Department of Mechanical Engineering, National Institute of Technology, Oita College, Oita 870-0152, Japan.
Department of Electrical and Electronic Engineering, Chukyo University, Nagoya 466-8666, Japan.
Chaos. 2020 Oct;30(10):103111. doi: 10.1063/5.0009343.
The bouncing ball system is a simple mechanical collision system that has been extensively studied for several decades. In this study, we investigate the bouncing ball's dynamics both numerically and experimentally. We implement the system using a table tennis ball and paddle vibrated by a shaker. We focus on the relationship between the ball's maximum bounce height in the long time interval and the paddle's vibration frequency, observing several stepwise height changes for frequencies of 25-50 Hz, noting this significant characteristic in both our experiments and numerical simulations. We concentrate on this paddle frequency interval because the phenomenon is easy to handle in numerical simulations. Because the observed phenomenon has a simple order, it can be universal and appear in a large class of collision dynamics. Possibly, some researchers have investigated the bouncing ball system in which the nonsmooth maximum bounce height changes occur. However, they may have failed to notice the changes because the maximal height of the ball was not considered.
弹跳球系统是一个简单的机械碰撞系统,已经被广泛研究了几十年。在这项研究中,我们通过使用乒乓球和由振动器振动的球拍来对弹跳球的动力学进行数值和实验研究。我们主要关注球在长时间间隔下的最大反弹高度与球拍振动频率之间的关系,观察到在 25-50 Hz 的频率范围内出现了几个逐步的高度变化,在我们的实验和数值模拟中都注意到了这一显著特征。我们关注这个球拍频率间隔是因为这个现象在数值模拟中很容易处理。由于观察到的现象具有简单的顺序,它可能是普遍存在的,并出现在一大类碰撞动力学中。可能有一些研究人员已经研究了弹跳球系统,其中非光滑的最大反弹高度发生变化。然而,他们可能没有注意到这些变化,因为他们没有考虑球的最大高度。