CN211490393U - Multi-section air pressure laminating jig - Google Patents

Multi-section air pressure laminating jig Download PDF

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Publication number
CN211490393U
CN211490393U CN201922458598.XU CN201922458598U CN211490393U CN 211490393 U CN211490393 U CN 211490393U CN 201922458598 U CN201922458598 U CN 201922458598U CN 211490393 U CN211490393 U CN 211490393U
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China
Prior art keywords
module
camera
patch
paster
pressing
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CN201922458598.XU
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Chinese (zh)
Inventor
魏小东
陶连成
唐红兵
闫朝旭
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Suzhou Qihang Electronics Co ltd
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Suzhou Qihang Electronics Co ltd
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Abstract

The utility model discloses a multisection position atmospheric pressure laminating tool, including orientation module, pressfitting module, orientation module includes paster location module and camera location module, and paster location module can remove relative camera location module, and the pressfitting module can exert pressure to the paster on the paster location module, the laminating tool still includes the apron, and the apron can adsorb on camera location module or camera frame; be equipped with first presser foot on the apron, first presser foot can carry on spacingly to the flexible layer on the camera. And then, manually moving the patch positioning module to the position of the inner side wall of the rectangular frame of the camera outer frame, which needs to be subjected to patch mounting, and pressing the patch on the circuit module by the pressing module to perform descending action. The pressing module and the patch positioning module are reset, the cover plate is manually taken down from the camera positioning module, the flexible layer is reset, and the cover is covered on the patch. Compare in pure mechanized operation, laminating tool structure simple relatively, preparation, effect and maintenance low cost.

Description

Multi-section air pressure laminating jig
Technical Field
The utility model relates to a chip mounter, concretely relates to paster equipment of camera.
Background
The digital camera, as a whole, can be divided into two parts, a frame 61, as shown in fig. 1, which is rectangular in shape and has a rectangular frame 62 in the middle, and an imaging assembly mounted in the rectangular frame.
The inner side wall of the rectangular frame is provided with a circuit module, a patch 60 serving as an electronic element is attached to the circuit module, the upper surface of the patch is covered with a flexible layer 63, the patch is attached to the circuit module, and after the flexible layer is covered on the surface of the patch, the imaging combination component is installed in the rectangular frame again, so that the circuit module is hidden, and the circuit module is not easy to damage in the use process of the camera; the flexible layer is used for protecting the patch and the circuit module; the flexible layer also has an insulating effect.
In order to be convenient to install, the flexible layer has certain elasticity, and in a normal state, the flexible layer covers the circuit module, if the circuit module needs to be pasted, the flexible layer needs to be turned up, and after the circuit module is pasted, the flexible layer is released, and resets under the action of the elasticity to cover the surface of the paster.
SUMMERY OF THE UTILITY MODEL
The utility model solves the technical problem that: how to carry out the paster to the circuit module on the inner side wall of the camera rectangular frame by mechanical equipment.
In order to solve the technical problem, the utility model provides a following technical scheme: a multi-section air pressure laminating jig comprises a positioning module and a pressing module, wherein the positioning module comprises a patch positioning module and a camera positioning module, the patch positioning module can move relative to the camera positioning module, the pressing module can press a patch on the patch positioning module, the laminating jig also comprises a cover plate, and the cover plate can be adsorbed on the camera positioning module or a camera outer frame; be equipped with first presser foot on the apron, first presser foot can carry on spacingly to the flexible layer on the camera.
The frame location of camera is on camera location module, and the paster location is on paster location module, and the manual work upwards overturns the flexible layer, makes the circuit module on the frame rectangle frame inside wall expose. Afterwards, the cover plate is manually adsorbed on the camera positioning module or the camera outer frame, and the first presser foot of the cover plate is abutted against the overturned flexible layer to limit the same and avoid resetting the same. And then, manually moving the patch positioning module to the position of the rectangular frame inner side wall of the camera outer frame, where the patch is needed, wherein the patch is positioned above the circuit module. And then, the pressing module descends to act on the patch, and the patch is pressed at the position of the circuit module, which needs to be pasted. Then, the pressing module and the patch positioning module reset, the cover plate is manually taken down from the camera positioning module, the flexible layer resets, and the cover is covered on the patch. And then, taking down the camera outer frame from the camera positioning module.
The utility model discloses instead of accomplish paster work purely by mechanical equipment, but manual operation and mechanical equipment's cooperation, accomplish paster work, the workman carries out the paster with the help of mechanical equipment to the circuit module on the camera rectangle frame inside wall promptly. Compared with the pure manual patch mounting work, the utility model can improve the patch mounting efficiency and the patch mounting accuracy, especially the positioning of the camera outer frame, the patch mounting and the patch mounting are completed by mechanical equipment, and the patch mounting accuracy can be improved and the patch mounting force can be ensured to ensure the stable adhesion of the patch and the circuit module due to the fixed operation mode of the mechanical equipment; compare in pure mechanized operation, laminating tool structure simple relatively, preparation, effect and maintenance low cost.
Drawings
The invention will be further explained with reference to the drawings:
FIG. 1 is a schematic view of a camera housing;
FIG. 2 is a schematic view of a multi-stage pneumatic bonding tool;
FIG. 3 is a schematic view of the housing 72 of FIG. 2 shown hidden;
FIG. 4 is a schematic view of the orientation module 10 of FIG. 3;
FIG. 5 is an enlarged view taken at A in FIG. 4;
fig. 6 is a schematic view of the cover plate 50 of fig. 4 viewed from the rear;
FIG. 7 is a schematic view of the pressing module 20;
fig. 8 is a schematic view of the pressing module 20 viewed from the right side in fig. 7.
The symbols in the drawings illustrate that:
10. a positioning module;
20. a pressing module; 21. a support; 22. a lifting cylinder; 23. a first lifting seat; 24. pressing a cylinder; 25. a second lifting seat; 26. a translation cylinder; 27. pressing the components; 271. a fixed seat; 272. a movable seat; 273. a balancing weight; 274. a slide rail;
28. a second presser foot;
30. a patch positioning module; 31. a transverse horizontal guide rail; 32. a slide base; 33. a patch positioning block; 331. the positioning column is arranged on the patch positioning block and matched with the hole of the patch so as to position the patch; 34. a first limiting seat;
40. a camera positioning module; 41. positioning a template; 42. a rotary compacting cylinder; 43. a positioning structure; 44. a substrate; 45. a longitudinal horizontal guide rail; 46. a second limiting seat;
50. a cover plate; 51. a first presser foot; 52. a magnet;
60. pasting a piece; 61. a camera housing; 62. a rectangular frame; 63. a flexible layer; 64. a threaded connection;
70. attaching a base of the jig; 71. a forceps placement barrel; 72. attaching the shell outside the jig; 73. a place for placing the cover plate.
Detailed Description
With reference to fig. 1, 4 and 5, a multi-stage pneumatic attaching jig comprises a positioning module 10 and a pressing module 20, wherein the positioning module comprises a patch positioning module 30 and a camera positioning module 40, the patch positioning module can move relative to the camera positioning module, the pressing module can apply pressure to a patch 60 on the patch positioning module, and the attaching jig further comprises a cover plate 50 which can be attached to the camera positioning module or a camera outer frame; the cover plate is provided with a first presser foot 51 which can limit the flexible layer on the camera.
In operation, the outer frame 61 of the camera is positioned on the camera positioning module 40, the patch 60 is positioned on the patch positioning module 30, and a worker can turn the flexible layer 63 upwards by using tweezers to expose the circuit module on the inner side wall of the rectangular frame of the outer frame. Then, the cover plate 50 is manually attached to the camera positioning module 40 or the camera outer frame 61, and the first presser foot 51 of the cover plate abuts against the turned flexible layer 63 to limit the position of the flexible layer, so that the reset of the flexible layer is avoided. Then, the patch positioning module 30 is manually moved to the position where the patch is needed on the inner side wall of the rectangular frame 62 of the camera housing, and the patch 60 is located above the circuit module. Then, the pressing module 20 descends to act on the patch, and presses the patch at the position of the circuit module where the patch is needed. Then, the pressing module 20 and the patch positioning module 30 are reset, the cover plate 50 is manually taken down from the camera positioning module 40, the flexible layer 63 is reset, and the cover plate is covered on the patch 60. Thereafter, the camera housing 61 is removed from the camera positioning module 40.
Referring to fig. 6, a magnet 52 is disposed on the cover plate 50, and the magnet can attach the cover plate to the camera positioning module 40 or the camera housing 61, wherein the magnet can attach to the end of the threaded connector on the camera positioning module or the camera housing. The corners of the attaching jig base 70 are provided with cover plate placement areas where the cover plate 50 can be placed. When the attaching jig is in a non-working state, the cover plate is located in the cover plate placing area.
Referring to fig. 1 and 5, the camera housing 61 positioned on the camera positioning module 40 is in an upright state when in an operating state, that is, a state when the camera is in an imaging state, and is generally in an upright state. The position of the camera outer frame where the patch is needed is located on the lower surface of the rectangular frame 62 of the camera outer frame, namely the inner side wall located at the lowest part of the four inner side walls of the rectangular frame; the patch positioning module 30 is capable of translating the patch 60 it positions to the location of the patch. Thus, after the worker turns up the flexible layer 63 and is limited by the cover plate 50, the patch translated to the patch position is located above the position where the patch is needed by the circuit module, and is close to the position where the patch is needed.
As shown in fig. 4, the camera positioning module 40 includes a positioning template 41 and a rotary pressing cylinder 42, the positioning template is provided with a positioning structure 43 capable of positioning the camera outer frame, and the rotary pressing cylinder is disposed at two sides of the positioning structure; the camera positioning module 40 and the patch positioning module 30 are mounted on the substrate 44, the patch positioning module 30 includes a horizontal guide rail 31 disposed on the substrate, a slide seat 32 slidably fitted on the horizontal guide rail, and a patch positioning block 33 disposed on the slide seat, at least one end of the horizontal guide rail is provided with a first limiting seat 34, and when the slide seat abuts against the first limiting seat, a patch 60 on the patch positioning block is located at the position of the patch.
The camera housing 61 is positioned in the positioning structure 43, and then the rotary pressing cylinders 42 on both sides are operated to press the camera housing 61 on the sides thereof, thereby fixing the camera housing to the positioning structure 43. After the first presser foot 51 of the cover plate 50 limits the position of the flexible layer 63, a worker manually moves the slide seat 32 to make the slide seat horizontally move to the first limiting seat 34 along the transverse horizontal guide rail 31 and abut against the first limiting seat 34, the slide seat 32 is limited, and at this time, the patch 60 positioned at the patch positioning block 33 is positioned above a position where the patch is required. The patch 60 horizontally protrudes from the edge of the patch positioning block 33, so that the bottom surface of the protruding portion of the patch can be attached to the circuit module. The paster is flexible, and in its translation in-process, if take place to interfere with the spare part of laminating tool, the workman can bend the protruding portion of paster, dodges.
As shown in fig. 7, a longitudinal horizontal guide rail 45 is disposed on the base 70 of the bonding jig, the substrate 44 is slidably fitted on the longitudinal horizontal guide rail, a second limiting seat 46 is disposed at least one end of the longitudinal horizontal guide rail, and when the substrate 44 abuts against the second limiting seat, the pressing module 20 can accurately press the patch 60 at the position of the patch. When the flexible layer 63 needs to be lifted, the cover plate 50 needs to be attached to the camera positioning module 40 or the camera housing 61, and the patch 60 needs to be translated, the whole positioning module 10, i.e. the camera positioning module 40 and the patch positioning module 30, can be pulled to the front of a worker, and is close to the worker, so as to facilitate the operation of the worker, for example, the release paper on the patch is torn off, so that the patch is separated from the positioning post 331 on the patch positioning block 33. When the pressing module 20 is required to apply pressure to the patch which is already in the bonding position, a worker pushes the positioning module 10, the substrate 44 moves along the longitudinal horizontal guide rail 45 until the substrate abuts against the second limiting seat 46, the substrate is limited, and the patch 60 comes to the position where the pressing module 20 applies pressure to the substrate. Then, the pressing module is actuated to press the patch 60 on the circuit module.
Referring to fig. 7 and 8, the pressing module 20 includes a support 21 disposed on the attaching jig base 70, a lifting cylinder 22 mounted on the support, a first lifting seat 23 slidably fitted on the support and connected to a piston rod of the lifting cylinder, a pressing cylinder 24 mounted on the first lifting seat, a second lifting seat 25 connected to the piston rod of the pressing cylinder, a translation cylinder 26 mounted on the second lifting seat, and a pressing assembly 27 connected to the piston rod of the translation cylinder, wherein the pressing assembly is provided with a second presser foot 28 directly contacting the patch 60, and the second presser foot is disposed at the bottom end of the pressing assembly. The bracket 21 is located behind the positioning module 10 and does not prevent the positioning module from being accessed by a worker.
When the patch 60 needs to be pressed, the lifting cylinder 22 drives the first lifting base 23 to move downwards first, and the second presser foot 28 moves downwards along with the first lifting base. The translating cylinder 26 then drives the stitching assembly 27 to translate rearwardly, which in turn translates rearwardly to approach the patch 60. Then, the stitching cylinder 24 drives the second lifting seat 25 to move downwards, the stitching assembly moves downwards, and the second presser foot 28 at the bottom of the stitching cylinder presses downwards on the patch 60 to stitch the patch on the circuit module. The lifting cylinder 22 and the translation cylinder 26 are both arranged to avoid interference between the pressing assembly and the second presser foot with the positioning module 10. Wherein, the lift cylinder rises pressfitting subassembly and second presser foot high, can provide the space for the front and back translation of orientation module 10. The front and back displacement of the translation cylinder can avoid the interference of the press-fit assembly, the second presser foot and the part of the positioning module above the patch.
The pressing assembly 27 includes a fixed seat 271 connected to the piston rod of the translational cylinder 26, and a movable seat 272 movably engaged with the fixed seat, the movable seat can move up and down relative to the fixed seat, a weight block 273 is placed on the movable seat, and the second presser foot 28 is disposed at the bottom end of the movable seat. The present invention does not utilize the downward pressure of the pressing cylinder 24 to press the patch 60 by the second presser foot 28, but utilizes the weight of the movable seat 272 and the weight 273 thereon to press the patch by the second presser foot 28. The translation cylinder 25 drives the fixed seat 271 to move downwards, and if the second presser foot 28 does not press on the patch, the movable seat 272 can move downwards relative to the fixed seat. Specifically, the movable seat 272 is provided with a sliding block, the fixed seat 271 is provided with a sliding rail 274, the sliding block is in sliding fit with the sliding rail, and the pressure of the second presser foot 28 on the patch 60 comes from the movable seat 272 and a counterweight 273 thereon, which is stable. If it is desired to adjust the pressure of the second presser foot against the patch, the worker can adjust the weight of the weight 273, for example, to change the weight or increase the weight or decrease the weight. In the case where the patch 60 is stably pressed, the patch can be stably adhered to the circuit module.
The utility model discloses utilize lift cylinder 22, translation cylinder 26, pressfitting cylinder 24 to realize that the multistage position of second presser foot 28 rises and descends, the power that the drive second presser foot 28 rises and descends is atmospheric pressure, and the second presser foot is the part of oppression paster 60, consequently, the utility model relates to a multistage atmospheric pressure laminating tool.
The above description is only for the preferred embodiment of the present invention, and for those skilled in the art, there are variations on the detailed description and the application scope according to the idea of the present invention, and the content of the description should not be construed as a limitation to the present invention.

Claims (6)

1. The utility model provides a multisection position atmospheric pressure laminating tool, includes orientation module (10), pressfitting module (20), and orientation module includes paster location module (30) and camera location module (40), and the paster location module can remove camera location module relatively, and the pressfitting module can exert pressure to paster (60) on the paster location module, its characterized in that: the attaching jig further comprises a cover plate (50), and the cover plate can be adsorbed on the camera positioning module or the camera outer frame (61); the cover plate is provided with a first presser foot (51), and the first presser foot can limit the flexible layer on the camera.
2. The attaching jig according to claim 1, wherein: the camera outer frame (61) positioned on the camera positioning module (40) is in an upright state when in a working state, and the position of the camera outer frame needing to be pasted with a piece is positioned on the lower surface of the rectangular frame (62) of the camera outer frame; the patch positioning module (30) is capable of translating the patch (60) positioned by the patch positioning module to the position of the patch.
3. The attaching jig according to claim 2, wherein: the camera positioning module (40) comprises a positioning template (41) and a rotary pressing cylinder (42), wherein a positioning structure (43) capable of positioning the outer frame of the camera is arranged on the positioning template, and the rotary pressing cylinder is arranged on two sides of the positioning structure; camera location module (40) and paster location module (30) are installed on base plate (44), and paster location module (30) are equipped with first spacing seat (34) including setting up horizontal guide (31) on the base plate, sliding fit slide (32) on horizontal guide, paster locating piece (33) of setting on the slide, horizontal guide at least one end, and when the slide offseted with first spacing seat, paster (60) on the paster locating piece are in the position of paster.
4. The attaching jig according to claim 3, wherein: be equipped with vertical horizontal guide rail (45) on base (70) of laminating tool, base plate (44) sliding fit is on vertical horizontal guide rail, and the spacing seat of second (46) is equipped with to vertical horizontal guide rail at least one end, and when base plate (44) and the spacing seat of second offset, pressfitting module (20) can be accurately with paster (60) pressfitting in the position of paster.
5. The attaching jig according to claim 1, wherein: the pressing module (20) comprises a support (21) arranged on the attaching jig base (70), a lifting cylinder (22) arranged on the support, a first lifting seat (23) which is in sliding fit with the support and is connected with a piston rod of the lifting cylinder, a pressing cylinder (24) arranged on the first lifting seat, a second lifting seat (25) connected with the piston rod of the pressing cylinder, a translation cylinder (26) arranged on the second lifting seat and a pressing component (27) connected with the piston rod of the translation cylinder, wherein the pressing component is provided with a second pressing foot (28) which is in direct contact with a patch (60), and the second pressing foot is arranged at the bottom end of the pressing component.
6. The attaching jig according to claim 5, wherein: the pressing assembly (27) comprises a fixed seat (271) connected with a piston rod of the translation cylinder (26) and a movable seat (272) movably matched with the fixed seat, the movable seat can lift relative to the fixed seat, a balancing weight (273) is placed on the movable seat, and the second presser foot (28) is arranged at the bottom end of the movable seat.
CN201922458598.XU 2019-12-30 2019-12-30 Multi-section air pressure laminating jig Active CN211490393U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922458598.XU CN211490393U (en) 2019-12-30 2019-12-30 Multi-section air pressure laminating jig

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922458598.XU CN211490393U (en) 2019-12-30 2019-12-30 Multi-section air pressure laminating jig

Publications (1)

Publication Number Publication Date
CN211490393U true CN211490393U (en) 2020-09-15

Family

ID=72396965

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922458598.XU Active CN211490393U (en) 2019-12-30 2019-12-30 Multi-section air pressure laminating jig

Country Status (1)

Country Link
CN (1) CN211490393U (en)

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