Glass heating tool

By designing a glass heating fixture, the drive and heating components are used to automatically clamp and heat the wire and glass, solving the problems of low efficiency and poor sealing quality of manual extrusion sealing, and achieving a highly efficient sealing effect.

CN223982277UActive Publication Date: 2026-03-10FUYAO GLASS HUBEI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

The current method of manually squeezing and sealing the wire and glass is labor-intensive, inefficient, and produces poor sealing quality, posing safety hazards.

Method used

Design a glass heating fixture that uses a driving component to drive the movement of the clamping plate to clamp the glass and heat it through a heating component to achieve heating, extrusion and sealing between the clamping wire and the glass.

Benefits of technology

It improves sealing quality and efficiency, reduces labor intensity, and ensures sealing effect, showing good prospects for widespread application.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass heating tool which comprises a mounting seat, a driving part and a first clamping plate, the driving part and the first clamping plate are arranged on the mounting seat, the output end of the driving part is connected with a second clamping plate, the first clamping plate and the second clamping plate are oppositely arranged, and a distance is formed between the first clamping plate and the second clamping plate in the first direction; wherein heating pieces are arranged in the first clamping plate and / or the second clamping plate, and the driving piece is used for driving the second clamping plate to move in the first direction so as to be close to or away from the first clamping plate. The glass heating tool designed by the utility model can be effectively used in a scene in which a clamping wire is arranged in the glass, can heat, extrude and seal the clamping wire and the glass, is convenient to use, higher in efficiency and good in sealing quality, and has a good popularization prospect and application value.
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Description

Technical Field

[0001] This utility model relates to the technical field of heating devices, specifically a glass heating fixture. Background Technology

[0002] In recent years, with the rapid development of the automotive industry, in order to effectively achieve the defrosting and defogging functions of car windshields, manufacturers have cleverly embedded reinforcing wires into the glass interlayer during the glass production process. By connecting the reinforcing wires to a power source, the glass is heated, thereby achieving the defrosting and defogging effect.

[0003] In current technology, because the reinforcing wire has a certain thickness, it will form tiny gaps between the glass layers. Therefore, in order to prevent rainwater from seeping into the windshield through these gaps during car use and causing damage to the glass, sealant is usually applied to the interface between the reinforcing wire and the glass layers to seal the gaps and ensure waterproofing.

[0004] However, research has found that in actual production, even if sealant is applied to the interface between the wire and the glass interlayer, manual squeezing of the glass is still required to further enhance the adhesive strength and sealing performance of the sealant. This manual squeezing method is not only labor-intensive and inefficient, but also often results in poor sealing quality due to the difficulty in controlling the squeezing force and uniformity. This can easily leave safety hazards and have an adverse effect on the long-term use of the car windshield. Utility Model Content

[0005] The technical problem to be solved by this utility model is: This utility model discloses a glass heating fixture to solve the problems of high labor intensity, low efficiency and poor sealing quality caused by the existing manual squeezing and sealing of glass with wire clamps.

[0006] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: a glass heating fixture, comprising: a mounting base and a driving member and a first clamping plate disposed on the mounting base, wherein the output end of the driving member is connected to a second clamping plate, the first clamping plate and the second clamping plate are disposed opposite to each other, and the first clamping plate and the second clamping plate are spaced apart in a first direction; wherein, a heating element is provided in the first clamping plate and / or the second clamping plate, and the driving member is used to drive the second clamping plate to move in the first direction to move closer to or away from the first clamping plate.

[0007] As can be seen from the above technical solutions, even if sealant is applied to the interface between the wire and the glass interlayer, the glass still needs to be manually squeezed. This method of manually squeezing the glass has the problems of high labor intensity, low efficiency and poor sealing quality.

[0008] In this invention, a novel glass heating fixture is designed. This fixture can effectively use a driving component to drive the second clamping plate to move in a first direction, so as to approach the first clamping plate and ultimately clamp the glass between the first and second clamping plates, and continuously provide clamping force to the glass. At this time, since the first and / or second clamping plates are provided with heating components, the heating components will heat the first and / or second clamping plates, thereby indirectly heating the glass to achieve heating and clamping of the glass.

[0009] Based on this design, the glass heating fixture of this utility model can be effectively applied to scenarios where glass has embedded wires. It can heat, squeeze and seal the embedded wires and glass to ensure the sealing effect and sealing quality at the interface between the glass and the embedded wires. It has good prospects for promotion and application value.

[0010] Furthermore, in the glass heating fixture described in this utility model, the mounting base includes a first mounting plate and a second mounting plate, the first mounting plate is connected to the second mounting plate, and the first mounting plate extends along the first direction, while the second mounting plate extends along the second direction; wherein, the driving member is disposed on the first mounting plate, and the first clamping plate is disposed on the second mounting plate.

[0011] Furthermore, in the glass heating fixture described in this utility model, the second direction is arranged perpendicular to the first direction.

[0012] In the above technical solution of this utility model, in order to ensure that the second clamping plate connected to the output end of the drive component can move smoothly along the first direction without contacting the mounting base, in actual installation, the mounting base may specifically include: a first mounting plate extending along the first direction and a second mounting plate extending along the second direction, so that the second mounting plate can extend along the second direction and be used to mount the first clamping plate. In this case, it can be ensured that the second clamping plate can move smoothly in the first direction to approach or move away from the first clamping plate.

[0013] Of course, in some preferred embodiments, for ease of application, the second mounting plate can be specifically arranged perpendicular to the first mounting plate, that is, the second direction is perpendicular to the first direction.

[0014] Furthermore, the glass heating fixture described in this utility model also includes a connecting plate, the second clamping plate is connected to the connecting plate, and the connecting plate is connected to the output end of the driving component.

[0015] Furthermore, in the glass heating fixture described in this utility model, the second mounting plate and / or the connecting plate are also provided with limiting posts.

[0016] Furthermore, the glass heating fixture described in this utility model also includes a roller, which is rotatably fitted onto the limiting post.

[0017] In the above technical solution of this utility model, the reason for setting the limiting post on the second mounting plate and / or connecting plate is to block the glass from extending in. That is, when the user uses the glass heating fixture, he can place the fixture on one side of the glass interface and let the glass interface be located between the first clamping plate and the second clamping plate. At the same time, the limiting post is used to hold the edge of the glass to position the glass.

[0018] Accordingly, in practical applications, a roller can also be fitted on the aforementioned limiting post. The roller is rotatably connected to the limiting post. In this way, when the windshield glass slides against the limiting post, the glass will roll and contact the roller, thereby avoiding wear caused by the glass directly contacting and rubbing against the limiting post.

[0019] Furthermore, in the glass heating fixture described in this utility model, the handle is disposed on the driving component.

[0020] Furthermore, in the glass heating fixture described in this utility model, the mounting base and the handle are located on opposite sides of the driving component.

[0021] The reason for providing a handle in the above-mentioned technical solution of this utility model is to improve the user experience, make it convenient for the user to hold the glass heating fixture by hand, and directly heat and clamp the glass, thereby improving work efficiency.

[0022] Accordingly, the reason why the control mounting base and handle are located on opposite sides of the drive component is that when the handle and mounting base are located on the same side of the drive component, once the user needs to hold the glass heating fixture to work, the mounting plate will be directly in front of the user's chest, and the user's arm is likely to touch the mounting plate, causing safety problems.

[0023] Furthermore, in the glass heating fixture described in this utility model, the first clamping plate has a first surface on the side near the second clamping plate, and the second clamping plate has a second surface on the side near the first clamping plate; wherein, the first surface and the second surface are arranged parallel to each other.

[0024] Furthermore, in the glass heating fixture described in this utility model, the first clamping plate and / or the second clamping plate are provided with a receiving cavity, and the heating element is embedded in the receiving cavity.

[0025] In the above-mentioned technical solution of this utility model, in order to improve the service life and performance of the heating element, a receiving cavity can be opened in the first clamping plate and / or the second clamping plate in practical application. The heating element can be correspondingly embedded in the receiving cavity so that the first clamping plate and / or the second clamping plate can effectively protect the heating element and ensure uniform heating.

[0026] The beneficial effects of this utility model are as follows: The glass heating fixture of this utility model has been optimized in its own mechanism design, which can assist workers to automatically clamp and heat the glass, and can be effectively applied to scenarios where there are clamping wires in the glass. It can heat, squeeze and seal the clamping wires and the glass to ensure the sealing effect and sealing quality at the interface between the glass and the clamping wires. Therefore, this glass heating fixture has the advantages of being easy to use, highly efficient and having good sealing quality, and has good prospects for promotion and application value. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the glass heating fixture described in this utility model from one perspective under one embodiment.

[0028] Figure 2 This is a schematic diagram of the glass heating fixture described in this utility model from another perspective under one embodiment.

[0029] Figure 3 This is a side view of the structure of the glass heating fixture described in this utility model under one embodiment.

[0030] Label Explanation:

[0031] 1. Mounting base; 11. First mounting plate; 12. Second mounting plate;

[0032] 2. Drive components; 21. Output shaft;

[0033] 3. First clamping plate; 31. First surface;

[0034] 4. Second clamping plate; 41. Second surface;

[0035] 5. Heating element;

[0036] 6. Connecting plate;

[0037] 7. Limiting post;

[0038] 8. Roller;

[0039] 9. Handle. Detailed Implementation

[0040] To explain in detail the technical content, objectives, and effects of this utility model, the following description is provided in conjunction with the embodiments and accompanying drawings.

[0041] Please refer to Figure 1 , Figure 2 as well as Figure 3 This utility model discloses a glass heating fixture, which specifically includes a mounting base 1, a driving component 2, and a first clamping plate 3. Both the driving component 2 and the first clamping plate 3 are mounted on the mounting base 1, and the output end of the driving component 2 is connected to a second clamping plate 4, so that the first clamping plate 3 and the second clamping plate 4 are positioned opposite each other, ensuring that the first clamping plate 3 and the second clamping plate 4 have a distance between them in a first direction. In this embodiment, the first direction is specifically the vertical height direction.

[0042] Based on the above configuration, the driving component 2 can effectively drive the second clamping plate 4 to move along the first direction, thereby moving closer to or further away from the first clamping plate 3 on the mounting base 1, and thus using the first clamping plate 3 and the second clamping plate 4 to clamp the glass. In this embodiment, the driving component 2 is specifically selected as a cylinder.

[0043] Accordingly, see Figure 1 and Figure 3 As shown, in practical applications, simply performing a compression sealing operation may still affect the sealing effect of the product. Therefore, in this embodiment, the second clamping plate 4 is specifically provided with a receiving cavity, which is used to enclose and house the heating element 5. That is, the heating element 5 is embedded in the receiving cavity, so that the second clamping plate 4 is heated by the heating element 5, thereby effectively improving the sealing effect. The reason for providing a receiving cavity to enclose the heating element 5 is not only to improve the service life and performance of the heating element 5 and to protect the heating element 5, but also to ensure that the second clamping plate 4 can achieve uniform heating and avoid uneven heating.

[0044] Correspondingly, in some other implementations, considering the different usage requirements under different working conditions, the heating element 5 can also be set on the first clamping plate 3 according to the specific usage situation. Developers can make conventional settings and selections according to the specific application situation.

[0045] See further Figure 3 As can be seen, in this embodiment, the mounting base 1 of the glass heating fixture of the present invention can specifically include a first mounting plate 11 and a second mounting plate 12. The first mounting plate 11 is connected to the second mounting plate 12, and the first mounting plate 11 extends along a first direction, while the second mounting plate 12 extends along a second direction. In this embodiment, the second direction is perpendicular to the first direction, and the first direction is a vertical height direction, while the second direction is specifically a horizontal direction.

[0046] In this embodiment, the designed drive component 2 can be specifically disposed on one side of the first mounting plate 11, and it can be simultaneously connected to the second mounting plate 12 (see [reference]). Figure 3 The first clamping plate 3 is specifically disposed on the second mounting plate 12, and both the first clamping plate 3 and the second mounting plate 12 extend in the horizontal direction.

[0047] In addition, such as Figure 3 As shown, in this embodiment, the glass heating fixture of the present invention also includes a connecting plate 6. The connecting plate 6 can be specifically connected to the output shaft 21 of the driving member 2, and the second clamping plate 4 can be specifically disposed on the side surface of the connecting plate 6 near the first clamping plate 3, so as to ensure that the second clamping plate 4 connected to the output shaft 21 of the driving member 2 can move smoothly along the first direction without contacting the mounting base 1.

[0048] In addition, such as Figure 1 and Figure 2 As shown, considering the user experience, in this embodiment, the second mounting plate 12 is specifically provided with two limiting posts 7. This allows the user to place the glass heating fixture on one side of the glass interface when using it, with the glass interface positioned between the first clamping plate 3 and the second clamping plate 4. Simultaneously, the limiting posts 7 abut against the edge of the glass, limiting and preventing the glass from extending too far in, thus providing a limiting effect. Furthermore, during application, rollers 8 are fitted onto the outer walls of the two limiting posts 7. These rollers 8 are rotatably connected to the limiting posts 7. When the front glass slides against the limiting posts 7, the glass will roll and contact the rollers 8, thereby preventing wear caused by direct friction between the glass and the limiting posts 7.

[0049] Accordingly, to facilitate user operation of the glass heating fixture, allowing for convenient handheld gripping and direct heating and clamping of the glass, thereby improving work efficiency, a handle 9 is also provided on the glass heating fixture in this embodiment. This handle 9 can be specifically mounted on the drive component 2, and as shown... Figure 3 As shown, ensure that the mounting base 1 and the handle 9 are respectively positioned on opposite sides of the drive unit 2.

[0050] The reason why the mounting base 1 and the handle 9 are located on opposite sides of the drive unit 2 is that when the handle 9 and the mounting base 1 are located on the same side of the drive unit 2, once the user needs to hold the glass heating fixture to work, the mounting plate will be facing the user's chest, and the user's arm is likely to touch the mounting plate, which may cause safety problems.

[0051] Therefore, in practical application of this glass heating fixture, the user can hold the handle 9 of the glass heating fixture, apply sealant to the interface between the clamping wire and the glass interlayer, and control the glass heating fixture to approach the glass so that the glass interface is located between the first clamping plate 3 and the second clamping plate 4. At the same time, the edge of the glass abuts against the rollers 8 on the two limiting posts 7 for limiting. Then, the operator can slide the glass heating fixture parallel to the edge of the glass to move the glass heating fixture to the position of the glass interface. The driving component 2 drives the connecting plate 6 to move towards the first clamping plate 3, thereby driving the second clamping plate 4 to move in the vertical direction to approach the first clamping plate 3. Thus, the first clamping plate 3 and the second clamping plate 4 clamp and fix the glass, and apply uniform and stable pressure to the glass interface to ensure the sealing effect of the sealant. At this time, the heating component 5 heats the second clamping plate 4, and the heat can be conducted to the glass through the second clamping plate 4, thereby heating the sealant on the glass to enhance the adhesion of the sealant.

[0052] It should be noted that, in this embodiment, in order to improve the clamping effect of the first clamping plate 3 and the second clamping plate 4 on the glass, the first clamping plate 3 has a first surface 31 on the side near the second clamping plate 4, and the second clamping plate 4 has a second surface 41 on the side near the first clamping plate 3. The first surface 31 and the second surface 41 are controlled to be arranged parallel to each other, and both extend in the horizontal direction.

[0053] Meanwhile, in this embodiment, the first clamping plate 3 and the second clamping plate 4 are both made of polytetrafluoroethylene (PTFE). The reason for choosing PTFE as the material for the first clamping plate 3 and the second clamping plate 4 is that PTFE is not only soft but also has the characteristics of high temperature resistance and low coefficient of friction. When the PTFE first clamping plate 3 and the second clamping plate 4 come into contact with the glass, they can avoid the problem of damage to the clamping plate due to excessive temperature. They can also avoid the problem of glass damage caused by direct rigid compression. Their low coefficient of friction can also avoid the problem of poor sealing effect caused by the first clamping plate 3 and the second clamping plate 4 sliding on the glass when compressing it.

[0054] In summary, the beneficial effects of this utility model are as follows: the glass heating fixture of this utility model can assist workers in automatically clamping and heating glass, and is effectively applied to scenarios where glass has clamping wires. It can heat, squeeze, and seal the clamping wires and glass to ensure the sealing effect and sealing quality at the interface between the glass and the clamping wires. This glass heating fixture has the advantages of being easy to use, highly efficient, and having good sealing quality, and it has good prospects for promotion and application value.

[0055] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A glass heating fixture, characterized by, The application relates to a glass interface device, which comprises a mounting base, a driving element and a first clamping plate arranged on the mounting base, an output end of the driving element is connected with a second clamping plate, the first clamping plate is arranged opposite to the second clamping plate, the first clamping plate and the second clamping plate have a spacing in a first direction so that a glass interface is located between the first clamping plate and the second clamping plate, a heating element is arranged in the first clamping plate and / or the second clamping plate, the driving element is used for driving the second clamping plate to move in the first direction to approach or move away from the first clamping plate, a handle is arranged on the driving element, and the mounting base and the handle are arranged on opposite sides of the driving element. The mounting base comprises a first mounting plate and a second mounting plate, the first mounting plate is connected with the second mounting plate, the first mounting plate is arranged in extension along the first direction, and the second mounting plate is arranged in extension along a second direction; the driving element is arranged on the first mounting plate, and the first clamping plate is arranged on the second mounting plate.

2. The glass heating fixture of claim 1, wherein, The second direction is perpendicular to the first direction.

3. The glass heating fixture of claim 2, wherein, A connecting plate is further arranged, the second clamping plate is connected with the connecting plate, and the connecting plate is connected with the output end of the driving element.

4. The glass heating fixture of claim 2, wherein, Limiting columns are further arranged on the second mounting plate and / or the connecting plate.

5. The glass heating fixture of claim 4, wherein, A roller is further arranged, the roller is rotatably sleeved on the limiting columns.

6. The glass heating fixture of claim 5, wherein, The first clamping plate has a first surface on a side close to the second clamping plate, the second clamping plate has a second surface on a side close to the first clamping plate; the first surface and the second surface are arranged in parallel to each other.

7. The glass heating fixture of claim 1, wherein, The first clamping plate and / or the second clamping plate are provided with accommodating cavities, and the heating element is embedded in the accommodating cavities.

8. The glass heating fixture of claim 1, wherein, ​