基于计算机仿真的电动汽车电池安装方法安全设计

K. Kim, S. Won
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摘要

以电动汽车为例,电动机系统可以代替内燃机,它包含了一种非常迷人的能源,这种能源对环境来说是可持续的。然而,由于电机和电池源的功率性能较低,电动汽车的减重对于提高效率是必要的。本研究采用刚度分析方法对电池安装件的安全性进行评价。为此,进行了全车辆(Metro由Geo Co.=基础模型)模型的CAE(计算机辅助工程)仿真。通过动态刚度分析,对电池安装中周围结构的刚度满足程度进行评价。为了提高基础模型的刚度,提出了设计变更的思路。在此基础上,建议采用新的地板结构将电池安装到车辆中。新概念车型将以集成白车身(白色车身)的方式呈现出一种新的设计方向,可以轻松地从放电电池更换为新充电电池,有助于未来先进电动汽车的设计。为了确定白车身减重的可能性,对重叠部分的结构截面及其厚度减薄进行了研究。从这些结果中,证实了通过新提出的概念设计具有高刚度的白车身是可能的。
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Safety Design for Electric Vehicle Battery Mounting Methods by Using Computer Simulation
The case of an electric vehicle, where a motor system can be substituted for a combustion engine comprises a very fascinating power source which is environmentally sustainable. However, due to the low power performance of the motor and battery source, the weight reduction of the electric vehicle for the increase of the efficiency is necessary. In present study, the stiffness analysis was conducted to evaluate the safety of the battery mounted parts. For these, the CAE (computer aided engineering) simulation of the full vehicle (Metro by Geo Co.= base model) model was performed. The stiffness enhancing design for evaluating how satisfied the stiffness of the surrounding structure in the battery mounting after dynamic stiffness analysis. In order to improve the stiffness of the base model, the design change idea was proposed. Based on this, the new structure of the floor was suggested to mount the battery into the vehicle. The new concept model is to present a new design direction with integrated BIW (body in white) that can replace from the discharged battery to the newly charged battery easily and it can be helpful to the future design of the advanced electric vehicle. To confirm the possibility of BIW weight reduction, the structure section of overlapped portions and its thickness thinning was studied. From these results, it was confirmed that the BIW design should be possible which had high stiffness through the newly proposed concept.
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