Glass lamination positioning device
By designing the glass slab positioning device with the top disk, the second electro-hydraulic push rod and the drive structure, the problem of inconvenience in use of the existing device is solved, and a convenient glue sealing of the glass and isolation frame is achieved in one-week, ensuring efficient sealing effect.
Patent Information
- Application Number
- CN202421569080.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-05-20
- Estimated Expiration
- 2034-07-04
AI Technical Summary
The existing glass slab positioning device is not convenient enough to affect the glue sealing effect.
A glass foil positioning device including a top disk, a second electro-hydraulic push rod and a driving structure is designed. The second electro-hydraulic push rod drives the ceiling disk to rise and rotate, achieving a weekly glue seal of the glass and isolation frame without the need for personnel to move around.
It improves the convenience of the glass pellet positioning device and the effect of glue sealing, ensuring stable lifting and support of the glass and isolation frame.
Smart Images

Figure CN222886714U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass laminating, and more specifically, to a glass laminating positioning device. Background Art
[0002] Glass laminating is a main process in the processing of insulating glass. It mainly refers to the operation of laminating two groups of glass and an isolation frame together. In order to facilitate the alignment of the two groups of glass and the isolation frame for laminating, a positioning device is required at this time.
[0003] After the existing positioning device positions two groups of glass and an isolation frame, it is necessary for personnel to seal with glue around it for one week. It is not convenient to use, and it is very easy to affect the glue-sealing effect. In view of this, we propose a glass laminating positioning device. Content of the Utility Model
[0004] The purpose of the utility model is to overcome the deficiencies of the prior art, adapt to the actual needs, and provide a glass laminating positioning device to solve the technical problem that the current glass laminating positioning device is not convenient to use.
[0005] To solve the above technical problems, the utility model provides the following technical solutions: A glass laminating positioning device, including a base, a positioning platform is arranged on the top of the base through legs, symmetric first rectangular notch openings are provided diagonally at the top of the positioning platform, a first electric hydraulic push rod is arranged inside the first rectangular notch opening, an L-shaped positioning frame is arranged at the piston end of the first electric hydraulic push rod, and the L-shaped positioning frame is located on the top of the positioning platform;
[0006] A circular notch opening is provided in the center of the top of the positioning platform, a top plate is arranged in the circular notch opening, a plurality of groups of second electric hydraulic push rods are arranged equidistantly around the top plate at the bottom of the positioning platform, and a driving structure is arranged in the center of the top of the base;
[0007] Four groups of equidistant second rectangular notch openings are provided on the top of the top plate, a circular inner cavity is provided on one side of the second rectangular notch opening, an extension block is movably arranged inside the second rectangular notch opening, and the bottom of the extension block is an inclined surface, and a spring is arranged inside the circular inner cavity.
[0008] Through structures such as the designed top plate, the second electro-hydraulic push rod, and the driving structure, when the glass and the isolation frame are positioned on the positioning platform, the top plate can be directly driven by the second electro-hydraulic push rod to rise, thereby jacking up the glass and the isolation frame. Then, the driving structure drives the top plate to rotate, and then the top plate drives the positioned glass and isolation frame to rotate. Then, the personnel can directly stand still in place. During the rotation of the glass, caulking and sealing are carried out around the glass and the isolation frame. There is no need for personnel to move around for caulking, which is more convenient to use and can ensure the caulking and sealing effect. When the top plate rises, at this time, under the push of the spring, the extension block will be horizontally pushed outwards, so as to cooperate with the top plate to support the glass and the isolation frame together, increasing the supporting force area for the glass and the isolation frame, and further ensuring the stability of the top plate in jacking up and supporting the glass and the isolation frame.
[0009] Preferably, a circular ring body is rotatably arranged at the bottom of the top plate, and the piston end of the second electro-hydraulic push rod passes through the positioning platform and is connected to the circular ring body.
[0010] Preferably, the driving structure includes a motor and a conduction structure. The motor is arranged on the base, and the conduction structure is arranged on the rotating shaft at the output end of the motor.
[0011] Preferably, the conduction structure includes a secondary conduction rod and a main conduction pipe. The secondary conduction rod is inserted into the main conduction pipe. Transmission teeth are provided on the surface of the secondary conduction rod, and transmission teeth are provided on the inner wall of the main conduction pipe. The transmission teeth on the secondary conduction rod and the main conduction pipe are meshed. A round hole is opened at the center of the bottom of the circular notch. The top end of the secondary conduction rod passes through the round hole and is symmetrically connected to the center of the bottom of the top plate.
[0012] Preferably, symmetrical limiting strips are arranged on both sides inside the second rectangular notch. Matching notches corresponding to the limiting strips are opened on both sides of the extension block, and the limiting strips are located in the matching notches.
[0013] Preferably, the side of the second rectangular notch facing away from the spring is an opening, and a limiting protrusion is arranged at the opening of the bottom inside the second rectangular notch.
[0014] Compared with the prior art, the beneficial effects of the present utility model are:
[0015] 1. The utility model is provided with structures such as a top plate, a second electro-hydraulic push rod, and a driving structure. Therefore, after the glass and the isolation frame are positioned on the positioning platform, the second electro-hydraulic push rod can directly drive the top plate to rise, thereby jacking up the glass and the isolation frame. Then, the driving structure drives the top plate to rotate, and then the top plate drives the positioned glass and isolation frame to rotate. Then, the personnel can directly stand still in place, and during the rotation of the glass, caulking and sealing are performed on the entire circumference of the glass and the isolation frame. There is no need for the personnel to move around for caulking, which is more convenient to use and can ensure the caulking and sealing effect, solving the technical problem that the current glass laminating positioning device is not convenient enough to use. Therefore, the utility model has the advantage of being convenient to use.
[0016] 2. The utility model also sets structures such as a second rectangular notch, an extension block, and a spring on the top plate. Therefore, when the top plate rises, at this time, under the push of the spring, the extension block will be horizontally pushed outwards, so as to cooperate with the top plate to support the glass and the isolation frame together, increasing the supporting stress area of the glass and the isolation frame, and further ensuring the stability of the top plate to jack up and support the glass and the isolation frame. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is the overall structural schematic diagram of the utility model;
[0018] Figure 2 is the sectional structural schematic diagram of the utility model;
[0019] Figure 3 is the sectional structural schematic diagram of the top plate of the utility model;
[0020] Figure 4 is the schematic diagram of the driving structure of the utility model;
[0021] Figure 5 is a schematic diagram of a use state of the utility model.
[0022] Explanation of the reference numerals in the drawings:
[0023] 1. Base; 2. Leg; 3. Positioning platform; 301. First rectangular notch; 302. First electro-hydraulic push rod; 303. L-shaped positioning bracket; 304. Circular notch; 305. Round hole; 4. Top plate; 401. Second rectangular notch; 402. Limiting strip; 403. Circular inner cavity; 404. Limiting protrusion; 405. Ring body; 5. Second electro-hydraulic push rod; 6. Driving structure; 7. Motor; 8. Conduction structure; 801. Secondary conduction rod; 802. Main conduction pipe; 9. Extension block; 901. Matching notch; 10. Spring. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0024] As Figures 1 to 5As shown in the figure, a glass laminating positioning device involved in the utility model includes a base 1. A positioning platform 3 is arranged on the top of the base 1 through legs 2. Symmetric first rectangular notches 301 are opened diagonally at the top of the positioning platform 3. A first electro-hydraulic push rod 302 is arranged inside the first rectangular notch 301. An L-shaped positioning frame 303 is arranged at the piston end of the first electro-hydraulic push rod 302. The L-shaped positioning frame 303 is located on the top of the positioning platform 3. During the glass laminating operation, two groups of glass and an isolation frame can be directly placed on the positioning platform 3 in sequence, and then the L-shaped positioning frame 303 is driven to displace synchronously by the first electro-hydraulic push rod 302. The L-shaped positioning frame 303 can directly position and align the two groups of glass and the isolation frame.
[0025] In an embodiment of the utility model, a circular notch 304 is opened at the center of the top of the positioning platform 3. A top plate 4 is arranged in the circular notch 304. A plurality of groups of second electro-hydraulic push rods 5 are arranged equidistantly around the circumference of the top plate 4 at the bottom of the positioning platform 3. A driving structure 6 is arranged at the center of the top of the base 1. After the glass and the isolation frame are positioned on the positioning platform 3, the top plate 4 can be directly driven to rise by the second electro-hydraulic push rod 5, so as to jack up the glass and the isolation frame, making it higher than the L-shaped positioning frame 303. Then, the driving structure 6 drives the top plate 4 to rotate, and then the top plate 4 drives the positioned glass and the isolation frame to rotate. Then, the personnel can directly stand still in place. During the rotation of the glass, caulking and sealing are carried out around the glass and the isolation frame. There is no need for the personnel to move around for caulking, which is more convenient to use and can ensure the caulking and sealing effect.
[0026] Specifically, a torus 405 is rotatably arranged at the bottom of the top plate 4. The piston end of the second electro-hydraulic push rod 5 penetrates through the positioning platform 3 and is connected to the torus 405. With the cooperation of the torus 405, the rotation of the top plate 4 will not affect the second electro-hydraulic push rod 5.
[0027] Furthermore, the driving structure 6 includes a motor 7 and a transmission structure 8. The motor 7 is arranged on the base 1, and the transmission structure 8 is arranged on the rotating shaft at the output end of the motor 7. The transmission structure 8 includes a secondary transmission rod 801 and a main transmission pipe 802. The secondary transmission rod 801 is inserted into the main transmission pipe 802. Transmission teeth are arranged on the surface of the secondary transmission rod 801, and transmission teeth are arranged on the inner wall of the main transmission pipe 802. The transmission teeth on the secondary transmission rod 801 and the main transmission pipe 802 are meshed. A round hole 305 is opened at the center of the inner bottom of the circular notch 304. The top end of the secondary transmission rod 801 penetrates through the round hole 305 and is symmetrically connected to the center of the bottom of the top plate 4. As the top plate 4 rises, the secondary transmission rod 801 rises in the main transmission pipe 802. When the top plate 4 rises to a suitable position, the motor 7 is controlled to drive the main transmission pipe 802 to rotate. The main transmission pipe 802 drives the secondary transmission rod 801 to rotate through the transmission teeth, and then the secondary transmission rod 801 drives the top plate 4 to rotate.
[0028] In the embodiment of the utility model, four groups of equidistant second rectangular notches 401 are provided on the top of the top plate 4, a circular inner cavity 403 is provided on one side of the second rectangular notch 401, a stretching block 9 is movably arranged inside the second rectangular notch 401, and the bottom of the stretching block 9 is an inclined surface, and a spring 10 is arranged inside the circular inner cavity 403. When the top plate 4 rises and leaves the circular inner cavity 403, the stretching block 9 will be pushed outward horizontally under the push of the spring 10, so as to support the glass and the isolation frame together with the top plate 4, increase the supporting force area of the glass and the isolation frame, so as to further ensure the stability of the top plate 4 supporting the glass and the isolation frame. When the top plate 4 descends and retracts to the circular inner cavity 403, under the obstruction of the periphery of the circular inner cavity 403, and because the bottom of the stretching block 9 is an inclined surface, the stretching block 9 will retract to the inside of the second rectangular notch 401, so as to cooperate with the top plate 4 to be completely stored in the circular inner cavity 403.
[0029] Specifically, symmetrical limiting strips 402 are arranged on both sides of the second rectangular notch 401, and matching notches 901 corresponding to the limiting strips 402 are opened on both sides of the stretching block 9. The limiting strips 402 are located in the matching notches 901, and the limiting strips 402 cooperate with the matching notches 901, which mainly play the role of limiting the stretching block 9 and ensuring the horizontal displacement of the stretching block 9.
[0030] Furthermore, the second rectangular slot 401 is open on the side facing away from the spring 10, and a limiting protrusion 404 is arranged at the opening of the bottom of the second rectangular slot 401. The limiting protrusion 404 is used to limit the stretching block 9. When the stretching block 9 is horizontally extended to a certain extent, the limiting protrusion 404 blocks the stretching block 9 to prevent the stretching block 9 from escaping from the second rectangular slot 401.
[0031] Working principle: This embodiment provides a glass assembly positioning device. During the glass assembly operation, first, two sets of glass and the isolation frame can be directly placed on the positioning platform 3 in sequence, and then the first electric hydraulic push rod 302 synchronously drives the L-shaped positioning frame 303 to move, and the L-shaped positioning frame 303 can directly position and align the two sets of glass and the isolation frame;
[0032] Secondly, after the glass and the isolation frame are positioned on the positioning platform 3, the second electric hydraulic push rod 5 can directly drive the top plate 4 to rise, thereby lifting the glass and the isolation frame upward to make them higher than the L-shaped positioning frame 303, and then the driving structure 6 drives the top plate 4 to rotate, and then the top plate 4 drives the positioned glass and the isolation frame to rotate, and then the personnel can directly stand still in the same place, and the glass and the isolation frame can be sealed with glue all around during the glass rotation process, without the need for personnel to move around to apply glue, which is more convenient to use and can ensure the effect of gluing and sealing;
[0033] Finally, when the top plate 4 rises out of the circular inner cavity 403, at this time, under the push of the spring 10, the extension block 9 will be pushed horizontally outwards, so as to cooperate with the top plate 4 to support the glass and the isolation frame together, increasing the supporting force area for the glass and the isolation frame, and thus further ensuring the stability of the top plate 4 in jacking and supporting the glass and the isolation frame. When the top plate 4 descends and retracts into the circular inner cavity 403, blocked by the periphery of the circular inner cavity 403, and because the bottom of the extension block 9 is an inclined surface, the extension block 9 will retract into the second rectangular notch 401, so as to cooperate with the top plate 4 to be completely received into the circular inner cavity 403.
[0034] The embodiments disclosed in the present utility model are preferred embodiments, but not limited thereto. Those of ordinary skill in the art can easily understand the spirit of the present utility model based on the above embodiments and make different extensions and changes. However, as long as they do not depart from the spirit of the present utility model, they are within the protection scope of the present utility model.
Claims
1. A glass sheet positioning device, characterized in that: The invention comprises a base (1), a positioning platform (3) is arranged on the top of the base (1) via legs (2), a symmetrical first rectangular notch (301) is opened diagonally on the top of the positioning platform (3), a first electric hydraulic push rod (302) is arranged inside the first rectangular notch (301), an L-shaped positioning frame (303) is arranged at the piston end of the first electric hydraulic push rod (302), and the L-shaped positioning frame (303) is located on the top of the positioning platform (3); A circular notch (304) is provided in the center of the top of the positioning platform (3), a top plate (4) is arranged in the circular notch (304), a plurality of groups of second electric hydraulic push rods (5) are arranged at equal intervals around the top plate (4) at the bottom of the positioning platform (3), and a driving structure (6) is arranged in the center of the top of the base (1); The top of the top plate (4) is provided with four groups of equidistant second rectangular slots (401), one side of the second rectangular slot (401) is provided with a circular inner cavity (403), an extension block (9) is movably arranged inside the second rectangular slot (401), and the bottom of the extension block (9) is an inclined surface, and a spring (10) is arranged inside the circular inner cavity (403).
2. A glass sheet positioning device according to claim 1, characterized in that: A circular ring (405) is rotatably arranged at the bottom of the top plate (4), and the piston end of the second electric hydraulic push rod (5) passes through the positioning platform (3) and is connected to the circular ring (405).
3. A glass sheet positioning device according to claim 1, characterized in that: The driving structure (6) comprises a motor (7) and a conducting structure (8); the motor (7) is arranged on the base (1); and the conducting structure (8) is arranged on a rotating shaft at an output end of the motor (7).
4. A glass sheet positioning device according to claim 3, characterized in that: The conduction structure (8) comprises a secondary conduction rod (801) and a main conduction tube (802). The secondary conduction rod (801) is inserted into the main conduction tube (802). The surface of the secondary conduction rod (801) is provided with transmission teeth. The inner wall of the main conduction tube (802) is provided with transmission teeth. The secondary conduction rod (801) meshes with the transmission teeth on the main conduction tube (802). A circular hole (305) is provided at the center of the bottom of the circular notch (304). The secondary conduction rod (801) passes through the top end of the circular hole (305) and is symmetrically connected to the center of the bottom of the top plate (4).
5. The glass sheet positioning device according to claim 1, characterized in that: Symmetrical limiting strips (402) are arranged on both sides of the second rectangular notch (401), matching notches (901) corresponding to the limiting strips (402) are opened on both sides of the stretching block (9), and the limiting strips (402) are located in the matching notches (901).
6. The glass sheet positioning device according to claim 1, characterized in that: The side of the second rectangular slot (401) facing away from the spring (10) is open, and a limiting protrusion (404) is arranged at the opening of the bottom of the second rectangular slot (401).