Adjustable positioning mechanism for processing multilayer glass

By introducing an adjustable positioning mechanism in the traditional multi-layer glass production line, the combination of the base gear wheel and the detachable additional gear wheel is solved, and the differentiated positioning and versatility of the multi-layer glass are improved.

CN223254317UActive Publication Date: 2025-08-22HUNAN XINGLONG TECH CO LTD
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Patent Information

Application Number
CN202422183998.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-08-22
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

Traditional multi-layer glass production lines cannot achieve differentiated positioning of different layers of glass and cannot meet the "Flying" design needs.

Method used

An adjustable positioning mechanism is designed, including a base gear wheel and a detachable additional gear wheel. Differential positioning of different layers of glass is achieved through the lifting mechanism. The outer diameter of the additional gear wheel is appropriately different from the side distance of the glass, and is installed on the base gear wheel to achieve the flash function.

Benefits of technology

Differentiated positioning of different layers of glass is achieved, the universality of the conveying mechanism is improved, and the old production lines can also meet the needs of flash processing.

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Abstract

The utility model belongs to the technical field of glass processing, and particularly relates to an adjustable positioning mechanism for processing multi-layer glass, which comprises a glass conveying device, a mounting seat is arranged at one end of the glass conveying device, a positioning catch wheel is arranged on the mounting seat, and the positioning catch wheel comprises a basic catch wheel and an additional catch wheel. And the additional catch wheel is detachably mounted on the basic catch wheel. According to the adjustable positioning mechanism for multi-layer glass processing, the basic catch wheel and the additional catch wheel are arranged, the additional catch wheel is detachably installed on the basic catch wheel, and the difference between the outer diameter of the additional catch wheel and the radius of the basic catch wheel is set to be equal to the distance between the side edges of the two layers of glass to be positioned; and respective positioning of different layers of glass is realized.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass processing, in particular to an adjustable positioning mechanism for multi-layer glass processing. Background Art

[0002] In some multi-layer glass structures (such as curtain wall glass), "flash" design is often performed according to actual needs, so that the edges of certain layers of glass in the multi-layer glass structure extend beyond a specific distance from other layers of glass. Therefore, during the processing and transmission of these multi-layer glass products, it is necessary to position each layer of glass separately. However, in some traditional and old multi-layer glass production lines, only a simple stopper is generally provided at one end of the conveying device. Each layer of glass is blocked by the stopper when it is transmitted, resulting in the edges of each layer of glass being able to remain flush, and it is impossible to achieve differentiated positioning of different layers of glass, that is, it is impossible to meet the relevant "flash" requirements. In view of this, the present application aims to provide an adjustable positioning mechanism for multi-layer glass processing, which can be installed in a traditional multi-layer glass processing production line to achieve differentiated positioning of different layers of glass, so that the old equipment also has the function of "flash". Utility Model Content

[0003] The purpose of the utility model is to overcome the above-mentioned deficiencies of the prior art and to provide an adjustable positioning mechanism for multi-layer glass processing, which can position different layers of glass at different positions as needed and improve the versatility of the corresponding transmission mechanism.

[0004] The technical solution of the utility model is: an adjustable positioning mechanism for multi-layer glass processing, including a glass conveying device, a mounting seat is provided at one end of the glass conveying device, a positioning stop wheel is provided on the mounting seat, the positioning stop wheel includes a basic stop wheel and an additional stop wheel, and the additional stop wheel is detachably mounted on the basic stop wheel.

[0005] Furthermore, the basic stop wheel is cylindrical, and both ends of the basic stop wheel are movably connected to the mounting seat.

[0006] Furthermore, the additional stopper wheel includes two semicircular rings, which form a complete circular ring and are sleeved on the basic stopper wheel and are arranged coaxially with the basic stopper wheel.

[0007] Furthermore, the difference between the outer diameter of the additional stop wheel and the outer diameter of the basic stop wheel is the same as the distance between the sides of the two layers of glass to be positioned.

[0008] Furthermore, there are multiple additional chock wheels, and the external diameters of different additional chock wheels are the same or different. One or more additional chock wheels can be installed on the basic chock wheel at the same time as needed.

[0009] Furthermore, the fixed positions of the additional blocking wheels on the basic blocking wheels respectively correspond to the positions of certain glass to be positioned.

[0010] Furthermore, the width of the additional blocking wheel is not less than the thickness of the corresponding layer of glass, so as to ensure that the additional blocking wheel can smoothly contact the corresponding layer of glass to achieve the purpose of blocking.

[0011] Furthermore, the mounting base is U-shaped, with slide grooves provided on both side panels of the mounting base. The ends of the basic stopper wheel are movably mounted in the slide grooves. A lifting mechanism is provided in the slide grooves, connected to the ends of the basic stopper wheel, for lifting and lowering the basic stopper wheel along the slide groove direction. The lifting mechanism can employ existing structures such as a pneumatic cylinder or an electric cylinder.

[0012] Furthermore, a ring groove is provided on the basic stop wheel, the depth of which is the same as the designed distance between the sides of the two layers of glass to be positioned, and an additional stop wheel is provided in the ring groove, and the outer diameter of the additional stop wheel in the ring groove is the same as that of the basic stop wheel. Preferably, there can be multiple ring grooves, and an additional stop wheel is provided in each ring groove.

[0013] Furthermore, the additional stop wheel is mounted on the basic stop wheel by a bolt structure, and bolt holes are provided on the two semicircular rings of the additional stop wheel, and the positions of the bolt holes on the two semicircular rings correspond to each other. Preferably, the additional stop wheel can also be mounted on the basic stop wheel by other detachable means such as snap fasteners.

[0014] Furthermore, an anti-skid layer is provided on the inner surface of the semicircular ring, and the anti-skid layer can be made of anti-skid paint or anti-skid texture.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: the adjustable positioning mechanism for multi-layer glass processing in the present application is provided with a basic stop wheel and an additional stop wheel, wherein the additional stop wheel is detachably mounted on the basic stop wheel, and the difference between the radius of the additional stop wheel and the radius of the basic stop wheel is kept the same as the distance between the side edges of the two layers of glass in the product to be processed, thereby realizing differentiated positioning of different layers of glass. In actual application, the positioning mechanism in the present application can be installed in the conveying device of the relevant production line. When the multi-layer glass structure to be produced has a flashing requirement, the positioning mechanism can be activated, so that the old production line without flashing function can also realize the flashing function. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a three-dimensional schematic diagram of embodiment 1 of the present utility model;

[0017] Figure 2 This is a top view of Example 1 of the present utility model;

[0018] Figure 3This is an exploded view of the positioning stop wheel structure in Example 1 of the present utility model;

[0019] Figure 4 This is a schematic diagram of the positioning stop wheel structure in Example 2 of the present utility model;

[0020] In the figure: 1-mounting seat, 2-positioning stop wheel, 21-basic stop wheel, 22-additional stop wheel, 3-first layer of glass, 4-second layer of glass, 5-transmission roller, 6-transmission track. DETAILED DESCRIPTION

[0021] The present invention will be further described in detail below with reference to specific embodiments. Methods or functional components not specifically described in the embodiments are all prior art. Unless otherwise defined, all technical and scientific terms used herein have the same meanings as commonly understood by technicians in the technical field of the present invention.

[0022] Example 1

[0023] like Figure 1-3 As shown, this embodiment is an adjustable positioning mechanism for multi-layer glass processing, including a glass conveyor device, which includes a conveyor track 6 and a conveyor roller 5. A mounting base 1 is provided at one end of the glass conveyor device, and a positioning stop wheel 2 is provided on the mounting base 1. The positioning stop wheel 2 includes a basic stop wheel 21 and an additional stop wheel 22. The additional stop wheel 22 is detachably mounted on the basic stop wheel 21. The basic stop wheel 21 is cylindrical, and both ends of the basic stop wheel 21 are movably connected to the mounting base 1.

[0024] In this embodiment, the additional stop wheel 22 comprises two semicircular rings, which, after forming a complete ring, are sleeved onto the basic stop wheel 21 and arranged coaxially with the basic stop wheel 21. An anti-slip layer, comprising a knurled pattern, is provided on the inner surface of the additional stop wheel 22 to prevent the additional stop wheel 22 from shifting position on the basic stop wheel 21. The difference between the outer diameters of the additional stop wheel 22 and the basic stop wheel 21 is the same as the distance between the sides of the two layers of glass to be positioned. In this embodiment, bolt holes are provided on both semicircular rings, allowing the two semicircular rings of the additional stop wheel 22 to be mounted on the basic stop wheel 21 via a bolt structure.

[0025] In this embodiment, multiple additional stop wheels 22 can be configured, with the outer radius of each additional stop wheel 22 increasing sequentially, for example, by 1 cm, 2 cm, 3 cm, and so on, larger than the radius of the basic stop wheel 21, for user selection. The additional stop wheels 22 are fixed on the basic stop wheel 21 in positions corresponding to the glass to be positioned. In actual use, multiple additional stop wheels 22 can be installed simultaneously on the basic stop wheel 21 as needed to position each layer of glass in a three-layer or higher glass structure.

[0026] In this embodiment, the mounting base 1 is U-shaped, with slide grooves provided on both side panels of the mounting base 1. The ends of the basic stopper wheel 21 are movably mounted in the slide grooves. A lifting mechanism is provided in the slide grooves, connected to the ends of the basic stopper wheel 21. The lifting mechanism is used to lift the basic stopper wheel 21 along the slide groove direction. The lifting mechanism adopts a cylinder.

[0027] When the positioning mechanism of this embodiment is used: if the sides of the two layers of glass in the glass structure to be processed need to maintain a certain distance, an additional stop wheel 22 of a corresponding radius can be installed at the corresponding position of the basic stop wheel 21. For example, if the sides of the two layers of glass need to maintain a distance of 2 cm, an additional stop wheel 22 with a radius 2 cm larger than the basic stop wheel 21 can be installed at the corresponding position on the basic stop wheel 21. If other products need to maintain a distance of 3 cm, the current additional stop wheel 22 can be removed and a new additional stop wheel 22 with a radius 3 cm larger than the basic stop wheel 21 can be installed, and so on. If the sides of the glass layers need to be kept flush in the glass structure to be processed, no additional stop wheel 22 can be installed. The positioning stop wheel 2 is initially set to an ascending state. When the glass conveying device conveys the first layer of glass 3, it will be blocked by the basic stop wheel 21. When the second layer of glass 4 is conveyed, it will be blocked by the additional stop wheel 22. Since there is a specific gap between the outer circle radius of the additional stop wheel 22 and the radius of the basic stop wheel 21, the distance between the sides of the first layer of glass 3 and the second layer of glass 4 will also maintain this gap. After the positioning is completed, under the action of the lifting mechanism, the positioning stop wheel 2 can be lowered as a whole and no longer blocks the transmission of the glass structure. When the positioned glass structure is conveyed to the next workstation, the positioning stop wheel 2 rises again and the positioning work starts again.

[0028] Example 2

[0029] like Figure 4 As shown, this embodiment differs from Example 1 in that a ring groove is provided on the basic stop wheel 21 in this embodiment, and the depth of the ring groove is the same as the designed distance between the side edges of the two layers of glass to be positioned. An additional stop wheel 22 is provided in the ring groove, and the outer diameter of the additional stop wheel 22 in the ring groove is the same as that of the basic stop wheel 21. Therefore, when processing corresponding multi-layer glass products, the additional stop wheel 22 in the ring groove can be removed to achieve differentiated positioning of the glass. Conversely, the additional stop wheel 22 is retained and is used to process multi-layer glass products that require the sides of each layer of glass to be kept flush. The specific principles are essentially the same as those in Example 1 and will not be repeated here.

[0030] Of course, in some embodiments, while annular grooves are provided on the basic stopper wheel, a plurality of additional stopper wheels having an outer diameter larger than that of the basic stopper wheel may also be provided.

[0031] The above are only some embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention may have combinations and variations of the aforementioned technical features. Without departing from the spirit and scope of the present invention, those skilled in the art can improve, modify, or replace the present invention with equivalents, or apply the structure or method of the present invention to other fields to achieve the same effect, which all fall within the scope of protection included in the present invention.

Claims

1. An adjustable positioning mechanism for multi-layer glass processing, including a glass conveying device, characterized in that: A mounting seat is provided at one end of the glass conveying device. A positioning stop wheel is provided on the mounting seat. The positioning stop wheel comprises a basic stop wheel and an additional stop wheel. The additional stop wheel is detachably mounted on the basic stop wheel.

2. The adjustable positioning mechanism for multi-layer glass processing according to claim 1, characterized in that: The basic blocking wheel is cylindrical, and both ends of the basic blocking wheel are movably connected to the mounting seat.

3. The adjustable positioning mechanism for multi-layer glass processing according to claim 1, characterized in that: The additional stopper wheel comprises two semicircular rings, which are sleeved on the basic stopper wheel after forming a complete circular ring, and are arranged coaxially with the basic stopper wheel.

4. The adjustable positioning mechanism for multi-layer glass processing according to claim 3, characterized in that: The difference between the outer diameter of the additional stop wheel and the outer diameter of the basic stop wheel is the same as the distance between the sides of the two layers of glass to be positioned.

5. The adjustable positioning mechanism for multi-layer glass processing according to claim 1, characterized in that: There are multiple additional blocking wheels, and the outer diameters of different additional blocking wheels are the same or different.

6. The adjustable positioning mechanism for multi-layer glass processing according to claim 1, characterized in that: The fixed position of the additional blocking wheel on the basic blocking wheel corresponds to the position of a glass to be positioned.

7. The adjustable positioning mechanism for multi-layer glass processing according to claim 6, characterized in that: The width of the additional stop wheel is not less than the thickness of the corresponding layer of glass.

8. The adjustable positioning mechanism for multi-layer glass processing according to claim 1, characterized in that: The mounting seat is U-shaped, and a slide groove is provided on both side plates of the mounting seat. The two ends of the basic stop wheel are movably installed in the slide groove. A lifting mechanism is provided in the slide groove. The lifting mechanism is connected to the two ends of the basic stop wheel. The lifting mechanism is used to make the basic stop wheel move up and down along the slide groove direction.

9. The adjustable positioning mechanism for multi-layer glass processing according to claim 1, characterized in that: The basic blocking wheel is provided with an annular groove, in which an additional blocking wheel is provided, and the outer diameter of the additional blocking wheel in the annular groove is kept the same as that of the basic blocking wheel.

10. The adjustable positioning mechanism for multi-layer glass processing according to claim 1, characterized in that: The additional stop wheel is mounted on the basic stop wheel through a bolt structure.