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A quantitative investigation of the effect of Mn segregation on microstructural properties of quenching and partitioning steels

机译:Mn偏析对淬火和隔离钢微观结构性能影响的定量研究

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摘要

Quenching and partitioning (Q&P) process of a 03C-1.3Si-3.2Mn (wt%) steel with Mn segregation is studied experimentally and theoretically. During initial quenching a higher fraction of martensite forms in Mn-poor regions compared to Mn-rich regions. In the partitioning process, austenite in Mn-poor regions is surrounded with a higher fraction of martensite than austenite in Mn-rich regions and therefore receives a larger amount of carbon. When carbon partitioning is not sufficient to stabilize austenite, a higher fraction of martensite forms, during final quenching, in Mn-poor regions. Lowering the quenching temperature in the Q&P process reduces inhomogeneity in the distribution of phases. (C) 2017 Acta Materialia Inc Published by Elsevier Ltd. All rights reserved.
机译:通过实验和理论地研究了具有Mn偏析的03C-1.3Si-3.2Mn(WT%)钢的淬火和分配(Q&P)方法。 与MN的地区相比,在初始猝灭Mn-Pers中的马氏体形式的较高分数期间。 在分区过程中,Mn-Pobions中的奥氏体被富含奥氏体在富含Mn的区域中的马氏体较高,因此接收较大量的碳。 当碳分配不足以稳定奥氏体时,在Mn-Pers的最终猝灭期间,在最终猝灭期间形成更高的马氏体形成。 降低Q&P过程中的淬火温度降低了相分布的不均匀性。 (c)2017 Acta Materialia Inc由elsevier有限公司出版。保留所有权利。

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