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首页> 外文期刊>Polymers & Polymer Composites >Preparation, Morphology and Properties of Electrospun Lauric Acid/ PET Form-Stable Phase Change Ultrafine Composite Fibres
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Preparation, Morphology and Properties of Electrospun Lauric Acid/ PET Form-Stable Phase Change Ultrafine Composite Fibres

机译:电纺丝月桂酸/ PET形稳相变超细复合纤维的制备,形貌和性能

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Lauric acid (LA)/polyefhylene terephthalate (PET) ultrafine composite fibres as form-stable phase change materials (PCM) were prepared successfully via electrospinning. The morphology, thermal energy storage properties, thermal stability and flammability properties of electrospun LA/PET composite fibres were characterized by scanning electron microscopy (SEM), differential scanning calorimetry (DSC), fhermogravimetric analysis (TGA) and microscale combustion calorimetry (MCC), respectively. It was found by SEM investigation that the average fibre diameter generally increased with increasing content of LA in the LA/PET composite fibres. The morphology of electrospun composite fibres changed from a cylindrical shape with a smooth surface (without LA) to a rough and non-uniform structure (with LA). The DSC measurements indicated that there was little change of the phase transition temperatures of the composite fibres, but there was a decrease of the heat enthalpies compared with the pure lauric acid. The TGA results showed that both the onset thermal degradation temperature and charred residue at 700 °C of composite fibres were lower than those of the pure PET fibres, due to the thermal instability of LA. The MCC tests showed that there were two peaks of heat release rate, which corresponded respectively to combustion of LA and PET in the electrospun composite fibres. It could be also found that the first peak increased and the second peak decreased with increasing LA content in composite fibres.
机译:通过电纺成功制备了月桂酸(LA)/聚对苯二甲酸乙二醇酯(PET)超细复合纤维,作为形状稳定的相变材料(PCM)。通过扫描电子显微镜(SEM),差示扫描量热法(DSC),热重分析(TGA)和微型燃烧量热法(MCC)对电纺LA / PET复合纤维的形貌,储热性能,热稳定性和可燃性进行了表征,分别。通过SEM研究发现,平均纤维直径通常随着LA / PET复合纤维中LA含量的增加而增加。电纺复合纤维的形态从具有光滑表面的圆柱形状(无LA)变为粗糙且不均匀的结构(具有LA)。 DSC测量表明,复合纤维的相变​​温度几乎没有变化,但是与纯月桂酸相比,热焓降低了。 TGA结果表明,由于LA的热不稳定性,复合纤维的起始热降解温度和700°C下的焦化残留物均低于纯PET纤维。 MCC测试表明,在电纺复合纤维中有两个放热率峰值,分别对应于LA和PET的燃烧。还可以发现,随着复合纤维中LA含量的增加,第一个峰增加,第二个峰减少。

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