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Characterization of Microstructures and Mechanical Properties of Cold-rolled Medium-Mn Steels with Different Annealing Processes

机译:不同退火工艺的中锰冷轧钢的组织和力学性能表征

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The cold rolled medium-Mn steel was processed by two different heat treatments (intercritical annealing and quenching+intercrictical annealing). The microstructure evolution was characterized by scanning electron microscopy, electron back scattered diffraction and transmission electron microscope. It was found that austenite reverted transformation took place during annealing processes. Blocky ultrafine ferrite/austenite duplex structure was formed after intercritical annealing, while lath ultrafine duplex structure was developed after quenching+intercritical annealing. Such ultrafine duplex structure has both high strength and high plasticity. The excellent properties and tensile behavior were related to the phase transformation from retained austenite to martensite, which was associated with the carbon content, the morphology of the retained austenite and the matrix microstructure in the steel with different processes.
机译:冷轧中锰钢通过两种不同的热处理(临界退火和淬火+临界退火)进行处理。通过扫描电子显微镜,电子反向散射衍射和透射电子显微镜表征了组织的演变。发现在退火过程中发生了奥氏体还原相变。临界退火后形成块状超细铁素体/奥氏体双相组织,淬火+临界间退火后形成板条超细双相组织。这种超细双相结构既具有高强度又具有高可塑性。优良的性能和拉伸性能与残余奥氏体到马氏体的相变有关,这与碳含量,残余奥氏体的形态和钢在不同过程中的基体组织有关。

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