首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >YOUNG'S MODULUS AND HARDNESS OF Zr_(0.5)Hf_(0.5)Co_xRh_(1-x)Sb_(0.99)Sn_(0.01) AND Zr_(0.5)Hf_(0.5)Co_xIr_(1-x)Sb_(0.99)Sn_(0.01) HALF-HEUSLER ALLOYS
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YOUNG'S MODULUS AND HARDNESS OF Zr_(0.5)Hf_(0.5)Co_xRh_(1-x)Sb_(0.99)Sn_(0.01) AND Zr_(0.5)Hf_(0.5)Co_xIr_(1-x)Sb_(0.99)Sn_(0.01) HALF-HEUSLER ALLOYS

机译:杨氏模量和硬度的Zr_(0.5)HF_(0.5)CO_RH_(1-x)SB_(0.099)SN_(0.01)和ZR_(0.5)HF_(0.5)CO_XIR_(1-X)SB_(0.019)SN_(0.01)半风蛋白合金

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Mechanical testing was performed to determine the influence of compositional changes on the Young's modulus and hardness of half-Heusler compounds of the base composition Zr_(0.5)Hf_(0.5)CoSb_(0.99)Sn_(0.01). In the efforts to decrease the thermal conductivity of the composition toward the development of thermoelectric materials with high thermal conversion efficiencies, specimens were fabricated with varying amounts of rhodium and iridium at the cobalt site. In addition to the general Zr_(0.5)Hf_(0.5)CoSb_(0.99)Sn_(0.01) composition, six hot-pressed samples of the Zr_(0.5)Hf_(0.5)Co_xRh_(1-x)Sb_(0.99)Sn_(0.01) (0.0≤x≤1.0) composition and four hot-pressed samples of the Zr_(0.5)Hf_(0.5)Co_xIr_(1-x)Sb_(0.99)Sn_(0.01) (0.0≤x≤0.7) composition were synthesized. Indentation measurements were obtained using both microhardness testing and depth-sensing nanoindentation. The general Zr_(0.5)Hf_(0.5)CoSb_(0.99)Sn_(0.01) composition was observed to have a hardness and elastic modulus around 896HV0.2 and 247GPa, respectively. For all of the compositions tested the hardness range was observed to lie between 347HV0.2 and 951HV0.2. The elastic moduli for these compositions were found to range between 97GPa and 247GPa. The effects of the rhodium substitution and iridium substitution at the cobalt site on the elastic stiffness and hardness are examined.
机译:进行机械测试以确定组成变化对基础组合物Zr_(0.5)HF_(0.5)COSB_(0.01)的半发生化合物的杨氏模量和硬度的影响。在减少组合物的导热率朝向具有高热转化效率的热电材料的导热率的努力中,在钴位点下具有不同量的铑和铱制造标本。除了Zr_(0.5)HF_(0.5)COSB_(0.09)的组成外,Zr_(0.5)HF_(0.5)HF_(0.5)CO_RH_(1-X)SB_(0.99)SN_(0.99)的六个热压样品0.01)(0.0≤x≤1.0)组合物和Zr_(0.5)HF_(0.5)CO_XIR_(1-X)SB_(0.09)SN_(0.01)(0.01)(0.0≤x≤0.7)组合物的四个热压样品。使用微硬度测试和深度感测纳米凸缘获得压痕测量。一般Zr_(0.5)HF_(0.5)COSB_(0.99)SN_(0.01)组合物分别观察到896HV0.2和247GPA的硬度和弹性模量。对于测试的所有组合物,观察到硬度范围在347HV0.2和951HV0.2之间。将这些组合物的弹性模量在97gPa和247gPa之间进行。研究了铑取代和铱替代在钴位点上的弹性刚度和硬度的影响。

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