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Cr-V 合金的相稳定性和弹性性能。

Phase stability and elastic properties of Cr-V alloys.

机构信息

National Energy Technology Laboratory, Albany, OR 97321, USA.

出版信息

J Phys Condens Matter. 2013 Feb 20;25(7):075402. doi: 10.1088/0953-8984/25/7/075402. Epub 2013 Jan 23.

DOI:10.1088/0953-8984/25/7/075402
PMID:23343603
Abstract

V is the only element in the periodic table that forms a complete solid solution with Cr and thus is particularly important in alloying strategy to ductilize Cr. This study combines first-principles density functional theory calculations and experiments to investigate the phase stability and elastic properties of Cr-V binary alloys. The cluster expansion study reveals the formation of various ordered compounds at low temperatures that were not previously known. These compounds become unstable due to the configurational entropy of bcc solid solution as the temperature is increased. The elastic constants of ordered and disordered compounds are calculated at both T = 0 K and finite temperatures. The overall trends in elastic properties are in agreement with measurements using the resonant ultrasound spectroscopy method. The calculations predict that addition of V to Cr decreases both the bulk modulus and the shear modulus, and enhances the Poisson's ratio, in agreement with experiments. Decrease in the bulk modulus is correlated to decrease in the valence electron density and increase in the lattice constant. An enhanced Poisson's ratio for bcc Cr-V alloys (compared to pure Cr) is associated with an increased density of states at the Fermi level. Furthermore, the difference charge density in the bonding region in the (110) slip plane is highest for pure Cr and decreases gradually as V is added. The present calculation also predicts a negative Cauchy pressure for pure Cr, and it becomes positive upon alloying with V. The intrinsic ductilizing effect from V may contribute, at least partially, to the experimentally observed ductilizing phenomenon in the literature.

摘要

V 是周期表中唯一能与 Cr 形成完全固溶体的元素,因此在通过合金化策略使 Cr 具有延展性方面尤为重要。本研究结合第一性原理密度泛函理论计算和实验,研究了 Cr-V 二元合金的相稳定性和弹性性质。团簇展开研究揭示了在低温下形成各种先前未知的有序化合物。随着温度的升高,由于 bcc 固溶体的构型熵,这些化合物变得不稳定。在 T=0 K 和有限温度下计算了有序和无序化合物的弹性常数。弹性性质的总体趋势与使用共振超声光谱法测量的结果一致。计算预测,向 Cr 中添加 V 会降低体弹性模量和切变弹性模量,并增加泊松比,这与实验结果一致。体弹性模量的降低与价电子密度的降低和晶格常数的增加有关。与纯 Cr 相比,bcc Cr-V 合金的泊松比增大(与纯 Cr 相比)与费米能级处的态密度增加有关。此外,在(110)滑移面的键合区的差分电荷密度在纯 Cr 中最高,并随着 V 的添加逐渐降低。本计算还预测纯 Cr 的 Cauchy 压力为负,而与 V 合金化后变为正。V 的内在延展性效应可能至少部分地导致了文献中观察到的延展性现象。

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