Li Weipei, Xu Liqing, Wang Xiangqin, Zhu Ruitian, Yan Yurong
School of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, China.
Guangdong Medical Products Administration Key Laboratory for Quality Research and Evaluation of Medical Textile Products, Guangzhou Inspection Testing and Certification Group Co., Ltd., Guangzhou 511447, China.
Polymers (Basel). 2021 Dec 24;14(1):53. doi: 10.3390/polym14010053.
A novel thermoplastic polyurethane (TPU) PCFs possessing a high loaded ratio and high elasticity was simply prepared by vacuum absorption following wet spinning, then coated by waterborne polyurethane (WPU). Octadecane (OCC), hexadecanol (HEO), and stearic acid (SA), which have different tendencies to form hydrogen bonds with TPU, were selected as PCMs, and their thermal behavior, thermal storge properties, and elasticity were systematically studied, respectively. The hierarchical pore structure though from the sheath to the core part of TPU filaments weakened the influence of the nonfreezing layer and hydrogen bond on the crystallization behavior of PCMs. The resulting HEO/TPU fiber has the highest enthalpy of 208.1 J/g compared with OCC and SA. Moreover, the HEO/TPU fiber has an elongation at break of 354.8% when the phase change enthalpy is as high as 177.8 J/g and the phase change enthalpy is still 174.5 J/g after fifty cycles. After ten tensile recovery cycles, the elastic recovery rate of HEO/TPU fiber was only 71.3%. When the HEO in the fiber was liquid state, the elastic recovery rate of HEO/TPU fiber promoted to 91.6%. This elastic PCFs have excellent thermal cycle stability, elastic recovery, and temperature sensitivity. It has great application potential in the fields of flexible wearable devices, intelligent fabrics, and temperature sensors.
一种具有高负载率和高弹性的新型热塑性聚氨酯(TPU)光子晶体光纤通过湿法纺丝后的真空吸收简单制备,然后用水性聚氨酯(WPU)进行涂层。选择与TPU形成氢键倾向不同的十八烷(OCC)、十六醇(HEO)和硬脂酸(SA)作为相变材料,并分别系统研究了它们的热行为、热存储性能和弹性。TPU长丝从皮层到芯部的分级孔结构减弱了非冻结层和氢键对相变材料结晶行为的影响。与OCC和SA相比,所得的HEO/TPU纤维具有最高的208.1 J/g的焓。此外,当相变焓高达177.8 J/g时,HEO/TPU纤维的断裂伸长率为354.8%,五十次循环后相变焓仍为174.5 J/g。经过十次拉伸回复循环后,HEO/TPU纤维的弹性回复率仅为71.3%。当纤维中的HEO为液态时,HEO/TPU纤维的弹性回复率提高到91.6%。这种弹性光子晶体光纤具有优异的热循环稳定性、弹性回复和温度敏感性。它在柔性可穿戴设备、智能织物和温度传感器领域具有巨大的应用潜力。