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Microstructure and properties of TiB2 particles reinforced Cu–Cr matrix composite

机译:TiB2颗粒增强Cu-Cr基复合材料的组织和性能

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摘要

Copper–chromium matrix composites reinforced by TiB2 particles were prepared by in situ reaction between titanium and copper–boron alloy in the melt. The microstructures, mechanical, and electrical properties of the composite were investigated under as-cast and aging conditions. The results indicate that the TiB2 particles are formed by in situ reaction in matrix. The addition of TiB2 in composite reduces the segregation degree of Cr particles in matrix and inhibits the coarsening of Cr particles at high aging temperature. High hardness of Cu–Cr–TiB2 composite is achieved due to the multiple hardening mechanisms, which are in situ TiB2 particles hardening and precipitation hardening from Cr particles. The wear resistance of composite presents a dramatic improvement due to the formation of TiB2 particles, and TiB2 particles have significant effect on wear mechanism of Cu–Cr–TiB2 composite. The conductivity of composite is lower than that of Cu–Cr alloy, which is attributed to higher resistivity of TiB2 particles and the incremental interface scattering caused by TiB2 particles. But the composites with high TiB2 content still have considerable conductivity after aging.
机译:通过钛和铜-硼合金在熔体中的原位反应制备了由TiB2颗粒增强的铜-铬基复合材料。在铸态和时效条件下研究了复合材料的微观结构,机械性能和电性能。结果表明,TiB2颗粒是在基体中通过原位反应形成的。在复合材料中添加TiB2可以降低Cr颗粒在基体中的偏析程度,并抑制Cr颗粒在高时效温度下的粗大化。 Cu-Cr-TiB2复合材料的高硬度归因于多种硬化机制,即原位TiB2粒子硬化和Cr粒子的沉淀硬化。由于形成了TiB2颗粒,复合材料的耐磨性得到了显着改善,并且TiB2颗粒对Cu–Cr–TiB2复合材料的磨损机理有显着影响。复合材料的电导率低于Cu-Cr合金,这归因于TiB2颗粒的较高电阻率和TiB2颗粒引起的界面散射增加。但是,TiB2含量高的复合材料在老化后仍具有相当大的导电性。

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  • 来源
    《Journal of Materials Science》 |2015年第9期|3320-3328|共9页
  • 作者单位

    School of Materials Science and Engineering Dalian University of Technology">(1);

    School of Materials Science and Engineering Dalian University of Technology">(1);

    School of Materials Science and Engineering Dalian University of Technology">(1);

    School of Materials Science and Engineering Dalian University of Technology">(1);

    Laboratory of Special Processing of Raw Materials Dalian University of Technology">(2);

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