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Characterisation of vibration input to flywheel used on urban bus

机译:城市公交车飞轮振动输入的特征

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Vibration induced from road surface has an impact on the durability and reliability of electrical and mechanical components attached on the vehicle. There is little research published relevant to the durability assessment of a flywheel energy recovery system installed on city and district buses. Relevant international standards and legislations were reviewed and large discrepancy was found among them, in addition, there are no standards exclusively developed for kinetic energy recovery systems on vehicles. This paper describes the experimentation of assessment of road surface vibration input to the flywheel on a bus as obtained at the MIRA Proving Ground. Power density spectra have been developed based on the raw data obtained during the experimentation. Validation of this model will be carried out using accelerated life time tests that will be carried out on a shaker rig using an accumulated profile based on the theory of fatigue damage equivalence in time and frequency domain aligned with the model predictions.
机译:从路面引起的振动对车辆上附着的电气和机械部件的耐久性和可靠性产生了影响。与城市和地区巴士上安装的飞轮能量回收系统的耐久性评估有关的研究很少。审查了相关的国际标准和立法,并在其中发现了大规模的差异,此外,没有专门为车辆的动能回收系统开发的标准。本文介绍了在米拉证明地面获得的公共汽车上对飞轮的路面振动输入到飞轮的试验。已经基于在实验期间获得的原始数据开发了功率密度谱。将使用加速寿命时间测试进行该模型的验证,该测试将根据与模型预测对齐的时间和频域的疲劳损伤等效性理论,在振荡器钻机上进行振荡器。

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