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Processing and Mechanical Properties of Thermoplastic Composites Based on Cellulose Fibers and Ethylene-Acrylic Acid Copolymer

机译:纤维素纤维和乙烯-丙烯酸共聚物的热塑性复合材料的加工与力学性能

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摘要

The melt processing arid the tensile mechanical properties of composites consisting of 30 wt% softwood kraft pulp cellulose fibers and ethylene-acrylic acid copolymer (EAA) with 7% acrylic acid content were studied. The compounding techniques used were extrusion mixing performed with a single screw extruder and elongation dispersive mixing performed with the injection-molding machine. All blends were injection-molded in a final step. Fiber length, fiber content, and mechanical properties were measured and the number and the size of the fiber aggregates were determined by microscopy analysis. It was concluded that two passes of elongation dispersive mixing had a beneficial effect on the mechanical properties, which could be related to the fewer and smaller amounts.of aggregates. The different types of processing performed had a small or insignificant effect on the fiber length since the fiber lengths measured were within the same range as that of the starting material.
机译:研究了由30 wt%的针叶木牛皮纸浆纤维素纤维和7%丙烯酸含量的乙烯-丙烯酸共聚物(EAA)组成的复合材料的熔融加工和拉伸机械性能。所用的混合技术是用单螺杆挤出机进行挤出混合和用注塑机进行伸长分散混合。在最后一步中将所有共混物注塑成型。测量纤维长度,纤维含量和机械性能,并通过显微镜分析确定纤维聚集体的数量和尺寸。得出的结论是,两次拉伸分散混合对机械性能有有利影响,这可能与骨料的数量越来越少有关。进行的不同类型的处理对纤维长度的影响很小或无关紧要,因为测得的纤维长度在与起始材料相同的范围内。

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