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Experimental and modelling study of low velocity impacts on composite sandwich structures for railway applications

机译:低速冲击对铁路复合夹层结构的试验与模型研究

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This paper aims to evaluate the damage resistance of sandwich composites used in train structures subjected to low velocity impacts. These impacts can be induced by railway ballast projection incidents underneath the floor of the train. A high-speed and low weight test bench to simulate such impacts was developed in our laboratory. After the impact, the damage mechanism evolution as a function of solicitation conditions was inspected. Three-dimensional finite element models were implemented to analyze the impact response. Results obtained from numerical simulations have confirmed experimental observations. Shock wave propagation localized around the impact point confined the damage. Visual inspection identified delamination in composite skin, fiber breakage, and indentation. Skin/core debonding, core crushing and shear failure were analyzed. Damages intensified proportionally with the number of successive projectile launches. Correlations between impact energy and damage mode are discussed. (C) 2016 Published by Elsevier Ltd.
机译:本文旨在评估在低速冲击下用于列车结构的夹芯复合材料的抗损伤性。这些冲击可能是由火车地板下方的铁路道ast投影事件引起的。在我们的实验室中,开发了模拟这种冲击的高速,低重量的试验台。撞击后,检查了破坏机理随诱导条件的变化。实施了三维有限元模型来分析冲击响应。从数值模拟获得的结果证实了实验观察。冲击波在冲击点附近的传播限制了损伤。目视检查确定复合材料表皮分层,纤维断裂和压痕。分析了皮/芯剥离,芯破碎和剪切破坏。伤害与连续发射的弹药数量成比例地增加。讨论了冲击能与损伤模式之间的关系。 (C)2016由Elsevier Ltd.出版

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