CN220033321U - Liquid crystal product handling mechanism - Google Patents

Liquid crystal product handling mechanism Download PDF

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Publication number
CN220033321U
CN220033321U CN202321558550.6U CN202321558550U CN220033321U CN 220033321 U CN220033321 U CN 220033321U CN 202321558550 U CN202321558550 U CN 202321558550U CN 220033321 U CN220033321 U CN 220033321U
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CN
China
Prior art keywords
liquid crystal
crystal product
material taking
driving piece
lifting driving
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Active
Application number
CN202321558550.6U
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Chinese (zh)
Inventor
仇泽军
蔡开大
董海飞
周芳青
陈诚
唐国华
陈义
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Dongguan Depute Electronics Co ltd
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Dongguan Depute Electronics Co ltd
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Priority to CN202321558550.6U priority Critical patent/CN220033321U/en
Application granted granted Critical
Publication of CN220033321U publication Critical patent/CN220033321U/en
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Abstract

The utility model relates to the technical field of liquid crystals, in particular to a liquid crystal product conveying mechanism which comprises a connecting bracket, an adsorption assembly arranged at the front end of the connecting bracket and a material taking assembly arranged at the lower end of the connecting bracket, wherein the adsorption assembly is arranged at the front end of the connecting bracket; the adsorption component comprises a lifting driving piece, a lifting seat connected with the lifting driving piece and a suction nozzle arranged at the lower end of the lifting seat, wherein the lifting driving piece is in driving connection with the lifting seat, and the lifting driving piece is arranged at the front end of the connecting bracket. The utility model has novel structure, the adsorption component is convenient for carrying out adaptability adjustment, and is convenient for simultaneously adsorbing the liquid crystal product and the COF end of the liquid crystal product, so that the liquid crystal product can be ensured not to shake back and forth in the conveying process, and the product can not be influenced or damaged.

Description

Liquid crystal product handling mechanism
Technical Field
The utility model relates to the technical field of liquid crystals, in particular to a liquid crystal product conveying mechanism.
Background
COF (Chip On Film) A-C film, fixing the driver IC (Intergrated Circuit) to the flexible circuit board is a technique for bonding the chip to the flexible circuit board by using the flexible additional circuit board as the carrier for packaging the chip. COFs are typically bound in a binding region of a display panel for driving the display device, and in this process, precise alignment of the COF with the display panel is required. The most critical for the transportation of the liquid crystal products in the automatic production equipment is the transportation mode of the products, so that the quality defects of the products are not caused in the transportation process; at present, in the actual operation process, as the design of the grabbing mechanism is unreasonable, the COF end of the liquid crystal product shakes back and forth in the moving process, the liquid crystal product is not fixed, and has great quality hidden danger, and the quality is affected by the damage of the COF end.
Disclosure of Invention
The utility model provides a liquid crystal product carrying mechanism aiming at the problems in the prior art, which is novel in structure, convenient for the adsorption component to carry out adaptability adjustment and convenient for simultaneously adsorbing a liquid crystal product and a COF end of the liquid crystal product, so that the liquid crystal product can ensure that the COF end of the liquid crystal product cannot shake back and forth in the carrying process, and thus, the product cannot be influenced or damaged.
In order to solve the technical problems, the utility model adopts the following technical scheme:
the utility model provides a liquid crystal product carrying mechanism which comprises a connecting bracket, an adsorption assembly arranged at the front end of the connecting bracket and a material taking assembly arranged at the lower end of the connecting bracket, wherein the adsorption assembly is arranged at the front end of the connecting bracket; the adsorption component comprises a lifting driving piece, a lifting seat connected with the lifting driving piece and a suction nozzle arranged at the lower end of the lifting seat, wherein the lifting driving piece is in driving connection with the lifting seat, and the lifting driving piece is arranged at the front end of the connecting bracket.
The front end of the connecting support is detachably connected with an L-shaped fixing frame, the lifting driving part is arranged at the front end of the L-shaped fixing frame, a first connecting hole is formed in the rear end of the L-shaped fixing frame, a second connecting hole is formed in the front end of the connecting support, the first connecting hole and the second connecting hole are correspondingly formed, a fixing screw is arranged in the first connecting hole, and the fixing screw is connected with the first connecting hole and the second connecting hole in a threaded mode.
The material taking assembly comprises a connecting base and a material taking suction block arranged at the lower end of the connecting base, wherein the connecting base is fixed at the lower end of the connecting support, and a plurality of vacuum suction holes are formed in the lower end face of the material taking suction block.
The material taking assembly comprises a telescopic rod and a reset spring, wherein two ends of the telescopic rod are respectively connected to the lower end of the connecting base and the upper end of material taking adsorption, the reset spring is sleeved on the periphery of the telescopic rod, and two ends of the reset spring are respectively connected to the lower end of the connecting base and the upper end of material taking adsorption.
Preferably, the lower end surface of the material taking suction block and the lower end surface of the suction nozzle are positioned on the same horizontal plane.
The utility model has the beneficial effects that:
when the automatic material taking device works, the movable driving mechanism of the external automatic production device is connected with the connecting bracket and is used for driving the connecting bracket to move up and down and left and right and driving the material taking assembly and the adsorption assembly to move synchronously; utilize getting material subassembly and getting the material with liquid crystal product, utilize the COF end of absorption subassembly to hold liquid crystal product simultaneously, wherein, lift driving piece can order about the lifting seat and reciprocate, drives the suction nozzle and reciprocates, novel structure, and absorption subassembly conveniently carries out the adaptability and adjusts, is convenient for adsorb liquid crystal product and liquid crystal product's COF end simultaneously for liquid crystal product guarantees at the transport in-process that liquid crystal product's COF end can not rock back and forth, thereby can not cause harmful effect or damage to the product.
Drawings
Fig. 1 is a schematic structural view of a liquid crystal product handling mechanism according to the present utility model.
The reference numerals in fig. 1 include:
1. a connecting bracket; 2. an adsorption assembly; 3. a material taking assembly; 4. a lifting driving member; 5. a lifting seat; 6. a suction nozzle; 7. an L-shaped fixing frame; 8. a first connection hole; 9. a set screw; 10. a connecting base; 11. taking a material suction block; 12. a telescopic rod; 13. and a return spring.
Detailed Description
The utility model will be further described with reference to examples and drawings, to which reference is made, but which are not intended to limit the scope of the utility model. The present utility model will be described in detail below with reference to the accompanying drawings.
Example 1
In a first embodiment of the present utility model, as shown in fig. 1, a liquid crystal product handling mechanism is provided, which includes a connection bracket 1, an adsorption component 2 mounted at the front end of the connection bracket 1, and a material taking component 3 mounted at the lower end of the connection bracket 1; the adsorption component 2 comprises a lifting driving piece 4, a lifting seat 5 connected with the lifting driving piece 4 and a suction nozzle 6 arranged at the lower end of the lifting seat 5, wherein the lifting driving piece 4 is an air cylinder, the lifting driving piece 4 is in driving connection with the lifting seat 5, and the lifting driving piece 4 is arranged at the front end of the connecting bracket 1. The material taking assembly 3 comprises a connecting base 10 and a material taking suction block 11 arranged at the lower end of the connecting base 10, the connecting base 10 is fixed at the lower end of the connecting support 1, a plurality of vacuum suction holes connected with an external vacuum air source are formed in the lower end face of the material taking suction block 11, and the material taking suction block 11 adsorbs and takes liquid crystal products through the plurality of vacuum suction holes. Specifically, when the embodiment of the utility model works, the mobile driving mechanism of the external automatic production equipment is connected with the connecting bracket 1 and is used for driving the connecting bracket 1 to move up and down and left and right and driving the material taking assembly 3 and the adsorption assembly 2 to synchronously move; utilize getting material subassembly 3 to get liquid crystal product and get the material, utilize adsorption component 2 to hold the COF end of liquid crystal product simultaneously, wherein, lift driving piece 4 can drive lift seat 5 reciprocates, drives suction nozzle 6 and reciprocates, novel structure, and adsorption component 2 conveniently carries out the adaptability and adjusts, is convenient for adsorb liquid crystal product and liquid crystal product's COF end simultaneously for liquid crystal product guarantees at the transport in-process that liquid crystal product's COF end can not rock back and forth, thereby can not cause harmful effect or damage to the product.
In the first embodiment of the utility model, the material taking assembly 3 comprises a telescopic rod 12 and a return spring 13, wherein two ends of the telescopic rod 12 are respectively connected with the lower end of the connecting base 10 and the upper end of material taking adsorption, the return spring 13 is sleeved on the periphery of the telescopic rod 12, and two ends of the return spring 13 are respectively connected with the lower end of the connecting base 10 and the upper end of material taking adsorption. Preferably, the lower end face of the material taking suction block 11 and the lower end face of the suction nozzle 6 are positioned on the same horizontal plane, so that the liquid crystal product and the COF end of the liquid crystal product can be conveniently and simultaneously adsorbed. Specifically, under the above-mentioned setting, linking bridge 1 removes at the removal actuating mechanism of outside automated production equipment, and then drives and get material suction block 11 and reciprocate for get material suction block 11 and can play the cushioning effect when the butt liquid crystal product adsorbs under the effect of reset spring 13 cooperation telescopic link 12, avoid causing the damage to the pressure of liquid crystal product too big, operational reliability is high, when getting material suction block 11 and not pressing liquid crystal product, reset spring 13 can reset the effect.
In the first embodiment of the utility model, the front end of the connecting bracket 1 is detachably connected with an L-shaped fixing frame 7, the lifting driving part 4 is arranged at the front end of the L-shaped fixing frame 7, the rear end of the L-shaped fixing frame 7 is provided with a first connecting hole 8, the front end of the connecting bracket 1 is provided with a second connecting hole, the first connecting hole 8 and the second connecting hole are correspondingly arranged, a fixing screw 9 is arranged in the first connecting hole 8, and the fixing screw 9 is connected with the first connecting hole 8 and the second connecting hole in a threaded manner. Specifically, under the above arrangement, the L-shaped fixing frame 7 and the connecting bracket 1 are conveniently assembled and disassembled, and are convenient to replace and maintain.
The present utility model is not limited to the preferred embodiments, but is intended to be limited to the following description, and any modifications, equivalent changes and variations in light of the above-described embodiments will be apparent to those skilled in the art without departing from the scope of the present utility model.

Claims (5)

1. A liquid crystal product handling mechanism which is characterized in that: the device comprises a connecting bracket, an adsorption component arranged at the front end of the connecting bracket and a material taking component arranged at the lower end of the connecting bracket; the adsorption component comprises a lifting driving piece, a lifting seat connected with the lifting driving piece and a suction nozzle arranged at the lower end of the lifting seat, wherein the lifting driving piece is in driving connection with the lifting seat, and the lifting driving piece is arranged at the front end of the connecting bracket.
2. A liquid crystal product handling mechanism as set forth in claim 1, wherein: the front end of the connecting support is detachably connected with an L-shaped fixing frame, the lifting driving part is arranged at the front end of the L-shaped fixing frame, a first connecting hole is formed in the rear end of the L-shaped fixing frame, a second connecting hole is formed in the front end of the connecting support, the first connecting hole and the second connecting hole are correspondingly formed, a fixing screw is arranged in the first connecting hole, and the fixing screw is in threaded connection with the first connecting hole and the second connecting hole.
3. A liquid crystal product handling mechanism as set forth in claim 1, wherein: the material taking assembly comprises a connecting base and a material taking suction block arranged at the lower end of the connecting base, wherein the connecting base is fixed at the lower end of the connecting support, and a plurality of vacuum suction holes are formed in the lower end face of the material taking suction block.
4. A liquid crystal product handling mechanism according to claim 3, wherein: the material taking assembly comprises a telescopic rod and a reset spring, wherein two ends of the telescopic rod are respectively connected to the lower end of the connecting base and the upper end of material taking adsorption, the reset spring is sleeved on the periphery of the telescopic rod, and two ends of the reset spring are respectively connected to the lower end of the connecting base and the upper end of material taking adsorption.
5. A liquid crystal product handling mechanism according to claim 3, wherein: the lower end face of the material taking suction block and the lower end face of the suction nozzle are positioned on the same horizontal plane.
CN202321558550.6U 2023-06-16 2023-06-16 Liquid crystal product handling mechanism Active CN220033321U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321558550.6U CN220033321U (en) 2023-06-16 2023-06-16 Liquid crystal product handling mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321558550.6U CN220033321U (en) 2023-06-16 2023-06-16 Liquid crystal product handling mechanism

Publications (1)

Publication Number Publication Date
CN220033321U true CN220033321U (en) 2023-11-17

Family

ID=88743278

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321558550.6U Active CN220033321U (en) 2023-06-16 2023-06-16 Liquid crystal product handling mechanism

Country Status (1)

Country Link
CN (1) CN220033321U (en)

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