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Difference in Reheat Cracking Susceptibility of 2.25Cr-W and 9Cr-W Heat-resistant Steels

机译:2.25Cr-W和9Cr-W耐热钢的再热裂纹敏感性差异

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This research has been performed to evaluate the reheat cracking susceptibility of 9Cr T/P92 heat-resistant steels and find the difference in susceptibility between 2.25Cr T/P23 and 9Cr T/P92 heat-resistant steels. After the welding simulation at 1 200℃ and 1 300℃, the prior austenite grain size is much smaller in the T/P92 steel than the T/P23 steel. This is attributed to the undissolved Nb-rich carbo-nitrides in the T/P92 during the welding simulation which inhibit the growth of prior austenite grains. After tensile test at 750℃ for the evaluation of cracking susceptibility, the fracture mode is typically intergranular in the T/P23 steel, while that of the T/P92 is ductile. Therefore, the insensitivity to intergranular cracking of the T/P92 steel is mainly attributed to the much lower phosphorus segregation concentration at grain boundaries which is caused by the smaller prior austenite grain size. Calculation results finally confirm that the grain boundary segregation concentration of phosphorus decreases with decreasing grain size.
机译:本研究旨在评估9Cr T / P92耐热钢的再热裂纹敏感性,并发现2.25Cr T / P23和9Cr T / P92耐热钢之间的敏感性差异。在1200℃和1300℃下进行焊接模拟后,T / P92钢的原始奥氏体晶粒尺寸比T / P23钢小得多。这归因于在焊接模拟过程中T / P92中未溶解的富Nb碳氮化物,这抑制了先前奥氏体晶粒的生长。经过750℃的拉伸试验以评估裂纹敏感性,T / P23钢的断裂模式通常是晶间的,而T / P92钢的断裂模式是延性的。因此,T / P92钢对晶间裂纹的不敏感性主要归因于较低的奥氏体晶粒尺寸引起的较低的晶界磷偏析浓度。计算结果最终证实,磷的晶界偏析浓度随晶粒尺寸的减小而降低。

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