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Development and application of micromechanical techniques for characterising interfacial shear strength in fibre-thermoplastic composites

机译:表征纤维-热塑性复合材料界面剪切强度的微机械技术的开发与应用

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The development of single fibre pull-out and microbond tests for characterising interfacial strength in thermoplastic composites is reviewed in detail. Manufacture of an experimental jig and sample preparation regimes for both tests are described. The challenges addressed in the sample preparation include the measurement of embedded fibre length for pull-out samples and the low yield rate of axisymmetric resin droplets obtained during sample preparation under nitrogen. The applications of these laboratory developed techniques are demonstrated by characterisation of the interfacial shear strength (IFSS) of glass fibre-polypropylene (GF-PP) and natural fibre-polylactic acid (NF-PLA). The comparison of the IFSS between neat and modified GF-PP showed that both methods were sensitive to the interfacial performance change despite the poor agreement between them for the absolute IFSS values from the same composite. The effect of the material modification was also reflected in load-displacement curves with different behaviour of the frictional motion after complete debonding. When a high level of fibre-matrix adhesion was realised in the composites with weak fibres, the microbond test showed higher feasibility for characterising the IFSS. This was clearly shown in its application to NF-PLA.
机译:详细介绍了用于表征热塑性复合材料界面强度的单纤维拉出和微粘结试验的进展。描述了两种测试的实验夹具的制造和样品制备方案。样品制备中面临的挑战包括:对抽取样品的包埋纤维长度进行测量,以及在氮气下进行样品制备过程中获得的轴对称树脂液滴的低收率。这些实验室开发的技术的应用通过玻璃纤维聚丙烯(GF-PP)和天然纤维聚乳酸(NF-PLA)的界面剪切强度(IFSS)的表征得到证明。对比纯净和改良的GF-PP的IFSS,表明这两种方法都对界面性能变化敏感,尽管它们对于同一复合材料的绝对IFSS值之间的一致性差。材料改性的效果也反映在完全脱粘后具有不同摩擦运动行为的载荷-位移曲线中。当在具有弱纤维的复合材料中实现高水平的纤维-基体粘合力时,微粘合试验显示出表征IFSS的更高可行性。这在其应用于NF-PLA的过程中已清楚地表明。

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