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Effect of impactor shapes on the low velocity impact damage of sandwich composite plate: Experimental study and modelling

机译:冲击器形状对夹芯复合板低速冲击损伤的影响:实验研究与建模

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An experimental and numerical analysis of the influence of impactor shapes on the low velocity impact performance of aluminium sandwich composite plates has been carried out. The aluminium composite panels were manufactured by using two aluminium sheets and a low density polyethylene core under heat and pressure, which shows the outstanding properties of low weight, good rigidity and impact resistance. Experimental tests were performed using drop weight test machine, samples were impacted using steel conical, ogival, hemispherical and flat impactors, all 12 mm in diameter, for different initial impact energies of 29.43 J and 44.15 J and specimen thickness of 4 mm containing three different parts (0.5 + 3.0 + 0.5). A three dimensional non-linear finite element model is developed for simulating the impact behaviour of sandwich composite plate and the ABAQUS/Explicit commercial program was used. The face sheet material aluminium alloy 3003-O of the plate was modelled as isotropic with elastic plastic characteristics. The description of the material characteristic of the attenuator was made by means of the Johnson Cook elastic plastic law. The material constitutive law of the Al 3003 plates has been implemented in a user-defined subroutine UMAT. The foam core was modelled as a crushable foam material. The finite element results showed a good correlation to the experimental data in terms of contact-force histories, energy histories, absorbed energy, and failure of the sandwich composite was observed between the experimental data. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了冲击器形状对铝夹芯复合板低速冲击性能影响的实验和数值分析。铝复合板是通过在加热和加压下使用两个铝板和一个低密度聚乙烯芯材制成的,具有低重量,良好的刚度和抗冲击性等优异性能。使用落锤试验机进行实验测试,使用直径均为12 mm的圆锥形,球形,半球形和扁平冲击器冲击样品,初始冲击能量分别为29.43 J和44.15 J,样品厚度为4 mm,包含三种不同的冲击力零件(0.5 + 3.0 + 0.5)。建立了三维非线性有限元模型来模拟夹芯复合板的冲击行为,并使用了ABAQUS / Explicit商业程序。将板的面板材料铝合金3003-O建模为具有弹性塑性特征的各向同性模型。衰减器的材料特性描述是通过Johnson Cook弹性塑性定律进行的。 Al 3003板的材料本构定律已在用户定义的子程序UMAT中实现。将泡沫芯建模为可压碎的泡沫材料。有限元结果表明在接触力历史,能量历史,吸收能以及实验数据之间夹层复合材料的破坏方面,与实验数据具有良好的相关性。 (C)2015 Elsevier Ltd.保留所有权利。

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