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EFFECT OF ECCENTRICITY ON THE NONLINEAR DYNAMIC BEHAVIOR OF A CAM AND FOLLOWER MECHANISM WITH CLEARANCE

机译:偏心距对凸轮非线性动力学行为的影响及跟随间隙的机理

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This study evaluate the relationship between flat-faced follower's offset and Lyapunov exponent. The nonlinear dynamic behavior has been investigated based Lyapunov exponent value. Two types of follower offset such as (e = 10, and 20 mm) has been examined from each side of the cam radial line. The simulation process has been done by using solidwork program. The power spectrum of Fast Fourier Transform and phase plane have been examined the follower non-periodicity during follower motion. The optimum follower offset that would minimize Lyapunov exponent is determined. The system with follower guide's clearance C = 2 mm and e = 20 mm has larger Lyapunov exponent than the others at cam rotational speed N = 1200 rpm. The signal of follower motion is processed by using MATLAB program.
机译:本研究评估了平面从动件的偏移量与李雅普诺夫指数之间的关系。基于李雅普诺夫指数值研究了非线性动力学行为。从凸轮径向线的每一侧检查了两种类型的从动件偏移量,例如(e = 10和20 mm)。仿真过程已经通过使用Solidwork程序完成。快速傅立叶变换和相平面的功率谱已在跟随器运动期间检查了跟随器的非周期性。确定了将Lyapunov指数减至最小的最佳跟随器偏移量。在凸轮转速N = 1200 rpm时,从动导轨间隙为C = 2 mm,e = 20 mm的系统具有更大的Lyapunov指数。跟随器运动的信号通过使用MATLAB程序进行处理。

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