首页> 外文会议>Vibration engineering and technology of machinery >THE ANALYSIS OF STATIC AND DYNAMIC RESPONSES IN SPUR GEAR MESHING ON THE BASIS OF FINITE ELEMENT SIMULATION AND INTERRELATED FRICTIONAL EFFECT
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THE ANALYSIS OF STATIC AND DYNAMIC RESPONSES IN SPUR GEAR MESHING ON THE BASIS OF FINITE ELEMENT SIMULATION AND INTERRELATED FRICTIONAL EFFECT

机译:基于有限元模拟和相互关联的摩擦效应的正动齿轮啮合静态响应分析

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To control and decrease noise and vibration of the meshing gears, the situation of contact stress and transmission error should be researched very carefully. Although the finite element method can analyze the contact stress and transmission error situations with the static boundary conditions which have ignored inertia, rotary speed and damping, the accuracy of the result must not be very satisfied because the dynamic characters will influent the actual situations obviously. So to simulate actual gear meshing process, some most typical dynamic characters and frictional effect should be considered adequately due to the friction must exist. In this paper, the typical static and dynamic contact stress and transmission error responses of spur gear will be displayed by discussing the situations of gear tooth root bending stress and transmission error with static and dynamic boundary conditions. In addition, the friction coefficient has been defined as a boundary condition variable to display distinct frictional effect on gear tooth root bending stress and transmission error. Basically, the results of static and dynamic model are very similar, but there are also some significant differences between static and dynamic responses due to various dynamic excitations.
机译:为了控制和降低啮合齿轮的噪音和振动,应非常仔细地研究接触应力和传输错误的情况。尽管有限元方法可以通过忽略惯性,旋转速度和阻尼的静态边界条件来分析接触应力和传输错误情况,但是必须非常满意的结果的准确性,因为动态字符显然将影响实际情况。因此,为了模拟实际齿轮啮合过程,由于必须存在摩擦,应充分考虑一些最典型的动态特性和摩擦效果。在本文中,通过讨论齿轮齿根弯曲应力和具有静态和动态边界条件的传输误差的情况,将显示典型的静态和动态接触应力和透射误差响应。另外,摩擦系数被定义为边界条件变量,以显示齿轮齿根弯曲应力和传输误差的不同摩擦效应。基本上,静态和动态模型的结果非常相似,但由于各种动态激发,静态和动态响应之间也存在一些显着差异。

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