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Application Of Dynamic Correlation Technique And Model Updating On Truck Chassis

机译:动态相关技术的应用及模型更新在卡车底盘上的应用

摘要

Truck chassis is a major component in a vehicle system. It is often identified for refinement in order to develop vehicles with reduced cost and weight. Nowadays the process of chassis design in the automotive industry has been significantly refined with the high capabilities of advanced computer aided design and engineering tools,. The application of FEA such as structural modification and optimization is used to reduce component complexity, weight and subsequently cost. Because the level of model complexity can be high, the opportunity for error can also be high. For this reason, some form of model verification is needed before design decisions made in the FEA environment can be implemented in production. This paper looks into the application of dynamic correlation techniques for verification of the FEA models of truck chassis. The dynamic characteristics of truck chassis such as the natural frequency and mode shape were determined using finite element method. Experimental modal analysis was carried out to validate the FE models. Initial results from both analysis show that the truck chassis experienced 1st torsion mode for 1st natural frequency, 1st bending mode for 2nd natural frequency, 2nd torsion mode for 3rd natural frequency and 2nd bending mode for 4th natural frequency. However there is a small discrepancy in terms of frequency. Thus, the model updating of truck chassis model was done by adjusting the selective properties such as Modulus Young and Poisson ratio in order to get better agreement in the natural frequency between both analysis. Finally, the modifications of the updated FE truck chassis model was suggested such as by considering adding the stiffener. The purpose is to reduce the vibration as well as to improve the strength of the truck chassis.
机译:卡车底盘是车辆系统中的主要组件。为了开发成本和重量减轻的车辆,通常会对其进行优化。如今,借助先进的计算机辅助设计和工程工具的强大功能,汽车行业的底盘设计过程已得到显着改进。 FEA的应用(例如结构修改和优化)用于降低组件的复杂性,重量和后续成本。由于模型复杂性级别可能很高,因此出错的机会也可能很高。因此,在FEA环境中做出的设计决策可以在生产中实施之前,需要某种形式的模型验证。本文探讨了动态相关技术在验证卡车底盘有限元分析模型中的应用。使用有限元方法确定了卡车底盘的动态特性,例如固有频率和振型。进行了实验模态分析以验证有限元模型。两种分析的初步结果表明,卡车底盘在第一固有频率下经历了第一扭转模式,在第二固有频率下经历了第一弯曲模式,在第三固有频率下经历了第二扭转模式,并且在第四固有频率下经历了第二弯曲模式。但是,在频率方面存在微小差异。因此,通过调整诸如Modulus Young和Poisson比率之类的选择属性来完成卡车底盘模型的模型更新,以使两者之间的固有频率更好地吻合。最后,建议对更新的FE卡车底盘模型进行修改,例如考虑添加加强筋。目的是减少振动并提高卡车底盘的强度。

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