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High Strength Polyethylene Fibers From High Density Polyethylene/Organoclay Composites

机译:高密度聚乙烯/有机粘土复合材料制成的高强度聚乙烯纤维

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摘要

High strength fibers were prepared from high density polyethylene(HDPE)/organically modified montmoril-lonite(OMMT)composites.X-ray diffraction study revealed that the composites were of conventional or phase-separated type.As-spun composite fibers were found to have higher drawability than as-spun HDPE fiber.As a result of an increased drawability,fibers with much higher mechanical properties were obtained.The highest modulus and tensile strength obtained in the present study were 38 GPa and 1.7 GPa,respectively.Study of internal morphology sug gests that the role of OMMT is to suppress a defect formation and allows the fiber to be drawn to higher draw ratio.Analysis of the mechanical properties of the fibers using a Griffith type relationship suggested that the fibers have much smaller defects and the pre dicted attainable strength for the fiber is much higher than that previously predicted for melt-spun and hot drawn fiber.
机译:用高密度聚乙烯(HDPE)/有机改性蒙脱土-蒙脱石(OMMT)复合材料制备高强度纤维,X射线衍射研究表明该复合材料为常规或相分离型复合材料。由于拉伸性的提高,因此获得了具有更高机械性能的纤维。本研究中获得的最高模量和拉伸强度分别为38 GPa和1.7 GPa。内部形态研究这表明OMMT的作用是抑制缺陷的形成并允许将纤维拉伸至更高的拉伸比。使用格里菲斯类型关系对纤维的机械性能进行分析表明,纤维的缺陷小得多,并且可以预测纤维可达到的强度远高于先前预测的熔纺和热拉伸纤维的强度。

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