纺织学报 ›› 2024, Vol. 45 ›› Issue (09): 42-49.doi: 10.13475/j.fzxb.20230605301
邓钢1,2, 张涛1, 吴超平1(), 王军1, 张磊1,2
DENG Gang1,2, ZHANG Tao1, WU Chaoping1(), WANG Jun1, ZHANG Lei1,2
摘要:
为研究异形二醋酯纤维的干法纺丝成形过程,基于三角形喷丝孔推导了用于描述截面异形度变化的计算方程,并耦合到典型一维干法纺丝模型中,构建出可高效计算的混合动力学模型,模拟计算了异形二醋酯纤维的干法纺丝成形过程。采用工业化纺丝实验装置制备纤维样品,分析了截面形态数据并与模拟计算结果进行对比。结果表明:二醋酯纤维的纺丝过程中溶剂蒸发和温度变化剧烈,恒温蒸发区不明显,在纺程1 cm左右达到卷绕速度,并在喷丝口下方短距离内迅速完成固化,截面积基本恒定;二醋酯纤维异形度受溶剂蒸发和表面张力2个因素共同控制,其中溶剂蒸发是主要控制因素;纤维异形度的实验值为74.4%,模拟计算值为72.8%,二者基本相近,同时纤维截面积实验值为642.0 μm2,模拟计算值为614.8 μm2,差异率为4.2%,模型对纤维截面变化趋势有较好的预测性;纤维样品截面呈规则的“Y”形,异形度具有较高的一致性,变异系数为1.12%;纤维样品的截面积变异系数为4.17%,单丝间的截面积差异相对较为明显。
中图分类号:
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