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Manufacture of Flax Reinforced PP Laminates and Research on the Tensile Properties

机译:亚麻增强PP层压板的制造及其拉伸性能的研究

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Flax fiber was used to reinforce Polypropylene (PP) owing to its lower impact on environment and suitable mechanical behaviors. To overcome the difficulty of penetrating fibers due to the high viscosity of thermo-plastic resin, PP filaments wrapping around the linen yam produced commingled yams, which were woven into fabrics as preforms to make laminates by optimum hot-pressing technology. The effects of fiber volume fraction, fabric density and structure on tensile properties of composites were researched through analyzing the tensile test results and the scanning electronic microscope (SEM) micrographs of fracture surface. Concinsious are drawn that the properties of laminates with fiber volume fraction of 0.50 are better than those with the other two fractions. For plain structure, the tensile properties in warp direction decrease according to the increase of weft density while in weft direction increase. For different fabric structures, properties of laminates with structures of plain 3, twill 2/2 and twill 3/1 increase gradually. And properties in weft direction are prior to those in warp direction for each laminate.
机译:亚麻纤维由于对环境的影响小和合适的机械性能而被用于增强聚丙烯(PP)。为了克服由于热塑性树脂的高粘度而导致的纤维渗透的困难,缠在亚麻纱上的PP长丝产生了混合纱,这些纱被编织成织物作为预成型坯,从而通过最佳的热压技术制成层压板。通过分析拉伸试验结果和断裂表面的扫描电子显微镜照片,研究了纤维体积分数,织物密度和结构对复合材料拉伸性能的影响。得出结论,纤维体积分数为0.50的层压板的性能要好于其他两种分数的层压板。对于平整结构,经纱方向的拉伸性能会随着纬纱密度的增加而降低,而纬纱方向的拉伸性能则会增加。对于不同的织物结构,具有平纹3,斜纹2/2和斜纹3/1的结构的层压制品的性能逐渐增加。对于每个层压板,纬向的性能都比经向的性能高。

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