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W_9Mo_3Cr_4V钢脉冲放电强化涂层激光熔覆的研究
引用本文:沈德久,苑辉,南云,乔桂英,王玉林,郑启光,辜建辉,王涛,陶星之.W_9Mo_3Cr_4V钢脉冲放电强化涂层激光熔覆的研究[J].中国激光,1998,25(4):374-376.
作者姓名:沈德久  苑辉  南云  乔桂英  王玉林  郑启光  辜建辉  王涛  陶星之
作者单位:燕山大学材料工程学院,华中理工大学激光院
基金项目:华中理工大学激光技术国家重点开放实验室资助
摘    要:采用XRD和TEM等现代分析手段研究了W9Mo3Cr4V高速钢脉冲放电YG8强化涂层激光熔覆后的组织与表面硬度变化。结果表明,经适当的激光熔覆后,试样表面硬度可达HV0.11600~1800。分析认为,获得如此高硬度的主要原因是W2C和WC等高硬相及纳米晶组织的形成。

关 键 词:激光熔覆,YG8,放电涂层,W_9Mo_3Cr_4V钢
收稿时间:1997/6/2

Laser Cladding Study of a Pulse Discharge Enhanced Layer for W 9Mo 3Cr 4V Steel
Shen Dejiu,Yuan Hui,Nan Yun,Qiao Guiying,Wang Yulin.Laser Cladding Study of a Pulse Discharge Enhanced Layer for W 9Mo 3Cr 4V Steel[J].Chinese Journal of Lasers,1998,25(4):374-376.
Authors:Shen Dejiu  Yuan Hui  Nan Yun  Qiao Guiying  Wang Yulin
Abstract:After laser cladding, the microstructure and surface hardness of a YG8 pulse discharge coating for W 9Mo 3Cr 4V high speed steel were studied by means of XRD and TEM, etc. The results showed that the surface hardness of the coating could come up to HV 0.1 1600 ̄1800 after it was laser cladded. It is thought that formation of higher hard phases, such as W2C, and nanometer crystal microstructure is mainly responsible for so high coating hardness.
Keywords:laser cladding  YG8  discharge coating  W  9Mo  3Cr  4V steel  
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