纺织品中的水分

IF 25.4 1区 工程技术 Q1 MECHANICS Annual Review of Fluid Mechanics Pub Date : 2021-11-08 DOI:10.1146/annurev-fluid-030121-034728
C. Duprat
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引用次数: 9

摘要

纺织品与水分的相互作用在纺织品研究中已经得到了彻底的研究,而流体力学和软物质物理学家已经部分研究了潜在的物理现象。对纤维组件中液体形态的描述使人们能够表征相关的毛细管力及其对纺织品的影响,并组织其复杂的水分传输动力学。这篇综述收集了纺织品-液体相互作用中的一些共同特征和基本机制,选择了从针织物到非织造纸的例子,并与模型系统的实验相关联。《流体力学年度评论》第54卷预计最终在线出版日期为2022年1月。请参阅http://www.annualreviews.org/page/journal/pubdates用于修订估算。
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Moisture in Textiles
The interactions of textiles with moisture have been thoroughly studied in textile research, while fluid mechanists and soft matter physicists have partially investigated the underlying physics phenomena. A description of liquid morphologies in fibrous assemblies allows one to characterize the associated capillary forces and their impact on textiles, and to organize their complex moisture transport dynamics. This review gathers some of the common features and fundamental mechanisms at play in textile–liquid interactions, with selected examples ranging from knitted fabrics to nonwoven paper sheets, associated with experiments on model systems. Expected final online publication date for the Annual Review of Fluid Mechanics, Volume 54 is January 2022. Please see http://www.annualreviews.org/page/journal/pubdates for revised estimates.
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来源期刊
CiteScore
54.00
自引率
0.40%
发文量
43
期刊介绍: The Annual Review of Fluid Mechanics is a longstanding publication dating back to 1969 that explores noteworthy advancements in the field of fluid mechanics. Its comprehensive coverage includes various topics such as the historical and foundational aspects of fluid mechanics, non-newtonian fluids and rheology, both incompressible and compressible fluids, plasma flow, flow stability, multi-phase flows, heat and species transport, fluid flow control, combustion, turbulence, shock waves, and explosions. Recently, an important development has occurred for this journal. It has transitioned from a gated access model to an open access platform through Annual Reviews' innovative Subscribe to Open program. Consequently, all articles published in the current volume are now freely accessible to the public under a Creative Commons Attribution (CC BY) license. This new approach not only ensures broader dissemination of research in fluid mechanics but also fosters a more inclusive and collaborative scientific community.
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