首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of NiCrBSi content on microstructural evolution, cracking susceptibility and wear behaviors of laser cladding WC/Ni-NiCrBSi composite coatings
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Effect of NiCrBSi content on microstructural evolution, cracking susceptibility and wear behaviors of laser cladding WC/Ni-NiCrBSi composite coatings

机译:NiCrBSi含量对激光熔覆WC / Ni-NiCrBSi复合涂层的组织演变,开裂敏感性和磨损行为的影响

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摘要

Ni-based composite coatings were produced on the Ti6Al4V substrate by laser cladding 30 wt.% WC/ 70 wt.% (Ni-NiCrBSi). The microstructural evolution and mechanical properties were investigated in details. The results indicated that the coating (70 wt.% Ni) was mainly composed of WC and TiC as reinforcements, alpha(Ti), TiNi and Ti2Ni as the matrix. Two new phases (W, Ti) C and Ni3B were formed in the coating (21 wt.% Ni-49 wt.% NiCrBSi). When the content of NiCrBSi was further increased to 63 wt.% and 70 wt.%, the matrix was transformed into TiNi and TiNi3, and microstructural uniformity was also improved. As the contents of NiCrBSi were varied (0 wt.%, 49 wt.%, 63 wt.%, 70 wt.%), the average microhardness of the coatings was increased gradually (745 HV0.1, 976 HV0.1, 1046 HV0.1 and 1107 HV0.1), however fracture toughness presents the opposite change trend (4.20 MPa m(1/2), 3.57 MPa m(1/2), 3.02 MPa m(1/2) and 2.92 MPa m(1/2)). Wear mechanism was also changed from the micro-cutting into the mixture of the micro-cutting and the brittle debonding, into the brittle debonding. The appropriate addition of Ni (21 wt.%) into the 30 wt.% WC-NiCrBSi cladding material was favorable to the improvement in wear resistance of the coating. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过激光熔覆30 wt。%WC / 70 wt。%(Ni-NiCrBSi)在Ti6Al4V基板上生产Ni基复合涂层。详细研究了组织演变和力学性能。结果表明,涂​​层(Ni含量为70 wt%)主要由WC和TiC作为增强材料,α(Ti),TiNi和Ti2Ni作为基体。在涂层中形成了两个新的相(W,Ti)C和Ni3B(21%(重量)的Ni-49%(重量)的NiCrBSi)。当NiCrBSi的含量进一步增加至63wt。%和70wt。%时,基体转变为TiNi和TiNi3,并且微结构均匀性也得到改善。随着NiCrBSi含量的变化(0 wt。%,49 wt。%,63 wt。%,70 wt。%),涂层的平均显微硬度逐渐提高(745 HV0.1、976 HV0.1、1046) HV0.1和1107 HV0.1),但是断裂韧性呈现相反的变化趋势(4.20 MPa m(1/2),3.57 MPa m(1/2),3.02 MPa m(1/2)和2.92 MPa m( 1/2))。磨损机理也从微切削转变为微切削和脆性脱胶的混合物,变为脆性脱胶。在30重量%的WC-NiCrBSi包覆材料中适当添加Ni(21重量%)有利于提高涂层的耐磨性。 (C)2014 Elsevier B.V.保留所有权利。

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