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Three-Dimensionally Conformal Porous Polymeric Microstructures of Fabrics for Electrothermal Textiles with Enhanced Thermal Management

机译:具有增强的热管理性能的电热纺织品织物的三维共形多孔聚合物微结构

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摘要

Three-dimensionally conformal porous microstructured fabrics (3CPMFs) are a new kind of modified fabrics with three-dimensionally conformal porous microstructures of introduced materials recently developed for wearable technology. They can effectively introduce customized functional performance based on the choice of brick materials, while at the same time maintain the excellent inherent properties of textiles. In this paper, based on the introduction of polystyrene with low thermal conductivity at only 8 × 10−4 g cm−2, we developed a kind of polyester fabric-based 3CPMF with enhanced thermal insulation, while maintaining its unique fabric texture, flexibility, moisture permeability, and light weight. It was demonstrated to be a good textile material for the fabrication of wearable electrothermal textile (ET) devices with enhanced thermal management. Compared to pristine fabric-based ET devices, this kind of 3CPMF-based ET devices can obtain higher temperatures under the same input power to provide thermal comfort for human beings, while saving more electric power to achieve the same thermal equilibrium temperature. We believe that, based on the choice of different functional materials and textiles, a wide range of 3CPMFs with customized functionalities and properties can be designed and developed for the realization of a brand-new class of truly wearable devices with desired functional performance and daily garment-like safety and comfort.
机译:三维共形多孔微结构化织物(3CPMF)是一种新型改性织物,具有最近针对可穿戴技术开发的引入材料的三维共形多孔微结构。他们可以根据砖材料的选择有效地引入定制的功能性能,同时保持纺织品的优异固有性能。在介绍低导热系数仅为8×10 −4 g cm −2 的聚苯乙烯的基础上,我们开发了一种基于聚酯织物的3CPMF具有增强的隔热性能,同时保持其独特的织物质地,柔韧性,透湿性和重量轻。它被证明是一种用于制造可穿戴式电热纺织品(ET)装置的良好纺织品材料,具有增强的热管理能力。与基于原始织物的ET设备相比,这种基于3CPMF的ET设备可以在相同输入功率下获得更高的温度,从而为人类提供热舒适性,同时节省更多的电能以达到相同的热平衡温度。我们相信,根据对不同功能材料和纺织品的选择,可以设计和开发各种具有定制功能和特性的3CPMF,以实现具有所需功能性能和日常服装的全新类别的真正可穿戴设备般的安全性和舒适性。

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