Display screen glass rolling and laminating equipment
By integrating two independent rolling mechanisms in the display glass rolling and lamination equipment, the one-time compression of the display glass in two orthogonal directions is achieved, solving the problem of uneven compression and multiple positioning of existing equipment in large-size or special-shaped display screens, and improving production efficiency and bonding quality.
Patent Information
- Application Number
- CN202422243895.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-09-12
AI Technical Summary
The existing display glass rolling and lamination equipment is equipped with a single rolling mechanism, making it difficult to achieve uniform pressure in the bonding of large-size or special-shaped display screens, and requires multiple positioning, which affects production efficiency and bonding quality.
Two independent rolling mechanisms are integrated, which move in the X-axis and Y-axis directions respectively to realize the one-time compression of the display glass in two orthogonal directions.
Improve production efficiency, reduce positioning errors, ensure uniform distribution of pressure, improve fit quality and product yield, and enhance the applicability of the equipment.
Smart Images

Figure CN223045346U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of display screen manufacturing equipment, in particular to a display screen glass rolling and laminating device. Background Art
[0002] With the development of electronic devices towards the direction of being thinner, lighter, having higher resolution and more functions, as an important interface for human-computer interaction, the precision and efficiency of the manufacturing process of the display screen directly affect the performance and market competitiveness of the final product. In the manufacturing process of the display screen, the glass laminating process is a key step to ensure the display effect and mechanical strength.
[0003] The existing display screen glass rolling and laminating devices are usually equipped with a single rolling mechanism, which limits its ability to apply uniform pressure to the display screen glass during the laminating process, especially in the lamination of large-size or special-shaped display screens; in order to achieve lamination, the display screen glass needs to be pressed in two different directions, which requires the device to perform two precise positionings. This multiple positioning not only increases the complexity of the production process but also prolongs the production cycle; due to the need for two positionings and pressings, the production efficiency is severely affected, especially in mass production, this efficiency problem is particularly prominent; multiple positionings increase the uncertainty during the operation process, easily lead to positioning deviation, affect the lamination quality, and thus reduce the overall yield of the product. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is to provide a display screen glass rolling and laminating device with high production efficiency.
[0005] To solve the above technical problem, the technical solution adopted by the utility model is: a display screen glass rolling and laminating device, including a machine table, a positioning stage, a first transverse movement component, a second transverse movement component, a first rolling mechanism and a second rolling mechanism, wherein both the first rolling mechanism and the second rolling mechanism are used for pressing the display screen product to be processed; the first transverse movement component and the second transverse movement component are respectively installed on the machine table; the positioning stage is installed on the first transverse movement component, the positioning stage is used for fixing the display screen product to be processed, and the first transverse movement component is used for driving the positioning stage to move successively under the first rolling mechanism and the second rolling mechanism along the X-axis direction; the second rolling mechanism is installed on the second transverse movement component, and the second transverse movement component is used for driving the second rolling mechanism to move along the Y-axis direction.
[0006] Further, the first transverse movement component includes a first transverse movement driving motor, a first transverse movement sliding seat, and a first transverse movement threaded rod. The first transverse movement threaded rod is rotatably installed on the first transverse movement sliding seat and is in transmission connection with the output shaft of the first transverse movement driving motor. The first transverse movement driving motor is installed on the first transverse movement sliding seat, the first transverse movement sliding seat is installed on the machine table, the first transverse movement threaded rod extends along the X-axis direction, and the bottom of the positioning carrier is threadedly connected to the first transverse movement threaded rod and is slidably connected to the first transverse movement sliding seat.
[0007] Further, a transverse movement slider is provided at the bottom of the positioning carrier, and a transverse movement slide rail extending along the X-axis direction is provided on the machine table. The transverse movement slider is slidably installed on the transverse movement slide rail.
[0008] Further, the number of both the transverse movement slider and the transverse movement slide rail is two, and the first transverse movement threaded rod is located at the center position between the two transverse movement slide rails.
[0009] Further, the second transverse movement component includes a second transverse movement driving motor, a second transverse movement sliding seat, and a second transverse movement threaded rod. The second transverse movement threaded rod is rotatably installed on the second transverse movement sliding seat and is in transmission connection with the output shaft of the second transverse movement driving motor. The second transverse movement driving motor is installed on the second transverse movement sliding seat, the second transverse movement sliding seat is installed on the machine table, the second transverse movement threaded rod extends along the Y-axis direction, and the bottom of the second rolling mechanism is threadedly connected to the second transverse movement threaded rod and is slidably connected to the second transverse movement sliding seat.
[0010] Further, a heightening support bracket is provided on the machine table, and the second transverse movement component is installed on the heightening support bracket.
[0011] Further, the first rolling mechanism includes a first support frame, a first lifting driving motor, a first lifting sliding seat, a first lifting threaded rod, a first rolling seat, and a first rolling wheel. The first support frame is installed on the machine table, the first lifting sliding seat is installed on the first support frame, the first lifting threaded rod is rotatably installed on the first lifting sliding seat and is in transmission connection with the output shaft of the first lifting driving motor. The first lifting driving motor is installed on the first lifting sliding seat; the first lifting threaded rod extends along the Z-axis direction, the first rolling seat is threadedly connected to the first lifting threaded rod and is slidably connected to the first lifting sliding seat, and the first rolling wheel is rotatably installed at the bottom of the first rolling seat and is used to contact the display product to be processed.
[0012] Further, the material of the first rolling wheel is rubber.
[0013] Further, the second rolling mechanism includes a second support frame, a second lifting drive motor, a second lifting sliding seat, a second lifting threaded rod, a second rolling seat, and a second rolling wheel. The second support frame is installed on the second transverse movement assembly. The second lifting sliding seat is installed on the second support frame. The second lifting threaded rod is rotatably installed on the second lifting sliding seat and is in transmission connection with the output shaft of the second lifting drive motor. The second lifting drive motor is installed on the second lifting sliding seat. The second lifting threaded rod extends along the Z-axis direction. The second rolling seat is threadedly connected to the second lifting threaded rod and is slidably connected to the second lifting sliding seat. The second rolling wheel is rotatably installed at the bottom of the second rolling seat and is used to abut against the display screen product to be processed.
[0014] Further, the material of the second rolling wheel is rubber.
[0015] The beneficial effects of the present utility model are as follows: The display screen glass rolling and laminating device provided by the present utility model realizes the one-time pressing of the display screen glass in two orthogonal directions through the innovative integration of two independent rolling mechanisms. This design significantly improves the production efficiency because the display screen glass only needs to be positioned once to complete the entire laminating process, thereby reducing the time required for repeated positioning and the possible errors. In addition, due to the coordinated operation of the two rolling mechanisms, the uniform distribution of pressure during the laminating process is ensured, the laminating quality is improved, and thus the yield of the product is increased. At the same time, the design of the device allows for flexible adjustment to adapt to display screen glasses of different sizes, enhancing its applicability and market competitiveness. Description of the Drawings
[0016] Figure 1 It is a schematic structural diagram of the display screen glass rolling and laminating device according to the first embodiment of the present utility model;
[0017] Figure 2 It is a schematic structural diagram of the display screen glass rolling and laminating device according to the first embodiment of the present utility model from another perspective.
[0018] Label Description:
[0019] 1, machine platform; 11, transverse movement slide rail; 12, elevation support; 2, positioning carrier; 21, transverse movement slider; 3, first transverse movement drive motor; 4, first transverse movement sliding seat; 5, second transverse movement drive motor; 6, second transverse movement sliding seat; 7, first rolling mechanism; 71, first support frame; 72, first lifting drive motor; 73, first lifting sliding seat; 74, first rolling seat; 75, first rolling wheel; 8, second rolling mechanism; 81, second support frame; 82, second lifting drive motor; 83, second lifting sliding seat; 84, second rolling seat; 85, second rolling wheel. Detailed Embodiment
[0020] To describe in detail the technical content, achieved objectives and effects of the present utility model, the following will be described in conjunction with the embodiments and with reference to the accompanying drawings.
[0021] Please refer to Figure 1 and Figure 2 , a display screen glass rolling and laminating device, comprising a machine table 1, a positioning carrier 2, a first transverse movement assembly, a second transverse movement assembly, a first rolling mechanism 7 and a second rolling mechanism 8. Both the first rolling mechanism 7 and the second rolling mechanism 8 are used for laminating the display screen products to be processed; the first transverse movement assembly and the second transverse movement assembly are respectively installed on the machine table 1; the positioning carrier 2 is installed on the first transverse movement assembly. The positioning carrier 2 is used for fixing the display screen products to be processed, and the first transverse movement assembly is used to drive the positioning carrier 2 to move successively under the first rolling mechanism 7 and the second rolling mechanism 8 along the X-axis direction; the second rolling mechanism 8 is installed on the second transverse movement assembly, and the second transverse movement assembly is used to drive the second rolling mechanism 8 to move along the Y-axis direction.
[0022] As can be seen from the above description, the beneficial effects of the present utility model are as follows: By innovatively integrating two independent rolling mechanisms, the one-time lamination of the display screen glass in two orthogonal directions is realized. This design significantly improves the production efficiency because the display screen glass only needs to be positioned once to complete the entire lamination process, thereby reducing the time required for repeated positioning and the possible errors. In addition, due to the coordinated operation of the two rolling mechanisms, the uniform distribution of pressure during the lamination process is ensured, the lamination quality is improved, and thus the yield of the product is enhanced. At the same time, the design of this device allows for flexible adjustment to adapt to display screen glasses of different sizes, enhancing its applicability and market competitiveness.
[0023] Further, the first transverse movement assembly includes a first transverse movement driving motor 3, a first transverse movement sliding seat 4 and a first transverse movement threaded rod. The first transverse movement threaded rod is rotatably installed on the first transverse movement sliding seat 4 and is in transmission connection with the output shaft of the first transverse movement driving motor 3. The first transverse movement driving motor 3 is installed on the first transverse movement sliding seat 4, the first transverse movement sliding seat 4 is installed on the machine table 1, the first transverse movement threaded rod extends along the X-axis direction, and the bottom of the positioning carrier 2 is threadedly connected to the first transverse movement threaded rod and is slidably connected to the first transverse movement sliding seat 4.
[0024] As can be seen from the above description, the design of the first transverse movement assembly allows the positioning carrier 2 to move precisely along the X-axis direction. Through the cooperation of the first transverse movement driving motor 3 and the first transverse movement threaded rod, the stable and precise positioning of the positioning carrier 2 is realized, improving the operation flexibility and positioning accuracy of the device.
[0025] Further, a transverse sliding block 21 is provided at the bottom of the positioning stage 2, and a transverse sliding rail 11 extending in the X-axis direction is provided on the machine table 1. The transverse sliding block 21 is slidably mounted on the transverse sliding rail 11.
[0026] As can be seen from the above description, the design of the transverse sliding block 21 and the transverse sliding rail 11 provides additional stability and smoothness, ensuring the smoothness of the positioning stage 2 during movement and further reducing the positioning error caused by mechanical vibration or friction.
[0027] Further, the number of both the transverse sliding block 21 and the transverse sliding rail 11 is two, and the first transverse threaded rod is located at the center position between the two transverse sliding rails 11.
[0028] As can be seen from the above description, by providing two transverse sliding blocks 21 and sliding rails and making the first transverse threaded rod located at the center position, the balanced movement of the positioning stage 2 in the X-axis direction is achieved, enhancing the stability and durability of the device.
[0029] Further, the second transverse movement assembly includes a second transverse movement driving motor 5, a second transverse movement sliding seat 6, and a second transverse threaded rod. The second transverse threaded rod is rotatably mounted on the second transverse movement sliding seat 6 and is in transmission connection with the output shaft of the second transverse movement driving motor 5. The second transverse movement driving motor 5 is mounted on the second transverse movement sliding seat 6. The second transverse movement sliding seat 6 is mounted on the machine table 1. The second transverse threaded rod extends in the Y-axis direction, and the bottom of the second rolling mechanism 8 is threadedly connected to the second transverse threaded rod and is slidably connected to the second transverse movement sliding seat 6.
[0030] As can be seen from the above description, the design of the second transverse movement assembly allows the second rolling mechanism 8 to move precisely in the Y-axis direction. Through the cooperation of the second transverse movement driving motor 5 and the second transverse threaded rod, the stable and precise positioning of the second rolling mechanism 8 is achieved, improving the operation flexibility and positioning accuracy of the device.
[0031] Further, a heightening bracket 12 is provided on the machine table 1, and the second transverse movement assembly is mounted on the heightening bracket 12.
[0032] As can be seen from the above description, the use of the heightening bracket 12 provides an additional mounting height for the second transverse movement assembly, which may help avoid interference with other components and may also improve the convenience of device maintenance and operation.
[0033] Further, the first rolling mechanism 7 includes a first support frame 71, a first lifting drive motor 72, a first lifting sliding seat 73, a first lifting threaded rod, a first rolling seat 74 and a first rolling wheel 75. The first support frame 71 is installed on the machine table 1. The first lifting sliding seat 73 is installed on the first support frame 71. The first lifting threaded rod is rotatably installed on the first lifting sliding seat 73 and is in transmission connection with the output shaft of the first lifting drive motor 72. The first lifting drive motor 72 is installed on the first lifting sliding seat 73. The first lifting threaded rod extends along the Z-axis direction. The first rolling seat 74 is threadedly connected to the first lifting threaded rod and is slidably connected to the first lifting sliding seat 73. The first rolling wheel 75 is rotatably installed at the bottom of the first rolling seat 74 and is used to contact the display screen product to be processed.
[0034] As can be seen from the above description, the design of the first rolling mechanism 7 allows the first rolling wheel 75 to accurately lift along the Z-axis direction. Through the cooperation of the first lifting drive motor 72 and the first lifting threaded rod, the accurate contact between the first rolling wheel 75 and the display screen glass is achieved, improving the laminating quality.
[0035] Further, the material of the first rolling wheel 75 is rubber.
[0036] As can be seen from the above description, using the first rolling wheel 75 made of rubber can provide a soft contact, reducing the risk of damage to the display screen glass. At the same time, the elastic characteristics of rubber help to apply pressure more evenly, improving the laminating effect.
[0037] Further, the second rolling mechanism 8 includes a second support frame 81, a second lifting drive motor 82, a second lifting sliding seat 83, a second lifting threaded rod, a second rolling seat 84 and a second rolling wheel 85. The second support frame 81 is installed on the second transverse movement assembly. The second lifting sliding seat 83 is installed on the second support frame 81. The second lifting threaded rod is rotatably installed on the second lifting sliding seat 83 and is in transmission connection with the output shaft of the second lifting drive motor 82. The second lifting drive motor 82 is installed on the second lifting sliding seat 83. The second lifting threaded rod extends along the Z-axis direction. The second rolling seat 84 is threadedly connected to the second lifting threaded rod and is slidably connected to the second lifting sliding seat 83. The second rolling wheel 85 is rotatably installed at the bottom of the second rolling seat 84 and is used to contact the display screen product to be processed.
[0038] As can be seen from the above description, the design of the second rolling mechanism 8 allows the second rolling wheel 85 to accurately lift along the Z-axis direction. Through the cooperation of the second lifting drive motor 82 and the second lifting threaded rod, the accurate contact between the second rolling wheel 85 and the display screen glass is achieved, improving the laminating quality.
[0039] Furthermore, the second rolling wheel 85 is made of rubber.
[0040] From the above description, it can be seen that the second rolling wheel 85 made of rubber material can provide soft contact and reduce the risk of damage to the display glass. At the same time, the elastic property of rubber helps to apply pressure more evenly and improve the fitting effect.
[0041] Please refer to Figure 1 and Figure 2 , Embodiment 1 of the present utility model is: a display glass rolling and bonding device, used for rolling and bonding glass and display screen; the display glass rolling and bonding device comprises a machine platform 1, a positioning platform 2, a first transverse moving assembly, a second transverse moving assembly, a first rolling mechanism 7 and a second rolling mechanism 8, the first rolling mechanism 7 and the second rolling mechanism 8 are both used for bonding the display screen product to be processed; the first transverse moving assembly and the second transverse moving assembly are respectively mounted on the machine platform 1; the positioning platform 2 is mounted on the first transverse moving assembly, the positioning platform 2 is used to fix the display screen product to be processed, the first transverse moving assembly is used to drive the positioning platform 2 to move in sequence along the X-axis direction to directly below the first rolling mechanism 7 and the second rolling mechanism 8; the second rolling mechanism 8 is mounted on the second transverse moving assembly, and the second transverse moving assembly is used to drive the second rolling mechanism 8 to move along the Y-axis direction; the display glass rolling and bonding device realizes one-time bonding of the display screen glass in two orthogonal directions by innovatively integrating two independent rolling mechanisms. This design significantly improves production efficiency, because the display glass only needs to be positioned once to complete the entire bonding process, thereby reducing the time required for repeated positioning and possible errors. In addition, the coordinated work of the two rolling mechanisms ensures uniform distribution of pressure during the bonding process, improves the bonding quality, and thus improves the product yield. At the same time, the design of the equipment allows flexible adjustment to accommodate display glass of different sizes, enhancing its applicability and market competitiveness.
[0042] Preferably, the first transverse movement assembly includes a first transverse movement driving motor 3, a first transverse movement sliding seat 4, and a first transverse movement threaded rod. The first transverse movement threaded rod is rotatably installed on the first transverse movement sliding seat 4 and is in transmission connection with the output shaft of the first transverse movement driving motor 3. The first transverse movement driving motor 3 is installed on the first transverse movement sliding seat 4. The first transverse movement sliding seat 4 is installed on the machine table 1. The first transverse movement threaded rod extends along the X-axis direction. The bottom of the positioning carrier 2 is threadedly connected to the first transverse movement threaded rod and is slidably connected to the first transverse movement sliding seat 4. The second transverse movement assembly includes a second transverse movement driving motor 5, a second transverse movement sliding seat 6, and a second transverse movement threaded rod. The second transverse movement threaded rod is rotatably installed on the second transverse movement sliding seat 6 and is in transmission connection with the output shaft of the second transverse movement driving motor 5. The second transverse movement driving motor 5 is installed on the second transverse movement sliding seat 6. The second transverse movement sliding seat 6 is installed on the machine table 1. The second transverse movement threaded rod extends along the Y-axis direction. The bottom of the second rolling mechanism 8 is threadedly connected to the second transverse movement threaded rod and is slidably connected to the second transverse movement sliding seat 6. Specifically, a transverse movement slider 21 is provided at the bottom of the positioning carrier 2. A transverse movement slide rail 11 extending along the X-axis direction is provided on the machine table 1. The transverse movement slider 21 is slidably installed on the transverse movement slide rail 11. The design of the transverse movement slider 21 and the transverse movement slide rail 11 provides additional stability and smoothness, ensuring the smoothness of the positioning carrier 2 during movement and further reducing the positioning error caused by mechanical vibration or friction. More specifically, the number of the transverse movement sliders 21 and the transverse movement slide rails 11 is two each. The first transverse movement threaded rod is located at the center position between the two transverse movement slide rails 11. By providing two transverse movement sliders 21 and slide rails and making the first transverse movement threaded rod located at the center position, the balanced movement of the positioning carrier 2 in the X-axis direction is achieved, enhancing the stability and durability of the device.
[0043] In this embodiment, a heightening bracket 12 is provided on the machine table 1. The second transverse movement assembly is installed on the heightening bracket 12. The use of the heightening bracket 12 provides an additional installation height for the second transverse movement assembly, which may help avoid interference with other components and may also improve the convenience of equipment maintenance and operation. Specifically, the second transverse movement sliding seat 6 is installed on the heightening bracket 12. The height of the heightening bracket 12 can be adjusted accordingly according to actual usage requirements.
[0044] Preferably, the first rolling mechanism 7 includes a first support frame 71, a first lifting drive motor 72, a first lifting sliding seat 73, a first lifting screw rod, a first rolling seat 74 and a first rolling wheel 75. The first support frame 71 is installed on the machine table 1. The first lifting sliding seat 73 is installed on the first support frame 71. The first lifting screw rod is rotatably installed on the first lifting sliding seat 73 and is in transmission connection with the output shaft of the first lifting drive motor 72. The first lifting drive motor 72 is installed on the first lifting sliding seat 73. The first lifting screw rod extends along the Z-axis direction. The first rolling seat 74 is threadedly connected to the first lifting screw rod and is slidably connected to the first lifting sliding seat 73. The first rolling wheel 75 is rotatably installed at the bottom of the first rolling seat 74 and is used to abut against the display screen product to be processed. It can be understood that the design of the first rolling mechanism 7 allows the first rolling wheel 75 to be accurately lifted along the Z-axis direction. Through the cooperation of the first lifting drive motor 72 and the first lifting screw rod, the accurate contact between the first rolling wheel 75 and the display screen glass is realized, and the laminating quality is improved. The second rolling mechanism 8 includes a second support frame 81, a second lifting drive motor 82, a second lifting sliding seat 83, a second lifting screw rod, a second rolling seat 84 and a second rolling wheel 85. The second support frame 81 is installed on the second transverse movement assembly. The second lifting sliding seat 83 is installed on the second support frame 81. The second lifting screw rod is rotatably installed on the second lifting sliding seat 83 and is in transmission connection with the output shaft of the second lifting drive motor 82. The second lifting drive motor 82 is installed on the second lifting sliding seat 83. The second lifting screw rod extends along the Z-axis direction. The second rolling seat 84 is threadedly connected to the second lifting screw rod and is slidably connected to the second lifting sliding seat 83. The second rolling wheel 85 is rotatably installed at the bottom of the second rolling seat 84 and is used to abut against the display screen product to be processed. It can be understood that the design of the second rolling mechanism 8 allows the second rolling wheel 85 to be accurately lifted along the Z-axis direction. Through the cooperation of the second lifting drive motor 82 and the second lifting screw rod, the accurate contact between the second rolling wheel 85 and the display screen glass is realized, and the laminating quality is improved
[0045] Optionally, the materials of the first rolling wheel 75 and the second rolling wheel 85 can be rubber materials. Using the rubber first rolling wheel 75 and second rolling wheel 85 can provide a soft contact, reduce the risk of damage to the display screen glass. At the same time, the elastic characteristics of rubber help to apply pressure more evenly and improve the laminating effect.
[0046] In summary, the display screen glass rolling and laminating device provided by the present utility model realizes the one-time lamination of the display screen glass in two orthogonal directions by innovatively integrating two independent rolling mechanisms. This design significantly improves the production efficiency because the display screen glass only needs to be positioned once to complete the entire lamination process, thus reducing the time required for repeated positioning and the possible errors. In addition, due to the coordinated operation of the two rolling mechanisms, the uniform distribution of pressure during the lamination process is ensured, improving the lamination quality and thereby increasing the yield rate of the product. At the same time, the design of this device allows for flexible adjustment to adapt to display screen glasses of different sizes, enhancing its applicability and market competitiveness.
[0047] The above are only the embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in the relevant technical fields, shall be similarly included in the patent protection scope of the present utility model.
Claims
1. A display glass rolling and bonding device, characterized in that: It includes a machine platform, a positioning platform, a first transverse moving assembly, a second transverse moving assembly, a first rolling mechanism and a second rolling mechanism, wherein the first rolling mechanism and the second rolling mechanism are both used to press the display screen product to be processed; the first transverse moving assembly and the second transverse moving assembly are respectively installed on the machine platform; the positioning platform is installed on the first transverse moving assembly, and the positioning platform is used to fix the display screen product to be processed, and the first transverse moving assembly is used to drive the positioning platform to move in the X-axis direction to the bottom of the first rolling mechanism and the second rolling mechanism in sequence; the second rolling mechanism is installed on the second transverse moving assembly, and the second transverse moving assembly is used to drive the second rolling mechanism to move in the Y-axis direction.
2. The display glass rolling and bonding device according to claim 1, characterized in that: The first transverse movement assembly includes a first transverse movement drive motor, a first transverse movement sliding seat and a first transverse movement threaded rod. The first transverse movement threaded rod can be rotatably mounted on the first transverse movement sliding seat and is drivingly connected to the output shaft of the first transverse movement drive motor. The first transverse movement drive motor is mounted on the first transverse movement sliding seat, and the first transverse movement sliding seat is mounted on the machine platform. The first transverse movement threaded rod extends along the X-axis direction, and the bottom of the positioning platform is threadedly connected to the first transverse movement threaded rod and is slidably connected to the first transverse movement sliding seat.
3. The display glass rolling and bonding device according to claim 2, characterized in that: A transverse sliding block is provided at the bottom of the positioning platform, and a transverse sliding rail extending along the X-axis direction is provided on the platform, and the transverse sliding block can be slidably installed on the transverse sliding rail.
4. The display glass rolling and bonding device according to claim 3, characterized in that: There are two transverse sliding blocks and two transverse sliding rails, and the first transverse threaded rod is located in the middle of the two transverse sliding rails.
5. The display glass rolling and bonding device according to claim 1, characterized in that: The second transverse movement assembly includes a second transverse movement drive motor, a second transverse movement sliding seat and a second transverse movement threaded rod. The second transverse movement threaded rod can be rotatably mounted on the second transverse movement sliding seat and is drivingly connected to the output shaft of the second transverse movement drive motor. The second transverse movement drive motor is installed on the second transverse movement sliding seat, and the second transverse movement sliding seat is installed on the machine table. The second transverse movement threaded rod extends along the Y-axis direction, and the bottom of the second rolling mechanism is threadedly connected to the second transverse movement threaded rod and is slidably connected to the second transverse movement sliding seat.
6. The display glass rolling and bonding device according to claim 1 or 5, characterized in that: The platform is provided with a raising bracket, and the second transverse movement assembly is installed on the raising bracket.
7. The display glass rolling and bonding device according to claim 1, characterized in that: The first rolling mechanism comprises a first support frame, a first lifting drive motor, a first lifting sliding seat, a first lifting threaded rod, a first rolling seat and a first rolling wheel, wherein the first support frame is mounted on the machine platform, the first lifting sliding seat is mounted on the first support frame, the first lifting threaded rod is rotatably mounted on the first lifting sliding seat and is drivingly connected to the output shaft of the first lifting drive motor, and the first lifting drive motor is mounted on the first lifting sliding seat; The first lifting threaded rod extends along the Z-axis direction, the first rolling seat is threadedly connected to the first lifting threaded rod and is slidably connected to the first lifting sliding seat, and the first rolling wheel is rotatably installed at the bottom of the first rolling seat and is used to interfere with the display screen product to be processed.
8. The display glass rolling and bonding device according to claim 7, characterized in that: The first rolling wheel is made of rubber.
9. The display glass rolling and bonding device according to claim 1, characterized in that: The second rolling mechanism includes a second support frame, a second lifting drive motor, a second lifting sliding seat, a second lifting threaded rod, a second rolling seat and a second rolling wheel, the second support frame is mounted on the second transverse movement assembly, the second lifting sliding seat is mounted on the second support frame, the second lifting threaded rod is rotatably mounted on the second lifting sliding seat and is drivingly connected to the output shaft of the second lifting drive motor, and the second lifting drive motor is mounted on the second lifting sliding seat; The second lifting threaded rod extends along the Z-axis direction, the second rolling seat is threadedly connected to the second lifting threaded rod and is slidably connected to the second lifting sliding seat, and the second rolling wheel is rotatably installed at the bottom of the second rolling seat and is used to contact the display screen product to be processed.
10. The display glass rolling and bonding device according to claim 9, characterized in that: The second rolling wheel is made of rubber.