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Use of micro-tomography for validation of method to identify interfacial shear strength from tensile tests of short regenerated cellulose fibre composites

机译:使用微断层扫描验证方法以识别短再生纤维素纤维复合材料的拉伸试验识别界面剪切强度

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The interfacial shear strength of short regenerated cellulose fibre/polylactide composites was characterized by means of an industry-friendly adhesion test method. The interfacial shear strength was back-calculated from the experimental tensile stress-strain curves of composites by using a micro-mechanical model. The parameters characterizing the micro-structure of the composites, e.g. fibre length and orientation distributions, used as input in the model were obtained by micro-tomography. The investigation was carried out on composites with untreated and surface treated fibres with various fibre weight contents (5wt%, 10wt%, and 15wt% for untreated fibres, and 15wt% for treated fibres). The properties of fibres were measured by an automated single fibre tensile test method. Based on these results, the efficiency of the fibre treatment to improve fibre/matrix adhesion is evaluated, and the applicability of the method to measure the interfacial shear strength is discussed. The results are compared with data from previous work, and with other results from the literature.
机译:通过行业友好型粘合试验方法表征短再生纤维素纤维/聚丙烯酯复合材料的界面剪切强度。通过使用微机械模型,根据复合材料的实验拉伸应力 - 应变曲线来回计算界面剪切强度。表征复合材料微结构的参数,例如用作模型中的输入的光纤长度和方向分布是通过微型层面获得的。在具有未处理和表面处理的纤维的复合材料上进行研究,其具有各种纤维重量含量(5wt%,10wt%,15wt%的未处理纤维,以及15wt%的处理过的纤维)。通过自动单纤维拉伸试验方法测量纤维的性质。基于这些结果,评价了改善纤维/基质粘合性的纤维处理的效率,并讨论了测量界面剪切强度的方法的适用性。将结果与来自以前的工作的数据进行比较,以及文献中的其他结果。

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