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首页> 外文期刊>Tribology International >Microstructure and high temperature reciprocating sliding wear properties of MoSi2/TiC/gamma-Ni composite coating in-situ synthesized by co-axial powder feeding plasma transferred arc cladding
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Microstructure and high temperature reciprocating sliding wear properties of MoSi2/TiC/gamma-Ni composite coating in-situ synthesized by co-axial powder feeding plasma transferred arc cladding

机译:通过协轴粉末进料等离子体转印弧形覆盖物研磨MOSI2 / TIC / GAMMA-Ni复合涂层的微观结构和高温往复滑动磨损性能

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摘要

A MoSi2/TiC/gamma-Ni high temperature wear-resistant composite coating was in-situ synthesized on AISI 321 substrate by co-axial powder feeding plasma transferred arc (PTA) cladding process using powders blend of Ni, Ti, Mo, Si and Ni-P coated graphite as raw material. Microstructure and in-situ synthesis mechanism of the composite coating was analyzed. High temperature tribological properties of the coating were evaluated. Test results show that the composite coating has refined microstructure consisting of MoSi2, TiC and gamma-Ni. TiC and MoSi2 as in-situ synthesized reinforcing phases are uniformly scattered in the gamma-Ni/TiC binary eutectic matrix. Benefiting from the unique microstructure, the coating exhibits high hardness, low and stable friction coefficient values and good high temperature reciprocating sliding wear resistance.
机译:通过使用Ni,Ti,Mo,Si和Mo,Si和Si和Mo,Si和Si和Mo,Si和Si的粉末粉末进料等离子体转移弧(PTA)包层工艺在AISI 321基板上在AISI 321基板上合成MOSI2 / TiC / Gamma-Ni高温耐磨复合涂层。 Ni-P涂层石墨作为原料。 分析了复合涂层的微观结构和原位合成机理。 评价涂层的高温摩擦学性质。 测试结果表明,复合涂层具有精制的微观结构,由MOSI2,TIC和γ-Ni组成。 作为原位合成的增强相的TiC和MOSI2均匀地散射在γ-Ni / TiC二元共晶基质中。 受益于独特的微观结构,涂层具有高硬度,低且稳定的摩擦系数值以及良好的高温往复滑动耐磨性。

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