Development of Conceptual Design for Electric Bus Body Structure Using Simple Structural Surface Method

I. Haryanto, A. Widodo, Ibrahim Satya, G. D. Haryadi, O. Kurdi, B. Budiman, S. Santosa
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Abstract

An optimum design for a vehicle structure is always desired because the structure can significantly affect the vehicle's performance. However, some complex iterations are usually involved in the designing process. The objective of the present study is to implement the Simple Structural Surfaces (SSS) method for analyzing electric bus body structure that can reduce complexity in the stage of conceptual design. The SSS method model the vehicle structure as several planar sheets and determine the forces in each sheet. Implementing the SSS method at the early stage of the vehicle's development can minimize the number of parameter changes needed during the late stage of development. The results showed that compared with the results obtained from FEM, the SSS method gave the maximum stress value on the chassis in good accordance. Yet, the downside of using this method is that determining the deflections in the structure becomes a little bit complicated. Successfully implementing this strategy can reduce the time and cost required to develop an effective vehicle structure.
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基于简单结构面法的电动客车车身结构概念设计研究
由于车辆结构对车辆的性能影响很大,因此对车辆结构进行优化设计一直是人们所需要的。然而,在设计过程中通常会涉及到一些复杂的迭代。本研究的目的是将简单结构面(SSS)方法应用于电动客车车身结构分析,以降低概念设计阶段的复杂性。SSS方法将车辆结构建模为若干平面薄片,并确定每个薄片上的力。在车辆开发的早期阶段实施SSS方法可以最大限度地减少开发后期所需的参数更改数量。结果表明,与有限元法计算结果相比,SSS法得到的底盘最大应力值符合较好。然而,使用这种方法的缺点是确定结构中的挠度变得有点复杂。成功实施这一策略可以减少开发有效车辆结构所需的时间和成本。
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