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Large deflections and vibrations of a tip pulled beam with variable transversal section

机译:横向截面可变的吸头梁的大挠度和振动

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摘要

The use of long flexible probes in outdoors exploration vehicles, as opposed to short and rigid arms, is a convenient way to grant easier access to regions of scientific interest such as terrain slopes and cliff sides. Longer and taller arms can also provide information from a wider exploration horizon. The drawback of employing long and flexible exploration probes is the fact that its vibration is not easily controlled in real time operation by means of a simple analytic linear dynamic model. The numerical model required to describe the dynamics of a very long and flexible structure is often very large and of slow computational convergence. The present work proposes a simplified numerical model of a long flexible beam with variable cross section, which is statically deflected by a pulling cable. The paper compares the proposed simplified model with experimental data regarding the static and dynamic characteristics of a beam with variable cross sectioa The simulations show the effectiveness of the simplified dynamic model employed in an active control loop to suppress tip vibrations of the beam.
机译:与短而僵硬的手臂相反,在户外勘探工具中使用长而柔软的探头是一种方便的方法,可以更轻松地进入具有科学价值的区域,例如地形坡度和悬崖边。更高和更高的臂也可以从更广阔的勘探视野中提供信息。使用长而灵活的探测探头的缺点是,通过简单的解析线性动力学模型,在实时操作中不容易控制其振动。描述非常长且灵活的结构的动力学所需的数值模型通常很大,并且计算收敛缓慢。本工作提出了具有可变横截面的长挠性梁的简化数值模型,该挠性梁由拉索静态挠曲。本文将拟议的简化模型与具有可变截面的梁的静态和动态特性的实验数据进行了比较。仿真表明,在主动控制回路中使用简化的动力学模型来抑制梁的尖端振动是有效的。

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