Steam impinging and heat and water spreading in fabrics

Author:

Liang Shuaitong12,Pan Ning3ORCID,Cui Yuexin12,Wu Xiongying4,Ding Xuemei12

Affiliation:

1. College of Fashion and Design, Donghua University, China

2. Key Laboratory of Clothing Design & Technology, Donghua University, Ministry of Education, Shanghai, China

3. Biological & Agricultural Engineering, University of California, Davis, United States

4. Shanghai Entry-Exit Inspection and Quarantine Bureau, China

Abstract

This study is about the heat and mass transport phenomena in a system with steam jet flow to eliminate/alleviate cloth wrinkles. We first adopted a theoretical approach to derive the mean capillary radii so that a fabric can be characterized as an assembly of capillary tubes with varying diameters. We then analyzed the processes as a heat transfer via the fibers and water via the pores in fabrics of different anisotropies. During water movement, the water weight actually intensifies the inherent anisotropy of the fabric in the water flow pattern. For heat transfer, the water weight becomes irrelevant and both convection and radiation are shown to be too trivial to include. Corresponding experiments are also conducted, using infrared and visible light cameras to record the heat and water flow processes, respectively. The results are compared with the theoretical predictions and the discrepancies are explored and explained.

Funder

Shanghai Science and Technology Committee

Donghua University Institute for Nonlinear Sciences

Fundamental Research Funds for the Central Universities

Shanghai Summit Discipline in Design through Project on Fashion Technology Innovation

National Natural Science Foundation of China

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

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