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The influences of fiber feature and polymer melt index on mechanical properties of sugarcane fiber/polymer composites

机译:纤维特性和聚合物熔体指数对甘蔗纤维/聚合物复合材料力学性能的影响

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The fiber characteristics (i.e., the fiber type, morphology, and dimension) and polymer melt flow index (MFI) significantly affected mechanical properties of sugarcane fiber/HDPE composites. The length and diameter of sugarcane fibers followed a lognormal distribution before and after compounding. The long fibers had a significant reduction in the dimension and aspect ratio during compounding. However, the short fibers had close values in these two properties before and after compounding. For the resultant sugarcane fiber/polymer composites, the HDPE resins with a low MFI value presented high tensile and impact strengths. Because of high sugar content, the pure rind fiber had a poor performance as filler in the HDPE resins with respect to the raw bagasse fiber and alkali-extracted bagasse fiber. On the other hand, the aspect ratio was proportional to the mechanical performance of the fibers in the HDPE resins. As a result, the fibers with a large aspect ratio and low sucrose content improved the strength properties of the resultant composites. (c) 2006 Wiley Periodicals, Inc.
机译:纤维特性(即纤维类型,形态和尺寸)和聚合物熔体流动指数(MFI)显着影响甘蔗纤维/ HDPE复合材料的机械性能。混合前后甘蔗纤维的长度和直径呈对数正态分布。在混合过程中,长纤维的尺寸和长宽比显着降低。然而,在复合前后,短纤维在这两个性能上具有接近的值。对于所得的甘蔗纤维/聚合物复合材料,低MFI值的HDPE树脂具有较高的拉伸强度和冲击强度。由于高糖含量,相对于原料蔗渣纤维和碱提取的蔗渣纤维,纯皮纤维在HDPE树脂中作为填料的性能较差。另一方面,长径比与HDPE树脂中纤维的机械性能成正比。结果,长径比大且蔗糖含量低的纤维改善了所得复合材料的强度性能。 (c)2006年Wiley Periodicals,Inc.

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