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Effects of Si on the stability of retained austenite and temper embrittlement of ultrahigh strength steels

机译:硅对超高强度钢残余奥氏体稳定性和回火脆化的影响

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Effects of silicon (Si) content on the stability of retained austenite and temper embrittlement of ultrahigh strength steels were investigated using X-ray diffraction (XRD), transmission electron microscopy (TEM), and other experimental methods. The results show that Si can suppress temper embrittlement, improve temper resistance, and hinder the decomposition of retained austenite. Reversed austenite appears gradually with the increase of Si content during tempering. Si has a significant effect on enhancing carbon (C) partitioning and improving the stability of retained austenite. Si and C atoms are mutually exclusive in lath bainite, while they attract each other in austenite. s-carbides are found in 1.8wt% Si steel tempered at 250°C, and they get coarsened obviously when tempered at 400°C, leading to temper embrittlement. Not s-carbides but acicular or lath carbides lead to temper embrittlement in 0.4wt% Si steel, which can be inferred as cemen-tites and composite compounds. Temper embrittlement is closely related to the decomposition of retained austenite and the formation of reversed austenite.
机译:使用X射线衍射(XRD),透射电子显微镜(TEM)和其他实验方法研究了硅(Si)含量对超高强度钢中残余奥氏体稳定性和回火脆化的影响。结果表明,Si可以抑制回火脆化,提高回火抗力,并阻碍残余奥氏体的分解。回火时,随着奥氏体Si含量的增加,奥氏体逐渐出现。 Si对增强碳(C)的分配和改善残余奥氏体的稳定性具有显著作用。板条贝氏体中的Si和C原子互斥,而在奥氏体中它们相互吸引。在250%的温度下回火的1.8wt%硅钢中发现s-碳化物,在400°C的温度下回火时它们明显变粗,导致回火脆化。并非针状碳化物而是针状或板条状碳化物会导致0.4wt%硅钢的回火脆化,这可以推断为钙钛矿和复合化合物。回火脆化与残余奥氏体的分解和反向奥氏体的形成密切相关。

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