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Deactivating deformation twinning in medium-entropy CrCoNi with small additions of aluminum and titanium

机译:用少量添加铝和钛的中等熵Crconi中的孪生孪生变形

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摘要

High strain-hardening rates in equiatomic CrCoNi and other multi-principal element alloys have been attributed to deformation twinning. This work shows that small additions of Al and Ti to a CrCoNi alloy deactivate deformation twinning with only minor changes to uniform elongation and ultimate tensile strength. The initial microstructure is free of chemically ordered (Al,Ti)-rich precipitates after solutionizing and quenching. Tensile properties for the alloy are reported and compared to equiatomic CrCoNi, and the post-deformation microstructure is assessed. Density functional theory calculations indicate that energetically unfavorable Al-Al bonds may discourage shearing via partial dislocations, which are necessary for twinning to occur. (C) 2019 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:赤型CrconI和其他多主元素合金中的高应变硬化率已经归因于孪生变形。 这项工作表明,仅通过微小的变化与均匀的伸长率和极限拉伸强度进行微小的变形,对Crconi合金的少量添加到Crconi合金。 初始微观结构不含化学上有序(Al,Ti) - 在溶液化和淬火后沉淀物。 报告了合金的拉伸性能,并与阶段CRCONI进行比较,并且评估后变形微观结构。 密度函数理论计算表明,能量不合适的Al-Al键可以通过部分脱位来阻止剪切,这是对Tuinning所必需的。 (c)2019年Acta Materialia Inc.出版By Elsevier Ltd.保留所有权利。

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