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Effects of Cryogenic Treatment and Tempering on Mechanical Properties and Microstructure of 0.25C-0.80Si-1.6Mn Steel

机译:低温处理和回火对0.25C-0.80SI-1.6Mn钢的力学性能和微观结构的影响

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摘要

The effects of mechanical strength and yield ratio on the seismic steel are significant. This paper investigated the mechanical strength and yield ratio of medium carbon seismic steel by deep cryogenic treatment at −60°C and −110°C for 60∼120 s and tempering at 350°C for 30 minutes. The microstructure, misorientation, grain boundary, and size were characterized by electron backscattering diffraction (EBSD), scanning electron microscopy (SEM), and energy dispersive spectrometery (EDS). The result shows that the tensile strength and reduction of the cross-sectional area of steel were increased by 170 MPa and 9% and yield ratio and elongation were decreased by 0.13 and 9% due to the existence of the large-angle grain boundary. The present study confirms that the mechanical properties of medium seismic steel can be improved effectively by the deep cryogenic treatment and tempering.
机译:机械强度和屈服比对地震钢的影响显着。本文研究了中碳抗震钢的机械强度和屈服比在-60°C和-110℃下进行了深度低温处理,在350℃下回火30分钟。通过电子背散射衍射(EBSD),扫描电子显微镜(SEM)和能量分散光谱(EDS)的微观结构,错误化,晶界和尺寸的特征在于。结果表明,由于大角度晶界的存在,钢横截面积的拉伸强度和钢的横截面积的横截面积增加了0.13和9%。本研究证实,通过深冷冻处理和回火可以有效地提高中等地震钢的机械性能。

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