4.5 Article

Analysis of thermal and wet comfort properties of hygroscopic and exothermic knitted fabrics

期刊

TEXTILE RESEARCH JOURNAL
卷 92, 期 13-14, 页码 2327-2339

出版社

SAGE PUBLICATIONS LTD
DOI: 10.1177/00405175221076030

关键词

hygroscopic and exothermic fabric; hygroscopic heat generation performance; moisture management characteristics; thermal and wet comfort

资金

  1. National Key R&D Program of China [2017YFB0309100]
  2. Fundamental Research Funds for the Central Universities [CUSF-DH-D-2019057]

向作者/读者索取更多资源

The thermal and wet comfort of clothing is essential in determining customer satisfaction. This study focused on developing winter textiles with optimal hygroscopic heat generation and moisture management to keep the wearer warm and dry. Multilayer knitted fabrics with designed structures and wettability gradients demonstrated excellent moisture transport properties. The fabric composed of profiled polyester and modified polyacrylate showed superior moisture management characteristics and evenly distributed heat generation.
Clothing thermal and wet comfort relates to the heat and moisture transport properties of clothing as one of the most important factors in determining whether or not a garment is desirable to customers. It is important to develop winter textiles by optimally combined technology of hygroscopic heat generation and moisture management to maintain warm dry skin for the active wearer. In this work, six multilayer hygroscopic and exothermic fabrics made up of different functional yarn compositions were designed and fabricated based on ergonomic principles. Their thermal wet comfort properties were investigated compared with seven plain knitted fabrics. Air permeability, moisture management characteristics, thermal physiological properties, and hygroscopic heat generation performances were used to assess thermal and wet comfort properties. Their correlations with yarn composition were explored. Multilayer knitted fabrics with a designed knitted structure and wettability gradient demonstrated evenly hygroscopic exothermic properties and excellent directional moisture transport performances. This has the potential to reduce the phenomena of high temperature and heat concentration following moisture absorption The fabric made up of profiled polyester and a low proportion of cotton blend as an inner layer and a high proportion of modified polyacrylate and viscose blend as a middle layer was verified to have superior moisture management characteristics and evenly hygroscopic exothermic properties.

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