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首页> 外文期刊>Journal of Applied Polymer Science >High modulus polypropylene fibers. I. Mechanical properties
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High modulus polypropylene fibers. I. Mechanical properties

机译:高模量聚丙烯纤维。一,机械性能

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摘要

Extensive studies concerning the spinning and drawing of polypropylene resulted in a method for production of high modulus fibers under industrially feasible conditions. The fibers were produced in a conventional melt spinning and drawing process that was optimized in order to increase the elastic modulus of fibers. By such optimization of the process, a tensile strength of around 8 cN/dtex, an elastic modulus up to 14.7 GPa, and a dynamic modulus up to 19 GPa were attained. In this study the mechanical properties of polypropylene fibers were investigated, which were spun from fiber grade controlled rheology (CR) polymers and from the blends of a fiber grade CR polymer with a molding grade polymer in the composition range of 10-50 wt %. The addition of the molding grade polymer to the fiber grade CR polymer resulted in lower tensile strength and moduli, with one exception. By blending a CR polymer with 10% of the molding grade polymer, maximization of the elastic and dynamic modulus was achieved. The predicted modulus of a two-phase blend, calculated from several representative equations, was compared with the elastic modulus of drawn fibers, determined from the specific stress versus strain curve, and the dynamic modulus, obtained from the sound velocity measurements. The best fit was achieved with the Kleiner simplex equation. (c) 2005 Wiley Periodicals, Inc.
机译:关于聚丙烯的纺丝和拉伸的广泛研究导致了在工业上可行的条件下生产高模量纤维的方法。纤维以常规的熔融纺丝和拉伸工艺生产,该工艺经过优化以增加纤维的弹性模量。通过这种工艺的优化,可获得约8 cN / dtex的拉伸强度,高达14.7 GPa的弹性模量和高达19 GPa的动态模量。在这项研究中,研究了聚丙烯纤维的机械性能,这些聚丙烯纤维是由纤维级控制的流变(CR)聚合物以及纤维级CR聚合物与模塑级聚合物的共混物纺制成的,​​其组成范围为10-50 wt%。将模塑级聚合物添加到纤维级CR聚合物中会导致较低的拉伸强度和模量,只有一个例外。通过将CR聚合物与10%的模塑级聚合物共混,可以实现弹性模量和动态模量的最大化。将根据几个代表性方程式计算出的两相混合物的预测模量与根据比应力-应变曲线确定的拉伸纤维的弹性模量以及根据声速测量获得的动态模量进行比较。最佳拟合通过Kleiner单形方程式实现。 (c)2005年Wiley Periodicals,Inc.

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