基于水分扩散传递机理的吸湿放热针织物热湿舒适性评价

IF 1.5 4区 工程技术 Q2 MATERIALS SCIENCE, TEXTILES Journal of the Textile Institute Pub Date : 2023-10-11 DOI:10.1080/00405000.2023.2266610
Limin Zhang, Longdi Cheng, Ruiyun Zhang, Wenliang Xue, Wanwan Ma, Xueqing Han
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引用次数: 0

摘要

摘要本文旨在研究织物的吸湿放热行为,探讨通过加强吸湿控制,实现更慢更均匀的吸湿加热过程的可行性。在热湿耦合传递模型的基础上,提出了湿扩散传递的“阶梯式”机理,并采用不同整理工艺制备了不同吸湿增温针织织物。结果表明,“阶梯式”机理在延缓、延长和均匀吸湿生热方面具有可行性和优越性。此外,通过对复合整理织物的水分传递分析发现,复合整理织物内层对水分更为敏感,扩散速度更快,水-纤维相互作用更紧密。通过整理得到织物在连续高湿微环境中受热缓慢,在微环境中受热均匀,随着湿度的增加,直至高湿显著,解吸热进一步证明了这一点。这些结果表明,“梯型”机制的吸湿放热织物可能提供一种适合实际热湿舒适要求的新选择。关键词:吸湿放热织物“梯型”扩散传输机制均匀缓慢吸湿产热耦合热湿传递披露声明作者未报告潜在利益冲突。表1。织物的材料。作者感谢对本研究的资金支持:本研究由国家重点研发计划(2017YFB0309100)资助。
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Evaluation on thermal and wet comfort properties of hygroscopic exothermic knitted fabric based on moisture diffused-transmission mechanism
AbstractThis paper aims to study the hygroscopic exothermic behavior of fabrics, exploring the feasibility of achieving much slower and more even hygroscopic heating process by strengthened moisture transmission control. Based on the model of coupled heat and moisture transfer, the moisture diffused-transmission, ‘type-ladder’ mechanism was proposed, and then different moisture-absorbing and heating knitted fabrics were prepared by dissimilar finishing. The result showed that the mechanism of ‘type-ladder’ had the feasibility and advantages in retarding, extending and uniforming the moisture absorption and heat generation. Moreover, it was found that the inner layer of the composite finishing fabric was much more sensitive to the moisture with a faster diffusion and a closer water-fiber interaction through the analysis of the moisture transmission. By means of finishing to obtain the variation both in moisture state and diffusion, caused the fabric heating up much slowly in the continuous high-humidity micro-environment and evenly in the micro-environment with the moisture increasing until high-humidity significantly, which is further proven by the heat of desorption. These results demonstrated that hygroscopic exothermic fabric on ‘type-ladder’ mechanism might provide a new option fit to the actual thermal and humid comfort requirements.Keywords: Hygroscopic exothermic fabric‘type-ladder’ diffused-transmission mechanismuniform and slow moisture absorption and heat generationcoupled heat and moisture transfer Disclosure statementNo potential conflict of interest was reported by the authors.Table 1. The materials of the fabric.Download CSVDisplay TableAdditional informationFundingThe author(s) would like to acknowledge the following financial support for the research: This research was funded by the National Key R&D Program of China: No. 2017YFB0309100.
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来源期刊
Journal of the Textile Institute
Journal of the Textile Institute 工程技术-材料科学:纺织
CiteScore
4.20
自引率
5.90%
发文量
149
审稿时长
1.0 months
期刊介绍: The Journal of The Textile Institute welcomes papers concerning research and innovation, reflecting the professional interests of the Textile Institute in science, engineering, economics, management and design related to the textile industry and the use of fibres in consumer and engineering applications. Papers may encompass anything in the range of textile activities, from fibre production through textile processes and machines, to the design, marketing and use of products. Papers may also report fundamental theoretical or experimental investigations, including materials science topics in nanotechnology and smart materials, practical or commercial industrial studies and may relate to technical, economic, aesthetic, social or historical aspects of textiles and the textile industry. All published research articles in The Journal of The Textile Institute have undergone rigorous peer review, based on initial editor screening and anonymized refereeing by two expert referees.
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