论文标题
双光发出现象的一系列血浆创新技术
A Series of Plasma Innovation Technologies by Double Glow Discharge Phenomenon
论文作者
论文摘要
为了打破血浆硝化技术的局限性,可以应用于一些非金属的气态元件,发现了“双光发出现象”,然后发明了“双光泽等离子体表面冶金技术”。这种双光发光的等离子体表面冶金技术可以在化学元件的元素表中使用任何元素,以进行金属材料的表面合金化。 Countless surface alloys with special physical and chemical properties have been produced on the surfaces of conductive materials.By using double glow discharge phenomenon,a series of new plasma technologies,such as the double glow plasma graphene technology, double glow plasma brazing technology,double glow plasma sintering technology, double glow plasma nanotechnology,double glow plasma cleaning technology, double glow plasma carburizing without氢等已经发明了。双光发出的非常简单的现象可以产生约10种等离子体创新技术,这完全表明,基于古典物理学,仍然存在很多创新空间。本文简要介绍了每种技术的基本原理,功能和特征。还将讨论等离子体在金属材料和机械制造业中的应用前景和开发方向。
In order to break the limitation of plasma nitriding technology,which can be applied to a few nonmetallic gaseous elements, the "Double Glow Discharge Phenomenon" was found and then invented the "Double Glow Plasma Surface Metallurgy Technology". This double glow plasma surface metallurgy technology can use any element in the periodic table of chemical elements for surface alloying of metal materials. Countless surface alloys with special physical and chemical properties have been produced on the surfaces of conductive materials.By using double glow discharge phenomenon,a series of new plasma technologies,such as the double glow plasma graphene technology, double glow plasma brazing technology,double glow plasma sintering technology, double glow plasma nanotechnology,double glow plasma cleaning technology, double glow plasma carburizing without hydrogen and so on, have been invented.A very simple phenomenon of double glow discharge can generate about 10 plasma innovation technologies, which fully shows that there is still a lot of innovation space on the basis of classical physics.This paper briefly introduces the basic principles,functions and characteristics of each technology. The application prospects and development directions of plasma in metal materials and machinery manufacturing industry will also be discussed.