Positioning device for laminated glass laminating chamber

By designing a positioning device for the laminated glass assembly chamber, and utilizing components such as electric telescopic rods, electromagnets, and dual-axis motors, the automated positioning of the glass is achieved, solving the problem of low automation in the laminated glass assembly process and improving production efficiency and precision.

CN223850197UActive Publication Date: 2026-01-30QINHUANGDAO LEWEI SCI & TECH DEV CO LTD
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Patent Information

Application Number
CN202520334363.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-01-30
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

The low level of automation in the laminated glass lamination process leads to low production efficiency and easily introduces human error, making it difficult to ensure the precise positioning of the glass.

Method used

A positioning device for a laminated glass lamination chamber was designed, including an operating table, a positioning mechanism, and a clamping mechanism. The device achieves automated positioning and alignment of the glass through components such as an electric telescopic rod, an electromagnet, and a dual-axis motor, ensuring precise positioning of the glass.

Benefits of technology

It improves the precision of laminated glass assembly, reduces the need for manual operation, lowers labor costs, and increases production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of laminated glass processing, in particular to a laminated glass laminating chamber positioning device which comprises an operation table, a base plate, two first sliding grooves formed in the left side and the right side of the top face of the operation table respectively, first fixing plates fixedly connected to the left side wall and the right side wall of the base plate respectively, and second fixing plates fixedly connected to the left side wall and the right side wall of the base plate respectively. The top faces of the two first fixing plates are fixedly connected with electric telescopic rods correspondingly, and supporting legs are fixedly connected to the four corners of the bottom face of the bottom plate correspondingly. According to the glass clamping device, the first positioning mechanism and the second positioning mechanism are arranged on the top face of the bottom plate, so that the two first clamping plates and the two second clamping plates can clamp and limit the four edges of the first piece of glass, and then the clamping mechanism and the first positioning mechanism are arranged in a matched mode, and a baffle and the second positioning mechanism are arranged in a matched mode; therefore, the second piece of glass can be aligned with the first piece of glass, the laminating precision is greatly improved, the requirement of manual operation is reduced, the labor cost is reduced, and the production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to interlayer glass processing technical field, specifically a kind of interlayer glass laminating chamber positioning device. BACKGROUND

[0002] Interlayer glass is a safety glass, with one or more layers of organic polymer interlayer film between two or more pieces of glass, made by special process, the interlayer of interlayer glass is made of high-strength organic glue film, once broken, glass fragments will be adsorbed by interlayer, reduce the harm to human body, this feature makes interlayer glass widely used in the field of automobile, building etc., to improve safety, in interlayer glass production process, cut glass and film (such as PVB film) are stacked together in interlayer glass laminating chamber according to certain order, finally high-temperature and high-pressure synthesis processing is carried out;

[0003] Traditional laminating mode is often low in automation degree, and needs a lot of manual operation, the position and angle of glass are adjusted by hand, and then laminating is carried out, however, this mode not only is low in production efficiency, but also is easy to introduce human error, and it is difficult to ensure the accurate positioning of glass, and it is easy to cause misplacement of interlayer glass after laminating. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of interlayer glass laminating chamber positioning device to solve the problems raised in the above background.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] A kind of interlayer glass laminating chamber positioning device, comprising:

[0007] Operation platform, including bottom plate, the top surface of operation platform is located in the position of left and right sides and is equipped with two sliding slots one, the left and right two side walls of bottom plate are all fixedly connected with fixed plate one, the top surface of two fixed plate one is all fixedly connected with electric telescopic handle, the bottom surface of bottom plate four corner positions are all fixedly connected with support leg;

[0008] Positioning mechanism one, including two clamps one, the bottom surface of two clamps one is all fixedly connected with two sliding blocks one, four sliding blocks one are respectively slidably connected with its corresponding four sliding slots one, the top surface of two clamps one is all equipped with two insertion slots one, the side wall of two clamps one away from each other is all fixedly connected with L-shaped plate, the inner side wall of two L-shaped plates is all fixedly connected with electromagnet;

[0009] Top plate, set in the just above operation platform, the bottom surface of top plate is equipped with installation groove two, the opposite two side walls of top plate are all fixedly connected with fixed plate two, the output end of two electric telescopic handles is respectively fixedly connected with the bottom surface of two fixed plate two.

[0010] The clamping mechanism comprises a double-shaft motor one, the double-shaft motor one is fixedly installed in the inside of the installation groove two, both motor shafts of the double-shaft motor one are in transmission connection with the screw rod one, the other end of both screw rods one is in rotation connection with the two inner walls of the installation groove two, the outer wall of both screw rods one is in screw connection with the moving block one, the bottom surface of both moving blocks one is fixedly connected with the side plate, the opposite bottom side of both side plates is provided with the rectangular groove, the inside of both rectangular grooves is in sliding connection with the lifting block, the side wall of both lifting blocks is fixedly connected with the round rod, the end of both round rods extending to the outside is fixedly connected with the metal plate, the outer wall of both round rods is sleeved with the reset spring, and the bottom surface of both side plates is fixedly connected with two plug-in rods one.

[0011] Further, the top surface of the bottom plate is provided with an installation groove one, and the inside of the installation groove one is provided with a positioning mechanism two.

[0012] Further, the positioning mechanism two comprises a double-shaft motor two, both motor shafts of the double-shaft motor two are in transmission connection with the screw rod two, the outer wall of both screw rods two is in screw connection with the moving block two, and the top surface of both moving blocks two is fixedly connected with the clamping plate two.

[0013] Further, the bottom surface of the top plate close to the rear side wall is provided with two symmetrical sliding grooves three.

[0014] Further, the bottom surface of the top plate is provided with the baffle, the top surface of the baffle is fixedly connected with two symmetrical sliding blocks two, the sliding blocks two are in sliding connection with the sliding grooves three respectively, and the bottom surface of the baffle is fixedly connected with two symmetrical plug-in rods two.

[0015] Further, the top surface of the clamping plate two corresponding to the position of the baffle is provided with two plug-in grooves two in penetration, and the plug-in rods two are in sliding plug-in connection with the plug-in grooves two.

[0016] Further, the top surface of the bottom plate is provided with the sliding groove two corresponding to the position of the plug-in rod two.

[0017] Compared with the prior art, the utility model has the advantages that:

[0018] Through the setting of the positioning mechanism one and the positioning mechanism two on the top surface of the bottom plate, the two clamping plates one and the two clamping plates two can clamp and limit the four edges of the first glass, through the cooperation between the clamping mechanism and the positioning mechanism one and the cooperation between the baffle and the positioning mechanism two, the second glass can be aligned with the first glass, the piece combining precision is greatly improved, the demand for manual operation is reduced, the labor cost is reduced, and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 is a whole structure schematic view of the interlayer glass splicing chamber positioning device of the utility model;

[0020] Figure 2 is a combined structure schematic view of the operation table and the positioning mechanism of the utility model;

[0021] Figure 3 is a combined structure schematic view of the top plate and the clamping mechanism of the utility model;

[0022] Figure 4 is a sectional structure schematic view of the side plate of the utility model;

[0023] Figure 5 is a structure schematic view of the second positioning mechanism of the utility model;

[0024] Figure 6 is a structure schematic view of the baffle of the utility model.

[0025] In the figure: 100, operation table; 110, bottom plate; 111, sliding groove one; 112, mounting groove one; 113, sliding groove two; 120, fixed plate one; 130, electric telescopic rod; 140, support leg; 200, positioning mechanism one; 210, clamping plate one; 2101, plug-in groove one; 220, sliding block one; 230, L-shaped plate; 240, electromagnet; 300, top plate; 3001, mounting groove two; 3002, sliding groove three; 310, fixed plate two; 400, clamping mechanism; 410, double-shaft motor one; 420, screw one; 430, moving block one; 440, side plate; 441, rectangular groove; 450, lifting block; 460, round rod; 470, metal plate; 480, return spring; 490, plug-in rod one; 500, positioning mechanism two; 510, double-shaft motor two; 520, screw two; 530, moving block two; 540, clamping plate two; 541, plug-in groove two; 600, baffle; 610, sliding block two; 620, plug-in rod two. 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 protection scope of the utility model.

[0027] EMBODIMENT

[0028] Please refer to Figures 1-6The utility model discloses an embodiment of a kind of interlayer glass joint room positioning device, including operation platform 100, positioning mechanism one 200, top plate 300 and clamping mechanism 400, operation platform 100 includes bottom plate 110, the top surface of operation platform 100 is located the position of left and right sides and is equipped with two sliding slots one 111, the left and right two side walls of bottom plate 110 are all fixedly connected with fixed plate one 120, the top surface of two fixed plate one 120 is all fixedly connected with electric telescopic handle 130, the bottom surface four corner positions of bottom plate 110 are all fixedly connected with support leg 140, positioning mechanism one 200 includes two clamps one 210, the bottom surface of two clamps one 210 is all fixedly connected with two sliding blocks one 220, four sliding blocks one 220 are slidably connected with its corresponding four sliding slots one 111 respectively, the bottom surface of two clamps one 210 is all in contact with the top surface of bottom plate 110, the top surface of two clamps one 210 is all equipped with two insertion grooves one 2101, the position of insertion groove one 2101 corresponds with the position of sliding block one 220, the side wall of two clamps one 210 away from each other is all fixedly connected with L-shaped plate 230, the inner side wall of two L-shaped plates 230 is all fixedly connected with electromagnet 240, top plate 300 is set in the just above of operation platform 100, the bottom surface of top plate 300 is equipped with installation slot two 3001, the opposite two side walls of top plate 300 are all fixedly connected with fixed plate two 310, fixed plate two 310 is aligned with the position of fixed plate one 120, the output end of two electric telescopic handles 130 is respectively fixedly connected with the bottom surface of two fixed plate two 310, clamping mechanism 400 includes double-shaft motor one 410, double-shaft motor one 410 is installed and fixed in the inside of installation slot two 3001, the two motor shafts of double-shaft motor one 410 are all transmissionally connected with screw rod one 420, the thread rotation direction of two screw rods one 420 is opposite, the other end of two screw rods one 420 is respectively rotatably connected with the two inner walls of installation slot two 3001, the outer wall of two screw rods one 420 is all screw-connected with moving block one 430, and two moving blocks one 430 are mutually symmetrical, the bottom surface of two moving blocks one 430 is all fixedly connected with side plate 440, the opposite bottom side of two side plates 440 is all equipped with rectangular groove 441, the inside of two rectangular grooves 441 is all slidably connected with lifting block 450, the side wall of two lifting blocks 450 away from each other is all fixedly connected with round bar 460, the end portion of two round bars 460 extending to outside is all fixedly connected with metal plate 470, the outer wall of two round bars 460 located rectangular groove 441 inside is all sleeved with return spring 480, the bottom surface of two side plates 440 is all fixedly connected with two insertion rods one 490, four insertion rods one 490 are slidably inserted with four insertion grooves one 2101 respectively.

[0029] Specifically, in use, first, the first glass is placed on the top surface of the bottom plate 110, the double-shaft motor one 410 is started, and the two lead screws one 420 rotate to move the two moving blocks one 430 along the outer walls of the two lead screws one 420, and the two side plates 440 move close to each other. Since the two side plates 440 are inserted with the insertion rods one 490 between the two clamping plates one 210, the two clamping plates one 210 move close to each other with the movement of the two side plates 440, until the side walls of the two clamping plates one 210 are attached to the side of the glass, and the position of the first glass is fixed. At this time, the film is laid on the top surface of the first glass, and the second glass is taken out and inserted between the two side plates 440. Due to the elastic force of the reset spring 480, the lifting blocks 450 extend outward, so that the two extending lifting blocks 450 on both sides assist in lifting the bottom surface of the second glass, so that the second glass is positioned corresponding to the first glass. The two electric telescopic rods 130 are controlled to shrink, driving the top plate 300 to move downward, until the bottom surface of the two side plates 440 is attached to the top surface of the two clamping plates one 210 respectively, and the positions of the two electromagnets 240 correspond to the positions of the two metal plates 470 respectively. The two electromagnets 240 are turned on to attract the metal plates 470, the metal plates 470 move towards the electromagnets 240, the reset spring 480 shrinks, and the lifting blocks 450 also shrink into the rectangular grooves 441. The second glass above the lifting blocks 450 loses the lifting force and gradually moves downward until the bottom surface is attached to the film on the top surface of the first glass, completing the close attachment of the two layers of glass.

[0030] As shown in Figure 2 and Figure 5 In this embodiment, the top surface of the bottom plate 110 is provided with a mounting groove one 112, which is arranged at the center position of the top surface of the bottom plate 110 and perpendicular to the sliding groove one 111. The inside of the mounting groove one 112 is provided with a positioning mechanism two 500, which includes a double-shaft motor two 510 fixedly installed in the inside of the mounting groove one 112. The two motor shafts of the double-shaft motor two 510 are both transmissionally connected with lead screws two 520, the other ends of the two lead screws two 520 are both rotationally connected with the inner side walls of the mounting groove one 112, and the rotation directions of the threads of the two lead screws two 520 are opposite. The outer walls of the two lead screws two 520 are both screwingly connected with moving blocks two 530, the outer wall of the clamping plate two 540 is attached to the inner wall of the mounting groove one 112, the top surfaces of the two moving blocks two 530 are both fixedly connected with the clamping plate two 540, and the bottom surface of the clamping plate two 540 is in contact with the top surface of the bottom plate 110.

[0031] In the embodiment, after the double-shaft motor one 410 is started, the two clamping plates one 210 position the left and right sides of the first glass, at this time, the double-shaft motor two 510 is started, the two motor shafts of the double-shaft motor two 510 are respectively driven on the two lead screws two 520, the two lead screws two 520 rotate, the two moving blocks two 530 move along the outer walls of the two lead screws two 520, the two clamping plates two 540 move close to each other, until the front and back two side walls of the first glass are limited, to ensure that the four edges of the first glass are accurately fixed, and the subsequent alignment operation is more convenient.

[0032] As shown in Figures 2-3 and Figures 5-6 In the embodiment, the bottom surface of the top plate 300 close to the rear side wall is symmetrically provided with two sliding grooves three 3002, the bottom surface of the top plate 300 is provided with a baffle 600, the top surface of the baffle 600 is symmetrically and fixedly connected with two sliding blocks two 610, the two sliding blocks two 610 are respectively and slidably connected with the two sliding grooves three 3002, the top surface of the baffle 600 is in contact with the bottom surface of the top plate 300, the bottom surface of the baffle 600 is symmetrically and fixedly connected with two plug-in rods two 620, the top surface of the clamping plate two 540 corresponding to the position of the baffle 600 is provided with two plug-in grooves two 541 in penetration, the two plug-in rods two 620 are respectively and slidably plugged into the two plug-in grooves two 541, and the top surface of the bottom plate 110 is provided with a sliding groove two 113 at a position corresponding to the two plug-in rods two 620.

[0033] In specific implementation, since the baffle 600 is connected with the clamping plate two 540 located at the rear side through the plug-in rod two 620, when the double-shaft motor two 510 is started, the upper baffle 600 also moves with the clamping plate two 540 corresponding thereto, so that when the second glass is inserted between the two side plates 440, the baffle 600 can limit the side of the second glass close to the rear side, to keep the positions of the upper and lower two glasses consistent, and ensure the accuracy of subsequent fitting and alignment.

[0034] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered exemplary and non-restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and range of equivalent elements of the claims are intended to be embraced in the present application. Any reference signs in the claims should not be considered as limiting the claims involved.

[0035] Furthermore, it should be understood that although the specification is described in terms of embodiments, not every embodiment includes every feature or implementation described herein. The specification can include implicit combinations of explicitly mentioned features and / or implicit combinations of implicitly mentioned features. Such combinations are also expressly included within the scope of the specification and an embodiment.

Claims

1. A lamination glass assembly chamber positioning device, characterized by, The utility model relates to a kind of positioning device and positioning device, including: Operation platform, including bottom plate, the top surface of operation platform is located in the position of left and right sides and is equipped with two sliding slots one, the left and right two side walls of bottom plate are all fixedly connected with fixed plate one, the top surface of two fixed plate one is all fixedly connected with electric telescopic rod, the bottom surface of bottom plate is all fixedly connected with support leg in four corner positions; Positioning mechanism one, including two clamping plates one, the bottom surface of two clamping plates one is all fixedly connected with two sliding blocks one, four sliding blocks one are respectively slidably connected with its corresponding four sliding slots one, the top surface of two clamping plates one is all equipped with two insertion slots one, the side wall of two clamping plates one is away from each other and is all fixedly connected with L-shaped plate, the inner side wall of two L-shaped plates is all fixedly connected with electromagnet; Top plate, set in the just above operation platform, the bottom surface of top plate is equipped with installation slot two, the opposite two side walls of top plate are all fixedly connected with fixed plate two, the output end of two electric telescopic rods is respectively fixedly connected with the bottom surface of two fixed plate two; Clamping mechanism, including double-shaft motor one, double-shaft motor one is installed and fixed in the inside of installation slot two, the two motor shafts of double-shaft motor one are all transmission connection with screw rod one, the other end of two screw rods one is respectively rotationally connected with the two inner walls of installation slot two, the outer wall of two screw rods one is all screwed and connected with moving block one, the bottom surface of two moving blocks one is all fixedly connected with side plate, the opposite bottom side of two side plates is all equipped with rectangular slot, the inside of two rectangular slots is all slidably connected with lifting block, the side wall of two lifting blocks is away from each other and is all fixedly connected with round bar, the end portion of two round bars extending to outside is all fixedly connected with metal plate, the outer wall of two round bars is all sleeved with reset spring, the bottom surface of two side plates is all fixedly connected with two insertion rods one.

2. The laminated glass pane chamber positioning device according to claim 1, characterized in that The top surface of bottom plate is equipped with installation slot one, and positioning mechanism two is arranged in the inside of installation slot one.

3. The laminated glass pane chamber positioning device according to claim 2, characterized in that Positioning mechanism two includes double-shaft motor two, the two motor shafts of double-shaft motor two are all transmission connection with screw rod two, the outer wall of two screw rods two is all screwed and connected with moving block two, the top surface of two moving blocks two is all fixedly connected with clamping plate two.

4. The laminated glass pane chamber positioning device according to claim 1, characterized in that The bottom surface of top plate is symmetrically equipped with two sliding slots three near rear side wall.

5. The laminated glass pane chamber positioning device according to claim 1, characterized in that The bottom surface of top plate is provided with baffle, the top surface of baffle is symmetrically fixedly connected with two sliding blocks two, two sliding blocks two are respectively slidably connected with two sliding slots three, the bottom surface of baffle is symmetrically fixedly connected with two insertion rods two.

6. The laminated glass pane chamber positioning device according to claim 5, characterized in that The top surface of clamping plate two corresponding with baffle position is equipped with two insertion slots two, two insertion rods two are slidably inserted with two insertion slots two.

7. The laminated glass pane chamber positioning device according to claim 1, characterized in that The top surface of bottom plate is equipped with sliding slot two in the position corresponding with two insertion rods two.