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首页> 外文期刊>Applied clay science >Polyethylene glycol infused acid-etched halloysite nanotubes for melt-spun polyamide-based composite phase change fibers
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Polyethylene glycol infused acid-etched halloysite nanotubes for melt-spun polyamide-based composite phase change fibers

机译:聚乙二醇注入的酸蚀埃洛石纳米管用于熔纺聚酰胺基复合相变纤维

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The unique tubular structure and morphology of inorganic nanotubes makes them very useful supporting materials for thermal energy storage. Lending these properties in the form of composites together with traditional organic phase change materials (PCMs) can solve the existing energy storage and thermal stability problems in PCMs. Here, the acid-etching halloysite nanotubes (A-HNTs) are prepared and employed as inorganic supporting materials to encapsulate polyethylene glycol (PEG). The N-2 physisorption results indicated that the specific surface area and pore volume of A-HNTs increased from 45.4m(2)/g, 0.243cm(3)/g to 253.4m(2)/g and 0.621 cm(3)/g before and after acid etching leading to an effective PEG load increase from 50 mass% to 70 mass% of composite PCMs. This increasing encapsulation capacity of PEG had a beneficial effect on the phase change performances and the latent heat of the prepared PEG/A-HNTs composite PCMs which reached 112 J/g (as compared to 70.64 J/g of PEG/HNTs). The temperature-regulating time of heat storage and release process were > 500 s and 491 s respectively. Further, the DSC thermograms with 100 thermal cycles and TGA results demonstrated that the PEG/A-HNTs composites had an excellent thermal reliability and stability for preparing phase-change fibers by high-temperature melt spinning. The thermal enthalpy, thermal regulating time and relative temperature difference of resultant PA6/PEG/A-HNTs reached 13.57 J/g, 206 s and 3.2 degrees C, respectively.
机译:无机纳米管独特的管状结构和形态使其成为用于热能存储的非常有用的支撑材料。以复合材料的形式将这些特性与传统的有机相变材料(PCM)一起使用可以解决PCM中现有的能量存储和热稳定性问题。在此,制备酸蚀刻埃洛石纳米管(A-HNT),并用作无机载体材料来封装聚乙二醇(PEG)。 N-2的物理吸附结果表明,A-HNTs的比表面积和孔体积从45.4m(2)/g、0.243cm(3)/ g增加到253.4m(2)/ g和0.621 cm(3) / g在酸蚀刻之前和之后的/ g导致有效PEG负载从复合PCM的50质量%增加到70质量%。 PEG的这种增加的封装能力对所制备的PEG / A-HNTs复合PCM的相变性能和潜热达到112 J / g(而PEG / HNTs为70.64 J / g)具有有益的影响。储热和释放过程的温度调节时间分别> 500 s和491 s。此外,具有100个热循环的DSC热分析图和TGA结果表明,PEG / A-HNTs复合材料具有优异的热可靠性和稳定性,可用于通过高温熔融纺丝制备相变纤维。所得PA6 / PEG / A-HNTs的热焓,热调节时间和相对温差分别达到13.57 J / g,206 s和3.2摄氏度。

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