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首页> 外文期刊>Journal of King Saud University-Engineering Sciences >Investigation of chaos in a polydyne cam with flat-faced follower mechanism
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Investigation of chaos in a polydyne cam with flat-faced follower mechanism

机译:具有平面从动机构的Polydyne凸轮混沌调查

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摘要

In this paper, the chaotic analysis is predicted based on the non-periodic motion of the follower. Nonperiodic motion of the follower has been investigated by using the conception of Lyapunov exponent parameter. Wolf algorithm is used to quantify largest Lyapunov exponent parameter. The impact between the cam, follower and the two guides is occurred due to the impulse and momentum phenomenon. The effect of internal dimension of the follower guide on the follower non-periodicity is considered at distinct angular velocity of the cam. Positive value of Lyapunov exponent parameter indicates to non-periodic motion for the follower. The numerical simulation has been done by using SolidWorks software. Follower movement is processed experimentally through an infrared 3-D camera device with a high precision optical sensor. The non-periodic motion of the follower is increased with the increasing of internal dimension of the follower guide at cam angular velocity (N = 1200 and 1500) rpm.
机译:在本文中,基于跟随器的非周期性运动来预测混沌分析。 通过使用Lyapunov指数参数的概念来研究追随者的非周期性运动。 WOLF算法用于量化最大的Lyapunov指数参数。 由于脉冲和动量现象,发生了凸轮,从动件和两个引导件之间的冲击。 从凸轮的不同角速度考虑了从动引导件对从属件非周期性的内部尺寸的影响。 Lyapunov指数参数的正值表示追随者的非周期性运动。 使用SolidWorks软件完成了数值模拟。 从带有高精度光学传感器的红外线3-D摄像头设备通过红外线3-D相机设备进行实验处理。 随着从凸轮角速度(n = 1200和1500)RPM的从带电引导件的内部尺寸的增加,从动件的非周期性运动增加。

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