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Effect of Elevated Deformation Temperatures on Microstructural and Tensile Behavior of Si-Al Alloyed TRIP-Aided Steel

机译:升高温度对Si-Al合金触发钢微结构和拉伸行为的影响

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摘要

The influence of elevated deformation temperatures on the relationships between the microstructure and mechanical properties in a hot-rolled Si-Al-alloyed transformation-induced plasticity (TRIP)-aided steel was studied in a static tensile test. The morphological features of specimens deformed at the different temperatures were characterized by different microstructural techniques: optical microscopy (OM), scanning electron microscopy (SEM), X-ray diffraction (XRD), and transmission electron microscopy (TEM). An increase in the deformation temperature from 20 to 200 °C resulted in the reduced effectiveness of the TRIP effect, due to the increasing mechanical stability of the γ phase. The gradual transformation of retained austenite into martensite expressed by a progressive increase in the work hardening exponent (n) led to a beneficial balance of strength, uniform elongation and total elongation. The best product of UTS × TEl = 17,805 MPa% showed the sample deformed at 20 °C with a peak n value amounting to 0.3.
机译:在静态拉伸试验中研究了静电Si-合金转化诱导的塑性(跳闸) - 施加钢中微结构和机械性能与机械性能关系的影响。通过不同的微观结构技术表征在不同温度下变形的样本的形态学特征:光学显微镜(OM),扫描电子显微镜(SEM),X射线衍射(XRD)和透射电子显微镜(TEM)。由于γ相的机械稳定性的增加,变形温度从20至200℃的变形温度的增加导致跳闸效果的有效性降低。由工作硬化指数(n)的逐步增加表示的保留奥氏体进入马氏体的逐步转化导致强度,伸长伸长率和总伸长率的有益平衡。 UTS×Tel = 17,805MPa%的最佳产品显示样品在20℃下使得峰值N值为0.3。

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