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Method and device for machining micro annular grooves through hollow laser and electrolysis in combined mode

A combined processing and laser technology, used in electric processing equipment, attachments, metal processing equipment, etc., can solve problems such as insufficient flexibility and precision, and achieve the effect of reducing critical decomposition voltage, high production efficiency, and good surface quality.

Active Publication Date: 2014-04-09
JIANGSU UNIV
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  • Abstract
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Problems solved by technology

[0008] The purpose of the present invention is to address the shortcomings of the lack of flexibility and precision in the processing of micro-ring grooves, and propose a hollow laser and electrolytic combined processing of micro-ring grooves with high precision, good controllability of the processing area, good surface quality, and high production efficiency method and device

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  • Method and device for machining micro annular grooves through hollow laser and electrolysis in combined mode

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Embodiment Construction

[0026] A kind of device of the present invention combines hollow laser and electrolysis to process the miniature annular groove such as figure 1 As shown, it consists of a laser shock device and an electrolytic processing device. Among them, the laser shock device is composed of computer control system, laser and laser beam variable system; the electrolytic processing device is composed of numerical control system, electrolyte, filter, micro pump, current sensor, data acquisition card, processing power supply and workbench.

[0027] Attached below figure 1 The apparatus shown illustrates in detail the practice of the invention. First, ITO conductive glass is used as the electrode for electrolytic machining, then the workpiece anode 8 is fixed above the electrolytic machining workbench 5, and finally the tool cathode 10 is fixed directly above the workpiece anode 8 and kept at a distance of 5 to 10 mm; The workpiece anode 8 and the tool cathode 10 are respectively connected t...

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Abstract

The invention provides a method and device for machining micro annular grooves through hollow laser and electrolysis in a combined mode, and relates to the field of micro-electrolytic machining. Conducting glass is used as a tool cathode, the critical decomposition voltage of electrolytic machining under laser radiation is reduced, electrolytic machining is carried out on a radiation area, and the size of an annular machining area is controlled through a laser beam changing system. The laser beam changing system can be used for changing the size of an annular groove within a certain range, flexibility and softness of machining are obviously improved, under the laser radiation, the critical decomposition voltage of electrolytic machining is reduced, electrolytic machining of the radiation area is achieved, machining precision of the micro annular groove is improved, and the method and device are applied to machining of micro annular grooves of various conducting metal materials.

Description

technical field [0001] The invention relates to the field of micro-electrolytic processing of manufacturing technology, in particular to a method and device for combined processing of micro-ring grooves by hollow laser and electrolysis. Background technique [0002] Tiny groove structures exist in fields such as household appliances, instrumentation, and precision molds. Its processing accuracy, processing quality and processing efficiency have a great influence on the performance, quality and manufacturing cost of the product. Usually, the processing of ordinary structures is mainly carried out by machining. However, microstructures are often relatively small, and their precision requirements are high, and it is difficult to meet the precision requirements through machining. [0003] The emergence of electrolytic machining provides a channel for the machining of microstructures. In practice, due to its advantages of no loss of tools, high production efficiency, good surfa...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B23H5/00B23H11/00
Inventor 姜银方王春辉姜文帆程志军金华丁报
Owner JIANGSU UNIV
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