S-obm special film glass material laminating device
By integrating the side clamping assembly, pushing assembly, and anti-bending assembly of the high-efficiency device, the problem of poor integration of glass material placement in vacuum laminating machines is solved, achieving efficient, bubble-free, and wrinkle-free lamination of glass materials and improving the production quality of S-OBM special film glass.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- FUJIAN ZHONGTOUCH TECH CO LTD
- Filing Date
- 2024-08-02
- Publication Date
- 2026-04-10
AI Technical Summary
Existing vacuum laminating machines have low integration of glass materials when producing S-OBM special film glass, resulting in poor uniformity of material assembly and affecting the quality of subsequent vacuum lamination.
The system employs a highly efficient integrated device, including a side clamping assembly, a pushing assembly, and an anti-bending assembly. It uses screw drive to clamp and push the material on the side, and works with a flattening bar and pressure roller to ensure that the front and back sides of the material are synchronously aligned and the middle is not easily bent, thus improving stacking stability.
It achieves high-quality bonding of glass materials without bubbles or wrinkles, improving the production efficiency and quality of S-OBM special film glass.
Smart Images

Figure CN119017820B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of bonding equipment, in particular to an S-OBM special film glass material bonding device. BACKGROUND
[0002] The light transmission principle of a glass panel refers to that when light meets the glass panel, refraction and transmission occur; the glass is a transparent material, when light enters the glass panel, refraction occurs, that is, the direction of light changes, because when light enters from one medium (for example, air) into another medium (for example, glass), the propagation speed changes, so that the light is bent; the light transmission principle also relates to light absorption and reflection, a small part of light is absorbed by the glass panel, and another small part of light is reflected, that is, bounces back from the glass surface, and most of the light is transmitted through the glass panel, that is, passes through the glass.
[0003] When the liquid crystal screen panel of the current device is exposed to sunlight for a long time outdoors, liquid crystal blackening, unclear picture, and non-touching conditions occur, at present, the air cooling or air cooling heat dissipation mode is generally set in the device, but the two modes are not convenient to use, and need to be cleaned regularly, at the same time, the maintenance and production cost is high, therefore, the S-OBM special film glass is proposed, that is, two or more than two pieces of glass are firmly bonded by a special device, so as to form the S-OBM special film glass, the S-OBM special film glass utilizes the plasma effect of special materials and red / ultraviolet rays to prevent solar radiation from radiating to the liquid crystal, thereby realizing efficient heat protection of the device liquid crystal screen.
[0004] At present, when the S-OBM special film glass production and preparation activity is carried out, the vacuum bonding machine is needed to realize the S-OBM special film glass production and bonding activity, but the vacuum bonding machine used at present has low glass material placement integration, that is, when the multi-layer material is stacked and placed, it is generally placed manually, in this way, the combination of each layer of material is not neat, which affects the quality of the S-OBM special film glass formed by subsequent vacuum bonding. SUMMARY
[0005] The application aims to provide an S-OBM special film glass material bonding device to solve the problems in the background art.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: an S-OBM special film glass material bonding device, comprising a machine body, a control key installed in the middle of the upper end of the machine body, guide rails provided on both sides of the upper end of the machine body, and a sliding plate connected to the upper end of the guide rails on both sides, the lower end of the sliding plate connected to a cylinder, a vacuum control cabinet provided on the rear side of the upper end of the machine body, and a vacuum chamber installed in the lower end of the vacuum control cabinet, and further comprising a high-efficiency integration device provided on the upper end of the machine body, the high-efficiency integration device comprising a support plate provided on the upper end of the machine body, a screw rotatably connected inside the support plate, a motor connected to the right side of the screw, side clamping assemblies installed on both sides of the rear end of the support plate, pushing and adjusting assemblies provided on both sides inside the side clamping assemblies, and anti-bending assemblies installed on the upper end of the side clamping assemblies, the side clamping assemblies comprising movable plates provided on both sides of the rear end of the support plate and connected to the outside of the screw, a movable plate inserted into the middle of the movable plate, and a movable plate provided on the movable plate. The moving plate has a clamping plate on one side, a connecting strip on the other side of the movable plate, a roller rotatably connected inside the connecting strip, a connecting rope connected to the outside of the roller, a spring box located on both sides inside the movable plate and connected to one side of the connecting rope, and a guide rod inserted into both sides of the outer end of the clamping plate. The pushing and adjusting assembly includes a pushing flat strip rotatably connected to both sides of the outer end of the movable plate, a transmission groove opened inside the pushing flat strip, a docking shaft inserted into the transmission groove, a limiting block installed on the upper end of the docking shaft, a connecting groove opened at the lower end of the clamping plate, and a compression spring connected to one side of the limiting block. The anti-bending assembly includes a docking block fastened to the upper end of the movable plate, a pressure arm rotatably connected inside the docking block, an insertion block fastened to the lower end of the pressure arm, a connecting shaft inserted into the insertion block, a conversion groove opened inside the movable plate, a connecting frame connected to the lower end of one side of the pressure arm, a pressure wheel rotatably connected to the lower end of the connecting frame, a spring connected to the upper end of the connecting frame, and a receiving groove opened in the middle of the clamping plate.
[0007] Preferably, the side clamping assembly, the pushing assembly, and the anti-bending assembly are all symmetrically arranged on the left and right sides of the rear side of the support plate, and the clamping surfaces of the side clamping assemblies on both sides are opposite to the left and right sides of the slide plate.
[0008] Preferably, the movable plate is movably inserted into the middle of the movable plate, and the movable plate is provided with a connecting strip and rollers on one side inside the movable plate.
[0009] Preferably, the spring boxes are arranged symmetrically front and back along the interior of the movable plate, and a clock spring is integrally provided inside the spring boxes on both sides.
[0010] Preferably, the pusher bars are symmetrically arranged along the inner side of the moving plate, and the pusher bars on both sides away from the moving plate are inserted into the connecting groove opened at the lower end of the clamping plate.
[0011] Preferably, the pusher bar is installed along the inclined direction, and the bottom surface of the pusher bar and the top surface of the slide plate are on the same plane.
[0012] Preferably, the limiting block is slidingly embedded in the inside of the clamping plate, and the limiting block is limitedly connected with the inside of the clamping plate on both sides.
[0013] Preferably, the conversion groove is symmetrically formed on both sides of the middle inner wall of the movable plate, and the conversion grooves on both sides are in a downward inclined adjustment state.
[0014] Preferably, the pressure wheel is arranged in the receiving groove, and the upper end of the pressure wheel is connected with the connecting frame and is inserted with the lower end of one side of the pressure arm.
[0015] Preferably, the receiving groove is formed in a rectangular groove shape as a whole, and the bottom of the inlet end of the receiving groove is provided in a smooth chamfer shape.
[0016] Compared with the prior art, the present application has the following advantages:
[0017] When the movable plate in the side clamping assembly is relatively transversely moved by the screw transmission, the movable plate, the clamping plate and the material side are clamped, pushed and aligned, and when the side clamping and pushing operation is performed, the pusher assembly arranged at both ends of one side of the movable plate is synchronously driven, the pusher strip arranged in the pusher assembly is tilted and pushed out, and the front and rear sides of the material are pushed flat, so that the material stacking is further aligned, and the material stacking stability is improved.
[0018] The side clamping assembly is arranged, the movable plate is transversely moved by the screw transmission, the clamping plate and the movable plate are moved to the side of the material, the side clamping and pushing operation is realized, and the side edges of the materials in each layer are quickly aligned.
[0019] The connecting strip, the roller, the connecting rope and the spring box are arranged, the movable plate is transversely moved by the movable plate during the clamping operation, the movable plate is transversely moved, the connecting rope between the connecting strip and the roller is pulled out, the mainspring in the spring box on both sides is driven, and stable elastic support preparation is provided for subsequent reset.
[0020] The pusher assembly is arranged, the movable plate is moved when the movable plate drives the clamping plate to complete the lateral movement, the pusher strip at both ends of one side is driven, the pusher strip is connected with the transmission groove and the connecting shaft, the pusher strip is tilted and pushed out, the front and rear sides of the material are pushed flat, the materials on both sides are synchronously pushed and aligned, the overall glass material stacking is improved, and the vacuum lamination quality of the subsequent glass material is ensured.
[0021] The setting of the anti-bending assembly, namely the moving plate in the horizontal moving process, will realize the moving out of the pressure wheel arranged in the receiving groove, so that the pressure wheel is abutted with the upper end of the material, and the spring abutted with the upper end of the connecting frame can strengthen the abutting force of the pressure wheel and the upper end of the material. Meanwhile, the connecting shaft arranged at the lower end of the insertion block and the conversion groove arranged at the both sides of the movable plate can be driven during the outward movement of the moving plate, so that the pressure arm can realize the outward movement and the downward movement. In this way, the pressure wheel can realize the abutting and pressing of the upper end of the material during the lateral clamping and straightening movement of the clamping plate to the material, so as to avoid the phenomenon of bending and breaking of the middle part of the material caused by the lateral pressure. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a structural schematic diagram of the application;
[0023] Figure 2 It is a structural schematic diagram of the high-efficiency integration device of the application;
[0024] Figure 3 It is a combined structural schematic diagram of the side clamping assembly, the straightening assembly and the anti-bending assembly of the application;
[0025] Figure 4 It is a top view of the internal structure of the side clamping assembly of the application;
[0026] Figure 5 It is a three-dimensional partial cross-sectional structural schematic diagram of the straightening assembly of the application;
[0027] Figure 6 It is a front view cross-sectional structural schematic diagram of the anti-bending assembly of the application.
[0028] In the figure: machine body-1, control key-2, guide rail-3, sliding plate-4, vacuum control cabinet-5, vacuum box-6, high-efficiency integration device-7, support plate-71, screw-72, motor-73, side clamping assembly-74, moving plate-741, movable plate-742, clamping plate-743, connecting strip-744, roller-745, connecting rope-746, spring box-747, guide rod-748, straightening assembly-75, straightening strip-751, transmission groove-752, abutting shaft-753, limiting block-754, connecting groove-755, compression spring-756, anti-bending assembly-76, abutting block-761, pressure arm-762, insertion block-763, connecting shaft-764, conversion groove-765, connecting frame-766, pressure wheel-767, spring-768, receiving groove-769. DETAILED DESCRIPTION
[0029] In order to further explain the technical scheme of the application, the following specific embodiments are described in detail.
[0030] Please refer to Figure 1The application provides a S-OBM special film glass material laminating device, which comprises a machine body 1, a control key 2 is arranged on the middle of the upper end of the machine body 1, guide rails 3 are arranged on the left and right sides of the upper end of the machine body 1 in a longitudinal direction, and sliding plates 4 for supporting and vacuum laminating glass materials are arranged on the upper ends of the guide rails 3, the lower middle of the sliding plate 4 is connected with a cylinder, a vacuum control cabinet 5 is arranged on the rear side of the upper end of the machine body 1, a vacuum box 6 is arranged at the lower end of the vacuum control cabinet 5, and a high-efficiency integration device 7 is arranged on the upper end of the machine body 1.
[0031] Specifically, when the S-OBM special film glass material laminating activity is carried out, the glass material used by the S-OBM special film glass material is placed on the upper end of the sliding plate 4, the sliding plate 4 is connected with the cylinder at the bottom, and the glass material is moved to the lower end of the vacuum box 6 along the upper end of the guide rail 3, so that the glass material is conveniently moved to the lower end of the vacuum box 6, and under the control of the vacuum control cabinet 5, the vacuum box 6 is lowered and covers the upper end of the sliding plate 4 to cover the placed glass material, so that the glass material is in a vacuum space, and under the heating effect of the vacuum box 6, the glass material in the vacuum space is laminated without air bubbles and wrinkles, and after the laminating is completed, the vacuum box 6 is opened, and at the same time, the sliding plate 4 is moved to the front side again through the transmission of the cylinder connected at the bottom to carry out the unloading activity of the S-OBM special film glass.
[0032] Please refer to Figures 2-3 The high-efficiency integration device 7 in the embodiment comprises a support plate 71 horizontally arranged on the upper end of the machine body 1 and used for supporting, a screw rod 72 horizontally and rotationally connected to the inner upper end of the support plate 71, outer threads in opposite states are formed in the left and right sides of the screw rod 72, a motor 73 is connected with the right side of the screw rod 72, side clamping assemblies 74 which can realize material side clamping integration are symmetrically arranged at the left and right sides of the rear end of the support plate 71, a pushing and integrating assembly 75 which can push and integrate materials from front to back is arranged at the left and right sides in the side clamping assembly 74, and a bending prevention assembly 76 which can be used for side clamping and assists in pressing the upper end of the material to avoid the bending phenomenon of the material is arranged on the upper end of the side clamping assembly 74.
[0033] The side clamping assembly 74, the pushing and integrating assembly 75 and the bending prevention assembly 76 are symmetrically arranged on the left and right sides of the rear side of the support plate 71, the clamping surfaces of the two side clamping assemblies 74 are opposite to the left and right sides of the sliding plate 4, the side clamping assembly 74, the pushing and integrating assembly 75 and the bending prevention assembly 76 can be driven at the same time to stably stack the materials and improve the quality of subsequent vacuum lamination.
[0034] Please refer to Figure 4The side clamping assembly 74 in the embodiment comprises a moving plate 741 embedded on the left and right sides of the rear end of the support plate 71 and threaded to the left and right sides of the screw rod 72, a movable plate 742 transversely inserted in the middle of the moving plate 741, a clamping plate 743 fastened to one side of the movable plate 742, a connecting strip 744 arranged on the other side of the movable plate 742, a roller 745 rotatably connected to the inside of the connecting strip 744, a connecting rope 746 connected between the roller 745 and the connecting strip 744, a spring box 747 built-in on both sides of the moving plate 741 and connected to both sides of the connecting rope 746, both ends of the connecting rope 746 are wound in the spring box 747, guide rods 748 are transversely inserted on both sides of the outer end of the clamping plate 743, and one side of the guide rod 748 is transversely inserted into the inside of the moving plate 741, thereby improving the lateral movement stability of the movable plate 742.
[0035] The movable plate 742 is movably inserted in the middle of the moving plate 741, and the connecting strip 744 and the roller 745 are arranged on one side of the inside of the moving plate 741, which ensures that the connecting strip 744 and the roller 745 cooperate to externally top the connecting rope 746, thereby realizing subsequent reset transmission cooperation; the spring boxes 747 are symmetrically arranged along the inside of the moving plate 741, and the inside of each spring box 747 is integrally provided with a clock spring, which ensures that the spring box 747 cooperates with the clock spring arranged inside to ensure that the connecting rope 746 is externally topped to realize the compression reset preparation of the clock spring.
[0036] Specifically, after the glass material is placed on the upper end of the sliding plate 4, the motor 73 arranged on the right side of the upper end of the support plate 71 is driven to drive the left output end of the motor 73 to connect with the screw rod 72, and the moving plate 741 threaded to the left and right sides of the screw rod 72 rotates with the screw rod 72, which will realize relative lateral movement, thereby driving the movable plate 742 connected in the middle to move, and the clamping plate 743 arranged on one side of the movable plate 742 moves to the left and right sides of the material, thereby assisting in realizing the lateral clamping and pushing of the material and realizing the alignment of the stacked materials.
[0037] Please refer to Figure 5 The pushing assembly 75 in the embodiment comprises a pushing plate 751 rotatably connected to the front and rear sides of the outer end of the moving plate 741 for front and rear side pushing of the material, a transmission groove 752 corresponding arranged in the inside of the pushing plate 751 for inclined transmission, an interlocking shaft 753 movably and vertically inserted in the inside of the transmission groove 752 for inclined transmission, a limiting block 754 arranged on the upper end of the interlocking shaft 753, a connecting groove 755 arranged on the lower end of the clamping plate 743 to provide a certain movement space, and a compression spring 756 connected to one side of the limiting block 754 to provide reset elastic support.
[0038] The push flat strip 751 is symmetrically arranged along the inner side of the moving plate 741, and the two sides of the push flat strip 751 are inserted into the connecting groove 755 inside the lower end of the clamping plate 743, which ensures that the push flat strip 751 cooperates with the connecting groove 755 to realize stable inclined push flat transmission; The push flat strip 751 is installed and arranged in the inclined direction, and the bottom surface of the push flat strip 751 is in the same plane as the top surface of the sliding plate 4, which ensures that the push flat strip 751 can realize stable push flat integration of the material placed on the upper end of the sliding plate 4; The limiting block 754 is slidably embedded in the clamping plate 743, and the limiting block 754 is limitedly connected to the inside of the clamping plate 743, which ensures that the limiting block 754 assists the push flat strip 751 in the stable inclined push flat process, and provides movement guidance support for subsequent reset.
[0039] Specifically, when the movable plate 742 inside the side clamping assembly 74 moves with the moving plate 741, the clamping plate 743 realizes the clamping and push integration of the side of the material, the moving plate 741 is driven by the screw rod 72 to move horizontally, so that the clamping plate 743 abutting the side of the material realizes the blocking of the movable plate 742, so that one end of the movable plate 742 will be ejected from the inside of the moving plate 741, and the connecting strip 744 connected to one end of the movable plate 742 will cooperate with the roller 745 inside to externally eject the connecting rope 746, so that the connecting rope 746 is pulled out from the inside of the two spring boxes 747, and in the process of pulling out the connecting rope 746, the compression of the clockwork spring inside the two spring boxes 747 will be realized, so that the elastic support for the subsequent reset of the spring box 747 can be provided;
[0040] When the movable plate 742 realizes external ejection, the connecting groove 755 inside the lower end of the clamping plate 743 will cooperate with the transmission effect of the connecting shaft 753 and the transmission groove 752 inside the push flat strip 751 to make the head end of the push flat strip 751 inclined through the connecting groove 755, so that the two sides of the push flat strip 751 can be ejected at the same time to move to the front and rear sides of the material, so that the front and rear sides of the material can be abutted and pushed flat, so that the material can be simultaneously pushed flat while being clamped and leveled on the side of the side clamping assembly 74, so that the glass materials of each layer placed on the upper end of the sliding plate 4 can be in a neat stacked state when preparing for vacuum lamination, ensuring the quality of vacuum lamination of the S-OBM special film glass;
[0041] Secondly, when the two side push flat strips 751 move horizontally with the moving plate 741 to perform the front and rear pushing flat activities, the butt joint shaft 753 inserted in the transmission groove 752 can be pushed by the push flat strip 751 to push the top abutting limiting block 754, so that the limiting block 754 can compress the one side abutting compression spring 756, so that the subsequent release of the front and rear abutting pushing flat state can be assisted by the compression spring 756 to reset the limiting block 754 and drive the butt joint shaft 753, and then the two side push flat strips 751 can be reset to the original position, and the head ends of the two side push flat strips 751 can be moved into the two side connecting grooves 755, so that the lateral clamping and pushing can be achieved, and the materials on the front and rear sides can be pushed flat at the same time.
[0042] Please refer to Figure 6 The anti-bending assembly 76 in the embodiment includes the abutting block 761 fixedly connected to the upper end of the moving plate 741, the pressing arm 762 rotatably connected to the inside of the abutting block 761 and horizontally opposite to the upper and lower ends of the movable plate 742, the insertion block 763 vertically fixedly connected to the lower end of one side of the pressing arm 762, the connecting shaft 764 longitudinally inserted into the inside of the lower end of the insertion block 763, the conversion groove 765 opened in the inside of the movable plate 742 and connected to the front and rear ends of the movable plate 742, the connecting frame 766 connected to the lower end of one side of the pressing arm 762 for use, the pressing wheel 767 rotatably connected to the front and rear sides of the lower end of the connecting frame 766 and used for pressing the top of the material to prevent bending, the spring 768 connected to the upper end of the connecting frame 766 and arranged in the inside of the lower end of one side of the pressing arm 762, and the receiving groove 769 opened in the middle part of the clamping plate 743 for conveniently collecting the pressing wheel 767.
[0043] The conversion groove 765 is symmetrically opened along the two sides of the middle inner wall of the movable plate 742, and the two conversion grooves 765 are in a downward inclined adjustment state, so that the conversion groove 765 can incline the pressing arm 762 to press downward, so that the pressing wheel 767 can abut and press the top of the material. The pressing wheel 767 is arranged in the receiving groove 769, and the upper end of the pressing wheel 767 is connected to the connecting frame 766 and the lower end of one side of the pressing arm 762, so that the pressing wheel 767 can be movably connected to the connecting frame 766 and the lower end of one side of the pressing arm 762. The receiving groove 769 is in a rectangular groove shape, and the bottom of the inlet end of the receiving groove 769 is provided with a smooth chamfer, so that the pressing wheel 767 can be conveniently moved outward to press or collected.
[0044] Specifically, when the movable plate 741 moves laterally to perform the lateral clamping and pushing movements of the movable plate 742 and the clamping plate 743, the upper rotating connecting pressure arm 762 can be driven simultaneously. This causes the pressure roller 767 connected to the lower end of one side of the pressure arm 762 to automatically move out of the receiving groove 769 in the middle of the clamping plate 743 during the side clamping movement. In this way, the pressure roller 767 can come into contact with the upper end of the material. At the same time, with the help of the spring 768 provided at the lower end of one side of the pressure arm 762, the connecting frame 766 can have a certain degree of flexibility. This ensures that the pressure roller 767 can automatically adjust and press when pressing different materials together.
[0045] Simultaneously, as the movable plate 741 moves laterally, the insertion block 763 installed at the lower end of one side of the pressure arm 762 connects with the connecting shaft 764 inserted at the lower end of the insertion block 763 to the conversion groove 765 opened on both sides inside the movable plate 742. This allows the pressure arm 762 to simultaneously perform a downward pressing action when the pressure roller 767 moves out. In this way, the upper end of the pressure roller 767 can be stably pressed and pressed against the top of the material. Furthermore, when the two clamping plates 743 clamp the material at the same time, the pressure rollers 767 that move out and roll against the upper end of the material on both sides will help to flatten the material. This ensures that the middle of the material is not easily bent when the left and right sides are subjected to force, and prevents the material from bending and breaking during the side clamping and pushing movement.
[0046] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An S-OBM special film glass material laminating device, comprising a machine body (1), a control key (2) is installed in the middle of the upper end of the machine body (1), guide rails (3) are arranged on both sides of the upper end of the machine body (1), and sliding plates (4) are butted on the upper ends of the guide rails (3) on both sides, a gas cylinder is connected to the lower end of the sliding plate (4), a vacuum control cabinet (5) is arranged on the rear side of the upper end of the machine body (1), and a vacuum box (6) is arranged in the inside of the lower end of the vacuum control cabinet (5); characterized in that It also includes an efficient integration device (7) arranged on the upper end of the machine body (1), the efficient integration device (7) includes a support plate (71) arranged on the upper end of the machine body (1), a screw rod (72) rotatably connected in the inside of the support plate (71), a motor (73) connected to the right side of the screw rod (72), side clamping assemblies (74) arranged on both sides of the rear end of the support plate (71), push straightening assemblies (75) arranged on both sides in the inside of the side clamping assemblies (74), and anti-bending assemblies (76) arranged on the upper end of the side clamping assemblies (74), the side clamping assemblies (74) include moving plates (741) arranged on both sides of the rear end of the support plate (71) and connected to the outside of the screw rod (72), movable plates (742) inserted in the middle of the moving plates (741), clamping plates (743) arranged on one side of the movable plates (742), connecting strips (744) arranged on the other side of the movable plates (742), rollers (745) rotatably connected in the inside of the connecting strips (744), connecting ropes (746) connected to the outside of the rollers (745), spring boxes (747) arranged on both sides in the inside of the moving plates (741) and connected to one side of the connecting ropes (746), and guide rods (748) inserted on both sides of the outside of the clamping plates (743), the push straightening assemblies (75) include push flat strips (751) rotatably connected on both sides of the outside of the moving plates (741), transmission grooves (752) opened in the inside of the push flat strips (751), abutting shafts (753) inserted in the inside of the transmission grooves (752), limiting blocks (754) arranged on the upper end of the abutting shafts (753), connecting grooves (755) opened in the lower end of the clamping plates (743), and compression springs (756) connected to one side of the limiting blocks (754), the anti-bending assemblies (76) include abutting blocks (761) fastened to the upper end of the moving plates (741), pressing arms (762) rotatably connected in the inside of the abutting blocks (761), insertion blocks (763) fastened to the lower end of the pressing arms (762), connecting shafts (764) inserted in the inside of the insertion blocks (763), conversion grooves (765) opened in the inside of the movable plates (742), connecting frames (766) connected to the lower end of one side of the pressing arms (762), pressing wheels (767) rotatably connected to the lower end of the connecting frames (766), springs (768) connected to the upper end of the connecting frames (766), and receiving grooves (769) opened in the middle of the clamping plates (743).
2. The S-OBM specialty film glass material laminating device according to claim 1, wherein: The side clamping assemblies (74), the push straightening assemblies (75), and the anti-bending assemblies (76) are arranged symmetrically on both sides along the rear side of the support plate (71), and the clamping surfaces of the side clamping assemblies (74) on both sides are opposite to the left and right sides of the sliding plate (4).
3. The S-OBM specialty film glass material laminating device according to claim 1, wherein: The movable plate (742) is movably inserted into the middle part of the moving plate (741), and the movable plate (742) is arranged on the inner side of the moving plate (741) and is provided with a connecting strip (744) and a roller (745).
4. The S-OBM specialty film glass material laminating device according to claim 1, wherein: The spring box (747) is symmetrically arranged along the front and back of the inside of the moving plate (741), and the inside of the spring box (747) is integrally provided with a clock spring on both sides.
5. The S-OBM specialty film glass material laminating device according to claim 1, wherein: The push flat strip (751) is symmetrically arranged along the front and back of the inside of the moving plate (741), and the push flat strip (751) is inserted into the connecting groove (755) provided in the lower end of the clamping plate (743) on both sides away from the moving plate (741).
6. The S-OBM specialty film glass material laminating device according to claim 1, wherein: The push flat strip (751) is arranged in an inclined direction, and the bottom surface of the push flat strip (751) is in the same plane as the top surface of the sliding plate (4).
7. The S-OBM specialty film glass material laminating device according to claim 1, wherein: The limiting block (754) is slidably embedded in the inside of the clamping plate (743), and the limiting block (754) is limitingly connected to the inside of the clamping plate (743) on both sides.
8. The S-OBM specialty film glass material laminating device according to claim 1, wherein: The conversion groove (765) is symmetrically provided on both sides of the inner wall of the middle part of the movable plate (742), and the conversion groove (765) is in a downward inclined adjustment state on both sides.
9. The S-OBM specialty film glass material laminating device according to claim 1, wherein: The pressing wheel (767) is arranged in the receiving groove (769), and the upper end of the pressing wheel (767) is connected to the connecting frame (766) and the lower end of the pressing arm (762) on one side.
10. The S-OBM specialty film glass material laminating device according to claim 1, wherein: The receiving groove (769) is entirely provided in a rectangular groove shape, and the bottom of the inlet end of the receiving groove (769) is provided in a smooth chamfer shape.
Citation Information
Patent Citations
Composite insulation board production equipment
CN117141087A
Production process of composite board for tray
CN118046651A