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Work Hardening Behavior of Ultrafine Grained Duplex Medium-Mn Steels Processed by ART-Annealing

机译:ART退火处理超细晶粒双相中锰钢的加工硬化行为

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The ultrafine grained duplex steels were fabricated by austenite reverted transformation annealing of the medium manganese steels after quenching or cold rolling. The microstructures were examined by scanning electron microscopy (SEM) and transmission electron microscopy (TEM) and X-ray diffraction (XRD). The mechanical properties were determined by uniaxial tensile test. It was demonstrated that both the quenched and cold rolled structures were transformed into ultrafine grained duplex structures with large fractioned austenite by ART-annealing. Long time annealing is essential to obtain the large fractioned austenite in quenched steel, but only short time annealing is needed to get large fractioned austenite in the cold rolled sheet. The mechanical examinations indicated that ART-annealing results in the superhigh tensile elongation (>40%) and superhigh strength (1000 MPa) in quenched steels after long time annealing but in cold rolled steels after short time annealing. Based on the analysis on the work hardening behaviors of these ART-annealed steels, the abnormal work hardening rate was presented and analyzed. The substantially enhanced ductility was attributed to the Luders band propagation of the ferrite matrix and/or the TRIP effects of the large fractioned austenite. At last the dynamic phase natures of both fraction and stress was proposed to interpret the abnormal hardening behaviors and the "S" shaped stress-strain curves.
机译:淬火或冷轧后,通过对中锰钢进行奥氏体还原相变退火,制备了超细晶粒双相钢。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)和X射线衍射(XRD)检查微观结构。力学性能通过单轴拉伸试验确定。结果表明,通过ART退火,淬火和冷轧组织都转变为具有大比例奥氏体的超细晶粒双相组织。长时间退火对于在淬火钢中获得大分数奥氏体是必不可少的,但仅需短时间退火即可在冷轧薄板中获得大分数奥氏体。力学检查表明,ART退火导致长时间退火后的淬火钢具有超高的拉伸伸长率(> 40%)和超高强度(1000 MPa),而经过短时间退火后的冷轧钢具有超高的拉伸伸长率(> 40%)。在对这些ART退火钢的加工硬化行为进行分析的基础上,提出并分析了异常加工硬化率。延展性的显着提高归因于铁素体基体的Luders带传播和/或大分数奥氏体的TRIP效应。最后,提出了分数和应力的动态相性质来解释异常硬化行为和“ S”形应力-应变曲线。

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