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Relationship between crystallographic orientation, microstructure characteristic and mechanical properties in cold-rolled 3.5Mn TRIP steel

机译:冷轧3.5Mn钢筋晶钢结晶取向,微观结构特性和机械性能的关系

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摘要

The relationship between crystallographic orientation, microstructure characteristic and mechanical properties in 3.5Mn transformation induced plasticity (TRIP) steel that subjected to different cold rolling reduction and annealing time was elucidated. Before the hot-rolled plates were cold rolled to different thicknesses, large-fractioned Mn-enriched cementite particles dispersed in ferrite matrix were deliberately prepared to enhance Mn-partitioning and improve austenite stability. The evolution of microstructure was performed by electron probe micro-analyzer (EPMA), electron backscatter diffraction (EBSD), transmission electron microscopy (TEM) and X-ray diffraction (XRD), and the mechanical properties of the intercritical annealed samples were evaluated by uniaxial tensile test at room temperature. The results show that the cementite dissolution, ferrite recrystal-lization and austenite formation are strongly coupled and interdependent, resulting in a complex ultra-fine microstructure composed of retained austenite, ferrite and cementite in the intercritical annealed samples. Moreover, the Schmid factor (SF) distribution within the range of 0.25-0.5 was studied to understand its correlation with the crystallographic orientation and mechanical property of the test steel. It is concluded that the mechanical properties of 3.5Mn TRIP steel can be improved when the annealing period, orientation and austenite stability are optimized.
机译:在3.5Mn变换诱导的3.5Mn变换诱导的塑性(跳闸)钢中的结晶取向,微观结构特性和机械性能之间的关系阐明了经受不同的冷轧和退火时间。在热轧板冷轧到不同的厚度之前,刻意制备分散在铁氧体基质中的大分段的Mn硫酸盐颗粒以增强Mn分配并改善奥氏体稳定性。通过电子探针微分析仪(EPMA),电子反向散射衍射(EBSD),透射电子显微镜(TEM)和X射线衍射(XRD)进行微观结构的演化,并通过跨临界退火样品的机械性能室温下的单轴拉伸试验。结果表明,渗碳岩溶解,铁氧体再串掺杂和奥氏体形成是强烈的偶联和相互依赖的,导致由跨临界退火样品中的保留奥氏体,铁氧体和渗碳晶系组成的复杂的超细微观结构。此外,研究了0.25-0.5范围内的肌菌(SF)分布,以了解其与试验钢的晶体取向和力学性能的相关性。结论是,在优化退火周期,取向和奥氏体稳定性时,可以提高3.5mn跳闸钢的机械性能。

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