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Microstructure,wear and friction behavior of CoCrAITaY-xCNTs composite coatings deposited by laser-induction hybrid cladding
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作者 Sheng-Feng Zhou Yu Long +2 位作者 Yan-Liang Yi Cheng Deng Lian-Xi Hu 《Rare Metals》 SCIE EI CAS CSCD 2024年第4期1815-1827,共13页
To improve the wear performance of CoCrAlYTa coating,part of the carbon nanotubes(CNTs)chemically reacted with Ta to form reinforcement phase(TaC),while the other CNTs were retained as lubrication phase.Subsequently,t... To improve the wear performance of CoCrAlYTa coating,part of the carbon nanotubes(CNTs)chemically reacted with Ta to form reinforcement phase(TaC),while the other CNTs were retained as lubrication phase.Subsequently,the CoCrAlYTa-xCNTs(x=0,1,2,and 4;wt%)composite coatings were prepared by laserinduction hybrid cladding(LIHC),and the microstructure and wear resistance of coatings were systematically analyzed.Results show that the coatings are mainly composed of TaC,y-(Co,Cr)andβ-(Co,Cr)Al.As the CNTs content increases from 0 wt%to 4 wt%,the volume fraction of TaC increases from 13.11 vol%to 16.12 vol%.Meanwhile,the nano-hardness ofγ-(Co,Cr)andβ-(Co,Cr)Al are improved from 7.49 and 9.72 to 9.36 and 11.19 GPa,respectively.As a result,the microhardness of coating increases from HV536.25 to HV 738.16,the wear rate decreases from32.4×10^(-3)to 6.1×10^(-3)mg·m^(-1),and the average friction coefficient decreases from 0.55 to 0.44.The good wear performance of the coating is attributed to the formation of TaC and the existence of remained CNTs lubricant film. 展开更多
关键词 Carbon nanotube MCrAlY coating Friction and wear performance laser-induction hybrid cladding
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激光-感应复合熔覆Cu-Fe合金涂层的结构与性能 被引量:4
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作者 周圣丰 戴晓琴 +2 位作者 熊征 张天佑 吴超 《中国有色金属学报》 EI CAS CSCD 北大核心 2014年第7期1812-1816,共5页
采用激光-感应复合熔覆方法,在黄铜基材表面制备Cu-Fe合金涂层,研究涂层的显微组织与性能特征。结果表明,当激光扫描速度为3000 mm/min、粉末流量为110 g/min时,在黄铜基材上获得表面较光滑、无气孔与裂纹的Cu-Fe合金涂层。另外,Cu-Fe... 采用激光-感应复合熔覆方法,在黄铜基材表面制备Cu-Fe合金涂层,研究涂层的显微组织与性能特征。结果表明,当激光扫描速度为3000 mm/min、粉末流量为110 g/min时,在黄铜基材上获得表面较光滑、无气孔与裂纹的Cu-Fe合金涂层。另外,Cu-Fe合金在激光-感应复合熔覆过程中发生液相分离,在涂层底部,过饱和的金属基体α-Fe呈平面状与柱状枝晶生长;在涂层中上部,直径不等的球状颗粒α-Fe镶嵌在过饱和的金属基体ε-Cu内,许多细小的白色粒状物ε-Cu在球状颗粒α-Fe内均匀弥散析出,涂层的平均显微硬度相对于基材的提高约2.8倍。 展开更多
关键词 Cu-Fe合金涂层 黄铜基材 激光-感应复合熔覆 显微结构
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