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Microstructural aspects of phosphorus grain boundary segregation in low alloy steels

机译:低合金钢中磷晶界偏析的微观结构

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The influence of microstructure on phosphorus grain boundary segregation in 2.6Cr-1Mo-0.3V low alloy steel was investigated. Measurement of the phosphorus grain boundary concentration and characterization of the steel microstructure (substructure) were performed by means of Auger electron spectroscopy (AES) and transmission electron microscopy (TEM). It was found that the phosphorus grain boundary segregation during the aging of the steel at 773 K is faster in as-tempered microstructure than in as-quenched material. The lower dislocation density and the indirectly evidenced lower carbon content in ferrite matrix were considered to accelerate the kinetics of phosphorus segregation.
机译:研究了2.6Cr-1Mo-0.3V低合金钢的显微组织对磷晶界偏析的影响。通过俄歇电子能谱(AES)和透射电子显微镜(TEM)进行磷晶界浓度的测量和钢微结构(子结构)的表征。已发现,在773 K钢的时效过程中,回火后的显微组织中的磷晶界偏析要快于淬火后的材料。铁素体基质中较低的位错密度和间接证明的较低碳含量被认为可以促进磷偏析的动力学。

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