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首页> 外文期刊>International journal of crashworthiness >Optimization of single skin surfaces for head injury prevention - a comparison of optima calculated for global versus local injury thresholds
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Optimization of single skin surfaces for head injury prevention - a comparison of optima calculated for global versus local injury thresholds

机译:优化单层皮肤表面以预防头部受伤-比较全局和局部损伤阈值计算的最佳值

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This paper describes optimizations of material properties for a bonnet-like plate using finite element calculations and the Euro-NCAP pedestrian head impact test. Four different head models were used for the impact simulations, a Euro-NCAP dummy head, a Hybrid III dummy head and two biomechanical head models exhibiting different mechanical properties for the brain tissue. The objective function was to minimize the displacement of the bonnet plate while satisfying constraints on the head injury criterion (HIC), the resultant contact force and, for the human head models, the strain in the brain tissue. An investigation was also conducted of the kinematics of the head models during impact, evaluating the energy distribution and the apparent mass. The analysis gave at hand that optimization of the plate with respect to impact with the Euro-NCAP and Hybrid III head models reached substantially different results compared to impact with the biomechanical head models. For the latter case, the stiffness of the brain tissue influenced which constraints were active in the final solution. The investigation of the kinematics at impact showed that a substantial portion of energy was confined within the brain during impact for the biomechanical head models. The apparent mass at impact coincided with the actual mass for the rigid dummy heads while for the human head models it was roughly the mass of the skull only.
机译:本文介绍了使用有限元计算和Euro-NCAP行人头部冲击试验对发动机罩状板进行材料性能优化的方法。四种不同的头部模型用于冲击模拟,一个Euro-NCAP假人头部,一个Hybrid III假人头部和两个对大脑组织表现出不同机械性能的生物力学头部模型。目标功能是在满足对头部受伤标准(HIC),合力以及对于人头模型的脑组织应变的约束的同时,最大程度地减小发动机罩板的位移。还对冲击过程中头部模型的运动学进行了研究,评估了能量分布和表观质量。分析表明,与生物机械头模型相比,Euro-NCAP和Hybrid III头模型对板的冲击优化达到了截然不同的结果。对于后一种情况,脑组织的刚度会影响最终解决方案中活跃的约束条件。对撞击运动学的研究表明,对于生物力学头部模型,在撞击过程中,很大一部分能量被限制在大脑内。撞击时的表观质量与刚性假人头的实际质量相吻合,而对于人头模型,其大致仅是头骨的质量。

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