Hollow glass plate pressing machine

By introducing an inclined pressing mechanism and a rotating mechanism into the insulating glass panel press, the problem of glass sheet failure caused by incorrect glass sheet sequence and orientation was solved, achieving a more efficient production process.

CN223445439UActive Publication Date: 2025-10-17SHANDONG NATERGY ENERGY TECH CO LTD
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Patent Information

Application Number
CN202422857318.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-10-17
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing insulating glass panel presses cannot effectively handle the problem of failure in joining glass sheets due to incorrect order and orientation of the glass sheets.

Method used

A hollow glass plate press is designed, which includes an inclined first pressing mechanism and a rotating mechanism, which can flexibly receive and support incorrect glass sheets and realize the sheet closing operation by adjusting the angle of the rotating mechanism.

Benefits of technology

It improves the flexibility and compatibility of insulating glass production, ensuring that the glass sheets can be successfully assembled regardless of their order and orientation, thereby improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hollow glass plate pressing machine, and relates to the technical field of hollow glass production and manufacturing. The first press-fit mechanism and the second press-fit mechanism are installed on the base and oppositely arranged, the first press-fit mechanism and the second press-fit mechanism can move towards each other and move away from each other, the first press-fit mechanism is obliquely arranged, and the side, facing the second press-fit mechanism, of the first press-fit mechanism can receive and support first glass; the rotating mechanism is installed on the second pressing mechanism, located between the first pressing mechanism and the second pressing mechanism and capable of rotating relative to the second pressing mechanism so that the second pressing mechanism can have two angle positions, the rotating mechanism is obliquely arranged at the first angle position, and the rotating mechanism is obliquely arranged at the second angle position; the side, facing the first pressing mechanism, of the second pressing mechanism can receive and support second glass. And at the second angle position, the rotating mechanism can attach the second glass to the first glass on the first pressing mechanism. According to the invention, two pieces of glass with wrong sequence can be received and the laminating operation can be completed.
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Description

Technical Field

[0001] The utility model relates to the technical field of hollow glass production and manufacturing, in particular to a hollow glass plate press. Background Art

[0002] Insulating glass, composed of two or more layers of flat glass, not only offers excellent thermal insulation but also effectively prevents sound transmission, making it widely used in modern architecture. The main manufacturing steps include glass cleaning, molecular sieve filling, butyl sealant application, spacer frame installation, panel assembly, and a second coat of sealant.

[0003] In the prior art, the order in which each sheet of glass is assembled into an insulating glass unit is determined by the order in which the sheets were loaded. Any incorrect order or orientation (for example, the surface of low-profile glass is generally required to face the hollow side) will result in the glass being unqualified or scrapped. In existing insulating glass presses, a receiving mechanism on one side first receives a sheet of glass, then transfers it horizontally to the receiving mechanism on the opposite side. It then receives another sheet of glass and combines the two sheets to form an insulating glass unit. If the two sheets of glass are received in the wrong order or facing the wrong direction, at least one sheet of glass in the resulting insulating glass unit will be facing the wrong direction. Current insulating glass presses are unable to overcome these problems. Utility Model Content

[0004] In order to overcome the above-mentioned defects of the prior art, the technical problem to be solved by the embodiments of the present invention is to provide a hollow glass plate press, which can receive two pieces of glass in the wrong order and complete the joining operation.

[0005] The specific technical solution of the embodiment of the utility model is:

[0006] A hollow glass plate press, comprising:

[0007] base;

[0008] A first pressing mechanism and a second pressing mechanism are mounted on the base and are arranged opposite to each other, the first pressing mechanism and the second pressing mechanism are capable of moving toward and away from each other, the first pressing mechanism is arranged obliquely, and a side of the first pressing mechanism facing the second pressing mechanism can receive and support the first glass;

[0009] A rotating mechanism is installed on the second pressing mechanism, and is located between the first pressing mechanism and the second pressing mechanism. The rotating mechanism can rotate relative to the second pressing mechanism to have two angular positions. In the first angular position, the rotating mechanism is arranged obliquely and can receive and support the second glass on one side of the first pressing mechanism. In the second angular position, the rotating mechanism can adhere the second glass to the first glass on the first pressing mechanism.

[0010] Preferably, the base has a track portion, and at least one of the first pressing mechanism and the second pressing mechanism is installed on the track portion, so that the first pressing mechanism and the second pressing mechanism can move towards each other and move away from each other on the track portion.

[0011] Preferably, the hollow glass plate pressing machine comprises:

[0012] A transmission mechanism and a driving motor. The driving motor drives the transmission mechanism to drive the first pressing mechanism and the second pressing mechanism to move towards each other and move away from each other on the track portion.

[0013] The transmission mechanism comprises at least one lead screw. The lead screw extends along the direction in which the first pressing mechanism and the second pressing mechanism move towards each other. One of the first pressing mechanism and the second pressing mechanism has a threaded hole, and the other has a through hole. The lead screw passes through the threaded hole and the through hole. The driving motor can drive the lead screw to rotate forward and reverse.

[0014] Preferably, the lead screw is a plurality of lead screws. At least part of the lead screws are located at the upper ends of the first pressing mechanism and the second pressing mechanism, and at least part of the lead screws are located at the lower ends of the first pressing mechanism and the second pressing mechanism.

[0015] Preferably, the lead screw is fixedly installed with a wheel body.

[0016] The transmission mechanism further comprises a transmission belt. The transmission belt is wound around the wheel body on each lead screw and the wheel body installed on the rotating shaft of the driving motor, so as to drive all the lead screws to rotate through the transmission belt.

[0017] Preferably, the rotating mechanism is connected with the second pressing mechanism in a hinged manner.

[0018] Preferably, the first pressing mechanism comprises:

[0019] A first pressing plate.

[0020] a first conveying mechanism arranged at a lower end of the first pressing plate, the first conveying mechanism being capable of telescopic movement in a direction perpendicular to the first pressing plate, and when the first conveying mechanism is extended, it can support the first glass plate next to the first pressing plate from below and move it in the conveying direction.

[0021] Preferably, the first pressing plate has a first suction cup on a side thereof facing the second pressing mechanism for sucking the glass.

[0022] Preferably, the rotating mechanism comprises:

[0023] a second pressing plate, the second pressing plate having a second suction cup on a side thereof facing the first pressing mechanism for sucking the glass;

[0024] a second conveying mechanism arranged at a lower end of the second pressing plate, the second conveying mechanism being capable of telescopic movement in a direction perpendicular to the second pressing plate, and when the second conveying mechanism is extended, it can support the second glass plate next to the second pressing plate from below and move it in the conveying direction when the rotating mechanism is at the first angle position.

[0025] Preferably, the hollow glass plate pressing machine further comprises:

[0026] a first sealing mechanism and a second sealing mechanism, the first sealing mechanism and the second sealing mechanism being respectively used for sealing two opposite sides of the first glass plate and the second glass plate to be pressed together;

[0027] an inflating mechanism, the inflating mechanism being used for inflating one of the other two opposite sides of the first glass plate and the second glass plate to be pressed together.

[0028] The technical scheme of the utility model has the following remarkable beneficial effects:

[0029] The first pressing mechanism and the rotating mechanism of the hollow glass plate pressing machine in the application can directly receive the glass that needs to be spliced, so when the glass that is first transported has a lowe side facing the rotating mechanism, the first pressing mechanism can directly receive the glass and support it to prevent it from turning on its side because the first pressing mechanism is inclined. When the glass that is later transported has a lowe side facing the first pressing mechanism, the rotating mechanism is switched to the first angle position, and the rotating mechanism can directly receive the glass and support it to prevent it from turning on its side because the rotating mechanism is inclined. When the glass on the first pressing mechanism and the glass on the rotating mechanism need to be spliced, the rotating mechanism is switched to the second angle position, and the glass on the rotating mechanism is basically parallel to the glass on the first pressing mechanism at this time. Then, the first pressing mechanism and the second pressing mechanism are controlled to move towards each other to realize the splicing operation of the two pieces of glass. If the glass that is first transported has a lowe side facing the first pressing mechanism, the rotating mechanism is switched to the first angle position first, and the rotating mechanism directly receives the glass and supports it to prevent it from turning on its side. When the glass that is later transported has a lowe side facing the rotating mechanism, the first pressing mechanism directly receives the glass and supports it to prevent it from turning on its side. When the glass on the first pressing mechanism and the glass on the rotating mechanism need to be spliced, the specific operation is the same as above and will not be repeated here. Therefore, whether the glass with a lowe side facing the rotating mechanism or the glass with a lowe side facing the first pressing mechanism is transported first, the hollow glass plate pressing machine can realize the splicing operation of two pieces of glass, can improve the flexibility and compatibility of production, and can effectively improve the production efficiency of hollow glass. BRIEF DESCRIPTION OF DRAWINGS

[0030] The drawings described herein are for illustrative purposes only and are not intended to limit the scope of the present disclosure in any way. In addition, the shapes and proportions of the components in the drawings are only illustrative and are used to help understand the present disclosure and are not specific limitations on the shapes and proportions of the components of the present disclosure. Those skilled in the art can choose various possible shapes and proportions to implement the present disclosure according to specific circumstances under the guidance of the present disclosure.

[0031] Figure 1 A structure diagram of the hollow glass plate pressing machine in the embodiment of the present disclosure;

[0032] Figure 2 A diagram of the hollow glass plate pressing machine receiving the second glass in the embodiment of the present disclosure;

[0033] Figure 3 A diagram of the hollow glass plate pressing machine receiving the first glass in the embodiment of the present disclosure;

[0034] Figure 4 It is the schematic view that the hollow glass plate presser is going to press the first glass and the second glass in the embodiment of the utility model.

[0035] The reference signs of the above drawing:

[0036] 1, base; 11, track part; 2, first pressing mechanism; 21, first pressing plate; 22, first conveying mechanism; 3, second pressing mechanism; 4, rotating mechanism; 41, second pressing plate; 411, second suction cup; 42, second conveying mechanism; 5, driving motor; 6, transmission mechanism; 61, screw; 611, wheel body; 62, transmission belt; 7, first sealing mechanism; 8, inflation mechanism; 100, first glass; 200, second glass. DETAILED DESCRIPTION

[0037] The details of the utility model can be understood more clearly in combination with the description of the specific embodiment of the utility model and the drawings. However, the specific embodiment of the utility model described herein is only used for the purpose of explaining the utility model, and cannot be understood as the limitation of the utility model in any way. Under the guidance of the utility model, the skilled person can conceive any possible deformation based on the utility model, and these should be regarded as belonging to the scope of the utility model.

[0038] In order to be able to receive two pieces of glass with incorrect sequence and complete the splicing operation, a hollow glass plate presser is provided in the application, Figure 1 It is the structural schematic view of the hollow glass plate presser in the embodiment of the utility model, Figure 2 It is the schematic view that the hollow glass plate presser receives the second glass in the embodiment of the utility model, Figure 3 It is the schematic view that the hollow glass plate presser receives the first glass in the embodiment of the utility model, Figure 4 It is the schematic view that the hollow glass plate presser is going to press the first glass and the second glass in the embodiment of the utility model, as Figures 1 to 4As shown, the hollow glass plate press can include: a base 1; oppositely arranged first and second pressing mechanisms 2 and 3 mounted on the base 1, the first and second pressing mechanisms 2 and 3 being capable of moving towards each other and moving away from each other, the first pressing mechanism 2 being obliquely arranged, and the side of the first pressing mechanism 2 facing the second pressing mechanism 3 being capable of receiving and supporting the first glass 100; a rotating mechanism 4 mounted on the second pressing mechanism 3, the rotating mechanism 4 being located between the first and second pressing mechanisms 2 and 3, and the rotating mechanism 4 being capable of rotating relative to the second pressing mechanism 3 to have two angular positions, in the first angular position, the rotating mechanism 4 is obliquely arranged, and the side of the rotating mechanism 4 facing the first pressing mechanism 2 is capable of receiving and supporting the second glass 200; in the second angular position, the rotating mechanism 4 is capable of abutting the second glass 200 with the first glass 100 on the first pressing mechanism 2.

[0039] In the present application, the first pressing mechanism 2 and the rotating mechanism 4 of the hollow glass plate press can directly receive the glass that needs to be spliced, so when the first glass that is transported first has the lowe side facing the rotating mechanism 4, at this time, the first pressing mechanism 2 can directly receive the glass and support it to prevent it from turning on its side, because the first pressing mechanism 2 is obliquely arranged; when the second glass that is transported later has the lowe side facing the first pressing mechanism 2, at this time, the rotating mechanism 4 is switched to the first angular position, and the rotating mechanism 4 can directly receive the glass and support it to prevent it from turning on its side, because the rotating mechanism 4 is obliquely arranged. When the glass on the first pressing mechanism 2 and the glass on the rotating mechanism 4 need to be spliced, the rotating mechanism 4 needs to be switched to the second angular position, at this time, the glass on the rotating mechanism 4 is basically parallel to the glass on the first pressing mechanism 2, and then the first and second pressing mechanisms 2 and 3 are controlled to move towards each other, thereby realizing the splicing operation of the two glasses. If the first glass that is transported first has the lowe side facing the first pressing mechanism 2, the rotating mechanism 4 is switched to the first angular position first, and the rotating mechanism 4 directly receives the glass and supports it to prevent it from turning on its side. When the second glass that is transported later has the lowe side facing the rotating mechanism 4, the first pressing mechanism 2 directly receives the glass and supports it to prevent it from turning on its side. When the glass on the first pressing mechanism 2 and the glass on the rotating mechanism 4 need to be spliced, the specific operation is the same as above, and will not be described here. Therefore, whether the glass with the lowe side facing the rotating mechanism 4 or the glass with the lowe side facing the first pressing mechanism 2 is transported first, the hollow glass plate press can realize the splicing operation of the two glasses, can improve the flexibility and compatibility of production, and effectively improves the production efficiency of the hollow glass.

[0040] As Figures 1 to 4As shown, the base 1 is provided with a track portion 11, and at least one of the first pressing mechanism 2 and the second pressing mechanism 3 is mounted on the track portion 11, so that the first pressing mechanism 2 and the second pressing mechanism 3 can move towards each other and move away from each other on the track portion 11. As a possibility, the track portion 11 can extend in a direction having an included angle with the horizontal direction. The track portion 11 can be one or multiple, so that the stability of the movement of the first pressing mechanism 2 and / or the second pressing mechanism 3 on the track portion 11 can be improved.

[0041] In order to enable the first pressing mechanism 2 and the second pressing mechanism 3 to move towards each other and move away from each other, the hollow glass plate pressing machine can comprise a driving unit for driving the first pressing mechanism 2 and the second pressing mechanism 3 to move towards each other and move away from each other. The driving unit can take various forms, for example, it can take the form of a driving motor 5, or it can take the form of a hydraulic pump or an air pump, etc.

[0042] In a specific embodiment, as shown, Figures 1 to 4 The driving unit can comprise a transmission mechanism 6 and a driving motor 5. The driving motor 5 drives the transmission mechanism 6 to move, so that the transmission mechanism 6 drives the first pressing mechanism 2 and the second pressing mechanism 3 to move towards each other and move away from each other on the track portion 11. The transmission mechanism 6 can comprise at least one lead screw 61, the lead screw 61 extending in the direction in which the first pressing mechanism 2 and the second pressing mechanism 3 move towards each other, one of the first pressing mechanism 2 and the second pressing mechanism 3 having a threaded hole, and the other having a through hole, the lead screw 61 passing through the threaded hole and the through hole, and the driving motor 5 being able to drive the lead screw 61 to rotate in the forward direction and in the reverse direction, so that the pressing mechanism with the threaded hole moves.

[0043] The lead screw 61 can be multiple, at least part of the lead screws 61 being located at the upper end of the first pressing mechanism 2 and the second pressing mechanism 3, and at least part of the lead screws 61 being located at the lower end of the first pressing mechanism 2 and the second pressing mechanism 3. In this way, the movement force exerted by the lead screws 61 on the pressing mechanism can be more evenly distributed, so as to improve the smoothness of movement.

[0044] In order to enable one driving motor 5 to drive multiple lead screws 61 to rotate synchronously, the lead screw 61 can be fixedly provided with a wheel body 611. The transmission mechanism 6 can comprise a transmission belt 62, the transmission belt 62 being wound around the wheel body 611 on each lead screw 61 and the wheel body 611 mounted on the rotating shaft of the driving motor 5, so that all the lead screws 61 are driven to rotate by the transmission belt 62. When the driving motor 5 rotates, multiple lead screws 61 can be driven to rotate in the same direction synchronously by the transmission belt.

[0045] As shown, Figures 2 to 4As shown, the first pressing mechanism 2 can be tilted so that the side thereof facing the second pressing mechanism 3 can receive and support the first glass 100. In other words, the angle between the side of the first pressing mechanism 2 facing away from the second pressing mechanism 3 and the horizontal plane is less than 90 degrees, so that the side of the first pressing mechanism 2 facing the second pressing mechanism 3 can receive and support the first glass 100.

[0046] In order to enable one side of the first pressing mechanism 2 to receive and support the first glass 100, it is feasible to Figures 2 to 4 As shown, the first pressing mechanism 2 may include: a first pressing plate 21; and a first conveying mechanism 22 disposed at the lower end of the first pressing plate 21. The first conveying mechanism 22 is capable of telescopic movement in a direction perpendicular to the first pressing plate 21. When extended, the first conveying mechanism 22 supports the first glass 100 against the first pressing plate 21 from below and moves it in the conveying direction. The first conveying mechanism 22 may be in the form of rollers or a conveyor belt, thereby supporting the glass from below and driving it in a direction perpendicular to the paper. The first pressing plate 21 supports the glass from the side to prevent it from tipping over.

[0047] like Figures 1 to 4 As shown, the first pressing mechanism 2 may further include: a first conveying mechanism 22 driving unit, which is used to drive the first conveying mechanism 22 to telescopically move in a direction perpendicular to the first pressing plate 21. The first conveying mechanism 22 driving unit may be in the form of a motor in conjunction with a rack or gear, or in the form of a hydraulic pump or an air pump, etc., and is not limited in this application.

[0048] Alternatively, the first pressing plate 21 may have a first suction cup on the side facing the second pressing mechanism 3 for holding the glass. When the first suction cup holds the glass, the glass will not fall off the first pressing plate 21. Of course, since the first pressing mechanism 2 is tilted, the first pressing plate 21 is also tilted, so the first suction cup may not be installed on the first pressing plate 21.

[0049] like Figures 1 to 4As shown, the rotating mechanism 4 is installed on the second pressing mechanism 3, and the rotating mechanism 4 is located between the first pressing mechanism 2 and the second pressing mechanism 3. The rotating mechanism 4 can be rotated relative to the second pressing mechanism 3 so that it has two angular positions. As a feasible method, the rotating mechanism 4 can be hingedly connected to the second pressing mechanism 3. In order to drive the rotating mechanism 4 to rotate relative to the second pressing mechanism 3, the hollow glass plate press includes: a rotating mechanism 4 driving unit, and the rotating mechanism 4 driving unit can be in the form of a motor with a rack and a gear, or in the form of a hydraulic pump or an air pump, etc., and is not subject to any restrictions in this application. The upper end of the rotating mechanism 4 is hingedly connected to the upper end of the second pressing mechanism 3 and can be adjusted by the rotating mechanism 4 driving unit. The distance between the lower end of the rotating mechanism 4 and the lower end of the second pressing mechanism 3 can adjust the rotation angle between the rotating mechanism 4 and the second pressing mechanism 3.

[0050] In the first angular position, the rotating mechanism 4 is tilted, and its side facing the first pressing mechanism 2 can receive and support the second glass 200. That is, the angle between the side of the rotating mechanism 4 facing the first pressing mechanism 2 and the horizontal plane to its right is greater than 90 degrees, so that the side of the rotating mechanism 4 facing the first pressing mechanism 2 can receive and support the second glass 200. In the second angular position, the rotating mechanism 4 can bond the second glass 200 to the first glass 100 on the first pressing mechanism 2. That is, the angle between the side of the rotating mechanism 4 facing the first pressing mechanism 2 and the horizontal plane to its right is less than 90 degrees, and it can be substantially parallel to the first pressing plate 21. Angle A is the angle at which the rotating mechanism 4 rotates from the first angular position to the second angular position.

[0051] In order to prevent the glass from falling when the rotating mechanism 4 is in the second angular position, Figures 1 to 4 As shown, the rotating mechanism 4 may include: a second pressing plate 41, with a second suction cup 411 for holding the glass on the side facing the first pressing mechanism 2; and a second conveying mechanism 42 disposed at the lower end of the second pressing plate 41, capable of telescopic movement in a direction perpendicular to the second pressing plate 41. Specifically, when the rotating mechanism 4 is in the first angular position, when the second conveying mechanism 42 is extended, it can support the second glass 200 against the second pressing plate 41 from below and move it in the conveying direction. Thereafter, the second suction cup 411 can hold the second glass 200. The rotating mechanism 4 then switches to the second angular position to prepare for the glass joining. Due to the action of the second suction cup 411, the second glass 200 will not fall toward the first pressing plate 21 due to the angle of the second pressing plate 41.

[0052] like Figure 4As shown, the rotating mechanism 4 can further include a second conveying mechanism 42 driving unit for driving the second conveying mechanism 42 to move in the direction perpendicular to the second pressing plate 41. The second conveying mechanism 42 driving unit can adopt the form of motor cooperating with rack and pinion, or the form of hydraulic pump or air pump, etc., which is not limited in the present application.

[0053] As feasible, as ​ As shown, the hollow glass plate pressing machine can include a first sealing mechanism 7 and a second sealing mechanism, respectively, for sealing the two opposite side edges of the juxtaposed first glass 100 and second glass 200 to be pressed; an inflation mechanism 8 for inflating one of the other two opposite side edges of the juxtaposed first glass 100 and second glass 200 to be pressed. Generally, the first sealing mechanism 7 and the second sealing mechanism are respectively used to seal the two opposite left and right side edges of the juxtaposed first glass 100 and second glass 200 to be pressed. The inflation mechanism 8 is used to inflate one of the other two opposite upper and lower side edges of the juxtaposed first glass 100 and second glass 200 to be pressed.

[0054] The hollow glass plate press machine operates as follows: before receiving the glass, the rotating mechanism 4 is switched to the first angle position, the second conveying mechanism 42 is driven by the second conveying mechanism 42 driving unit to extend, and the first conveying mechanism 22 is driven by the first conveying mechanism 22 driving unit to extend. When the first glass 100 is conveyed first, the lowe side of the glass faces the rotating mechanism 4. At this time, the first pressing plate 21 of the first pressing mechanism 2 is inclinedly arranged, so that it can directly receive the glass. For example, the glass is moved to the appropriate position by the first conveying mechanism 22, and the glass is supported by the first pressing plate 21 to prevent it from turning on its side, and the first conveying mechanism 22 supports the glass from below. When the second glass 200 is conveyed later, the lowe side of the glass faces the first pressing mechanism 2. At this time, the second pressing plate 41 of the rotating mechanism 4 is inclinedly arranged, so that it can directly receive the glass. For example, the glass is moved to the appropriate position by the second conveying mechanism 42, and the glass is supported by the second pressing plate 41 to prevent it from turning on its side, and the second conveying mechanism 42 supports the glass from below. When the glass on the first pressing mechanism 2 and the glass on the rotating mechanism 4 need to be laminated, the glass on the second pressing plate 41 is first sucked by the second suction cup 411, and then the rotating mechanism 4 is switched to the second angle position. At this time, the glass on the rotating mechanism 4 is basically parallel to the glass on the first pressing mechanism 2. Then, the second conveying mechanism 42 is retracted by the second conveying mechanism 42 driving unit to prevent the second conveying mechanism 42 from interfering with the first conveying mechanism 22. Since the glass on the second pressing plate 41 is already sucked by the second suction cup 411, the glass will not fall because it is not supported by the second conveying mechanism 42 from below. As a possible option, if the first pressing plate 21 has a first suction cup, the first suction cup can also be used to suck the glass on the first pressing plate 21, and then the first conveying mechanism 22 is retracted by the first conveying mechanism 22 driving unit. Then, the first pressing mechanism 2 and the second pressing mechanism 3 are controlled to move towards each other, for example, by driving the plurality of lead screws 61 to rotate synchronously to drive the first pressing mechanism 2 and the second pressing mechanism 3 to move towards each other. In this process, the first glass 100 and the second glass 200 to be laminated are sealed by the first sealing mechanism 7 and the second sealing mechanism. Then, the inflation mechanism 8 is used to inflate one of the other two opposite sides of the first glass 100 and the second glass 200 to be laminated. After inflation is completed, the first pressing mechanism 2 and the second pressing mechanism 3 continue to move towards each other to realize the laminating plate pressing operation of the two glasses.

[0055] If the glass transported first has the lowe side facing the first pressing mechanism 2, the rotating mechanism 4 directly receives the glass first and supports the glass. If the glass transported later has the lowe side facing the rotating mechanism 4, the glass is directly received by the first pressing mechanism 2 and supported. When the glass on the first pressing mechanism 2 and the glass on the rotating mechanism 4 need to be spliced, the specific operation is the same as above, and will not be repeated here.

[0056] As feasible, the hollow glass plate pressing machine in the application can be used alone or in cooperation with the glass conveying device in the application with the application number 202422555074.3. The glass conveying device can be located upstream of the hollow glass plate pressing machine to convey glass to the hollow glass plate pressing machine. The glass conveying device can adjust the facing side of the glass as needed, and can also adjust the order of the glass on the production line. Through the cooperation of the hollow glass plate pressing machine and the glass conveying device, the flexibility and compatibility of production can be further improved, and the production efficiency of the hollow glass can be further improved.

[0057] All articles and references disclosed, including patent applications and publications, are incorporated herein by reference for all purposes. The term "consisting essentially of to describe combinations shall include the elements, ingredients, components or steps identified, and such other elements, ingredients, components or steps that do not materially affect the basic and novel characteristics of the combinations. The use of the term "comprising" or "including" to describe combinations herein is also intended to cover embodiments consisting essentially of the elements, ingredients, components or steps. The use of the term "may" to describe any aspect of this disclosure is intended to mean that any attribute described in connection with the attribute is optional. Multiple elements, ingredients, components or steps can be provided by a single integrated element, ingredient, component or step. Alternatively, a single integrated element, ingredient, component or step can be divided into separate multiple elements, ingredients, components or steps. The disclosure "one" or "an" to describe an element, ingredient, component or step does not mean to exclude other elements, ingredients, components or steps.

[0058] Each of the embodiments in the specification is described in a progressive manner, and each embodiment focuses on the difference from other embodiments. The same and similar parts between the embodiments can be referred to each other. The above embodiments are only for illustrating the technical concept and characteristics of the utility model, and the purpose is to enable those skilled in the art to understand the content of the utility model and implement it, and it cannot limit the protection scope of the utility model. Any equivalent changes or modifications made according to the spirit and essence of the utility model shall be covered within the protection scope of the utility model.

Claims

1. A hollow glass plate press, characterized in that: The hollow glass plate press comprises: base; A first pressing mechanism and a second pressing mechanism are mounted on the base and are arranged opposite to each other, the first pressing mechanism and the second pressing mechanism are capable of moving toward and away from each other, the first pressing mechanism is arranged obliquely, and a side of the first pressing mechanism facing the second pressing mechanism can receive and support the first glass; A rotating mechanism is installed on the second pressing mechanism, and the rotating mechanism is located between the first pressing mechanism and the second pressing mechanism. The rotating mechanism can rotate relative to the second pressing mechanism so that it has two angular positions. In the first angular position, the rotating mechanism is tilted, and the side facing the first pressing mechanism can receive and support the second glass; in the second angular position, the rotating mechanism can bond the second glass to the first glass on the first pressing mechanism.

2. The hollow glass plate press according to claim 1, characterized in that: The base has a track portion, and at least one of the first pressing mechanism and the second pressing mechanism is installed on the track portion, so that the first pressing mechanism and the second pressing mechanism can move toward and away from each other on the track portion.

3. The hollow glass plate press according to claim 2, characterized in that: The hollow glass plate press comprises: a transmission mechanism and a drive motor, wherein the drive motor drives the transmission mechanism to operate so that the transmission mechanism drives the first pressing mechanism and the second pressing mechanism to move toward and away from each other on the track portion; The transmission mechanism includes: at least one screw, which extends along the direction of movement of the first pressing mechanism and the second pressing mechanism towards each other, one of the first pressing mechanism and the second pressing mechanism has a threaded hole, and the other has a through hole, and the screw passes through the threaded hole and the through hole, and the drive motor can drive the screw to rotate forward and reverse.

4. The hollow glass plate press according to claim 3, characterized in that: There are multiple lead screws, at least some of which are located at the upper ends of the first pressing mechanism and the second pressing mechanism, and at least some of which are located at the lower ends of the first pressing mechanism and the second pressing mechanism.

5. The hollow glass plate press according to claim 3, characterized in that: A wheel body is fixedly mounted on the lead screw; The transmission mechanism further includes a transmission belt, which is wound around the wheel body on each of the lead screws and the wheel body installed on the rotating shaft of the drive motor, thereby driving all the lead screws to rotate through the transmission belt.

6. The hollow glass plate press according to claim 1, characterized in that: The rotating mechanism is hingedly connected to the second pressing mechanism.

7. The hollow glass plate press according to claim 1, characterized in that: The first pressing mechanism includes: first pressing plate; A first conveying mechanism is arranged at the lower end of the first pressure plate. The first conveying mechanism can be telescopically moved in a direction perpendicular to the first pressure plate. When the first conveying mechanism is extended, it can support the first glass against the first pressure plate from below and move it in the transmission direction.

8. The hollow glass plate press according to claim 7, characterized in that: The first pressing plate has a first suction cup on one side facing the second pressing mechanism for sucking the glass.

9. The hollow glass plate press according to claim 1, characterized in that: The rotating mechanism comprises: a second pressing plate, wherein the second pressing plate has a second suction cup for sucking the glass on a side facing the first pressing mechanism; A second conveying mechanism is arranged at the lower end of the second pressure plate, and the second conveying mechanism can be telescopically moved in a direction perpendicular to the second pressure plate; when the rotating mechanism is in the first angular position, when the second conveying mechanism is extended, it can support the second glass against the second pressure plate from below and move it in the transmission direction.

10. The hollow glass plate press according to claim 1, characterized in that: The hollow glass plate press also includes: a first sealing mechanism and a second sealing mechanism, wherein the first sealing mechanism and the second sealing mechanism are respectively used to seal two opposite sides of the first glass and the second glass to be pressed in parallel; An inflation mechanism is used to inflate one of the other two opposite sides of the first glass and the second glass that are arranged side by side to be pressed into sheets.

Citation Information

Patent Citations

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    CN223315957U