一种光学玻璃加工用玻璃干燥夹持设备

By designing a glass drying and clamping device for optical glass processing, the device utilizes a dryer and a threaded rod system to achieve glass drying and clamping, solving the problems of moisture residue and slippage during glass processing, and improving the stability and safety of the processing.

CN224517244UActive Publication Date: 2026-07-17XINYANG TUZHAN OPTICS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XINYANG TUZHAN OPTICS CO LTD
Filing Date
2025-06-23
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Residual moisture during glass processing causes slippage during clamping, causing trouble for workers.

Method used

A glass drying and clamping device for optical glass processing was designed, comprising a support structure, a clamping structure and a transmission structure. The device achieves glass drying and clamping through a dryer and a threaded rod system. The rotation and movement of the threaded rod drive the clamping plate to effectively clamp and dry the glass.

Benefits of technology

It effectively removes moisture from the glass surface, prevents slipping, and improves the stability and safety of the processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及夹持技术领域,具体为一种光学玻璃加工用玻璃干燥夹持设备,包括:支撑结构、夹持结构和传输结构,所述支撑结构中的第一螺纹孔内部旋转连接第一螺纹杆,所述第一螺纹杆上端活动连接在第一底盘下端,所述支撑结构中的底座两侧用螺栓连接夹持结构中的螺纹柱,所述螺纹柱内部旋转连接第二螺纹杆,所述第二螺纹杆上端活动连接在第二底盘内部,所述第二底盘上端用第二螺纹孔与第三螺纹杆连接,所述支撑结构中的管道上端用螺栓连接风干机,所述风干机下端用螺栓连接第二转动槽,所述第二转动槽下端用螺栓与连接板上端连接,通过伸缩杆可以带动连接板进行上下移动,通过第二转动槽可以活动连接第五连接杆上端。
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Claims

1. A glass drying chucking apparatus for optical glass processing, comprising: The support structure (1), clamping structure (2), and transmission structure (3) are characterized in that: a first threaded rod (105) is rotatably connected inside the first threaded hole (104) in the support structure (1), the upper end of the first threaded rod (105) is movably connected to the lower end of the first chassis (107), and the base (101) in the support structure (1) is bolted to the threaded column (201) in the clamping structure (2) on both sides, and a second threaded rod (205) is rotatably connected inside the threaded column (201). 02), the upper end of the second threaded rod (202) is movably connected to the inside of the second chassis (204), the upper end of the second chassis (204) is connected to the third threaded rod (206) by the second threaded hole (205), the upper end of the pipe (103) in the support structure (1) is bolted to the air dryer (307), the lower end of the air dryer (307) is bolted to the second rotating groove (306), and the lower end of the second rotating groove (306) is bolted to the upper end of the connecting plate (303).

2. The glass drying chuck apparatus for optical glass processing according to claim 1, characterized by: The base (101) in the support structure (1) is bolted to the drying structure (102) on one side, and the upper end of the drying structure (102) is bolted to the pipe (103).

3. A glass drying chuck apparatus for optical glass processing according to claim 2, characterized in that: The base (101) is hollow inside to form a first threaded hole (104). A first threaded rod (105) is rotatably connected inside the first threaded hole (104). The first rotating disk (106) is bolted to the outside of the first threaded rod (105). The upper end of the first threaded rod (105) is movably connected to the lower end of the first chassis (107). The lower end of the vent (108) is bolted to the upper end of the first chassis (107).

4. The glass drying chuck apparatus for optical glass processing according to claim 1, characterized by: The threaded post (201) in the clamping structure (2) is rotatably connected to the second threaded rod (202). The second threaded rod (202) is bolted to the outside of the second rotating disk (203). The upper end of the second threaded rod (202) is movably connected to the second chassis (204). The upper end of the second chassis (204) is bolted to the second threaded hole (205). The second threaded hole (205) is rotatably connected to the third threaded rod (206).

5. The glass drying chuck apparatus for optical glass processing according to claim 4, characterized by: The third threaded rod (206) is movably connected to the first rotating groove (207) on one side. The first rotating groove (207) is hollowed out to form a third threaded hole (208) on one side. The third threaded hole (208) is movably connected to the first clamping plate (209). The first clamping plate (209) is rotatably connected to the fourth threaded rod (210) on one side. The bottom clamping plate (211) is welded to the lower end of the first rotating groove (207).

6. The glass drying and clamping device for optical glass processing according to claim 1, characterized in that: The upper end of the base plate (301) in the transmission structure (3) is bolted to the telescopic rod (302), the upper end of the telescopic rod (302) is bolted to the lower end of the connecting plate (303), and the upper end of the connecting plate (303) is bolted to the second rotating groove (306).

7. A glass drying chuck apparatus for optical glass processing according to claim 6, characterized in that: The fifth threaded rod (304) is movably connected inside the second rotating groove (306), the outside of the fifth threaded rod (304) is bolted with the third rotating disc (305), and the upper end of the second rotating groove (306) is bolted with the lower end of the air dryer (307).