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首页> 外文期刊>Renewable energy >Electrospun polyethylene glycol/cellulose acetate phase change fibers with core—sheath structure for thermal energy storage
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Electrospun polyethylene glycol/cellulose acetate phase change fibers with core—sheath structure for thermal energy storage

机译:带有芯鞘结构的电纺聚乙二醇/醋酸纤维素相变纤维,用于储热

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摘要

The ultrafine phase change fibers (PCFs) with core-sheath structure based on polyethylene glycol/cellulose acetate (PEG/CA) blends were fabricated successfully via coaxial electrospinning for thermal energy storage. SEM and TEM images show that cylindrical and smooth phase change fibers are obtained and PEG as a phase change ingredient is encapsulated completely by CA sheath. The morphology of the composite fibers before and after thermal treatment indicates that the prepared fibers are form stable phase change materials (PCMs). The results from DSC demonstrate that the composite fibers impart balanced and reversible phase change behaviors, and phase transition enthalpies of the composite fibers increase with the increasing of PEG content in the fibers, while the phase transition temperatures of the fibers are similar with those of pure PEG. The stress-strain curves show that the ultimate strength and ultimate strain of the composite fibers are lower than those of CA fibers, and they decrease with the increase of PEG content. The PEG/CA composite fibers have extensive applications as a smart material for thermal energy storage and temperature regulation.
机译:通过同轴电纺成功地制造了基于聚乙二醇/醋酸纤维素(PEG / CA)共混物的具有芯鞘结构的超细相变纤维(PCF)。 SEM和TEM图像显示获得了圆柱形和光滑的相变纤维,并且作为相变成分的PEG被CA鞘层完全包封。热处理前后复合纤维的形态表明,所制备的纤维是形成稳定的相变材料(PCM)的。 DSC的结果表明,复合纤维具有平衡且可逆的相变行为,且复合纤维的相变​​焓随纤维中PEG含量的增加而增加,而纤维的相变​​温度与纯纤维的相变​​温度相似。聚乙二醇。应力-应变曲线表明,复合纤维的极限强度和极限应变低于CA纤维,并且随着PEG含量的增加而降低。 PEG / CA复合纤维作为热能存储和温度调节的智能材料具有广泛的应用。

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