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Using Finite Element Approach for Crashworthiness Assessment of a Polymeric Auxetic Structure Subjected to the Axial Loading

机译:使用有限元方法对承受轴向载荷的聚合物辅助结构的耐撞性评估

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摘要

Polyurethane foams are one of the most common auxetic structures regarding energy absorption enhancement. This present study evaluates the result reliability of two different numerical approaches, the H-method and the P-method, to obtain the best convergence solution. A polymeric re-entrant cell is created with a beam element and the results of the two different methods are compared. Additionally, the numerical results compare well with the analytical solution. The results show that there is a good agreement between converged FE models and the analytical solution. Regarding the computational cost, the P-method is more efficient for simulating the re-entrant structure subjected to axial loading. During the second part of this study, the re-entrant cell is used for generating a polymeric auxetic cellular tube. The mesh convergence study is performed on the cellular structures using the H- and P- methods. The cellular tube is subjected to tensional and compressive loading, the module of elasticity and Poisson’s ration to calculate different aspect ratios. A nonlinear analysis is performed to compare the dynamic response of a cellular tube versus a solid tube. The crashworthiness indicators are addressed and the results are compared with equivalent solid tubes. The results show that the auxetic cellular tubes have better responses against compressive loading. The primary outcome of this research is to assess a reliable FE approach for re-entrant structures under axial loading.
机译:聚氨酯泡沫是关于能量吸收增强的最常见的发胀结构之一。本研究评估了两种不同数值方法(H方法和P方法)的结果可靠性,以获得最佳收敛解。用梁单元创建聚合物凹腔,并比较两种不同方法的结果。此外,数值结果与分析解决方案具有很好的对比。结果表明,收敛的有限元模型与解析解之间有很好的一致性。关于计算成本,P方法对于模拟承受轴向载荷的凹入结构更为有效。在这项研究的第二部分中,折返细胞用于产生聚合物的生长细胞管。网格收敛研究是使用H-和P-方法对细胞结构进行的。蜂窝管承受拉伸和压缩载荷,弹性模量和泊松比,以计算不同的纵横比。进行非线性分析以比较细胞管和固体管的动态响应。解决了耐撞性指标,并将结果与​​等效实心管进行了比较。结果表明,疏导细胞管对压缩载荷具有更好的响应。这项研究的主要成果是评估轴向载荷下凹入结构的可靠有限元方法。

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