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首页> 外文期刊>Mechanics of composite materials >Physical and mechanical properties of composites based on a linear low-density polyethylene (LLDPE) and natural fiber waste
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Physical and mechanical properties of composites based on a linear low-density polyethylene (LLDPE) and natural fiber waste

机译:基于线性低密度聚乙烯(LLDPE)和天然纤维废料的复合材料的物理和机械性能

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摘要

The influence of the content and fiber length of textile waste (cotton, flax, and hemp) on the deformation and strength properties (in tension and bending) of a linear low-density polyethylene (LLDPE) was investigated. It was found that the tensile strength increased for all composites containing hemp fibers of up to 30 wt.%. The elongation at break rapidly decreased when the filler content was raised to 10 wt.%, but thereafter changed insignificantly. The flexural strength and modulus increased considerably with filler content in the composites. On the contrary, their deformability, as expected, decreased. The influence of hemp fibers on the physicalmechanical properties of the LLDPE was somewhat more pronounced. The optimum content of fibers in the composites (30 wt.%) was significantly smaller than that usually obtained (40-50 wt.% natural fibers) for other polyolefin composites, for example, with low-density polyethylene and polypropylene matrices. The highest values of strength parameters, both in tension and bending, were reached for systems with a fiber length of up to 1 mm. The melt flow index decreased considerably with increasing fiber content in the LLDPE matrix (from 4.4 dg/min for LLDPE to 0.05-0.14 dg/min for systems containing 30 wt.% fibers). Nevertheless, processing of the composites was possible by traditional methods, for example, extrusion.
机译:研究了纺织品废料(棉,亚麻和大麻)的含量和纤维长度对线性低密度聚乙烯(LLDPE)的变形和强度特性(拉伸和弯曲)的影响。已经发现,对于所有包含高达30wt。%的大麻纤维的复合材料,拉伸强度都增加了。当填料含量增加到10wt。%时,断裂伸长率迅速降低,但是此后变化不大。弯曲强度和模量随复合材料中填料含量的增加而大大增加。相反,它们的变形性如预期的那样降低。大麻纤维对LLDPE的物理机械性能的影响有些明显。复合材料中纤维的最佳含量(30 wt。%)明显小于其他聚烯烃复合材料(例如低密度聚乙烯和聚丙烯基质)通常获得的纤维含量(40-50 wt。%天然纤维)。对于纤维长度最大为1 mm的系统,在拉伸和弯曲方面都达到了最高的强度参数值。熔体流动指数随着LLDPE基体中纤维含量的增加而显着降低(从LLDPE的4.4 dg / min降低到30%纤维的系统的0.05-0.14 dg / min)。但是,可以通过传统方法(例如挤出)对复合材料进行加工。

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