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TC4钛合金表面激光熔覆法制备Y_2O_3颗粒增强Ni/TiC复合涂层(英文) 被引量:16

Synthesis of Y_2O_3 particle enhanced Ni/TiC composite on TC4 Ti alloy by laser cladding
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摘要 采用激光熔覆法在TC4钛合金表面原位制备Y2O3颗粒增强Ni/TiC复合涂层,研究涂层的相组成、微结构、成分分布及性能。结果表明,复合涂层内的微结构和成分在深度方向具有分层现象,这主要是由激光熔覆过程的快速熔凝和冷却过程所致。在激光熔覆过程中,TiC粉末完全熔化并在凝固过程中析出为细小枝晶,这些TiC枝晶的尺寸随着深度的增加而减小,而Y2O3颗粒则分布在整个重熔层中。Y2O3颗粒增强Ni/TiC复合涂层具有较均匀的硬度,其最高值约为HV1380,比基体高4倍以上。由于复合涂层具有高的硬度,钛合金经过激光熔覆后其耐磨性得到大幅度提高。 A Y2O3 particle enhanced Ni/TiC composite coating was fabricated in-situ on a TC4 Ti alloy by laser surface cladding. The phase component, microstructure, composition distribution and properties of the composite layer were investigated. The composite layer has graded microstructures and compositions, due to the fast melting followed by rapid solidification and cooling during laser cladding. The TiC powders are completely dissolved into the melted layer during melting and segregated as fine dendrites when solidified. The size of TiC dendrites decreases with increasing depth. Y2O3 fine particles distribute in the whole clad layer. The Y2O3 particle enhanced Ni/TiC composite layer has a quite uniform hardness along depth with a maximum value of HV1380, which is 4 times higher than the initial hardness. The wear resistance of the Ti alloy is significantly improved after laser cladding due to the high hardness of the composite coating.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第8期1817-1823,共7页 中国有色金属学报(英文版)
基金 Projects (51101096, 51002093) supported by the National Natural Science Foundation of China Project (1052nm05000) supported by Special Foundation of the Shanghai Science and Technology Commission for Nano-Materials Research Project (J51042) supported by Leading Academic Discipline Project of the Shanghai Education Commission, China
关键词 TC4钛合金 Ni/TiC复合涂层 Y2O3 激光熔覆 硬度 表面改性 TC4 Ti alloy Ni/TiC composite Y2O3 laser cladding hardness surface modification
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