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Localized Deformation due to Portevin-LeChatelier Effect in 18Mn-0.6C TWIP Austenitic Steel

机译:Portevin-LeChatelier效应引起的18Mn-0.6C TWIP奥氏体钢局部变形

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摘要

The thermo-mechanical properties of low stacking fault energy austenitic Fe18Mn0.6C steel exhibiting twinning-induced plasticity were investigated during uniaxial tensile deformation using infrared thermogra-phy. Over a wide strain range, the plastic deformation was by the movement of very few well-defined localized deformation bands. The formation and propagation of Portevin-LeChatelier (PLC) bands lead to type A and type B serrated stress-strain curves, exhibiting a negative strain rate sensitivity. The PLC band properties were analyzed in detail: strain, strain rate and mobile dislocation density within the bands were determined. The microstructures of the un-deformed and deformed Fe18Mn0.6C TWIP steel were studied by transmission electron microscopy. The possible dynamic strain aging processes causing the localized deformation are reviewed.
机译:利用红外热分析技术研究了单轴拉伸变形过程中表现出孪生诱发塑性的低堆垛层错能奥氏体Fe18Mn0.6C钢的热机械性能。在很宽的应变范围内,塑性变形是由于很少有明确定义的局部变形带的运动引起的。 Portevin-LeChatelier(PLC)带的形成和传播会导致A型和B型锯齿形应力应变曲线,表现出负应变速率敏感性。详细分析了PLC带的性质:确定了带内的应变,应变速率和移动位错密度。用透射电子显微镜研究了未变形和变形的Fe18Mn0.6C TWIP钢的显微组织。回顾了可能引起局部变形的动态应变时效过程。

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