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Synthesis and Mechanical Characterization of Binary and Ternary Intermetallic Alloys Based on Fe-Ti-Al by Resonant Ultrasound Vibrational Methods

机译:基于Fe-Ti-Al的二元和三元金属间化合物的共振超声振动法合成与力学性能

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摘要

Precise but simple experimental and inverse methods allowing the recovery of mechanical material parameters are necessary for the exploration of materials with novel crystallographic structures and elastic properties, particularly for new materials and those existing only in theory. The alloys studied herein are of new atomic compositions. This paper reports an experimental study involving the synthesis and development of methods for the determination of the elastic properties of binary (Fe-Al, Fe-Ti and Ti-Al) and ternary (Fe-Ti-Al) intermetallic alloys with different concentrations of their individual constituents. The alloys studied were synthesized from high purity metals using an arc furnace with argon flow to ensure their uniformity and homogeneity. Precise but simple methods for the recovery of the elastic constants of the isotropic metals from resonant ultrasound vibration data were developed. These methods allowed the fine analysis of the relationships between the atomic concentration of a given constituent and the Young’s modulus or alloy density.
机译:精确但简单的实验和逆方法可以恢复机械材料参数,对于探索具有新颖晶体结构和弹性特性的材料(特别是对于新材料和仅存在于理论上的材料)而言是必要的。本文研究的合金具有新的原子组成。本文进行了一项实验研究,涉及测定不同浓度的二元(Fe-Al,Fe-Ti和Ti-Al)和三元(Fe-Ti-Al)金属间合金的弹性性能的方法的合成和发展。他们的个人成分。所研究的合金是使用氩气电弧炉从高纯度金属中合成的,以确保其均匀性和均质性。开发了一种精确而简单的方法,用于从共振超声振动数据中恢复各向同性金属的弹性常数。这些方法可以精细分析给定成分的原子浓度与杨氏模量或合金密度之间的关系。

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