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Progress of Spark Plasma Sintering (SPS) Method, Systems, Ceramics Applications and Industrialization

机译:火花等离子体烧结(SPS)方法,系统,陶瓷应用和工业化进展

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The spark plasma sintering (SPS) method is of great interest to the powder and powder metallurgy industry and material researchers of academia for both product manufacturing and advanced material research and development. Today in Japan, a number of SPS products for different industries have already been realized. Today’s fifth-generation SPS systems are capable of producing parts of increasing size, offering improved functionality, reproducibility, productivity, and cost. For instance, pure nano-Tungsten Carbide WC powder (no additives) is fully densified with a nano-grain-sized structure for glass lens application in the optics industry. The SPS is now moving from scientific academia and/or R&D proto-type materials level usage to practical industry use product stage utilizing in the field of electronics, automotive, mold and die, cutting tools, fine ceramics, clean energy, biomaterials industries, and others. This paper reviews and introduces the peculiar phenomenon of SPS and the progress of SPS technology, method, development of SPS systems, and its industrial product applications.
机译:火花等离子体烧结(SPS)方法对产品制造和先进材料研发的学术界的粉末和粉末冶金工业和材料研究人员感兴趣。今天在日本,已经实现了一些不同行业的SPS产品。今天的第五代SPS系统能够生产较大的部分,提供改善的功能,再现性,生产力和成本。例如,纯纳米钨碳化物WC粉末(无添加剂)用纳米粒度结构完全致密化,用于光学工业中的玻璃镜片应用。 SPS现在正在从科学学术界和/或R&&& D原型材料水平使用到实用行业使用产品阶段利用电子设备,汽车,模具和模具,切割工具,精细陶瓷,清洁能源,生物材料行业, 和别的。本文审查和介绍了SPS的特殊现象以及SPS技术,SPS系统的开发以及其工业产品应用的奇形现象。

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