Hollow glass glue sealing device

By introducing a carrier plate and longitudinal and transverse insertion shaft structure into the insulating glass sealing device, the glass rotation adjustment is automated, solving the problem of inconvenient operation caused by unreasonable positioning structure and improving the efficiency of sealing operation.

CN224253299UActive Publication Date: 2026-05-19SICHUAN XINRUICHENG GLASS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SICHUAN XINRUICHENG GLASS CO LTD
Filing Date
2025-02-09
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The positioning structure and structural design of the existing insulating glass sealing device are unreasonable, which means that the rotating load-bearing structure needs to be manually tightened and loosened before and after rotation adjustment, which is inconvenient to operate and affects the efficiency of sealing operation.

Method used

It adopts a bearing plate and longitudinal and transverse insert shaft structure. Through the power transmission of the longitudinal support square rod and the transverse support drive rod, the bearing plate is automatically tightened and loosened, simplifying the glass steering adjustment steps. And through the cooperation of the L-shaped glue gun with the bearing plate, the glue application operation is automatically completed.

Benefits of technology

It improves the efficiency of glass steering adjustment, simplifies the operation steps, and enhances the overall glue application efficiency of the sealing device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a glue sealing device for hollow glass, which relates to the technical field of glue sealing devices and is characterized in that a hook-shaped supporting plate is welded on the top end part of a vertical supporting column, a vertical and horizontal inserting shaft is mounted above the longitudinal supporting part of the hook-shaped supporting plate in a pushing and sliding manner through a spring, and the vertical and horizontal inserting shaft is used for inserting and fixing a bearing disc; a transverse supporting track plate is welded to the tail end of the hook-shaped supporting plate, the transverse supporting track plate is sleeved with a sliding sleeve in a sliding mode, an L-shaped glue gun is installed on the sliding sleeve in a sliding mode, and a longitudinal supporting square rod is welded to the vertical part of the L-shaped glue gun; a transverse support driving rod is jointly mounted at the tops of the two end parts of the transverse support track plate in a sliding manner; the tail end of the longitudinal supporting square rod is in sliding abutting contact with the transverse supporting driving rod. And the tail end of the vertical and horizontal inserting shaft is fixedly connected with the middle part of the cross arm driving rod. Through the power transmission of the longitudinal support square rod and the transverse support driving rod, the longitudinal and transverse insertion shaft can automatically loosen and tighten the bearing disc by utilizing the sliding driving force that the L-shaped glue gun is close to and contacted with the bearing disc and is far away from the vacant position through pulling, inserting and sliding.
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Description

Technical Field

[0001] This utility model relates to the field of sealing device technology, and in particular to a sealing device for insulating glass. Background Technology

[0002] During the manufacturing process of insulated glass, adhesive needs to be applied to the sides of the glass to seal the glass and the metal retaining frame. Applying adhesive to the sides of the glass requires an insulated glass sealing device.

[0003] To facilitate the rotation and adjustment of multiple sides of the glass to the position of the glue gun for individual glue application, the sealing device is equipped with a rotating bearing structure for adjusting the rotation of the glass. In addition, to facilitate the positioning of the rotating bearing structure, the sealing device is also equipped with a positioning structure for positioning the rotating bearing structure.

[0004] The installation method and structural design of the positioning structure on the existing sealing device are not reasonable enough. As a result, before and after the rotation adjustment of the rotating bearing structure, it is necessary to manually tighten or loosen it. This is cumbersome and inconvenient to operate. It not only reduces the rotation adjustment efficiency of the rotating bearing structure, but also indirectly affects the overall efficiency of the sealing operation. Utility Model Content

[0005] In view of this, the present invention provides a sealing device for insulating glass, which at least to some extent solves the problem that the installation form and structural design of the positioning structure are not reasonable enough, resulting in the need to manually tighten or loosen the rotating bearing structure before and after rotation adjustment, which is troublesome and inconvenient to operate.

[0006] The technical solution proposed by this utility model is: a sealing device for insulating glass, specifically including: a base and glass, wherein a vertical support is welded to the center of the top of the base, and a bearing plate is rotatably installed on the top of the vertical support, the bearing plate being used to support the glass.

[0007] A hook-shaped support plate is welded to the top of the vertical support column. A longitudinal and transverse insert shaft is slidably mounted above the longitudinal support portion of the hook-shaped support plate via a spring. The longitudinal and transverse insert shafts are used to connect and fix the bearing plate. A transverse support track plate is welded to the tail end of the hook-shaped support plate. A sliding sleeve is slidably fitted onto the transverse support track plate, and an L-shaped glue gun is slidably mounted on the sliding sleeve. A longitudinal support square rod is welded to the vertical portion of the L-shaped glue gun. A transverse support drive rod is slidably mounted on the top of both ends of the transverse support track plate. The tail end of the longitudinal support square rod slides against the transverse support drive rod. In use, the L-shaped glue gun slides towards the glass and abuts against the side of the glass. The tail ends of the longitudinal and transverse insert shafts are fixedly connected to the middle portion of the transverse support drive rod.

[0008] Furthermore,

[0009] The top of the sliding sleeve is welded with a square sleeve, and the longitudinal support square rod slides through the square sleeve by being pushed by a spring.

[0010] Furthermore,

[0011] The bearing plate has four positioning holes arranged in a ring on its circumferential side surface, and the first end of the longitudinal and transverse insert shafts can be selectively inserted into the four positioning holes.

[0012] Furthermore,

[0013] The top part of the vertical support column is welded with a U-shaped longitudinal bracing frame that supports the hook-shaped support plate.

[0014] The top longitudinal support of the U-shaped longitudinal support frame is located above the bearing plate, and a vertical threaded shaft is screwed through and installed at the front end.

[0015] Furthermore,

[0016] A pressure plate is rotatably mounted at the bottom end of the vertical threaded shaft. The pressure plate and the bearing plate are located on the same central axis, and the pressure plate is in contact with the top of the glass.

[0017] Furthermore,

[0018] A valve is installed at the top of the vertical part of the L-shaped glue gun.

[0019] Furthermore,

[0020] The L-shaped glue gun is connected to an external glue supply device via a glue guiding hose.

[0021] The insulating glass sealing device provided by this utility model has the following beneficial effects:

[0022] 1. The carrier plate is used to adjust the direction of the glass so that all sides of the glass can be rotated one by one toward the L-shaped glue gun for glue application. With the carrier plate, the glass can be rotated synchronously with the carrier plate by simply rotating the glass, which can easily and flexibly complete the direction adjustment operation. Therefore, the setting of the carrier plate can effectively simplify the glass direction adjustment steps and indirectly improve the overall glue application efficiency of the sealing device.

[0023] Second, through the power transmission of the longitudinal support rod and the transverse support drive rod, the longitudinal and transverse insertion shafts can use the sliding drive force of the L-shaped glue gun to move closer to the carrier plate and away from the empty space to automatically complete the tightening and loosening of the carrier plate. Compared with the existing technology, it eliminates the trouble of manually inserting and removing the longitudinal and transverse insertion shafts to tighten and loosen the carrier plate before and after the glass turning adjustment, which helps to improve the glass turning adjustment efficiency and indirectly optimizes the overall glue application efficiency of the sealing device. Attached Figure Description

[0024] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments will be briefly described below.

[0025] The accompanying drawings described below are only related to some embodiments of the present invention and are not intended to limit the scope of the present invention.

[0026] In the attached diagram:

[0027] Figure 1 This diagram shows the overall structure of the present invention in use.

[0028] Figure 2 This diagram shows the installation position of the U-shaped longitudinal support frame of this utility model;

[0029] Figure 3 A schematic diagram of the bottom structure of the present invention in its overall use state is shown;

[0030] Figure 4 A schematic diagram of the overall structure of this utility model is shown;

[0031] Figure 5 This diagram shows the installation position of the L-shaped glue gun according to this utility model;

[0032] Figure 6 A schematic diagram showing the disassembled state of the L-shaped glue gun of this utility model is provided.

[0033] List of reference numerals in the attached diagram:

[0034] 1. Base; 101. Vertical support column; 102. U-shaped longitudinal support frame; 103. Vertical threaded shaft; 1031. Pressure plate; 104. Hook-shaped support plate; 105. Longitudinal and transverse insert shafts; 106. Horizontal support track plate; 107. Horizontal support drive rod; 108. Sliding sleeve; 1081. Square sleeve;

[0035] 2. Glass;

[0036] 3. L-shaped glue gun; 301. Valve; 302. Longitudinal support square rod;

[0037] 4. Support plate. Detailed Implementation

[0038] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the described embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0039] Please refer to Figures 1 to 6 ;

[0040] Example 1:

[0041] This embodiment proposes a sealing device for insulating glass, including: a base 1 and glass 2. A vertical support column 101 is welded to the center of the top of the base 1. A bearing plate 4 is rotatably installed on the top of the vertical support column 101. The bearing plate 4 is used to support and install the glass 2.

[0042] A hook-shaped support plate 104 is welded to the top of the vertical support column 101. A longitudinal and transverse insert shaft 105 is slidably installed above the longitudinal support portion of the hook-shaped support plate 104 by a spring push. The longitudinal and transverse insert shaft 105 is used to insert and fix the bearing plate 4. A transverse support track plate 106 is welded to the tail end of the hook-shaped support plate 104. A sliding sleeve 108 is slidably fitted on the transverse support track plate 106. An L-shaped glue gun 3 is slidably installed on the sliding sleeve 108. A longitudinal support square rod 302 is welded to the vertical part of the L-shaped glue gun 3. A transverse support drive rod 107 is slidably installed on the top of both ends of the transverse support track plate 106. The tail end of the longitudinal support square rod 302 slides against the transverse support drive rod 107. In use, the L-shaped glue gun 3 slides toward the glass 2 and abuts against the side of the glass 2. The tail end of the longitudinal and transverse insert shaft 105 is fixedly connected to the middle part of the transverse support drive rod 107.

[0043] The carrier plate 4 is used to adjust the direction of the glass 2 so that all sides of the glass 2 can be rotated one by one toward the L-shaped glue gun 3 for glue application. With the carrier plate 4, the glass 2 can drive the carrier plate 4 to rotate synchronously and complete the direction adjustment operation in a convenient and flexible manner by simply rotating the glass 2. Therefore, the setting of the carrier plate 4 can effectively simplify the direction adjustment steps of the glass 2 and indirectly improve the overall glue application efficiency of the sealing device.

[0044] When adjusting the direction of glass 2, the longitudinal and transverse inserts 105 need to be removed from the support plate 4, the support plate 4 needs to be released, and the L-shaped glue gun 3 needs to be moved away from the sliding space of glass 2 to avoid obstructing the direction of glass 2. During the adjustment of glass 2, when the L-shaped glue gun 3 moves away from the sliding space of glass 2, the longitudinal support rod 302 will slide along with the L-shaped glue gun 3 and push the transverse support drive rod 107 away from glass 2, thereby controlling the longitudinal and transverse inserts 105 to slide away from the support plate 4 and automatically releasing the support plate 4. When the longitudinal and transverse inserts 105 slide away from the support plate 4, the spring on them will be compressed. After the glass 2 has completed the adjustment, the L-shaped glue gun 3 slides towards glass 2 and comes into contact with the new side of glass 2 after adjustment. When applying glue to the new side, the longitudinal support rod 302 will slide along with the L-shaped glue gun 3. The longitudinal and transverse insertion shafts 105 slide and separate from the cross brace drive rod 107. After the longitudinal support square rod 302 separates from the cross brace drive rod 107, the longitudinal and transverse insertion shafts 105 lose the pulling and holding force from the L-shaped glue gun 3. They can be pushed and propelled by the compressed spring on them to slide towards the carrier plate 4, reset and insert into the carrier plate 4, and automatically perform insertion and positioning on the carrier plate 4. In this way, through the power transmission between the longitudinal support square rod 302 and the cross brace drive rod 107, the longitudinal and transverse insertion shafts 105 can use the sliding driving force of the L-shaped glue gun 3 and the carrier plate 4 to automatically complete the tightening and loosening of the carrier plate 4 by sliding and pulling. Compared with the existing technology, it eliminates the trouble of manually pulling and pulling the longitudinal and transverse insertion shafts 105 to tighten and loosen the carrier plate 4 before and after the glass 2 is turned, which helps to improve the turning adjustment efficiency of the glass 2 and indirectly optimizes the overall glue application efficiency of the sealing device.

[0045] Preferred,

[0046] A square sleeve 1081 is welded to the top of the sliding sleeve 108, and the longitudinal support square rod 302 slides through the square sleeve 1081 by spring push.

[0047] Preferred,

[0048] The circumferential side of the bearing disk 4 has four positioning holes arranged in a ring. The first part of the longitudinal and transverse insert shaft 105 can be selectively inserted into the four positioning holes.

[0049] The longitudinal and transverse insert shafts 105 are selectively inserted into the four positioning holes to position the bearing plate 4 and the glass 2 at the angle after the steering adjustment. The longitudinal and transverse insert shafts 105 are also inserted into the positioning holes to implement torsional limiting on the bearing plate 4 and the glass 2, so that the glass 2 can be stably and statically held at the top of the vertical support 101 to receive the glue from the L-shaped glue gun 3.

[0050] Based on Example 1, Example 2:

[0051] The top part of the vertical support column 101 is welded with a U-shaped longitudinal support frame 102 that supports the hook-shaped support plate 104; the top longitudinal support part of the U-shaped longitudinal support frame 102 is located above the bearing plate 4, and the first end is screwed with a vertical threaded shaft 103.

[0052] Preferred,

[0053] A pressure plate 1031 is rotatably mounted on the bottom end of the vertical threaded shaft 103. The pressure plate 1031 and the bearing plate 4 are located on the same central axis, and the pressure plate 1031 is in contact with the glass 2 under pressure.

[0054] The pressure plate 1031 is used to press and position the glass 2, and the vertical threaded shaft 103 is used to rotate forward and backward to drive the pressure plate 1031 to slide up and down, thereby tightening or loosening the glass 2.

[0055] Preferred,

[0056] A valve 301 is installed at the top of the vertical part of the L-shaped glue gun 3.

[0057] Preferred,

[0058] The L-shaped glue gun 3 is connected to an external glue supply device via a glue guiding hose.

[0059] The working principle of this embodiment is as follows: When in use, the glass 2 is lifted and placed on the top of the support plate 4, and the glass 2 is centered and pressed and positioned on the support plate 4 by the vertical threaded shaft 103 and the pressure plate 1031. Then, the valve 301 is opened and the external glue supply device is started. Then, the L-shaped glue gun 3 is slid toward the glass 2 so that the head end of the L-shaped glue gun 3 abuts against a side of the glass 2 facing the L-shaped glue gun 3. Then, the L-shaped glue gun 3 is slid back and forth along the cross support track plate 106 through the sliding sleeve 108 to apply the glue supplied by the head end of the L-shaped glue gun 3 to a side of the glass 2.

[0060] The carrier plate 4 is used to adjust the direction of the glass 2. By rotating the carrier plate 4, all the sides of the glass 2 can be rotated one by one toward the L-shaped glue gun 3 for glue application. With the carrier plate 4, the glass 2 can be rotated synchronously with the carrier plate 4 to complete the adjustment operation.

[0061] The longitudinal and transverse insert shafts 105 are selectively inserted into the four positioning holes to position the bearing plate 4 and the glass 2 at the angle after the steering adjustment. The longitudinal and transverse insert shafts 105 are also inserted into the positioning holes to implement torsional limiting on the bearing plate 4 and the glass 2, so that the glass 2 can be stably and statically held at the top of the vertical support 101 to receive the glue from the L-shaped glue gun 3.

[0062] The following points should be noted in this article:

[0063] 1. The accompanying drawings of this utility model embodiment only involve the structure involved in this utility model embodiment; other structures can refer to general designs.

[0064] 2. Where there is no conflict, the embodiments of this utility model and the features in the embodiments can be combined with each other to obtain new embodiments.

[0065] The above are merely specific embodiments of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. A sealing device for insulating glass, comprising: The base (1) and the glass (2) are provided. A vertical support column (101) is welded to the center of the top of the base (1). A bearing plate (4) is rotatably installed on the top of the vertical support column (101). The bearing plate (4) is used to support the glass (2). The feature is that a hook-shaped support plate (104) is welded to the top part of the vertical support column (101), and a longitudinal and transverse insertion shaft (105) is slidably installed above the longitudinal support part of the hook-shaped support plate (104) by a spring push, and the longitudinal and transverse insertion shaft (105) is used to insert and fix the bearing plate (4); a transverse support track plate (106) is welded to the tail end of the hook-shaped support plate (104), and a sliding sleeve (108) is slidably fitted on the transverse support track plate (106), and an L-shaped glue gun (3) is slidably installed on the sliding sleeve (108); The vertical part of the L-shaped glue gun (3) is welded with a longitudinal support square rod (302); the top of both ends of the horizontal support track plate (106) is slidably installed with a horizontal support drive rod (107); and the tail end of the longitudinal support square rod (302) slides against the horizontal support drive rod (107); the tail end of the longitudinal and transverse insert shaft (105) is fixedly connected to the middle part of the horizontal support drive rod (107); The top of the sliding sleeve (108) is welded with a square sleeve (1081), and the longitudinal support square rod (302) slides through the square sleeve (1081) by spring push.

2. The insulating glass sealing device according to claim 1, characterized in that, The bearing disk (4) has four positioning holes arranged in a ring on its circumferential side surface. The first end of the longitudinal and transverse insert shaft (105) can be inserted into the four positioning holes in an optional manner.

3. The insulating glass sealing device according to claim 1, characterized in that, The top part of the vertical support column (101) is welded with a U-shaped longitudinal support frame (102) that supports the hook-shaped support plate (104). The top longitudinal support portion of the U-shaped longitudinal support frame (102) is located above the bearing plate (4), and the first end is screwed with a vertical threaded shaft (103).

4. The insulating glass sealing device according to claim 3, characterized in that, The bottom end of the vertical threaded shaft (103) is rotatably mounted with a pressure plate (1031). The pressure plate (1031) and the bearing plate (4) are located on the same central axis, and the pressure plate (1031) and the glass (2) are in pressure contact.

5. The insulating glass sealing device according to claim 1, characterized in that, A valve (301) is installed at the top of the vertical part of the L-shaped glue gun (3).

6. The insulating glass sealing device according to claim 1, characterized in that, The L-shaped glue gun (3) is connected to an external glue supply device via a glue guiding hose.