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An analysis of crack evolution of a 12Cr13 stainless steel during forging process

机译:锻造过程中12Cr13不锈钢的裂纹发展分析

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The analysis of an abnormal crack of a forging plate is presented in this work. The crack was found after forging process. Macro-analysis, SEM, composition inspection, metallographic analysis, inclusion analysis, EPMA and EDS were implemented. SEM shows that cleavage fracture is the main feature of the fracture surface, according to which it can be decided that the fracture is brittle fracture. XRF and carbon and sulphur analyzer indicate regular composition condition of the plate. EPMA and EDS suggest phosphorus segregation spread a lot around the crack. The results indicate that: brittleness caused by phosphorus segregation around crack zone is the main reason that cracks generate in the 12Cr13 steel during forging. As all we know, phosphorus has deleterious effect on toughness of steel because of its enrichment on grain boundaries, which can weaken the bond strength of grain boundary. Its existence should be avoided and microstructure of the steel should be homogeneous when good plasticity and toughness are wanted.
机译:在这项工作中,对锻造板的异常裂纹进行了分析。锻造后发现裂纹。进行了宏观分析,SEM,成分检查,金相分析,夹杂物分析,EPMA和EDS。扫描电镜表明,劈裂是断口表面的主要特征,据此断口为脆性断口。 XRF和碳硫分析仪指示板的规则组成条件。 EPMA和EDS表明磷偏析在裂纹周围散布很多。结果表明:裂纹区周围磷偏析引起的脆性是锻造过程中12Cr13钢产生裂纹的主要原因。众所周知,磷由于富集在晶界上而对钢的韧性产生有害作用,从而削弱了晶界的结合强度。当需要良好的可塑性和韧性时,应避免其存在并且钢的微观结构应均匀。

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