Alignment mechanism for ultrathin laminated glass production

By designing the alignment and cleaning structures, the problem of only being able to align one side in existing technologies has been solved, enabling multi-sided alignment and surface cleaning of laminated glass, thus improving production efficiency and safety.

CN223575630UActive Publication Date: 2025-11-21QINGDAO JUNDUN GLASS CO LTD
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Patent Information

Application Number
CN202520001646.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-02
Publication Date
2025-11-21
Estimated Expiration
2035-01-02

AI Technical Summary

Technical Problem

The existing alignment mechanisms used in the production of ultra-thin laminated glass can only align one side of the laminated glass, either the long side or the short side, which is inconvenient to use.

Method used

An alignment mechanism for the production of ultra-thin laminated glass, including an alignment structure and a cleaning structure, was designed. The mechanism achieves multi-sided alignment of the laminated glass through the cooperation of the first and second baffles and the threaded rod, and achieves cleaning of the laminated glass surface through the cooperation of the air guide and the handle.

Benefits of technology

This technology enables multi-sided alignment of laminated glass, improving the alignment effect and reducing the labor intensity of workers. At the same time, the cleaning structure prevents dust from damaging the glass and facilitates cleaning in different locations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of laminated glass production, and particularly relates to an alignment mechanism for ultrathin laminated glass production, which comprises an operation table and supporting legs fixedly connected to four corners of the bottom surface of the operation table, and further comprises an alignment structure arranged on the operation table, and the alignment structure comprises a first baffle plate; through cooperative use of a first baffle and a second baffle, a first threaded rod is rotated to enable a first moving plate to drive the first baffle to move towards the laminated glass, so that the laminated glass is moved into an L-shaped positioning plate by the first baffle, and one side of the laminated glass is aligned; and then a second threaded rod is rotated to enable a second moving plate to drive a second baffle to move together, so that the second baffle completely moves the corners of the laminated glass into an L-shaped positioning plate, multi-edge alignment of the laminated glass is achieved, and the alignment effect of the laminated glass is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of laminated glass production, specifically relates to a kind of alignment mechanism for ultrathin laminated glass production. BACKGROUND

[0002] Laminated glass is a kind of composite material by two or more layers of glass through the intermediate interlayer material is compressed and heated treatment, the structure of laminated glass makes it not like ordinary glass when breaking sharp fragments, but keep the overall structure, thereby providing higher security, it is widely used in building, automobile, aviation and other fields, and ultrathin laminated glass is the laminated glass with lower thickness, in the laminated glass production process, alignment mechanism can be used to arrange ultrathin laminated glass;

[0003] It is found that the alignment mechanism for ultrathin laminated glass production is disclosed in Publication (Announcement) No.CN221161754U, which discloses the technical scheme of "including machine body and fixed baffle, the bottom of machine body is provided with support column, and the top end of support column is fixedly connected with placing table", which has the technical effects of arranging ultrathin laminated glass and avoiding disorderly placement of ultrathin laminated glass.

[0004] However, only one side is provided with movable baffle, which can only align one side of laminated glass with long side or short side, causing inconvenience in use.

[0005] To solve the above problems, the alignment mechanism for ultrathin laminated glass production is proposed in the present application. UTILITY MODEL CONTENT

[0006] To solve the problems proposed in the above background technology, the alignment mechanism for ultrathin laminated glass production is provided, which has the characteristics of being able to align laminated glass on multiple sides.

[0007] To achieve the above purpose, the utility model provides the following technical scheme: an alignment mechanism for ultrathin laminated glass production, comprising an operation table and support legs fixedly connected at four corner positions on the bottom surface of the operation table, further comprising an alignment structure arranged on the operation table.

[0008] The alignment structure comprises a first baffle, an L-shaped positioning plate is fixedly connected to the side of the top surface of the operation table away from the first baffle, first connecting plates are symmetrically fixedly connected to any side of the operation table, first threaded rods are rotationally connected between the first connecting plates, first moving plates are fixedly connected to the bottom surface of the first baffle close to the positions of the first threaded rods, first connecting holes are arranged on the first moving plates, the first threaded rods are arranged in the first connecting holes, first threaded sleeves are rotationally connected to the side of the first moving plates away from the L-shaped positioning plate, the first threaded sleeves are in threaded connection with the first threaded rods, first guide openings are arranged on the first baffle, second baffles are arranged in the first guide openings, second connecting plates are symmetrically fixedly connected to the side of the first baffle away from the second baffles, second threaded rods are rotationally connected between the second connecting plates, second moving plates are fixedly connected to the second baffles close to the positions of the second threaded rods, second connecting holes are arranged on the second moving plates, the second threaded rods are arranged in the second connecting holes, and second threaded sleeves are rotationally connected to the second moving plates, and the second threaded sleeves are in threaded connection with the second threaded rods.

[0009] As the alignment mechanism for the production of the ultrathin laminated glass is preferably used, second guide openings are symmetrically arranged on the operation table, guide rods are fixedly connected to the bottom surface of the first baffle close to the positions of the second guide openings, and a balance rod is fixedly connected between the guide rods.

[0010] As the alignment mechanism for the production of the ultrathin laminated glass is preferably used, third connecting holes are arranged on the first connecting plates away from the L-shaped positioning plate, first cranks are arranged on the first connecting plates close to the third connecting holes and away from the first threaded rods, and the connecting shafts of the first cranks pass through the third connecting holes and are fixedly connected with the first threaded rods.

[0011] As the alignment mechanism for the production of the ultrathin laminated glass is preferably used, fourth connecting holes are arranged on the second connecting plates close to the first cranks, second cranks are arranged on the second connecting plates close to the fourth connecting holes and away from the second threaded rods, and the connecting shafts of the second cranks pass through the fourth connecting holes and are fixedly connected with the second threaded rods.

[0012] As the alignment mechanism for the production of the ultrathin laminated glass is preferably used, the cleaning structure is further arranged on the operation table.

[0013] The cleaning structure comprises symmetrically arranged columns, the columns are fixedly connected to the top surface of the operation table, guide rails are fixedly connected to the top surfaces of the columns, sliding tables are slidingly connected to the guide rails, L-shaped connecting plates are fixedly connected to the top surfaces of the sliding tables, third guide openings are arranged on the L-shaped connecting plates, third moving plates are arranged in the third guide openings, air scoops are mounted on the sides of the third moving plates close to the L-shaped positioning plates, and air inlets are arranged on any side of the air scoops.

[0014] As a preferred alignment mechanism for the production of the ultrathin laminated glass, a handle is fixedly connected to the side of the third moving plate away from the air scoop.

[0015] Compared with the prior art, the application has the beneficial effects that: the alignment structure is added to the application, the first moving plate drives the first baffle to move towards the laminated glass by rotating the first threaded rod, the first baffle moves the laminated glass into the L-shaped positioning plate, and one side of the laminated glass is aligned, then the second moving plate drives the second baffle to move by rotating the second threaded rod, the second baffle moves the corner of the laminated glass into the L-shaped positioning plate, thereby achieving multi-edge alignment of the laminated glass, improving the alignment effect of the laminated glass, and at the same time, the cleaning structure is added, the air scoop can clean the dust on the surface of the laminated glass after the laminated glass is placed, preventing the dust and impurities from damaging the laminated glass, and the air scoop can be lifted by using the handle to clean the laminated glass at different heights, and the L-shaped connecting plate can be moved along the direction of the guide rail by using the handle to clean different positions of the laminated glass. BRIEF DESCRIPTION OF DRAWINGS

[0016] The accompanying drawings are used to provide a further understanding of the present application, and constitute a part of the specification, and are used to explain the present application together with embodiments of the present application, and do not constitute a limitation of the present application. In the drawings:

[0017] Figure 1 is a structural schematic view of the present application;

[0018] Figure 2 is a first partial structural schematic view of the present application; Figure 1

[0019] Figure 3 is a partial structural schematic view of the present application; Figure 2

[0020] Figure 4 is a partial structural schematic view of the present application; Figure 3 ​​​

[0021] Figure 5 The second partial structure schematic view of the utility model is shown in Figure 2. Figure 1

[0022] In the figure:

[0023] 1, operation platform; 11, support leg;

[0024] 2, alignment structure; 21, L-shaped positioning plate; 22, first baffle; 23, first connecting plate; 24, first moving plate; 25, first connecting hole; 26, first threaded sleeve; 27, first threaded rod; 28, second connecting plate; 29, second threaded rod; 210, second moving plate; 211, second connecting hole; 212, second threaded sleeve; 213, first guide port; 214, second baffle; 215, second guide port; 216, guide rod; 217, balance bar; 218, third connecting hole; 219, first crank; 220, fourth connecting hole; 221, second crank;

[0025] 3, cleaning structure; 31, stand; 32, guide rail; 33, sliding table; 34, L-shaped connecting plate; 35, third guide port; 36, third moving plate; 37, wind deflector; 38, air inlet; 39, handle. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0027] Embodiment 1

[0028] As shown in Figure 1; Figure 1

[0029] An alignment mechanism for ultra-thin laminated glass production, comprising an operation platform 1 and support legs 11 fixedly connected at the four corners of the bottom surface of the operation platform 1.

[0030] In the present embodiment: According to the public (announced) number: CN221161754U, a kind of alignment mechanism for ultra-thin laminated glass production, to solve the technical problems existing in this prior art, as disclosed in the above background art "only in one side set up mobile baffle only can be laminated glass long side or short side one side alignment processing, cause the inconvenience when using" in conjunction with use, this problem is obviously practical and relatively difficult to solve problem, in view of this, to solve this technical problem, on this basis, join alignment structure 2 and cleaning structure 3. ​​

[0031] Further in detail:

[0032] As Figures 1 to 5 shown;

[0033] In combination with the above:

[0034] In order to realize the multi-edge alignment of the laminated glass, the alignment mechanism for the production of the ultra-thin laminated glass further comprises an alignment structure 2 arranged on the operation table 1;

[0035] The alignment structure 2 comprises a first baffle 22, an L-shaped positioning plate 21 fixedly connected to the side of the top surface of the operation table 1 away from the first baffle 22, first connecting plates 23 fixedly connected to any side of the operation table 1 in a symmetrical manner, a first threaded rod 27 rotationally connected between the first connecting plates 23, a first moving plate 24 fixedly connected to the position of the bottom surface of the first baffle 22 close to the first threaded rod 27, a first connecting hole 25 arranged on the first moving plate 24, the first threaded rod 27 arranged in the first connecting hole 25, a first threaded sleeve 26 rotationally connected to the side of the first moving plate 24 away from the L-shaped positioning plate 21, the first threaded sleeve 26 threadedly connected with the first threaded rod 27, a first guide opening 213 arranged on the first baffle 22, a second baffle 214 arranged in the first guide opening 213, second connecting plates 28 fixedly connected to the side of the first baffle 22 away from the second baffle 214 in a symmetrical manner, a second threaded rod 29 rotationally connected between the second connecting plates 28, a second moving plate 210 fixedly connected to the position of the second baffle 214 close to the second threaded rod 29, a second connecting hole 211 arranged on the second moving plate 210, the second threaded rod 29 arranged in the second connecting hole 211, and a second threaded sleeve 212 rotationally connected to the second moving plate 210, the second threaded sleeve 212 threadedly connected with the second threaded rod 29.

[0036] In this embodiment: when aligning the laminated glass, first place the laminated glass at a position close to the L-shaped positioning plate 21, then rotate the first threaded rod 27, which will drive the first threaded sleeve 26 to move, so that the first threaded sleeve 26 drives the first moving plate 24 to move, so that the first moving plate 24 drives the first baffle 22 to move towards the laminated glass, so that the first baffle 22 moves the laminated glass into the L-shaped positioning plate 21 and aligns one edge of the laminated glass, then rotate the second threaded rod 29, which will drive the second threaded sleeve 212 to move, so that the second threaded sleeve 212 drives the second moving plate 210 to move in the first guide opening 213, so that the second moving plate 210 drives the second baffle 214 to move together, so that the second baffle 214 completely moves the corner of the laminated glass into the L-shaped positioning plate 21, thereby realizing the multi-edge alignment of the laminated glass, improving the alignment effect of the laminated glass, and reducing the labor intensity of the workers.

[0037] Further, the first connecting plate 23 is provided with a third connecting hole 218, and the first connecting plate 23 is provided with a first crank 219 away from the first threaded rod 27.

[0038] In an optional embodiment, the operating table 1 is symmetrically provided with a second guide hole 215, and the bottom surface of the first baffle 22 is fixedly connected with a guide rod 216 near the second guide hole 215.

[0039] In this embodiment, when the first baffle 22 moves, the guide rods 216 on both sides will move in the second guide hole 215, guiding the movement of the first baffle 22 and preventing it from deviating. The balance bar 217 between the guide rods 216 can keep the guide rods 216 on both sides moving synchronously, preventing the first baffle 22 from tilting.

[0040] Further, the first connecting plate 23 is provided with a third connecting hole 218, and the first connecting plate 23 is provided with a first crank 219 away from the first threaded rod 27.

[0041] In an optional embodiment, the first connecting plate 23 is provided with a third connecting hole 218 away from the L-shaped positioning plate 21, and the first connecting plate 23 is provided with a first crank 219 away from the first threaded rod 27 near the third connecting hole 218. The connecting shaft of the first crank 219 passes through the third connecting hole 218 and is fixedly connected with the first threaded rod 27. The second connecting plate 28 is provided with a fourth connecting hole 220 near the first crank 219, and the second connecting plate 28 is provided with a second crank 221 away from the second threaded rod 29 near the fourth connecting hole 220. The connecting shaft of the second crank 221 passes through the fourth connecting hole 220 and is fixedly connected with the second threaded rod 29.

[0042] In this embodiment, the first crank 219 can drive the first threaded rod 27 to rotate, and the second crank 221 can drive the second threaded rod 29 to rotate, facilitating the alignment of the laminated glass by the staff.

[0043] Further, the first connecting plate 23 is provided with a third connecting hole 218, and the first connecting plate 23 is provided with a first crank 219 away from the first threaded rod 27.

[0044] In an optional embodiment, the cleaning structure 3 is further provided on the operating table 1.

[0045] The cleaning structure 3 comprises a stand 31 symmetrically arranged, and the stand 31 is fixedly connected to the top surface of the operating table 1. The top surface of the stand 31 is fixedly connected with a guide rail 32, and the guide rail 32 is slidingly connected with a sliding table 33. The top surface of the sliding table 33 is fixedly connected with an L-shaped connecting plate 34, and the L-shaped connecting plate 34 is provided with a third guide hole 35. The third guide hole 35 is provided with a third moving plate 36, and the third moving plate 36 is provided with an air deflector 37 near the L-shaped positioning plate 21. Any side of the air deflector 37 is provided with an air inlet 38, and the third moving plate 36 is fixedly connected with a handle 39 away from the air deflector 37.

[0046] In the embodiment: the air inlet 38 is connected with the air outlet of the fan by using a flexible connecting pipe, after the laminated glass is placed, the fan can be started first, the air deflector 37 can clean the dust on the surface of the laminated glass, prevent the dust impurities from damaging the laminated glass, and the air deflector 37 can be lifted by using the handle 39, so that the air deflector 37 can clean the laminated glass at different height positions, and the L-shaped connecting plate 34 can be moved along the direction of the guide rail 32 by using the handle 39, so that the laminated glass at different positions can be cleaned conveniently.

[0047] The working principle and use process of the laminated glass cleaning and aligning device are as follows: when the laminated glass is aligned, the laminated glass is placed close to the L-shaped positioning plate 21 first, after the laminated glass is placed, the fan can be started first, the air deflector 37 can clean the dust on the surface of the laminated glass, prevent the dust impurities from damaging the laminated glass, and the air deflector 37 can be lifted by using the handle 39, so that the air deflector 37 can clean the laminated glass at different height positions, and the L-shaped connecting plate 34 can be moved along the direction of the guide rail 32 by using the handle 39, so that the laminated glass at different positions can be cleaned conveniently, then the first crank 219 is used to rotate the first threaded rod 27, when the first threaded rod 27 rotates, the first threaded sleeve 26 is moved, so that the first threaded sleeve 26 drives the first moving plate 24 to move, the first moving plate 24 drives the first baffle 22 to move towards the laminated glass, the first baffle 22 moves the laminated glass into the L-shaped positioning plate 21, and aligns one side of the laminated glass, then the second crank 221 is used to rotate the second threaded rod 29, when the second threaded rod 29 rotates, the second threaded sleeve 212 is moved, so that the second threaded sleeve 212 drives the second moving plate 210 to move in the first guide opening 213, the second moving plate 210 drives the second baffle 214 to move together, the second baffle 214 moves the corner of the laminated glass into the L-shaped positioning plate 21 completely, so that the laminated glass is aligned on multiple sides, the alignment effect of the laminated glass is improved, and the labor intensity of workers is reduced.

[0048] Finally, it should be noted that: the above only describes the preferred embodiments of the present application, and is not intended to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for some technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. An alignment mechanism for the production of ultra-thin laminated glass, comprising an operating table (1) and support legs (11) fixedly connected to the four corners of the bottom surface of the operating table (1), characterized in that: It also includes an alignment structure (2) set on the operating table (1); The alignment structure (2) includes a first baffle (22). An L-shaped positioning plate (21) is fixedly connected to the top surface of the operating table (1) away from the first baffle (22). A first connecting plate (23) is symmetrically fixedly connected to any side of the operating table (1). A first threaded rod (27) is rotatably connected between the first connecting plates (23). A first moving plate (24) is fixedly connected to the bottom surface of the first baffle (22) near the first threaded rod (27). A first connecting hole (25) is provided on the first moving plate (24). The first threaded rod (27) is disposed in the first connecting hole (25). A first threaded sleeve (26) is rotatably connected to the side of the first moving plate (24) away from the L-shaped positioning plate (21). The first threaded sleeve (26) is threadedly connected to the first threaded rod (27). Next, a first guide opening (213) is provided on the first baffle (22), and a second baffle (214) is provided inside the first guide opening (213). A second connecting plate (28) is symmetrically fixedly connected to the side of the first baffle (22) away from the second baffle (214). A second threaded rod (29) is rotatably connected between the second connecting plates (28). A second moving plate (210) is fixedly connected to the second baffle (214) near the second threaded rod (29). A second connecting hole (211) is provided on the second moving plate (210). The second threaded rod (29) is located in the second connecting hole (211). A second threaded sleeve (212) is rotatably connected to the second moving plate (210). The second threaded sleeve (212) is threadedly connected to the second threaded rod (29).

2. The alignment mechanism for producing ultra-thin laminated glass according to claim 1, characterized in that: The operating table (1) is symmetrically provided with second guide ports (215). Guide rods (216) are fixedly connected to the bottom surface of the first baffle (22) near the second guide ports (215). Balance rods (217) are fixedly connected between the guide rods (216).

3. The alignment mechanism for producing ultra-thin laminated glass according to claim 1, characterized in that: A third connecting hole (218) is provided on the first connecting plate (23) away from the L-shaped positioning plate (21). A first crank (219) is provided on the side of the first connecting plate (23) away from the first threaded rod (27) near the third connecting hole (218). The connecting shaft of the first crank (219) passes through the third connecting hole (218) and is fixedly connected to the first threaded rod (27).

4. The alignment mechanism for producing ultra-thin laminated glass according to claim 3, characterized in that: A fourth connecting hole (220) is provided on the second connecting plate (28) near the first crank (219). A second crank (221) is provided on the side of the second connecting plate (28) near the fourth connecting hole (220) away from the second threaded rod (29). The connecting shaft of the second crank (221) passes through the fourth connecting hole (220) and is fixedly connected to the second threaded rod (29).

5. The alignment mechanism for producing ultra-thin laminated glass according to claim 1, characterized in that: It also includes a cleaning structure (3) installed on the operating table (1); The cleaning structure (3) includes symmetrically arranged columns (31), each column (31) being fixedly connected to the top surface of the operating table (1). A guide rail (32) is fixedly connected to the top surface of the column (31), and a slide table (33) is slidably connected to the guide rail (32). An L-shaped connecting plate (34) is fixedly connected to the top surface of the slide table (33). A third guide port (35) is provided on the L-shaped connecting plate (34), and a third moving plate (36) is provided inside the third guide port (35). An air guide hood (37) is installed on the side of the third moving plate (36) close to the L-shaped positioning plate (21), and an air inlet (38) is provided on any side of the air guide hood (37).

6. The alignment mechanism for producing ultra-thin laminated glass according to claim 5, characterized in that: A handle (39) is fixedly connected to the side of the third movable plate (36) away from the air guide cover (37).

Citation Information

Patent Citations

  • Alignment mechanism for ultrathin laminated glass production

    CN221161754U