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Fracture Evaluation of the Falling Weight Impact Behaviour of a Basalt/Vinylester Composite Plate through a Multiphase Finite Element Model

机译:玄武岩/乙烯酯复合板通过多相有限元模型进行裂缝评价

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Several investigations regarding the mechanical behaviour of composites reinforced by natural fibers under impact have been realized recently, aiming at achieve a low-weight and resistant design. At the same time, progressively accurate results on numerical simulations have been reached powered by modern Finite Element Method (FEM) approaches for composites; however, demonstrating a faithful indentation pattern is still a challenge. The present work aims at building an impact numerical simulation that exhibits a fracture mechanism exactly like the one seen in experimental tests, also carried in this work, on a Basalt Reinforced Composite Polymer (BRFP) plate subjected to low-velocity falling weight impact (IFW). The FEM simulation describes a multiphase model considering each ply and their inter-layer interactions.
机译:最近已经实现了对由天然纤维增强的复合材料的机械行为的几种研究,旨在实现低重量和抗性设计。同时,已经通过现代有限元方法(FEM)复合材料来达到数值模拟的逐步准确的结果;然而,展示忠实的缩进模式仍然是一项挑战。本工作旨在建立一种影响数值模拟,其表现出与实验试验中所见的骨折机制,在这项工作中也携带,在受低速下降重量影响的玄武岩增强复合聚合物(BRFP)板上(IFW )。 PEM模拟描述了考虑每个层和层间相互作用的多相模型。

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