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Design, analysis and testing of a Formula SAE car chassis

机译:配方SAE汽车底盘的设计,分析和测试

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This paper is taken from work completed by the first author as a member of the 1999 Cornell University Formula SAE Team and discusses several of the concepts and methods of frame design, with an emphasis on their applicability to FSAE cars. The paper introduces several of the key concepts of frame design both analytical and experimental. The different loading conditions and requirements of the vehicle frame are first discussed focusing on road inputs and load paths within the structure. Next a simple spring model is developed to determine targets for frame and overall chassis stiffness. This model examines the frame and overall chassis torsional stiffness relative to the suspension spring and anti-roll bar rates. A finite element model is next developed to enable the analysis of different frame concepts. Some modelling guidelines are presented for both frames in isolation as well as the assembled vehicle including suspension. Finally, different experimental techniques are presented to determine what stiffness is actually achieved from a constructed vehicle. A comparison of frames tested in isolation versus whole vehicle testing is made, and a simple whole-car chassis torsion test method is discussed.
机译:本文取自第一个作者完成的工作,作为1999年康奈尔大学配方SAE团队的成员,讨论了框架设计的几个概念和方法,重点是他们对FSAE汽车的适用性。本文介绍了框架设计的几个关键概念,分析和实验。首先讨论在结构内的道路输入和负载路径上讨论了车辆框架的不同装载条件和要求。接下来开发了一个简单的弹簧模型,以确定框架和整体底盘刚度的目标。该模型相对于悬架弹簧和抗辊杆速率检查框架和整体底盘扭转刚度。接下来开发了一个有限元模型以实现不同帧概念的分析。在隔离的两个帧以及包括悬架的组装车辆中呈现了一些建模指南。最后,提出了不同的实验技术以确定实际从构造的车辆中实现了什么刚度。进行了隔离测试与整个车辆测试的帧的比较,并讨论了简单的全车底盘扭转测试方法。

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