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Effect of Heat Drawing Process on Mechanical Properties of Dry-Jet Wet Spun Fiber of Linear Low Density Polyethylene/Carbon Nanotube Composites

机译:热拉伸过程对线性低密度聚乙烯/碳纳米管复合材料干式湿纺纤维力学性能的影响

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摘要

Polyethylene is one of the most commonly used polymer materials. Even though linear low density polyethylene (LLDPE) has better mechanical properties than other kinds of polyethylene, it is not used as a textile material because of its plastic behavior that is easy to break at the die during melt spinning. In this study, LLDPE fibers were successfully produced with a new approach using a dry-jet wet spinning and a heat drawing process. The fibers were filled with carbon nanotubes (CNTs) to improve the strength and reduce plastic deformation. The crystallinity, degree of orientation, mechanical properties (strength to yield, strength to break, elongation at break, and initial modulus), electrical conductivity, and thermal properties of LLDPE fibers were studied. The results show that the addition of CNTs improved the tensile strength and the degree of crystallinity. The heat drawing process resulted in a significant increase in the tensile strength and the orientation of the CNTs and polymer chains. In addition, this study demonstrates that the heat drawing process effectively decreases the plastic deformation of LLDPE.
机译:聚乙烯是最常用的聚合物材料之一。尽管线性低密度聚乙烯(LLDPE)具有比其他种类的聚乙烯具有更好的机械性能,但由于其塑料行为,它不用作纺织材料,这在熔体纺丝期间易于在模具处易于断裂。在本研究中,使用干式湿纺丝和热拉伸工艺成功地用新方法成功生产了LLDPE纤维。纤维填充有碳纳米管(CNT)以改善强度并减少塑性变形。研究了结晶度,取向度,机械性能(强度为产率,断裂强度,突破,初始模量伸长),导电性和热性质的LLDPE纤维的热性质。结果表明,CNT的添加改善了拉伸强度和结晶度。热拉伸过程导致拉伸强度和CNT和聚合物链的取向显着增加。此外,本研究表明,热拉伸过程有效地降低了LLDPE的塑性变形。

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