the top plate assembly 130 along a second direction (C-D direction in fig. 7).
Correspondingly, two connecting columns of the cash box body 110 are provided with limit plates 193, and each limit plate 193 is provided with a positioning hole 195. The connecting column of the cash box body 110 is provided with a groove 197, the groove 197 extends along the length direction of the connecting column, and the groove 197 faces the outside of the cash box body 110. A plurality of through holes are formed in the groove bottom of the groove 197, wherein the through holes arranged coaxially with the positioning holes 195 are used for assembling the positioning shafts 134; through holes corresponding to the threaded holes on the top plate assembly 130 are used for assembling screws.
When the top plate assembly 130 is assembled, as shown in fig. 7, the cassette body 110 is placed vertically, that is, the second body plate 112 is placed horizontally. The top plate assembly 130 is first covered on the collecting and separating assembly 120; and causes the stopper plate 193 of the cassette body 110 to be inserted into the insertion groove 133 of the top plate assembly 130. Screws are then inserted through the through holes in the bottom of the recesses 197 and into threaded holes in the side walls 132 of the top plate assembly 130.
The positioning shaft 134 passes through the positioning hole 195 of the limit plate 193 and the through hole 136 of the top plate assembly 130, the positioning table on the positioning shaft 134 is abutted against the limit plate 193, then the fastener 135 is connected to the end part of the positioning shaft 134, the fastener 135 and the adjacent limit plate 193 jointly limit the axial freedom degree of the positioning shaft 134, and the positioning shaft 134 can be prevented from being drawn away from the exterior of the cash box. The positioning shaft 134 can further improve the connection strength between the top plate assembly 130 and the banknote box body 110, thereby improving the safety performance.
After the top plate assembly 130 is assembled, a side view thereof is shown in FIG. 8.
Referring to fig. 9, fig. 9 is a schematic diagram of the driving assembly 140. The driving assembly 140 is used for driving the pallet assembly 150 to move. The driving assembly 140 includes a driving part 141 and a transmission member 142, and the driving part 141 is provided with a plurality of assembling through holes; correspondingly, the first body plate 111 of the cash box body 110 is provided with a plurality of cylindrical connecting parts, and blind holes are arranged on the cylindrical connecting parts. The driving part 141 can be fixed by connecting the screw with the blind hole of the cylindrical connection part through the assembling through hole of the driving part 141.
After the driving part 141 is fixedly assembled, the transmission member 142 is connected to the pallet assembly 150. In this embodiment, the transmission member 142 is a timing belt, and the driving portion 141 and the third body plate 113 of the banknote cassette body 110 are respectively provided with a timing pulley. Specifically, one end of the timing belt is sleeved on the timing belt wheel of the driving portion 141, and the other end is sleeved on the timing belt wheel of the third body plate 113.
The structure of the drive assembly 140 and the banknote cassette body 110 after assembly is shown in fig. 10.
Referring to fig. 11, fig. 11 is a schematic structural diagram of the mounting plate assembly 150. The blade assembly 150 is used to form a banknote receiving space in the banknote cassette 100 between the kicker rollers of the accumulation separation assembly 120, and the blade assembly 150 is required to be capable of moving away from or closer to the kicker rollers. When the paper money is conveyed from the accumulation separation assembly 120, the supporting plate assembly 150 moves away from the coin kicking roller so as to leave a space for the fed paper money; when the paper money needs to be conveyed out of the paper money box 100, the supporting plate component 150 is close to the paper money kicking roller, the paper money on the supporting plate component is pressed on the paper money kicking roller, and the paper money kicking roller rotates to convey the paper money contacted with the paper money out of the paper money box 100.
During assembly, pulleys 152 are respectively arranged on two sides of the supporting plate assembly 150, and the supporting plate assembly 150 can be connected with the first body plate 111 of the cash box body 110 in a sliding manner through the pulleys 152. The pallet assembly 150 is provided with a mounting groove 154, and the transmission member 142 of the driving assembly 140 is fitted in the mounting groove 154. The driving assembly 140 drives the blade assembly 150 to slide along the first body plate 111, close to or away from the kick roller, by the driving member 142.
The assembled pallet assembly 150 is shown in fig. 12.
Referring to fig. 13, fig. 13 is a schematic view of the assembly door assembly 170. The supporting component 172 is connected with the box door 174 through a rotating shaft 176 in advance, and then the box door component 170 is connected with the inner wall of the third body plate 113, specifically, the inner wall of the third body plate 113 is provided with a fixing plate 117, the fixing plate 117 is provided with a blind hole, a thread is arranged in the blind hole, correspondingly, the supporting component 172 is provided with a connecting plate, and the connecting plate is provided with a through hole; the screws are inserted through the through holes in the connection plate and connected to the blind holes in the fixing plate 117. Since the screw hole of the fixing plate 117 is a blind hole, the screw does not leave any mark outside the banknote cassette 100, and thus the cassette door assembly 170 can be prevented from being detached from the banknote cassette body 110 from the outside of the banknote cassette 100.
Also, after the cassette door assembly 170 is assembled, it can cover a portion of the screws on the connection post 114 (fig. 7) on the cassette body 110, preventing the screws from being removed from the exterior of the cassette 100. The remaining screws, even if removable from the outside of the cassette 100, cannot remove the top plate assembly 130 from the cassette body 110.
Referring to fig. 14, fig. 14 is a schematic structural view of the assembled side plate assembly 180. The side plate assembly 180 includes a side plate main body 182 and a strip-shaped plate 184, the strip-shaped plate 184 is vertically connected to the side plate main body 182, the strip-shaped plate 184 extends along the second direction (C-D direction in fig. 14), and the strip-shaped plate 184 is provided with a through hole. Correspondingly, the first body plate 111 of the cash box body 110 is provided with a plurality of cylindrical second connecting parts 116, the second connecting parts 116 are protruded on the first body plate 111, and the second connecting parts 116 are provided with connecting blind holes. During assembly, the screws penetrate through the through holes in the strip-shaped plate 184 and are connected with the connecting blind holes of the second connecting portion 116.
At this time, the side plate main body 182 is disposed opposite to the support member 172, the door 174 rotates around the rotation shaft 176 and is fastened to the side plate member 180, and the banknote box main body 110, the top plate member 130, the support member 172, the door 174, and the side plate member 180 together enclose a rectangular box body.
Further, referring to fig. 15, fig. 15 is a schematic structural diagram of the assembly datum plate 190. The datum plate 190, along with the integrating and separating assembly 120, provides a guide structure for the pallet assembly 150, the details of which are not pertinent to the present invention, and therefore the specific structural details and principles of operation of the guide structure will not be described in this embodiment.
The stacking and separating assembly 120 includes a guide rail plate 122, and after the stacking and separating assembly 120 and the banknote cassette body 110 are assembled, the guide rail plate 122 and the first body plate 111 are arranged in parallel at intervals. The guide rail plate 122 is provided with a limiting groove 123; correspondingly, the reference plate 190 is provided with a positioning plate 191. When the reference plate 190 is assembled, the positioning plate 191 is inserted into the stopper groove 123. At this time, the end of the reference plate 190 abuts against the end of the rail plate 122, and the two are joined to form a complete guide structure.
In addition, the reference plate 190 is provided with a plurality of through holes, the first body plate 111 is correspondingly provided with a plurality of cylindrical assembling portions, the assembling portions are convexly arranged on the first body plate 111, and the assembling portions are provided with connecting blind holes. After the positioning plate 191 is fitted into the stopper groove 123, a screw is passed through the through hole of the reference plate 190 and fixed to the blind hole of the fitting portion. At this time, the screw head is positioned inside the banknote cassette 100, so that the reference plate 190 can be prevented from being detached from the outside of the banknote cassette 100.
The assembled configuration of the datum plate 190 is shown in FIG. 16; the overall structure of the cassette 100 after the cassette door is closed and locked by the locking mechanism is shown in fig. 17. Most of the connection structure of the banknote box body 110 is located inside the banknote box 100, and only part of the screws on one connection column 114 (fig. 7) of the banknote box body 110 are exposed. At this time, even if the exposed screw on the connection post 114 is removed, the positioning shaft 134 can also serve to connect the top plate assembly and the cassette body, and thus the cassette 100 cannot be removed.
It should be noted that the connection structure of the components in this embodiment is only an example, and does not mean that the banknote cassette assembling method is only applied to the connection structure in this embodiment. For example, a cylindrical structure provided with blind holes for connection on the inner wall of the banknote cassette body 110 may be replaced with a plate-shaped structure provided with connecting through holes, the plate-shaped structure being arranged perpendicular to the inner wall of the banknote cassette 100.
The above is only a preferred embodiment of the present invention, and is not intended to limit the present invention, and various modifications and changes may be made to the present invention by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. The utility model provides a paper money case, paper money case is the cuboid, its characterized in that includes: the cash box comprises a cash box body (110), a collecting and separating assembly (120), a top plate assembly (130), a box door assembly (170) and a side plate assembly (180);
the money box body (110) comprises an accommodating space;
the collecting and separating assembly (120), the box door assembly (170) and the side plate assembly (180) are all connected with the inner wall of the cash box body (110); the top plate assembly (130) is connected with the cash box body (110);
the money box body (110), the top plate assembly (130), the box door assembly (170) and the side plate assembly (180) form the cuboid together;
the accumulation separation assembly (120) is arranged in the accommodating space and is used for conveying paper money to the inside of the paper money box or the outside of the paper money box; the assembly separation assembly (120) is adjacent to the top plate assembly (130);
the top plate assembly (130) is provided with a through hole (136) and two inserting grooves, the money box body comprises a positioning hole (195), and the money box further comprises a positioning shaft (134) and a fastening piece (135);
the cash box body (110) comprises two limiting plates (193) which are relatively spaced, and the positioning hole (195) is formed in each limiting plate (193); one end of the positioning shaft (134) is provided with a positioning table, and the limiting plate (193) is inserted into the insertion groove (133); the positioning shaft (134) penetrates through the positioning hole (195) and the through hole (136), and the positioning table is abutted with the limit plate (193);
the fastener (135) is connected to an end of the positioning shaft (134), and the fastener (135) and the stopper plate (193) together restrict an axial degree of freedom of the positioning shaft (134).
2. A banknote cassette as claimed in claim 1, wherein:
the cash box body (110) comprises a first rectangular body plate (111), a second rectangular body plate (112) and a third rectangular body plate (113), the second rectangular body plate (112) and the third rectangular body plate (113) are vertically connected with two adjacent edges of the first rectangular body plate (111), and the second rectangular body plate (112) is vertically connected with the third rectangular body plate (113);
the door assembly (170) is coupled to an inner wall of the third body plate (113); the side plate assembly (180) is connected to an edge of the first body plate (111) and is disposed opposite to the third body plate (113).
3. A banknote cassette as claimed in claim 2, wherein:
the door assembly (170) comprises a support assembly (172) and a door (174), the support assembly (172) is connected with the inner wall of the third body plate (113), the door (174) is pivoted with the support assembly (172), and the door (174) rotates to a closed position connected with the side plate assembly (180) around a pivoting axis.
4. A cash recycling apparatus, characterized by: comprising a banknote cassette as claimed in any one of the claims 1 to 3.
5. A banknote cassette assembly method for assembling a banknote cassette as claimed in any one of claims 1 to 3, comprising the steps of:
a. connecting the collecting and separating assembly (120) to the inner wall of the money box body (110); the money box body (110) comprises an accommodating space, and the collecting and separating assembly (120) is arranged in the accommodating space;
b. connecting the side wall (132) of the top plate assembly (130) with the cash box body (110), and enabling the opening (131) of the top plate assembly (130) to be communicated with the inlet and the outlet of the accumulation separation assembly (120);
c. arranging a driving component (140) in the accommodating space and connecting the driving component with the inner wall of the cash box body (110);
d. assembling a supporting plate component (150) in the accommodating space, and enabling the supporting plate component (150) to be in sliding connection with the cash box body (110); drivingly connecting the drive assembly (140) to the pallet assembly (150) such that the pallet assembly (150) can slide relative to the cassette body (110) to move towards or away from the top plate assembly (130);
e. connecting a cassette door assembly (170) with the inner wall of the cassette body (110);
f. connecting a side plate assembly (180) to the inner wall of the cash box body (110);
the banknote box body (110), the top plate assembly (130), the box door assembly (170) and the side plate assembly (180) can form the cuboid.
6. The banknote cassette assembly method of claim 5, wherein:
step g, arranging a reference plate (190) in the accommodating space and connecting the reference plate with the money box body (110); and enabling the pallet assembly (150) to be slip-fitted with the reference plate (190).
7. The banknote cassette assembly method of claim 5, wherein:
the money box body (110) comprises a plurality of connecting parts, the connecting parts are convexly arranged on the inner wall of the money box body (110), and connecting blind holes are formed in the connecting parts;
the assembly and separation assembly (120) is provided with an assembly through hole, and the assembly and separation assembly (120) penetrates through the assembly through hole through a fastener and then is connected with the connecting blind hole.
8. A banknote cassette assembly method as claimed in claim 5 wherein:
b further comprises fitting a locating shaft (134) to the top plate assembly (130) and the cassette body (110).
9. Method of assembling a banknote cassette according to claim 8, wherein step b further comprises inserting the limit plate (193) into the insertion slot (133).
10. A banknote cassette assembly method as claimed in claim 5 wherein:
a fixing plate (117) is arranged on the inner wall of the money box body (110), a blind hole is formed in the fixing plate (117), a plurality of connecting plates are arranged on the inner wall of the box door assembly (170), and through holes are formed in the connecting plates; and e, connecting the cash box body (110) and the box door assembly (170) with the blind hole in the fixing plate (117) by using a fastener to penetrate through the through hole in the connecting plate.
CN201810211621.2A 2018-03-13 2018-03-13 Cash box, cash recycling device and cash box assembling method Active CN110276882B (en)

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