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Simulation and experiment of the magnetorheological seat suspension with a seated occupant in both shock and vibration occasions

机译:抗冲击和振动场合坐姿的磁流变座椅悬架的仿真与实验

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摘要

The aim of the present work is to develop an magnetorheological (MR) seat suspension for military vehicles to mitigate dynamic responses of seated occupant in both shock and vibration occasions. The main components of the MR seat suspension are tested and modelled. Subsequently, a mathematical model incorporating the MR seat and a seated occupant is established. The vibration and shock simulations based on the established model are carried out, and the results indicate that the proposed MR seat suspension can significantly alleviate the acceleration responses of the seated occupant under vibration input, and simultaneously possess the ability of reducing the spinal injury risk in the presence of severe impact. The systematic experiments of the MR seat prototype with a 50th percentile male hybrid III dummy are conducted, it is found out that the experimental results are in good agreement with the theoretical simulation results, which demonstrates that the developed MR seat suspension is provided with favourable vibration reduction performance and impact resistance.
机译:本作本作的目的是开发用于军用车辆的磁流变学(MR)座椅悬架,以减轻休息和振动场合的坐姿的动态响应。测试和建模先生座椅悬浮液的主要组分。随后,建立了包含MR座位和坐姿的数学模型。进行了基于已建立的模型的振动和冲击模拟,结果表明,所提出的MR座椅悬架可以显着降低振动输入下坐姿的加速响应,同时具有降低脊柱损伤风险的能力存在严重的影响。进行了第50个百分位的男性杂交III虚拟体的MR座位原型的系统实验,发现实验结果与理论模拟结果吻合良好,这表明开发的MR座椅悬架具有有利的振动减少性能和抗冲击性。

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