Comparative Analysis of Energy Absorption Capacity of Single and Nested Metal Matrix Composite Tubes Under Quasi-Static Lateral and Axial Loading

S. Dehghanpour, K. H. Safari, F. Barati, Mohammadmahdi Attar
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Abstract

In this paper the behavior of nested tube systems under quasi-static compressive loading is investigated. Two nested tube systems with metal matrix composite  are subjected to compressive loads so that in the system A the exterior and interior tubes are under axial and lateral loads, respectively but in the system B the exterior and interior tubes are under lateral and axial loads, respectively. Furthermore, these systems behavior are studied numerically. The results show that energy absorption capacity for both of nested tube systems is greater than the sum of energy absorption capacities of two constitutive tubes when loaded individually. Also, it is shown that the absorbed energy for system A is greater than that of system B. In this research the effects of section geometry and the condition of loading (axial or lateral)of thin-walled tubes on energy absorption capacity and the value of the peak load are studied both experimentally and numerically.
单根与嵌套金属基复合材料管在准静态横向和轴向载荷下吸能能力的对比分析
本文研究了套管系统在准静态压缩载荷作用下的性能。两个金属基复合材料嵌套管系统承受压缩载荷,在系统A中,外管和内管分别承受轴向和侧向载荷,而在系统B中,外管和内管分别承受侧向和轴向载荷。此外,对这些系统的行为进行了数值研究。结果表明:在单独加载时,两套管体系的吸能能力均大于两根本构管的吸能能力之和;研究了薄壁管截面几何形状和加载条件(轴向或横向)对薄壁管吸能能力和峰值荷载值的影响,并进行了实验和数值模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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