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Effects of Alloying Elements on Fracture Properties of Niobium Stabilized Austenitic Steels at Elevated Temperature

机译:合金元素对升温铌稳定奥氏体钢断裂性能的影响

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The present work is a further investigation into the effects of the carbon (C), nitrogen (N) and niobium (Nb) contents on then fracture properties of the Type 347 stainless steels at 316°C. 9 heats of systematically designed alloys were examined. Through SEM-EDS, TEM and XRD analyses, two kinds of precipitates, Nb(C,N), CrNbN were identified in the Type 347 steels with a high ratio of wt% N to wt% C, on the other hand only Nb(C,N)s were found in the Type 347 steels with a low ratio of wt% N to wt% C. The tearing moduli were decreased in the range of 52~60% as the carbon content increased from 0.03wt% to 0.05wt%. The tearing moduli were lowered by 52~59% in the alloys with a high nitrogen. It was deduced from the microstructure analysis results that the coarse Nb-rich precipitates control the fracture resistance of the Type 347 as they act as the potential sites for the nucleation of micro-voids.
机译:本作者进一步研究了碳(C),氮(N)和铌(NB)含量对316℃的347型不锈钢的破裂性能的进一步研究。 9检查了系统设计合金的9个热量。通过SEMEDS,TEM和XRD分析,在347型钢中鉴定两种沉淀物,Nb(C,N),CRNBN的高比率为wt%n至wt%C,另一方面仅Nb(在347型钢中发现C,N)S低于Wt%N至Wt%C的钢。随着碳含量从0.03wt%增加到0.05wt,撕裂模量减少了52〜60% %。在具有高氮的合金中,撕裂的模量降低了52〜59%。从微观结构分析结果推导出粗糙的Nb富沉淀物控制347型裂缝阻力,因为它们充当微空隙的核心的潜在部位。

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