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Study of the off-axis properties of composites reinforced with ultra high modulus polyethylene fibres

机译:超高模量聚乙烯纤维增强复合材料的离轴性能研究

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摘要

Treated ultra-high-modulus polyethylene (UHMPE) fibres were used as reinforcement for epoxy resin and the obtained composites were evaluated. Corona and chromate surface-treated fibres, as well as calendered fibres were tested in terms of scanning electron microscopy (SEM), tensile and pull-out testing. Mechanical tests have also been performed with unidirectional specimens reinforced with the above fibres, focusing on those properties that are dependent on the off-axis properties of the composite, such as flexural and interlaminar shear strength (ILSS). Dynamic mechanical analysis (DMA) tests were also run. The results showed that corona and chromate treated fibres give the highest adhesive bonding, whereas their tensile strength is reduced. This is further observed with the flexural tests where maximum strength corresponds to these two types of fibres for various filler volume fractions. Finally, the data derived from ILLS and DMA suggest a slight advantage for the corona treated fibres.
机译:将处理过的超高模量聚乙烯(UHMPE)纤维用作环氧树脂的增强材料,并对获得的复合材料进行评估。对电晕和铬酸盐表面处理过的纤维以及压延纤维进行了扫描电子显微镜(SEM),拉伸和拉拔测试。还对由上述纤维增强的单向试样进行了机械测试,重点研究了取决于复合材料离轴性能的那些性能,例如弯曲和层间剪切强度(ILSS)。还进行了动态力学分析(DMA)测试。结果表明,经电晕处理和铬酸盐处理的纤维具有最高的粘合力,而其抗张强度却降低了。这可以通过弯曲试验进一步观察到,其中最大强度对应于这两种类型的纤维的各种填料体积分数。最后,从ILLS和DMA得出的数据表明,经电晕处理的纤维略有优势。

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