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Hybrid structure of white layer in high carbon steel – Formation mechanism and its properties

机译:高碳钢中白层的混合组织-形成机理及其性能

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摘要

This study identifies for the first time, the hybrid structure of the white layer in high carbon steel and describes its formation mechanism and properties. The so-called ‘white layer’ in steel forms during high strain rate deformation and appears featureless under optical microscopy. While many researchers have investigated the formation of the white layer, there has been no definitive study, nor is there sufficient evidence to fully explain the formation, structure and properties of the layer. In this study, the formation, morphology and mechanical properties of the white layer was determined following impact testing, using a combination of optical and SE- microscopy, HR-EBSD, TKD and TEM as well as nano-indentation hardness measurements and FE modelling. The phase transformation and recrystallization within and near the white layer was also investigated. The microstructure of the steel in the white layer consisted of nano-sized grains of martensite. A very thin layer of austenite with nano sized grains was identified within the white layer by HR-EBSD techniques, the presence of which is attributed to a thermally-induced reverse phase transformation. Overall, the combination of phase transformations, strain hardening and grain refinement led to a hybrid structure and an increase in hardness of the white layer.
机译:这项研究首次确定了高碳钢中白色层的混合结构,并描述了其形成机理和性能。所谓的“白层”是钢在高应变率变形过程中形成的,在光学显微镜下没有任何特征。尽管许多研究人员已经调查了白色层的形成,但是还没有确定的研究,也没有足够的证据充分解释该层的形成,结构和性质。在这项研究中,冲击测试后,结合光学和SE显微镜,HR-EBSD,TKD和TEM以及纳米压痕硬度测量和FE建模,确定了白色层的形成,形态和机械性能。还研究了白色层内部和附近的相变和重结晶。白层中的钢的微观结构由纳米尺寸的马氏体晶粒组成。通过HR-EBSD技术,在白色层中发现了具有纳米级晶粒的非常薄的奥氏体层,其存在归因于热诱导的反相转变。总体而言,相变,应变硬化和晶粒细化的组合导致混合结构和白色层硬度的增加。

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