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Energy absorption analysis of a novel foam-filled corrugated composite tube under axial and oblique loadings

机译:新型泡沫填充波纹复合管在轴向和斜向载荷下的能量吸收分析

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Composite thin-walled structures are of much interest in diffemet applications as well as energy absorption devices for their great crashworthiness and light weight. In this paper, a new corrugated composite cylindrical tube has been introduced in order to improve crashworthiness along with a stable crushing. In cylindrical composite tubes, the effects of corrugations regarding charactristics of energy absorption have underwent quasi static axial and oblique loading investigations. For this reason, composite cylindrical tubes with different corrugation geometries were analyzed using finite element explicit code and the effects of corrugations on crush force effiency and specific energy absorption were comperhensively studied. The finite element model has been validated by experimental quasi-static compression tests. An efficient analytical solution for SEA during axial loading has been also derived and compared with FEM solution. Furthermore, a comparison of empty and foam filled corrugated composite tubes has been done. Based on the obtained results, generating corrugated surfaces on tubes improved the crush force efficiency significantly in both axial and oblique crushings. Performing a parametric study on geometrical corrugation parameters of tubes has been indicated that the energy absorption of these structures depends strongly on the corrugation parameters. Furthermore the absorbed energy has been increased by using foams in both axial and oblique crushing. SEA increases by increasing the foam density while the CFE decreases.
机译:复合薄壁结构因其出色的耐撞性和轻质性而在不同的应用以及能量吸收装置中备受关注。在本文中,为了改善耐撞性和稳定的破碎性,引入了一种新型的波纹复合圆柱管。在圆柱形复合管中,波纹对能量吸收特性的影响已经进行了准静态轴向和斜向载荷研究。因此,使用有限元显式代码分析了具有不同波纹几何形状的复合圆柱管,并综合研究了波纹对破碎力效率和比能量吸收的影响。有限元模型已经通过实验性准静态压缩测试进行了验证。还推导了轴向载荷期间SEA的有效分析解决方案,并将其与FEM解决方案进行了比较。此外,已经比较了空的和泡沫填充的波纹复合管。根据获得的结果,在轴向和斜向破碎中,在管子上产生波纹表面可显着提高破碎力效率。对管的几何波纹参数进行参数研究表明,这些结构的能量吸收在很大程度上取决于波纹参数。此外,通过在轴向和斜向破碎中使用泡沫增加了吸收的能量。 SEA通过增加泡沫密度而增加,而CFE则减少。

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