Assembly device
The heat sink is automatically bonded to the back of the display module by flipped parts in the assembly device, which solves the problem of wrinkles or bubbles easily during manual bonding, and improves the bonding effect and the reliability of the display device.
Patent Information
- Application Number
- CN202422141707.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-30
AI Technical Summary
During the process of bonding the graphite sheet to the back of the display module, wrinkles or bubbles between the graphite sheet and the display module are prone to occur, resulting in poor bonding effect and low efficiency, thereby reducing the reliability of the display device.
An assembly device is provided, including a support seat, a load bearing member and a flip member. Through the coordination between the flip plate in the flip member and the rotating shaft portion, the flip plate is driven to rotate in the direction of the bearing member, so that the heat sink is fitted with the back of the display die.
There is no need for manual fitting, ensuring that wrinkles or bubbles are not prone to occur between the heat sink and the display module, improving the fitting effect, and thus improving the reliability of the display device.
Smart Images

Figure CN223012345U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of display technology, and in particular to an assembly device. Background Art
[0002] At present, display devices have become an indispensable electronic product in people's lives. Various display devices such as mobile phones and tablet computers have greatly increased the convenience of people's lives.
[0003] Generally, in order to ensure that the display device can work normally, a graphite sheet is usually attached to the back of the display module in the display device to dissipate the heat generated by the display device during operation.
[0004] However, in the process of bonding the graphite sheet to the back of the display module, wrinkles or bubbles are easily formed between the graphite sheet and the display module, resulting in poor bonding effect and low bonding efficiency between the graphite and the back of the display module, thereby resulting in low reliability of the display device. Utility Model Content
[0005] The embodiment of the present application provides an assembly device, which can solve the problem of low bonding efficiency between graphite and the back of the display module. The technical solution is as follows:
[0006] In one aspect, an assembly device is provided, comprising: a support seat, a bearing component and a flip component;
[0007] The support seat has a support surface;
[0008] The bearing component is fixed on the supporting surface, and a side of the bearing component away from the supporting surface is used to bear the display module, and after the bearing component bears the display module, the display surface of the display module faces the supporting seat;
[0009] The flip component includes: a flip plate and a rotating shaft portion; the flip plate is connected to the rotating shaft portion, and the flip plate is used to carry the heat sink; the rotating shaft portion is located on the supporting surface, and is arranged adjacent to the supporting surface and the bearing component;
[0010] Wherein, the hinge portion is configured to: after the bearing component carries the display module and the flip plate carries the heat sink, drive the flip plate to rotate in a direction toward the bearing component so that the heat sink fits against the back of the display module.
[0011] Optionally, the rotating shaft portion includes: a connecting shaft, and a rotating shaft fixing block rotatably connected to the connecting shaft, and the connecting shaft is fixedly connected to an edge portion of one side of the flip plate.
[0012] Optionally, the flip plate has a first adsorption area, and a plurality of first pores arranged in the first adsorption area;
[0013] After the first adsorption area carries the heat sink, the plurality of first pores can adsorb the heat sink.
[0014] Optionally, the flip plate further has at least one hollow area arranged around the first adsorption area;
[0015] The assembly device further comprises: a fixing plate, the fixing plate being fixedly connected to the supporting surface, and the fixing plate having at least one limiting protrusion corresponding to at least one of the hollow areas on a side facing away from the supporting surface;
[0016] Wherein, after the flip plate is located on the side of the fixed plate away from the support surface, at least part of each of the limiting protrusions can pass through the corresponding hollow area to be distributed on the side of the flip plate away from the fixed plate.
[0017] Optionally, the assembling device further comprises: a support platform, the support platform is fixed on the support surface, and a side of the support platform facing away from the support surface is fixedly connected to the fixing plate.
[0018] Optionally, a side of the support platform facing away from the support surface is an inclined surface, and an angle between a side of the support platform facing away from the support surface and the support surface is an acute angle.
[0019] Optionally, the bearing component includes: a limiting base and a supporting protrusion, the limiting base is located on the supporting surface, the supporting protrusion is fixedly connected to the edge portion of the limiting base, and the supporting protrusion has a magnetic attraction member;
[0020] Wherein, after the limiting base carries the display module, the magnetic attraction component is used to be magnetically connected to the flexible circuit board bound to the display module.
[0021] Optionally, the flip plate has at least one first positioning member on a side away from the rotating shaft portion; the limiting base has at least one second positioning member corresponding to the at least one first positioning member;
[0022] Wherein, after the flip plate rotates in a direction toward the bearing component so that the flip plate is located on a side of the limiting base away from the supporting surface, each of the first positioning members is matched and connected with the corresponding second positioning member.
[0023] Optionally, the assembly device further comprises: a pressure sensor, wherein the pressure sensor is located between the limiting base and the supporting base;
[0024] Wherein, the pressure sensor is configured to: after the flipping plate rotates in a direction towards the bearing member so that the flipping plate is located on a side of the limiting base away from the support surface, detect the pressing force applied by the flipping plate to the limiting base.
[0025] Optionally, the limiting base has a second adsorption area and a plurality of second air holes arranged in the second adsorption area;
[0026] Wherein, after the display module is carried in the second adsorption area, the plurality of second air holes can adsorb the display side of the display module.
[0027] The beneficial effects brought by the technical solution provided by the embodiments of the present application at least include:
[0028] After the bearing member carries the display module and the flipping plate in the flipping member carries the heat sink, through the cooperation between the flipping plate in the flipping member and the rotating shaft portion, the rotating shaft portion can drive the flipping plate to rotate in a direction towards the bearing member, so as to attach the heat sink to the back surface of the display module. In this way, there is no need to manually attach the heat sink to the back surface of the display module, which can ensure that there are no wrinkles or bubbles and other defects between the heat sink and the display module, thereby ensuring a good attachment effect between the heat sink and the back surface of the display module, and further improving the reliability of the display device. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0030] Figure 1 is a schematic structural diagram of an assembly device provided by an embodiment of the present application;
[0031] Figure 2 is the use of Figure 1 a schematic diagram of the cooperation between the assembly device shown and the display module;
[0032] Figure 3 is a schematic structural diagram of a flipping member provided by an embodiment of the present application;
[0033] Figure 4 is a schematic structural diagram of another assembly device provided by an embodiment of the present application;
[0034] Figure 5 is a schematic structural diagram of a fixing plate provided by an embodiment of the present application;
[0035] Figure 6 It is a schematic structural diagram of another assembly device provided by an embodiment of the present application;
[0036] Figure 7 It is a schematic structural diagram of a bearing component provided by an embodiment of the present application;
[0037] Figure 8 It is a schematic partial structural diagram of an assembly device provided by an embodiment of the present application. Detailed implementation manners
[0038] To make the objectives, technical solutions, and advantages of the present application clearer, the following will further describe the embodiments of the present application in detail with reference to the accompanying drawings.
[0039] Please refer to Figure 1 , Figure 1 which is a schematic structural diagram of an assembly device provided by an embodiment of the present application. The assembly device 000 may include: a support base 100, a bearing component 200, and a flipping component 300. Among them, the assembly device 000 can bond the display module and the heat sink, thereby improving the bonding efficiency of the display module and the heat sink.
[0040] The support base 100 in the assembly device 000 may have a support surface S. Among them, the support base 100 can be used to support the bearing component 200 and the flipping component 300.
[0041] Please refer to Figure 2 , Figure 2 which is a schematic diagram showing the cooperation between the assembly device and the display module adopted Figure 1 . The bearing component 200 in the assembly device 000 can be fixed on the support surface S of the support base 100. Here, the side of the bearing component 200 facing away from the support surface S can be used to carry the display module 001, and after the bearing component 200 carries the display module 001, the display surface of the display module 001 can face the support base 100. Among them, the display surface of the display module 001 is the side of the display module 001 used for displaying the picture.
[0042] The flipping component 300 in the assembly device 000 may include: a flipping plate 301 and a rotating shaft part 302. The flipping plate 301 can be connected to the rotating shaft part 302, and the flipping plate 301 can be used to carry the heat sink. Exemplarily, the heat sink can be made of graphite material. In this way, after the heat sink is bonded to the back surface of the display module 001, the heat generated on the back surface of the display module 001 can be effectively dissipated through the heat sink.
[0043] Here, the rotating shaft part 302 in the flipping component 300 can be located on the support surface S of the support base 100, and is adjacent to the bearing component 200 on the support surface S.
[0044] Among them, after the bearing member 200 bears the display module 001 and the turning plate 301 in the turning member 300 bears the heat sink, the rotating shaft portion 302 in the turning member 300 can drive the turning plate 301 to rotate in the direction towards the bearing member 200, so that the heat sink can be attached to the back surface of the display module 001. Here, the back surface of the display module 001 refers to the surface opposite to the display surface of the display module 001.
[0045] In this case, through the cooperation of the turning plate 201 and the rotating shaft portion 302 in the turning member 300, the rotating shaft portion 302 can drive the turning plate 301 to rotate in the direction towards the bearing member 200, so as to attach the heat sink carried on the turning plate 301 to the back surface of the display module 001. In this way, there is no need to manually attach the heat sink to the back surface of the display module 001, which can ensure that there are no wrinkles or bubbles and other defects between the heat sink and the display module 001, so that the attachment effect between the heat sink and the back surface of the display module 001 can be ensured to be better, and thus the reliability of the display device can be improved.
[0046] In summary, an assembly device provided by an embodiment of the present application includes: a support base, a bearing member, and a turning member. After the bearing member bears the display module and the turning plate in the turning member bears the heat sink, through the cooperation of the turning plate and the rotating shaft portion in the turning member, the rotating shaft portion can drive the turning plate to rotate in the direction towards the bearing member, so as to attach the heat sink to the back surface of the display module. In this way, there is no need to manually attach the heat sink to the back surface of the display module, which can ensure that there are no wrinkles or bubbles and other defects between the heat sink and the display module, so that the attachment effect between the heat sink and the back surface of the display module can be ensured to be better, and thus the reliability of the display device can be improved.
[0047] In the present application, please refer to Figure 3 , Figure 3 FIG. is a schematic structural diagram of a turning member provided by an embodiment of the present application. The rotating shaft portion 302 in the turning member 300 may include: a connecting shaft 3021 and a rotating shaft fixing block 3022 rotatably connected to the connecting shaft 3021. Among them, the connecting shaft 3021 may be fixedly connected to an edge portion on one side of the turning plate 301 in the turning member 300.
[0048] In this case, since the connecting shaft 3021 in the turning member 300 can rotate relative to the rotating shaft fixing block 3022 and the connecting shaft 3021 can be fixedly connected to an edge portion on one side of the turning plate 301 in the turning member 300, the connecting shaft 3021 can drive the turning plate 301 to rotate in the direction towards the bearing member 200, or drive the turning plate 301 to rotate in the direction away from the bearing member 200.
[0049] Exemplarily, after the bearing member 200 bears the display module 001 and the turning plate 301 in the turning member 300 bears the heat sink, an operator can control the connecting shaft 3021 to rotate in one direction to drive the turning plate 301 to rotate towards the bearing member 200, so as to attach the heat sink carried on the turning plate 301 to the back surface of the display module 001. In this way, it can be ensured that after the heat sink is attached to the back surface of the display module, no wrinkles or bubbles are likely to occur between the heat sink and the display module 001, so that the attachment effect between the heat sink and the back surface of the display module 001 can be ensured to be good. After ensuring the attachment of the heat sink to the back surface of the display module 001, the operator can control the connecting shaft 3021 to rotate in the other direction to drive the turning plate 301 to rotate away from the bearing member 200, so as to move the turning plate 301 away from the display module 001.
[0050] In the present application, as Figure 3 shown, the turning plate 301 in the turning member 300 has a first adsorption area 301a and a plurality of first air holes 3011 arranged in the first adsorption area 301a. Among them, after the first adsorption area 301a bears the heat sink, the plurality of first air holes 3011 can adsorb the heat sink. In this way, it can be ensured that after the first adsorption area 301a bears the heat sink, no relative displacement occurs between the heat sink and the first adsorption area 301a, so that the heat sink and the first adsorption area 301a can be stably adsorbed together.
[0051] In an embodiment of the present application, please refer to Figure 3 , the turning plate 301 in the turning member 300 may further have an air extraction channel 301b. Among them, the air extraction channel 301b can communicate with each of the first air holes 3011 in the first adsorption area 301a, and the openings of the air extraction channel 301b can be distributed on the side surface of the turning plate 301.
[0052] Here, after the first adsorption area 301a bears the heat sink, the air extraction channel 301b can be controlled to extract air so that the first air holes 3011 in the plurality of first adsorption areas 301a can adsorb the heat sink. Exemplarily, after the first adsorption area 301a bears the heat sink, a staff member can turn on the control switch connected to the air extraction channel 301b and control the air extraction channel 301b to extract air through the control switch, so that the first air holes 3011 in the plurality of first adsorption areas 301a adsorb the heat sink, so that it can be ensured that no relative displacement is likely to occur between the heat sink and the first adsorption area 301a.
[0053] In an embodiment of the present application, please refer to Figure 3 , Figure 4 and Figure 5 ,Figure 4 It is a schematic structural diagram of another assembling device provided by an embodiment of the present application. Figure 5 It is a schematic structural diagram of a fixing plate provided by an embodiment of the present application. The turning plate 301 in the turning member 300 may further have at least one hollow area 301U disposed around the first adsorption area 301a.
[0054] The assembling device 000 may further include: a fixing plate 400. Wherein, the fixing plate 400 may be fixedly connected to the supporting surface S of the supporting seat 100, and one side of the fixing plate 400 facing away from the supporting surface S may have at least one limiting protrusion 401 corresponding to at least one hollow area 301U one by one.
[0055] Wherein, after the turning plate 301 in the turning member 300 is located on the side of the fixing plate 400 facing away from the supporting surface S of the supporting seat 100, at least a part of each limiting protrusion 401 in the fixing plate 400 can pass through the corresponding hollow area 301U to be distributed on the side of the turning plate 301 facing away from the fixing plate 400.
[0056] In this case, after the turning plate 301 in the turning member 300 is located on the side of the fixing plate 400 facing away from the supporting surface S of the supporting seat 100, the assembling position of the heat sink located in the first adsorption area 301a can be limited by the part of each limiting protrusion 401 passing through the corresponding hollow area 301U, so that it can be ensured that there is not likely to be an assembling error between the heat sink and the first adsorption area 301a, and further it can be ensured that the subsequent fitting effect between the heat sink and the back surface of the display module 001 is better.
[0057] In the present application, please refer to Figure 4 , the assembling device 000 may further include: a supporting platform 500. Wherein, the supporting platform 500 may be fixed on the supporting surface S of the supporting seat 100, and one side of the supporting platform 500 facing away from the supporting surface S may be fixedly connected to the fixing plate 400. That is to say, the fixing plate 400 may be fixedly connected to the supporting surface S of the supporting seat 100 through the supporting platform 500.
[0058] In an embodiment of the present application, one side of the supporting platform 500 in the assembling device 000 facing away from the supporting surface S of the supporting seat 100 is an inclined surface, and the included angle between the side of the supporting platform 500 facing away from the supporting surface S and the supporting surface S may be an acute angle. In this case, the displacement of the turning plate 301 rotating in the direction towards the carrying member 200 can be reduced, so that the operation time for attaching the heat sink to the back surface of the display module 001 can be effectively saved.
[0059] Exemplarily, please refer to Figure 6 , Figure 6It is a schematic structural diagram of another assembling device provided by an embodiment of the present application. The support platform 500 in the assembling device 000 may include: two separately arranged support plates 501. Wherein, one side of the support plate 501 may be fixed on the support surface S of the support base 100, and the side of the support plate 501 facing away from the support surface S of the support base 100 may be an inclined surface. In this way, the cost of preparing the support platform 500 can be saved while ensuring a good support effect of the support platform 500.
[0060] In the present application, please refer to Figure 7 , Figure 7 It is a schematic structural diagram of a bearing component provided by an embodiment of the present application. The bearing component 200 may include: a limit base 201 and a support protrusion 202. Here, the limit base 201 in the bearing component 200 may be located on the support surface S of the support base 100, the support protrusion 202 in the bearing component 200 may be fixedly connected to the edge portion of the limit base 201, and the support protrusion 202 may have a magnetic attraction member 202a. Exemplarily, the magnetic attraction member 202a may include: a permanent magnet.
[0061] Among them, after the limit base 201 in the bearing component 200 bears the display module 001, the magnetic attraction member 202a in the support protrusion 202 can be used for magnetic attraction connection with the flexible circuit board bound to the display module 001. It should be noted that during the process of attaching the heat sink to the back surface of the display module 001, it is usually necessary to fold the flexible circuit board bound to the display module 001 back to ensure that the flexible circuit board does not interfere with the attachment of the heat sink to the back surface of the display module 001.
[0062] In this case, since the magnetic attraction member 202a in the support protrusion 202 of the bearing component 200 can be magnetically attracted to the flexible circuit board bound to the display module 001, the flexible circuit board only needs to be slightly bent to be magnetically attracted to the magnetic attraction member 202a in the support protrusion 202. In this way, on the premise of ensuring that the flexible circuit board does not interfere with the attachment of the heat sink to the back surface of the display module 001, the flexible circuit board is not easily damaged.
[0063] In an embodiment of the present application, please refer to Figure 3 and Figure 7 , one side of the flip plate 301 in the flipping component 300 facing away from the rotating shaft portion 302 may have at least one first positioning member 301c. The limit base 201 in the bearing component 200 may have at least one second positioning member 201b corresponding one-to-one to the at least one first positioning member 301c.
[0064] Among them, after the flip plate 301 in the flip component 300 rotates in the direction toward the bearing component 200 so that the flip plate 301 is located on the side of the limiting base 201 in the bearing component 200 away from the supporting surface S of the support platform 100, each first positioning member 301c can be connected with the corresponding second positioning member 201b. In this way, in the process of laminating the heat sink with the back of the display module 001, the flip plate 301 used to carry the heat sink and the limiting base 201 used to carry the display module 001 can be more accurately laminating together through the cooperation of at least one first positioning member 301c and at least one second positioning member 201b, so that the laminating accuracy of the heat sink and the back of the display module 001 can be ensured to be high.
[0065] It should be noted that one of the first positioning member 301c in the flip plate 301 and the second positioning member 201b in the limiting base 201 can be a positioning column, and the other can be a positioning hole. After the flip plate 301 is located on the side of the limiting base 201 away from the support surface S of the support table 100, at least part of the positioning column can be located in the positioning hole. In one possible implementation, the first positioning member 301c in the flip plate 301 can be a positioning column, and the second positioning member 201b in the limiting base 201 can be a positioning hole. In another possible implementation, the first positioning member 301c in the flip plate 301 can be a positioning hole, and the second positioning member 201b in the limiting base 201 can be a positioning column. The embodiments of the present application are schematically described with the first positioning member 301c as the positioning column and the second positioning member 201b as the positioning hole.
[0066] In this application, please refer to Figure 8 , Figure 8 000 may further include: a pressure sensor 600. Here, the pressure sensor 600 may be located between the limiting base 201 in the bearing component 200 and the support seat 100.
[0067] Among them, after the flip plate 301 in the flip component 300 rotates in the direction toward the bearing component 200 so that the flip plate 301 is located on the side of the limiting base 201 away from the supporting surface S of the support platform 100, the pressure sensor 600 can detect the pressing force applied by the flip plate 301 in the flip component 300 to the limiting base 201 in the bearing component 200. In this way, it can be ensured that the pressing force applied by the flip plate 301 in the flip component 300 to the limiting base 201 in the bearing component 200 is not large, so that the display module 001 can be ensured not to be damaged by the large pressing force.
[0068] For example, after the operator rotates the turning plate 301 in the turning member 300 in the direction towards the carrying member 200 so that the turning plate 301 is located on the side of the limit base 201 away from the support surface S of the support table 100, the operator can use the pressure sensor 600 to monitor in real time the pressing force exerted by the turning plate 301 in the turning member 300 on the limit base 201 in the carrying member 200, so that the pressing force is not too large, thereby ensuring that the display module 001 will not be damaged by a large pressing force. For example, the value range of the pressing force can be: 20 Newtons to 40 Newtons.
[0069] In the embodiment of the present application, as Figure 7 shown, the limit base 201 in the carrying member 200 may have a second adsorption area 201a and a plurality of second air holes 2011 arranged in the second adsorption area 201a. Among them, after the second adsorption area 201a carries the display module 001, the plurality of second air holes 2011 can adsorb the display side of the display module 001. In this way, it can be ensured that after the limit base 201 carries the display module 001, there will be no relative displacement between the display module 001 and the limit base 201, thereby ensuring that the display module 001 and the limit base 201 can be stably adsorbed together.
[0070] In the present application, first, the operator can place the heat sink on the turning plate 301 in the turning member 300. After placing the heat sink on the turning plate 301 in the turning member 300, the operator can turn on the control switch connected to the air extraction channel 301b so that the first adsorption area 301a on the turning plate 301 can adsorb the heat sink. Then, the operator can place the display module 001 on the limit base 201 in the carrying member 200 so that the second adsorption area 201a on the limit base 201 can adsorb the display module 001. Then, the operator can magnetically connect the flexible circuit board bound to the display module 001 with the magnetic part 202a in the support protrusion 202 in the carrying member 200. Finally, the operator can rotate the turning plate 301 in the direction towards the limit base 201 so that the heat sink is attached to the back surface of the display module 001.
[0071] In summary, an assembly device provided by an embodiment of the present application includes: a support base, a carrying component, and a flipping component. After the carrying component carries the display module and the flipping plate in the flipping component carries the heat sink, through the cooperation between the flipping plate and the rotating shaft part in the flipping component, the rotating shaft part can drive the flipping plate to rotate in the direction towards the carrying component, so as to attach the heat sink to the back surface of the display module. In this way, there is no need to manually attach the heat sink to the back surface of the display module, which can ensure that there are no wrinkles or bubbles and other defects between the heat sink and the display module, thereby ensuring a good attachment effect between the heat sink and the back surface of the display module, and further improving the reliability of the display device.
[0072] In the present application, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. The term "plurality" refers to two or more, unless otherwise clearly defined.
[0073] The above are only optional embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. An assembly device, characterized in that: include: A supporting seat (100), a bearing component (200) and a turning component (300); The support seat (100) has a support surface (S); The bearing component (200) is fixed on the supporting surface (S), and a side of the bearing component (200) facing away from the supporting surface (S) is used to bear the display module, and after the bearing component (200) bears the display module, the display surface of the display module faces the supporting seat (100); The flip component (300) comprises: a flip plate (301) and a rotating shaft portion (302); the flip plate (301) is connected to the rotating shaft portion (302), and the flip plate (301) is used to carry a heat sink; the rotating shaft portion (302) is located on the supporting surface (S), and is arranged adjacent to the supporting surface (S) and the bearing component (200); The rotating shaft portion (302) is configured to: after the display module is carried on the carrying component (200) and the flip plate (301) carries the heat sink, drive the flip plate (301) to rotate in a direction toward the carrying component (200) so that the heat sink is attached to the back of the display module.
2. The assembly device according to claim 1, characterized in that: The rotating shaft portion (302) comprises: a connecting shaft (3021) and a rotating shaft fixing block (3022) rotatably connected to the connecting shaft (3021), and the connecting shaft (3021) is fixedly connected to an edge portion of one side of the flip plate (301).
3. The assembly device according to claim 1, characterized in that: The flip plate (301) has a first adsorption area (301a) and a plurality of first air holes (3011) arranged in the first adsorption area (301a); After the first adsorption area (301a) carries the heat sink, the plurality of first pores (3011) can adsorb the heat sink.
4. The assembly device according to claim 3, characterized in that: The flip plate (301) further comprises at least one hollow area (301U) arranged around the first adsorption area (301a); The assembly device further comprises: a fixing plate (400), the fixing plate (400) being fixedly connected to the supporting surface (S), and having at least one limiting protrusion (401) corresponding to at least one of the hollow areas (301U) on a side of the fixing plate (400) away from the supporting surface (S); Wherein, after the flip plate (301) is located on the side of the fixed plate (400) away from the support surface (S), at least a portion of each of the limiting protrusions (401) can pass through the corresponding hollow area (301U) to be distributed on the side of the flip plate (301) away from the fixed plate (400).
5. The assembly device according to claim 4, characterized in that: The assembly device further comprises: a support platform (500), wherein the support platform (500) is fixed on the support surface (S), and a side of the support platform (500) facing away from the support surface (S) is fixedly connected to the fixing plate (400).
6. The assembly device according to claim 5, characterized in that: The side of the support platform (500) facing away from the support surface (S) is an inclined surface, and the angle between the side of the support platform (500) facing away from the support surface (S) and the support surface (S) is an acute angle.
7. The assembly device according to any one of claims 1 to 6, characterized in that: The bearing component (200) comprises: a limiting base (201) and a supporting protrusion (202), wherein the limiting base (201) is located on the supporting surface (S), the supporting protrusion (202) is fixedly connected to the edge portion of the limiting base (201), and the supporting protrusion (202) has a magnetic attraction member (202a); Wherein, after the limiting base (201) carries the display module, the magnetic attraction component (202a) is used to be magnetically connected to the flexible circuit board bound to the display module.
8. The assembly device according to claim 7, characterized in that: The flip plate (301) has at least one first positioning member (301c) on a side facing away from the rotating shaft portion (302); the limiting base (201) has at least one second positioning member (201b) corresponding one-to-one to the at least one first positioning member (301c); Wherein, after the flip plate (301) is rotated in a direction toward the bearing component (200) so that the flip plate (301) is located on a side of the limiting base (201) away from the supporting surface (S), each first positioning member (301c) is matched and connected with the corresponding second positioning member (201b).
9. The assembly device according to claim 7, characterized in that: The assembly device further comprises: a pressure sensor (600), wherein the pressure sensor (600) is located between the limiting base (201) and the supporting base (100); The pressure sensor (600) is configured to detect the pressing force applied by the flip plate (301) to the limiting base (201) after the flip plate (301) is rotated in a direction toward the supporting component (200) so that the flip plate (301) is located on a side of the limiting base (201) away from the supporting surface (S).
10. The assembly device according to claim 7, characterized in that: The limiting base (201) has a second adsorption area (201a) and a plurality of second air holes (2011) arranged in the second adsorption area (201a); After the second adsorption area (201a) carries the display module, the plurality of second air holes (2011) can adsorb the display side of the display module.