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面向个人热管理的降温纺织品 被引量:9
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作者 曾少宁 胡佳雨 +13 位作者 张曼妮 向远卓 吴嘉威 苏敏钰 张雨琪 沈梦 洪平 黄朝林 陈敏 周宁 侯冲 周华民 张定宇 陶光明 《科学通报》 EI CAS CSCD 北大核心 2022年第11期1167-1179,共13页
高温环境下人体的局部微环境热调控对人类健康具有重大意义.纺织品作为人体与外界环境的一道防护屏障,对个人的热舒适管理有重要作用.普通纺织品由于缺乏高效的温度调控机制,难以应对周围环境的剧烈温度变化,尤其是在高温场景下如何实... 高温环境下人体的局部微环境热调控对人类健康具有重大意义.纺织品作为人体与外界环境的一道防护屏障,对个人的热舒适管理有重要作用.普通纺织品由于缺乏高效的温度调控机制,难以应对周围环境的剧烈温度变化,尤其是在高温场景下如何实现有效的降温是亟须解决的难题.通过物理光学、材料科学和纺织工程等多学科交叉融合而衍生的降温纺织品,有望以更加有效和个性化的方式满足个体温度的调节需求,将通过多学科交叉创新的科学研究助力体育运动与医疗健康的智能化发展.本文重点讨论了降温纺织品的基本机制、研究进展和应用场景,阐述其发展方向和产业化潜力,并展望降温纺织品在多元化运动和智能化医疗中的广阔前景. 展开更多
关键词 降温纺织品 个人热管理 辐射降温 可穿戴技术 功能织物
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Robust and Flexible Multimaterial Aerogel Fabric Toward Outdoor Passive Heating 被引量:5
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作者 Jiawei Wu manni zhang +7 位作者 Minyu Su Yuqi zhang Jun Liang Shaoning Zeng Baishun Chen Li Cui Chong Hou Guangming Tao 《Advanced Fiber Materials》 SCIE EI 2022年第6期1545-1555,共11页
Outdoor passive heating to maintain a constant human body temperature is critical for human activities.However,most traditional energy-exhausted heating systems and inefficient passive heating technologies are incapab... Outdoor passive heating to maintain a constant human body temperature is critical for human activities.However,most traditional energy-exhausted heating systems and inefficient passive heating technologies are incapable of dealing with the cold outdoor environment.Developing fabrics with low thermal radiation and conduction to passively heat the human body is a viable way to overcome the constraints of existing passive heating strategies.Herein,a multimaterial aerogel fabric was developed to realize passive personal heating without any energy input.The multimaterial aerogel fabric was fabricated by coating an Ag layer on an aerogel composite fabric.The lightweight aerogel composite fabric,woven from aerogel composite fibers with multi-scale porous structure,exhibits excellent thermal insulation,self-cleaning,mechanical and thermal stability.Furthermore,by coating with an Ag layer,the multimaterial aerogel fabric exhibits both low thermal conductivity and low infrared emissivity at 7–14μm,demonstrating superior thermal insulating performance.As a result,the proposed multimaterial aerogel fabric with a thickness of only 1.29 mm is capable of improving the human body temperarure of 5.7℃ in a cold environment without energy input.This strategy offers a potential energy-saving alternative for future outdoor passive heating. 展开更多
关键词 Outdoor passive heating Aerogel fabric Thermal insulation Porous structure
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