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Effects of Oxygen on the Density of States and Elastic Properties of Hafnium - First Principles Calculations

机译:氧气对铪的状态密度和铪的弹性性能计算

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Due to its excellent comprehensive properties, Hf has been the preferred material for control rods in the nuclear reactors. There is a very strong influence of even small additions of oxygen element on the mechanical properties of Hf alloy. This work we report results of first-principles calculations of structure stability, density of states and elastic properties including the full set of second order elastic coefficients, bulk moduli and shear moduli, Young's moduli, and Poisson's ratio of Hf as a function of positions and concentration of oxygen atoms. Oxygen atom prefers to occupy octahedral and hexahedral interstitial sites due to the lower formation energy and less lattice distortion. Oxygen content has very weak influence on the density of states. The effects of oxygen content on the elastic parameters were estimated with the conclusion that approximately high oxygen addition decreased elastic and plastic properties.
机译:由于其优异的综合性质,HF是核反应堆中控制杆的首选材料。甚至小于HF合金的机械性能甚至少量氧元素的影响很大。这项工作我们报告了第一原理计算的结构稳定性,状态密度和弹性性能的结果,包括全套二阶弹性系数,散装模量和剪切模量,杨氏模数和泊松的HF与位置的函数和泊松比浓度的氧原子。由于较低的形成能量和更少的格子变形,氧原子倾向于占据八面体和六半间隙间位。氧气含量对各种密度的影响非常弱。估计氧含量对弹性参数对弹性参数的影响,结论是大致高氧添加降低的弹性和塑料性能。

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