通过纳米多孔聚乙烯织品进行辐射冷却
Po-Chun Hsu1, Alex Y Song2, Peter B Catrysse2
1Department of Materials Science and Engineering, Stanford University, Stanford, CA 94305, USA.
概括
新的纳米多孔聚乙烯 (nanoPE) 织品提供了有效的个人冷却. 这种材料对体温辐射是透明的,但阻可见光,与棉花相比,可降低2.7°C的感知温度.
科学领域:
- 材料科学
- 织工程
- 热管理
背景情况:
- 通过调整室内温度设置点来节省能源的关键是个人热管理.
- 现有的织品缺乏有效的辐射冷却和可穿戴性.
研究的目的:
- 开发和评估纳米多孔聚乙烯 (nanoPE) 作为个人热管理的织品.
- 评估纳米PE在辐射冷却中的光学性能和热性能.
主要方法:
- 纳米多孔聚乙烯 (nanoPE) 被加工成可穿戴的织品.
- 基于毛孔大小分布分析了光学特性 (透明度到中红外,不透明度到可见光).
- 使用模拟皮肤温度装置将冷却效应与棉花进行比较.
主要成果:
- 纳米PE具有孔径分布 (50-1000nm),可实现中红外透明度和可见光不透明度.
- 与棉花相比,加工的纳米PE织品表现出有效的辐射冷却,降低模拟皮肤温度2.7°C (纳米PE织品) 和2.0°C (加工的纳米PE织品).
- 开发的织品保持了足够的透气性,防水性和机械强度,使其具有实用的穿戴性.
结论:
- 经过加工的纳米PE是一种有前途的可扩展性织材料,
- 这种材料通过扩大室内温度设置点来节省能源.
- 纳米PE织品提供了一种通过操纵辐射传热来实现被动冷却的新方法.
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