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Crash optimization considering the head injury criterion

机译:考虑头部损伤标准的崩溃优化

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摘要

In the crashworthiness of the vehicle, the head injury criterion is the most significant factor in the injury rate. Crash optimization has been employed to enhance the head injury criterion value. Since the head injury criterion value is calculated from acceleration, a surrogate-model-based crash optimization method is generally used. However, when the number of design variables increases, the cost of analysis increases extremely. Conceptual design such as topology optimization is difficult to apply since it has many design variables. A crash optimization methodology that considers the head injury criterion value is proposed based on the equivalent static loads method. The proposed method calculates the head injury criterion value using the finite difference method, and the channel frequency classes filter during linear static-response structural optimization with the equivalent static loads. Two practical large-scale problems are solved to validate the proposed method. For the headform impact on the upper interior, size optimization is carried out to satisfy the constraint on the head injury criterion value while the mass is minimized. Topology optimization is performed in the case of the hood headform impact. The material distribution of the inner panel in the hood is determined to minimize the head injury criterion value.
机译:在车辆的崩溃中,头部损伤标准是损伤率最显着的因素。已经采用崩溃优化来增强头部损伤标准价值。由于头部损伤标准值是从加速计算的,因此通常使用基于代理模型的崩溃优化方法。然而,当设计变量的数量增加时,分析成本非常增加。概念设计如拓扑优化很难应用,因为它有许多设计变量。基于等效静载方法提出了考虑头部损伤标准值的崩溃优化方法。所提出的方法使用有限差分方法计算头部损伤标准值,并且在线静态响应结构优化期间频道频率滤波器滤波器与等效静电负载。解决了两个实际的大规模问题以验证提出的方法。为了对上内部的头部冲击,执行尺寸优化以满足头部损伤标准值的约束,而质量最小化。在发动机罩的情况下执行拓扑优化。确定罩中的内板的材料分布以最小化头部损伤标准值。

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