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Atomic displacement in the CrMnFeCoNi high-entropy alloy – A scaling factor to predict solid solution strengthening

机译:CrMnFeCoNi高熵合金中的原子位移–预测固溶强化的比例因子

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摘要

Although metals strengthened by alloying have been used for millennia, models to quantify solid solution strengthening (SSS) were first proposed scarcely seventy years ago. Early models could predict the strengths of only simple alloys such as dilute binaries and not those of compositionally complex alloys because of the difficulty of calculating dislocation-solute interaction energies. Recently, models and theories of SSS have been proposed to tackle complex high-entropy alloys (HEAs). Here we show that the strength at 0 K of a prototypical HEA, CrMnFeCoNi, can be scaled and predicted using the root-mean-square atomic displacement, which can be deduced from X-ray diffraction and first-principles calculations as the isotropic atomic displacement parameter, that is, the average displacements of the constituent atoms from regular lattice positions. We show that our approach can be applied successfully to rationalize SSS in FeCoNi, MnFeCoNi, MnCoNi, MnFeNi, CrCoNi, CrFeCoNi, and CrMnCoNi, which are all medium-entropy subsets of the CrMnFeCoNi HEA.
机译:尽管通过合金强化的金属已经使用了数千年,但是量化固溶体强化(SSS)的模型却是在大约70年前提出的。早期模型只能预测诸如稀释二元之类的简单合金的强度,而不能预测组成复杂的合金的强度,这是因为难以计算位错-溶质相互作用能。最近,已经提出了SSS的模型和理论来解决复杂的高熵合金(HEA)。在这里,我们表明,可以使用均方根原子位移来缩放和预测原型HEA CrMnFeCoNi在0 K时的强度,该均方根可以从X射线衍射和第一性原理计算中推导出为各向同性原子位移参数,即组成原子从规则晶格位置的平均位移。我们表明,我们的方法可以成功地用于合理化FeCoNi,MnFeCoNi,MnCoNi,MnFeNi,CrCoNi,CrFeCoNi和CrMnCoNi中的SSS,它们都是CrMnFeCoNi HEA的中熵子集。

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