首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >(152418)The influence of Ce micro-alloying on the precipitation of intermetallic sigma phase during solidification of super-austenitic stainless steels
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(152418)The influence of Ce micro-alloying on the precipitation of intermetallic sigma phase during solidification of super-austenitic stainless steels

机译:(152418)CE微合金化对超级奥氏体不锈钢凝固过程中金属间σ相析出的影响

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摘要

The influence of Ce addition on the precipitation of ferrite (δ) and sigma (σ) phase in super-austenitic stainless steels during solidification was investigated via a combined experimental and theoretical approach. Thermodynamic calculations reveal that the secondary phase of δ and σ are precipitated in sequence near the end of the solidification process due to the segregation of Mo and Cr. The Ce addition improves the thermal stability of the δ, expands the range of Mo content for δ phase precipitation and increases the 8 fraction in the solidified structure in the Gulliver-Scheil model. Experimental observation shows that a small addition of Ce accelerates δ nucleation in the interdendritic solute-rich liquid, refines the solidified structure and reduces Mo and Cr segregation, which suppresses precipitation of the cr phase. The cr phase precipitation is replaced by δ phase precipitation after a Ce addition of 0.016%. The change in the secondary phase from cr to 8 shortens the time required for homogenization and reduces the nano-hardness of the interdendritic secondary phase, which is significant for hot working.
机译:通过组合的实验和理论方法研究了在凝固过程中超奥氏体不锈钢中铁素体(δ)和σ(σ)相沉淀的影响。热力学计算表明,由于Mo和Cr的偏析,δ和σ的二次相位在凝固过程结束时序列沉淀。 Ce添加改善了δ的热稳定性,膨胀了δ相沉淀的Mo含量的范围,并增加了Gulliver-Scheil模型中的固化结构中的8分数。实验观察结果表明,在富含共同性溶质溶液中的少量加速δ成核,改善固化结构并减少Mo和Cr偏析,抑制Cr相的沉淀。在加入0.016%后,Cr相沉淀被δ相沉淀取代。从Cr至8的二次相的变化缩短了均质化所需的时间,并降低了间巢二次相的纳米硬度,这对于热工作是显着的。

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