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Precipitation and growth of MnS inclusion in an austenitic hot-work die steel during ESR solidification process

机译:ESR凝固过程中奥氏体热工作模具钢中的MNS沉淀和生长

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摘要

This study follows a previous presentation of metallurgical results and operating parameters about the comparison between conventional ESR and continuous unidirectional solidification of electroslag remelting (ESR-CDS) and more precisely the effect of cooling rate on the precipitation and growth of inclusions in an austenitic hot-work die steel [Y.F. Qi, J. Li, C.B. Shi, R.M. Geng, J. Zhang, Effect of directional solidification in electroslag remelting on the microstructure and cleanliness of an austenitic hot-work die steel, ISIJ Int. 58, 1275-1284 (2018)]. A thermodynamic study, a classical solidification model and a growth model for MnS inclusions were used orderly to interpret the metallurgical results. Optical microscopy (OM) and scanning electron microscopy (SEM) were used to characterize microstructure and inclusions (i.e. number, size, morphology and distribution) in the as-cast ingots. The results showed that the as-cast microstructure was refined and the dendritic arm spacings were reduced through ESR-CDS process. The characteristics of inclusions showed that the number density and the size of inclusions in ingot were much more reduced through ESR-CDS process in comparison with ESR process. The starting time for the precipitation of MnS inclusion is retarded, which is due to the segregation of elements Mn and S lowered by higher cooling rate in ESR-CDS in comparison with that in ESR. The starting time for the precipitation of MnS inclusion in ESR was f(s) = 0.92, while that in ESR-CDS was f(s) = 0.95.
机译:本研究介绍了关于常规ESR与电渣重熔(ESR-CDS)的常规ESR和连续单向凝固的比较的冶金效果和操作参数的介绍,并且更精确地对奥氏体热的沉淀和夹杂物的沉淀和生长的影响。工作模钢[YF齐,J.LI,C.B. Shi,R.M.耿,J.张,定向凝固在电卸渣中的效果对奥氏体热工作模具钢的微观结构和清洁,Isij int。 58,1275-1284(2018)]。热力学研究,经典凝固模型和MNS夹杂物的生长模型有序地用于解释冶金结果。光学显微镜(OM)和扫描电子显微镜(SEM)用于表征铸造锭中的微观结构和夹杂物(即数量,尺寸,形态和分布)。结果表明,通过ESR-CDS工艺改进了铸造微观结构,树枝状臂间距降低。夹杂物的特征表明,与ESR过程相比,通过ESR-CDS方法更加降低数值密度和夹杂物中的夹杂物的尺寸。抑制MnS夹杂物的沉淀的起始时间是延迟的,这是由于ESR-CD中的元素Mn和S降低的元素Mn和S的偏析,与ESR中的相比之下。将MNS沉淀在ESR中沉淀的起始时间为F(s)= 0.92,而ESR-CDS中的= 0.95。

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