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Evaluation of the Hybrid III dummy interactions with air bag in frontal crash by finite element simulation

机译:用有限元模拟评估与额落碰撞中的气囊中的混合III钝化相互作用

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A deformable finite element dummy model was used to simulate air bag interaction with in-position passenger-side occupants in frontal vehicle crash. This dummy model closely simulates the Hybrid III hardware with respect to geometry, mass, and material properties. Test data was used to evaluate the validity of the model. The calculated femur loads, chest acceleration and head acceleration were in good agreement with the test data. A semi-rigid dummy model (with rigid chest) was derived from the deformable dummy to improve turnaround time. Simulation results using the semi-rigid dummy model were also in reasonable agreement with the test data. For comparison purpose, simulations were also performed using PAMCVS, a hybrid code which couples the finite element code PAMCRASH with the rigid body occupant code. The deformable dummy model predicted better chest acceleration than the other two models. However, the semi-rigid dummy model and the PAMCVS model showed a dramatic reduction in CPU time. Also the results indicated that skin compliance has a softening effect on the impact response of the dummy. The dummy chest deformation was found to have an effect on the overall dummy response.
机译:可变形的有限元伪模型用于模拟与前部车辆碰撞中的位置乘客侧乘员的气囊相互作用。该虚拟模型相对于几何,质量和材料特性密切地模拟了混合III硬件。测试数据用于评估模型的有效性。计算出的股骨载荷,胸部加速度和头部加速度与测试数据吻合良好。半刚性虚拟型号(带刚性胸部)源自可变形的虚拟,以改善周转时间。使用半刚性虚拟模型的仿真结果也与测试数据合理一致。为了比较目的,也使用PAMCV来执行模拟,该混合码与刚体乘员代码耦合的有限元代码PAMCRASH。可变形的虚拟模型预测比其他两个模型更好的胸部加速度。然而,半刚性虚拟模型和PAMCVS模型显示CPU时间的显着降低。结果表明,皮肤顺应性对假人的影响响应具有软化效果。发现假胸部变形对整体伪应的反应产生了影响。

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