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Influence of the Geometry of an Immersed Steel Workpiece on Mass Transfer Coefficient in a Chemical Heat Treatment Fluidised Bed

机译:浸没钢工件的几何形状对化学热处理流化床中传质系数的影响

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摘要

The mass transfer during carburising in a fluidised bed and in a steel workpiece has been studied experimentally in this work. This involved carburising experiment in an electrically heated fluidised bed at 900-970 deg C with natural gas and air as the atmosphere. A steel workpiece was designed to provide a range of carbon transfer surfaces of different geometries in the fluidised bed, and the carbon transfer coefficient was measured at these surfaces. The carbon transfer coefficient was determined from the carbon distribution within the diffusion layer of the sample. An empirical relationship of the carbon potential as a function of carburising atmosphere, bed temperature and fluidising velocity was determined, based on the understanding of the mass transfer mechanism and analysis of the experimental results.
机译:在这项工作中,已对通过流化床和钢制工件进行渗碳过程中的传质进行了实验研究。这涉及在900-970摄氏度的电加热流化床中进行渗碳实验,其中天然气和空气为大气。设计钢制工件以在流化床中提供一系列不同几何形状的碳转移表面,并在这些表面上测量碳转移系数。碳传递系数由样品扩散层内的碳分布确定。基于对传质机理的理解和实验结果的分析,确定了碳势与渗碳气氛,床温和流化速度之间的经验关系。

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