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A material and gauge thickness sensitivity analysis on the NVH and crashworthiness of automotive instrument panel support

机译:关于汽车仪表板支撑件的NVH和耐撞性的材料和厚度厚度灵敏度分析

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This paper provides a finite element analysis of the effects of using alternative materials and gauge thickness on the weight and structural performance of the VN127 instrument panel support. Two types of analyses were performed, NVH and crashworthiness. The NVH analysis was used to determine the structure's natural frequencies, whereas the crashworthiness analysis was used to examine the structure's crash behavior under two different impact conditions. The materials used in this study included mild steel, aluminum and magnesium alloys. The thickness of the structure was varied from 0% to 40%, in increments of 10%. The results of different models were compared with the baseline model, i.e., the mild steel model with nominal thickness. It was found that by replacing mild steel with aluminum alloys, and increasing the gauge thickness of the structure by 40%, the NVH and crashworthiness performance of the structure was equivalent to the baseline model.
机译:本文对使用替代材料和标称厚度对VN127仪表板支架的重量和结构性能的影响进行了有限元分析。进行了两种类型的分析:NVH和耐撞性。 NVH分析用于确定结构的固有频率,而耐撞性分析用于检查结构在两种不同冲击条件下的碰撞行为。本研究中使用的材料包括低碳钢,铝和镁合金。结构的厚度在0%到40%之间变化,增量为10%。将不同模型的结果与基准模型(即标称厚度的低碳钢模型)进行比较。结果发现,通过用铝合金替代低碳钢,并将结构的标称厚度增加40%,该结构的NVH和耐撞性能与基准模型相当。

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