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Microstructural evolution and mechanical properties of 9Mn steel during warm/cold rolling and subsequent intercritical annealing

机译:温/冷轧期间9Mn钢的微观结构演化与机械性能及随后的跨临界退火

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The microstructural evolution of 9Mn steel during warm rolling in the intercritical region and cold rolling, both followed by subsequent intercritical annealing was studied. A significantly different microstructure was obtained by warm rolling and cold rolling, the former contained austenite and deformed ferrite/martensite and the latter consisted of deformed ferrite and transformed martensite, which significantly impacted the microstructure after intercritical annealing. The existence of austenite in warm-rolled sample reduced the elemental content in the deformed matrix, weakening the kinetics of austenite formation during subsequent annealing. In addition, the occurrence of dynamic recovery during warm rolling led to a low storage energy of recrystallization, resulting in a partial recrystallization of ferrite during IA. However, a slightly larger volume fraction as well as more heterogeneous austenite morphology with a wide austenite size distribution was obtained by combining both warm rolling and annealing. These austenite grains could transform to martensite in a more sustainable way, increasing the TRIP-related strain. Consequently, the warm-rolled + annealed steel showed a better combination of ultimate tensile strength (1380 MPa) and total elongation (29.11%).
机译:研究了9Mn钢在跨临界区温热轧制过程中的微观结构演化和冷轧,随后进行了随后的跨临界退火。通过温暖的轧制和冷轧获得了显着不同的微观结构,前者含有奥氏体和变形的铁氧体/马氏体,并且后者由变形的铁氧体和转化的马氏体组成,这显着影响了跨临界退火后的微观结构。奥氏体在暖轧样品中的存在降低了变形基质中的元素含量,在随后的退火过程中削弱了奥氏体形成的动力学。另外,在暖轧期间发生动态恢复导致重结晶的低存储能量,导致铁氧体在IA期间的部分再结晶。然而,通过组合温暖的轧制和退火,获得稍大的体积分数以及具有宽奥氏体尺寸分布的更加异质的奥氏体形态。这些奥氏体颗粒可以以更可持续的方式转化为马氏体,增加与行程相关的应变。因此,温轧+退火钢显示出最终拉伸强度(1380MPa)和总伸长率(29.11%)的更好组合。

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