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Analysis of medium manganese steel through cold-rolling and intercritical annealing or warm-rolling

机译:通过冷轧和跨临界退火或温轧机分析中锰钢

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摘要

Medium manganese steel is typically fabricated from hot-rolling followed by cold-rolling and intercritical annealing processes. However, a singular process, warm-rolling, is an appealing prospect. The microstructure, mechanical properties and texture of a 8?wt-% Mn?0.08?wt-% C steel was investigated by cold-rolling followed by intercritical annealing or warm-rolling. The product from both processes exhibited a highly refined microstructure as well as a large volume fraction of austenite. However, a slightly larger volume fraction as well as a more heterogeneous austenite morphology resulted from the warm-rolling process, associated with a higher work-hardening rate. Microstructural analysis revealed intense ?-fibre components due to a higher strain following the warm-rolling process as well as a considerably high-angle grain boundary number which was associated with dislocation accumulation. This paper is part of a Thematic Issue on Medium Manganese Steels.
机译:中锰钢通常由热轧制成,然后是冷轧和跨临界退火工艺。 然而,一个奇异的过程,热轧,是一种吸引人的前景。 通过冷轧,通过冷轧,采用跨临界退火或热轧,对8·wt-%Mnα的微观结构,机械性能和纹理进行研究。 来自两个过程的产物表现出高度精细的微观结构以及大量奥氏体。 然而,略大的体积分数以及由温暖轧制工艺产生的更均匀的奥氏体形态,与更高的工作 - 硬化速率相关。 微观结构分析显示出强烈轧制过程之后的较高应变的强烈的诱变组分以及与位错累积相关的大角度晶界数。 本文是中锰钢上专题问题的一部分。

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