每节,Blackman图,Cauchy压力和Ti49Ni51 (at)晶格弹性性能分析。%)和有或没有马氏体转变的TiNi - TiFe合金

S. Muslov, A. Lotkov, P. Sukhochev
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摘要

本文对Ti49Ni51 (at)的弹性性能进行了分析。用Every’s图和Blackman’s图作为表征立方材料弹性性能的两种方法。计算参数(s2, s3), (s3, s1)和(F44, F12)之间的成对相关性。考虑了柯西压力pC值随合金晶格中铁原子含量的变化规律。结果表明,无论合金成分如何,柯西压力都大于零,并且随着TiNi - TiFe相B2晶格中Fe原子含量的增加和马氏体相变稳定性的提高(直至完全稳定),柯西压力几乎单调地从100.5到35.0 GPa下降。pC的这种演化与TiNi中化学键的重要组成部分是金属键的数据相对应,随着合金中Fe原子浓度的增加而不是Ni原子浓度的增加,并接近TiFe的组成,化学键的共价组分的比例增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Every, Blackman diagrams, Cauchy pressure and analysis of elastic properties of the crystal lattice of Ti49Ni51 (at. %) and TiNi – TiFe alloys with and without martensitic transformations
In this paper, to analyze the elastic properties of Ti49Ni51 (at. %) and TiNi – TiFe crystals with and without martensitic transformations Every’s and Blackman’s diagrams are used as two ways to characterize the elastic properties of cubic materials. Paired correlations between the parameters (s2, s3), (s3, s1) и (F44, F12) are calculated. The evolution of the Cauchy pressure pC value depending on the content of iron atoms in the crystal lattice of alloys is considered. It is established that, regardless of the composition of the alloys, the Cauchy pressure is greater than zero and decreases almost monotonically from 100.5 to 35.0 GPa with an increase in the content of Fe atoms in the B2 crystal lattice of the TiNi – TiFe phase and an increase in its stability with respect to martensitic transformations (up to complete stabilization). This evolution of pC corresponds to the data according to which a significant component of the bonding forces in TiNi is a metallic bond, and with an increase in the concentration of Fe atoms in alloys instead of Ni atoms and approaching the composition of TiFe, the proportion of the covalent component of the bonding forces increases.
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