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Sigma phase precipitation modelling in a UNS S32760 superduplex stainless steel

机译:UNS S32760超双相不锈钢中的Sigma相析出模型

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摘要

Sigma phase precipitation is known to have detrimental effects on mechanical and corrosion properties in stainless steels. Accordingly, heat treatments and welding must be performed carefully. For this reason, computer models which predict the evolution of secondary phases with the temperature are very useful for a good planning of industrial heat treatments or welding. A semiempirical model, based on the pioneer work of Wilson and Nilsson, describing the microstructural evolution of UNS S32760 superduplex stainlesssteels was developed. The computer model, based on the modified Johnson–Mehl–Avrami-Kolmorgorov (JMAK) type of equation, uses information from isothermal experiments of sigma-phase transformation and predicts the transformation kinetics during a cooling process. A good agreement was found between the predicted CCTdiagram and the experimental tests.
机译:已知Sigma相沉淀对不锈钢的机械和腐蚀性能有不利影响。因此,必须小心进行热处理和焊接。因此,计算机模型可预测二次相随温度的变化,对于工业热处理或焊接的良好计划非常有用。基于Wilson和Nilsson的开创性工作,开发了一个描述UNS S32760超双相不锈钢的微观组织演变的半经验模型。该计算机模型基于改良的Johnson-Mehl-Avrami-Kolmorgorov(JMAK)型方程,使用Sigma相变等温实验的信息,并预测冷却过程中的相变动力学。在预测的CCT图表和实验测试之间找到了很好的一致性。

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