纺织学报 ›› 2023, Vol. 44 ›› Issue (01): 71-78.doi: 10.13475/j.fzxb.20210908308
代璐1,2, 胡泽旭2,3, 王研1,2, 周哲1,2(), 张帆4, 朱美芳1,2
DAI Lu1,2, HU Zexu2,3, WANG Yan1,2, ZHOU Zhe1,2(), ZHANG Fan4, ZHU Meifang1,2
摘要:
为解决聚苯硫醚(PPS)纤维在燃烧过程中热释放和烟释放较高的问题,实现其在热防护服领域的应用,将石墨烯(G)添加至PPS基体中,通过共混造粒与熔融纺丝工艺制备PPS/G纳米复合纤维,对复合纤维的聚集态结构及力学性能进行测试,并研究其燃烧和炭化行为。结果表明:石墨烯可显著提高聚苯硫醚纳米复合纤维的燃烧残炭量及炭层结构的致密性,当石墨烯质量分数达0.3%时,PPS/G纳米复合纤维织物的热释放速率峰值从67 kW/m2降低至28 kW/m2;当石墨烯质量分数为0.7%时,总热释放和总产烟量均下降最多,分别降低62%和66%,燃烧性能得到显著改善;且所得复合纤维能够保持更高的断裂强度和断裂伸长率,有望应用于阻燃防护织物领域。
中图分类号:
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