CN209834100U - Mirror surface aluminum plate deep-processing pad pasting device - Google Patents
Mirror surface aluminum plate deep-processing pad pasting device Download PDFInfo
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- CN209834100U CN209834100U CN201920638848.5U CN201920638848U CN209834100U CN 209834100 U CN209834100 U CN 209834100U CN 201920638848 U CN201920638848 U CN 201920638848U CN 209834100 U CN209834100 U CN 209834100U
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Abstract
The utility model discloses a mirror surface aluminum plate deep processing film pasting device, which comprises a frame, a film pasting frame, a workpiece conveying mechanism and a film paper conveying mechanism, wherein the frame is provided with a static removing plate; the bottom end of the static electricity removing plate is provided with a membrane paper inlet; the starting end of the workpiece conveying mechanism is connected with the inlet of the membrane paper; the film paper conveying mechanism comprises a winding roller, a guide roller and a recovery roller, and the winding roller is pivoted to the top end of the static removing plate; the guide roller is used for guiding the film paper output by the winding roller to be conveyed to the film paper inlet through the static removing plate so as to convey the film paper to the upper part of the conveying end face of the workpiece conveying mechanism; the recovery roller is pivoted at the tail end of the workpiece conveying mechanism and receives the film paper output by the guide roller so that the film paper between the guide roller and the recovery roller forms a film pasting section; the film sticking frame is arranged above the conveying end surface of the workpiece conveying mechanism and can move along the height direction of the rack; the bottom of the film sticking frame is provided with a rubber layer. The utility model discloses the static of membrane paper when can effectively get rid of the pad pasting makes the pad pasting effect better.
Description
Technical Field
The utility model relates to a pad pasting equipment technical field especially relates to a mirror surface aluminum plate deep-processing pad pasting device.
Background
At present, a mirror aluminum plate refers to an aluminum plate processed by various methods such as rolling, polishing and the like to make the surface of the plate show a mirror effect. After the mirror aluminum plate is processed, when the mirror aluminum plate is produced, a membrane needs to be attached to the mirror aluminum plate to protect the mirror aluminum plate, so that the surface of the mirror aluminum plate is not scratched in the transportation process. In the process of film pasting, a sticky film is generally pasted with the mirror aluminum plate in the pressing process so that the sticky film is pasted on the mirror aluminum plate, and the film paper bearing the sticky film is recycled. However, since the film paper is wound around the roller, that is, the film paper is in layer-by-layer contact, static electricity is easily generated by friction, dust is easily adhered during the transportation process, and the film sticking operation is affected.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model aims to provide a mirror surface aluminum plate deep-processing pad pasting device, the static of membrane paper when it can effectively get rid of the pad pasting makes the pad pasting effect better.
The purpose of the utility model is realized by adopting the following technical scheme:
a film sticking device for deep processing of a mirror surface aluminum plate comprises a rack, a film sticking frame, a workpiece conveying mechanism and a film paper conveying mechanism, wherein the film sticking frame, the workpiece conveying mechanism and the film paper conveying mechanism are all arranged on the rack; the bottom end of the static electricity removing plate is provided with a membrane paper inlet; the starting end of the workpiece conveying mechanism is connected with the inlet of the membrane paper; the film paper conveying mechanism comprises a winding roller, a guide roller and a recovery roller, and the winding roller is pivoted to the top end of the static removing plate; the rolling roller is used for rolling the film paper, and the guide roller is pivoted on the rack and positioned between the film paper inlet and the starting end of the workpiece conveying mechanism; the guide roller is used for guiding the film paper output by the winding roller to be conveyed to the film paper inlet through the static removing plate so as to convey the film paper to the upper part of the conveying end face of the workpiece conveying mechanism; the recovery roller is pivoted to the tail end of the workpiece conveying mechanism and receives the film paper output by the guide roller so that the film paper between the guide roller and the recovery roller forms a film pasting section; the film sticking frame is arranged above the conveying end face of the workpiece conveying mechanism and can move along the height direction of the rack; the bottom of the film sticking frame is provided with a rubber layer.
Preferably, the static electricity removing plate is provided with a plurality of conductive bumps, and the conductive bumps are arranged at intervals along the width direction of the static electricity removing plate.
Preferably, the conductive bump is made of a conductive material.
Preferably, the frame is provided with a static removing roller which is pivoted above the furling roller and forms a film paper conveying interval with the furling roller at intervals; the end part of the winding roller is synchronously connected with the end part of the static removing roller through a gear mechanism.
Preferably, the film paper conveying mechanism further comprises a furling roller driving assembly, the furling roller driving assembly comprises a first motor, a first synchronous belt and two first synchronous wheels, and the two first synchronous wheels are pivoted on the rack; the first synchronous belt is synchronously wound outside the two first synchronous wheels; the machine body of the first motor is arranged on the frame; a rotating shaft of the first motor is synchronously connected with one of the first synchronizing wheels; the other first synchronous wheel is fixedly connected with the furling roller.
Preferably, the film paper conveying mechanism further comprises a recovery roller driving assembly, the recovery roller driving assembly comprises a second motor, a second synchronous belt and two second synchronous wheels, and the two second synchronous wheels are pivoted on the rack; the second synchronous belts are synchronously wound outside the two second synchronous wheels; the machine body of the second motor is arranged on the rack; a rotating shaft of the second motor is synchronously connected with one of the second synchronizing wheels; and the other second synchronous wheel is fixedly connected with the recovery roller.
Compared with the prior art, the beneficial effects of the utility model reside in that: its membrane paper can get into the membrane paper entry before can destatic through destaticing the board, can effectively get rid of the static of membrane paper when the pad pasting, the membrane paper reachs work piece conveying mechanism's top after getting rid of the static, and the pad pasting frame downstream afterwards has the viscidity diaphragm laminating on work piece conveying mechanism's work piece on the membrane paper, retrieves the membrane paper with the roller, makes the pad pasting effect better, and degree of automation is high.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
In the figure: 10. a frame; 11. a static electricity removing plate; 111. a conductive bump; 112. a membrane paper inlet; 20. a film pasting frame; 21. rolling up the rod; 22. a guide roller; 23. a recovery roller; 24. a first synchronizing wheel; 25. a first synchronization belt; 26. a second synchronizing wheel; 27. a second synchronous belt; 28. a static electricity removing roller; 29. a gear mechanism; 30. a workpiece conveying mechanism.
Detailed Description
The invention will be further described with reference to the accompanying drawings and specific embodiments:
as shown in fig. 1, the mirror surface aluminum plate deep processing film pasting device comprises a frame 10, a film pasting frame 20, a workpiece conveying mechanism 30 and a film paper conveying mechanism, wherein the film pasting frame 20, the workpiece conveying mechanism 30 and the film paper conveying mechanism are all mounted on the frame 10.
Specifically, the frame 10 is provided with a static eliminating plate 11, a film paper inlet 112 is provided at the bottom end of the static eliminating plate 11, and the starting end of the workpiece conveying mechanism 30 is connected to the film paper inlet 112. The film paper conveying mechanism comprises a winding roller, a guide roller 22 and a recovery roller 23, the winding roller is pivoted to the top end of the static removing plate 11, and the winding roller 21 is used for winding film paper. The guide roller 22 is pivoted to the frame 10, and the guide roller 22 is located between the film paper inlet 112 and the starting end of the workpiece conveying mechanism 30. And the guide roller 22 is used for guiding the film paper output by the winding roller to be conveyed to the film paper inlet 112 through the static removing plate 11, so that the film paper is conveyed to the position above the conveying end face of the workpiece conveying mechanism 30.
In addition, the recovery roller 23 is pivoted to the end of the workpiece conveying mechanism 30, and the recovery roller 23 is used for receiving the film paper output by the guide roller 22 so that the film paper between the guide roller 22 and the recovery roller 23 forms a film pasting section. The film sticking frame 20 is arranged above the conveying end face of the workpiece conveying mechanism 30 and can move along the height direction of the rack 10; a rubber layer is arranged at the bottom end of the film sticking frame 20.
On the basis of the structure, use the utility model discloses a during mirror surface aluminum plate deep-processing pad pasting device, can roll up the membrane paper that bears the weight of viscidity diaphragm and establish on the roll-up roller, the free end of membrane paper is around on guide roller 22 through the membrane paper entry 112 of destaticizing board 11 bottom, the membrane paper on guide roller 22 is around on retrieving roller 23, make roll-up roller and retrieve roller 23 and rotate, place mirror surface aluminum plate at work piece conveying mechanism 30 simultaneously, work piece conveying mechanism 30 carries mirror surface aluminum plate to the pad pasting section below that the membrane paper between guide roller 22 and retrieve roller 23 formed, make pad pasting frame 20 downstream afterwards, pad pasting frame 20 downstream pastes viscidity diaphragm on mirror surface aluminum plate, accomplish the pad pasting operation, the pad pasting is accomplished the back, work piece conveying mechanism 30 carries mirror surface aluminum plate to the unloading position can. The film sticking operation is continuously performed by reciprocating in this way.
It should be noted that the film paper can be destaticized by the destaticizing plate 11 before entering the film paper inlet 112, the static electricity of the film paper during film pasting can be effectively removed, the film paper reaches above the workpiece conveying mechanism 30 after the static electricity is removed, then the film pasting frame 20 moves downwards to paste the sticky film on the film paper on the workpiece of the workpiece conveying mechanism 30, and the recovery roller 23 recovers the film paper, so that the film pasting effect is better, and the automation degree is high. And in the pad pasting process, the rubber layer at the bottom end of the pad pasting frame 20 is in contact with the membrane paper, namely in flexible contact, so that the mirror aluminum plate and the membrane are prevented from being damaged in the pad pasting process.
Of course, the up-and-down movement of the film sticking frame 20 can be realized by an air cylinder, the cylinder body of the air cylinder is fixedly connected to the frame 10, the piston rod of the air cylinder is fixedly connected to the film sticking frame 20, and the extension and retraction of the piston rod of the air cylinder can drive the up-and-down movement of the film sticking frame 20. In addition, the rubber layer may be formed of a rubber block bonded to the bottom end of the film frame 20.
Preferably, the static electricity removing plate 11 may further include a plurality of conductive bumps 111, the plurality of conductive bumps 111 may be spaced apart from each other in a width direction of the static electricity removing plate 11, and the conductive bumps 111 may contact the film paper during the transportation of the film paper to remove static electricity from the film paper, thereby removing static electricity.
More specifically, the conductive bump 111 may be made of a conductive material in the prior art. Of course, the conductive bumps 111 can be replaced by conductive brushes, and the static electricity can be removed.
Further, still can be equipped with destaticizing roller 28 on frame 10, with destaticizing roller 28 pin joint in the top of roll-up roller 21, but interval formation film paper transport interval between this destaticizing roller 28 and the roll-up roller, so, the film paper that the roll-up roller was drawn can carry the interval output through the film paper, and the static of film paper can carry out preliminary destaticizing through destaticizing roller 28, makes whole equipment destaticize the effect better. Specifically, the end of the take-up roller and the end of the static electricity removing roller 28 are synchronously connected through a gear mechanism 29, that is, a gear is arranged at the end of the take-up roller, and a gear is arranged at the end of the static electricity removing roller 28, and the two gears are meshed, so that the roll-up roller can drive the static electricity removing roller 28 to rotate by rotating.
The static removing roller 28 may be made of a static removing material according to the prior art.
Preferably, the film paper conveying mechanism in this embodiment may further include a take-up roller driving assembly, where the take-up roller driving assembly includes a first motor, a first synchronous belt 25 and two first synchronous wheels 24, and both the first synchronous wheels 24 are pivoted on the frame 10; the first synchronous belt 25 is synchronously wound outside the two first synchronous wheels 24; the body of the first motor is mounted on the frame 10; the rotating shaft of the first motor is synchronously connected with one of the first synchronizing wheels 24; the other first synchronous wheel 24 is fixedly connected with the furling roller, so that the first motor can drive one first synchronous wheel 24 to rotate, the other first synchronous wheel 24 can rotate under the transmission action of the first synchronous belt 25, and the furling roller fixedly connected with the first synchronous wheel is driven to rotate, and the stability is good.
Preferably, the film paper conveying mechanism further comprises a recovery roller driving assembly, the recovery roller driving assembly comprises a second motor, a second synchronous belt 27 and two second synchronous wheels 26, and the two second synchronous wheels 26 are both pivoted on the frame 10; the second synchronous belt 27 is synchronously wound outside the two second synchronous wheels 26; the body of the second motor is mounted on the frame 10; the rotating shaft of the second motor is synchronously connected with one of the second synchronous wheels 26; the other second synchronous wheel 26 is fixedly connected with the recovery roller 23, similarly, the second motor can drive one of the second synchronous wheels 26 to rotate, and the other second synchronous wheel 26 can rotate under the transmission action of the second synchronous belt 27, so as to drive the recovery roller 23 fixedly connected with the second synchronous wheel to rotate, and the stability is good.
Various other modifications and changes may be made by those skilled in the art based on the above-described technical solutions and concepts, and all such modifications and changes are intended to fall within the scope of the claims.
Claims (6)
1. A mirror surface aluminum plate deep processing film pasting device is characterized by comprising a rack, a film pasting frame, a workpiece conveying mechanism and a film paper conveying mechanism, wherein the film pasting frame, the workpiece conveying mechanism and the film paper conveying mechanism are all arranged on the rack; the bottom end of the static electricity removing plate is provided with a membrane paper inlet; the starting end of the workpiece conveying mechanism is connected with the inlet of the membrane paper; the film paper conveying mechanism comprises a winding roller, a guide roller and a recovery roller, and the winding roller is pivoted to the top end of the static removing plate; the rolling roller is used for rolling the film paper, and the guide roller is pivoted on the rack and positioned between the film paper inlet and the starting end of the workpiece conveying mechanism; the guide roller is used for guiding the film paper output by the winding roller to be conveyed to the film paper inlet through the static removing plate so as to convey the film paper to the upper part of the conveying end face of the workpiece conveying mechanism; the recovery roller is pivoted to the tail end of the workpiece conveying mechanism and receives the film paper output by the guide roller so that the film paper between the guide roller and the recovery roller forms a film pasting section; the film sticking frame is arranged above the conveying end face of the workpiece conveying mechanism and can move along the height direction of the rack; the bottom of the film sticking frame is provided with a rubber layer.
2. The mirror aluminum plate deep processing pad pasting device of claim 1, wherein the static elimination plate is provided with a plurality of conductive bumps, and the plurality of conductive bumps are arranged at intervals along the width direction of the static elimination plate.
3. The mirror aluminum plate deep processing pad pasting device of claim 2, wherein the conductive bump is made of conductive material.
4. The mirror aluminum plate deep processing film pasting device of claim 1, wherein the frame is provided with a static removing roller, the static removing roller is pivoted above the furling roller and forms a film paper conveying interval with the furling roller at an interval; the end part of the winding roller is synchronously connected with the end part of the static removing roller through a gear mechanism.
5. The mirror aluminum plate deep processing film pasting device of claim 1, wherein the film paper conveying mechanism further comprises a roll-up roller driving assembly, the roll-up roller driving assembly comprises a first motor, a first synchronous belt and two first synchronous wheels, and the two first synchronous wheels are both pivoted on the frame; the first synchronous belt is synchronously wound outside the two first synchronous wheels; the machine body of the first motor is arranged on the frame; a rotating shaft of the first motor is synchronously connected with one of the first synchronizing wheels; the other first synchronous wheel is fixedly connected with the furling roller.
6. The mirror aluminum plate deep processing film pasting device of claim 1, wherein the film paper conveying mechanism further comprises a recovery roller driving assembly, the recovery roller driving assembly comprises a second motor, a second synchronous belt and two second synchronous wheels, and the two second synchronous wheels are both pivoted on the frame; the second synchronous belts are synchronously wound outside the two second synchronous wheels; the machine body of the second motor is arranged on the rack; a rotating shaft of the second motor is synchronously connected with one of the second synchronizing wheels; and the other second synchronous wheel is fixedly connected with the recovery roller.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920638848.5U CN209834100U (en) | 2019-05-05 | 2019-05-05 | Mirror surface aluminum plate deep-processing pad pasting device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920638848.5U CN209834100U (en) | 2019-05-05 | 2019-05-05 | Mirror surface aluminum plate deep-processing pad pasting device |
Publications (1)
Publication Number | Publication Date |
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CN209834100U true CN209834100U (en) | 2019-12-24 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920638848.5U Expired - Fee Related CN209834100U (en) | 2019-05-05 | 2019-05-05 | Mirror surface aluminum plate deep-processing pad pasting device |
Country Status (1)
Country | Link |
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CN (1) | CN209834100U (en) |
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2019
- 2019-05-05 CN CN201920638848.5U patent/CN209834100U/en not_active Expired - Fee Related
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20191224 Termination date: 20210505 |