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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Thermal expansion of TRU nitride solid solutions as fuel materials for transmutation of minor actinides
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Thermal expansion of TRU nitride solid solutions as fuel materials for transmutation of minor actinides

机译:TRU氮化物固溶体的热膨胀作为次act系元素trans变的燃料材料

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摘要

The lattice thermal expansion of the transuranium nitride solid solutions was measured to investigate the composition dependence. The single-phase solid solution samples of (Np0.55Am0.45)N, (Pu0.59Am0.41)N, ((Np0.21Pu0.52Am0.22Cm0.05)N and (Pu0.21Am0.18Zr0.61)N were prepared by carbothermic nitridation of the. respective transuranium dioxides and nitridation of Zr metal through hydride. The lattice parameters were measured by the high temperature X-ray diffraction method from room temperature up to 1478 K. The linear thermal expansion of each sample was determined as a function of temperature. The average thermal expansion coefficients over the temperature range of 293-1273 K for the solid solution samples were 10.1, 11.5, 10.8 and 8.8 x 10(-6) K-1, respectively. Comparison of these values with those for the constituent nitrides showed that the average thermal expansion coefficients of the solid solution samples could be approximated by the linear mixture rule within the error of 2-3%.
机译:测量了氮化铀固溶体的晶格热膨胀,以研究其组成依赖性。 (Np0.55Am0.45)N,(Pu0.59Am0.41)N,((Np0.21Pu0.52Am0.22Cm0.05)N和(Pu0.21Am0.18Zr0.61)N的单相固溶体样品通过碳氮化分别的二氧化铀和氢化物对Zr金属进行氮化制备,通过高温X射线衍射法从室温到1478 K测量晶格参数,确定每个样品的线性热膨胀。固溶体样品在293-1273 K温度范围内的平均热膨胀系数分别为10.1、11.5、10.8和8.8 x 10(-6)K-1。组成氮化物的热膨胀系数表明,固溶体样品的平均热膨胀系数可以通过线性混合法则近似在2-3%的误差范围内。

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