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Interfacial evaluation of single Ramie and Kenaf fiber/epoxy resin composites using micromechanical test and nondestructive acoustic emission

机译:使用微机械测试和无损声发射对Ram麻和Kenaf纤维/环氧树脂复合材料进行界面评估

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摘要

Interfacial shear strength (IFSS) of environmentally friendly natural fiber reinforced polymer composites plays a very important role in controlling their overall mechanical performance. The IFSS of various Ramie and Kenaf fiber/epoxy composites was evaluated using the combination of micromechanical test and nondestructive acoustic emission (AE) to find the optimal conditions for desirable final performance. Dynamic contact angle was measured for Ramie and Kenaf fibers and correlated the wettability properties with interfacial adhesion. Mechanical properties of Ramie and Kenaf fibers were investigated using single-fiber tensile test and analyzed statistically by both unimodal and bimodal Weibull distributions. The effect of clamping on the real elongation for both Ramie and Kenaf fibers was evaluated as well. Two different microfailure modes, axial dedonding and fibril fracture, coming from fiber bundles and single fiber composites (SFC) were observed under tension and compression. They were evaluated optically and also determined by AE and their FFT analysis nondestructively.
机译:环保的天然纤维增强聚合物复合材料的界面剪切强度(IFSS)在控制其整体机械性能方面起着非常重要的作用。使用微机械测试和无损声发射(AE)的组合对各种Ram麻纤维和Kenaf纤维/环氧树脂复合材料的IFSS进行了评估,以找到获得理想最终性能的最佳条件。测量了ie麻和红麻纤维的动态接触角,并将其润湿性与界面粘合性关联起来。使用单纤维拉伸试验研究了ie麻和红麻纤维的力学性能,并通过单峰和双峰Weibull分布进行了统计分析。还评估了夹持对Ken麻和红麻纤维的实际伸长率的影响。在拉伸和压缩下,观察到两种不同的微失效模式,分别来自纤维束和单纤维复合材料(SFC)的轴向断裂和原纤维断裂。对它们进行了光学评估,并通过AE及其FFT分析进行了无损检测。

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