Design Analysis and Optimization of an All-Terrain Vehicle (ATV)

A. Mishra, A. Sahu
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Abstract

The paper summarizes the steps taken in finalizing the design of an electric ATV, made for SAE BAJA which provides a platform for undergraduate students to apply the principles of engineering to expose their proficiency in the automotive world. The purpose of the paper is to calculate various boundary conditions on the frame, steering knuckle, suspension arms of a light ATV under extreme conditions and use them to improve the overall design which requires the minimum amount of material while providing a significant Factor of safety. An iterative approach using standard calculations & FEA is discussed in the study for simulation and optimization of the design. For all parts, stress & deformation analysis is performed. For design optimization in the knuckle, topology is done. Von mises Stress, total deformation and safety factor were calculated for each part under appropriate boundary conditions. The study discussed step by step calculations of forces on each component in detail and their simulations with an appropriate degree of precision. Following the methodology shown in the study will be useful in the development of a Light ATV, further, the suggested simulations will ensure the safety of the vehicle. Keywords— Von mises stress, Deformation, Safety factor, Design, Material Selections, FEA, Topology, Knuckle, Frame, Suspension Arms.
全地形车(ATV)的设计分析与优化
本文总结了为SAE BAJA设计的电动ATV的最终设计步骤,该设计为本科生提供了一个应用工程原理的平台,以展示他们在汽车领域的熟练程度。本文的目的是在极端条件下计算轻型亚视车架、转向节、悬架臂的各种边界条件,并利用它们来改进整体设计,从而在提供显著的安全系数的同时需要最少的材料。本文讨论了采用标准计算和有限元分析相结合的迭代方法对设计进行仿真和优化。对所有零件进行应力和变形分析。对关节进行了拓扑优化设计。在适当的边界条件下,计算了各部件的应力、总变形和安全系数。本研究详细讨论了各部件上的力的逐级计算及其适当精度的模拟。遵循研究中显示的方法将有助于开发轻型亚视,此外,建议的模拟将确保车辆的安全性。关键词:冯米塞斯应力,变形,安全系数,设计,材料选择,有限元分析,拓扑,关节,框架,悬挂臂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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