首页> 外文期刊>Journal of Micromechanics and Microengineering >Fabrication of a micro-tool in micro-EDM combined with co-deposited Ni-SiC composites for micro-hole machining
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Fabrication of a micro-tool in micro-EDM combined with co-deposited Ni-SiC composites for micro-hole machining

机译:在微电火花加工中结合共沉积Ni-SiC复合材料的微孔加工微孔加工

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摘要

This paper presents an in situ process using a micro-tool in micro-electro-discharge-machining combined with co-deposited Ni-SiC composites to drill and finish micro-holes. During the machining process, a micro-tool is fabricated by wire electro-discharge grinding and electrodeposition. The experimental result shows that the suitable parameters obtained for fabricating micro-tools for Ni-SiC composite coatings are a current density of 7 A dm(-2), positive ring hole diameter of 5 mm, SiC particle size of 4 mu m, SiC particle concentration of 10 g l(-1), rotational speed of 15 rpm and surfactant cetyltrimethylammonium bromide concentration of 150 ppm. When using this method, the micro-tool is provided with a smooth Ni layer, uniform particle distribution and suitable particle adhesion quantity. Then, circular micro-holes are machined in high nickel alloy. Scanning electron microscopy micrographs and atomic force microscopy measurements show that micro-grinding can improve the surface roughness from 1.47 mu m Rmax to 0.462 mu m Rmax.
机译:本文提出了一种在微电火花加工中使用微工具结合共沉积Ni-SiC复合材料在微孔上进行钻孔和精加工的原位工艺。在加工过程中,通过电火花线切割和电沉积来制造微型工具。实验结果表明,获得的制备Ni-SiC复合涂层微工具的合适参数为7 A dm(-2)的电流密度,5 mm的正环孔直径,4μm的SiC粒径,SiC颗粒浓度为10 gl(-1),转速为15 rpm,表面活性剂十六烷基三甲基溴化铵浓度为150 ppm。当使用该方法时,微型工具具有光滑的Ni层,均匀的颗粒分布和合适的颗粒附着量。然后,在高镍合金中加工出圆形微孔。扫描电子显微镜照片和原子力显微镜测量结果表明,微研磨可以将表面粗糙度从1.47μmRmax改善到0.462μmRmax。

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