Size Effect on Functionally Graded Material Fabrication by Sedimentation

Po-Hua Lee, H. Yin
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引用次数: 7

Abstract

AbstractA simple, economic, and scalable material manufacturing method of sedimentation has been used to fabricate functionally graded materials for solar roofing panels. This paper investigates the size effect of aluminum powder on the material gradation in the depth direction when only aluminum powder or the mixture of aluminum and high-density polyethylene (HDPE) powder is uniformly dispersed in ethanol and then subjected to sedimentation for a certain period, respectively. A Stokes’ law–based model is developed to simulate the sedimentation process, in which the concentration of aluminum and HDPE particles temporally and spatially changes in the depth direction due to the nonuniform motion of particles. The concentration variation further changes the effective viscosity of the suspension, and thus affects the drag force of particles. The numerical simulation demonstrates the effect of manufacturing parameters for sedimentation and predicts the graded microstructure of deposition in the depth direction...
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沉淀法制备功能梯度材料的尺寸效应
摘要:一种简单、经济、可扩展的沉积材料制造方法已被用于制造太阳能屋面板的功能梯度材料。本文研究了分别将纯铝粉或铝与高密度聚乙烯(HDPE)粉的混合物均匀分散在乙醇中沉淀一定时间后,铝粉在深度方向上对物料级配的粒度效应。建立了基于Stokes定律的沉降模型,模拟了由于颗粒运动不均匀,铝和HDPE颗粒浓度在深度方向上的时空变化。浓度的变化进一步改变了悬浮液的有效粘度,从而影响颗粒的阻力。数值模拟表明了制造参数对沉积的影响,并预测了沉积在深度方向上的梯度微观结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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