Adsorption mechanism, display panel adsorption device, gasket adsorption device and adsorption system
By designing the elastic members of the adsorption mechanism to move at different positions to achieve separation of the display panel and the gasket, the problem of missucking of the adsorption device is solved, and the production efficiency is improved and the cost is reduced.
Patent Information
- Application Number
- CN202422115322.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-08-29
AI Technical Summary
Existing adsorbent devices are prone to suction gaskets or display panels when transferring display panels, resulting in production interruptions and equipment damage, and existing solutions increase manufacturing costs.
An adsorption mechanism is designed to move between different positions using the second end of the elastic member to ensure that when adsorbing the display panel or gasket, the second end of the elastic member can abut with the other, thereby separating the display panel and gasket during the transfer process to avoid missucking.
It effectively avoids the problem of absorbing by adsorption devices, does not need to increase manufacturing costs, and improves the transfer efficiency and production continuity of the display panel.
Smart Images

Figure CN223239051U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of display panels, and in particular to an adsorption mechanism, a display panel adsorption device, a gasket adsorption device and an adsorption system. Background Art
[0002] With the development of automation technology, most manufacturers use automated processes to transfer the completed display panels to the production line for subsequent processing, testing, assembly or integration. However, in order to avoid collisions between the display panels, gaskets are usually provided between the display panels. However, when an adsorption device is used to transfer the display panel to the production line, the adsorption device is prone to misabsorption. Specifically, when the adsorption device adsorbs the display panel, it often lifts up the gasket underneath at the same time, which not only triggers the downtime alarm mechanism of the production equipment, but also directly leads to the interruption of the production line, seriously delaying production time and increasing production costs. When the adsorption device adsorbs the gasket, it also lifts up the display panel on the lower layer, which can easily cause damage to the display panel.
[0003] To address this issue, increasing the thickness of the gasket or coating the display panel with a film is often used to reduce the occurrence of mis-absorption. However, these two methods undoubtedly increase manufacturing costs, which conflicts with the current industry trend of pursuing maximum cost-effectiveness.
[0004] Accordingly, this field requires a new technical solution to solve the above problems. Utility Model Content
[0005] In order to solve at least one of the above problems in the prior art, that is, how to prevent the adsorption device from accidentally being sucked in without increasing the manufacturing cost, the present application provides an adsorption mechanism, which includes:
[0006] device body;
[0007] an adsorption member, wherein the first end of the adsorption member is arranged on the device body, and the second end is an adsorption end;
[0008] An elastic member, wherein the first end of the elastic member is arranged on the device body, and the second end is arranged to be able to move between a first position and a second position; wherein the distance from the first position to the device body is greater than the distance from the adsorption end to the device body, and the distance from the second position to the device body is less than or equal to the distance from the adsorption end to the device body.
[0009] In the preferred technical solution of the above-mentioned adsorption mechanism, the elastic member includes:
[0010] an elastic member, wherein a first end of the elastic member is connected to the device body;
[0011] A pressing block is arranged at the second end of the elastic member.
[0012] In the preferred technical solution of the above-mentioned adsorption mechanism, the pressure block includes a first pressure section arranged at the second end of the elastic member and a second pressure section arranged on the side of the first pressure section away from the elastic member, and the cross-sectional area of the first pressure section is larger than the cross-sectional area of the second pressure section.
[0013] In the preferred technical solution of the above adsorption mechanism, the elastic member further comprises:
[0014] A connecting block, wherein a first end of the connecting block is arranged on the device body, and a second end of the connecting block is provided with the elastic member.
[0015] In the preferred technical solution of the above-mentioned adsorption mechanism, the elastic member is a spring, an elastic rod or an elastic block.
[0016] In the preferred technical solution of the above-mentioned adsorption mechanism, the elastic component is a spring, an elastic rod or an elastic block.
[0017] In the preferred technical solution of the above adsorption mechanism, the adsorption component includes:
[0018] a connecting column having an adsorption channel, wherein a first end of the connecting column is provided on the device body, and a second end is provided with an adsorption port communicating with the adsorption channel;
[0019] A suction cup is arranged at the adsorption port.
[0020] The present application also provides a display panel adsorption device for adsorbing a display panel, wherein the display panel includes a panel and a plurality of chip-on-films spaced apart thereon, and the display panel adsorption device includes the adsorption mechanism described in the above preferred technical solution;
[0021] The elastic member corresponds to the first pores between adjacent COF films, and the second end of the elastic member can penetrate into or out of the first pores.
[0022] The utility model further provides a gasket adsorption device for adsorbing a gasket, wherein the gasket is provided with a second pore, and the gasket adsorption device comprises the adsorption mechanism described in the above preferred technical solution;
[0023] The elastic member corresponds to the second hole, and the second end of the elastic member can pass through or out of the second hole.
[0024] The present utility model also provides an adsorption system, which includes the display panel adsorption device described in the above preferred technical solution and the gasket adsorption device described in the above preferred technical solution.
[0025] Those skilled in the art will understand that the adsorption mechanism of the present invention is configured such that the second end of the elastic component is movable between a first position and a second position, and the distance from the first position to the device body is greater than the distance from the adsorption end to the device body, and the distance from the second position to the device body is less than or equal to the distance from the adsorption end to the device body, so that when the adsorption component adsorbs one of the display panel and the gasket, the second end of the elastic component can preferentially abut against the other of the display panel and the gasket, thereby enabling the display panel and the gasket to be separated under the action of the elastic component during the transfer process of the adsorption mechanism, thereby effectively avoiding the problem of accidental adsorption of the adsorption mechanism without increasing manufacturing costs.
[0026] Furthermore, by arranging the pressing block at the second end of the elastic member, the pressing block can be moved between the first position and the second position under the action of the elastic member. Thus, when the adsorption mechanism adsorbs the display panel, the pressing block can contact the gasket, thereby separating the gasket from the display panel. When the adsorption mechanism adsorbs the gasket, the pressing block can contact the display panel, thereby separating the gasket from the display panel.
[0027] Furthermore, by setting the cross-sectional area of the first pressing segment to be larger than the cross-sectional area of the second pressing segment, on the one hand, it can avoid the situation where the pressing block accidentally presses one of the display panel and the gasket when abutting against the other due to the excessive cross-sectional area of the pressing block, thereby affecting the separation of the display panel and the gasket; on the other hand, it can generate a greater abutting force on the display panel or the gasket, which helps to separate the display panel from the gasket.
[0028] Furthermore, by arranging a suction cup at the adsorption port of the connecting column, the adsorption stability between the suction cup and the display panel or the gasket is improved.
[0029] It can be understood by those skilled in the art that the elastic component on the adsorption mechanism in the display panel adsorption device of the present invention corresponds to the first gap between adjacent chip-on-chip films on the display panel, and the second end of the elastic component can penetrate into or out of the first gap, so that when the adsorption mechanism adsorbs the display panel, the elastic component abuts against the gasket, thereby preventing the adsorption mechanism from adsorbing the gasket.
[0030] It can be understood by those skilled in the art that the elastic component on the adsorption mechanism in the gasket adsorption device of the present invention corresponds to the second pore on the gasket, and the second end of the elastic component can penetrate into or out of the second pore on the gasket, so that when the adsorption mechanism adsorbs the gasket, the elastic component abuts against the display panel, thereby preventing the adsorption mechanism from adsorbing the display panel.
[0031] It will be understood by those skilled in the art that the adsorption system of the present invention includes both a display panel adsorption device and a gasket adsorption device, so that the two adsorption devices can alternately adsorb the alternately stacked display panels and gaskets, thereby improving the transfer efficiency of the display panel so that the display panel can participate in subsequent processing, testing, assembly or integration processes. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] The preferred embodiments of the present invention are described below with reference to the accompanying drawings, in which:
[0033] Figure 1 is a schematic diagram of the adsorption mechanism of the present application adsorbing a display panel;
[0034] Figure 2 It is a schematic diagram of the adsorption gasket of the adsorption mechanism of the present application.
[0035] The reference numerals are as follows:
[0036] 1. Adsorption mechanism; 11. Device body; 12. Adsorption member; 121. Connecting column; 122. Suction cup; 13. Elastic member; 131. Spring; 132. Pressure block; 133. Connecting block; 2. Display panel; 21. First pore; 22. Chip-on-film; 23. Panel; 3. Gasket; 31. Second pore. DETAILED DESCRIPTION
[0037] The preferred embodiments of the present application are described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are only used to explain the technical principles of the present application and are not intended to limit the scope of protection of the present application.
[0038] It should be noted that, in the description of this application, terms such as "upper", "lower", "inner", "top", and "bottom" indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation on this application.
[0039] Furthermore, it should be noted that, in the description of this application, unless otherwise expressly specified or limited, the terms "disposed" and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections, direct connections, indirect connections through an intermediate medium, or internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.
[0040] See also Figure 1-2 , the adsorption mechanism of the present application is described. Among them, Figure 1is a schematic diagram of the adsorption mechanism of the present application adsorbing a display panel; Figure 2 It is a schematic diagram of the adsorption gasket of the adsorption mechanism of the present application.
[0041] In order to solve the problem of how to prevent the adsorption mechanism 1 from accidentally being sucked in without increasing manufacturing costs, the adsorption mechanism 1 of the present application includes a device body 11, an adsorption member 12, and an elastic member 13. The first end of the adsorption member 12 is disposed on the device body 11, and the second end is a suction end, which is used to adsorb the display panel 2 or the gasket 3. The first end of the elastic member 13 is disposed on the device body 11, and the second end is configured to be movable between a first position and a second position; wherein the distance from the first position to the device body 11 is greater than the distance from the suction end to the device body 11, and the distance from the second position to the device body 11 is less than or equal to the distance from the suction end to the device body 11.
[0042] The present invention arranges the second end of the elastic member 13 to be movable between a first position and a second position, and the distance from the first position to the device body 11 is greater than the distance from the adsorption end to the device body 11, and the distance from the second position to the device body 11 is less than or equal to the distance from the adsorption end to the device body 11, so that when the adsorption member 12 adsorbs one of the display panel 2 and the gasket 3, the second end of the elastic member 13 can preferentially abut against the other of the display panel 2 and the gasket 3, thereby enabling the display panel 2 and the gasket 3 to be separated under the action of the elastic member 13 during the transfer process of the adsorption mechanism 1, effectively avoiding the problem of accidental adsorption of the adsorption mechanism 1 without increasing the manufacturing cost.
[0043] It should be noted that the distance refers to the vertical distance. When the first end of the elastic member 13 is in the first position, the elastic member 13 is in a normal state. When the first end of the elastic member 13 is in the second position, the elastic member 13 is in a compressed state. The adsorption mechanism 1 of the present application can not only adsorb the display panel 2, but also adsorb the gasket 3.
[0044] Further reference below Figure 1-2 , a preferred embodiment of the adsorption mechanism 1 of the present application is introduced. Those skilled in the art will understand that the embodiment described below is only used to illustrate the principles of the present application and is not intended to limit the scope of protection of the present application. On the premise that the adsorption mechanism 1 includes at least a device body 11, an adsorption member 12 and an elastic member 13, those skilled in the art can adjust the following settings so that the present application can be applied to more specific application scenarios.
[0045] See also Figure 1-2The adsorption mechanism 1 includes a device body 11, multiple adsorption members 12, and multiple elastic members 13, wherein the multiple adsorption members 12 and the multiple elastic members 13 are arranged on the same side of the device body 11. The side of the device body 11 away from the adsorption members 12 and the elastic members 13 can be connected to the robotic arm, thereby facilitating the movement of the adsorption mechanism 1 so that the adsorption mechanism 1 can adsorb the display panel 2 or the spacer 3.
[0046] Of course, the arrangement of the adsorption member 12 and the elastic member 13 in this application is not fixed, and those skilled in the art can adjust it as needed. For example, at least part of the multiple adsorption members 12 can be arranged on different sides of the device body 11 from the elastic member 13, such as part of the multiple adsorption members 12, whose first end can be arranged on the side of the device body 11. Figure 1 The first end of the plurality of elastic members 13 may be arranged on the left side of the device body 11 and extend toward the lower side of the device body 11. Figure 1 The adsorption end of the adsorption member 12 and the second end of the elastic member 13 are located on the same side of the device body 11 as long as they are on the right side and extend toward the lower side of the device body 11.
[0047] It should be noted that the present application does not limit the number of adsorption components 12 and elastic components 13, as long as the adsorption component 12 can stably adsorb the display panel 2 or the gasket 3, and the elastic component 13 can abut against the gasket 3 when the adsorption component 12 adsorbs the display panel 2, and abut against the display panel 2 when adsorbing the gasket 3.
[0048] See next Figure 1 and Figure 2 The adsorption component 12 includes a connecting column 121 and a suction cup 122. The connecting column 121 has an adsorption channel, which can be connected to the vacuum equipment. The first end of the connecting column 121 is set on the device body 11, and the second end is provided with an adsorption port connected to the adsorption channel. The adsorption port is provided with a suction cup 122, so that when the vacuum equipment is started, the adsorption channel is in a vacuum state, and the suction cup 122 generates adsorption force and can adsorb the display panel 2 or the gasket 3.
[0049] It should be noted that, in other preferred embodiments, the suction cup 122 is not necessarily provided, and those skilled in the art can select it as needed. In the case where the suction cup 122 is not provided, the display panel 2 or the gasket 3 can be adsorbed through the adsorption port on the connecting column 121.
[0050] It should also be noted that the present application can also adaptively adjust the adsorption force according to the adsorbed object, that is, the adsorption force of the adsorption member 12 when adsorbing the display panel 2 can be greater than the adsorption force of the adsorption member 12 when adsorbing the gasket 3.
[0051] See next Figure 1-2 The elastic member 13 includes an elastic member, a pressure block 132 and a connecting block 133. The elastic member can be a spring 131. The first end of the connecting block 133 is set on the device body 11, and the second end is provided with a spring 131. The first end of the pressure block 132 is set at the end of the spring 131 away from the connecting block 133, and the second end can move between the first position and the second position under the action of the spring 131. The distance from the first position to the device body 11 is greater than the distance from the adsorption end to the device body 11, and the distance from the second position to the device body 11 is less than or equal to the distance from the adsorption end to the device body 11, so that when the adsorption member 12 adsorbs one of the display panel 2 and the gasket 3, the second end of the elastic member 13 can abut against the other of the display panel 2 and the gasket 3, thereby enabling the display panel 2 and the gasket 3 to be separated under the action of the elastic member 13 during the transfer process of the adsorption mechanism 1.
[0052] Taking the adsorption mechanism 1 adsorbing the display panel 2 as an example, when the second end of the pressure block 132 is in the first position, the spring 131 is in its original state. At this time, the distance between the second end of the pressure block 132 and the device body 11 is greater than the distance between the side of the suction cup 122 away from the device body 11 and the device body 11. At this time, the pressure block 132 can preferentially contact the suction cup 122 and the gasket 3. When the second end of the pressure block 132 is in the second position, the spring 131 is in a compressed state. At this time, the distance between the second end of the pressure block 132 and the device body 11 is equal to the distance between the side of the suction cup 122 away from the device body 11 and the device body 11, and the display panel 2 is adsorbed on the suction cup 122. After the suction cup 122 adsorbs the display panel 2, it drives the display panel 2 to move under the action of the robotic arm. At this time, the pressure block 132 continues to contact the gasket 3 under the action of the spring 131, so that the display panel 2 gradually separates from the gasket 3 during movement.
[0053] Taking the adsorption mechanism 1 adsorbing the gasket 3 as an example, when the second end of the pressure block 132 is in the first position, the spring 131 is in its original state. At this time, the distance between the second end of the pressure block 132 and the device body 11 is greater than the distance between the side of the suction cup 122 away from the device body 11 and the device body 11. At this time, the pressure block 132 can preferentially contact the suction cup 122 and the display panel 2. When the second end of the pressure block 132 is in the second position, the spring 131 is in a compressed state. At this time, the distance between the second end of the pressure block 132 and the device body 11 is equal to the distance between the side of the suction cup 122 away from the device body 11 and the device body 11, and the gasket 3 is adsorbed on the suction cup 122. After the suction cup 122 adsorbs the gasket 3, it drives the gasket 3 to move under the action of the robotic arm. At this time, the pressure block 132 continues to contact the display panel 2 under the action of the spring 131, so that the gasket 3 gradually separates from the display panel 2 during movement.
[0054] Of course, the specific configuration of the elastic member is not fixed in this application, and those skilled in the art can adjust it according to the specific application scenario. For example, the elastic member can also be an elastic block or an elastic rod. In addition, the specific configuration of the elastic member 13 is not fixed in this application, and those skilled in the art can adjust it according to their needs. For example, the elastic member 13 can directly be a spring 131, an elastic rod, or an elastic block, that is, the elastic member 13 does not include the connecting block 133 and the pressing block 132.
[0055] It should be noted that, in other preferred embodiments, the connection block 133 is not necessarily provided, and those skilled in the art can select it as needed. For example, when the connection block 133 is not provided, the first end of the spring 131 is provided on the device body 11 .
[0056] It should also be noted that a telescopic rod may be provided inside the spring 131 or outside the spring 131 to ensure that the spring 131 can be extended and retracted in a predetermined direction when subjected to an external force to avoid deviation or distortion.
[0057] It should also be noted that the present application has no restrictions on the material of the pressing block 132, as long as the pressing block can separate the display panel and the gasket. For example, the pressing block 132 can be made of rubber, which can protect the abutting display panel or gasket and prevent damage to the display panel or gasket during the abutment process.
[0058] See next Figure 1-2 , the pressing block 132 includes a first pressing section and a second pressing section. The first pressing section and the second pressing section are both cylindrical. The first end of the first pressing section is arranged at the second end of the spring 131, and the second end of the first pressing section is provided with a second pressing section, wherein the cross-sectional area of the first pressing section is greater than the cross-sectional area of the second pressing section, and the cross-section of the first pressing section and the cross-section of the second pressing section are parallel to the plane where the device body 11 is located, which is beneficial for the adsorption mechanism 1 to adsorb one of the display panel 2 and the gasket 3. The second pressing section generates a greater abutting force with the other of the display panel 2 and the gasket 3, thereby facilitating the separation of the display panel 2 and the gasket 3. Specifically, when the adsorption mechanism 1 is adsorbing the display panel 2, the second pressing section can abut against the gasket 3, which is beneficial for separating the gasket 3 and preventing the problem of accidental suction. When the adsorption mechanism 1 is adsorbing the gasket 3, the second pressing section can abut against the display panel 2, which is beneficial for separating the display panel 2 and preventing the problem of accidental suction.
[0059] Of course, the present application does not limit the specific shape of the pressing block 132, as long as it can abut against the gasket 3 when adsorbing the display panel 2, and abut against the display panel 2 when adsorbing the gasket 3. For example, the first pressing segment can be rectangular, and / or the second pressing segment can be conical. Alternatively, the first and second pressing segments can be conical as a whole.
[0060] In addition, the present application also provides a display panel adsorption device for adsorbing a display panel 2, wherein the display panel 2 includes a panel 23 and a plurality of chip-on-chip films 22 spaced apart thereon, and the display panel adsorption device includes the adsorption mechanism described in any of the above-mentioned embodiments; the elastic member 13 corresponds to the first pore 21 between adjacent chip-on-chip films 22, and at least a portion of it can penetrate into or out of the first pore 21.
[0061] In the present application, the first pore 21 can allow the second pressing section to pass through and out, preventing the second pressing section from being pressed onto the chip-on-film 22 due to its large cross-sectional area, so that the display panel adsorption device can preferentially allow the second pressing section to pass through the first pore 21 and abut against the gasket 3 before adsorbing the display panel 2, thereby avoiding the adsorption device from accidentally adsorbing the gasket 3.
[0062] Combine Figure 1 The following describes the process of the display panel adsorption device of the present application adsorbing the display panel 2:
[0063] When the display panel adsorption device adsorbs the display panel 2, the display panel adsorption device moves and approaches the display panel 2. During the movement of the display panel adsorption device, the second pressure segment passes through the first pore 21 and preferentially contacts the gasket 3. During the downward movement of the display panel adsorption device, the spring 131 is compressed and drives the second pressure segment to be gradually pressed into the first pore 21 until the second end of the second pressure segment is in the second position. At this time, the adsorption member 12 adsorbs the display panel 2. Then, as the display panel adsorption device drives the display panel 2 away, the spring 131 gradually extends due to the gradual decrease in compression force and drives the second pressure segment through the first pore 21 to abut the gasket 3 in its original position, so that the display panel 2 and the gasket 3 gradually separate, thereby preventing the gasket 3 from moving with the display panel 2. As the display panel adsorption device drives the display panel 2 away, the force between the pressure block 132 and the gasket 3 gradually decreases until the spring 131 returns to its original state, and the display panel 2 and the gasket 3 separate.
[0064] In addition, the present application also provides a gasket adsorption device for adsorbing a gasket 3, a second pore is provided on the gasket 3, and the gasket adsorption device includes the adsorption mechanism described in any embodiment; the elastic member 13 corresponds to the second pore 31, and its second end can penetrate into or out of the second pore 31.
[0065] In the present application, the second pore 31 can allow the second pressing section to pass through and out, preventing the second pressing section from pressing onto the gasket 3 due to its large cross-sectional area, so that the gasket adsorption device can preferentially allow the second pressing section to pass through the second pore 31 and abut against the display panel 2 before adsorbing the gasket 3, thereby avoiding the adsorption device from adsorbing the display panel 2.
[0066] Combine Figure 2 The following describes the process of the gasket adsorption device of this application adsorbing the gasket 3:
[0067] When the gasket adsorption device adsorbs the gasket 3, the gasket adsorption device moves and approaches the gasket 3. During the movement of the gasket adsorption device, the second pressure segment passes through the second pore 31 and preferentially contacts the display panel 2. During the downward movement of the gasket adsorption device, the spring 131 is compressed and drives the second pressure segment to be gradually pressed into the second pore 31 until the second end of the second pressure segment is in the second position. At this time, the adsorption member 12 adsorbs the gasket 3. Then, during the process of the gasket adsorption device driving the gasket 3 away, the spring 131 stretches due to the gradual decrease in compression force and drives the second pressure segment through the second pore 31 to abut the display panel 2 in its original position, so that the display panel 2 and the gasket 3 are gradually separated, thereby preventing the display panel 2 from moving with the gasket 3. As the gasket adsorption device drives the gasket 3 away, the force between the pressure block 132 and the display panel 2 gradually decreases until the spring 131 returns to its normal state and the display panel 2 and the gasket 3 are separated.
[0068] In addition, the present application also provides an adsorption system, which includes the display panel adsorption device described in any of the above embodiments and the gasket adsorption device described in any of the above embodiments.
[0069] The present application simultaneously sets a display panel adsorption device and a gasket adsorption device in the adsorption system, so that the two adsorption devices can alternately adsorb the display panel 2 and the gasket 3, thereby improving the transfer efficiency of the display panel 2, so that the display panel 2 can participate in subsequent processing, testing, assembly or integration processes.
[0070] Those skilled in the art will appreciate that, although some embodiments herein include certain features included in other embodiments but not other features, combinations of features from different embodiments are intended to be within the scope of this application and to form different embodiments. For example, in the claims of this application, any of the claimed embodiments may be used in any combination.
[0071] Thus far, the technical solutions of the present application have been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it is readily understood by those skilled in the art that the scope of protection of the present application is obviously not limited to these specific embodiments. Without departing from the principles of the present application, those skilled in the art may make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will fall within the scope of protection of the present application.
Claims
1. An adsorption mechanism, characterized in that: The adsorption mechanism comprises: device body; an adsorption member, wherein the first end of the adsorption member is arranged on the device body, and the second end is an adsorption end; An elastic member, wherein the first end of the elastic member is arranged on the device body, and the second end is arranged to be able to move between a first position and a second position; wherein the distance from the first position to the device body is greater than the distance from the adsorption end to the device body, and the distance from the second position to the device body is less than or equal to the distance from the adsorption end to the device body.
2. The adsorption mechanism according to claim 1, characterized in that: The elastic member comprises: an elastic member, wherein a first end of the elastic member is connected to the device body; A pressing block is arranged at the second end of the elastic member.
3. The adsorption mechanism according to claim 2, characterized in that: The pressing block includes a first pressing section arranged at the second end of the elastic member and a second pressing section arranged on a side of the first pressing section away from the elastic member. The cross-sectional area of the first pressing section is larger than that of the second pressing section.
4. The adsorption mechanism according to claim 2, characterized in that: The elastic member further comprises: A connecting block, wherein a first end of the connecting block is arranged on the device body, and a second end of the connecting block is provided with the elastic member.
5. The adsorption mechanism according to claim 2, characterized in that: The elastic member is a spring, an elastic rod or an elastic block.
6. The adsorption mechanism according to claim 1, characterized in that: The elastic component is a spring, an elastic rod or an elastic block.
7. The adsorption mechanism according to claim 1, characterized in that: The adsorption member comprises: a connecting column having an adsorption channel, wherein a first end of the connecting column is provided on the device body, and a second end is provided with an adsorption port communicating with the adsorption channel; A suction cup is arranged at the adsorption port.
8. A display panel adsorption device for adsorbing a display panel, wherein the display panel comprises a panel and a plurality of chip-on-films spaced apart thereon, characterized in that: The display panel adsorption device comprises the adsorption mechanism according to any one of claims 1 to 7; The elastic member corresponds to the first pores between adjacent COF films, and at least a portion of the elastic member can penetrate into or out of the first pores.
9. A gasket adsorption device for adsorbing a gasket, wherein the gasket is provided with a second pore, characterized in that: The gasket adsorption device comprises the adsorption mechanism according to any one of claims 1 to 7; The elastic member corresponds to the second hole, and at least a portion of the elastic member can pass through or out of the second hole.
10. An adsorption system, characterized in that: The adsorption system includes the display panel adsorption device according to claim 8 and the gasket adsorption device according to claim 9.