Display module aging equipment

By designing a display module aging equipment with detachable and connectable aging and testing chambers, combined with a multi-layer trolley and slide rail system, the problem of insufficient flexibility of existing equipment is solved, achieving efficient aging testing of LCD panels and improving production capacity and testing efficiency.

CN224005192UActive Publication Date: 2026-03-17HKC CORP LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing LCD panel aging equipment lacks flexibility, cannot meet the needs of multiple scenarios, and has insufficient production capacity.

Method used

Design an aging device for display modules that includes an aging treatment chamber and a testing treatment chamber. The two chambers are detachably connected and can be moved to a vehicle after disassembly. The device is built in a modular fashion, combined with a multi-layer trolley structure and a slide rail system, to achieve flexible aging testing.

Benefits of technology

It improves the capacity and flexibility of aging tests for LCD panels, enabling rapid adaptation to different production scenarios and increasing testing efficiency and product yield.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses aging equipment of a display module, and relates to the technical field of display. Comprising an aging treatment chamber and a detection treatment chamber, the aging treatment chamber and the detection treatment chamber are adjacently arranged, and the aging treatment chamber and the detection treatment chamber are detachably connected; through the design, the use is convenient, and the productivity is improved.
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Description

Technical Field

[0001] This application relates to the field of display technology, and more particularly to an aging device for a display module. Background Technology

[0002] With the development of LCD panel technology, more and more products are choosing LCD display modules for display. In the production process of LCD panels, aging (AGN) testing of LCD panels is required: this includes providing environmental conditions such as constant temperature, humidity, and light to conduct long-term lighting and aging tests on the LCD panels in order to screen out defective products and improve product yield.

[0003] The product aging process for LCD panels has also undergone a series of technological evolutions. Currently, factories only have fixed AGN (Automatic Generative Repair) equipment, mainly from manufacturers such as Jingce, Teyi, and Youbei. This equipment is not very flexible, can only be used for products on-site, and cannot be exposed outdoors, which has certain limitations. At the same time, the AGN duration may not be sufficient to meet production capacity. Utility Model Content

[0004] The purpose of this application is to provide an aging device for display modules that is easy to use and increases productivity.

[0005] This application discloses an aging device for a display module, including an aging chamber and a testing chamber, wherein the aging chamber and the testing chamber are arranged adjacent to each other and are detachably connected.

[0006] Optionally, both the aging chamber and the testing chamber are movable; the aging equipment further includes multiple trolley structures and slide rail structures. The trolley structure includes a trolley body, multiple storage compartments, and multiple connecting modules. The multiple storage compartments are stacked sequentially on the trolley body for placing the display module. The multiple connecting modules are arranged one-to-one with the multiple storage compartments for connecting to the display module. The slide rail structure is located in the testing chamber and the aging chamber, and the multiple trolley structures move cyclically along the slide rail structure.

[0007] Optionally, the aging chamber includes a first aging chamber body and a second aging chamber body; the testing chamber includes a first inspection area and a second inspection area, the first inspection area and the second inspection area are arranged opposite to each other; the first aging chamber body and the second aging chamber body are arranged side by side and located between the first inspection area and the second inspection area; the first inspection area is detachably connected to the first aging chamber body, the first aging chamber body and the second aging chamber body are detachably connected, and the second inspection area is detachably connected to the second aging chamber body; the slide rail structure includes a first slide rail, a second slide rail, a third slide rail and a fourth slide rail; the first slide rail is disposed within the first inspection area; the second slide rail is disposed within the first aging chamber body and the second aging chamber body; the third slide rail is disposed within the second inspection area; and the fourth slide rail is disposed between the first inspection area and the second inspection area and is arranged side by side with the second slide rail.

[0008] Optionally, the first inspection area includes a first inspection area body and a first inspection light box, a first transfer mechanism, a trolley loading position, and a trolley aging waiting position sequentially arranged within the first inspection area body. The trolley aging waiting position is located on one side of the first aging chamber body, the trolley loading position is located on one side of the trolley aging waiting position, the first transfer mechanism is located on the side of the trolley loading position away from the trolley aging waiting position, and the first inspection light box is located on the side of the first transfer mechanism away from the trolley loading position. The second inspection area includes a second inspection area body and a first inspection light box, a first transfer mechanism, a trolley loading position, and a trolley aging waiting position sequentially arranged within the first inspection area body. The second inspection light box, the second transfer mechanism, the trolley unloading position, and the trolley unloading waiting position are located within the main body of the second inspection area. The trolley unloading waiting position is located on one side of the main body of the second aging chamber. The second transfer mechanism is located on the side of the trolley unloading position away from the trolley unloading waiting position. The second inspection light box is located on the side of the second transfer mechanism away from the trolley unloading position. The trolley aging waiting position is connected to the trolley unloading waiting position via the second slide rail, and the trolley loading position is connected to the trolley unloading position via the fourth slide rail.

[0009] Optionally, the first transfer mechanism includes a first drive component, a first handling arm, a first fixed frame, a second drive component, and a first transfer fork. The first drive component and the first handling arm are both disposed within the first detection light box. The first handling arm is disposed on the first detection light box and connected to the first drive component. The first fixed frame is disposed on one side of the first detection light box. The second drive component and the first transfer fork are both disposed on the first fixed frame, and the first transfer fork is connected to the first fixed frame via the second drive component. The second transfer mechanism includes a third drive component, a second handling arm, a second fixed frame, a fourth drive component, and a second transfer fork. The third drive component and the second handling arm are both disposed within the second detection light box. The second handling arm is disposed on the second detection light box and connected to the third drive component. The second fixed frame is disposed on one side of the second detection light box. The fourth drive component and the second transfer fork are both disposed on the second fixed frame, and the second transfer fork is connected to the second fixed frame via the fourth drive component.

[0010] Optionally, the aging equipment further includes a test area and a finished product area, which are arranged side by side between the first detection light box and the second detection light box, with the test area closer to the first detection light box and the finished product area closer to the second detection light box.

[0011] Optionally, the first transfer fork includes a first cylinder structure, a first fixed bracket, and a first fork structure. The second driving member is disposed on one side of the first cylinder structure, and the first fork structure is disposed on one side of the first fixed bracket, and is drivenly connected to the first cylinder structure through the first fixed bracket. The second transfer fork includes a second cylinder structure, a second fixed bracket, and a second fork structure. The fourth driving member is disposed on one side of the second cylinder structure, and the second fork structure is disposed on one side of the second fixed bracket, and is drivenly connected to the second cylinder structure through the second fixed bracket.

[0012] Optionally, the first transfer fork further includes a plurality of first suction nozzles disposed on the first fork structure; the second transfer fork further includes a plurality of second suction nozzles disposed on the second fork structure.

[0013] Optionally, the aging setting further includes a channel structure area, which is located on one side of the test placement area and the finished product placement area, and the width of the channel structure area is greater than the distance between the first inspection area and the second inspection area.

[0014] Optionally, the storage compartment has 25 layers, and the height between two adjacent layers is 70 mm.

[0015] Compared to the current solutions that only have fixed aging equipment and lack flexibility, the aging equipment for display modules in this application includes an aging treatment chamber and a testing treatment chamber. The aging treatment chamber and the testing treatment chamber are arranged adjacent to each other and can be detached and connected. This allows the aging equipment to be disassembled and moved to the destination by vehicle according to the area where the liquid crystal display panel to be aged is located. Then, it can be quickly put into use for AGN aging tests through modular assembly, thereby increasing production capacity. Attached Figure Description

[0016] The accompanying drawings, which form part of the specification, are used to provide a further understanding of the embodiments of this application and illustrate the implementation methods of this application, together with the textual description, to explain the principles of this application. Obviously, the drawings described below are merely some embodiments of this application, and those skilled in the art can obtain other drawings based on these drawings without any creative effort. In the drawings:

[0017] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the aging device provided in the embodiments of this application;

[0018] Figure 2 This is a schematic diagram of the internal mechanical architecture of the aging device provided in the embodiments of this application;

[0019] Figure 3 This is a schematic diagram of the trolley structure and slide rail structure provided in the embodiments of this application.

[0020] Figure 4 yes Figure 2 A schematic diagram of the internal mechanical structure of the first or second inspection area;

[0021] Figure 5 This is a schematic diagram of the structure of the first or second intermediate turning fork provided in the embodiments of this application.

[0022] The components are as follows: 10. Aging equipment; 100. Aging treatment chamber; 110. First aging chamber body; 120. Second aging chamber body; 200. Testing and processing chamber; 210. First inspection area; 211. First inspection area body; 212. First testing light box; 213. First transfer mechanism; 214. Cart loading position; 215. Cart aging waiting position; 216. First handling arm; 217. First fixed frame; 218. Second drive component; 219. First transfer fork; 220. First cylinder structure; 221. First fixed bracket; 222. First fork structure; 230. Second inspection area; 231. Second inspection area body; 232. Second testing light box; 233. Second transfer mechanism; 234. Cart unloading position; 235. Cart unloading... 236. Material waiting position; 237. Second handling arm; 238. Second fixed frame; 239. Fourth drive component; 240. Second transfer fork; 241. Second cylinder structure; 242. Second fixed bracket; 243. Second fork structure; 244. Fixed arm; 245. Sliding component; 246. Fixed part; 247. Fork component; 248. In-use sensor; 249. First suction nozzle; 300. Trolley structure; 310. Trolley body; 320. Storage compartment; 400. Slide rail structure; 410. First slide rail; 420. Second slide rail; 430. Third slide rail; 440. Fourth slide rail; 500. Test area; 600. Finished product area; 700. Channel structure area; 800. Display module; 900. Casters. Detailed Implementation

[0023] It should be understood that the terminology, specific structural and functional details used herein are merely for describing particular embodiments and are representative. However, this application may be implemented in many alternative forms and should not be construed as being limited to the embodiments set forth herein.

[0024] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating relative importance or implying the number of indicated technical features. Therefore, unless otherwise stated, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature; "multiple" means two or more. The term "comprising" and any variations thereof mean a non-exclusive inclusion, which may include or add one or more other features, integers, steps, operations, units, components, and / or combinations thereof. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0025] The present application will now be described in detail with reference to the accompanying drawings and optional embodiments.

[0026] Figure 1This is a schematic diagram of the overall three-dimensional structure of the aging device provided in the embodiments of this application, such as... Figure 1 As shown, this application discloses an aging device 10, including an aging treatment chamber 100 and a testing treatment chamber 200. The aging treatment chamber 100 and the testing treatment chamber 200 are arranged adjacent to each other and are detachably connected.

[0027] Compared to the current solution with only a fixed aging equipment 10, which has low flexibility, the aging equipment 10 of the display module 800 in this application includes an aging treatment chamber 100 and a testing treatment chamber 200. The aging treatment chamber 100 and the testing treatment chamber 200 are arranged adjacent to each other and can be detachably connected. This allows the aging equipment 10 to be disassembled and moved to the destination by vehicle according to the area where the liquid crystal display panel to be aged is located. Then, it can be quickly put into use for AGN aging tests through modular assembly, thereby increasing production capacity.

[0028] Specifically, both the aging treatment chamber 100 and the testing treatment chamber 200 are movable. Casters 900 can be installed under the aging treatment chamber 100 and the testing treatment chamber 200 to facilitate the movement of the aging equipment 10 within the production workshop and to flexibly adjust the production layout. The casters 900 are designed to be lockable. After the equipment is moved to its destination, the casters 900 can be locked to ensure the stability of the aging treatment chamber 100 and the testing treatment chamber 200.

[0029] Figure 2 This is a schematic diagram of the internal mechanical structure of the aging device provided in the embodiments of this application. Figure 3 This is a schematic diagram of the structure of the trolley structure 300 and the slide rail structure 400 provided in the embodiments of this application. Figures 2-3As shown, the aging equipment 10 also includes multiple trolley structures 300 and a slide rail structure 400. Each trolley structure 300 includes a trolley body 310, multi-layer storage compartments 320, and multiple connecting modules. The multi-layer storage compartments 320 are stacked sequentially on the trolley body 310 for placing the display module 800. Each connecting module corresponds to one of the multi-layer storage compartments 320 and is used to connect to the display module 800. The slide rail structure 400 is located within the testing chamber 200 and the aging chamber 100, and the multiple trolley structures 300 move cyclically along the slide rail structure 400. This allows multiple trolley structures 300 to be moved to corresponding areas for aging tests on the display module 800 loaded on the trolley structure 300, facilitating operation. The storage compartment 320 can be set to 25 layers. One trolley structure 300 can test 25 display modules 800. With so many trolley structures 300 running at the same time, the efficiency of testing display modules 800 is improved. In addition, the height between two adjacent layers is 70 mm to ensure the spacing between adjacent display modules 800 and avoid pressure between them, which could damage the display modules 800.

[0030] Figure 4 yes Figure 2 A schematic diagram of the internal mechanical structure of the first or second inspection area, as shown below. Figure 4 As shown, combined with Figure 2 The testing chamber 200 includes a first inspection area 210 and a second inspection area 230. The aging chamber 100 includes a first aging chamber body 110 and a second aging chamber body 120. The first inspection area 210 and the second inspection area 230 are arranged opposite to each other, and the first aging chamber body 110 and the second aging chamber body 120 are arranged side by side and located between the first inspection area 210 and the second inspection area 230. The first inspection area 210 is detachably connected to the first aging chamber body 110, and the first aging chamber body 110 and the second aging chamber body 120 are detachably connected. The second inspection area 230 is detachably connected to the second aging chamber body 120; the slide rail structure 400 includes a first slide rail 410, a second slide rail 420, a third slide rail 430 and a fourth slide rail 440. The first slide rail 410 is disposed in the first inspection area 210, the second slide rail 420 is disposed in the first aging chamber body 110 and the second aging chamber body 120, the third slide rail 430 is disposed in the second inspection area 230, and the fourth slide rail 440 is disposed between the first inspection area 210 and the second inspection area 230, and is arranged in parallel with the second slide rail 420.

[0031] The first inspection area 210 includes a first inspection area body 211 and a first inspection light box 212, a first transfer mechanism 213, a trolley loading position 214, and a trolley aging waiting position 215, which are sequentially arranged in the first inspection area body 211. The trolley aging waiting position 215 is located on one side of the first aging chamber body 110. The trolley loading position 214 is located on one side of the trolley aging waiting position 215. The first transfer mechanism 213 is located on the side of the trolley loading position 214 away from the trolley aging waiting position 215. The first inspection light box 212 is located on the side of the first transfer mechanism 213 away from the trolley loading position 214.

[0032] The second inspection area 230 includes a second inspection area body 231 and a second inspection light box 232, a second transfer mechanism 233, a trolley unloading position 234, and a trolley unloading waiting position 235, which are sequentially arranged within the second inspection area body 231. The trolley unloading waiting position 235 is located on one side of the second aging chamber body 120, the trolley unloading position 234 is located on one side of the trolley unloading waiting position 235, the second transfer mechanism 233 is located on the side of the trolley unloading position 234 away from the trolley unloading waiting position 235, and the second inspection light box 232 is located on the side of the second transfer mechanism 233 away from the trolley unloading position 234. The trolley aging waiting position 215 is connected to the trolley unloading waiting position 235 via the second slide rail 420, and the trolley loading position 214 is connected to the trolley unloading position 234 via the fourth slide rail 440.

[0033] The first inspection light box 212 mainly performs preliminary inspection on the display module 800 to check whether the display module 800 lights up normally. The first aging chamber body 110 and the second aging chamber body 120 mainly perform aging tests on the display module 800 after the preliminary inspection. During the aging test, the display module 800 will be lit up continuously and the screen will be automatically switched. The main technologies include constant temperature control of the cavity, BIST control, and current and voltage regulation monitoring. The second inspection light box 232 mainly performs light tests on the display module 800 that has completed the aging test through the first aging chamber body 110 and the second aging chamber body 120. After the aging fatigue test, the display module 800 will show certain defects. At this time, the defective display module 800 can be detected by the second inspection area 230 in combination with API testing, thereby improving the product pass rate.

[0034] The first transfer mechanism 213 includes a first drive member, a first handling arm 216, a first fixed frame 217, a second drive member 218, and a first transfer fork 219. The first drive member and the first handling arm 216 are both disposed inside the first detection light box 212. The first handling arm 216 is disposed on the first detection light box 212 and connected to the first drive member. The first fixed frame 217 is disposed on one side of the first detection light box 212. The second drive member 218 and the first transfer fork 219 are both disposed on the first fixed frame 217, and the first transfer fork 219 is connected to the first fixed frame 217 through the second drive member 218. The second transfer mechanism 233 includes a third drive member, a second handling arm 236, a second fixed frame 237, a fourth drive member 238, and a second transfer fork 239. The third drive member and the second handling arm 236 are both disposed inside the second detection light box 232. The second handling arm 236 is disposed on the second detection light box 232 and connected to the third drive member. The second fixed frame 237 is disposed on one side of the second detection light box 232. The fourth drive member 238 and the second transfer fork 239 are both disposed on the second fixed frame 237, and the second transfer fork 239 is connected to the second fixed frame 237 through the fourth drive member 238.

[0035] like Figure 1As shown, the aging equipment 10 also includes a test placement area 500 and a finished product placement area 600. The test placement area 500 and the finished product placement area 600 are arranged side by side between the first detection light box 231 and the second detection light box 232, with the test placement area 500 closer to the first detection light box 231 and the finished product placement area 600 closer to the second detection light box 232. The display module 800 to be tested can be placed in the test placement area 500. The display module 800 to be tested is manually placed in the first detection light box 231 for initial inspection. After the inspection is completed, the first transport arm 216 transports the initially inspected display module 800 to the first transfer fork 219. The first transfer fork 219 transports the display module 800 to the trolley structure 300 of the trolley loading position 214. After the storage compartment of structure 300 is fully filled, the trolley structure 300 is driven to slide along the first slide rail 410 to the trolley aging waiting position 215 to wait for aging. It then enters the first aging chamber body 110 and the second aging chamber body 120 along the second slide rail 420 for aging testing. After the aging test in the aging zone, the trolley structure 300 moves along the third slide rail 430 to the trolley unloading waiting position 235, and then slides to the trolley unloading position 234. At this time, the second transfer tooth fork 239 is driven to transport the display module 800 that has completed the aging test on the trolley structure 300 to the second transport arm 236. The second transport arm 236 transports the display module 800 that has completed the aging test to the second test light box 232 for testing. The qualified display module 800 is then transported to the finished product placement area 600 for packaging. At this time, the entire aging test is completed. Meanwhile, the empty trolley structure 300, located at the unloading position 234, returns to the loading position 214 along the fourth slide rail 440 to resume transporting the display module 800 to be tested, and so on in a cyclical operation.

[0036] Figure 5 This is a schematic diagram of the structure of the first or second intermediate turning fork provided in the embodiments of this application, as shown below. Figure 5 As shown, the first driving component consists of servo motors in four directions: X, Y, Z, and R. The first handling arm 216 can be a gripper. The handling action is completed by controlling the servo motor to drive the gripper. Similarly, the third driving component adopts the same design as the first driving component. The second handling arm 236 is also a gripper. Its operating principle is the same as the first handling arm, which completes the handling of the display module 800 after the detection is completed.

[0037] The first transfer fork includes a first cylinder structure 220, a first fixed bracket 221, and a first fork structure 222. The second driving member is disposed on one side of the first cylinder structure 220, and the first fork structure 222 is disposed on one side of the first fixed bracket 221, and is drivenly connected to the first cylinder structure 220 through the first fixed bracket 221. The second transfer fork 239 includes a second cylinder structure 240, a second fixed bracket 241, and a second fork structure 242. The fourth driving member 238 is disposed on one side of the second cylinder structure 240, and the second fork structure 242 is disposed on one side of the second fixed bracket 241, and is drivenly connected to the second cylinder structure 240 through the second fixed bracket 241.

[0038] The second driving component 218 and the fourth driving component 238 are servo motors covering the X, Y, and Z directions. The first fixed bracket 221 includes a fixed arm 243 and a sliding component 244. The first toothed fork structure 222 includes a fixed part 245 and multiple toothed fork components 246. The multiple toothed fork components 246 are spaced apart, and one end of each toothed fork component 246 is fixedly connected to the fixed part 245, forming a transfer structure capable of carrying the display module 800 in cooperation with the fixed part 245. The fixed part 245 is fixedly connected to the sliding component 244, and the sliding component 244 is disposed on the fixed arm 243 and slidably connected to the fixed arm 243. Thus, driven by the servo motor, the fixed arm 243 and the sliding component are driven to move in coordination to complete the transfer of the display module 800. The first transfer fork 219 also includes a registered sensor 247 for sensing whether the display module 800 has been supported. Two registered sensors 247 can be provided. There can be six fork members 246. Along the direction gradually away from the fixing arm 243, one registered sensor 247 can be provided on the second fork member 246 and the other registered sensor 247 can be provided on the fifth fork member 246. In this way, both registered sensors 247 are located within the space occupied by the display module 800 after it is placed, which can make relatively accurate detection and judgment, improve transfer efficiency. In addition, each fork member 246 is provided with a first suction nozzle 248 on the upper surface that contacts the display module 800 for fixing the display module 800. Multiple first suction nozzles 248 can be arranged at intervals to make it less likely for the display module 800 to fall off during the transfer process after it is placed on the fork member 246, thus ensuring transfer safety.

[0039] The structure of the second intermediate fork 239 is the same as that of the first intermediate fork 219, and the second suction nozzle 248 is disposed on the tooth fork part 246 of the second intermediate fork 239, which will not be described in detail here.

[0040] In addition, the aging setup may also include a channel structure area 700. The channel facilitates the handling and loading / unloading of goods by personnel. The channel structure area 700 is located on one side of the test placement area 500 and the finished product placement area 600, and the width of the channel structure area 700 is greater than the distance between the first inspection area 210 and the second inspection area 230. This ensures the safety of personnel passage during the entire aging test of the display module 800.

[0041] It should be noted that the inventive concept of this application can form many embodiments, but due to the limited space of the application documents, they cannot all be listed. Therefore, without conflict, the embodiments described above or the technical features can be arbitrarily combined to form new embodiments. After the embodiments or technical features are combined, the original technical effect will be enhanced.

[0042] The above description, in conjunction with specific optional embodiments, provides a further detailed explanation of this application and should not be construed as limiting the specific implementation of this application to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of this application, and all such modifications or substitutions should be considered within the scope of protection of this application.

Claims

1. An aging device for a display module, characterized in that, It includes an aging treatment chamber and a testing treatment chamber, which are arranged adjacent to each other and are detachably connected. Both the aging treatment chamber and the testing treatment chamber are movable; The aging equipment also includes multiple trolley structures and slide rail structures. The trolley structure includes a trolley body, multiple storage compartments and multiple connection modules. The multiple storage compartments are stacked sequentially on the trolley body for placing the display module. Multiple connection modules are configured one-to-one with the multi-layer storage compartments and are used to connect to the display module; The slide rail structure is installed in the testing and processing chamber and the aging processing chamber, and multiple trolley structures move cyclically along the slide rail structure.

2. The aging equipment for the display module according to claim 1, characterized in that, The aging chamber includes a first aging chamber body and a second aging chamber body. The testing chamber includes a first inspection area and a second inspection area. The first inspection area and the second inspection area are arranged opposite to each other. The first aging chamber body and the second aging chamber body are arranged side by side and located between the first inspection area and the second inspection area. The first inspection area is detachably connected to the first aging chamber body, the first aging chamber body and the second aging chamber body are detachably connected, and the second inspection area is detachably connected to the second aging chamber body. The slide rail structure includes a first slide rail, a second slide rail, a third slide rail, and a fourth slide rail. The first slide rail is disposed within the first inspection area, the second slide rail is disposed within the first aging chamber body and the second aging chamber body, the third slide rail is disposed within the second inspection area, and the fourth slide rail is disposed between the first inspection area and the second inspection area, and is disposed parallel to the second slide rail.

3. The aging equipment for the display module according to claim 2, characterized in that, The first inspection area includes a first inspection area body and a first inspection light box, a first transfer mechanism, a trolley loading position, and a trolley aging waiting position arranged sequentially within the first inspection area body. The trolley aging waiting position is located on one side of the first aging chamber body, the trolley loading position is located on one side of the trolley aging waiting position, the first transfer mechanism is located on the side of the trolley loading position away from the trolley aging waiting position, and the first inspection light box is located on the side of the first transfer mechanism away from the trolley loading position. The second inspection area includes a second inspection area body and a second inspection light box, a second transfer mechanism, a trolley unloading position, and a trolley unloading waiting position arranged sequentially within the second inspection area body. The trolley unloading waiting position is located on one side of the second aging chamber body, the trolley unloading position is located on one side of the trolley unloading waiting position, the second transfer mechanism is located on the side of the trolley unloading position away from the trolley unloading waiting position, and the second inspection light box is located on the side of the second transfer mechanism away from the trolley unloading position. The aging waiting position of the trolley is connected to the unloading waiting position of the trolley via the second slide rail, and the loading position of the trolley is connected to the unloading position of the trolley via the fourth slide rail.

4. The aging equipment for the display module according to claim 3, characterized in that, The first transfer mechanism includes a first drive component, a first handling arm, a first fixed frame, a second drive component, and a first transfer fork. The first drive component and the first handling arm are both disposed inside the first detection light box. The first handling arm is disposed on the first detection light box and connected to the first drive component. The first fixed frame is disposed on one side of the first detection light box. The second drive component and the first transfer fork are both disposed on the first fixed frame, and the first transfer fork is connected to the first fixed frame through the second drive component. The second transfer mechanism includes a third drive component, a second handling arm, a second fixed frame, a fourth drive component, and a second transfer fork. The third drive component and the second handling arm are both disposed inside the second detection light box. The second handling arm is disposed on the second detection light box and connected to the third drive component. The second fixed frame is disposed on one side of the second detection light box. The fourth drive component and the second transfer fork are both disposed on the second fixed frame, and the second transfer fork is connected to the second fixed frame through the fourth drive component.

5. The aging equipment for the display module according to claim 3, characterized in that, The aging equipment also includes a test area and a finished product area, which are arranged side by side between the first detection light box and the second detection light box, with the test area closer to the first detection light box and the finished product area closer to the second detection light box.

6. The aging equipment for the display module according to claim 4, characterized in that, The first transfer fork includes a first cylinder structure, a first fixed bracket, and a first fork structure. The second drive member is disposed on one side of the first cylinder structure, and the first fork structure is disposed on one side of the first fixed bracket, and is drivenly connected to the first cylinder structure through the first fixed bracket. The second transfer fork includes a second cylinder structure, a second fixed bracket, and a second fork structure. The fourth driving member is disposed on one side of the second cylinder structure, and the second fork structure is disposed on one side of the second fixed bracket, and is drivenly connected to the second cylinder structure through the second fixed bracket.

7. The aging equipment for a display module according to claim 6, characterized in that, The first transfer fork further includes a plurality of first suction nozzles, which are disposed on the first fork structure; the second transfer fork further includes a plurality of second suction nozzles, which are disposed on the second fork structure.

8. The aging equipment for a display module according to claim 5, characterized in that, The aging setup also includes a channel structure area, which is located on one side of the test placement area and the finished product placement area, and the width of the channel structure area is greater than the distance between the first inspection area and the second inspection area.

9. The aging equipment for a display module according to claim 1, characterized in that, The storage compartment has 25 layers, and the height between two adjacent layers is 70 mm.