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EFFECT OF THE LOCAL DAMAGE AND PROFILE ERROR OF THE GEAR ON THE DRIVETRAIN DYNAMIC RESPONSE

机译:齿轮的局部损伤和轮廓误差对动力传动系统动力响应的影响

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The dynamic modeling of vibration of a drivetrain is used for increasing our information about vibration generating mechanisms, especially in the presence of some kind of gear faults. This paper describes a research work on the automotive driveline modeling, vibration analysis, and the effect of gear defects on the dynamic behavior of the system. Firstly, main drivetrain components including the engine, clutch, single stage spur gearbox and disc brake are modeled, respectively. The nonlinear dynamic model is simulated by a thirteen degrees of freedom (DOF) system and the nonlinear function is due to the dry friction path. Secondly, two types of defects are modeled and introduced into the spur gear system; local damage and profile error. Then, the nonlinear equations of motion are solved by the numerical Runge Kutta method and a comparative study of the dynamic behavior of the system in healthy and defected cases is discussed for each fault type. The influence of the defects on the vibration response is presented in the time and frequency domain. Finally, analysis of the two defects together is presented.
机译:动力传动系统振动的动态建模用于增加我们有关振动产生机制的信息,尤其是在存在某些齿轮故障的情况下。本文介绍了有关汽车传动系统建模,振动分析以及齿轮缺陷对系统动态行为的影响的研究工作。首先,分别对包括发动机,离合器,单级正齿轮箱和盘式制动器在内的主要动力传动系统进行建模。非线性动力学模型由十三自由度(DOF)系统模拟,非线性函数归因于干摩擦路径。其次,对两种类型的缺陷进行建模并将其引入到正齿轮系统中。局部损坏和轮廓错误。然后,通过数值Runge Kutta方法求解运动的非线性方程,并讨论了每种故障类型在健康和缺陷情况下系统动态行为的比较研究。缺陷对振动响应的影响在时域和频域中给出。最后,将两个缺陷一起分析。

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