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Effect of Chemical Composition on Tensile Property in TRIP-assisted Multiphase Steel Composed of Fe-Mn-Si-C

机译:化学成分对Fe-Mn-Si-C的巡回辅助多相钢中拉伸性的影响

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The microstructural changes and the tensile properties of the TRIP-assisted steels resulting from the different chemical compositions were investigated by using SEM, TEM, XRD and UTM. As a result of microscopic observation, morphology of retained austenite could be identified into two types: a granular type in steel containing higher Si and a film type in steel having higher C. In the case of the steel containing higher C with a tensile strength of 860 MPa and a total elongation of 38%, the film-typed retained austenite could be observed among the lath bainitic ferrites. Actually, the metastable retained austenite was the requisite for the good formability, which means that the chemical composition plays a significant role in the microstructure and the tensile property of a TRIP-assisted steel. Regarding the tensile property, each steel containing adequate amounts of Si and Mn showed a typical TRIP effect on a stress-strain curve while the steel containing a higher Mn content exhibited the similar behaviors shown in the dual phase steels.
机译:通过使用SEM,TEM,XRD和UTM研究了由不同化学组合物产生的跳闸辅助钢的微观结构变化和拉伸性能。由于微观观察的结果,可以将保留奥氏体的形态鉴定为两种类型:粒度在含有更高的Si的钢中的粒度和具有较高C的钢的薄膜类型。在含有抗拉强度的钢的钢的情况下,钢的钢的情况下860MPa和总伸长率为38%,在板条贝氏体铁氧体中可以观察到膜类型保留的奥氏体。实际上,稳定的保留奥氏体是良好成形性的必要条件,这意味着化学成分在跳闸辅助钢的微观结构和拉伸性中起着重要作用。关于拉伸性质,含有足量Si和Mn的每根钢在应力 - 应变曲线上显示出典型的跳闸效果,而含有较高Mn含量的钢表现出双相钢中所示的类似行为。

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