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Mechanical Performance of Polymer-matrix Laminate Reinforced with 3D Fabric During Three-Point Impact Bending

机译:三点冲击弯曲过程中用3D织物增强的聚合物基层压板的力学性能

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The paper presents the analysis of course and the results of impact 3-point bending tests conducted with use of instrumented Charpy hammer (CEAST RESIL 50 hammer + MC101 registrator + CALKA J computer program) on GFRP laminate specimens cut of the panels manufactured by RTM method on base of classic plain-woven fabric preform and 3D fabric. The specimens of the 3D laminate were cut alternatively along (W direction) and transverse (P direction) to the translaminar interweave strands. It was found that maximum force obtained in the tests is comparable for both the classic and the 3D laminates. Deformability of the 3D (W) specimen is by about 20 % higher than those of the classic laminate, whereas it is higher by even 75 % for 3D (P). The trend of deformability observed for the tested laminates differs from known trends characteristic for static conditions what confirms different material response mechanisms at low and higher load rate. Failure energy in the classic and in the 3D (W) specimen is on comparable level. However, 3D (P) specimen showed slightly lower summary failure energy than the classic one and almost twice a high failure initiation energy (first effects of failure occur before maximum load is gained).
机译:本文介绍了使用仪器化的夏比锤(CEAST RESIL 50锤+ MC101 registrator + CALKA J计算机程序)对通过RTM方法制成的玻璃钢层压板样品进行切割的过程以及对三点弯曲测试的结果分析基于经典的平纹织物预成型坯和3D织物。沿着(W方向)和横向(P方向)交替切割3D层压板的样品,穿过层间交织线。发现在测试中获得的最大力对于经典层压板和3D层压板都是可比的。 3D(W)样品的可变形性比传统层压板高约20%,而3D(P)甚至高达75%。在测试的层压板中观察到的可变形性趋势与静态条件下的已知趋势特征不同,这证实了在低负载率和较高负载率下不同的材料响应机制。经典和3D(W)试样中的破坏能量处于可比水平。但是,3D(P)样品显示的摘要失效能量比经典的略低,几乎是失效引发能量的两倍(失效的第一效应发生在获得最大载荷之前)。

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