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Microstructure Evolution and Material Flow of Steel in Semi-solid Forming Process

机译:半固态成形过程中钢的组织演变和材料流动

摘要

The present study aims to identify and characterize the development of microstructure and deformation characteristics of steel grades in semi-solid state which is affected by the change in morphologies of microstructure at high temperature. Thixoextrusion tests with different combinations of forming temperature and forming speed were performed. It was identified that several process parameters, such as initial billet and die temperatures or forming speed, affect thermal exchanges thereby influencing the microstructure evolution and material flow. Furthermore, 2D and 3D microstructure characterization was performed on the same sample which was partial remelted and quenched. Reconstructed 3D images were compared with the ones obtained with a Scanning Electron Microscope and an Energy Dispersive Spectrometry system. The good agreement between 2D SEM observations and 3D X-ray microtomography results makes these two techniques efficient to characterize steels in the semi-solid state.
机译:本研究旨在鉴定和表征受高温下微观组织形态变化影响的半固态钢种的组织发展和变形特性。进行了具有不同成型温度和成型速度组合的触变挤出试验。可以确定的是,几个工艺参数(例如初始坯料和模具温度或成型速度)会影响热交换,从而影响微观结构的演变和材料的流动。此外,对部分重熔并淬火的同一样品进行了2D和3D显微组织表征。将重建的3D图像与通过扫描电子显微镜和能量色散光谱系统获得的图像进行比较。 2D SEM观察结果与3D X射线显微断层扫描结果之间的良好一致性使这两种技术有效地表征了半固态钢。

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