...
首页> 外文期刊>International journal of non-linear mechanics >Non-trivial effects of high-frequency excitation for strongly damped mechanical systems
【24h】

Non-trivial effects of high-frequency excitation for strongly damped mechanical systems

机译:高频激励对强阻尼机械系统的重要作用

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Some non-trivial effects are investigated, which can occur if strongly damped mechanical systems are subjected to strong high-frequency (HF) excitation. The main result is a theoretical prediction, supported by numerical simulation, that for such systems the (quasi-) equilibrium states can change substantially with the level of damping. For example, a strongly damped pendulum, with a hinge vibrated at high frequency along an elliptical path with horizontal or vertical axis, will line up along a line offset from the vertical; the offset vanishes for very light or very strong damping, attaining a maximum that can be substantial (depending on the strength of the HF excitation) for finite values of the damping. The analysis is focused on the differences between the classic results for weakly damped systems, and new effects for which the strong damping terms are responsible. The analysis is based on a slightly modified averaging technique, and includes an elementary example of an elliptically excited pendulum for illustration, alongside with a generalization to a broader class of strongly damped dynamical systems with HF excitation. As an application example, the non-trivial behavior of a classical optimally controlled non-linear system is investigated, illustrating how HF excitation may cause the controller to leave the system in an unexpected equilibrium state, quite different from the setpoint. The effects can be interesting for specialists in control of mechanical systems and structures. However the obtained results are more general. Similar effects could be expected first of all for microsystems where damping forces are typically dominating over inertia forces.
机译:研究了一些非平凡的影响,如果强阻尼的机械系统受到强烈的高频(HF)激励,则会发生这种情况。主要结果是得到数值模拟支持的理论预测,即对于此类系统,(准)平衡状态会随着阻尼水平的变化而显着变化。例如,一个强阻尼的摆锤,其铰链沿着一条带有水平或垂直轴的椭圆路径以高频振动,将沿着一条偏离垂直方向的直线排列;对于非常轻或非常强的阻尼,该偏移消失,对于有限的阻尼值,该最大值可能会很大(取决于HF激发的强度)。分析的重点是弱阻尼系统的经典结果与强阻尼项负责的新效应之间的差异。该分析基于略微修改的平均技术,包括用于说明的椭圆形激发摆的基本示例,以及对更广泛种类的带有HF激发的强阻尼​​动力学系统的概括。作为一个应用实例,对经典最优控制非线性系统的非平凡行为进行了研究,说明了HF激励如何导致控制器使系统处于意想不到的平衡状态,这与设定点大不相同。对于机械系统和结构的控制专家而言,这种效果可能很有趣。但是,获得的结果更为笼统。首先,对于通常在惯性力上占主导地位的阻尼力的微系统,预期会产生类似的效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号