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Change in the deformation mode resulting from beta-omega compositional partitioning in a Ti-Mo alloy: Room versus elevated temperature

机译:在Ti-Mo合金中β-Omega成分分配的变形模式变化:室与升高的温度

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The effect of beta-omega compositional partitioning, introduced via isothermal annealing, on the deformation behavior of a Ti-Mo alloy was investigated via tensile testing at room and elevated temperatures. While beta with compositionally congruent athermal omega precipitates primarily exhibits twinning, after beta-omega compositional partitioning the same alloy deforms via slip. This change in deformation mode can be rationalized based on the solute content within the beta matrix, with reference to the Bo-Md plot. Tensile testing at elevated temperatures revealed that both conditions, deformed via slip while exhibiting serrated flow. (C) 2016 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:通过等温退火引入的β-Omega成分分配的效果在室温和室温下的变形行为上通过房间的拉伸试验研究了升高的温度。 虽然Beta具有合成的一致动脉ωOmega沉淀,但在β-Omega成分后,相同的合金通过滑移使相同的合金变形。 变形模式的这种变化可以基于β矩阵内的溶质含量,参考BO-MD图来合理化。 升高温度下的拉伸试验显示,两种条件,通过滑动变形,同时表现出锯齿状流动。 (c)2016 Acta Materialia Inc. elsevier有限公司出版。保留所有权利。

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