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Numerical Investigation of the Behaviour of Thin-Walled Metal Tubes Under Axial Impact

机译:轴向冲击下薄壁金属管行为的数值研究

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Dynamic axial impact of metallic thin-walled tubes of square and circular hollow sections is performed and the impact responses of the lightweight thin tubes along with progressive deformations are simulated. Peak force, crushing modes and force dissipation ability of tubes are determined using a non-linear finite element tool Abaqus CAE. The effectiveness of Abaqus CAE as a tool to model thin tubes and to moderate experimental crash testing is presented. Study shows that concentrically arranged multiple tubes have higher energy absorption properties. Results reveal that for double tubes and steel-aluminium configuration highest energy absorption is recorded. Similarly, for three tubes and aluminium-steel-aluminium configuration highest energy absorption is recorded. Also simulations disclose that the inner tube influences the overall crush behaviour.
机译:进行正方形和圆形中空部分的金属薄壁管的动态轴向冲击,并模拟轻质薄管的冲击响应以及渐进变形。使用非线性有限元工具ABAQUS CAE确定管的峰值力,破碎模式和力耗散能力。提出了ABAQUS CAE作为模拟薄管和中等实验碰撞测试的工具的有效性。研究表明,同心排列的多个管具有更高的能量吸收性能。结果表明,对于双管和钢铝构型,记录了最高能量吸收。类似地,对于三个管和铝 - 钢 - 铝构型,记录了最高能量吸收。此外,模拟公开了内管影响整体挤压行为。

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