An assembling device for laminated glass production

By designing an assembly device for laminated glass production, the automatic conveying and precise cutting of raw materials were achieved, solving the problems of assembly efficiency and quality, and improving the product yield.

CN117532999BActive Publication Date: 2026-02-13JIANGXI CHANGHAO IND CO LTD
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Patent Information

Application Number
CN202311375707.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-23
Publication Date
2026-02-13
Estimated Expiration
2043-10-23

AI Technical Summary

Technical Problem

The assembly efficiency and quality of existing laminated glass production equipment are insufficient to meet the requirements of efficient and continuous production, which affects the product yield.

Method used

An assembly device for laminated glass production was designed, including a processing box, a laminating box, a cover glass box, and a substrate glass box. The device achieves automatic material feeding and assembly through drive components and transfer components, ensures the quality of PVB film laying through support components, and performs precise cutting using cutting components.

Benefits of technology

It improves the production efficiency and product yield of laminated glass, ensures the uniform laying and cutting accuracy of PVB film, and enhances assembly quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an assembling device for laminated glass production, and relates to the technical field of glass processing, which comprises a processing box, a base installed at the bottom of the processing box, a plurality of conveying assemblies and a plurality of supporting assemblies installed in the base, and a cutting assembly installed in the processing box and arranged on the upper side of the base.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of glass processing, and in particular to an assembling device for laminated glass production. BACKGROUND

[0002] Laminated glass is a composite glass product made of two or more pieces of glass with one or more layers of organic polymer interlayer film sandwiched between them, which is permanently bonded as a whole after special high-temperature pre-pressing (or vacuum extraction) and high-temperature high-pressure processing.

[0003] During the production of laminated glass, the processing steps are usually to perform laminating treatment on the cleaned tempered glass and PVB film, that is, to sandwich the PVB film between two pieces of glass and cut off the excess part. The laminated glass is sent to a preheating machine for heating and preheating, exhaust, and organic combination of the glass and the PVB film, and then enters a high-pressure kettle for heating and pressurizing. Finally, after inspection, the qualified products are packaged and stored.

[0004] Through retrieval, a laminated glass assembling system is disclosed in Chinese patent (publication number: CN116423961A), which comprises a glass conveying line and a film pressing conveying line. A film cutting device is arranged between the glass conveying line and the film pressing conveying line. The film cutting device comprises a rack, a supporting plate, a rotary jacking assembly, and a cutting assembly. The rotary jacking assembly is installed on the rack, and the supporting plate is connected with the rotary jacking assembly. Two sides of the supporting plate that are parallel to each other are respectively provided with side plates, and the other two sides of the supporting plate that are parallel to each other are provided with lifting plates. The lifting plates and the side plates form a placing groove for placing laminated glass. The cutting assembly is used for cutting the film close to the lifting plates and the side plates.

[0005] In the prior art, when continuously producing laminated glass, the assembling device needs to have high assembling efficiency and quality to improve the yield of the product. Therefore, the present application provides an assembling device for laminated glass production. SUMMARY

[0006] The purpose of the present application is to solve the above problems and provide an assembling device for laminated glass production.

[0007] In order to achieve the above purpose, the present application adopts the following technical scheme: an assembling device for laminated glass production, comprising a processing box, two sides of the processing box are respectively provided with a laminated box and a cover glass box, the laminated box is used for containing PVB film stacked, and the cover glass box is used for containing cover glass in laminated glass, the cover glass is the glass located on the upper side during processing, and one end of the processing box is provided with a base glass box, the base glass box is used for containing base glass in laminated glass, the base glass is the glass located on the lower side during processing, and a connecting box is installed between the cover glass box and the laminated box.

[0008] The cutting assembly is arranged on the upper side of the base and used for cutting the edge of the PVB film;

[0009] The first driving assembly is arranged in the connecting box, and the output end of the first driving assembly is provided with a first transfer assembly. The first transfer assembly can move between the cover glass box, the processing box and the laminating box based on the first driving assembly, and is used for moving the PVB film in the laminating box and the cover glass in the cover glass box to the processing box.

[0010] The base is arranged at the bottom end of the processing box, and the base is internally provided with a plurality of conveying assemblies arranged side by side and a plurality of supporting assemblies. The conveying assemblies are used for moving the glass, and the plurality of supporting assemblies are arranged in the gaps between the plurality of conveying assemblies and are used for assisting the movement of the glass when the glass moves.

[0011] Further, the cover glass box comprises a first connecting box, and a second driving assembly is arranged at the top end of the first connecting box.

[0012] One side of the first connecting box is communicated with the processing box, and a driving plate is arranged at the bottom end of the first connecting box. One end of the driving plate extends to the side of the first connecting box which is not communicated with the processing box, and a moving carrier plate is arranged at the output end of the driving plate.

[0013] The moving carrier plate moves between the inside and outside of the first connecting box based on the driving plate. When the moving carrier plate moves to the outside of the first connecting box, the cover glass can be stacked on the upper side of the moving carrier plate.

[0014] Further, the supporting assembly comprises two groups of horizontal driving seats, and a hydraulic rod is arranged at the output end of the horizontal driving seat.

[0015] The output end of the hydraulic rod is arranged upward, and a connecting seat is arranged at the output end of the hydraulic rod. A driving motor is arranged in the connecting seat, and the output end of the driving motor is arranged horizontally and provided with a first connecting wheel.

[0016] A telescopic assembly is arranged in the first connecting wheel, and the output end of the telescopic assembly is arranged horizontally and provided with a second connecting wheel.

[0017] The second connecting wheel moves horizontally based on the telescopic assembly to adjust the distance between the first connecting wheel and the second connecting wheel.

[0018] Further, the first connecting wheel and the second connecting wheel have the same size, and the top of the first connecting wheel and the top of the second connecting wheel extend to the upper side of the connecting seat.

[0019] Further, the cover glass box comprises a second communication box, the top of the side of the second communication box is communicated with the processing box, and the first lifting assembly is installed in the interior of the second communication box, the bottom of the first lifting assembly extends to the outside of the bottom of the second communication box and supports the second communication box, and the output end of the first lifting assembly is installed with a first lifting plate;

[0020] The first lifting plate moves between the interior and the bottom of the second communication box based on the first lifting assembly, when the first lifting plate is located at the lower side of the second communication box, the staff can stack the cover glass on the upper side of the first lifting plate, and after the first lifting plate rises based on the first lifting assembly, the stacked cover glass is lifted into the second communication box to facilitate the first transfer assembly to move it into the processing box.

[0021] Further, a plurality of stroke cylinders are installed in the interior of the second communication box, the output ends of the plurality of stroke cylinders are all directed to the central part of the second communication box, and the plurality of stroke cylinders are all installed with limiting plates;

[0022] The side of the first lifting plate is provided with a plurality of sliding grooves, and the distribution positions of the plurality of sliding grooves are the same as the distribution positions of the plurality of limiting plates;

[0023] After the cover glass is lifted into the second communication box, the plurality of limiting plates are distributed at the respective side edges, and each limiting plate pushes the edge of the cover glass based on the corresponding stroke cylinder to align it.

[0024] Further, the laminated box comprises a third communication box and a plurality of pressing pieces, the side of the third communication box is communicated with the processing box, the second lifting assembly is installed in the interior of the third communication box, the bottom of the second lifting assembly extends to the outside of the bottom of the third communication box and supports the third communication box, and the output end of the second lifting assembly is installed with a second lifting plate;

[0025] The two sides of the bottom of the second lifting assembly are both installed with communication warehouses, and the two groups of communication warehouses are respectively attached to the two sides of the second lifting plate;

[0026] The upper side of each end of the second lifting plate close to the communication warehouse is provided with a protruding part.

[0027] Further, the pressing piece comprises a rod body, the bottom of the rod body is provided with a recessed part, and the top of the rod body is provided with an adsorption part.

[0028] As described above, due to the adoption of the above technical scheme, the beneficial effects of the present application are:

[0029] The assembling device in the application respectively sets different raw materials of the laminated glass in the base plate glass box, the cover plate glass box and the laminating box, and sequentially transports the required raw materials to the processing box for assembly during assembly, and the production efficiency is higher during continuous production, and it is convenient to supplement raw materials according to production needs;

[0030] And during assembly, the support assembly inside the base can unfold the PVB film when it is laid on the carrier plate glass, thereby improving the quality of laying the PVB film and improving the yield of the product.

[0031] Further, when the PVB film is transported in the laminating box, the PVB films in each layer are supported and separated by two groups of pressing pieces, and when the PVB film is moved by the first driving assembly and the first transfer assembly, the pressing pieces can be recycled through the corresponding direction of the communication bin. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 It is a structural schematic view of the assembling device for laminated glass production of the application;

[0033] Figure 2 It is a side sectional view of the base plate glass box and the processing box in the application;

[0034] Figure 3 It is a bottom sectional view of the base in the application;

[0035] Figure 4 It is a partial sectional view of the support assembly in the application;

[0036] Figure 5 It is a side sectional view of the cover plate glass box in the application;

[0037] Figure 6 It is a side sectional view of the laminating box in the application;

[0038] Figure 7 It is a structural schematic view of the pressing piece in the application.

[0039] LEGEND:

[0040] 1, processing box; 2, base; 3, conveying assembly; 4, supporting assembly; 5, detection module; 6, cutting assembly; 7, base plate glass box; 8, cover plate glass box; 9, laminated glass box; 10, connecting box; 11, first driving assembly; 12, first transfer assembly; 71, first communication box; 72, second driving assembly; 73, second transfer assembly; 74, driving plate; 75, moving carrier plate; 41, horizontal driving seat; 42, hydraulic rod; 43, connecting seat; 44, driving motor; 45, first connecting wheel; 46, telescopic assembly; 47, second connecting wheel; 81, second communication box; 82, first lifting assembly; 83, first lifting plate; 84, sliding groove; 85, stroke cylinder; 86, limiting plate; 91, third communication box; 92, communication bin; 93, second lifting plate; 94, second lifting assembly; 95, pressing piece; 951, rod body; 952, recessed part; 953, adsorption part. DETAILED DESCRIPTION

[0041] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0042] Please refer to Figures 1-7 The present application provides a technical solution: an assembling device for laminated glass production, comprising a processing box 1, a laminated glass box 9 and a cover plate glass box 8 are installed on both sides of the processing box 1, the laminated glass box 9 is used for containing PVB film arranged in stacks, the cover plate glass box 8 is used for containing cover plate glass in laminated glass, and a base plate glass box 7 is installed at one end of the processing box 1, the base plate glass box 7 is used for containing carrier plate glass in laminated glass, and a connecting box 10 is installed between the cover plate glass box 8 and the laminated glass box 9;

[0043] A cutting assembly 6 is installed inside the processing box 1, and the cutting assembly 6 is arranged on the upper side of the base 2;

[0044] The cutting assembly 6 comprises X-axis driving modules and Y-axis driving modules in a horizontal plane, the Y-axis driving modules are connected to the output ends of the X-axis driving modules, and the output ends of the Y-axis driving modules are provided with cutting modules;

[0045] The cutting module comprises a lifting unit connected to the output end of the Y-axis driving module, the output end of the lifting unit faces downward, is provided with a cutting unit, and the stroke length of the output end of the lifting unit is greater than the thickness of laminated glass that can be processed by the device;

[0046] The interior of the connecting box 10 is internally mounted with a first driving assembly 11, and the output end of the first driving assembly 11 is mounted with a first transfer assembly 12; the first transfer assembly 12 is based on the first driving assembly 11 and can move between the cover glass box 8, the processing box 1 and the laminated box 9, and is used to move the PVB film inside the laminated box 9 and the cover glass inside the cover glass box 8 to the processing box 1;

[0047] The bottom end of the processing box 1 inside is mounted with a base 2, and the interior of the base 2 is mounted with a plurality of parallelly distributed conveying assemblies 3 and a plurality of supporting assemblies 4; the conveying assemblies 3 are used to drive the glass to move, and the plurality of supporting assemblies 4 are distributed in the gaps of the plurality of conveying assemblies 3; when the glass moves, the plurality of supporting assemblies 4 are used to assist the movement of the glass, and when processing, the plurality of supporting assemblies 4 are used to unfold the PVB film to maintain good spreading quality and improve the quality of laminating.

[0048] Please refer to Figure 2 The bottom end of the processing box 1 inside is mounted with a detection module 5, and the detection module 5 includes four groups of horizontal movement modules, and the output end of each horizontal movement module is mounted with a laser module; the laser module is used to detect the position of the glass carrier plate;

[0049] Among them, two groups of horizontal movement modules are arranged along the moving direction of the conveying assembly 3, and two groups of horizontal movement modules are arranged perpendicular to the moving direction of the conveying assembly 3;

[0050] The conveying assembly 3 is provided with an assembly area on the upper side of the detection module 5; when assembling, the glass carrier plate moves to the assembly area, and the two groups of horizontal movement modules along the moving direction of the conveying assembly 3 are relatively moved to detect the edge position of the corresponding direction of the glass carrier plate; when the glass carrier plate is not in the designed position, the conveying assembly 3 is started to adjust the corresponding position of the glass carrier plate, and after adjustment, the middle line position Y of the glass carrier plate perpendicular to the moving direction of the conveying assembly 3 is recorded; Y divides the assembly area into area 1 and area 2, one side of which faces the moving direction of the conveying assembly 3, and the other side of which faces away from the moving direction of the conveying assembly 3;

[0051] Meanwhile, the two groups of horizontal movement modules arranged perpendicular to the moving direction of the conveying assembly 3 are relatively moved to detect and record the edge position of the corresponding direction of the glass carrier plate, so as to determine the moving distance of the first transfer assembly 12 in subsequent assembly;

[0052] The base plate glass box 7 includes a first communication box 71, and the top end of the first communication box 71 inside is mounted with a second driving assembly 72, and the output end of the second driving assembly 72 is mounted with a second transfer assembly 73;

[0053] The second transferring assembly 73 comprises a plurality of output downwardly arranged air cylinders, and a suction cup assembly is arranged between the outputs of each air cylinder, and the suction cup assembly is used for moving the glass from the first communicating box 71 to the upper side of the conveying assembly 3;

[0054] One side of the first communicating box 71 is communicated with the processing box 1, and a driving plate 74 is arranged at the inner bottom of the first communicating box 71, one end of the driving plate 74 extends to the side of the first communicating box 71 which is not communicated with the processing box 1, and a moving glass plate 75 is arranged at the output of the driving plate 74;

[0055] The moving glass plate 75 moves between the inside and outside of the first communicating box 71 based on the driving plate 74, and when moving to the outside of the first communicating box 71, the glass is conveniently stacked on the upper side of the moving glass plate 75.

[0056] Please refer to Figure 4 The support assembly 4 comprises two groups of horizontal driving seats 41 which are symmetrically arranged along the central axis of the conveying assembly 3, and a hydraulic rod 42 is arranged at the output of the horizontal driving seat 41;

[0057] The output of the hydraulic rod 42 is arranged upwardly, and a connecting seat 43 is arranged at the output of the hydraulic rod 42, a driving motor 44 is arranged in the connecting seat 43, the output of the driving motor 44 is arranged horizontally, and a first connecting wheel 45 is arranged at the output of the driving motor 44;

[0058] A telescopic assembly 46 is arranged in the first connecting wheel 45, the output of the telescopic assembly 46 is arranged horizontally, and a second connecting wheel 47 is arranged at the output of the telescopic assembly 46;

[0059] The second connecting wheel 47 moves horizontally based on the telescopic assembly 46 to adjust the distance between the second connecting wheel 47 and the first connecting wheel 45.

[0060] The first connecting wheel 45 and the second connecting wheel 47 are the same in size, and the top of the first connecting wheel 45 and the top of the second connecting wheel 47 extend to the upper side of the connecting seat 43.

[0061] Please refer to Figure 5 The cover glass box 8 comprises a second communicating box 81, the top of the side of the second communicating box 81 is communicated with the processing box 1, a first lifting assembly 82 is arranged in the second communicating box 81, the bottom of the first lifting assembly 82 extends to the outside of the bottom of the second communicating box 81 and supports the second communicating box 81, and a first lifting plate 83 is arranged at the output of the first lifting assembly 82;

[0062] The first lifting plate 83 moves between the inside and the bottom of the second communicating box 81 based on the first lifting assembly 82. When the first lifting plate 83 is located at the lower side of the second communicating box 81, the staff can stack the cover glass on the upper side of the first lifting plate 83. After the first lifting plate 83 rises based on the first lifting assembly 82, the stacked cover glass is lifted into the second communicating box 81, so as to facilitate the first transfer assembly 12 to move it into the processing box 1.

[0063] The second communicating box 81 is internally provided with a plurality of stroke cylinders 85, the output ends of the plurality of stroke cylinders 85 are all directed to the central part of the second communicating box 81, and each of the plurality of stroke cylinders 85 is provided with a limiting plate 86;

[0064] The first lifting plate 83 is provided with a plurality of sliding grooves 84 on the side surface, and the distribution positions of the plurality of sliding grooves 84 are the same as those of the plurality of limiting plates 86;

[0065] After the cover glass is lifted into the second communicating box 81, the plurality of limiting plates 86 are distributed on the respective side edges, and each limiting plate 86 is activated based on the corresponding stroke cylinder 85 to push the edge of the cover glass to align it.

[0066] Please refer to Figure 6 The laminating box 9 comprises a third communicating box 91 and a plurality of pressing members 95. The side surface of the third communicating box 91 is in communication with the processing box 1, the inside of the third communicating box 91 is internally provided with a second lifting assembly 94, the bottom of the second lifting assembly 94 extends to the outside of the bottom of the third communicating box 91 and supports the third communicating box 91, and the output end of the second lifting assembly 94 is provided with a second lifting plate 93;

[0067] The two sides of the bottom of the second lifting assembly 94 are provided with communicating warehouses 92, and the two groups of communicating warehouses 92 are respectively attached to the two sides of the second lifting plate 93;

[0068] The two ends of the second lifting plate 93 close to the communicating warehouses 92 are provided with protruding parts on the upper side;

[0069] The two sides of the top of the communicating warehouse 92 are provided with side expansion plates, and the two groups of side expansion plates are provided with moving paths on the two sides of the corresponding direction of the second lifting plate 93, for limiting the movement of the pressing members 95.

[0070] Please refer to Figure 7 The pressing member 95 comprises a rod body 951, the bottom of the rod body 951 is provided with a recessed part 952, and the top of the rod body 951 is provided with an adsorption part 953;

[0071] In use, the PVB film at the bottom layer is laid on the upper side of the second lifting plate 93, and the two ends are laid on the upper side of the two groups of protruding parts of the second lifting plate 93. The two adsorption parts 953 in the first group are respectively laid on the upper side of the two groups of protruding parts.

[0072] Subsequently, the second layer of PVB film is laid on the upper side of the two adsorption sites 953 in the first group, and the two adsorption sites 953 in the second group are respectively stacked on the upper side of the two pressing pieces 95 in the first group, and are adsorbed and fixed through the adsorption sites 953 on the upper side of the two pressing pieces 95 in the first group.

[0073] Working principle:

[0074] The carrier glass in the laminated glass is stacked on the upper side of the moving carrier 75 in the base plate glass box 7, and when the stack is moved, the moving carrier 75 is moved to the outside of the first communication box 71 by the driving plate 74, and after the stack is moved, the driving plate 74 moves the moving carrier 75 and the carrier glass to the inside of the first communication box 71;

[0075] The first lifting plate 83 in the cover plate glass box 8 is lowered to the outside of the second communication box 81 by the first lifting assembly 82, and the second lifting plate 93 in the laminated box 9 is lowered to the outside of the third communication box 91 by the second lifting assembly 94;

[0076] After the cover plate glass is stacked on the upper side of the first lifting plate 83, the first lifting assembly 82 is started, and the first lifting plate 83 is lifted to the inside of the second communication box 81, and then the travel cylinder 85 is started, and the position of the cover plate glass is corrected by the limiting plate 86, so that it is stacked in the pre-set position, and when moving later, the problem of position deviation can be avoided;

[0077] After the PVB film is stacked on the second lifting plate 93, the second lifting assembly 94 is started, and the second lifting plate 93 is lifted to the inside of the third communication box 91;

[0078] During assembly, the second driving assembly 72 moves the second transfer assembly 73 to the pre-set position, and then the second transfer assembly 73 is started to adsorb the uppermost carrier glass, and then the second driving assembly 72 drives the second transfer assembly 73 and the carrier glass to move to the processing box 1, and the second transfer assembly 73 places the carrier glass on the conveying assembly 3, and the conveying assembly 3 is started to move to the pre-set assembly area;

[0079] After the position of the carrier glass is calibrated, the first driving assembly 11 moves the first transfer assembly 12 to the inside of the laminated box 9, and adsorbs the uppermost PVB film, and then lifts up, and when the PVB film is lifted, the pressing pieces 95 on both sides are moved to the corresponding direction communication bin 92 under the driving of the pressing pieces 95;

[0080] Subsequently, the first driving assembly 11 and the first transfer assembly 12 move the PVB film to the upper side of the carrier glass, the horizontal driving seat 41 in each supporting assembly 4 drives the hydraulic rod 42 to move until the hydraulic rod 42 moves to the outside of the edge of the carrier glass which is perpendicular to the moving direction of the conveying assembly 3;

[0081] After the PVB film is moved to the upper side of the carrier glass, the connecting seat 43 is activated to lift the second connecting wheel 47 and the first connecting wheel 45, the driving motor 44 in the supporting assembly 4 in region 1 drives the first connecting wheel 45 to rotate towards the moving direction of the conveying assembly 3, and the driving motor 44 in the supporting assembly 4 in region 2 drives the first connecting wheel 45 to rotate away from the moving direction of the conveying assembly 3;

[0082] After each first connecting wheel 45 and second connecting wheel 47 contacts the edge of the PVB film, the telescopic assembly 46 in each supporting assembly 4 is activated to move the second connecting wheel 47 to the outside of the edge of the PVB film to expand the edge of the PVB film;

[0083] Subsequently, the first transfer assembly 12 and the supporting assembly 4 are synchronously lowered to lay the PVB film on the upper side of the carrier glass, and then the cutting assembly 6 is activated to move along the edge of the carrier glass to cut the edge of the PVB film, and then the supporting assembly 4 is lowered to support the cut edge of the PVB film through the conveying assembly 3;

[0084] Subsequently, the first transfer assembly 12 is reset, and the first driving assembly 11 is moved to the cover glass box 8 to move the cover glass to the upper side of the carrier glass, and finally the first transfer assembly 12 is reset, and the assembled carrier glass and cover glass are moved by the conveying assembly 3 and the supporting assembly 4.

[0085] The above describes only the preferred specific embodiments of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can make equivalent replacement or change according to the technical solution and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. An assembling device for producing laminated glass, characterized by comprising: The utility model relates to a processing box (1) is installed with the base (2) in the bottom end inside, the inside of base (2) is installed with multiple side -by -side distribution transmission subassembly (3) and multiple support subassembly (4), multiple support subassembly (4) distribution in the gap of multiple transmission subassembly (3); Multiple support subassembly (4) are used for PVB glue to open it when assembling; Cutting assembly (6) is installed in the inside of processing box (1), and cutting assembly (6) is set up in the upside of base (2); Base glass box (7) is installed in one side of processing box (1) and is communicated with it, is used for moving base glass to processing box (1); Laminated box (9) is installed in one side of processing box (1) and is communicated with it, is used for containing the PVB sheet of stack setting; Cover glass box (8) is installed in one side of processing box (1) and is communicated with it, is used for containing the cover glass of stack setting; Connecting box (10) is connected with laminated box (9), cover glass box (8) and processing box (1), and first drive assembly (11) is installed in the inside of connecting box (10), and the output end of first drive assembly (11) is installed with first transfer assembly (12); First transfer assembly (12) moves between cover glass box (8), processing box (1) and laminated box (9) based on first drive assembly (11), moves the PVB sheet in the inside of laminated box (9) and the cover glass in the inside of cover glass box (8) to processing box (1); The base glass box (7) includes: First communication box (71) is communicated with processing box (1) on one side; Second drive assembly (72) is installed in the inside top of first communication box (71), and the output end of second drive assembly (72) is installed with second transfer assembly (73); Drive plate (74) is installed in the inside of first communication box (71), and one end of drive plate (74) extends to the outside of first communication box (71); Mobile base plate (75) is connected with the output end of drive plate (74), and moves between the inside and outside of first communication box (71) through drive plate (74); The support subassembly (4) includes two groups of horizontal drive seat (41), and the output end of horizontal drive seat (41) is installed with hydraulic rod (42); The top of hydraulic rod (42) is installed with connecting seat (43), and drive motor (44) is installed in the inside of connecting seat (43), and the output end of drive motor (44) is horizontally arranged, and is installed with first connecting wheel (45); The inside of first connecting wheel (45) is installed with telescopic assembly (46), and the output end of telescopic assembly (46) is horizontally arranged, and is installed with second connecting wheel (47); Second connecting wheel (47) moves horizontally based on telescopic assembly (46) to adjust the interval between it and first connecting wheel (45); The cover glass box (8) includes: Second communication box (81) is communicated with processing box (1) on the top of side surface; First lifting assembly (82) is connected with second communication box (81) on the top, and the output end of first lifting assembly (82) is installed with first lifting plate (83); ​ The gluing box (9) comprises: A third communication box (91) is communicated with the processing box (1) on the side; A second lifting assembly (94) is connected with the third communication box (91) on the top end, and a second lifting plate (93) is installed on the output end; The second lifting plate (93) is provided with a protruding part on the upper side of both ends close to the communication bin (92); A communication bin (92) is installed on both sides inside the second lifting assembly (94), and is attached to both sides of the second lifting plate (93); A plurality of pressing pieces (95) are divided into two groups, and the two groups of pressing pieces (95) are stacked on the upper side of the two protruding parts during use.

2. The assembling device for production of laminated glass according to claim 1, characterized in that, The first connecting wheel (45) and the second connecting wheel (47) are the same size, and the top of the first connecting wheel (45) and the second connecting wheel (47) extends to the upper side of the connecting seat (43).

3. The assembling device for production of laminated glass according to claim 1, characterized in that, A plurality of stroke cylinders (85) are installed inside the second communication box (81), the output ends of the plurality of stroke cylinders (85) are all towards the center of the second communication box (81), and a limiting plate (86) is installed; A plurality of sliding grooves (84) are formed on the side of the first lifting plate (83), and the distribution positions of the plurality of sliding grooves (84) are the same as the distribution positions of the plurality of limiting plates (86).

4. The assembling device for producing laminated glass according to claim 1, characterized in that, The pressing piece (95) comprises a rod body (951), a recess part (952) is formed on the bottom of the rod body (951), and an adsorption part (953) is arranged on the top of the rod body (951).

Citation Information

Patent Citations

  • Laminated glass assembling system

    CN116423961A