A display module with a quick assembly structure
Through the combination of magnetic adsorption assembly and guide rail assembly, the rapid assembly and positioning of the display module is achieved, solving the problems of cumbersome assembly and difficulty in disassembly in the prior art, improving assembly efficiency and reducing accessories damage.
Patent Information
- Application Number
- CN202510662009.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2045-05-22
AI Technical Summary
The assembly method of the existing display module structure is complicated and relies on a large number of screws to fix it, which is difficult to disassemble and easily damage the components.
The magnetic adsorption assembly and the guide rail assembly are used for rapid assembly. The magnet and the magnet are magnetically matched, combined with the guiding role of the guide rail assembly, to realize the positioning and connection of the display module, and reduce the use of screws and snap structures.
The assembly process of the display module is simplified, the assembly efficiency is improved, the difficulty of disassembly and assembly is reduced, and the risk of damage to accessories is reduced.
Smart Images

Figure CN120195911B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of display devices, and in particular to a display module with a quick assembly structure. Background Art
[0002] Display devices are indispensable in modern life, widely used in computers, televisions, mobile phones, digital screens, industrial control equipment, outdoor displays, in-vehicle displays, and other devices capable of displaying images or text. The display module structure primarily performs the display function in display devices. Based on the display principles of the display module structure, display devices can be divided into LCD screens, OLED screens, CRT screens, and LED screens. LCD screens and OLED screens are the two most popular display devices in current life, and their application scenarios are relatively similar.
[0003] Display module structures vary across different fields. In addition to the display module body that performs the display function, the display module structure of most display devices also includes protective structures such as a bezel, back frame, and screen panel. The display module structure and the display device housing are primarily assembled and fixed using screws and clips. Existing assembly methods for display module structures have the following drawbacks: Assembly relies on a large number of screws, resulting in a cumbersome assembly process and difficulty in disassembly for maintenance, which can easily damage the display device components during disassembly. Summary of the Invention
[0004] In order to make the display module structure easier to assemble and disassemble, the present application provides a display module with a quick assembly structure.
[0005] The present application provides a display module with a quick assembly structure that adopts the following technical solutions:
[0006] A display module with a quick assembly structure comprises a display panel, a display module body, a frame, a back frame and a quick assembly structure; the display module body is mounted on the inner side of the back frame, the back frame is mounted on the inner side of the frame, and the frame is bonded to the display panel; the quick assembly structure comprises a magnetic adsorption component, the magnetic adsorption component comprises a magnet and a magnetic conductor, the magnet is fixedly mounted on the frame or the back frame, the magnet can be magnetically matched with the magnetic conductor, and the magnetic conductor is used to be pre-installed on the housing of the display device; the magnetic adsorption component is divided into a horizontal magnetic adsorption component and a vertical magnetic adsorption component, the adsorption surface of the horizontal magnetic adsorption component is perpendicular to the adsorption surface of the vertical magnetic adsorption component, and both are perpendicular to the display panel.
[0007] By adopting the above technical solution, the display panel, display module body, frame and back frame of the display module are pre-assembled into an integral structure, and the display module is assembled to the shell of the display device using a quick assembly component; when installing the display module, the magnet of the magnetic adsorption component is first fixedly installed on the shell of the display device, and then the display module is assembled to the shell of the display device. During this process, the magnet of the magnetic adsorption component is magnetically matched with the magnet, wherein the adsorption surface of the transverse magnetic adsorption component is perpendicular to the adsorption surface of the longitudinal magnetic adsorption component, so that the display module is simultaneously limited in the transverse and longitudinal directions, so that the display module is positioned, thereby greatly simplifying the positioning work of the display module, which is conducive to improving the assembly efficiency of the display module; on the other hand, the display module is connected to the shell of the display device through the magnetic adsorption component, which can reduce the number of screws and snap-fit structures, reduce the overall assembly difficulty of the display device, and make the display device easier to disassemble and assemble, thereby reducing the problem of damage to accessories during disassembly and repair of the display module.
[0008] Optionally, the magnetizer is a long strip structure, and a central axis is provided at one end of the magnetizer, the central axis is perpendicular to the adsorption surface between the magnetizer and the magnet, and the central axis is used to be rotatably connected to the housing of the display device.
[0009] By adopting the above technical solution, one end of the magnetizer is rotatably connected to the display device housing via a central axis, allowing the magnetizer to rotate about the central axis. During the display module installation process, the end of the magnetizer away from the central axis is first rotated out of the display device housing. This allows the magnet to form a magnetic attraction with the magnetizer at a distance from the display device housing, thereby facilitating the magnet-magnet interaction. When the display module is placed into the display device housing, the end of the magnetizer away from the central axis can rotate automatically to adjust its position.
[0010] Optionally, the quick assembly structure further includes a guide rail assembly, the guide rail assembly includes a slider and a guide rail, the slider is fixedly arranged on the outer peripheral surface of the frame, and the guide rail is used to be pre-installed on the inner wall of the display device.
[0011] By adopting the above technical solution, the display module and the housing of the display device are matched through the guide rail assembly, so that the position of the display module in the housing of the display device is further positioned.
[0012] Optionally, a plurality of glue filling grooves are provided on a side of the frame close to the display panel, the glue filling grooves extend along the circumference direction of the frame, the glue filling grooves are filled with a liquid silicone sealing layer, and an inflation tube is provided on the side of the liquid silicone sealing layer close to the bottom of the glue filling groove, the inflation tube is arranged along the entire length of the glue filling groove, the frame is provided with an inflation hole and a glue injection hole, the inflation hole passes through the glue filling groove, one end of the inflation tube serves as an inflation end, the inflation end of the inflation tube is connected to the inner wall of the inflation hole, and the end of the inflation tube away from the inflation end is pre-sealed.
[0013] By adopting the above technical solution, the frame of the display module and the display panel are bonded and sealed via a liquid silicone sealing layer. When using liquid silicone to bond the frame to the display panel, the frame and display panel are first aligned and fitted together; liquid silicone is then injected into the glue filling slot through the glue injection hole. The inflation tube is then inflated through the inflation hole, causing the inflation tube to expand and occupy the space within the filling slot. The inflation tube can fully push the liquid silicone into various areas within the glue filling slot, allowing the liquid silicone to fully bond to the display panel, which is beneficial for improving the bonding effect of the liquid silicone. Furthermore, after the liquid silicone solidifies, the inflation bag can cause the liquid silicone to form an elastic cavity structure, creating a high elastic buffering effect between the display panel and the frame.
[0014] Optionally, the material of the inflatable tube is a plastic film, and the inflatable tube is bonded to the bottom of the glue filling groove.
[0015] By adopting the above technical solution, the inflatable tube is made of plastic film, so that the space occupied by the inflatable tube in the glue filling groove is smaller when it is not expanded, and the inflatable tube is easier to expand when it is inflated.
[0016] Optionally, the inflation end of the inflatable tube is provided with a plug-in short tube, which is located on the inner side of the inflatable tube and inserted into the inflation hole. The plug-in short tube and the inner wall of the inflation hole jointly press the tube wall material of the inflatable tube, and the end of the inflatable tube corresponding to the plug-in short tube passes through the inflation hole and is hot-pressed and sealed.
[0017] By adopting the above technical solution, after the inflation tube is inflated, the end of the inflation tube extending out of the inflation hole is sealed by heat pressure, so that the inflation tube remains in an expanded state during the solidification process of the liquid silicone.
[0018] Optionally, a sealing coating is provided on a side of the frame close to the display panel.
[0019] By adopting the above technical solution, the sealing coating can seal the contact gap between the frame and the display panel, making it difficult for liquid silicone to leak from the glue filling groove, which is beneficial to reducing the waste of liquid silicone and keeping the inner surface of the display panel clean.
[0020] Optionally, the frame is provided with an exhaust hole, the exhaust hole is communicated with the glue filling groove, and the exhaust hole is filled with a cotton core rod.
[0021] By adopting this technical solution, the air in the glue filling groove can be discharged outward through the vent hole during the process of liquid silicone injection into the glue filling groove and inflation of the inflation tube, making the process of glue filling into the glue filling groove and inflation of the inflation tube smoother. The vent hole is filled with a cotton core to prevent the liquid silicone from leaking out of the vent hole.
[0022] Optionally, the back frame is provided with a plurality of telescopic snap-in structures, and the telescopic snap-in structures are used to snap-in with the outer shell of the display.
[0023] By adopting the above technical solution, after the display module is installed, it is clamped using the telescopic clamping structure, which is locked or released through a telescopic action, and is less likely to break than conventional clamping parts.
[0024] Optionally, a honeycomb aluminum support plate is provided on the inner side of the back frame, and the honeycomb aluminum support plate abuts against the display module body.
[0025] By adopting the above technical solution, the honeycomb aluminum support plate can enhance the support and protection effect of the back frame, and the honeycomb aluminum structure is a lightweight material, which has the effect of saving materials and reducing weight under the premise of the same support effect.
[0026] In summary, this application includes at least one of the following beneficial technical effects:
[0027] When installing the display module, the adsorption surface of the horizontal magnetic adsorption component is perpendicular to the adsorption surface of the vertical magnetic adsorption component, so that the display module is simultaneously limited in the horizontal and vertical directions, and the display module is positioned, which greatly simplifies the positioning work of the display module and is conducive to improving the assembly efficiency of the display module.
[0028] The display module's frame and display panel are bonded and sealed with a liquid silicone sealant. During the process of bonding the frame and display panel with liquid silicone, air is inflated into the expansion tube through the inflation hole, causing the tube to expand and occupy the space within the filling slot. The expansion tube can fully push the liquid silicone into all areas of the filling slot, allowing the liquid silicone to fully bond to the display panel, which helps improve the bonding effect of the liquid silicone. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 It is a schematic diagram of the overall structure of the display module of Example 1.
[0030] Figure 2 It is a schematic diagram of the exploded view of the display module of Example 1.
[0031] Figure 3 yes Figure 2 Magnified view at point A in the middle.
[0032] Figure 4 FIG. 1 is a schematic diagram of the display module in Example 2 with the display panel removed.
[0033] Figure 5 It is a cross-sectional view of the liquid silicone sealing layer in Example 2.
[0034] Figure 6 It is a schematic diagram of the overall structure of the display module of Example 3.
[0035] Figure 7 yes Figure 6 Magnified view at point B.
[0036] Figure 8 This is a schematic diagram of the telescopic clamping structure in Example 3 with the rocker arm removed.
[0037] Description of reference numerals:
[0038] 1. Display panel; 2. Display module body; 3. Frame; 34. Glue filling slot; 341. Inflatable hole; 342. Glue injection hole; 343. Exhaust hole; 344. Cotton core; 35. Liquid silicone sealant; 36. Inflatable tube; 361. Inflatable end; 362. Connecting short tube; 4. Back frame; 41. Honeycomb aluminum support plate; 42. Mounting port; 5. Magnetic adsorption component; 501. Horizontal magnetic adsorption component; 502. Vertical magnetic adsorption component; 51. Magnet; 52. Magnetic conductor; 5 21. Central axis; 6. Guide rail assembly; 61. Slider; 62. Guide rail; 7. Telescopic snap-fit structure; 71. Fixed seat; 711. Reciprocating slide; 72. Movable block; 721. Limiting ring groove; 7211. First recessed node; 7212. Second recessed node; 7213. First lead-in surface; 7214. First lead-out surface; 7215. Second lead-in surface; 7216. Second lead-out surface; 73. Limiting rocker arm; 731. Limiting structure; 74. Rebound member; 75. Clip-fit member. DETAILED DESCRIPTION
[0039] The following is combined with Figure 1-8 This application is described in further detail.
[0040] Example 1, this application embodiment discloses a display module with a quick assembly structure. Figure 1 and Figure 2The display module with a quick assembly structure includes a display panel 1, a display module body 2, a frame 3, a back frame 4 and a quick assembly structure; the display module body 2 is installed on the inner side of the back frame 4, the back frame 4 is snap-fitted and installed on the inner side of the frame 3, and the frame 3 is bonded to the display panel 1; the quick assembly structure includes a magnetic adsorption component 5, the magnetic adsorption component 5 includes a magnet 51 and a magnetic conductor 52, the magnet 51 is fixedly installed on the frame 3, the magnet 51 can be magnetically attracted to the magnetic conductor 52, and the magnetic conductor 52 is used to be pre-installed on the outer shell of the display device.
[0041] In this embodiment, the display module body 2 may be a display module based on LCD display technology or a display module based on OLED display technology.
[0042] The inner surface of the frame 3 is provided with a plurality of TPU buffer layers spaced circumferentially. The TPU buffer layers are injection molded and abut the outer surface of the back frame 4. The TPU buffer layers provide a cushioning effect for the back frame 4 and the display module body 2 inside the back frame 4.
[0043] Reference Figure 2 A honeycomb aluminum support plate 41 is provided on the inner side of the back frame 4. The honeycomb holes of the honeycomb aluminum support plate 41 are perpendicular to the honeycomb aluminum plate surface. The honeycomb aluminum support plate 41 is fixedly connected to the back frame 4 by ultrasonic welding. The honeycomb aluminum support plate 41 abuts the display module body 2 to support the display module body 2.
[0044] Reference Figure 1 and Figure 3 The magnetizer 52 is an elongated strip made of ferromagnetic material. A central axis 521 is provided at one end of the magnetizer 52. The central axis 521 is perpendicular to the adsorption surface between the magnetizer 52 and the magnet 51 and is configured to be rotatably connected to the housing of the display device. In this embodiment, the central axis 521 is specifically a half-thread screw. The threads of the half-thread screw are threadedly connected to the housing of the display device. The optical axis of the half-thread screw is threadedly connected to the magnetizer 52. The length of the optical axis of the half-thread screw is less than the thickness of the magnetizer 52, allowing the magnetizer 52 to rotate about the half-thread screw. When the half-thread screw is tightened, it compresses the magnetizer 52.
[0045] The magnetic adsorption component 5 is divided into a horizontal magnetic adsorption component 501 and a vertical magnetic adsorption component 502 according to different installation directions. The adsorption surface of the horizontal magnetic adsorption component 501 is perpendicular to the adsorption surface of the vertical magnetic adsorption component 502 and both are perpendicular to the display panel 1.
[0046] The quick assembly structure also includes a guide rail assembly 6, which includes a slider 61 and a guide rail 62. Slider 61 is fixed to the outer surface of frame 3, and guide rail 62 is pre-installed on the inner wall of the display device. While the display module is positioned using magnetic adsorption assembly 5, combined with the guiding function of guide rail assembly 6, the positioning accuracy of the display module during assembly can be further improved.
[0047] The implementation principle of a display module with a quick assembly structure in an embodiment of the present application is as follows: the display panel 1, display module body 2, frame 3 and back frame 4 of the display module are pre-assembled into an integral structure, and the display module is assembled to the housing of the display device using a quick assembly component; when installing the display module, the magnet 52 of the magnetic adsorption component 5 is first fixedly installed to the housing of the display device, and then the display module is assembled to the housing of the display device. During this process, the magnet 51 of the magnetic adsorption component 5 is magnetically attracted to the magnet 52, wherein the adsorption surface of the transverse magnetic adsorption component 501 is perpendicular to the adsorption surface of the longitudinal magnetic adsorption component 502, so that the display module is simultaneously subject to a transverse and longitudinal limiting effect, so that the display module is subject to a positioning effect, thereby greatly simplifying the positioning work of the display module, which is beneficial to improving the assembly efficiency of the display module; on the other hand, the display module is connected to the housing of the display device through the magnetic adsorption component 5, which can reduce the number of screws and snap-fit structures, reduce the overall assembly difficulty of the display device, and make the display device easier to disassemble and assemble, thereby reducing the problem of damage to accessories during disassembly and repair of the display module.
[0048] Example 2: This example differs from Example 1 in that the structure of the frame 3 in this example is different from that in Example 1.
[0049] Reference Figure 4 and Figure 5 In this embodiment, a plurality of glue-filling grooves 34 are provided on the side of the frame 3 near the display panel 1. The glue-filling grooves 34 extend along the perimeter of the frame 3 and are filled with a liquid silicone sealant 35. An inflation tube 36 is provided on the side of the liquid silicone sealant 35 near the bottom of the glue-filling groove 34. The inflation tube 36 extends along the entire length of the glue-filling groove 34. The inflation tube 36 is made of a plastic film and is bonded to the bottom of the glue-filling groove 34.
[0050] The frame 3 is provided with an inflation hole 341 and a glue injection hole 342. The inflation hole 341 extends through the glue filling groove 34. One end of the inflation tube 36 is designated as an inflation end 361. This end 361 is provided with a short plug-in tube 362, which is located inside the inflation tube 36 and inserted into the inflation hole 341. The short plug-in tube 362 and the inner wall of the inflation hole 341 work together to compress the tube wall material of the inflation tube 36. The end of the inflation tube 36 corresponding to the short plug-in tube 362 passes through the inflation hole 341 and is sealed by heat pressing. The end of the inflation tube 36 away from the inflation end 361 is pre-sealed.
[0051] A sealing coating is provided on one side of the frame 3 close to the display panel 1. The frame 3 is provided with an exhaust hole 343, which is connected to the glue filling groove 34 and filled with a cotton core 344.
[0052] The display module's frame 3 and display panel 1 are bonded and sealed together using a liquid silicone sealant 35. To bond the frame 3 and display panel 1 using liquid silicone, the frame 3 and display panel 1 are first aligned and bonded together. Liquid silicone is then injected into the glue slot 34 through the glue injection hole 342. Air is then inflated into the inflation tube 36 through the inflation hole 341, causing the inflation tube 36 to expand and occupy the space within the filling slot. This allows the inflation tube 36 to fully push the liquid silicone into various areas within the glue slot 34. During this process, air within the glue slot 34 is discharged through the exhaust hole 343. After the inflation tube 36 is inflated, the inflation end 361 of the inflation tube 36 is heat-pressed and sealed, allowing the liquid silicone to fully bond to the display panel 1, thereby improving the bonding effect of the liquid silicone. Furthermore, after the liquid silicone solidifies, the inflation bag forms an elastic cavity structure within the liquid silicone, creating a high elastic buffering effect between the display panel 1 and the frame 3.
[0053] Example 3, reference Figure 6 The difference between this embodiment and embodiment 1 is that the back frame 4 is provided with a plurality of telescopic snap-fit structures 7, which are fixedly mounted on the edge of the back frame 4. The back frame 4 is provided with mounting openings 42 for avoiding the telescopic snap-fit structures 7. The telescopic snap-fit structures 7 are used to snap-fit with the display housing.
[0054] Reference Figure 7 and Figure 8The telescopic clamping structure 7 includes a fixed seat 71, a movable block 72, a limiting rocker arm 73 and a clamping member 75. The fixed seat 71 is fixedly connected to the back frame 4, the fixed seat 71 reciprocates in the slide groove 711, the clamping member 75 is fixedly installed on the movable block 72, the movable block 72 is slidably installed in the reciprocating slide groove 711, the movable block 72 is provided with a limiting ring groove 721, one end of the limiting rocker arm 73 is hinged to the fixed seat 71, and the other end of the limiting rocker arm 73 is provided with a limiting structure 731. The limiting structure 731 is slidably connected to the limiting ring groove 721 along the extension direction of the limiting ring groove 721; the outer peripheral wall of the limiting ring groove 721 is provided with a A first recessed node 7211 and a second recessed node 7212 are provided on the inner peripheral wall of the limiting groove. The direction of the line connecting the first recessed node 7211 and the second recessed node 7212 is parallel to the sliding direction of the movable block 72. A rebound member 74 is provided in the reciprocating slide groove 711 of the fixed seat 71. The rebound member 74 is a compression spring, an air bag or a rubber block, etc. The rebound member 74 is in a pre-compression deformed state. The rebound member 74 is located between the hinged end of the movable block 72 and the limiting rocker arm 73. The elastic force of the rebound member 74 can force the limiting structure 731 to remain at the first recessed node 7211 or the second recessed node 7212.
[0055] The inner circumferential wall of the limiting ring groove 721 is formed with a first introduction surface 7213 and a first export surface 7214 at the position corresponding to the first recessed node 7211. The first introduction surface 7213 and the first export surface 7214 are connected with each other. The first introduction surface 7213 is used to introduce the limiting structure 731 into the first recessed node 7211, and the first export surface 7214 is used to guide the limiting structure 731 out of the first recessed node 7211; the outer circumferential wall of the limiting ring groove 721 is formed with a second introduction surface 7215 and a second export surface 7216 at the position corresponding to the second recessed node 7212. The second introduction surface 7215 and the second export surface 7216 are connected with each other. The second introduction surface 7215 is used to introduce the limiting structure 731 into the second recessed node 7212, and the second export surface 7216 is used to guide the limiting structure 731 out of the second recessed node 7212.
[0056] In this embodiment, when the telescopic clamping structure 7 is in use, the elastic force of the rebound member 74 forces the limiting structure 731 of the rocker arm to remain at the first recessed node 7211 or the second recessed node 7212. When the movable block 72 is pushed by an external force, the limiting structure 731 can alternately stay at the first recessed node 7211 or the second recessed node 7212, so that the clamping member 75 can switch between the engaged state and the disengaged state, thereby achieving the purpose of using the telescopic clamping structure 7 to clamp the shell of the display device.
[0057] Specifically, when the limiting structure 731 is at the first recessed node 7211, a thrust is applied to the movable block 72 to increase the deformation of the rebound member 74, so that the limiting structure 731 abuts the first guide surface 7214, and then the movable block 72 is released. The movable block 72 slides along the limiting ring groove 721 under the elastic force of the rebound member 74, and enters the second recessed node 7212 under the guidance of the second introduction surface 7215; similarly, when the limiting structure 731 is at the second recessed node 7212, a thrust is applied to the movable block 72 to increase the deformation of the rebound member 74, so that the limiting structure 731 abuts the second guide surface 7216, and then the movable block 72 is released. The movable block 72 slides along the limiting ring groove 721 under the elastic force of the rebound member 74, and enters the first recessed node 7211 under the guidance of the first introduction surface 7213.
[0058] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A display module with a quick assembly structure, characterized by: The invention comprises a display panel (1), a display module body (2), a frame (3), a back frame (4) and a quick assembly structure; the display module body (2) is mounted on the inner side of the back frame (4), the back frame (4) is mounted on the inner side of the frame (3), and the frame (3) is bonded to the display panel (1); the quick assembly structure comprises a magnetic adsorption component (5), the magnetic adsorption component (5) comprises a magnet (51) and a magnetic conductor (52), the magnet (51) is fixedly mounted on the frame (3) or the back frame (4), the magnet (51) can be magnetically matched with the magnetic conductor (52), and the magnetic conductor (52) is used to be pre-installed on the housing of the display device; the magnetic adsorption component (5) is divided into a transverse magnetic adsorption component (501) and a longitudinal magnetic adsorption component (502), the adsorption surface of the transverse magnetic adsorption component (501) is perpendicular to the adsorption surface of the longitudinal magnetic adsorption component (502), and both are perpendicular to the display panel (1); A plurality of glue filling grooves (34) are provided on a side of the frame (3) close to the display panel (1), the glue filling grooves (34) extending along the circumference direction of the frame (3), the glue filling grooves (34) being filled with a liquid silicone sealing layer (35), an inflation tube (36) being provided on a side of the liquid silicone sealing layer (35) close to the bottom of the glue filling groove (34), the inflation tube (36) being provided along the entire length of the glue filling groove (34), the frame (3) being provided with an inflation hole (341) and a glue injection hole (342), the inflation hole (341) passing through the glue filling groove (34); one end of the inflation tube (36) serving as an inflation end (361), the inflation end (361) of the inflation tube (36) being connected to the inner wall of the inflation hole (341), and the end of the inflation tube (36) away from the inflation end (361) being pre-sealed.
2. The display module with a quick assembly structure according to claim 1, characterized in that: The magnetizer (52) is a long strip structure. A central axis (521) is provided at one end of the magnetizer (52). The central axis (521) is perpendicular to the adsorption surface between the magnetizer (52) and the magnet (51). The central axis (521) is used for rotationally connecting with the housing of the display device.
3. The display module with a quick assembly structure according to claim 1, characterized in that: The quick assembly structure further comprises a guide rail assembly (6), wherein the guide rail assembly (6) comprises a slider (61) and a guide rail (62), wherein the slider (61) is fixedly arranged on the outer peripheral surface of the frame (3), and the guide rail (62) is used for being pre-installed on the inner wall of the display device.
4. The display module with a quick assembly structure according to claim 1, characterized in that: The material of the inflatable tube (36) is a plastic film, and the inflatable tube (36) is bonded to the bottom of the glue filling groove (34).
5. The display module with a quick assembly structure according to claim 4, characterized in that: The inflation end (361) of the inflation tube (36) is provided with a plug-in short tube (362), and the plug-in short tube (362) is located on the inner side of the inflation tube (36) and is inserted into the inflation hole (341). The plug-in short tube (362) and the inner wall of the inflation hole (341) jointly press the tube wall material of the inflation tube (36), and the end of the inflation tube (36) corresponding to the plug-in short tube (362) passes through the inflation hole (341) and is sealed by heat pressing.
6. The display module with a quick assembly structure according to claim 1, characterized in that: A sealing coating is provided on a side of the frame (3) close to the display panel (1).
7. The display module with a quick assembly structure according to claim 1, characterized in that: The frame (3) is provided with an exhaust hole (343), the exhaust hole (343) is communicated with the glue filling groove (34), and the exhaust hole (343) is filled with a cotton core rod (344).
8. The display module with a quick assembly structure according to claim 1, characterized in that: The back frame (4) is provided with a plurality of telescopic snap-in structures (7), and the telescopic snap-in structures (7) are used for snap-in connection with the outer shell of the display.
9. The display module with a quick assembly structure according to claim 1, characterized in that: A honeycomb aluminum support plate (41) is provided on the inner side of the back frame (4), and the honeycomb aluminum support plate (41) abuts against the display module body (2).
Citation Information
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