Electrical Discharged Coating by Spark Plasma Sintered Tungsten Porous Electrode

K. Kaneko, Kazuhiko Furukawa, K. Kihara, Naritoshi Aoyagi
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Abstract

This paper describes a high-hardness coating process by spark plasma sintered tungsten porous electrode with an electrical discharge machine utilizing the electrical discharge machining phenomenon. The effects of the electrical discharge machining conditions, the relative density of the sintered material used as the tool electrode, and the particle size on the coating properties were investigated. By using porous tungsten as the tool electrode, a processed surface with a higher hardness was achieved. In addition, the lower the relative density, the higher was the Vickers hardness of the processed surface. Spark plasma sintering (SPS) sintered tungsten was used, and it was observed that the larger the discharge current, and the larger the powder particle size of the SPS sintered tungsten was, the higher was the Vickers hardness of the processed surface.
放电等离子体烧结钨孔电极的放电涂层
本文利用放电加工现象,在电火花等离子体烧结钨孔电极上进行了高硬度涂层加工。研究了电火花加工条件、用作工具电极的烧结材料的相对密度和颗粒尺寸对涂层性能的影响。采用多孔钨作为工具电极,获得了具有较高硬度的加工表面。相对密度越低,加工表面的维氏硬度越高。采用放电等离子烧结(SPS)烧结钨,观察到放电电流越大,SPS烧结钨的粉末粒度越大,加工表面的维氏硬度越高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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