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Softening kinetics in Nb-microalloyed TRIP steels with increased Mn content

机译:Nb微合金型钢中的软化动力学随Mn含量增加

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Two 5Mn-1.5Al TRIP steels with and without Nb microaddition were developed in the present study. The steels contain bainite, martensite, interlath retained austenite and martensite-austenite islands. The paper presents the results of the compression tests carried out at various temperatures using the Gleeble simulator. To analyze the kinetics of static recrystallization in these steels, a softening kinetics were determined in a double-hit compression test. It was found that the dynamic recovery is a main thermally activated process occurring during hot deformation. The Nb microalloyed steel has higher flow stresses and peak strains than the Nb-free steel. A solute drag effect of Nb results in a slower softening kinetics of Nb containing steel. The effects of Mn on the retardation of Nb(C,N) precipitation and hot deformation characteristics are also discussed.
机译:在本研究中开发了两个5Mn-1.5次跳闸钢,没有NB微档。钢含有贝氏体,马氏体,interlath保留的奥氏体和马氏体 - 奥氏体岛。本文介绍了使用GLEEBLE模拟器在各种温度下进行的压缩试验结果。为了分析这些钢中的静晶再结晶的动力学,在双击压缩试验中测定软化动力学。发现动态回收是在热变形期间发生的主要热激活过程。 Nb微合金钢具有较高的流量应力和峰菌株而不是Nb的钢。 Nb的溶质阻力效应导致含Nb含有钢的较慢的软化动力学。还讨论了Mn对Nb(C,N)沉淀和热变形特性的延迟的影响。

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