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Microstructure and Mechanical Properties of Hot- Rolled and Cold-Rolled Medium-Mn TRIP Steels

机译:热轧和冷轧中锰TRIP钢的组织和力学性能

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摘要

This study investigated the microstructure and mechanical properties of hot-rolled and cold-rolled medium-Mn transformation-induced plasticity (TRIP) steel. The experimental steel, processed by quenching and tempering (Q & T) heat treatment, exhibited excellent mechanical properties for hot-rolled and Q & T steels (strength of 1050–1130 MPa and ductility of 16–34%), as well as for cold-rolled and Q & T steels (strength of 878–1373 MPa and ductility of 18–40%). The mechanical properties obtained after isothermal holding at 775 °C for one hour for cold-rolled/Q & T steel were superior to that of hot-rolled/Q & T steel. Excellent mechanical properties were attributed to the large amount of retained austenite, which produced a discontinuous TRIP effect. Additionally, the differences in mechanical properties correlated with the morphology, stability and content of retained austenite. The cold-rolled sample, quenched from 650 °C (CR 650°C) had extensive TRIP effects in the middle and late stages of the deformation, leading to better mechanical properties. The fracture modes of the hot-rolled sample, quenched from 650 °C, and the cold-rolled sample quenched from 650 °C, were ductile fractures, resulting in excellent ductility.
机译:本研究研究了热轧和冷轧中锰转变诱发塑性(TRIP)钢的组织和力学性能。经过淬火和回火(Q&T)热处理的实验钢表现出对热轧和Q&T钢极好的机械性能(强度1050–1130 MPa,延展性16–34%),以及冷轧和Q&T钢(强度878–1373 MPa,延展性18–40%)。冷轧/ Q&T钢在775°C等温保温1小时后获得的机械性能优于热轧/ Q&T钢。优异的机械性能归因于大量残留的奥氏体,从而产生了不连续的TRIP效应。另外,机械性能的差异与残余奥氏体的形态,稳定性和含量有关。从650°C(CR 650°C)淬火的冷轧样品在变形的中后期具有广泛的TRIP效应,从而带来更好的机械性能。从650°C淬火的热轧样品和从650°C淬火的冷轧样品的断裂模式均为延性断裂,具有出色的延展性。

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