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Mechanical Behavior of Multi-phase 12% Mn TWIP Steel

机译:多相12%Mn Twip钢的力学行为

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The tensile behavior of a multi-phase γ+α TWIP steel was investigated.The mechanical behavior was essentially determined by the ferrite volume fraction and the stacking fault energy of the retained austenite.These two factors could be controlled by the choice of the annealing temperature and the selection of a specific alloy composition.The present st udy focused on a 12Mn-0.3C-xAl TWIP steel concept,in which the Al additions were used to control these two essential factors,as Al is a potent ferrite stabilizer and Al increases the stacking fault energy of the retained austenite.The present work focused on the in-depth micro-characterization which was carried out to evaluate the nature of the strain hardening in this type of multi-phase γ+α TWIP steel.
机译:研究了多相γ+α22钢的拉伸行为。机械行为基本上由铁氧体体积分数和保留奥氏体的堆叠故障能量决定。这些因素可以通过选择退火温度来控制以及特定合金组合物的选择。目前的ST UDY聚焦在12Mn-0.3C-Xal Twip钢概念上,其中使用Al添加剂来控制这两个必要的因素,因为Al是一个有效的铁氧体稳定剂和Al增加保留奥氏体的堆叠故障能量。目前的作品集中于深入的微观表征,以评估这种类型的多相γ+αTwip钢的菌株硬化的性质。

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