Ultra-thin vehicle-mounted fully fitted module and assembly method thereof
Through the assembly method of vacuum heating and pressurized defoaming after TP and OCA bonding, the assembly tolerance problem during FOG and CTP is solved, the alignment accuracy and production efficiency of the module are improved, bubbles are reduced, and production costs are reduced.
Patent Information
- Application Number
- CN202211623670.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-16
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2042-12-16
AI Technical Summary
In the prior art, there is assembly tolerance when assembling the FOG and the backlight into a module and assemble it with CTP, resulting in a full bonding gap, resulting in poor defoaming, affecting the display effect and increasing production costs.
The assembly method of vacuum bonding after TP and OCA is adopted to perform heating, pressurized defoaming, and precise alignment and high temperature and high pressure treatment are used to ensure the high bonding quality of the module.
It improves the alignment accuracy of the module, reduces bubbles, reduces production error rate, adapts to large-scale production of different specifications, and reduces overall costs.
Smart Images

Figure CN116047800B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of vehicle-mounted display devices, and in particular to an ultra-thin vehicle-mounted fully laminating module and an assembling method thereof. Background Art
[0002] With improved living standards, the development trend of screens is towards fully laminated TFT LCD modules. However, because CTP and modules are not manufactured by the same supplier, conventional suppliers typically assemble the FOG module with the backlight first, apply OCA adhesive, and then assemble it with the CTP. This manufacturing process has assembly tolerances between the FOG and backlight, and full lamination tolerances between the LCM and CTP. This can easily create a full lamination gap, leading to poor degassing. Ultimately, this results in significant deviations between the FOG and CTP backlight in the assembled product, affecting display quality and easily generating numerous bubbles, hindering mass production, reducing overall production yield, and increasing production costs. Summary of the Invention
[0003] In order to solve the technical problem of inconvenient production, the present invention provides an ultra-thin vehicle-mounted full-fit module and an assembly method thereof.
[0004] The present invention is implemented by the following technical solution: an assembly method of an ultra-thin vehicle-mounted fully laminated module, comprising the following steps:
[0005] S1: First, TP and OCA are bonded together, and then TP and FOG are pre-bonded and vacuum bonded.
[0006] S2: After heating and pressurizing for degassing, assemble into backlight;
[0007] The device used in step S2 includes: a working box, one side of which is clamped with an auxiliary box, and an auxiliary mechanism is provided in the auxiliary box; a limiting box, which is fixedly connected in the working box and is provided with multiple, one side of which is fixedly connected with a first spring, and the other side of the first spring contacts the replacement mechanism; a fixing mechanism, which is located on the limiting box.
[0008] As a further improvement of the above scheme, the replacement mechanism includes: a sealing plate, which is slidably sleeved in the limiting box and is in contact with the limiting box; an execution unit, which is arranged in the limiting box, and a connecting rod is threadedly sleeved between multiple execution units, one of the execution units is connected to the sealing plate through the connecting rod, and a limiting groove connected to the execution unit is provided in the limiting box; a touch unit, which is connected to the limiting box, and one side of which is connected to the auxiliary mechanism.
[0009] As a further improvement of the above scheme, the execution unit includes: an execution box, which is arranged in a limiting box and has a roller rotatably connected to its bottom; a second spring, which is fixedly connected in the execution box and has the other end fixedly connected to a sliding plate, and the sliding plate is slidably sleeved with the execution box; a telescopic rod, one end of which is fixedly connected to the sliding plate and the other end is connected to an execution assembly; a limiting plate, which is fixedly connected in the execution box; a vent tube, which is fixedly connected to the execution box and has an auxiliary tube fixedly connected to the execution box on one side; a telescopic assembly, which is connected to the two sliding plates; a follow-up door, which is connected to the limiting box through a fixing mechanism, and the follow-up door is fixedly connected to the execution box through a connecting rod, wherein a touch screen is provided on the follow-up door to control the interior.
[0010] As a further improvement of the above solution, the telescopic assembly includes a sleeve tube fixedly connected to the upper sliding plate, a sleeve rod is provided in the sliding sleeve of the adjustment tube, the sleeve rod is fixedly connected to the lower limiting plate, and the sleeve tube is slidably sleeved with the limiting plate.
[0011] As a further improvement of the above scheme, the execution component includes: a coupling ring, which is clamped with a limiting plate; an upper functional box, which is fixedly connected to the output end of the upper telescopic rod, and a buffer pad is fixedly connected to the lower side of the upper telescopic rod, and the lower side of the buffer pad is fixedly connected to raw material one; a lower functional box, which is fixedly connected to the output end of the lower telescopic rod, and an expansion chamber is provided at its temporal part, and a push plate is slidingly sleeved in the expansion chamber; a rack, which is slidably connected to the lower functional box, and a transmission component is meshed in its tooth end, and one end of the transmission component is transmission-connected to a screw threadedly sleeved on the lower functional box; an adjustment plate, which is placed on the transmission component.
[0012] As a further improvement of the above solution, the buffer pad is connected to an electrostatic sticker, a transmission cavity is provided in the lower functional box, the transmission assembly is located in the transmission cavity, and the air vent and auxiliary tube are both connected to a one-way valve and an electromagnetic control valve.
[0013] As a further improvement of the above scheme, the fixing mechanism includes: a fixed block, which is fixedly connected to the follow-up door, a third spring is fixedly connected to the inside of the fixed block, and the other end of the third spring is fixedly connected to the sliding block; a snap-fit strip, which is fixedly connected to the limiting box, and a snap-fit groove is provided on one side of the snap-fit strip for cooperating with the sliding block; a guide channel, one end of which is connected to the snap-fit groove, and the other end extends to the outside of the limiting box, and the guide channel is connected to the space inside the working box.
[0014] As a further improvement of the above solution, the trigger unit includes a trigger tube fixedly connected to the sealing plate, the outer wall sliding sleeve of the trigger tube is provided with a conducting tube fixedly connected to the auxiliary mechanism, an air-permeable plate is fixedly connected to the inside of the conducting tube, a fourth spring is fixedly connected to one side of the air-permeable plate, and the other end of the fourth spring is fixedly connected to a follower frame in contact with the trigger tube, a control board is also fixedly connected to the inside of the conducting tube, and a plurality of corresponding air leakage holes and blocking blocks are provided on the control board and the follower frame.
[0015] As a further improvement of the above scheme, the auxiliary mechanism includes: an air pump, which is fixedly connected in the auxiliary box, and its output end is connected to the guide box located in the auxiliary box; a plurality of heating pipes are provided, and they are fixedly connected to the conducting pipe; a pressure relief pipe, which is provided on the auxiliary box, and the auxiliary box is provided with multiple air intake holes.
[0016] An ultra-thin vehicle-mounted fully laminated module includes an AGARAF explosion-proof film and an OGS structure TP. From top to bottom, the ultra-thin vehicle-mounted fully laminated module consists of a 3A explosion-proof film, OGS, optical OCA laminating adhesive, FOG, and a backlight assembly. The FOG and backlight are assembled using dust-proof foam single-sided adhesive, and the backlight adhesive frame is bonded to the back of the OGS using double-sided foam adhesive.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. This ultra-thin automotive fully laminated module uses AGARAF film attached to the OGS surface. TP no longer requires the traditional thickness design. While maintaining the original light and thin characteristics and advantages of OGS, it effectively solves the problems faced by traditional TP structures, such as high cover plate surface treatment yield and process cost, and low transmittance of the single cover plate VA area.
[0019] 2. Through the production of the production device, modules of different specifications in different time periods can be produced at one time. They can be automatically discharged at regular intervals, collected individually, and controlled individually, which facilitates the work and adapts to large-scale production of different specifications, reducing overall costs and reducing the error rate. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0021] Figure 2 It is a schematic front cross-sectional view of the present invention;
[0022] Figure 3 It is a left side cross-sectional schematic diagram of the present invention;
[0023] Figure 4 It is a partial left side cross-sectional schematic diagram of the present invention;
[0024] Figure 5 It is a schematic diagram of a main cross-sectional view of an execution unit;
[0025] Figure 6 It is a schematic diagram of the main cross-section of the execution component;
[0026] Figure 7 It is a schematic cross-sectional view of the trigger unit from the left;
[0027] Figure 8 It is a schematic diagram of the structure enlarged at point A in the figure;
[0028] Figure 9 This is a schematic diagram of the structure enlarged at point B in the figure.
[0029] Description of main symbols:
[0030] 1. Working box; 2. Auxiliary box; 3. Suction hole; 4. Pressure relief pipe; 5. Follow-up door; 6. Actuator unit; 7. Guide box; 8. Heating pipe; 9. Trigger unit; 10. Air pump; 11. Limit box; 13. Limit groove; 14. Connecting rod; 15. Guide channel; 16. Sealing plate; 17. Trigger tube; 18. Conducting tube; 20. First spring; 21. Fourth spring; 22. Follow-up frame; 23. Control panel; 24. Blocking block; 25. Breathing plate; 26. Snap-on strip; 27. Sliding block; 2 8. Fixed block; 29. Third spring; 61. Execution box; 62. Telescopic rod; 65. Auxiliary tube; 66. Socket tube; 67. Socket rod; 68. Second spring; 69. Execution assembly; 70. Sliding plate; 71. Limiting plate; 72. Breathing tube; 73. Socket ring; 74. Transmission chamber; 75. Screw; 76. Expansion chamber; 77. Push plate; 78. Lower function box; 79. Raw material one; 80. Buffer pad; 81. Upper function box; 82. Rack; 83. Adjustment plate; 84. Transmission assembly. DETAILED DESCRIPTION
[0031] The present invention will be further described below in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0032] Example 1:
[0033] Please combine Figure 1-9 The implementation principle of an ultra-thin vehicle-mounted fully-fitted module and its assembly method in the embodiment of the present application is as follows: An assembly method of an ultra-thin vehicle-mounted fully-fitted module comprises the following steps:
[0034] S1: First, TP and OCA are bonded, and then TP and FOG are pre-bonded and vacuum bonded. S2: After heating and pressurizing for degassing, the backlight is assembled. This assembly method has high alignment accuracy and few bubbles in the product bonding.
[0035] The production device used in step S2 includes:
[0036] The working box 1 has an auxiliary box 2 connected to one side thereof. The auxiliary box 2 is provided with an auxiliary mechanism. The working box 1 is used for protection and fixation, and the auxiliary mechanism in the auxiliary box 2 performs necessary work.
[0037] The limiting box 11 is fixedly connected to the working box 1 and is provided with multiple ones. A first spring 20 is fixedly connected to one side, and the other side of the first spring 20 contacts the replacement mechanism. The replacement structure is restricted by the limiting box 11, and at the same time, the replacement mechanism can be popped out later through the energy storage of the first spring 20.
[0038] The fixing mechanism is located on the limiting box 11 and performs necessary fixing work.
[0039] Replacement mechanisms include:
[0040] The sealing plate 16 is slidably sleeved in the limiting box 11 and contacts the limiting box 11. The sealing plate 16 cooperates with the limiting box 11 to form a sealed state on one side of the limiting box 11 to meet the needs of subsequent work.
[0041] The execution unit 6 is arranged in the limiting box 11. A connecting rod 14 is threadedly connected between the multiple execution units 6. One of the execution units 6 is connected to the sealing plate 16 through the connecting rod 14. A limiting groove 13 connected to the execution unit 6 is provided in the limiting box 11. The execution unit 6 performs the final execution work. The connecting rod 14 connects multiple devices. The limiting groove 13 maintains the movement trajectory of the execution unit 6.
[0042] The trigger unit 9 is connected to the limiting box 11 and one side of the trigger unit 9 is connected to the auxiliary mechanism. After being triggered, the trigger unit 9 generates necessary conduction.
[0043] The execution unit 6 includes:
[0044] The execution box 61 is set in the limiting box 11, and its bottom is rotatably connected with a roller. The execution box 61 performs the necessary limiting isolation. The roller facilitates the movement of the entire device. The execution box 61 is divided into two parts, the upper and lower parts are mutually engaged, and it is convenient for loading and unloading the internal raw materials.
[0045] The second spring 68 is fixedly connected to the execution box 61, and the other end thereof is fixedly connected to the sliding plate 70. The sliding plate 70 is slidably sleeved with the execution box 61. The second spring 68 provides a certain elastic force to the sliding plate 70, so that the two sliding plates 70 have a tendency to move toward each other.
[0046] The telescopic rod 62 has one end fixedly connected to the sliding plate 70 and the other end connected to the actuator 69. The telescopic rod 62 is extended and retracted as needed to meet the needs of production of different specifications. The actuator 69 performs the production work.
[0047] The limiting plate 71 is fixedly connected to the execution box 61. The limiting plate 71 is fixedly connected to the execution box 61 below to realize the stratification on both sides and ensure the working pressure division.
[0048] The vent pipe 72 is fixedly connected to the execution box 61, and an auxiliary pipe 65 fixedly connected to the execution box 61 is provided on one side of the vent pipe 72. The vent pipe 72 releases the external high-pressure gas into the space between the limiting plate 71 and the upper sliding plate 70, providing high pressure between the two and supplying high pressure.
[0049] The telescopic assembly is connected to the two sliding plates 70, and the telescopic assembly cooperates with the movement of the two sliding plates 70.
[0050] The follower door 5 is connected to the limiting box 11 through a fixing mechanism. The follower door 5 is fixedly connected to the execution box 61 through a connecting rod 14. The follower door 5 seals the other side and is convenient for separate control.
[0051] The telescopic assembly includes a sleeve tube 66 fixedly connected to the sliding plate 70 above, a sleeve rod 67 is provided in the adjusting tube 66 for sliding sleeve, the sleeve rod 67 is fixedly connected to the limiting plate 71 below, the sleeve tube 66 and the limiting plate 71 are slidably sleeved, and the two sleeve rods 67 and the sleeve tube 66 that are sleeved with each other can slide with each other to achieve a change in distance. A leak hole is provided at the top of the sleeve tube 66 so that high-pressure gas can enter the adjusting tube 66 for compression.
[0052] The execution component 69 includes:
[0053] The sleeve ring 73 is connected to the limiting plate 71, and the sleeve ring 73 is installed and limited, and the holes therein are used for gas to enter.
[0054] The upper functional box 81 is fixedly connected to the output end of the telescopic rod 62 above, and a buffer pad 80 is fixedly connected to the lower side of the upper functional box 81. The lower side of the buffer pad 80 is fixedly connected to the raw material 79. The upper functional box 80 performs electrostatic adsorption or other needs to impose necessary restrictions on the raw material 79.
[0055] The lower functional box 78 is fixedly connected to the output end of the telescopic rod 62 below. An expansion chamber 76 is provided on its temporal portion. A push plate 77 is provided in the sliding sleeve of the expansion chamber 76. The lower functional box 78 provides necessary support. Another raw material is also placed on it to facilitate subsequent bonding. The expansion chamber 76 is filled with liquid. After heating, the expansion of the liquid will drive the push plate 77 to move, and further drive the rack 82 to move.
[0056] The rack 82 is slidably connected to the lower function box 78, and the tooth end thereof is meshed with a transmission assembly 84. One end of the transmission assembly 84 is transmission-connected to a screw rod 75 threadedly sleeved with the lower function box 84. The movement of the rack 82 drives the rotation of the transmission assembly 84, and further drives the screw rod 75 to move up and down.
[0057] The adjustment plate 83 is placed on the transmission assembly 84. The adjustment plate 83 is selected according to the thickness of the raw material and is suitable for working with raw materials of different thicknesses.
[0058] The buffer pad 80 is connected with an electrostatic sticker, a transmission cavity 74 is provided in the lower function box 78, a transmission assembly 84 is located in the transmission cavity, the air vent 72 and the auxiliary tube 65 are connected with a one-way valve and an electromagnetic control valve, and the electrostatic sticker facilitates the fixation of the raw materials.
[0059] The fixing mechanism includes:
[0060] The fixed block 28 is fixedly connected to the follower door 5, and a third spring 29 is fixedly connected to the inside of the fixed block 28. The other end of the third spring 29 is fixedly connected to the sliding block 27. The third spring 29 allows the sliding block to enter the clamping strip 26 to achieve fixation.
[0061] The clamping strip 26 is fixedly connected to the limiting box 11 and has a clamping groove on one side thereof for cooperating with the sliding block 27.
[0062] The guide channel 15 has one end connected to the card slot and the other end extending to the outside of the limiting box 11. The guide channel 15 is connected to the space in the working box 1. The gas in the working box 1 is conducted to the card slot through the guide channel 15, and then the sliding block 27 is pushed out, so that the restraint between the card strip 26 and the fixed block 28 is released, thereby achieving loosening.
[0063] The trigger unit 9 includes a trigger tube 17 fixedly connected to the sealing plate 16. The outer wall of the trigger tube 17 is slidingly sleeved with a conducting tube 18 fixedly connected to the auxiliary mechanism. A breathable plate 25 is fixedly connected to the conducting tube 18. A fourth spring 21 is fixedly connected to one side of the breathable plate 25, and the other end of the fourth spring 21 is fixedly connected to a follower frame 22 that contacts the trigger tube 17. A control board 23 is also fixedly connected to the conducting tube 18. A plurality of corresponding air leakage holes and blocking blocks 24 are provided on the control board 23 and the follower frame 22. When the sealing plate 16 is inserted, the trigger tube 17 is driven to move, further contacting the follower frame 22, causing the follower frame 22 to move, and the follower frame 22 is separated from the control board 23 to achieve gas conduction. After the trigger tube 17 is removed, the fourth spring 21 and the internal high pressure cause the follower frame 22 to move and contact the control board 23, thereby achieving overall sealing.
[0064] Supporting agencies include:
[0065] The air pump 10 is fixedly connected to the auxiliary box 2, and its output end is connected to the guide box 7 located in the auxiliary box 2. The air pump 10 transports the external gas into the guide box 7 to achieve diversion and extend the flow distance of the gas.
[0066] The heating tube 8 is provided with a plurality of them and is fixedly connected to the conducting tube 18. The heating tube 8 heats and cooperates with the work of the air pump 10 to pressurize the gas and enter the working box 1.
[0067] The pressure relief pipe 4 is provided on the auxiliary box 2 , and a plurality of air intake holes 3 are provided on the auxiliary box 2 . The pressure relief pipe 4 is used to relieve pressure to ensure safety.
[0068] During operation, the raw material 79 of the selected specification is placed on the buffer pad 80 for adsorption, and then the upper and lower execution boxes 61 are closed. At this time, due to the elasticity of the second spring 68, the buffer pad 80 and the lower function box 78 are close to each other, the liquid is in a cooling state, and the volume is reduced, so that the screw rod 75 is in an extended state, and there is a gap between the buffer pad 80 and the lower function box 78. Then the installed execution unit 6 is connected to the connecting rod 14 and placed in the limit box 11 through the limit groove 13. By pressing, the sealing plate 16 and the limit box 11 are pressed together, and the follower door 5 contacts the limiting box 11 to form a seal. At the same time, the fixed block 28 on the follower door 5 is bound by the sliding block 27 and the card strip 26 to complete the fixation, and the trigger tube 17 is inserted into the guide tube 18, overcoming the elasticity of the fourth spring 21, so that the follower frame 22 is compressed to form a conduction and complete the ventilation. The external gas is supplied by the air pump 10, passes through the guide box 7, and is heated by the heating tube 8, and then enters the limiting box 11 through the guide tube 18, and further enters the execution box 61 through the vent pipe 72, and the high temperature and high pressure are generated. The high-pressure gas, under the isolation of the limiting plate 71, makes the upper sliding plate 70 move upward and the lower sliding plate 70 move downward, accumulating potential energy. At the same time, the high-temperature and high-pressure gas causes high-temperature degassing in the raw material 79 to form a stable structure. At the same time, the high temperature causes the liquid in the expansion chamber 76 to increase in temperature and expand, further pushing the push plate 77 and the rack 82 to move. Driven by the transmission component 84, the screw rod 75 is lowered. The liquid cools down slower than the gas, so its effect on the push plate 77 lags behind other actions. After the degassing is completed, the auxiliary The auxiliary pipe 65 releases pressure, and the two second springs 68 bring the buffer pad 80 and the lower functional box 78 closer to each other, so that the raw materials on the lower functional box 78 and the raw materials on the buffer pad 80 are fitted together to complete the assembly. At the same time, the high-temperature and high-pressure gas enters the working box 1, and then presses the sliding block 27 through the diversion of the guide channel 15 to move it out of the card strip 26. At this time, the fourth spring 21 and the first spring 20 work to make the first spring 16 and the execution unit 6 pop out, take them out, and then replace them, realizing the continuous production of multiple single groups.
[0069] Example 2:
[0070] An ultra-thin fully laminated vehicle module, including AGARAF explosion-proof film and OGS structure TP. From top to bottom, the ultra-thin fully laminated vehicle module consists of 3A explosion-proof film, OGS, optical OCA laminating adhesive, FOG, and backlight assembly. The FOG and backlight are assembled with dust-proof foam single-sided adhesive, and the backlight adhesive frame is bonded to the back of the OGS with double-sided foam adhesive. The AGARAF film has a Haze of 8±2% (no sparkle), a 60% Dgloss of >95, an AF water drop angle of 100±5°, and a surface hardness of ≥3H / 0.5k. g; reflectivity SCI: ≤4% (BM area), ≤4% (VA area) (environmental test items are double 85, the selected explosion-proof film thickness is 0.13mm). Increase or decrease the film thickness according to the actual situation. 3A film fitting: the outer dimensions of the explosion-proof film are 0.45mm smaller than the OGS Outline on one side; the outer tolerance of the 3A film is controlled according to ±0.15, and the fitting tolerance is controlled according to ±0.25. Mark two adjacent edges. The OGS structure requires gluing in the FPC binding area and double-sided tape T = 0.1mm between the FPC and the cover to prevent the FPC from folding and tearing.
[0071] The above embodiments are only preferred embodiments of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and replacements made by technicians in this field on the basis of the present invention fall within the scope of protection required by the present invention.
Claims
1. An assembly device for an ultra-thin vehicle-mounted fully laminated module, characterized in that: The assembling device comprises: A working box, one side of which is connected to an auxiliary box, wherein an auxiliary mechanism is provided in the auxiliary box; A limiting box is fixedly connected in the working box and is provided with a plurality of limiting boxes, one side of which is fixedly connected to a first spring, and the other side of the first spring contacts a replacement mechanism; a fixing mechanism located on the limiting box; The replacement mechanism comprises: A sealing plate, the sliding sleeve of which is arranged in the limiting box and contacts the limiting box; An execution unit is provided in a limiting box, wherein a plurality of the execution units are threadedly connected with a connecting rod, wherein one of the execution units is connected to the sealing plate via the connecting rod, and a limiting groove connected to the execution unit is provided in the limiting box; A trigger unit connected to the limiting box and having one side connected to the auxiliary mechanism; The execution unit includes: The execution box is arranged in the limiting box, and the bottom of the execution box is rotatably connected to a roller; A second spring is fixedly connected in the execution box, and the other end of the second spring is fixedly connected to a sliding plate, and the sliding plate is slidably sleeved with the execution box; A telescopic rod, one end of which is fixedly connected to the sliding plate and the other end of which is connected to the actuator; a limiting plate fixedly connected to the execution box; A vent pipe, which is fixedly connected to the execution box, and one side of which is provided with an auxiliary pipe fixedly connected to the execution box; a telescopic assembly connected to the two sliding plates; A follower door, which is connected to the limiting box through a fixing mechanism, and the follower door is fixedly connected to the execution box through a connecting rod; The execution components include: A sleeve ring, which is engaged with the limiting plate; An upper functional box, which is fixedly connected to the output end of the telescopic rod above, and a buffer pad is fixedly connected to the lower side of the upper functional box, and the lower side of the buffer pad is fixedly connected to the raw material 1; The lower functional box is fixedly connected to the output end of the telescopic rod below, and an expansion cavity is provided at its temporal portion, wherein a push plate is provided on a sliding sleeve in the expansion cavity; The rack is slidably connected to the lower function box, and the tooth end thereof is internally meshed with a transmission assembly, one end of which is transmission-connected to a screw rod threadedly sleeved with the lower function box; An adjustment plate is placed on the transmission assembly.
2. The assembly device of an ultra-thin vehicle-mounted fully-fitted module according to claim 1, characterized in that: The telescopic assembly includes a sleeve tube fixedly connected to the upper sliding plate, a sleeve rod is slidably sleeved in the sleeve tube, the sleeve rod is fixedly connected to the lower limiting plate, and the sleeve tube is slidably sleeved with the limiting plate.
3. The assembly device of an ultra-thin vehicle-mounted fully-fitted module according to claim 1, characterized in that: The buffer pad is connected to an electrostatic sticker, a transmission cavity is provided in the lower function box, the transmission assembly is located in the transmission cavity, and the air vent and the auxiliary tube are both connected to a one-way valve and an electromagnetic control valve.
4. The assembly device of an ultra-thin vehicle-mounted fully laminated module according to claim 1, characterized in that: The fixing mechanism comprises: A fixed block is fixedly connected to the follower door, a third spring is fixedly connected to the interior of the fixed block, and the other end of the third spring is fixedly connected to the sliding block; A snap-fit strip, which is fixedly connected to the limiting box and has a snap-fit groove on one side thereof for cooperating with the sliding block; The guide channel has one end connected to the clamping groove and the other end extending to the outside of the limiting box. The guide channel is connected to the space in the working box.
5. The assembly device of the ultra-thin vehicle-mounted fully-fitted module according to claim 1, characterized in that: The trigger unit includes a trigger tube fixedly connected to the sealing plate, the outer wall sliding sleeve of the trigger tube is provided with a conducting tube fixedly connected to the auxiliary mechanism, an air-permeable plate is fixedly connected to the conducting tube, one side of the air-permeable plate is fixedly connected to a fourth spring, and the other end of the fourth spring is fixedly connected to a follower frame in contact with the trigger tube, a control board is also fixedly connected to the conducting tube, and a plurality of corresponding air leakage holes and blocking blocks are provided on the control board and the follower frame.
6. The assembly device of the ultra-thin vehicle-mounted fully-fitted module according to claim 5, characterized in that: The auxiliary mechanism includes: An air pump is fixedly connected to the auxiliary box, and an output end of the air pump is connected to a guide box located in the auxiliary box; A plurality of heating tubes are provided and fixedly connected to the conducting tube; The pressure relief pipe is arranged on the auxiliary box, and the auxiliary box is provided with a plurality of air suction holes.
Citation Information
Patent Citations
Touch screen and display module set full-vacuum applying technology
CN105511696A