振动平台与弹性振动限制器接触时的动力学实验分析

IF 0.4 Q4 ENGINEERING, MECHANICAL
G. Ya. Panovko, A. E. Shokhin
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引用次数: 0

摘要

本文介绍了弹性振动限制器对带有自同步不平衡激振器的振动机原型在共振频率范围内的动态影响的实验结果。原型机是根据工作体(平台)平面振荡的单质量振动机方案制造的,工作体由两个不平衡异步激振器激励。在平台上安装了不同重量的负载时,获得了平台的振幅和振动激振器的相互旋转相位与激振频率的函数关系。结果表明,与弹性限幅器接触可扩大确保激振器以所需相位同步旋转的频率范围,并降低平台振动振幅对系统重量变化敏感性的共振频率范围。结果证实了之前的理论分析结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Experimental Analysis of the Dynamics of a Vibration Platform upon Contact with an Elastic Limiter of Oscillations

Experimental Analysis of the Dynamics of a Vibration Platform upon Contact with an Elastic Limiter of Oscillations

The experimental results of the influence of an elastic vibration limiter on the dynamics of a prototype of a vibrating machine with self-synchronizing unbalanced vibration exciters when excited in the resonant frequency range are presented. The prototype is made according to the scheme of a single-mass vibration machine with plane oscillations of the working body (platform), which are excited by two unbalanced asynchronous vibration exciters. The vibration amplitudes of the platform and the mutual phase of rotation of the vibration exciters as a function of excitation frequency were obtained for various weights of the loads installed on the platform. It is shown that contact with an elastic limiter leads to an expansion of the frequency range in which synchronous rotation of vibration exciters with the required mutual phase is ensured, as well as to a decrease in the resonant frequency ranges of the sensitivity of the vibration amplitudes of the platform to changes in the weight of the system. The results confirm the previous results of theoretical analysis.

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来源期刊
CiteScore
0.80
自引率
33.30%
发文量
61
期刊介绍: Journal of Machinery Manufacture and Reliability  is devoted to advances in machine design; CAD/CAM; experimental mechanics of machines, machine life expectancy, and reliability studies; machine dynamics and kinematics; vibration, acoustics, and stress/strain; wear resistance engineering; real-time machine operation diagnostics; robotic systems; new materials and manufacturing processes, and other topics.
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