Electrolytic machining machine tools
Electrolytic machining machine tools
Electrolytic machining machine tools
Electrolytic machining machine tools
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  • Electrolytic machining machine tools
  • Electrolytic machining machine tools
  • Electrolytic machining machine tools
  • Electrolytic machining machine tools

Electrolytic machining machine tools

Electrolytic EDM combined machine tools combined with electrical machining technology are committed to the theoretical research, process research and engineering application of precision electrolytic machining technology and EDM technology, providing new technology development, special equipment development, typical product mass production, personnel training, etc. Directional technical services. It has carried out in-depth cooperation with well-known domestic enterprises such as China Aviation Development Corporation and AVIC, and has established a Sino-German Advanced Manufacturing Joint Research Center with the German EAMG Group to establish the country's first precision electrolytic machining laboratory open to the outside world.

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Key words:

Tool matrix-Fixture matrix

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Product Description

Electrolytic EDM combined machine tools combined with electrical machining technology are committed to the theoretical research, process research and engineering application of precision electrolytic machining technology and EDM technology, providing new technology development, special equipment development, typical product mass production, personnel training, etc. Directional technical services. It has carried out in-depth cooperation with well-known domestic enterprises such as China Aviation Development Corporation and AVIC, and has established a Sino-German Advanced Manufacturing Joint Research Center with the German EAMG Group to establish the country's first precision electrolytic machining laboratory open to the outside world.

In response to the manufacturing needs of high-performance, high-precision, lightweight components in aerospace, we have developed high-performance laser manufacturing and additive manufacturing technology, arc additive manufacturing technology, breakthroughs in key technologies such as material preparation, structure-performance optimization and deformation control, combined with The lightweight design method achieves structure-process-function integration, is suitable for rapid manufacturing of complex metal structural parts, and improves the design and manufacturing level of aerospace metal components.

It has more than ten technical invention patents and a self-developed electrochemical machining integrated control system. For different application objects, it has innovatively developed vibration feed group pulse current precision electrolytic machining equipment, electrolytic grinding composite machining equipment and multi-station blade electrolytic machining. Special equipment has been successfully used in process research and parts mass production.

Integrating many years of electrical machining research experience, we innovatively developed electrical machining process simulation and programming software to achieve interference inspection during the machining process, prediction of machining results, rapid analysis of three-coordinate measurement data, and rapid and accurate design of tool cathodes, significantly shortening the process development cycle.

Electrolytic machining is not affected by the mechanical strength of metal materials. It has technical advantages such as high processing efficiency, good surface quality, and no loss of tool cathodes. It is especially suitable for precision machining of ultra-thin blades with spatially curved surfaces of difficult-to-machine materials, and can realize process turnkey and mass production. It is of great significance to improve the quality and control the cost of aerospace engine blades. At present, the following technical indicators can be achieved: the blades can be processed and formed in one step, the surface accuracy is -0.03 ~ +0.05mm, the surface roughness of stainless steel blades Ra≤0.1μm, the surface roughness of nickel-based high-temperature alloy blades Ra≤0.2μm, the surface roughness of titanium alloy blades Roughness Ra≤0.4μm.

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