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A novel multi-step intercritical heat treatment induces multi-phase microstructure with ultra-low yield ratio and high ductility in advanced high-strength steel

机译:一种新型的多步跨临界热处理在先进的高强度钢中具有超低屈服比和高延展性的多相微观结构

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摘要

A significant volume fraction of 26% retained austenite was obtained via a two-step intercritical treatment in a low carbon low alloy steel with ultra-high tensile strength of similar to 1200 MPa, ultra-low yield ratio of 0.32, excellent uniform elongation of similar to 16.4% and total elongation of similar to 23%. The ultra-low yield ratio and excellent uniform elongation implied high work hardening and excellent formability. The high work hardening and ultra-high tensile strength are attributed to deformation-induced twin-martensite. (C) 2018 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:通过在低碳低合金钢中的两步临时处理获得26%保留奥氏体的显着体积分数,具有超高抗拉强度,类似于1200MPa,超低屈服比0.32,相似的优异均匀伸长率 达到16.4%,总伸长率为23%。 超低屈服比和优异的均匀伸长率隐含着高效的硬化和优异的成形性。 高效硬化和超高拉伸强度归因于变形诱导的双马氏体。 (c)2018 Acta Materialia Inc. elsevier有限公司出版。保留所有权利。

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