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A numerical study on energy absorption capability of lateral corrugated composite tube under axial crushing

机译:轴压下横向波纹复合管能量吸收能力的数值研究

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In this study, a comprehensive numerical investigation is carried out to evaluate the crashworthy behavior and the energy absorbing capacity of lateral corrugated composite tubes under axial loading. In this regard, a new lateral corrugated circle tube with a sinusoidal cross-section is proposed. To investigate the process of energy absorption, material model 54 in non-linear FE software LS-DYNA is applied for modelling axial crushing behavior. In order to validate the numerical simulations, the crushing results of hollow circular tube with uniform diameter are compared with available experimental data and a good agreement is observed. Afterward, crashworthiness analysis of lateral corrugated composite tubes is conducted by controlling the shape of the cross-section through the amplitude and the number of corrugations. The energy-absorbed performances such as specific energy absorption, initial peak crashing force, and mean crashing force of tubes are analyzed and discussed. Numerical analysis reveals that the lateral corrugated composite tubes have significantly obvious effects on the structural crashworthiness compared with ordinary circular tube under axial loading. Also, the results indicate that the geometrical shape of corrugation plays an important role in increasing the efficiency, controllability and failure patterns of corrugated tubes.
机译:在该研究中,进行了综合的数值调查,以评估轴向载荷下横向瓦楞复合管的耐火性能和能量吸收能力。在这方面,提出了一种具有正弦横截面的新的横向波纹圆管。为了研究能量吸收过程,应用非线性Fe软件LS-DYNA中的材料模型54,用于建模轴向破碎行为。为了验证数值模拟,与可用的实验数据进行比较中空圆形管的破碎结果,并观察到良好的一致性。之后,通过控制通过幅度和波纹的数量来控制横向波纹复合管的耐抗性分析。分析并讨论了能量吸收的性能,例如特定的能量吸收,初始峰值碰撞力和平均碰撞力。数值分析显示,与轴向载荷下普通圆管相比,横向瓦楞复杂的复合管对结构牢固的影响显着显着。此外,结果表明,波纹的几何形状在增加瓦楞纸管的效率,可控性和故障模式方面发挥着重要作用。

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