首页> 外文会议>International Mechanical Engineering Congress and Exposition >ENERGY ABSORPTION CHARACTERISTICS OF AXIALLY COMPRESSED DOUBLE WALL FOAM FILLED AND EMPTY SQUARE TUBES
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ENERGY ABSORPTION CHARACTERISTICS OF AXIALLY COMPRESSED DOUBLE WALL FOAM FILLED AND EMPTY SQUARE TUBES

机译:轴向压缩双墙泡沫填充和空平方管的能量吸收特性

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Occupant safety has become increasingly important in the recent times. At the instance of an accident or collision, structures with high energy absorption can provide better occupant safety. Thin-walled tubes are widely used as energy absorbers in automobiles and other structures. In the present work, crashworthiness characteristics of double wall empty and double wall foam filled tubes are investigated. Thin wall extruded aluminum square tubes are used in this study. Polymer foam of three different densities, viz., 40 kg/m~3 , 80 kg/m~3 , 140 kg/m~3 was used as filler material between the two tubes to fabricate a double wall foam filled tube. Both parallel and diamond configurations were considered for double walled empty and foam filled configurations.. All the specimens were compressed at a displacement rate of 100 mm/min. Crushing of different configurations was numerically analyzed using nonlinear finite element tool LS-Dyna®. In double wall empty configuration, diamond arrangement absorbed more energy compared to parallel due to the interaction between inner and outer tubes. Results indicate that energy absorption increases with the filling of foam. Compared to double wall tubes, the maximum increase in energy absorption of ~ 50% is observed in foam filled tubes. Using Computed Tomography (CT) scan of specimens, it is observed that foam filling alters the crushing behavior of the inner and outer tubes.
机译:乘客安全在近期越来越重要。在事故或碰撞的情况下,具有高能量吸收的结构可以提供更好的乘员安全性。薄壁管广泛用作汽车和其他结构中的能量吸收器。在本作的工作中,研究了双壁空和双壁泡沫填充管的耐火性特性。本研究使用薄壁挤出铝方向管。三种不同密度的聚合物泡沫,即,40kg / m〜3,80kg / m〜3,140kg / m〜3用作两管之间的填充材料,以制造双壁泡沫填充管。被认为是双壁空和泡沫填充配置的平行和金刚石配置。所有样本都以100mm / min的位移率压缩。使用非线性有限元工具LS-DYNA®进行数值分析不同配置的粉碎。在双壁空配置中,由于内部和外管之间的相互作用,金刚石布置与平行相比吸收更多的能量。结果表明,能量吸收随泡沫的填充而增加。与双壁管相比,在泡沫填充管中观察到〜50%的能量吸收的最大增加。使用计算的断层扫描(CT)扫描样品,观察到泡沫填充改变内管和外管的破碎行为。

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