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抗静电PP复丝纺丝工艺与生产初探 被引量:3
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作者 周智彦 赵式英 高辉 《合成纤维工业》 CAS CSCD 1991年第6期5-9,共5页
从共混体系的流变性着手,对在PP中添加抗静电剂PR-86制备抗静电复丝的纺丝工艺与生产进行了初步探讨。PR-86可以以2%—4%(质量)添加到多种PP树脂中进行纺丝生产,其纺丝温度比纯PP低5—10℃,且树脂的MI愈低,纺丝温度下降幅度愈大。所得... 从共混体系的流变性着手,对在PP中添加抗静电剂PR-86制备抗静电复丝的纺丝工艺与生产进行了初步探讨。PR-86可以以2%—4%(质量)添加到多种PP树脂中进行纺丝生产,其纺丝温度比纯PP低5—10℃,且树脂的MI愈低,纺丝温度下降幅度愈大。所得抗静电复丝形态结构呈海岛形,比电阻下降3个数量级,强度达35cN/tex以上,力学性能略有提高或保持不变。 展开更多
关键词 聚丙烯纤维 抗静电 复丝纺丝 工艺
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纤维加工、非织造设备的技术进步
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作者 Geoff Fisher 《纺织导报》 CAS 2003年第6期32-38,共7页
关键词 纤维加工机械 非织造设备 技术进步 Uniplex纺纱工艺 复丝纺丝 Twinstar系统 精密交叉卷绕机
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Numerical Study on Forming Process of the PET/PA6 Component Melt in Micro Hole in Composite Spinning 被引量:1
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《Journal of Donghua University(English Edition)》 EI CAS 2013年第6期510-513,共4页
The forming mechanism of the multi-component polymer melt is always the difficult problem in the study on the composite fiber, due to the difference of the material properties. The study simulated the flow of PET/PA6 ... The forming mechanism of the multi-component polymer melt is always the difficult problem in the study on the composite fiber, due to the difference of the material properties. The study simulated the flow of PET/PA6 composite melt on the influence law for the velocity distribution and the micro hole's structure on the influence law for extrusion swelling based on the theory of the rheology and the spinning process and the structure of the spinning components by Polyflow. In addition by comparison with the previous experiments about extrusion swelling, the results show that the value of the swell ratio decreases rapidly at low values of length/ diameter and then levels off as length/diameter is increased further, whereas increases with the die exit angle increasing. The veincity distribution of the composite melt and the micro hole's structure have a significant influence on the extrusion swelling, which has very good guidance function for studying the forming mechanism of the composite melt and preparation of the high performance fiber. 展开更多
关键词 multi-component melt velocity equation numerical simulation PolwTow
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