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首页> 外文期刊>Journal of Materials Science >Optimisation of high thermal conductivity Al/diamond composites produced by gas pressure infiltration by controlling infiltration temperature and pressure
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Optimisation of high thermal conductivity Al/diamond composites produced by gas pressure infiltration by controlling infiltration temperature and pressure

机译:通过控制渗透温度和压力优化气压渗透制备的高导热率铝/金刚石复合材料

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摘要

In this study, Al/diamond composites were fabricated by the gas pressure infiltration method. The infiltration temperature and pressure were varied to study their influence on the interfacial microstructures and thermal conductivities of composites. The results show that the infiltration temperature and pressure dramatically affect the reaction between the Al matrix and the diamond particles. The appropriate conditions activate the reaction on the {111} faces of diamond which possesses a higher chemical stability than the {100} faces. The course of the reaction can lead to the structural and chemical modification of the interface, which strongly affects the thermal conductivity of the final composites. Using our optimised parameters of 800 °C and 0.8 MPa, a superior thermal conductivity above 760 W m−1 K−1 was obtained. Controlling the fabrication parameters to optimise the reaction on the {100} and {111} faces can result in a superior Al/diamond material with greater thermal conductivity.
机译:在这项研究中,Al /金刚石复合材料是通过气压渗透法制备的。改变渗透温度和压力,研究它们对复合材料界面微观结构和导热率的影响。结果表明,渗透温度和压力显着影响Al基体与金刚石颗粒之间的反应。适当的条件激活了金刚石的{111}面上的反应,该化学反应比{100}面具有更高的化学稳定性。反应过程会导致界面的结构和化学改性,从而严重影响最终复合材料的热导率。使用我们优化的800°C和0.8MPa的参数,可获得高于760 W m-1 K-1的优良导热率。控制制造参数以优化在{100}和{111}面上的反应可以产生具有更高导热性的优质Al /金刚石材料。

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  • 来源
    《Journal of Materials Science》 |2015年第2期|688-696|共9页
  • 作者单位

    State Key Laboratory for Advanced Metals and Materials University of Science and Technology Beijing">(1);

    State Key Laboratory for Advanced Metals and Materials University of Science and Technology Beijing">(1);

    State Key Laboratory of Multiphase Complex Systems Institute of Process Engineering Chinese Academy of Science">(2);

    State Key Laboratory for Advanced Metals and Materials University of Science and Technology Beijing">(1);

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