A vacuum glass continuous production line equipment

By using an automatic glass assembly system and hydraulic cylinder positioning technology, the problem of glass displacement in vacuum glass production line equipment has been solved, enabling high-quality vacuum glass production.

CN118459119BActive Publication Date: 2025-11-04QINGDAO GUANGLI NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202410566109.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-09
Publication Date
2025-11-04
Estimated Expiration
2044-05-09

AI Technical Summary

Technical Problem

In the existing vacuum glass production line equipment, improper force during the lamination and sealing process can easily cause glass displacement, affecting production quality.

Method used

An automatic glass clamping system is used, which uses two sets of opposing first and second clamping devices to clamp the glass and positions it with hydraulic cylinders and support rollers. The system combines adsorption wheels and elastic materials to reduce glass damage. The glass position is adjusted using hydraulic cylinders and gear transmission systems, and telescopic pressing air discs and nozzles are added to clean impurities.

Benefits of technology

It effectively prevents the glass from shifting during the sealing process, improves production quality, reduces glass surface damage, and increases production efficiency and product consistency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a kind of vacuum glass continuous production line equipment, including sequentially arranged feeding system, glass sheeting machine, cleaning and drying system, automatic sheeting system, glue cloth powder system, vacuum pumping system, high temperature heating system, first vacuum automatic cooling system, second vacuum automatic cooling system, automatic detection system and packaging system;The automatic sheeting system is provided with a support frame, and a first sheeting device is installed on the support frame, and a second sheeting device is arranged on one side of the first sheeting device, and the first sheeting device and the second sheeting device are oppositely arranged.The application adds an adsorption wheel, and the adsorption wheel is made of elastic material, which avoids the direct contact of the first sheeting device with the glass surface, reducing the possibility of damage to the glass surface.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of vacuum glass manufacturing, in particular to a kind of vacuum glass continuous production line equipment. BACKGROUND

[0002] Vacuum glass is sealed after two glass sheets are sealed around, and an opening for vacuum extraction is left on the upper glass sheet or the lower glass sheet, and the air between the two glass sheets is extracted from the vacuum extraction opening, and the vacuum extraction opening is sealed after the extraction operation is completed.

[0003] The existing vacuum glass production line includes a glass sheet feeding machine, a glass sheet combining system, a glass cleaning and drying system, a glass tempering system, a glue coating and powdering system, a vacuum degassing system and a cooling system.

[0004] However, the glass sheet combining system in the existing vacuum glass continuous production line equipment either directly uses manual sheet combining and sticking, or uses a mechanical claw to take down the glass and directly place it on a support frame to combine the two glass sheets and seal the glue. During the sealing process, if the force is not appropriate, glass displacement is likely to occur, which greatly affects the production quality of vacuum glass.

[0005] Therefore, how to solve the defects in the above technical solutions has become one of the problems to be solved in the technical field of vacuum glass manufacturing. SUMMARY

[0006] In view of the problems in the background art, the present application aims to overcome the shortcomings of the prior art and provide a vacuum glass continuous production line equipment to solve the problem that the existing vacuum glass is prone to glass displacement during the sheet combining and sealing process, which greatly affects the production quality of vacuum glass.

[0007] The present application is achieved by the following technical solutions. The present application discloses a kind of vacuum glass continuous production line equipment, including sequentially arranged feeding system, glass sheet feeding machine, cleaning and drying system, automatic sheet combining system, glue coating and powdering system, vacuum system, high temperature heating system, first vacuum automatic cooling system, second vacuum automatic cooling system, automatic detection system and packaging system;It is characterized in that,

[0008] The vacuum system and the high temperature heating system are connected to form a degassing unit, the first vacuum automatic cooling system and the second vacuum automatic cooling system are connected to form a cooling unit, and the cleaning and drying system, the automatic detection system and the packaging system are connected through a conveying system;

[0009] The automatic sheet combining system is provided with a support frame, and a first sheet combiner is installed on the support frame, a second sheet combiner is provided on one side of the first sheet combiner, and the first sheet combiner and the second sheet combiner are oppositely arranged.

[0010] Optionally, the first splicer is provided with at least one set of mounting rods, and the mounting rods are provided with at least one set of second mounting seats, and the second mounting seats are provided with suction wheels.

[0011] Optionally, the automatic splicing system further comprises a first support frame, and the first support frame is provided with at least one set of first support rollers.

[0012] Optionally, the support frame is provided with at least two sets of first hydraulic cylinders, and the first hydraulic cylinders are provided with an adjusting system at the extending end, and the adjusting system comprises a receiving plate, and the receiving plate is provided with a second splicer; thereby realizing the connection between the first splicer and the second splicer.

[0013] Optionally, the adjusting system comprises a fixed plate, and the fixed plate is mounted on the extending end of the first hydraulic cylinder;

[0014] The adjusting system further comprises a gear transmission system, and the gear transmission system is driven by a hand wheel.

[0015] Optionally, the bevel gear shaft of the gear transmission system is connected to a screw rod through a shaft coupling, and the screw rod is provided with a moving part,

[0016] The moving part is provided with an adjusting seat, and the adjusting seat is provided with an adjusting plate.

[0017] Optionally, the adjusting plate is provided with a receiving plate, and the receiving plate close to the second splicer is fixedly installed on the second splicer through a connecting part.

[0018] Optionally, the receiving plate is provided with at least one set of telescopic pressing air discs, and the telescopic pressing air discs comprise a second hydraulic cylinder, and the extending end of the second hydraulic cylinder is mounted on a first mounting seat of the pressing air disc.

[0019] Optionally, the support frame away from the first support roller is provided with a connecting rod, and the connecting rod is provided with a telescopic support roller, and the telescopic support roller comprises a fourth hydraulic cylinder, and the fourth hydraulic cylinder is provided with a roller shaft at the extending end.

[0020] Optionally, the first mounting seat is connected to a cavity through an adjusting bolt, the cavity is provided with a nozzle, the other end of the nozzle extends through the pressing air disc, and the other end of the nozzle is connected to an air pipe.

[0021] A vacuum glass production process, the steps are:

[0022] (1) Glass pretreatment, according to the actual processing requirement, grinding, oil removal, cleaning and drying of glass, laying support, obtaining pretreated glass;

[0023] (2) Joining: Joining the two sets of glass together on an automatic joining system;

[0024] (3) Apply adhesive tape powder and sealant to the four glass pieces;

[0025] (4) The glass is sent into the vacuum system for vacuum sealing to form vacuum glass;

[0026] (5) The vacuum glass is heated using a high-temperature heating system, and the sealant around the vacuum glass is compacted.

[0027] (6) The vacuum glass after compression sealing is transported to the first vacuum automatic cooling system and the second vacuum automatic cooling system to cool the sealed vacuum glass.

[0028] (7) Inspect and package the vacuum glass.

[0029] In summary, the beneficial effects of this invention are:

[0030] (1) The present invention clamps two sets of glass using two sets of opposing first and second clamps; and by fixing at least one set of first support rollers on the first support frame near the first hydraulic cylinder, the bottom end face of the glass is supported and dragged by the first support rollers with protective sleeves; at the same time, by activating the second hydraulic cylinder, the extended end of the second hydraulic cylinder extends and drives the pressing air plate to abut against the glass of the second clamp; and by activating the fourth hydraulic cylinder, the extended end of the fourth hydraulic cylinder extends and drives the rollers to extend, so that the lateral position of the glass is limited during installation, thereby greatly preventing positional displacement during the sealing process.

[0031] (2) By adding an adsorption wheel, and the adsorption wheel being made of an elastic material, the present invention avoids reducing the direct contact between the first separator and the glass surface, thereby reducing the possibility of damage to the glass surface. Attached Figure Description

[0032] Figure 1 This is a schematic diagram of the overall structure of an embodiment of a vacuum glass continuous production line equipment according to the present invention;

[0033] Figure 2 This is a schematic diagram of an automatic lamination system provided in an embodiment of a vacuum glass continuous production line equipment according to the present invention;

[0034] Figure 3 For the present invention Figure 2 Enlarged view of the structure at position A shown in the diagram;

[0035] Figure 4 For the present invention Figure 2 Exploded view of the adjustment system;

[0036] Figure 5 This is a schematic diagram of the telescopic pressing air plate structure provided in an embodiment of a vacuum glass continuous production line equipment of the present invention;

[0037] Figure 6 This is a schematic diagram of the pressing air plate structure provided in an embodiment of a vacuum glass continuous production line equipment according to the present invention;

[0038] Figure 7 A two-dimensional diagram of the pressing air plate provided for an embodiment of a vacuum glass continuous production line equipment according to the present invention;

[0039] Figure 8 For the present invention Figure 2 Enlarged view of the adsorption wheel structure shown;

[0040] Figure 9 For the present invention Figure 1 The enlarged view of the structure at the roller position shown.

[0041] Figure label:

[0042] 1. Feeding system;

[0043] 2. Glass loading machine;

[0044] 3. Clean the drying system;

[0045] 4. Automatic film assembly system; 041. Support frame; 042. Mounting rod; 0421. Second mounting base; 0422. Adsorption wheel;

[0046] 043. First wafer clamper; 044. Connecting rod; 045. Second wafer clamper;

[0047] 046. Telescopic support roller; 0461. Fourth hydraulic cylinder; 0462. Roller shaft;

[0048] 047. First support roller; 048. First hydraulic cylinder;

[0049] 5. Adhesive coating and powder coating system;

[0050] 6. Vacuum system;

[0051] 7. High-temperature heating system;

[0052] 8. First vacuum automatic cooling system;

[0053] 9. Second vacuum automatic cooling system;

[0054] 10. Automatic detection system;

[0055] 11. The packaging system of claim 1, wherein the first and second containers are configured to be stacked on top of each other.

[0056] 12. The adjustment system of claim 1, wherein the hand wheel is connected to the gear system, the fixed plate is connected to the moving piece, the screw is connected to the moving piece, the adjustment seat is connected to the moving piece, the sliding rail is connected to the moving piece, the adjustment plate is connected to the moving piece, and the receiving plate is connected to the moving piece.

[0057] 13. The telescopic pressing air disc of claim 1, wherein the supporting ear plate is connected to the second hydraulic cylinder, the pressing air disc is connected to the second hydraulic cylinder, the nozzle is connected to the second hydraulic cylinder, the cavity is connected to the second hydraulic cylinder, the adjusting bolt is connected to the second hydraulic cylinder, the air pipe is connected to the second hydraulic cylinder, and the first mounting seat is connected to the second hydraulic cylinder.

[0058] 14. The protection piece of claim 1, wherein the first protection piece is connected to the second protection piece.

[0059] 17. The conveying system of claim 1, wherein the first conveying device is connected to the second conveying device. DETAILED DESCRIPTION

[0060] In the description of the present application, the description of the terms "certain embodiments", "one embodiment", "some embodiments", "example", "specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the present application and the features of the different embodiments or examples without contradiction.

[0061] In the present application, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance; the term "multiple" refers to two or more than two, unless otherwise explicitly limited. The terms "mounting", "connecting", "connecting", "fixing" and the like should be broadly understood, for example, "connecting" can be fixed connection, can also be detachable connection, or integrally connected; "connected" can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0062] In order to make the purposes, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the drawings and specific embodiments. Although exemplary embodiments are disclosed in the drawings, it should be understood that the present application can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided so as to make the present application more thoroughly and completely understood by those skilled in the art, and to enable the concept of the present application to be fully conveyed to those skilled in the art.

[0063] Referring to Figures 1 to 9 An embodiment of the present application provides a vacuum glass continuous production line equipment, which comprises a feeding system 1, a glass sheet feeding machine 2, a cleaning and drying system 3, an automatic sheet combining system 4, a glue coating and powdering system 5, a vacuum pumping system 6, a high-temperature heating system 7, a first vacuum automatic cooling system 8, a second vacuum automatic cooling system 9, an automatic detection system 10 and a packaging system 11 arranged in sequence.

[0064] The vacuum pumping system 6 and the high-temperature heating system 7 are connected to form a degassing unit, the first vacuum automatic cooling system 8 and the second vacuum automatic cooling system 9 are connected to form a cooling unit, and the cleaning and drying system 3, the automatic detection system 10 and the packaging system 11 are connected through a conveying system 17.

[0065] The conveying system 17 comprises a conveying roller, and the conveying system 17 is continuously operated by motor driving. Since it is prior art, no detailed description is given here. The feeding system 1, the glass sheet feeding machine 2, the cleaning and drying system 3, the automatic sheet combining system 4, the glue coating and powdering system 5, the vacuum pumping system 6, the high-temperature heating system 7, the first vacuum automatic cooling system 8, the second vacuum automatic cooling system 9, the automatic detection system 10 and the packaging system 11 are all provided with conveying rollers connected to each other.

[0066] Those skilled in the art should understand that, in actual application, the input ports of the vacuum pumping system 6 and the high-temperature heating system 7 are both provided with a feeding table and a feeding lifting table. The glass is lifted and conveyed to the feeding table through the feeding lifting table, and the sealing door of the vacuum pumping system 6 is opened in the process of driving the vacuum glass to advance through the feeding table. The feeding table is connected to the conveying system of the low-vacuum pumping system 6, and the vacuum pumping is performed in the vacuum pumping system 6 until the corresponding standard is reached, and then the sealing door between the vacuum pumping system 6 and the high-temperature heating system 7 is opened. Since the conveying system of the vacuum pumping system 6 is connected to the conveying system of the high-temperature heating system 7, the vacuum glass is directly conveyed to the high-temperature heating system 7 for continuous work. Similarly, the vacuum glass is conveyed to the cooling unit for automatic cooling by using the conveying system connected to the cooling unit.

[0067] Referring to Figure 2As shown in the figure, the automatic splicing system 4 is provided with a support frame 041, and a first splicer 043 is fixedly installed on the support frame 041, and a second splicer 045 is arranged on one side of the first splicer 043, and the first splicer 043 and the second splicer 045 are oppositely arranged, and a glass is placed between the two groups of splicers.

[0068] Further, at least one group of mounting rods 042 is fixedly installed on the first splicer 043, and at least one group of second mounting seats 0421 is fixedly installed on the mounting rod 042, and an adsorption wheel 0422 is arranged on the second mounting seat 0421, and the adsorption wheel 0422 is made of elastic material, such as rubber. By the adsorption wheel 0422 made of elastic material, the direct contact of the first splicer 043 with the surface of the glass is avoided, and the possibility of damage to the surface of the glass is reduced.

[0069] Further, at least one group of first support roller shafts 047 is fixedly installed on the first support frame 041 near the position of the first hydraulic cylinder 048, and a protective sleeve is sleeved on the first support roller shaft 047, and the protective sleeve is made of soft material. By sleeving the protective sleeve on the first support roller shaft 047, the bottom end face of the glass is supported, and the protective sleeve is made of soft material, thereby reducing the possibility of damage to the glass.

[0070] Please refer to Figure 2 、 Figure 3 As shown in the figure, at least two groups of first hydraulic cylinders 048 are fixedly installed on the support frame 041, and an adjusting system 12 is fixedly installed on the extending end of the first hydraulic cylinder 048, and a receiving plate 129 is fixedly installed on the top end of the adjusting system 12, and a second splicer 045 is fixedly installed on the side end face of the receiving plate 129; thereby realizing the connection between the first splicer 043 and the second splicer 045.

[0071] In this embodiment, two groups of glasses are clamped by the oppositely arranged first splicer 043 and the second splicer 045.

[0072] Further, the adjusting system 12 is provided with a fixed plate 123, and the fixed plate 123 is fixedly installed on the extending end of the first hydraulic cylinder 048, and the fixed installation can be fixedly connected by means of fastening screws, fastening bolts, etc.

[0073] In this example, by starting the first hydraulic cylinder 048, the fixed plate 123 is moved by the extension of the extending end of the first hydraulic cylinder 048.

[0074] Further, the adjusting system 12 further comprises a gear transmission system 122 driven by the hand wheel 121, the gear transmission system 122 adopts a bevel gear transmission system, the bevel gear shaft of the gear transmission system 122 is connected with the screw rod 125 through a shaft coupling, and the screw rod 125 is provided with a moving piece 124, so that the screw rod 125 and the moving piece 124 are cooperatively used to form a screw transmission.

[0075] In the embodiment, the hand wheel 121 is rotated, and then the screw rod 125 is driven to rotate by the gear transmission system 122, so that the moving piece 124 is moved up and down on the screw rod 125.

[0076] Further, the moving piece 124 is provided with an adjusting seat 126 fixedly installed through a fastening screw, and the adjusting seat 126 is provided with an adjusting plate 128 fixed in position through a fastening bolt.

[0077] Further, in actual application, the hand wheel 121 can be replaced by a driving system, such as a rotary motor, according to actual needs.

[0078] Further, the adjusting plate 128 is provided with a receiving plate 129, and the receiving plate 129 and the adjusting plate 128 are detachably connected; the receiving plate 129 close to the second laminator 045 is fixedly connected with the second laminator 045 through a connecting piece, and the connecting piece can be connected in a manner of a fastening screw or a fastening bolt.

[0079] In the embodiment, when laminating two groups of glass, workers need to continuously adjust the position of the glass placed on the first laminator, so that the two pieces of glass are completely matched and correspondingly arranged, but in the process of adjustment, the laminating is performed manually, which is low in efficiency and easy to deviate. Therefore, the second laminator and the adjusting system 12 are additionally arranged, in actual application, the first hydraulic cylinder 048 is started, the extending end of the first hydraulic cylinder drives the second laminator installed on the adjusting system to move, when the first laminator and the second laminator are adjusted to the appropriate position, the second hydraulic cylinder is closed, and the second piece of glass is placed on the second laminator by the glass laminating machine 2, the specific arrangement of the laminator is not described in detail here, because it is prior art, and then the second hydraulic cylinder is started, the second laminator is driven by the second hydraulic cylinder to move towards the position of the first laminator for laminating. In the laminating process, if it is necessary to adjust the position of the second piece of glass, the hand wheel 121 is only needed to be rotated, the gear transmission system 122 is driven by the hand wheel 121 to drive the moving piece 124 to linearly displace on the screw rod 125, the second laminator installed on the receiving plate is driven by the moving piece 124 to move, so that the position of the second piece of glass is adjusted.

[0080] Please refer to Figure 2 and Figure 4 As shown in the figure, when the two groups of glass are completed, the sealing is carried out, and if the force is improper during the sealing, the glass is easily displaced, which greatly affects the production quality of the vacuum glass.

[0081] The receiving plate 129 is fixedly installed with at least one set of telescopic pressing air disc 13 through fastening screws, the telescopic pressing air disc 13 comprises a second hydraulic cylinder 132, and the extending end of the second hydraulic cylinder 132 is installed on the first mounting seat 139 of the pressing air disc 133. The pressing air disc can be commonly used in the market.

[0082] Further, the connecting rod 044 is fixedly connected on the support frame away from the first support roller shaft 047 through the connecting plate, and the telescopic support roller 046 is fixedly installed on the connecting rod 044. The telescopic support roller 046 is provided with a mounting plate, and the mounting plate is fixedly installed on the connecting rod 044 through fastening screws. The fourth hydraulic cylinder 0461 is fixedly installed on the mounting plate through fastening screws, and the extending end of the fourth hydraulic cylinder 0461 is provided with a roller shaft 0462. The roller shaft 0462 is sleeved with a rubber sleeve, and the roller shaft and the fourth hydraulic cylinder are detachably connected.

[0083] In this embodiment, when the two groups of glass are completed, before sealing, the second hydraulic cylinder 132 is started first, and the extending end of the second hydraulic cylinder 132 is extended, and the pressing air disc 133 is driven to abut against the glass of the second splicer.

[0084] At the same time, the fourth hydraulic cylinder 0461 is started, and the extending end of the fourth hydraulic cylinder 0461 is extended, and then the roller shaft 0462 is extended, so that the glass is limited in the lateral position during installation, and the position deviation during sealing is prevented.

[0085] In the actual application process of this embodiment, fluff and impurities are easily generated on the pressing air disc, which makes the pressing air disc unable to be well adsorbed on the glass. In order to solve the above problem, please refer to Figure 6 and Figure 7As shown, the first mounting base 139 is connected with the cavity 135 through the adjusting bolt 136, the cavity 135 is internally provided with the spray head 134, the spray head 134 is arranged in an inverted triangular shape, the other end of the spray head 134 extends through the pressing air disc 133, the spray head and the pressing air disc are in sealing connection, the other end of the spray head 134 is communicated with the air pipe 137, the electromagnetic control valve (not annotated in the figure) is arranged on the air pipe 137, and the air pipe 137 is communicated with the gas conveying system; in actual application, when the electromagnetic control valve is closed, the pressing air disc is in the working state, and the pressing air disc and the glass are in the negative pressure state.

[0086] In the embodiment, when the pressing air disc is in the working state, the electromagnetic control valve is in the closed state; when the pressing air disc needs to be cleaned, the electromagnetic control valve is in the open state, the gas conveying system is used to convey the gas into the air pipe, the gas is sprayed out through the spray head, and then the lint and other impurities on the pressing air disc are blown away, so that the impurities on the air disc cannot cause the pressing air disc to be firmly adsorbed on the glass.

[0087] Further, the pressing air disc 133 is made of rubber material, and a plurality of protrusions are arranged on the pressing air disc, so as to increase the friction.

[0088] A vacuum glass production process, which comprises the following steps:

[0089] (1) glass pretreatment, according to actual processing requirements, the glass is ground, deoiled, washed and dried, and a support is laid, so as to obtain the pretreated glass;

[0090] (2) gluing, two groups of glass are glued on the automatic gluing system;

[0091] (3) powder coating, the sealing powder and the sealing glue are coated on the four pieces of glass;

[0092] (4) the glass is sent into the vacuum pumping system to perform vacuum packaging, so as to form the vacuum glass;

[0093] (5) the vacuum glass is heated by using the high-temperature heating system, and the sealing glue around the vacuum glass is compacted;

[0094] (6) the vacuum glass after packaging is conveyed into the first vacuum automatic cooling system and the second vacuum automatic cooling system to cool the vacuum glass after packaging;

[0095] (7) the vacuum glass is detected and packaged.

[0096] The use process and working principle of the application are as follows:

[0097] When the automatic assembling system 4 assembles two groups of glass, first, the first glass is placed on the first assembling device 043 by the glass placing machine 2, then the first hydraulic cylinder 048 is started to drive the second assembling device installed on the adjusting system to move, when the first assembling device and the second assembling device are adjusted to the appropriate position, the second hydraulic cylinder is closed, and the second glass is placed on the second assembling device by the glass placing machine 2;

[0098] The second hydraulic cylinder is started to drive the second assembling device to move towards the position of the first assembling device for assembling. In the process of assembling, if the position of the second glass needs to be adjusted, at this time, only the hand wheel 121 is rotated to drive the gear transmission system 122 to drive the moving piece 124 to move linearly on the screw rod 125, and the second assembling device installed on the receiving plate is driven to move to adjust the position of the second glass.

[0099] Finally, it should be noted that the above examples are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the examples, those skilled in the art should understand that modifications or equivalent replacements of the technical solutions of the present application do not deviate from the spirit and scope of the present application, and they should be covered in the scope of the claims of the present application.

Claims

1. A vacuum glass continuous production line equipment, comprising, in sequence, a feeding system, a glass loading machine, a cleaning and drying system, an automatic glass assembly system, an adhesive coating and powder application system, a vacuum system, a high-temperature heating system, a first vacuum automatic cooling system, a second vacuum automatic cooling system, an automatic detection system, and a packaging system; characterized in that, The automatic laminating system includes a support frame, on which a first laminating device is mounted. The system further includes a first support frame with at least one set of first support rollers mounted on it. At least two sets of first hydraulic cylinders are mounted on the support frame. An adjustment system is installed at the extended end of each first hydraulic cylinder. The adjustment system includes a receiving plate, on which a second laminating device is mounted, thus connecting the first and second laminating devices. The adjustment system also includes a fixing plate, which is mounted to the extended end of the first hydraulic cylinder. The adjustment system further includes a gear transmission system driven by a handwheel. The bevel gear shaft of the gear transmission system is connected via… A coupling connects to a screw, and a movable part is provided on the screw. An adjusting seat is installed on the movable part, and an adjusting plate is provided on the adjusting seat. A receiving plate is provided on the adjusting plate and is installed on the second assembly via a connecting part. At least one set of telescopic pressing air discs is also installed on the receiving plate. The telescopic pressing air discs include a second hydraulic cylinder, and the extended end of the second hydraulic cylinder is installed on a first mounting seat of the pressing air disc. A connecting rod is provided on a support frame away from the first support roller shaft, and a telescopic support roller is installed on the connecting rod. The telescopic support roller includes a fourth hydraulic cylinder, and a roller shaft is provided on the extended end of the fourth hydraulic cylinder, and a rubber sleeve is fitted on the roller shaft.

2. The vacuum glass continuous production line equipment according to claim 1, characterized in that, The first piece combiner is equipped with at least one set of mounting rods, and at least one set of second mounting seats are mounted on the mounting rods. The second mounting seats are provided with adsorption wheels, which are made of elastic material.

3. The vacuum glass continuous production line equipment according to claim 2, characterized in that, The first mounting base is connected to the cavity via adjusting bolts. The cavity is equipped with a nozzle. The nozzle is arranged in an inverted triangle shape. The other end of the nozzle extends through the pressing air plate. The other end of the nozzle is connected to an air pipe. The air pipe is equipped with an electromagnetic control valve. The nozzle and the pressing air plate are connected in a sealed manner.

4. The vacuum glass continuous production line equipment according to claim 1, characterized in that, The vacuum system and the high-temperature heating system are connected to form a degassing unit. The first and second automatic vacuum cooling systems are connected to form a cooling unit. It is also connected to the cleaning and drying system, automatic detection system, and packaging system via a conveying system.

5. The vacuum glass continuous production line equipment according to claim 1, characterized in that, The first and second slicers are positioned opposite each other.

Citation Information

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