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Repeated Air Blast Response of Sisal Fibers Reinforced Bio-Composites

机译:剑麻纤维的重复喷气响应增强生物复合材料

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Bio-based composites have gained higher importance due to their low-cost, recycling and moderate mechanical properties. Engineering structures under blast, crush and other different pressure loadings can be manufactured using materials such as sisal based bio composites. In this study, sisal fiber reinforced plastics have numerically been investigated under singular and repeated blast pressure effects. To make a prediction for experimental procedures in next phase, LS-DYNA modeling capabilities has been investigated. For this purpose, different modeling techniques such as Lagrangian and coupled methods are used. Midpoint deflection and internal energy history curves have been plotted for glass fiber reinforced and sisal fiber reinforced plastics for comparison.
机译:由于其低成本,回收和适度的机械性能,生物基复合材料具有更高的重要性。可以使用诸如Sisal基生物复合材料如Sisal的Bio复合材料如诸如Sisal的生物复合材料制造的工程结构。在本研究中,Xisal纤维增强塑料在单数和反复的爆炸压力效应下进行了数值研究。为了在下一阶段进行实验过程预测,已经研究了LS-DYNA建模能力。为此目的,使用不同的建模技术,例如拉格朗日和耦合方法。绘制了中点偏转和内部能量历史曲线,用于玻璃纤维增​​强和剑麻纤维增强塑料进行比较。

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