CN114834715B - Conveying and labeling device for metal floor - Google Patents
Conveying and labeling device for metal floor Download PDFInfo
- Publication number
- CN114834715B CN114834715B CN202210754834.6A CN202210754834A CN114834715B CN 114834715 B CN114834715 B CN 114834715B CN 202210754834 A CN202210754834 A CN 202210754834A CN 114834715 B CN114834715 B CN 114834715B
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- plate
- labeling
- workpiece
- suction head
- fixing plate
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65C—LABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
- B65C9/00—Details of labelling machines or apparatus
- B65C9/02—Devices for moving articles, e.g. containers, past labelling station
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65C—LABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
- B65C9/00—Details of labelling machines or apparatus
- B65C9/06—Devices for presenting articles in predetermined attitude or position at labelling station
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65C—LABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
- B65C9/00—Details of labelling machines or apparatus
- B65C9/08—Label feeding
- B65C9/18—Label feeding from strips, e.g. from rolls
- B65C9/1865—Label feeding from strips, e.g. from rolls the labels adhering on a backing strip
- B65C9/1876—Label feeding from strips, e.g. from rolls the labels adhering on a backing strip and being transferred by suction means
- B65C9/1884—Label feeding from strips, e.g. from rolls the labels adhering on a backing strip and being transferred by suction means the suction means being a movable vacuum arm or pad
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65C—LABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
- B65C9/00—Details of labelling machines or apparatus
- B65C9/20—Gluing the labels or articles
- B65C9/22—Gluing the labels or articles by wetting, e.g. by applying liquid glue or a liquid to a dry glue coating
- B65C9/2273—Gluing the labels or articles by wetting, e.g. by applying liquid glue or a liquid to a dry glue coating using wipers, pallets or segments
- B65C9/2278—Applying the liquid on the article
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65C—LABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
- B65C9/00—Details of labelling machines or apparatus
- B65C9/26—Devices for applying labels
- B65C9/30—Rollers
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65C—LABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
- B65C9/00—Details of labelling machines or apparatus
- B65C9/0015—Preparing the labels or articles, e.g. smoothing, removing air bubbles
- B65C2009/0059—Preparing the articles
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Labeling Devices (AREA)
Abstract
The invention relates to the technical field of plate conveying, in particular to a conveying and labeling device for a metal floor. The invention provides a conveying and labeling device for a metal floor, which comprises: the rotary labeling machine comprises a workbench, a support plate, a film rolling part, a rotary feeding part, a sliding part and an adsorption labeling part; the adsorption labeling part comprises: a labeling fixing plate, a suction head plate, a vertical cylinder, an inclined cylinder, a roller assembly and a cleaning gluing block; when the device works, the sliding part absorbs the label at the upper end of the film rolling part at the lower end of the sucker plate; the suction head plate rotates downwards by taking a hinge point at the position of the suction head tilting mechanism as an axis, so that the end surface of the cleaning gluing block is abutted against the upper surface of the workpiece; the cleaning gluing block is extruded by the workpiece to slide inwards, and the cleaning gluing block can clean dust on the surface of the workpiece; the cleaning gluing block moves reversely to push the workpiece to move towards the film winding part so that the workpiece is propped against the side wall of the rotary feeding part; the roller components synchronously move downwards and horizontally move along with the labeling fixing plate to compact the label.
Description
Technical Field
The invention relates to the technical field of plate conveying, in particular to a conveying and labeling device for a metal floor.
Background
There are many classifications of floors, classified by structure: solid wood floors, laminate wood floors, three-layer solid wood laminate floors, bamboo and wood floors, anti-corrosion floors, cork floors, and the most popular multilayer solid wood laminate floors; classified by use are: household, commercial, antistatic floors, outdoor floors, floors dedicated to stage dancing, floors dedicated to sports stadiums, floors dedicated to track and field, etc.; after the production of the plate of each manufacturer is finished, a label is pasted on the surface of the plate to indicate the type and the manufacturer information of the plate.
When the existing labeling machine is used for labeling the surface of a plate, only a label is attached to the surface of a workpiece and is compacted, possible particle dust and the like on the surface of the plate-type workpiece are ignored, the particle dust on the surface of the workpiece is blown off in a blowing mode, the concentration of the dust on a labeling station is high, and the final labeling fixing effect is poor. Therefore, it is necessary to develop a conveying and labeling device for metal floors.
Disclosure of Invention
The invention aims to provide a conveying and labeling device for a metal floor.
In order to solve the above technical problems, the present invention provides a conveying and labeling device for a metal floor, comprising: the label film sticking device comprises a workbench, a supporting plate, a film rolling part, a rotary feeding part, a sliding part and an adsorption labeling part, wherein the supporting plate is vertically fixed on the workbench, the film rolling part is rotatably arranged on the side wall of the supporting plate, and the film rolling part is suitable for unreeling and reeling a label bottom film;
the rotary feeding part is rotatably arranged at one end of the workbench, which is far away from the supporting plate, and is suitable for adsorbing and fixing a workpiece and rotating in a reciprocating manner so as to enable the workpiece to be labeled;
the sliding part is arranged at the upper end of the supporting plate in a sliding manner, the adsorption labeling part is arranged on the side wall of the sliding part in a lifting manner, and the adsorption labeling part is suitable for adsorbing a label and is attached to the surface of a workpiece;
the adsorption labeling part comprises: the labeling device comprises a labeling fixing plate, a suction head plate, a vertical cylinder, an inclined cylinder, a roller assembly and a cleaning gluing block, wherein the labeling fixing plate is perpendicular to the supporting plate and is fixed at the movable end of the sliding part;
the vertical cylinder is fixed on the side wall of the labeling fixing plate, a suction head tilting mechanism is fixed at the end part of a piston rod of the vertical cylinder, and one end of the suction head plate is hinged to the lower end of the suction head tilting mechanism;
the inclined cylinder is fixed on the side wall of the suction head inclining mechanism, and the end part of a piston rod of the inclined cylinder is hinged to the other end of the suction head plate;
the roller assembly is arranged on one side, away from the vertical cylinder, of the labeling fixing plate in a lifting mode, and is suitable for compacting labels;
the suction head plate is suitable for adsorbing a label and attaching the label to the upper surface of a workpiece;
the cleaning gluing block is slidably arranged at one end, close to the rotary feeding part, of the suction head plate.
Furthermore, the suction head plate is rectangular, a plurality of rows of negative pressure tubes are arranged on the suction head plate at equal intervals, and each negative pressure tube is communicated with a negative pressure air pump through a suction tube;
the lower end face of the suction head plate is provided with a plurality of negative pressure holes communicated with the negative pressure pipe, and a label can be adsorbed at the lower end of the suction head plate through the negative pressure holes when the negative pressure air pump works.
Furthermore, a sliding groove is formed in one end, close to the rotary feeding part, of the suction head plate, and the cleaning gluing block is arranged in the sliding groove in a sliding manner;
the upper top surface of the sliding groove is provided with a plurality of dust suction grooves which are communicated with the negative pressure pipe; wherein
The suction head plate drives the cleaning gluing block to move towards the workpiece, when the workpiece extrudes the cleaning gluing block to retract and slide inwards, the side wall of the suction head plate can scrape dust particles on the upper surface of the workpiece, and the dust grooves can suck the dust particles left on the upper surface of the workpiece away.
Further, the clearance rubber coating piece includes: the rubber hose cleaning device comprises a cleaning block, a rubber hose and a plurality of compression springs, wherein the cleaning block is in a long strip shape and is hollow inside;
an inclined surface is arranged at one end, close to the rotary feeding part, of the cleaning block, a sliding groove matched with the extrusion block is formed in the lower end of the inclined surface, the extrusion block is arranged in the sliding groove in a telescopic sliding mode, and the sliding groove is communicated with the rubber delivery pipe;
the rubber conveying pipe is fixed on one side wall of the cleaning block and is suitable for injecting rubber into the cleaning block;
the inner end part of the extrusion block is T-shaped, an extrusion spring is fixed at the inner end part of the extrusion block, and the extrusion block is suitable for opening or closing the chute; one end of the compression spring is fixed at one end of the cleaning block, which is far away from the inclined surface, and the other end of the compression spring is fixed on the side wall of the sliding groove; wherein
The inclined cylinder pushes the suction head plate to rotate downwards until the extrusion block abuts against the upper surface of the workpiece, and the workpiece extrudes the extrusion block to retract and slide towards the sliding groove;
the inclined cylinder continues to push so that the workpiece extrudes the cleaning block to slide towards the sliding groove until the side wall of the suction head plate is abutted against the upper surface of the workpiece;
horizontally driving the suction head plate to enable the side wall of the suction head plate to scrape dust on the upper surface of a workpiece;
the cleaning block coats glue on the upper surface of the cleaned workpiece through the sliding groove.
Furthermore, a plurality of limiting grooves are formed in the cleaning block at equal intervals, and a plurality of sliding strips matched with the limiting grooves are fixed on the top wall of each sliding groove.
Further, the roller assembly includes: the labeling device comprises a roller cylinder, a roller support and a rolling wheel, wherein the roller cylinder is fixed on one side of the labeling fixing plate, which is far away from the vertical cylinder, the roller support is fixed at the movable end of the roller cylinder, and the rolling wheel is rotatably arranged at the lower end of the roller support; wherein
After the label is placed on the workpiece by the suction head plate, the rolling wheel is driven by the roller wheel cylinder to move downwards to abut against the workpiece, and the labeling fixing plate moves horizontally to enable the rolling wheel to compact the label on the upper surface of the workpiece.
Further, the sliding portion includes: the transverse fixing plate is fixed at the upper end of the supporting plate, the first motor is fixed at one end of the transverse fixing plate, a first threaded screw rod is fixed at the end of a rotating shaft of the first motor, and the first threaded screw rod is arranged along the length direction of the transverse fixing plate;
the longitudinal fixing plate is perpendicular to the transverse fixing plate, the longitudinal fixing plate is arranged above the workbench,
a first thread sliding block matched with the first thread screw rod is fixed at the lower end of the longitudinal fixing plate;
the second motor is fixed at one end of the longitudinal fixing plate, a second threaded screw rod is fixed at the end part of a rotating shaft of the second motor, the second threaded screw rod is arranged along the length direction of the longitudinal fixing plate, a second threaded sliding block is sleeved on the outer wall of the second threaded screw rod, and the labeling fixing plate is fixed on the second threaded sliding block; wherein
When the first motor drives the first threaded screw rod to rotate circumferentially, the longitudinal fixing plate can be driven to horizontally slide along the length direction of the transverse fixing plate;
when the second motor drives the second threaded screw rod to rotate in the circumferential direction, the second threaded slide block can be driven to horizontally slide along the length direction of the longitudinal fixing plate.
Further, the film winding portion includes: the unwinding disc is rotatably arranged on the side wall of the supporting plate, the winding roller is rotatably arranged on the side wall of the supporting plate, and the winding roller is arranged below the unwinding disc;
the bearing plate is vertically fixed on the side wall of the supporting plate, and the bearing plate is parallel to the workbench; wherein
The label is placed on unreeling the dish, and the label extends downwards from its one end after the loading board and twines on the wind-up roll.
Further, the rotary feeding part includes: the rotary machine is fixed on the workbench, the rotary disk is fixed at the end of a rotating shaft of the rotary machine, the two material carrying plates are fixed on the rotary disk in a mirror image manner, and the material carrying plates are suitable for fixing workpieces; the rotating motor is suitable for driving the rotating disc to rotate 180 degrees in a reciprocating mode, so that the material carrying plate can be fed intermittently.
Further, a plurality of breather pipes have been seted up to year flitch lateral wall, the breather pipe passes through hose and negative pressure air pump intercommunication, carry and set up a plurality of air vents that communicate with the breather pipe on the flitch, the negative pressure air pump passes through the air vent can adsorb the work piece on carrying the flitch.
The conveying and labeling device for the metal floor has the beneficial effects that the conveying and labeling device for the metal floor can rotate repeatedly through the rotating feeding part so as to feed and discharge workpieces. Through the setting of sliding part, can bear and adsorb subsides mark portion to the drive adsorbs a mark portion adjustment horizontal position that pastes. Through the setting of adsorbing subsides mark portion, adsorb mark portion is suitable for scraping off the impurity on workpiece surface to paint glue to the workpiece surface after the clearance, and adsorb the label and attach on workpiece surface.
Drawings
The invention is further illustrated with reference to the following figures and examples.
Fig. 1 is a perspective view of a preferred embodiment of a conveying and labeling device for metal floors according to the present invention;
fig. 2 is a first angular perspective view of the adsorption labeling part of the present invention;
fig. 3 is a second angular perspective view of the adsorption labeling part of the present invention;
FIG. 4 is a perspective view of the suction head plate of the present invention;
FIG. 5 is a perspective view of a clean-up applicator block of the present invention;
FIG. 6 is a perspective view of the extrusion block of the present invention;
FIG. 7 is a front view of the cleaning paste block of the present invention pressed by a work piece;
fig. 8 is a perspective view of the sliding portion of the present invention;
fig. 9 is a perspective view of the rotary charging section of the present invention.
In the figure:
1. a work table; 2. a support plate; 3. a film winding section; 31. placing the reel; 32. a wind-up roll; 33. a carrier plate;
4. a rotary feeding part; 41. a rotating electric machine; 42. rotating the disc; 43. a material carrying plate; 431. a breather pipe; 432. a vent hole;
5. a sliding part; 51. a transverse fixing plate; 52. a longitudinal fixing plate; 53. a first motor; 54. a second motor; 55. a first threaded lead screw; 56. a second threaded screw; 57. a first threaded slider; 58. a second threaded slider;
6. an adsorption labeling part; 61. labeling a fixing plate; 62. a suction head plate; 621. a sliding groove; 622. a dust collection groove; 623. a negative pressure tube; 624. a negative pressure hole; 625. a slide bar; 63. a vertical cylinder; 64. an inclination cylinder; 65. a roller assembly; 651. a roller cylinder; 652. a roller bracket; 653. a rolling wheel;
66. cleaning the gluing blocks; 661. cleaning the block; 662. a rubber delivery pipe; 663. a compression spring; 664. a limiting groove; 665. an inclined surface; 666. extruding the block; 667. a chute.
Detailed Description
The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic views illustrating only the basic structure of the present invention in a schematic manner, and thus show only the constitution related to the present invention.
As shown in fig. 1 to 9, the present invention provides a conveying and labeling device for metal floor, comprising: the film winding machine comprises a workbench 1, a support plate 2, a film winding part 3, a rotary feeding part 4, a sliding part 5 and an adsorption labeling part 6. The table 1 is adapted to mount the support plate 2 and the rotary loading portion 4. The support plate 2 is adapted to support the film winding portion 3 and the sliding portion 5. The film rolling part 3 is suitable for rolling and unrolling the label base film. The rotary feeding part 4 is adapted to adsorb and fix the workpiece and rotate reciprocally to move the workpiece to below the adsorption labeling part 6. The sliding part 5 is suitable for driving the adsorption labeling part 6 to slide horizontally. The adsorption labeling part 6 is suitable for adsorbing and attaching labels on the surface of a workpiece. With respect to the above components, detailed description is given below.
Working table 1
The worktable 1 is arranged on a horizontal plane, the worktable 1 can be used as a mounting base of the labeling machine shown in the embodiment, and the worktable 1 is suitable for mounting the supporting plate 2 and the rotary feeding part 4.
Supporting plate 2
The supporting plate 2 is vertically fixed on the workbench 1. The support plate 2 is adapted to support the film winding portion 3 and the sliding portion 5.
Roll up the rotatable setting of membrane portion 3 and be in 2 lateral walls of backup pad, roll up membrane portion 3 and be suitable for unreeling and rolling up label basement membrane.
The structure of the film winding portion 3 will be described specifically below, and the film winding portion 3 includes: an unwinding reel 31, a take-up roll 32 and a carrier plate 33. The unreeling disc 31 is rotatably arranged on the side wall of the supporting plate 2, and a label roll is placed on the unreeling roller. The winding roller 32 is rotatably arranged on the side wall of the supporting plate 2, and the winding roller 32 is arranged below the unwinding disc 31. The free end of the label roll on the unreeling roller finally extends to the reeling roller 32, the label roll is fixed on the side wall of the reeling roller 32, and when the reeling roller 32 rotates axially, the label roll on the unreeling roller can be pulled to rotate axially by the tension of the label roll, so that the label roll is conveyed outwards. The bearing plate 33 is vertically fixed on the side wall of the supporting plate 2, and the bearing plate 33 is parallel to the workbench 1. The label passes through the carrier plate 33 and then extends downward from one end thereof to be wound on the take-up roll 32.
Rotatable setting of rotatory material loading portion 4 is in workstation 1 is kept away from the one end of backup pad 2, and rotatory material loading portion 4 is whole discoid, and 4 upper ends of rotatory material loading portion are suitable for placing the work piece to rotatory material loading portion 4 can adsorb fixed work piece and reciprocating rotation so that the work piece is pasted the mark.
The structure of the rotary feeding section 4 is described in detail below, and the rotary feeding section 4 includes: a rotating motor 41, a rotating disk 42 and two material carrying plates 43. The rotating motor 41 is fixed on the workbench 1, a shell of the rotating motor 41 is fixed on the workbench 1, and an output shaft of the rotating motor 41 faces upwards vertically. The rotating disc 42 is fixed at the end of the rotating shaft of the rotating motor 41, and the rotating disc 42 is adapted to carry two material carrying plates 43. Two material carrying plates 43 are fixed on the rotating disc 42 in a mirror image manner, and the material carrying plates 43 are suitable for fixing workpieces. The rotating motor 41 is suitable for driving the rotating disc 42 to rotate for 180 degrees in a reciprocating manner, so that the rotating disc 42 intermittently conveys and loads the workpieces on the material carrying plate 43.
In order to achieve the above effect, the side wall of the material carrying plate 43 is provided with a plurality of vent pipes 431, the vent pipes 431 are communicated with the negative pressure air pump through hoses, the material carrying plate 43 is provided with a plurality of vent holes 432 communicated with the vent pipes 431, and the negative pressure air pump can adsorb the workpiece on the material carrying plate 43 through the vent holes 432. Through the mode, after the workpiece is placed on the material carrying plate 43, the material carrying plate 43 adsorbs the workpiece and rotates 180 degrees along with the rotating disc 42 in the axial direction, and the workpiece moves to the position below the adsorption labeling part 6, so that the workpiece is labeled. After the labeling of the workpiece is finished, the material loading plate 43 drives the workpiece to rotate in the reverse direction for 180 degrees, the workpiece returns to the initial position, and the negative pressure air pump is closed, so that the material loading plate 43 loosens the workpiece, and the workpiece is quickly and conveniently loaded and unloaded.
Sliding part 5
The sliding part 5 is slidably arranged at the upper end of the supporting plate 2, and the sliding part 5 can bear the adsorption labeling part 6 and drive the adsorption labeling part 6 to adjust the horizontal position. In order to achieve the above-described effects, the sliding portion 5 includes: a transverse fixing plate 51, a longitudinal fixing plate 52, a first motor 53 and a second motor 54. The transverse fixing plate 51 is fixed on the upper end of the supporting plate 2, and the transverse fixing plate 51 is suitable for carrying a first motor 53 and a longitudinal fixing plate 52. The first motor 53 is fixed at one end of the transverse fixing plate 51, the rotating shaft of the first motor 53 is horizontally arranged, and the extending direction of the rotating shaft of the first motor 53 is parallel to the length direction of the transverse fixing plate 51. A first threaded screw 55 is fixed at the end of the rotating shaft of the first motor 53, the first threaded screw 55 is arranged along the length direction of the transverse fixing plate 51, and the other end of the first threaded screw is rotatably connected with the transverse fixing plate 51. The longitudinal fixing plate 52 and the transverse fixing plate 51 are perpendicular to each other, and the longitudinal fixing plate 52 is disposed above the worktable 1. A first threaded slider 57 adapted to the first threaded screw 55 is fixed to the lower end of the longitudinal fixing plate 52. When the first motor 53 is started, the longitudinal fixing plate 52 can be driven to horizontally slide along the length direction of the transverse fixing plate 51. Specifically, the first motor 53 drives the first threaded screw 55 to rotate axially, and since the first threaded slider 57 is engaged with the first threaded screw 55 and the longitudinal fixing plate 52 cannot rotate with the first threaded screw 55, the first threaded screw 55 drives the first threaded slider 57 to slide horizontally through a thread, so as to drive the longitudinal fixing plate 52 to slide horizontally. The second motor 54 is fixed at one end of the longitudinal fixing plate 52, the rotating shaft of the second motor 54 is horizontally arranged, and the extending direction of the rotating shaft of the second motor 54 is perpendicular to the length direction of the transverse fixing plate 51. A second threaded screw rod 56 is fixed at the end of the rotating shaft of the second motor 54, the second threaded screw rod 56 is arranged along the length direction of the longitudinal fixing plate 52, a second threaded slider 58 is sleeved on the outer wall of the second threaded screw rod 56, and the labeling fixing plate 61 is fixed on the second threaded slider 58. The second motor 54 can drive the second screw block 58 to horizontally slide along the length direction of the longitudinal fixing plate 52 through the second screw 56, as with the first screw 55 and the first screw 57.
Adsorption labeling part 6
Adsorb setting of subsides mark 6 liftable be in 5 lateral walls of sliding part, adsorb mark 6 that paste and be suitable for scraping the impurity on workpiece surface to paint glue to the workpiece surface after the clearance, and adsorb the label and attach on workpiece surface.
The structure of the adsorption label part 6 will be described in detail below, and the adsorption label part 6 includes: labeling fixing plate 61, suction head plate 62, vertical cylinder 63, inclined cylinder 64, roller assembly 65 and cleaning glue block 66. The labeling fixing plate 61 is perpendicular to the supporting plate 2, and the labeling fixing plate 61 is fixed on the second threaded sliding block 58. The second threaded slider 58 and the first threaded slider 57 enable the horizontal position of the labelling fixing plate 61 to be adjusted. The vertical cylinder 63 is fixed on the side wall of the labeling fixing plate 61, and a piston rod of the vertical cylinder 63 is arranged vertically downwards. A suction head tilting mechanism is fixed at the end of a piston rod of the vertical cylinder 63, and one end of the suction head plate 62 is hinged at the lower end of the suction head tilting mechanism. The inclined cylinder 64 is fixed on the side wall of the suction head inclining mechanism, a piston rod of the inclined cylinder 64 is arranged downwards vertically, and the end part of the piston rod of the inclined cylinder 64 is hinged at the other end of the suction head plate 62. When the tilting cylinder 64 is pneumatic, the piston rod can drive one end of the suction head plate 62 hinged with the tilting cylinder 64 to slide up and down, so that the suction head plate 62 swings up and down around one end hinged with the suction head tilting mechanism. The suction head plate 62 is adapted to absorb and adhere a label to an upper surface of a work piece. The roller assembly 65 is arranged on one side of the labeling fixing plate 61 far away from the vertical cylinder 63 in a lifting manner, and the roller assembly 65 is suitable for compacting labels. The cleaning glue block 66 is slidably disposed at an end of the suction head plate 62 close to the rotary feeding portion 4, and the cleaning glue block 66 can scrape off impurities on the surface of the workpiece before attaching the label to the workpiece. Through the setting of above-mentioned each part, the working process who adsorbs subsides mark portion 6 does: in operation, the sliding part 5 drives the labeling fixing plate 61 to slide horizontally, so as to absorb the label on the upper end of the film rolling part 3 to the lower end of the suction head plate 62. The tilting cylinder 64 pushes the head plate 62 to move downwards, so that the head plate 62 rotates downwards around a hinge point with the head tilting mechanism, and the end face of the cleaning glue block 66 is pressed against the upper surface of the workpiece. The labeling fixing plate 61 is horizontally moved so that the cleaning and gluing block 66 can glue the surface of the cleaned workpiece. After the cleaning gluing block 66 moves to the end part of the protruding workpiece, the cleaning gluing block 66 moves reversely to push the workpiece to move towards the film rolling part 3, so that the workpiece is abutted against the side wall of the rotary feeding part 4. After the suction head plate 62 is moved downward to place the label on the upper end of the workpiece, the roller assembly 65 is simultaneously moved downward and horizontally moved along with the label fixing plate 61 to compact the label.
In order to achieve the effect that the suction head plate 62 adsorbs the label, the suction head plate 62 is rectangular, a plurality of rows of negative pressure tubes 623 are arranged at equal intervals on the suction head plate 62, and each negative pressure tube 623 is communicated with a negative pressure air pump through a suction tube. The lower end surface of the suction head plate 62 is provided with a plurality of negative pressure holes 624 communicated with the negative pressure pipe 623. The suction head plate 62 moves to the upper side of the label, the label can be adsorbed at the lower end of the suction head plate 62 through the negative pressure holes 624 when the negative pressure air pump works, and the suction head plate 62 can drive the label belt to move horizontally when the suction head plate 62 moves horizontally under the driving of the labeling fixing plate 61.
In order to realize that the suction head plate 62 rotates to the cleaning coating block 66 and inclines downwards to scrape off dust particles on the surface of the workpiece, the dust suction groove 622 sucks away the dust particles left by the cleaning coating block 66, a sliding groove 621 is formed in one end, close to the rotary feeding part 4, of the suction head plate 62, and the cleaning coating block 66 is slidably arranged in the sliding groove 621. A plurality of suction grooves 622 have been seted up to the top surface on the sliding tray 621, suction groove 622 with negative pressure pipe 623 intercommunication, negative pressure hole 624 when producing the negative pressure adsorption label area, also produce the negative pressure in the suction groove 622, along with suction head board 62 drive clearance rubberizing piece 66 removes to the work piece, when work piece extrusion clearance rubberizing piece 66 inwards shrinks and slides, the dust particulate matter of work piece upper surface can be scraped to suction head board 62 lateral wall, suction groove 622 can be taken away the dust particulate matter that the work piece upper surface was left out. In addition, in order to prevent that the dust particulate matter from getting into the negative pressure air pump, optionally, be provided with the filter screen between negative pressure pipe 623 and the negative pressure air pump, the filter screen can filter the dust particulate matter to prevent that the dust particulate matter from passing through the hose and getting into the negative pressure air pump.
In order to realize the effect of the cleaning glue block 66 in applying glue on the surface of the cleaned workpiece, the cleaning glue block 66 includes: a cleaning block 661, a rubber delivery pipe 662 and a plurality of compression springs 663. The cleaning block 661 is in a shape of a long strip, and the cleaning block 661 is hollow. Glue is stored in the cleaning block 661. One end of the cleaning block 661 close to the rotary feeding part 4 is provided with an inclined plane 665, and a sharp angle is formed between the lower end of the inclined plane 665 and the bottom wall of the cleaning block 661. The cleaning block 661 abuts against the upper surface of the workpiece through a sharp corner. A spout 667 with extrusion piece 666 looks adaptation is seted up to the lower extreme of inclined plane 665, the setting of the scalable slip of extrusion piece 666 is in the spout 667, spout 667 with rubber delivery pipe 662 intercommunication. In order to prevent the squeezing block 666 from escaping from the chute 667, the squeezing block 666 is shaped like a "T", and the width of one end of the squeezing block 666 on the inner side of the chute 667 is larger than the opening width of the chute 667, a squeezing spring is fixed on the inner end of the squeezing block 666, and the squeezing block 666 is suitable for opening or closing the chute 667. The rubber delivery pipe 662 is fixed on one side wall of the cleaning block 661, the rubber delivery pipe 662 is communicated with an inner cavity of the cleaning block 661, and the rubber delivery pipe 662 is suitable for injecting rubber into the cleaning block 661. One end of the compression spring 663 is fixed at one end of the cleaning block 661 far away from the inclined surface 665, and the other end of the compression spring 663 is fixed at the side wall of the sliding groove 621. The inclined cylinder 64 pushes the suction head plate 62 to rotate downwards until the extrusion block 666 abuts against the upper surface of the workpiece, and the workpiece extrudes the extrusion block 666 to shrink and slide towards the inside of the chute 667, so that the chute 667 is opened, and glue can flow out of the chute 667. The tilting cylinder 64 continues to push the workpiece to press the cleaning block 661 to slide in the sliding slot 621 until the side wall of the suction head plate 62 abuts against the upper surface of the workpiece. The suction head plate 62 is driven horizontally so that the side walls of the suction head plate 62 can scrape off dust on the upper surface of the workpiece. The cleaning block 661 paints glue on the upper surface of the cleaned workpiece through the chute 667.
In order to guide the sliding direction of the cleaning block 661, so that the cleaning block 661 is parallel to the longitudinal direction of the longitudinal fixing plate 52, a plurality of limiting grooves 664 are formed on the cleaning block 661 at equal intervals, and a plurality of sliding bars 625 matched with the limiting grooves 664 are fixed on the top wall of the sliding groove 621. Through the cooperation of slider 625 and sliding tray 621, can guide clearance piece 661's slip direction to guarantee that clearance piece 661 evenly paints glue to the work piece upper surface.
To effect compaction of the label on the upper surface of the workpiece, the roller assembly 65 includes: a roller cylinder 651, a roller bracket 652, and a roller wheel 653. The roller cylinder 651 is fixed on one side of the labeling fixing plate 61 away from the vertical cylinder 63, and a piston rod of the roller cylinder 651 is arranged downwards. The roller bracket 652 is fixed at the movable end of the roller cylinder 651, and the rolling wheel 653 is rotatably disposed at the lower end of the roller bracket 652. After the suction head plate 62 places the label on the workpiece, the suction head plate 62 rotates to the horizontal setting, meanwhile, the suction head plate 62 loosens the label, the roller cylinder 651 drives the rolling wheel 653 to move downwards to be against the workpiece, and the labeling fixing plate 61 moves horizontally to enable the rolling wheel 653 to compact the label on the upper surface of the workpiece.
In light of the foregoing description of the preferred embodiment of the present invention, it is to be understood that various changes and modifications may be made by one skilled in the art without departing from the spirit and scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.
Claims (10)
1. The utility model provides a metal floor is with carrying subsides mark device which characterized in that includes:
the label film sticking device comprises a workbench (1), a supporting plate (2), a film rolling part (3), a rotary feeding part (4), a sliding part (5) and an adsorption labeling part (6), wherein the supporting plate (2) is vertically fixed on the workbench (1), the film rolling part (3) is rotatably arranged on the side wall of the supporting plate (2), and the film rolling part (3) is suitable for unreeling and reeling a label bottom film;
the rotary feeding part (4) is rotatably arranged at one end, far away from the supporting plate (2), of the workbench (1), and the rotary feeding part (4) is suitable for adsorbing and fixing a workpiece and rotating in a reciprocating manner so as to enable the workpiece to be labeled;
the sliding part (5) is arranged at the upper end of the supporting plate (2) in a sliding manner, the adsorption labeling part (6) is arranged on the side wall of the sliding part (5) in a lifting manner, and the adsorption labeling part (6) is suitable for adsorbing a label and is attached to the surface of a workpiece;
the adsorption labeling part (6) comprises: a labeling fixing plate (61), a suction head plate (62), a vertical cylinder (63), an inclined cylinder (64), a roller assembly (65) and a cleaning gluing block (66), wherein the labeling fixing plate (61) is perpendicular to the supporting plate (2), and the labeling fixing plate (61) is fixed at the movable end of the sliding part (5);
the vertical cylinder (63) is fixed on the side wall of the labeling fixing plate (61), a suction head tilting mechanism is fixed at the end part of a piston rod of the vertical cylinder (63), and one end of the suction head plate (62) is hinged to the lower end of the suction head tilting mechanism;
the inclination cylinder (64) is fixed on the side wall of the suction head inclination mechanism, and the end part of a piston rod of the inclination cylinder (64) is hinged at the other end of the suction head plate (62);
the roller assembly (65) is arranged on one side, away from the vertical cylinder (63), of the labeling fixing plate (61) in a lifting mode, and the roller assembly (65) is suitable for compacting labels;
the suction head plate (62) is suitable for absorbing a label and attaching the label to the upper surface of a workpiece;
the cleaning glue coating block (66) is arranged at one end of the sucker plate (62) close to the rotary feeding part (4) in a sliding mode.
2. The conveying and labeling device for metal floor boards according to claim 1,
the suction head plate (62) is rectangular, a plurality of rows of negative pressure tubes (623) are arranged on the suction head plate (62) at equal intervals, and each negative pressure tube (623) is communicated with a negative pressure air pump through a suction tube;
the lower end face of the suction head plate (62) is provided with a plurality of negative pressure holes (624) communicated with the negative pressure pipe (623), and a label can be adsorbed at the lower end of the suction head plate (62) through the negative pressure holes (624) when the negative pressure air pump works.
3. The conveying and labeling device for metal floors as recited in claim 2,
one end, close to the rotary feeding part (4), of the suction head plate (62) is provided with a sliding groove (621), and the cleaning gluing block (66) is arranged in the sliding groove (621) in a sliding manner;
a plurality of dust suction grooves (622) are formed in the upper top surface of the sliding groove (621), and the dust suction grooves (622) are communicated with the negative pressure pipe (623); wherein
Suction head board (62) drive clearance rubberizing piece (66) move to the work piece, and when work piece extrusion clearance rubberizing piece (66) inwards shrink and slide, the dust particulate matter of work piece upper surface can be scraped to suction head board (62) lateral wall, dust absorption groove (622) can be taken away the dust particulate matter suction of work piece upper surface omission.
4. The conveying and labeling device for metal floors as recited in claim 3,
the clean-up applicator block (66) comprising: the cleaning device comprises a cleaning block (661), a rubber delivery pipe (662) and a plurality of compression springs (663), wherein the cleaning block (661) is in a long strip shape, and the interior of the cleaning block (661) is hollow;
one end, close to the rotary feeding part (4), of the cleaning block (661) is provided with an inclined surface (665), the lower end of the inclined surface (665) is provided with a sliding groove (667) matched with the extrusion block (666), the extrusion block (666) is arranged in the sliding groove (667) in a telescopic sliding mode, and the sliding groove (667) is communicated with the rubber delivery pipe (662);
the rubber conveying pipe (662) is fixed on one side wall of the cleaning block (661), and the rubber conveying pipe (662) is suitable for injecting rubber into the cleaning block (661);
the inner end part of the extrusion block (666) is in a T shape, an extrusion spring is fixed at the inner end part of the extrusion block (666), and the extrusion block (666) is suitable for opening or closing the chute (667); one end of the compression spring (663) is fixed at one end, far away from the inclined surface (665), of the cleaning block (661), and the other end of the compression spring (663) is fixed on the side wall of the sliding groove (621); wherein
The inclined cylinder (64) pushes the sucker plate (62) to rotate downwards until the extrusion block (666) is abutted against the upper surface of the workpiece, and the workpiece extrudes the extrusion block (666) to retract and slide towards the inside of the sliding groove (667);
the inclined cylinder (64) continues to push so that the workpiece extrudes the cleaning block (661) to slide towards the sliding groove (621) until the side wall of the suction head plate (62) is abutted against the upper surface of the workpiece;
horizontally driving the suction head plate (62) to enable the side wall of the suction head plate (62) to scrape dust on the upper surface of a workpiece;
the cleaning block (661) paints glue on the upper surface of the cleaned workpiece through the chute (667).
5. The conveying and labeling device for metal floors as recited in claim 4,
a plurality of spacing grooves (664) are arranged on the cleaning block (661) at equal intervals, and a plurality of sliding strips (625) matched with the spacing grooves (664) are fixed on the top wall of the sliding groove (621).
6. The conveying and labeling device for metal floors as recited in claim 5,
the roller assembly (65) includes: the labeling device comprises a roller cylinder (651), a roller bracket (652) and a rolling wheel (653), wherein the roller cylinder (651) is fixed on one side of the labeling fixing plate (61) far away from the vertical cylinder (63), the roller bracket (652) is fixed at the movable end of the roller cylinder (651), and the rolling wheel (653) is rotatably arranged at the lower end of the roller bracket (652); wherein
After the label is placed on the workpiece by the suction head plate (62), the roller air cylinder (651) drives the rolling wheel (653) to move downwards to be abutted against the workpiece, and the labeling fixing plate (61) moves horizontally so that the rolling wheel (653) presses the label on the upper surface of the workpiece.
7. The conveying and labeling device for metal floors as recited in claim 6,
the sliding part (5) comprises: the device comprises a transverse fixing plate (51), a longitudinal fixing plate (52), a first motor (53) and a second motor (54), wherein the transverse fixing plate (51) is fixed at the upper end of the supporting plate (2), the first motor (53) is fixed at one end of the transverse fixing plate (51), a first threaded screw rod (55) is fixed at the end part of a rotating shaft of the first motor (53), and the first threaded screw rod (55) is arranged along the length direction of the transverse fixing plate (51);
the longitudinal fixing plate (52) is perpendicular to the transverse fixing plate (51), the longitudinal fixing plate (52) is arranged above the workbench (1),
a first threaded sliding block (57) matched with the first threaded screw rod (55) is fixed at the lower end of the longitudinal fixing plate (52);
the second motor (54) is fixed at one end of the longitudinal fixing plate (52), a second threaded screw rod (56) is fixed at the end part of a rotating shaft of the second motor (54), the second threaded screw rod (56) is arranged along the length direction of the longitudinal fixing plate (52), a second threaded sliding block (58) is sleeved on the outer wall of the second threaded screw rod (56), and the labeling fixing plate (61) is fixed on the second threaded sliding block (58); wherein
When the first motor (53) drives the first threaded screw rod (55) to rotate in the circumferential direction, the longitudinal fixing plate (52) can be driven to horizontally slide along the length direction of the transverse fixing plate (51);
when the second motor (54) drives the second threaded screw rod (56) to rotate in the circumferential direction, the second threaded sliding block (58) can be driven to horizontally slide along the length direction of the longitudinal fixing plate (52).
8. The conveying and labeling device for metal floor boards according to claim 7,
the film winding section (3) includes: the winding device comprises a winding releasing disc (31), a winding roller (32) and a bearing plate (33), wherein the winding releasing disc (31) is rotatably arranged on the side wall of the supporting plate (2), the winding roller (32) is rotatably arranged on the side wall of the supporting plate (2), and the winding roller (32) is arranged below the winding releasing disc (31);
the bearing plate (33) is vertically fixed on the side wall of the supporting plate (2), and the bearing plate (33) is parallel to the workbench (1); wherein
The label roll is placed on the unwinding disc (31), and the label passes through the bearing plate (33) and then extends downwards from one end of the label roll to be wound on the winding roller (32).
9. The conveying and labeling device for metal floors as recited in claim 8,
the rotary feeding part (4) comprises: the rotary table comprises a rotary motor (41), a rotary disk (42) and two material carrying plates (43), wherein the rotary motor (41) is fixed on the working table (1), the rotary disk (42) is fixed at the end part of a rotating shaft of the rotary motor (41), the two material carrying plates (43) are fixed on the rotary disk (42) in a mirror image mode, and the material carrying plates (43) are suitable for fixing workpieces; the rotating motor (41) is suitable for driving the rotating disc (42) to rotate for 180 degrees in a reciprocating mode so as to enable the material carrying plate (43) to be fed intermittently.
10. The conveying and labeling device for metal floors as recited in claim 9,
the side wall of the material carrying plate (43) is provided with a plurality of vent pipes (431), the vent pipes (431) are communicated with the negative pressure air pump through hoses, the material carrying plate (43) is provided with a plurality of vent holes (432) communicated with the vent pipes (431), and the negative pressure air pump can adsorb a workpiece on the material carrying plate (43) through the vent holes (432).
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CN115519891B (en) * | 2022-10-24 | 2024-05-31 | 昆山市曙光照明器材有限公司 | Water transfer printing applique machine |
CN116002177A (en) * | 2022-12-22 | 2023-04-25 | 上海直川电子科技有限公司 | Label paper applying device |
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