Molding equipment for heat-resistant glass processing

By using a plug-in block to connect with the rotating disk fixing mechanism in the glass molding equipment, the replacement of the rollers can be made convenient, which solves the problem of difficult replacement of rollers in existing equipment, improves production efficiency and reduces maintenance costs.

CN224186058UActive Publication Date: 2026-05-01ANHUI QIANHUI ENERGY SAVING GLASS TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI QIANHUI ENERGY SAVING GLASS TECH CO LTD
Filing Date
2025-05-12
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing glass molding equipment cannot quickly and easily replace the rolling rollers, resulting in long downtime, low production efficiency, high operational difficulty, high safety risks, and high maintenance costs.

Method used

The roller is connected to the slot on the rotating disk by a fixing mechanism through a plug-in block. The pull ring and spring work together to make the roller easy to disassemble and install, simplifying the replacement process.

Benefits of technology

It enables quick and convenient replacement of rollers, shortens equipment downtime, improves production efficiency, reduces operating difficulty and maintenance costs, and reduces equipment wear.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses shaping equipment for heat-resistant glass processing, and relates to the technical field of glass processing, the shaping equipment comprises a fixed frame, the lower end of the fixed frame is supported by four supporting columns, two sides of the fixed frame are both provided with rotating grooves, the two rotating grooves are both internally and rotatably connected with rotating discs, and the rotating discs are arranged in the fixed frame. A driving mechanism for driving one rotating disc to rotate is arranged on one side of the fixing frame, the same rolling roller is fixedly connected between the two rotating discs, inserting blocks are fixedly connected to the two sides of the rolling roller, inserting grooves are formed in the sides, close to each other, of the two rotating discs, and the inserting blocks are fixedly connected to the two sides of the rolling roller. And the two inserting blocks are fixed in the two inserting grooves through a fixing mechanism respectively. According to the utility model, the convenient replacement of the rolling roller is realized, the production efficiency is obviously improved, and the operation difficulty and the maintenance cost are reduced.
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Description

A shaping device for heat-resistant glass processing Technical Field

[0001] This utility model relates to the field of glass processing technology, and in particular to a shaping device for heat-resistant glass processing. Background Technology

[0002] In today's society, with people's high regard for energy conservation and environmental protection, and the increasing demand for high-performance glass materials from industries such as construction and automobiles, heat-insulating glass, as a new type of material that can effectively reduce heat transfer and improve energy efficiency, has received widespread attention and favor from the market.

[0003] Most existing glass molding equipment cannot quickly and easily replace the rollers, resulting in long downtime and low production efficiency. Furthermore, the complex replacement process increases operational difficulty and safety risks, and frequent disassembly and assembly accelerates equipment wear and tear, raising maintenance costs. Summary of the Invention

[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a shaping device for heat-resistant glass processing.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A shaping device for heat-resistant glass processing includes a fixed frame, the lower end of which is supported by four support columns. Rotating grooves are provided on both sides of the fixed frame, and rotating disks are rotatably connected to each of the two rotating grooves. A driving mechanism for driving one rotating disk is provided on one side of the fixed frame. A common rolling roller is fixedly connected between the two rotating disks. Insertion blocks are fixedly connected to both sides of the rolling roller. Insertion grooves are provided on the sides of the two rotating disks that are close to each other, and the two insertion blocks are respectively fixed in the two insertion grooves by a fixing mechanism.

[0007] As a further improvement of this utility model, the driving mechanism includes a support frame fixedly connected to one side of the fixed frame, a rotating rod rotatably connected to the inner wall of the support frame, the other end of the rotating rod being fixedly connected to the rotating disk, and a motor for driving the rotating rod to rotate being fixedly connected to the outer wall of the support frame.

[0008] As a further improvement of this utility model, the fixing mechanism includes a sleeve fixedly connected to one side of the rotating disk. The sleeve is provided with a plug-in post. A plug-in hole is opened on one side of the plug-in block. One end of the plug-in post passes through the plug-in groove and is inserted into the plug-in hole. The other end of the plug-in post passes through the sleeve and is fixedly connected to a pull ring. The sleeve is provided with a movable plate fixedly sleeved with the plug-in post. A spring sleeved with the plug-in post is fixedly connected to one side of the movable plate. The other end of the spring is fixedly connected to the inner wall of the sleeve.

[0009] As a further improvement of this utility model, a plurality of balls are embedded in the rotating groove, and the friction generated by the rotation of the rotating disk can be reduced by the plurality of balls.

[0010] As a further improvement of this utility model, a fan is fixedly connected to one end of the upper part of the fixed frame.

[0011] As a further improvement of this utility model, the size of the rotating disk matches the size of the rotating groove, and the diameter of the rolling roller is the same as the diameter of the rotating disk.

[0012] The beneficial effects of this utility model are:

[0013] The roller is connected to the slots on the rotating disc via a fixing mechanism using the insertion blocks on both sides. This connection method allows for easy removal of the roller when replacement or maintenance is needed. Operators simply pull the pull ring to allow the insertion pins to overcome spring force and be pulled out of the insertion holes and slots. Installation is simpler: align the insertion blocks with the slots and release the pull ring. Compared to existing glass shaping equipment, this equipment allows for quick and convenient roller replacement, significantly reducing downtime, improving production efficiency, and minimizing operational difficulties and safety risks associated with complex replacement processes. It also reduces wear and tear caused by frequent disassembly and assembly, thus lowering maintenance costs.

[0014] This invention enables convenient replacement of the rollers, significantly improving production efficiency and reducing operating difficulty and maintenance costs. Attached Figure Description

[0015] Figure 1 is a structural schematic diagram of a heat-resistant glass forming device proposed in this utility model;

[0016] Figure 2 is a partial cross-sectional structural schematic diagram of a shaping device for heat-resistant glass processing proposed in this utility model;

[0017] Figure 3 is an enlarged view of point A in Figure 2;

[0018] Figure 4 is an enlarged view of section B in Figure 2.

[0019] In the diagram: 1 Support column, 2 Fixed frame, 3 Fan, 4 Rotating groove, 5 Rotating disc, 6 Roller roller, 7 Support frame, 8 Motor, 9 Rotating rod, 10 Insert block, 11 Insert groove, 12 Insert hole, 13 Insert column, 14 Moving plate, 15 Spring, 16 Sleeve, 17 Pull ring, 18 Ball bearing. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0021] Figures 1-4 illustrate a heat-resistant glass forming device, comprising a fixed frame 2, which provides the overall frame structure for the device. A fan 3 is fixedly connected to one end of the fixed frame 2, which can cool the glass after forming, facilitating rapid cooling and shaping of the glass. The lower end of the fixed frame 2 is supported by four support columns 1. Rotating slots 4 are provided on both sides of the fixed frame 2, and rotating disks 5 are rotatably connected in both rotating slots 4. A drive mechanism for driving one rotating disk 5 is provided on one side of the fixed frame 2. The drive mechanism includes a support frame 7 fixedly connected to one side of the fixed frame 2. A rotating rod 9 is rotatably connected to the inner wall of the support frame 7, and the other end of the rotating rod 9 is fixedly connected to the rotating disk 5. A motor 8 for driving the rotating rod 9 is fixedly connected to the outer wall of the support frame 7.

[0022] The size of the rotating disk 5 matches the internal size of the rotating groove 4, limiting its rotation trajectory. Multiple balls 18 are embedded in the rotating groove 4. The multiple balls 18 reduce the friction generated by the rotation of the rotating disk 5, making the rotation of the rotating disk 5 smoother, thereby reducing energy loss and extending the service life of related components. The same rolling roller 6 is fixedly connected between the two rotating disks 5. The diameter of the rolling roller 6 is the same as the diameter of the rotating disk 5. The rolling roller 6 rotates under the drive of the two rotating disks 5 and is used to roll and shape the heat-insulating glass. Insertion blocks 10 are fixedly connected to both sides of the rolling roller 6. Insertion grooves 11 are opened on the side of the two rotating disks 5 that are close to each other. The two insertion blocks 10 are fixed in the two insertion grooves 11 by a fixing mechanism. The insertion blocks 10 are used to connect with the insertion grooves 11 on the rotating disk 5, and play the role of positioning and connecting the rolling roller 6 and the rotating disk 5.

[0023] The fixing mechanism includes a sleeve 16 fixedly connected to one side of the rotating disk 5. A plug-in post 13 is provided inside the sleeve 16. The sleeve 16 provides space for accommodating and guiding the plug-in post 13, ensuring that the plug-in post 13 can only move axially along the sleeve 16. A plug-in hole 12 is provided on one side of the plug-in block 10. One end of the plug-in post 13 passes through the plug-in groove 11 and is inserted into the plug-in hole 12. The plug-in hole 12 and the plug-in post 13 cooperate. When the plug-in post 13 is inserted, the plug-in block 10 can be firmly fixed in the plug-in groove 11. The other end of the plug-in post 13 passes through the sleeve 16 and is fixedly connected to a pull ring 17. The pull ring 17 facilitates operation. The operator pulls the insertion post 13 to realize the insertion and removal operation of the insertion post 13, thereby facilitating the installation and removal of the rolling roller 6. The sleeve 16 is provided with a movable plate 14 fixedly sleeved with the insertion post 13. One side of the movable plate 14 is fixedly connected to a spring 15 sleeved with the insertion post 13. The spring 15 applies elastic force to the movable plate 14 and the insertion post 13. When the insertion post 13 is pulled, the spring 15 is compressed. When the pulling ring 17 is released, the elastic force of the spring 15 can reset the insertion post 13, ensuring that the insertion post 13 is stably inserted into the insertion hole 12 and the insertion groove 11. The other end of the spring 15 is fixedly connected to the inner wall of the sleeve 16.

[0024] In use, the heat-resistant glass to be shaped is first placed in a suitable position below the rolling roller 6. Then, the motor 8 is started, driving the rotating rod 9 to rotate on the support frame 7. Since the rotating rod 9 is fixedly connected to the rotating disk 5, the rotating disk 5 rotates within the rotating groove 4. During rotation, the ball bearings 18 within the rotating groove 4 reduce friction, making the rotation smoother. The two rotating disks 5 rotate synchronously, driving the rolling roller 6 to rotate, and the rolling roller 6 begins to roll and shape the heat-resistant glass. After shaping, the fan 3 is started, and the fan 3 provides air cooling for the shaped glass, which helps to quickly cool and set the glass after shaping.

[0025] If the roller 6 needs to be replaced or repaired, pull the pull ring 17. The pull ring 17 moves the insertion post 13 outward. At this time, the spring 15 is compressed, and the insertion post 13 is pulled out from the insertion hole 12 and the insertion slot 11, thereby releasing the fixed relationship between the insertion block 10 and the insertion slot 11. In this way, the roller 6 can be removed from between the two rotating disks 5. During installation, align the insertion blocks 10 on both sides of the roller 6 with the insertion slots 11 on the rotating disk 5, release the pull ring 17, and the elastic force of the spring 15 will cause the insertion post 13 to reset and insert into the insertion hole 12 and the insertion slot 11, completing the installation of the roller 6.

[0026] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A shaping device for heat-resistant glass processing, comprising a fixed frame (2), characterized in that, The lower end of the fixed frame (2) is supported by four support columns (1). Rotating grooves (4) are provided on both sides of the fixed frame (2). Rotating disks (5) are rotatably connected in both rotating grooves (4). A driving mechanism for driving a rotating disk (5) to rotate is provided on one side of the fixed frame (2). The same rolling roller (6) is fixedly connected between the two rotating disks (5). Insertion blocks (10) are fixedly connected on both sides of the rolling roller (6). Insertion grooves (11) are provided on the side of the two rotating disks (5) that are close to each other. The two insertion blocks (10) are fixed in the two insertion grooves (11) by a fixing mechanism.

2. The shaping equipment for heat-resistant glass processing according to claim 1, characterized in that, The driving mechanism includes a support frame (7) fixedly connected to one side of the fixed frame (2), a rotating rod (9) rotatably connected to the inner wall of the support frame (7), the other end of the rotating rod (9) being fixedly connected to the rotating disk (5), and a motor (8) for driving the rotating rod (9) to rotate being fixedly connected to the outer wall of the support frame (7).

3. The shaping equipment for heat-resistant glass processing according to claim 1, characterized in that, The fixing mechanism includes a sleeve (16) fixedly connected to one side of the rotating disk (5). The sleeve (16) is provided with a plug-in post (13). The plug-in block (10) has a plug-in hole (12) on one side. One end of the plug-in post (13) passes through the plug-in groove (11) and is inserted into the plug-in hole (12). The other end of the plug-in post (13) passes through the sleeve (16) and is fixedly connected with a pull ring (17). The sleeve (16) is provided with a movable plate (14) fixedly sleeved with the plug-in post (13). One side of the movable plate (14) is fixedly connected with a spring (15) sleeved with the plug-in post (13). The other end of the spring (15) is fixedly connected to the inner wall of the sleeve (16).

4. The shaping equipment for heat-resistant glass processing according to claim 1, characterized in that, The rotating groove (4) is embedded with multiple balls (18), and the rotating disk (5) can reduce the friction generated by rotation through the multiple balls (18).

5. The shaping equipment for heat-resistant glass processing according to claim 1, characterized in that, A fan (3) is fixedly connected to one end of the fixed frame (2).

6. The shaping equipment for heat-resistant glass processing according to claim 1, characterized in that, The size of the rotating disk (5) matches the size of the rotating groove (4), and the diameter of the rolling roller (6) is the same as the diameter of the rotating disk (5).