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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure evolution of Ni-Mo-Fe-Si quaternary metal silicide alloy composite coatings by laser cladding on pure Ni
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Microstructure evolution of Ni-Mo-Fe-Si quaternary metal silicide alloy composite coatings by laser cladding on pure Ni

机译:纯Ni激光熔覆Ni-Mo-Fe-Si季金属硅化物合金合金复合涂层的微观结构演化

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Three Ni-Mo-Fe-Si quaternary metal silicide alloy coatings were fabricated on the pure nickel plate by laser cladding. The mixed powders of different compositions of Ni, Mo, Fe, and Si elements were employed as the cladding materials. X-ray diffraction, transmission electron microscopy, scanning electron microscopy, and electron backscattering diffraction were adopted to investigate the microstructure. The wear properties of three coatings were evaluated under large contact load at room-temperature, dry-sliding wear-test conditions. Results indicated that the phases of three coatings were Ni3Si2/Ni2Si/MO2( Ni, Fe)(3)Si as matrix phases and Mo-2(Ni, Fe)(3)Si/Mo6Ni5Si2 as primary phases, Ni3Si2/gamma-(Ni, Fe)+Ni31Si12/gamma-(Ni, Fe) as matrix phases and Mo-2(Ni, Fe)(3)Si/Mo6Ni5Si2 as primary phases, and gamma-(Ni, Fe) as the matrix phase and Mo-2(Ni, Fe)(3) Si as the primary phase for Coatings 1, 2, and 3, respectively. For quaternary metal silicide alloys, ideal configurational entropy of Ni-Mo-Fe-Si alloys increased as the composition tends to equimolar ratio. High entropy will reduce the kinds of phases and be easy to form phases with simple structure in Ni-Mo-Fe-Si coatings. The solubility of Fe element in Mo-2(Ni, Fe)(3) Si phase is high because of the its replacement of Ni in this complicate phase. The average micro-hardness for Coatings 1, 2, and 3 is 987 HV, 977 HV, and 734 HV, respectively. Three coatings exhibited outstanding wear resistance due to a combination of excellent strength and toughness. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过激光包层在纯镍板上制造三个Ni-Mo-Fe-Si季硅金属硅化物合金涂料。使用Ni,Mo,Fe和Si元素的不同组合物的混合粉末作为包层材料。采用X射线衍射,透射电子显微镜,扫描电子显微镜和电子背散射衍射来研究微观结构。在室温下大的接触载荷,干燥滑动磨损试验条件下评估三种涂层的磨损性能。结果表明,三个涂层的相是Ni3 Si 2 / Ni2Si / Mo2(Ni,Fe)(3)Si,为基质相和Mo-2(Ni,Fe)(3)Si / Mo6Ni5Si2作为初级相,Ni3Si2 /γ-( Ni,Fe)+ Ni31Si12 / gamma-(Ni,Fe)作为基质相和Mo-2(Ni,Fe)(3)Si / Mo6Ni5Si2作为初级相,以及γ-(Ni,Fe)作为基质阶段和Mo -2(Ni,Fe)(3)Si作为涂层1,2和3的初级相。对于季金属硅化物合金,由于组成趋于等摩尔比例,Ni-Mo-Fe-Si合金的理想配置熵增加。高熵将减少各阶段的种类,并且易于在Ni-Mo-Fe-Si涂层中具有简单结构的相位。由于其在这种复杂相中替换,Fe-2(Ni,Fe)(3)Si相中的Fe元素(Ni,Fe)(3)Si相的溶解度高。用于涂层1,2和3的平均微硬度分别为987HV,977HV和734HV。由于优异的强度和韧性,三种涂层具有出色的耐磨性。 (c)2019 Elsevier B.v.保留所有权利。

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