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Optical process center circulating cooling system

A circulating cooling system and optical processing technology, which is applied in metal processing equipment, manufacturing tools, grinding/polishing equipment, etc., can solve the problems of processing quality impact, cooling liquid not being cooled, and cooling liquid flow and flow rate cannot be controlled , to ensure the effect of processing quality

Inactive Publication Date: 2008-03-19
CHANGCHUN INST OF OPTICS FINE MECHANICS & PHYSICS CHINESE ACAD OF SCI
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This optical machining center circulation cooling system has the following disadvantages: since the coolant is directly pumped out by the water inlet pump after it flows back into the water tank, and then flows into the optical machining center through the water inlet pipe again, the coolant cannot be fully cooled; No filtering measures are taken during the circulation process, so the glass powder particles in the cooling liquid will have a great impact on the processing quality of the optical processing center and optical components; the circulating cooling system cannot control the flow and velocity of the cooling liquid according to the needs of the optical processing center

Method used

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  • Optical process center circulating cooling system

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Embodiment Construction

[0011] As shown in Figure 1, the circulating cooling device of the optical processing center of the present invention comprises a water tank 1, an inlet water pump 2, an inlet pipe 3, a return pipe 4, a return water passage 5, a return water pump 6, and a filter precipitation device; The device includes a first-stage sedimentation chamber 9, a second-stage filtration sedimentation chamber 10, and a third-stage filtration sedimentation chamber 11; the water inlet of the water inlet pump 2 communicates with the water tank 1, and the water outlet communicates with the optical processing center through the water inlet pipe 3; the return water channel 5 passes through The return pipe 4 communicates with the optical processing center; the water inlet of the return water pump 6 communicates with the return water channel 5 , and the water outlet communicates with the primary sedimentation chamber 9 through the water pipe 7 . The water pipe 7 connected to the water outlet of the return ...

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Abstract

The invention relates to a circulating cooling system for an optical processing center. The system consists of a water tank, an inlet pump, an inlet pipe, a return pipe and a filtrating and settling device, wherein the water inlet of the inlet pump is communicated with the water tank and the water outlet of the inlet pump is communicated with the optical processing center by the inlet pipe; the coolant of the inlet pump from the water tank is released to the processing center through the inlet pipe, and the glass powder particles produced in the processing course flows into the filtrating and settling device accompanying by the coolant; the outlet of the filtrating and settling device is communicated with the water tank, and the coolant flows into the water tank after the complete filtration and settlement in the filtrating and settling device. The invention enables the full filtration of glass powder particles in the course of optical processing, thus ensuring the processing quality of optical elements.

Description

technical field [0001] The invention relates to a circulating cooling system, in particular to a circulating cooling system of an optical processing center. Background technique [0002] The circulating cooling in the optical processing process is significantly different from the mechanical processing. The glass powder particles produced in the processing process are small, difficult to filter, and light in weight, not easy to precipitate. If they cannot be separated well, the optical processing center and optical components will be damaged. The processing quality will have a great influence. [0003] The existing circulating cooling system of the optical processing center includes a water tank, a water inlet pump, a water inlet pipe, a water return pipe, and a water return channel. The coolant pumped by the water inlet pump from the water tank flows into the optical processing center through the water inlet pipe to cool the optical processing machinery and optical componen...

Claims

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Application Information

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IPC IPC(8): B24B55/03
Inventor 陈亚宋淑梅谢京江
Owner CHANGCHUN INST OF OPTICS FINE MECHANICS & PHYSICS CHINESE ACAD OF SCI
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