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Analysis process of a steering system using a concept model for idle vibration

机译:使用概念模型的怠速振动转向系统分析过程

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This paper describes the development of an optimal design process for a steering column system and supporting system. A design guide is proposed at the initial concept stage of the development process to obtain sufficient stiffness of the steering system while reducing the idle vibration sensitivity of the system. Case studies on resonance isolation are summarized, where vibration modes among the systems are separated by applying a vibration mode map at the initial stage of the design process. This study also provides design guidelines for an optimal dynamic damper system using a CAE (computer aided engineering) analysis. The damper FE (finite element) model is added to the vehicle model to analyze the relation between the frequency and the sensitivity of the steering column system. This analysis methodology makes it possible to achieve target performance in the early design stage and reduction of damper tuning activity after the proto car test stage. Through the proposed steering column system development process, a lightweight vehicle with high stiffness is possible prior to the proto build stage. Furthermore, the improved process is expected to contribute to reducing the overall development period and the number of proto car tests necessary to achieve the desired steering system performance.
机译:本文描述了转向柱系统和支撑系统的最佳设计过程的开发。在开发过程的初始概念阶段就提出了一个设计指南,以获得足够的转向系统刚度,同时降低系统的空转振动灵敏度。总结了有关共振隔离的案例研究,其中在设计过程的初始阶段通过应用振动模式图来分离系统之间的振动模式。这项研究还为使用CAE(计算机辅助工程)分析的最佳动态阻尼器系统提供了设计指南。将阻尼器FE(有限元)模型添加到车辆模型中,以分析转向柱系统的频率与灵敏度之间的关系。这种分析方法可以在早期设计阶段实现目标性能,并减少原型车测试阶段后的减震器调节活动。通过提出的转向柱系统开发过程,可以在原型制造阶段之前制造出具有高刚度的轻型车辆。此外,改进的过程有望有助于缩短总体开发时间,并减少实现所需转向系统性能所需的原型车测试次数。

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