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一种受骆驼毛启发的用于全天候双模式人体热调节的微挤压发泡多孔弹性纤维。

A Camel-Fur-Inspired Micro-Extrusion Foaming Porous Elastic Fiber for All-Weather Dual-Mode Human Thermal Regulation.

作者信息

Wang Yushu, Wang Zeling, Huang Hanyi, Li Yaozao, Zhai Wentao

机构信息

School of Materials Science and Engineering, Sun Yat-sen University, Guangzhou, Guangdong, 510275, China.

Nanchang Research Institute, Sun Yat-sen University, No. 269 Aixihu Lake North Road, Nanchang, 330096, China.

出版信息

Adv Sci (Weinh). 2024 Nov;11(43):e2407260. doi: 10.1002/advs.202407260. Epub 2024 Sep 28.

Abstract

Maintaining the stability of human body temperature is the basis of ensuring the normal life activities of witness, and the emergence of various functional clothing is committed to assisting the human body temperature in thermal comfort range in the changeable environment. However, achieve dual-mode thermal regulation for cooling and insulation on an integrated material without energy input and addition of functional particles has thus far been a huge challenge. Herein, a biomimetic camel-fur designed micro-extruded physically foamed porous elastic fiber (MEPF) using thermoplastic polyurethane (TPU) elastomer as raw material is reported, and its dual-layered fabric (MEPFT-d) for effective personal thermal comfortable management at extreme temperature differences. Benefit from its micro-nano-pores structure, MEPFT-d represents radiate cooling capacity by high solar reflectance and emissivity, behaves low thermal conductivity delaying heat scattering, and promotes evaporative cooling by unidirectional water transport. These excellent properties ensure that MEPFT-d reduces heat loss in cold weather (7.2 °C higher than cotton) and blocks outside heat in hot weather (10.2 °C lower than cotton), which is suitable for various complex outdoor scenes. The cost-effectiveness and superior wearing comfort of this work provide innovative pathways for sustainable energy, smart textiles, and personal thermal comfort applications.

摘要

维持人体体温的稳定是确保人体正常生命活动的基础,各种功能性服装的出现致力于在多变的环境中将人体体温维持在热舒适范围内。然而,在不输入能量和添加功能颗粒的情况下,在一种集成材料上实现冷却和隔热的双模式热调节,迄今为止一直是一个巨大的挑战。在此,报道了一种以热塑性聚氨酯(TPU)弹性体为原料设计的仿生骆驼毛微挤出物理发泡多孔弹性纤维(MEPF),以及其用于在极端温差下有效实现个人热舒适管理的双层织物(MEPFT-d)。得益于其微纳孔结构,MEPFT-d通过高太阳反射率和发射率表现出辐射冷却能力,具有低导热率以延迟热散射,并通过单向水传输促进蒸发冷却。这些优异的性能确保MEPFT-d在寒冷天气中减少热量损失(比棉花高7.2°C),在炎热天气中阻挡外部热量(比棉花低10.2°C),适用于各种复杂的户外场景。这项工作的成本效益和卓越的穿着舒适性为可持续能源、智能纺织品和个人热舒适应用提供了创新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26c8/11578328/89dfbc99fcd3/ADVS-11-2407260-g006.jpg

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