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三维打印的热调节纺织品。

Three-Dimensional Printed Thermal Regulation Textiles.

机构信息

Department of Materials Science and Engineering and ‡Department of Mechanical Engineering, University of Maryland , College Park, Maryland 20742, United States.

出版信息

ACS Nano. 2017 Nov 28;11(11):11513-11520. doi: 10.1021/acsnano.7b06295. Epub 2017 Nov 1.

Abstract

Space cooling is a predominant part of energy consumption in people's daily life. Although cooling the whole building is an effective way to provide personal comfort in hot weather, it is energy-consuming and high-cost. Personal cooling technology, being able to provide personal thermal comfort by directing local heat to the thermally regulated environment, has been regarded as one of the most promising technologies for cooling energy and cost savings. Here, we demonstrate a personal thermal regulated textile using thermally conductive and highly aligned boron nitride (BN)/poly(vinyl alcohol) (PVA) composite (denoted as a-BN/PVA) fibers to improve the thermal transport properties of textiles for personal cooling. The a-BN/PVA composite fibers are fabricated through a fast and scalable three-dimensional (3D) printing method. Uniform dispersion and high alignment of BN nanosheets (BNNSs) can be achieved during the processing of fiber fabrication, leading to a combination of high mechanical strength (355 MPa) and favorable heat dispersion. Due to the improved thermal transport property imparted by the thermally conductive and highly aligned BNNSs, better cooling effect (55% improvement over the commercial cotton fiber) can be realized in the a-BN/PVA textile. The wearable a-BN/PVA textiles containing the 3D-printed a-BN/PVA fibers offer a promising selection for meeting the personal cooling requirement, which can significantly reduce the energy consumption and cost for cooling the whole building.

摘要

空间冷却在人们的日常生活中是能源消耗的主要部分。虽然在炎热天气中为整个建筑物降温是提供个人舒适度的有效方法,但它既耗能又成本高。个人冷却技术能够通过将局部热量引导到热调节环境中,为个人提供热舒适性,因此被认为是最有前途的节能和降低冷却成本的技术之一。在这里,我们展示了一种使用导热且高度取向的氮化硼(BN)/聚乙烯醇(PVA)复合材料(表示为 a-BN/PVA)纤维的个人热调节纺织品,以提高纺织品的热传输性能,从而实现个人冷却。a-BN/PVA 复合纤维是通过快速且可扩展的三维(3D)打印方法制造的。在纤维制造过程中,可以实现 BN 纳米片(BNNS)的均匀分散和高度取向,从而结合高机械强度(355 MPa)和良好的散热性。由于导热且高度取向的 BNNS 赋予的热传输性能的提高,a-BN/PVA 纺织品可以实现更好的冷却效果(比商业棉纤维提高 55%)。含有 3D 打印 a-BN/PVA 纤维的可穿戴 a-BN/PVA 纺织品为满足个人冷却需求提供了有希望的选择,这可以显著降低整个建筑物冷却的能源消耗和成本。

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