Fixture for glass processing

By designing a glass processing fixture that includes a mounting sleeve, transmission gear and suction cup, the problem of frequent flipping and adjustment of existing fixtures is solved, stable limit and rotation adjustment of glass is achieved, and processing efficiency is improved.

CN223277798UActive Publication Date: 2025-08-29HEFEI XUNSHENG GLASS CO LTD
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Patent Information

Application Number
CN202421703562.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-08-29
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

Existing glass processing fixtures need to be frequently flipped and adjusted during coating processing, resulting in low working efficiency and inability to rotate fixed glass to affect processing efficiency.

Method used

A clamp structure including a mounting sleeve, transmission gear, rotation ring, suction cup and telescopic rod is designed. The stable limit and rotation adjustment of the glass are achieved through suction cup adsorption and rotary gear meshing, and combined with the telescopic rod and spring cushioning, the center and outer limits of the glass are achieved.

Benefits of technology

It realizes efficient positioning and rotation processing of glass, reduces flip and adjustment time, and improves work efficiency and operation convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a glass processing clamp which comprises a mounting sleeve and a rotating ring, a transmission gear is rotatably mounted in the mounting sleeve, the rotating ring is mounted on the outer side of the transmission gear in a meshed mode, a mounting plate is fixedly mounted at the top of the rotating ring, and a clamping sleeve is mounted in the mounting plate in a threaded mode. A rotating shaft extending out of the mounting sleeve is rotationally mounted at the top of the transmission gear, and a movable sleeve is fixedly mounted at the top of the rotating shaft. Through mutual cooperation of a first suction cup, a bearing disc, a moving rod and a clamping sleeve, the first suction cup can move downwards through the telescopic effect of a telescopic rod, glass on the bearing disc can be adsorbed through the first suction cup, meanwhile, a spring is extruded, effective buffering can be achieved in the extrusion process, and the glass can be prevented from being damaged. And meanwhile, the clamping sleeve can move in the thread direction of the lead screw by rotating the lead screw, and the outer side of the glass can be limited through the clamping sleeve.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass processing, in particular to a clamp for glass processing. Background Art

[0002] Glass is an amorphous inorganic non-metallic material. It is generally made of a variety of inorganic minerals as the main raw materials, with a small amount of auxiliary raw materials added. The main component is silicate complex salt. It is an amorphous solid with an irregular structure. It is widely used in buildings to block wind and let light through. It is a mixture. There is also colored glass that shows color by mixing certain metal oxides or salts, and tempered glass made by physical or chemical methods. For processing procedures such as glass edging and cutting, the glass needs to be clamped and positioned.

[0003] Among them, the "Auxiliary Fixing Fixture for Glass Processing" disclosed in the application number "CN220145736U" has solved the problem that after the existing glass is clamped and fixed, after coating processing on one side of the glass, when the other side needs to be coated, it is often necessary to disassemble, flip and install it, and then coat it again, which further reduces the efficiency of glass processing. After further searching, it was found that the "Auxiliary Fixing Fixture for Glass Processing Center" disclosed in the application number "CN219686189U" has effectively solved the problem of the current fixture being welded or bolted through a specific technical structure setting. The fixture is installed by fixing or other methods, which makes it inconvenient for the staff to adjust the position of the fixture, resulting in a long adjustment time and reduced work efficiency. In addition, the fixture needs to be disassembled first and then installed to adjust the position, which increases the workload of the staff and is inconvenient for the staff to use. However, in actual use, there are still many defects in the glass processing fixture with similar structure. For example, since the glass needs to be rotated for processing on all sides during the glass processing process, and the device cannot rotate the fixed glass, which affects the efficiency of the glass fixing processing. Therefore, it is necessary to design a glass processing fixture to solve the problems raised in the above background technology. Utility Model Content

[0004] The purpose of the present utility model is to provide a glass processing fixture to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a glass processing fixture, comprising a mounting sleeve and a rotating ring, wherein a transmission gear is rotatably mounted inside the mounting sleeve, a rotating ring is meshedly mounted on the outside of the transmission gear, a mounting plate is fixedly mounted on the top of the rotating ring, a clamping sleeve is threadedly mounted on the internal thread of the mounting plate, a rotating shaft extending from the mounting sleeve is rotatably mounted on the top of the transmission gear, a movable sleeve is fixedly mounted on the top of the rotating shaft, a carrying plate is slidably mounted on the top of the movable sleeve, a mounting frame is fixedly mounted on the top of the mounting sleeve, a telescopic rod is rotatably mounted on the inside of the mounting frame, and a first suction cup corresponding to the carrying plate is fixedly mounted on the output end of the telescopic rod. The first suction cup can be moved downward by the telescopic action of the telescopic rod, and the glass on the carrying plate can be sucked by the first suction cup. When the first suction cup squeezes the glass, the movable rod can slide along the inside of the movable sleeve, squeezing the spring at the same time, effectively buffering the squeezing process, thereby limiting the center of the glass.

[0006] Preferably, a support column is fixedly mounted on the bottom of the mounting sleeve, and an arc-shaped pad is provided at the bottom of the support column. The support column can support the device, so that the device can maintain a stable effect during use.

[0007] Preferably, the mounting bracket and the telescopic rod are rotatably mounted via a bearing ring, and a second suction cup is fixedly mounted on the top of the carrier plate. The rotation of the motor output end can cause the transmission gear to rotate synchronously, so that the outer side of the transmission gear engages with the meshing teeth installed on the inner side of the rotating ring.

[0008] Preferably, the movable sleeve and the carrier plate are slidably mounted via a movable rod, and the movable rod and the movable sleeve are movably connected via a spring. The movable rod slides along the interior of the movable sleeve and simultaneously presses the spring, which can effectively buffer the squeezing process, thereby limiting the center of the glass.

[0009] Preferably, the mounting plate and the clamping sleeve are screw-threadedly mounted, and a protective pad is fixedly mounted on the inner side of the clamping sleeve. The clamping sleeve can be moved along the screw thread direction by rotating the screw, and the outer side of the glass can be limited by the clamping sleeve.

[0010] Preferably, meshing teeth that mesh with the meshing teeth are fixedly mounted on the inner side of the rotating ring, and a motor that cooperates with the transmission gear is fixedly mounted on the bottom of the mounting sleeve. Rotation of the motor output terminal can cause the transmission gear to rotate synchronously, causing the outer side of the transmission gear to mesh with the meshing teeth mounted on the inner side of the rotating ring, thereby causing the rotating shaft to rotate synchronously and simultaneously enabling the mounting plate mounted on the top of the rotating ring to rotate.

[0011] In summary, this application has the following beneficial technical effects:

[0012] 1. The utility model is provided with a first suction cup, a carrying plate, a movable rod and a clamping sleeve that cooperate with each other. The first suction cup can be moved downward by the telescopic action of the telescopic rod, and the glass on the carrying plate can be adsorbed by the first suction cup. In the process of the first suction cup squeezing the glass, the movable rod can slide along the inside of the movable sleeve and squeeze the spring at the same time, which can effectively buffer the squeezing process, thereby limiting the center of the glass. At the same time, the clamping sleeve can be moved along the thread direction of the screw rod by rotating the screw rod, and the outer side of the glass can be limited by the clamping sleeve.

[0013] 2. The utility model cooperates with the meshing teeth, the transmission gear, the rotating ring and the motor. The rotation of the motor output end can make the transmission gear rotate synchronously, so that the outer side of the transmission gear meshes with the meshing teeth installed on the inner side of the rotating ring, thereby making the rotating shaft rotate synchronously. At the same time, the mounting plate installed on the top of the rotating ring can be rotated, and can be adjusted according to processing requirements when processing the clamped glass. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is the main view of the utility model;

[0015] Figure 2 This is a schematic diagram of the internal three-dimensional structure of the installation sleeve of the utility model;

[0016] Figure 3 This is a schematic diagram of the partial structure of the carrier plate of the present utility model;

[0017] Figure 4 This is a schematic diagram of the installation structure of the transmission gear and meshing teeth of the utility model;

[0018] Figure 5 It is a schematic diagram of the three-dimensional partial structure of the clamping sleeve of the present utility model.

[0019] In the figure: 1. Mounting sleeve; 101. Support column; 102. Rotating shaft; 103. Mounting frame; 104. Bearing ring; 105. Telescopic rod; 106. First suction cup; 107. Movable sleeve; 108. Spring; 109. Moving rod; 210. Carrying plate; 211. Second suction cup; 2. Rotating ring; 201. Transmission gear; 202. Meshing teeth; 203. Motor; 204. Mounting plate; 205. Screw; 206. Clamping sleeve; 207. Protective pad. DETAILED DESCRIPTION

[0020] The following detailed description is provided to help the reader gain a comprehensive understanding of the methods, devices, and / or systems described herein. However, various changes, modifications, and equivalents of the methods, devices, and / or systems described herein will be apparent upon understanding the disclosure of this application. For example, the order of operations described herein is merely illustrative and is not limited to the order set forth herein. Rather, except for operations that must occur in a particular order, changes may be made that will be apparent upon understanding the disclosure of this application. Furthermore, descriptions of features known in the art may be omitted for clarity and brevity.

[0021] The features described herein may be implemented in different forms and should not be construed as being limited to the examples described herein. Rather, the examples described herein have been provided merely to illustrate some of the many possible ways to implement the methods, devices, and / or systems described herein that will be apparent upon understanding the disclosure of this application.

[0022] Throughout the specification, when an element (such as a layer, region, or substrate) is described as being “on,” “connected to,” “coupled to,” “over,” or “overlaying” another element, it may be directly “on,” “connected to,” “coupled to,” “over,” or “overlaying” another element, or one or more other elements may be present between them. In contrast, when an element is described as being “directly on,” “directly connected to,” “directly coupled to,” “directly over,” or “directly covering” another element, there may be no other elements intervening therebetween.

[0023] As used herein, the term "and / or" includes any one of the associated listed items and any combination of any two or more items.

[0024] Although terms such as "first," "second," and "third" may be used herein to describe various members, components, regions, layers, or portions, these members, components, regions, layers, or portions are not limited by these terms. Rather, these terms are used only to distinguish one member, component, region, layer, or portion from another member, component, region, layer, or portion. Thus, a first member, component, region, layer, or portion in the examples described herein may also be referred to as a second member, component, region, layer, or portion without departing from the teachings of the examples.

[0025] For ease of description, spatially relative terms such as "above," "upper," "below," and "lower" may be used herein to describe the relationship of one element to another element as illustrated in the drawings. Such spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the drawings. For example, if the device in the drawings is turned over, an element described as "above" or "upper" relative to another element would then be oriented "below" or "lower" relative to the other element.

[0026] Therefore, the term "above" encompasses both an orientation of "above" and "below," depending on the spatial orientation of the device. The device may be otherwise oriented (e.g., rotated 90 degrees or at other orientations), and the spatially relative terminology used herein should be interpreted accordingly.

[0027] The terms used herein are intended only to describe various examples and are not intended to limit the present disclosure. Unless the context clearly indicates otherwise, the singular is intended to include the plural. The terms "comprise," "include," and "have" list the presence of stated features, quantities, operations, components, elements, and / or combinations thereof, but do not preclude the presence or addition of one or more other features, quantities, operations, components, elements, and / or combinations thereof.

[0028] Due to manufacturing techniques and / or tolerances, variations in the shapes shown in the drawings may occur. Therefore, the examples described herein are not limited to the specific shapes shown in the drawings but include changes in shapes that occur during manufacturing.

[0029] The features of the examples described herein can be combined in various ways that will be apparent after understanding the disclosure of the present application. In addition, although the examples described herein have various configurations, other configurations are possible as will be apparent after understanding the disclosure of the present application.

[0030] The technical solution of the present invention is further described below with reference to the accompanying drawings and specific embodiments.

[0031] Example 1

[0032] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5As shown, the present invention provides a glass processing fixture, comprising a mounting sleeve 1 and a rotating ring 2. A transmission gear 201 is rotatably mounted inside the mounting sleeve 1, and the rotating ring 2 is meshedly mounted on the outside of the transmission gear 201. A mounting plate 204 is fixedly mounted on the top of the rotating ring 2, and a clamping sleeve 206 is mounted on the internal thread of the mounting plate 204. A rotating shaft 102 extending from the mounting sleeve 1 is rotatably mounted on the top of the transmission gear 201, and a movable sleeve 107 is fixedly mounted on the top of the rotating shaft 102. The top of the movable sleeve 107 is fixedly mounted. A carrying plate 210 is slidably installed on the top, a mounting frame 103 is fixedly installed on the top of the mounting sleeve 1, a telescopic rod 105 is rotatably installed on the inner side of the mounting frame 103, a first suction cup 106 corresponding to the carrying plate 210 is fixedly installed on the output end of the telescopic rod 105, a support column 101 is fixedly installed on the bottom of the mounting sleeve 1, an arc-shaped pad is provided at the bottom of the support column 101, the mounting frame 103 and the telescopic rod 105 are rotatably installed through a bearing ring 104, and a second suction cup 211 is fixedly installed on the top of the carrying plate 210.

[0033] The working principle of a glass processing clamp based on Example 1 is as follows: the first suction cup 106 can be moved downward by the telescopic action of the telescopic rod 105, and the glass on the carrying plate 210 can be adsorbed by the first suction cup 106. In the process of the first suction cup 106 squeezing the glass, the movable rod 109 can slide along the inside of the movable sleeve 107, and at the same time squeeze the spring 108, which can effectively buffer the process of squeezing, thereby limiting the center of the glass. At the same time, the clamping sleeve 206 can be moved along the thread direction of the screw rod 205 by rotating the screw rod 205, and the outer side of the glass can be limited by the clamping sleeve 206. The rotation of the output end of the motor 203 can make the transmission gear 201 rotate synchronously, so that the outer side of the transmission gear 201 is engaged with the meshing teeth 202 installed on the inner side of the rotating ring 2, so that the rotating shaft 102 can rotate synchronously, and at the same time, the mounting plate 204 installed on the top of the rotating ring 2 can be rotated, which can be adjusted according to processing requirements when processing the clamped glass.

[0034] Example 2

[0035] like Figure 2 、 Figure 3 and Figure 5As shown, the present invention proposes a glass processing clamp. Compared with the first embodiment, this embodiment also includes: the movable sleeve 107 and the supporting plate 210 are slidably installed through the moving rod 109, the moving rod 109 and the movable sleeve 107 are movably connected through the spring 108, the mounting plate 204 and the clamping sleeve 206 are threadedly installed through the screw rod 205, the inner side of the clamping sleeve 206 is fixedly installed with a protective pad 207, the inner side of the rotating ring 2 is fixedly installed with meshing teeth 202 that mesh with the meshing teeth 202, and the bottom of the mounting sleeve 1 is fixedly installed with a motor 203 that cooperates with the transmission gear 201.

[0036] In this embodiment, Figure 3 As shown, the moving rod 109 slides along the inside of the movable sleeve 107 and squeezes the spring 108 at the same time, which can effectively buffer the squeeze process, thereby limiting the center of the glass; Figure 5 As shown, by rotating the screw rod 205, the clamping sleeve 206 can move along the thread direction of the screw rod 205, and the outer side of the glass can be limited by the clamping sleeve 206; Figure 2 As shown, the transmission gear 201 can be rotated synchronously by rotating the output end of the motor 203, so that the outer side of the transmission gear 201 engages with the meshing teeth 202 installed on the inner side of the rotating ring 2, thereby enabling the rotating shaft 102 to rotate synchronously, and at the same time enabling the mounting plate 204 installed on the top of the rotating ring 2 to rotate.

[0037] The above specific embodiments are only several preferred embodiments of the present invention. Based on the technical solutions of the present invention and the relevant inspirations of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.

Claims

1. A glass processing fixture, comprising a mounting sleeve (1) and a rotating ring (2), characterized in that: A transmission gear (201) is rotatably mounted inside the mounting sleeve (1), a rotating ring (2) is meshedly mounted on the outside of the transmission gear (201), a mounting plate (204) is fixedly mounted on the top of the rotating ring (2), a clamping sleeve (206) is threadedly mounted on the internal thread of the mounting plate (204), a rotating shaft (102) extending from the mounting sleeve (1) is rotatably mounted on the top of the transmission gear (201), a movable sleeve (107) is fixedly mounted on the top of the rotating shaft (102), a supporting disc (210) is slidably mounted on the top of the movable sleeve (107), a mounting frame (103) is fixedly mounted on the top of the mounting sleeve (1), a telescopic rod (105) is rotatably mounted on the inside of the mounting frame (103), and a first suction cup (106) corresponding to the supporting disc (210) is fixedly mounted on the output end of the telescopic rod (105).

2. A glass processing fixture according to claim 1, characterized in that: A support column (101) is fixedly mounted on the bottom of the mounting sleeve (1), and an arc-shaped pad is provided on the bottom of the support column (101).

3. The glass processing fixture according to claim 1, characterized in that: The mounting frame (103) and the telescopic rod (105) are rotatably mounted via a bearing ring (104), and a second suction cup (211) is fixedly mounted on the top of the carrying plate (210).

4. A glass processing fixture according to claim 1, characterized in that: The movable sleeve (107) and the carrier plate (210) are slidably mounted via a movable rod (109), and the movable rod (109) and the movable sleeve (107) are movably connected via a spring (108).

5. The glass processing fixture according to claim 1, characterized in that: The mounting plate (204) and the clamping sleeve (206) are threadedly mounted via a screw rod (205), and a protective pad (207) is fixedly mounted on the inner side of the clamping sleeve (206).

6. The glass processing fixture according to claim 1, characterized in that: The inner side of the rotating ring (2) is fixedly mounted with meshing teeth (202) that mesh with the meshing teeth (202), and the bottom of the mounting sleeve (1) is fixedly mounted with a motor (203) that cooperates with the transmission gear (201).

Citation Information

Patent Citations

  • Adjustable clamp for glass machining center

    CN219686189U

  • Auxiliary fixing clamp for glass processing

    CN220145736U