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首页> 外文期刊>Journal of Microscopy >High-temperature laser-scanning confocal microscopy as a tool to study the interface instability during unsteady-state solidification of low-carbon steel
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High-temperature laser-scanning confocal microscopy as a tool to study the interface instability during unsteady-state solidification of low-carbon steel

机译:高温激光扫描共聚焦显微镜作为研究低碳钢非稳态凝固过程中界面不稳定性的工具

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摘要

Solidification microstructure is a defining link between production techniques and the mechanical properties of metals and in particular steel. Due to the difficulty of conducting solidification studies at high temperature, knowledge of the development of solidification microstructure in steel is scarce. In this study, a laser-scanning confocal microscopy (LSCM) has been used to observe in situ and in real-time the planar to cellular to dendritic transition of the progressing solid/liquid interface in low carbon steel. Because the in situ observations in the laser-scanning confocal microscopy are restricted to the surface, the effect of sample thickness on surface observations was determined. Moreover, the effect of cooling rate and alloy composition on the planar to cellular interface transition was investigated. In the low-alloyed, low-carbon steel studied, the cooling rate does not seem to have an effect on the spacing of the cellular microstructure. However, in the presence of copper and manganese, the cell spacing decreased at higher cooling rates. Higher concentrations of copper in steel resulted on an increased cell spacing at the same cooling rates.
机译:凝固组织是生产技术与金属(特别是钢)的机械性能之间的明确联系。由于在高温下难以进行凝固研究,因此缺乏关于钢中凝固组织发展的知识。在这项研究中,已经使用激光扫描共聚焦显微镜(LSCM)来实时观察低碳钢中不断发展的固/液界面从平面到细胞到树枝状的转变。由于激光扫描共聚焦显微镜的原位观察仅限于表面,因此确定了样品厚度对表面观察的影响。此外,研究了冷却速率和合金组成对平面到蜂窝界面转变的影响。在研究的低合金低碳钢中,冷却速率似乎对蜂窝状微结构的间距没有影响。然而,在铜和锰的存在下,在较高的冷却速率下,单元间距减小。钢中铜的浓度越高,在相同的冷却速率下,电池间距就越大。

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