Lifting equipment for glass lamination
By designing the lifting equipment for glass bonding, and using the drive parts and lifting rods to lift the conveyor belt platform base, the wear problem during the glass bonding process is solved, ensuring that the glass does not come into contact with the conveyor belt, and improving the stability of the glass and the service life of the conveyor belt.
Patent Information
- Application Number
- CN202421550306.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-02
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-07-02
AI Technical Summary
During the glass bonding process, friction between the lower end position of the glass and the belt surface of the conveyor belt leads to wear, affecting the stability of the glass edge and the service life of the conveyor belt.
A lifting device for glass bonding is designed. Through the cooperation of the driving member and the lifting rod, the lifting of the conveyor platform base is realized, so as to avoid direct contact between the glass and the conveyor belt surface, and to use an adsorption fixing plate to perform stable adsorption of glass.
It effectively avoids wear on the edge of the glass, ensures no wear between the glass and the conveyor belt, and improves the butt stability of the glass and aluminum frame and the service life of the conveyor belt.
Smart Images

Figure CN223175242U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of glass processing equipment, in particular to a lifting device for glass lamination. Background Art
[0002] During the processing and production of double-layer glass, it is necessary to convey the glass to the position of the adsorption fixing plate through a conveying device. The suction pump connected to the adsorption fixing plate is communicated with the adsorption holes of the adsorption fixing plate. When the suction pump performs a suction operation, the glass close to the adsorption fixing plate can be suctioned and fixed to the adsorption fixing plate; then the aluminum frame is installed, and the two pieces of glass are brought close to each other for lamination, so as to produce double-layer glass. However, during the operation of bringing the two pieces of glass close to each other for lamination, slight friction will be generated between the lower end position of the glass and the belt surface of the conveyor belt. This frictional effect will damage the belt surface of the conveyor belt, and will also cause wear to the edge position of the glass, making it inconvenient to dock between the glass and the aluminum frame when docking with the aluminum frame later; at the same time, because the edge position of the glass is worn, the lamination position between the glass and the aluminum frame will be unstable, and the glass will be damaged after long-term use, which is not conducive to the long-term use of the glass.
[0003] Based on the above problems, it is necessary to set up a lifting device for glass lamination, which can stably lift the glass by a certain amount after the glass is conveyed to the position of the adsorption fixing plate, so that the glass is adsorbed and fixed by the adsorption fixing plate in the lifted state, leaving a certain space at the docking position between the conveying device and the adsorption fixing plate, thereby avoiding the problem of wear at the edge position of the glass. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a lifting device for glass lamination, which can ensure that after the conveyor belt conveys the glass to a specified position, it can lift the position of the glass relative to the adsorption fixing plate, so that the glass to be laminated and brought close will not generate wear problems with the belt surface of the conveyor belt, thereby avoiding wear problems on the bottom surface of the double-layer glass.
[0005] In order to achieve the above purpose, the utility model is realized through the following technical solutions:
[0006] A lifting device for glass laminating, comprising a driving member and a lifting rod. Both ends of the lifting rod are fixedly connected with connecting bases, and the outer ends of the lifting rod are limitedly arranged on the rotating base. The driving member is hingedly connected to the active rotating end of the connecting base, the driven rotating end of the connecting base is hingedly connected to the conveyor belt platform base, and the driving member is hingedly and rotationally connected. When the output shaft of the driving member extends, it pushes the active rotating end of the connecting base, causing the connecting base to drive the lifting rod to rotate, so that the driven rotating end of the connecting base drives the conveyor belt platform base to lift.
[0007] The driving member is a telescopic cylinder, the telescopic cylinder is fixedly connected with a cylinder base, and the rear end of the telescopic cylinder is hingedly connected to the cylinder base.
[0008] Telescopic cylinders are arranged at both ends of the lifting rod, and the same cylinder control system is connected between the two telescopic cylinders.
[0009] An articulated connecting rod is arranged on the non-lifting side of the conveyor belt platform base. One end of the articulated connecting rod is hinged to the conveyor belt platform base, and the other end of the articulated connecting rod is hingedly arranged on a fixed base below the conveyor belt platform.
[0010] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0011] When this device is set up, by setting the driving member and the lifting rod, the lifting operation of the conveyor belt platform base can be ensured. When setting up, first of all, it does not occupy the space for the normal glass conveying work of the conveyor belt platform, thus avoiding the influence on the glass conveying task. At the same time, in terms of setting, through the cooperative setting of the driving member, the connecting base and the rotating base, the telescopic task of the output shaft of the driving member can be easily realized, so as to control the normal lifting and lowering of the conveyor belt platform. Furthermore, when two pieces of glass are butted, the conveyor belt platform will not cause wear to the lower end position of the glass. Description of the Drawings
[0012] Attached Figure 1 is a schematic structural diagram of the present utility model on the conveyor belt platform base.
[0013] Attached Figure 2 is a schematic diagram of the partial structure of the present utility model.
[0014] Attached Figure 3 is a schematic structural diagram of the present utility model on the conveyor belt platform base.
[0015] Attached Figure 4 is a schematic diagram of the partial structure of the present utility model.
[0016] Reference numerals shown in the drawings:
[0017] 1. Driving member; 2. Lifting rod; 3. Connecting base; 4. Rotating base; 5. Active rotating end; 6. Driven rotating end; 7. Telescopic cylinder; 8. Cylinder base; 9. Hinge connecting rod; 10. Conveyor belt platform base. Detailed implementation mode
[0018] The following further elaborates the present utility model in conjunction with specific embodiments. It should be understood that these embodiments are only used to illustrate the present utility model and not to limit the scope of the present utility model. In addition, it should be understood that after reading the content taught by the present utility model, those skilled in the art can make various changes or modifications to the present utility model, and these equivalent forms also fall within the scope defined by this application.
[0019] Since the suction holes formed in the suction fixing plate are connected to a suction pump, when the suction pump performs a suction operation, the glass can be adsorbed and fixed to the suction fixing plate through the suction force; subsequently, another suction fixing plate adsorbed with glass is conveyed in position through a moving device, so that the two pieces of glass are mutually attached, thereby achieving the purpose of butt joint and attachment between the two pieces of glass. However, during the process of moving the suction fixing plate to attach the two pieces of glass, wear will occur between the bottom position of the moving glass and the belt surface of the conveyor belt, which will have an adverse impact on the processing and production operation of the double-layer glass.
[0020] A lifting device for glass lamination, including a driving member 1 and a lifting rod 2. Both ends of the lifting rod 2 are fixedly connected with connecting bases 3, and the outer ends of the lifting rod 2 are limitedly arranged on the rotating base 4. The driving member 1 is hingedly connected to the active rotating end 5 of the connecting base 3, and the driven rotating end 6 of the connecting base 3 is hingedly connected to the conveyor belt platform base, and the driving member 1 is hingedly rotatably connected. When the output shaft of the driving member 1 extends out, it pushes the active rotating end 5 of the connecting base 3, causing the connecting base 3 to drive the lifting rod 2 to rotate, so that the driven rotating end 6 of the connecting base 3 drives the conveyor belt platform base to lift. When setting the above structure, first, it is necessary to ensure that when the output shaft of the driving member 1 contracts, a force is applied to the active rotating end 5 of the connecting base 3. Therefore, the output shaft of the driving member 1 is hingedly connected to the active rotating end 5 of the docking base, so that when the output shaft of the driving member 1 performs a contraction operation, the force applied to the active rotating end 5 can drive the lifting rod 2 to rotate. Since the two ends of the lifting rod 2 are limitedly connected to the rotating base 4, the lifting rod 2 rotates, transmitting the force to the driven rotating end 6 of the connecting base 3. And because the driven rotating section is also hinged to the conveyor belt platform base, the driven rotating end 6 drives the conveyor belt platform base to move in position following the rotation direction of the driven rotating end 6, thereby causing one side of the conveyor belt platform base to lift. It should be noted here that when lifting the glass, it only needs to lift the glass by a certain distance, and it is not necessary for the conveyor belt platform to support the glass in real time. Therefore, the structure set here only needs to lift one side of the conveyor belt platform base, and after lifting the glass, the glass is adsorbed and fixed by the adsorption fixing plate, which can avoid the problem of wear between the glass to be laminated and the conveyor belt surface in the subsequent process.
[0021] After setting the above structure, in order to ensure the stable lifting operation of the conveyor belt platform base, an articulated link 9 is provided on the non-lifting side of the conveyor belt platform base. One end of the articulated link 9 is hinged to the conveyor belt platform base, and the other end of the articulated link 9 is hingedly arranged on the fixed base below the conveyor belt platform; as shown in the attached drawings of the specification Figure 4 As shown, through the setting of the articulated link 9, the position of one side of the conveyor belt platform base can be restricted, so that when the other side of the conveyor belt platform base moves in position following the driven rotating end 6, the position of the conveyor belt platform base can be restricted by the articulated link 9, thereby achieving the purpose of stable lifting of one side of the conveyor belt platform base.
[0022] The driving member 1 is a telescopic cylinder 7. The telescopic cylinder 7 is fixedly connected with a cylinder base 8, and the rear end of the telescopic cylinder 7 is hinged to the cylinder base 8; to ensure that when the output shaft of the telescopic cylinder 7 drives the active rotating end 5 to move in position, it has a larger moving range, so that the conveyor belt platform base can be effectively lifted.
[0023] Telescopic cylinders 7 are arranged at both ends of the lifting rod 2, and the same cylinder control system is connected between the two telescopic cylinders 7, so that the output shafts of the two telescopic cylinders 7 can move synchronously, so as to ensure that both sides of the conveyor belt platform base can be lifted and lowered synchronously.
[0024] Therefore, a lifting device for glass laminating can ensure that after the conveyor belt conveys the glass to the specified position, it can lift the position of the glass relative to the adsorption fixing plate, so that the glass to be laminated and approached will not wear against the belt surface of the conveyor belt, thereby avoiding wear problems on the bottom surface of the double-layer glass.
Claims
1. A lifting device for glass lamination, characterized in that: It includes a driving member (1) and a lifting rod (2). Connecting bases (3) are fixedly connected to both ends of the lifting rod (2), and the outer ends of the lifting rod (2) are limitedly arranged on a rotating base (4). The driving member (1) is hingedly connected to the active rotating end (5) of the connecting base (3), the driven rotating end (6) of the connecting base (3) is hingedly connected to a conveyor belt platform base, and the driving member (1) is hingedly and rotationally connected. When the output shaft of the driving member (1) extends, it pushes the active rotating end (5) of the connecting base (3), causing the connecting base (3) to drive the lifting rod (2) to rotate, so that the driven rotating end (6) of the connecting base (3) drives the conveyor belt platform base to lift.
2. The lifting device for glass lamination according to claim 1, wherein: The driving member (1) is a telescopic cylinder (7). The telescopic cylinder (7) is fixedly connected to a cylinder base (8), and the rear end of the telescopic cylinder (7) is hingedly connected to the cylinder base (8).
3. The lifting device for glass lamination according to claim 2, wherein: Telescopic cylinders (7) are arranged at both ends of the lifting rod (2), and the same cylinder control system is connected between the two telescopic cylinders (7).
4. The lifting device for glass lamination according to claim 1 or 3, characterized in that: A hinged connecting rod (9) is arranged on the non-lifting side of the conveyor belt platform base. One end of the hinged connecting rod (9) is hinged to the conveyor belt platform base, and the other end of the hinged connecting rod (9) is hingedly arranged on a fixed base below the conveyor belt platform.