The stick-slip motion of the smooth impact drive mechanism based on trapezoid drive signal

Dong Chen, Xiaoming Lu, Tinghai Cheng, Hengyu Li
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Abstract

The smooth impact drive mechanism (SIDM) is driven by the asymmetry drive signal and the motions of "stick" and "slip" are produced at the driving part of friction rod. The motions can influent the slider displacement. The motions are helpful to analysis qualitatively and quantitatively the slider displacement including forward, backward and valid step. The SIDM motion process is analyzed and the stick-slip critical time is obtained. For check the theoretical stick-slip critical time, the experiment system is built, which is composed of personal computer, signal generator, power amplifier and laser displacement sensor. A series trapezoid drive signal which has different rising edge time is applied for exciting the smooth impact diving mechanism. The experiment results show that the stick-slip critical time is 500 μs. The theoretical calculation result is 472 μs. The two results have a little error.
基于梯形驱动信号的光滑冲击驱动机构的粘滑运动
光滑冲击传动机构(SIDM)是由非对称驱动信号驱动,在摩擦杆驱动部位产生“粘”和“滑”运动。运动可以影响滑块的位移。这些运动有助于定性和定量地分析滑块的位移,包括前进、后退和有效步长。分析了SIDM的运动过程,得到了临界粘滑时间。为了验证理论粘滑临界时间,建立了由个人计算机、信号发生器、功率放大器和激光位移传感器组成的实验系统。采用具有不同上升沿时间的梯形串联驱动信号对平稳冲击潜水机构进行激励。实验结果表明,黏滑临界时间为500 μs。理论计算结果为472 μs。这两个结果有一点误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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