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ON THE THREE-DIMENSIONAL MICROSTRUCTURE OF MARTENSITE IN CARBON STEELS

机译:碳钢马氏体三维微观结构

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The mechanical properties of high-performance steels are often reliant on the hard martensitic structure. It can either be the sole constituent e.g. in tool steels, or it can be part of a multi-phase structure as e.g. in dual-phase steels. It is well-known that the morphology of martensite changes from lath to plate martensite with increasing carbon content. The transition from lath to plate is however less known and in particular the three-dimensional (3D) aspects in the mixed lath and plate region require more work. Here the current view of the 3D microstructure of martensite in carbon steels is briefly reviewed and complemented by serial sectioning experiments using a focused ion beam scanning electron microscope (FIB-SEM). The large martensite units in the Fe-1.2 mass% C steel investigated here are found to have one dominant growth direction, less transverse growth and very limited thickening. There is also evident transformation twinning parallel to the transverse direction. It is concluded that more 3D analysis is required to understand the 3D microstructure of martensite in the mixed lath and plate region and to verify the recently proposed 3D phase field models of martensite in steels.
机译:高性能钢的机械性能通常依赖于硬马氏体结构。它可以是唯一的成分。在刀具钢中,或者它可以是多相结构的一部分,如例如:在双相钢。众所周知,随着碳含量的增加,马氏体的形态从板条到板马氏体变化。然而,从Lath到板的过渡尤其是较少的,并且特别是混合板条和板区域中的三维(3D)方面需要更多的工作。这里,使用聚焦离子束扫描电子显微镜(FIB-SEM)简要回顾并补充了碳钢中马氏体3D微观结构的目前的视图。发现Fe-1.2质量%C钢中的大马氏体单元在此发现具有一个主导的生长方向,横向生长较小,增厚非常有限。还有明显的变换与横向平行。得出结论,需要更多的3D分析来了解混合板条和板区马氏体的3D微观结构,并验证钢中马氏体的最近提出的3D相现场模型。

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