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用于高度舒适的隔热气凝胶毡服装的工业规模海岛熔纺连续超细纤维

Industrial Scale Sea-Island Melt-Spun Continuous Ultrafine Fibers for Highly Comfortable Insulated Aerogel Felt Clothing.

作者信息

Yu Yan, Xu Chengjian, Hu Zexu, Xiang Hengxue, Zhang Junyan, Zhang Xinhai, Cheng Yanhua, Zhu Liping, Zhu Meifang

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, P. R. China.

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Mechanical and Engineering, Donghua University, Shanghai, 201620, P. R. China.

出版信息

Adv Mater. 2024 Dec;36(52):e2414731. doi: 10.1002/adma.202414731. Epub 2024 Oct 30.

Abstract

Aerogels are most attractive for thermal clothing. However, mechanical fragility and structural instability restrict their practical applications. These issues are overcome by developing industrial scale sea-island melt-spun ultrafine fibers with large and uniform length-to-diameter as building blocks, which are assembled into aerogel felts with corrugated lamellar structure through freeze-shaping technology. These aerogels possess excellent mechanical properties to meet fabric elasticity and comfort needs, including super-flexibility (25% tensile strain, 95% compression, 180° bending performance) and fatigue resistance of over 10,000 cycles. The aerogels are also self-cleaning, waterproof, breathable, and flame-retardant, making them suitable for application requirements in extreme environments. Moreover, the obtained aerogel felt clothing exhibits excellent thermal insulation properties close to that of dry air, and is only one-third as thick as down clothing with similar insulating properties. Expanding sea-island melt-spun fiber to construct aerogel in this strategy provides scalable potential for developing multifunctional insulating aerogel clothing.

摘要

气凝胶在保暖服装方面极具吸引力。然而,机械脆性和结构不稳定性限制了它们的实际应用。通过开发具有大且均匀长径比的工业规模海岛熔纺超细纤维作为构建单元,克服了这些问题,这些纤维通过冷冻成型技术组装成具有波纹层状结构的气凝胶毡。这些气凝胶具有优异的机械性能,能够满足织物的弹性和舒适度需求,包括超柔韧性(25%拉伸应变、95%压缩、180°弯曲性能)和超过10000次循环的抗疲劳性。这些气凝胶还具有自清洁、防水、透气和阻燃的特性,使其适用于极端环境中的应用要求。此外,所制备的气凝胶毡服装具有接近干燥空气的优异隔热性能,且厚度仅为具有类似隔热性能的羽绒服的三分之一。采用这种策略扩展海岛熔纺纤维来构建气凝胶,为开发多功能隔热气凝胶服装提供了可扩展的潜力。

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