Fluid Transport Phenomena in Fibrous Materials

IF 2.1 Q2 MATERIALS SCIENCE, TEXTILES TEXTILE PROGRESS Pub Date : 2006-01-01 DOI:10.1533/tepr.2006.0002
N. Pan, W. Zhong
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引用次数: 48

Abstract

Abstract Fluid transport is one of the most frequently observed phenomena in the processing and end uses of fibrous materials. Fibrous materials have a unique structure of complex geometry, characterized by system anisotropy and heterogeneity. The characterization of fibrous materials, therefore, is critical in the understanding of transport behavior through fibrous structures, and is discussed after an introductory section. Subsequent sections cover topics of various transport processes through fibrous structures, including wicking and wetting, resin impregnation in liquid composite molding, filtration and separation in geotextiles, aerosol filtration in fibrous filters, micro/nano scale transport phenomena, and biomedical applications. The fibrous structure is also known for its multi-scale pore distribution from intra-fiber to inter-fiber spaces. This multi-scale effect is even more prominent when micro or nano fibrous materials are concerned, and so multi-scale approaches to address the scale effects of transport behavior in fibrous materials are discussed. Finally, the Ising model of statistical mechanics, a robust computer-simulation tool dealing with the fluid transport problems in fibrous materials, is introduced.
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纤维材料中的流体传输现象
流体输运是纤维材料加工和最终使用中最常观察到的现象之一。纤维材料具有独特的复杂几何结构,具有系统各向异性和非均质性。因此,纤维材料的表征对于理解通过纤维结构的传输行为至关重要,并在介绍部分之后进行讨论。随后的章节涵盖了通过纤维结构的各种传输过程的主题,包括排芯和润湿,液体复合成型中的树脂浸渍,土工布中的过滤和分离,纤维过滤器中的气溶胶过滤,微/纳米尺度的传输现象,以及生物医学应用。纤维结构还以其从纤维内到纤维间的多尺度孔隙分布而闻名。当涉及微纳米纤维材料时,这种多尺度效应更加突出,因此讨论了解决纤维材料中输运行为的尺度效应的多尺度方法。最后,介绍了统计力学的Ising模型,这是一种处理纤维材料中流体输运问题的强大的计算机模拟工具。
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来源期刊
TEXTILE PROGRESS
TEXTILE PROGRESS MATERIALS SCIENCE, TEXTILES-
CiteScore
4.90
自引率
6.70%
发文量
1
期刊最新文献
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