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首页> 外文期刊>Journal of Textile Science & Engineering >Thermal Modelling on Solar-Absorbing Metamaterial Microencapsulation of Phase Change Materials for Smart Textiles
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Thermal Modelling on Solar-Absorbing Metamaterial Microencapsulation of Phase Change Materials for Smart Textiles

机译:智能纺织品相变材料的太阳能吸收超材料微囊化热模型

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This paper will present a novel concept to design solar-absorbing metamaterial encapsulation of phase change materials (PCM) incorporated with thermo-regulated smart textiles for coats or garments especially for outdoor wear in cold weather. The metamaterial is a periodically nanostructured metal-dielectric-metal thin film and can acquire surface plasmons to trap or absorb solar energy at subwavelength scales. This kind of metamaterial microencapsulation is not only able to take advantage of latent heat that can be stored or released from the PCM over a tunable temperature range, but also has other advantages over conventional polymer microencapsulation of PCMs, such as enhanced thermal conductivity, improved flame retardant, and extra solar power resource. The thermal modelling for this metamaterial encapsulation has been done and will provide a guideline for future design of the integrated thermos-regulated smart textiles.
机译:本文将提出一个新颖的概念来设计相变材料(PCM)的太阳能吸收超材料封装,该封装与温度调节的智能纺织品结合在一起,用于外套或服装,特别是在寒冷天气下的户外穿着。超材料是周期性的纳米结构的金属-电介质-金属薄膜,可以获取表面等离子体激元,以捕获或吸收亚波长尺度的太阳能。这种超材料微囊封装不仅能够利用在可调温度范围内可以从PCM储存或释放的潜热,而且还具有优于PCM的常规聚合物微囊封装的其他优势,例如增强的导热性,改善的火焰阻燃剂和额外的太阳能资源。这种超材料封装的热模型已经完成,并将为集成的热水瓶调节的智能纺织品的未来设计提供指导。

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