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Effect of plastic deformation and boundary conditions combined with elastic wave propagation on the collapse site of a crash box

机译:塑性变形和边界条件与弹性波传播相结合对碰撞盒坍塌部位的影响

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Several papers have been published recently on the crashworthiness studies. The main task was to predict the energy absorption W_p and average collapse force F in time of sheet steel structures. The main objective of this contribution is to design a component that allows absorbing and dissipating a high energy W_p allowing improvements of the survivability of passengers in vehicles. However, the range of applications is larger since it includes all civil and military applications related to safety of components, or more generally of construction elements being loaded by impacts or explosions. In the present 3D case, the aim of this numerical study on dynamic loading in adiabatic conditions of deformation is to analyze the effect of elastic wave propagation combined with plastic behavior on the collapse site of a rectangular tubular structure made of steel sheet. To demonstrate the strong coupling between the effects of strain-rate sensitivity, accounted for in the constitutive relation that is used in numerical simulations, with the process of elastic wave reflection on the boundary conditions, a series of numerical simulation was performed. It is shown in this numerical study that the strain-rate sensitivity influences the position of the first collapse site. Moreover, the first collapse initiation of a structure defines the level of power absorption. Since the process of folding may be combined with bending of the structure (in particular when a local buckling appears close to the opposite side of impact), in this non-axial case the energy absorption W_p decreases and the effectiveness of the structure to the energy absorption is insufficient.
机译:最近发表了一些关于耐撞性研究的论文。主要任务是预测薄钢板结构的能量吸收W_p和平均坍塌力F。该贡献的主要目的是设计一种部件,该部件允许吸收和消散高能量W_p,从而提高车辆中乘客的生存能力。但是,应用范围更大,因为它包括所有与组件安全有关的民用和军事应用,或更普遍的是由于撞击或爆炸而加载的建筑元件的安全。在当前的3D情况下,此数值研究的绝热变形条件下的动态载荷的目的是分析弹性波传播与塑性行为相结合对钢板制成的矩形管状结构坍塌部位的影响。为了说明在数值模拟中使用的本构关系中应变率灵敏度的影响之间的强耦合,以及在边界条件下弹性波反射的过程,进行了一系列数值模拟。在此数值研究中表明,应变率敏感性会影响第一个坍塌部位的位置。而且,结构的第一次塌陷开始定义了功率吸收的水平。由于折叠的过程可能与结构的弯曲相结合(特别是当局部屈曲出现在靠近冲击的相对侧时),因此在这种非轴向的情况下,能量吸收W_p降低并且结构对能量的有效性吸收不足。

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