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过渡金属溶质对钨中位错核心结构和派尔斯应力及势垒值的影响。

The influence of transition metal solutes on the dislocation core structure and values of the Peierls stress and barrier in tungsten.

机构信息

Materials Science and Technology Division, Oak Ridge National Laboratory, TN 37831, USA.

出版信息

J Phys Condens Matter. 2013 Jan 16;25(2):025403. doi: 10.1088/0953-8984/25/2/025403. Epub 2012 Nov 29.

Abstract

Several transition metals were examined to evaluate their potential for improving the ductility of tungsten. The dislocation core structure and Peierls stress and barrier of 1/2<111> screw dislocations in binary tungsten-transition metal alloys (W(1-x)TM(x)) were investigated using density functional theory calculations. The periodic quadrupole approach was applied to model the structure of the 1/2<111> dislocation. Alloying with transition metals was modeled using the virtual crystal approximation and the applicability of this approach was assessed by calculating the equilibrium lattice parameter and elastic constants of the tungsten alloys. Reasonable agreement was obtained with experimental data and with results obtained from the conventional supercell approach. Increasing the concentration of a transition metal from the VIIIA group, i.e. the elements in columns headed by Fe, Co and Ni, leads to reduction of the C' elastic constant and increase of the elastic anisotropy A = C(44)/C'. Alloying W with a group VIIIA transition metal changes the structure of the dislocation core from symmetric to asymmetric, similarly to results obtained for W(1-x)Re(x) alloys in the earlier work of Romaner et al (2010 Phys. Rev. Lett. 104 195503). In addition to a change in the core symmetry, the values of the Peierls stress and barrier are reduced. The latter effect could lead to increased ductility in a tungsten-based alloy. Our results demonstrate that alloying with any of the transition metals from the VIIIA group should have a similar effect to alloying with Re.

摘要

研究了几种过渡金属,以评估它们提高钨延性的潜力。使用密度泛函理论计算研究了二元钨-过渡金属合金(W(1-x)TM(x))中 1/2<111>螺位错的位错核结构、派尔斯应力和势垒。采用四极子方法对位错结构进行建模。采用虚拟晶近似法对过渡金属合金化进行建模,并通过计算钨合金的平衡晶格参数和弹性常数评估该方法的适用性。与实验数据和传统超晶胞方法的结果进行比较,得到了较好的一致性。VIIIA 族过渡金属浓度的增加,即铁、钴和镍所在列的元素,会导致 C'弹性常数的降低和弹性各向异性 A = C(44)/C'的增加。与 Romaner 等人(2010 年 Phys. Rev. Lett. 104 195503)早期的 W(1-x)Re(x)合金研究结果类似,W 与 VIIIA 族过渡金属合金化会使位错核结构从对称变为不对称。除了核对称性的变化外,派尔斯应力和势垒的值也降低了。后一种效应可能会导致基于钨的合金延展性提高。我们的结果表明,与 VIIIA 族的任何过渡金属合金化都应该具有与 Re 合金化相似的效果。

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