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Experimental and Numerical Analysis of Composite Folded Sandwich Core Structures Under Compression

机译:复合材料夹层夹芯结构受压试验与数值分析

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摘要

The characterisation of the mechanical behaviour of folded core structures for advanced sandwich composites under flatwise compression load using a virtual testing approach is presented. In this context dynamic compression test simulations with the explicit solvers PAM-CRASH and LS-DYNA are compared to experimental data of two different folded core structures made of aramid paper and carbon fibre-reinforced plastic (CFRP). The focus of the investigations is the constitutive modelling of the cell wall material, the consideration of imperfections and the representation of cell wall buckling, folding or crushing phenomena. The consistency of the numerical results shows that this can be a promising and efficient approach for the determination of the effective mechanical properties and a cell geometry optimisation of folded core structures.
机译:提出了使用虚拟测试方法对扁平夹心复合材料的先进夹芯复合材料折叠芯结构的力学行为进行表征。在这种情况下,将具有显式求解器PAM-CRASH和LS-DYNA的动态压缩测试模拟与由芳纶纸和碳纤维增强塑料(CFRP)制成的两种不同折叠芯结构的实验数据进行了比较。研究的重点是细胞壁材料的本构模型,缺陷的考虑以及细胞壁屈曲,折叠或压碎现象的表示。数值结果的一致性表明,这对于确定有效的机械性能和折叠芯结构的单元几何优化是一种很有前途的有效方法。

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