功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2012年
15期
2045-2048
,共4页
柯惠珍%张慧丹%李大伟%魏取福%蔡以兵%黄锋林%廖师琴
柯惠珍%張慧丹%李大偉%魏取福%蔡以兵%黃鋒林%廖師琴
가혜진%장혜단%리대위%위취복%채이병%황봉림%료사금
静电纺丝%复合相变纤维%脂肪酸低共熔物%形貌%储热性能%力学性能
靜電紡絲%複閤相變纖維%脂肪痠低共鎔物%形貌%儲熱性能%力學性能
정전방사%복합상변섬유%지방산저공용물%형모%저열성능%역학성능
electrospinning%composite phase change fibers%fatty acid eutectic%morphology%thermal energy storage%tensile property
采用静电纺丝技术成功制备了以5种脂肪酸二元低共熔混合物(LA-MA、LA-SA、MA-PA、MA-SA、PA-SA)为固液相变材料,聚对苯二甲酸乙二酯(PET)为支撑材料的定形相变复合纤维。研究了不同种类的脂肪酸二元低共熔物对复合相变纤维的形貌结构、储热性能以及力学性能的影响。研究结果表明这5种定形相变复合纤维的表面均呈现褶皱的形貌特征,同时纤维直径也明显增大。热分析结果表明当改变纤维中脂肪酸二元低共熔物的种类时,复合相变纤维的熔化温度和熔化焓值均随之而变化,其中熔化温度最低为33.23℃,最高为52.82℃,熔化焓值最低为62.75kJ/kg,最高为94.76kJ/kg。力学性能测试结果表明,由于脂肪酸二元低熔物的加入复合相变纤维的拉伸强度减小,断裂伸长率增大。
採用靜電紡絲技術成功製備瞭以5種脂肪痠二元低共鎔混閤物(LA-MA、LA-SA、MA-PA、MA-SA、PA-SA)為固液相變材料,聚對苯二甲痠乙二酯(PET)為支撐材料的定形相變複閤纖維。研究瞭不同種類的脂肪痠二元低共鎔物對複閤相變纖維的形貌結構、儲熱性能以及力學性能的影響。研究結果錶明這5種定形相變複閤纖維的錶麵均呈現褶皺的形貌特徵,同時纖維直徑也明顯增大。熱分析結果錶明噹改變纖維中脂肪痠二元低共鎔物的種類時,複閤相變纖維的鎔化溫度和鎔化焓值均隨之而變化,其中鎔化溫度最低為33.23℃,最高為52.82℃,鎔化焓值最低為62.75kJ/kg,最高為94.76kJ/kg。力學性能測試結果錶明,由于脂肪痠二元低鎔物的加入複閤相變纖維的拉伸彊度減小,斷裂伸長率增大。
채용정전방사기술성공제비료이5충지방산이원저공용혼합물(LA-MA、LA-SA、MA-PA、MA-SA、PA-SA)위고액상변재료,취대분이갑산을이지(PET)위지탱재료적정형상변복합섬유。연구료불동충류적지방산이원저공용물대복합상변섬유적형모결구、저열성능이급역학성능적영향。연구결과표명저5충정형상변복합섬유적표면균정현습추적형모특정,동시섬유직경야명현증대。열분석결과표명당개변섬유중지방산이원저공용물적충류시,복합상변섬유적용화온도화용화함치균수지이변화,기중용화온도최저위33.23℃,최고위52.82℃,용화함치최저위62.75kJ/kg,최고위94.76kJ/kg。역학성능측시결과표명,유우지방산이원저용물적가입복합상변섬유적랍신강도감소,단렬신장솔증대。
Form-stable phase change fibers based on binary fatty acid eutectic/PET composites in which the five binary fatty acid eutectics serve as solid-liquid phase change material and PET acts as a supporting material, were successfully fabricated through electrospinning. The effects of the types of the binary fatty acid eutectics on morphological structures, thermal energy storage properties and tensile properties of the composite phase change fibers were studied. The results revealed that form-stable phase change composite fibers possessed the wrinkled surfaces morphologies with fiber diameters significantly larger than that of neat PET fibers. Thermal analysis results showed that the melting temperatures and enthalpies of the composite fibers varied with the types of binary fatty acid eutectics. The lowest and highest melting temperatures were 33.23 and 52.82°C, re- spectively, whilst the lowest and highest enthalpies were 62.75 and 94.76kJ/kg, respectively. The tensile testing results indicated that the tensile strength of the composite phase change fibers decreased, while the elongation at break of the composite fibers increased due to the loading of the binary fatty acid eutectic.