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Theoretical and Experimental Researches of Spring Damping Flexural Oscillations for Beam Structures

机译:梁结构弹簧阻尼弯曲振动的理论与实验研究

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One of the main problems in the design of rigid bus in open switchgears is the problem of structural stabilization under the action of various dynamic loads.The implementation of rigid bus with large spans of tube showed a real risk of wind resonance for cylindrical tube structures(aeroelastic self-oscillations).This phenomenon is dangerous due to the fact that at low speeds of the wind flow,intensive oscillations of the tubes occur in the vertical plane,adding to the static loads an essential dynamic component.Its level is comparable with loads from its own weight of structures and can,in combination with other loads,will be the cause of stresses close to the limiting ones by the 1st group of limiting states.The problem of reducing the level of structural oscillations in many cases is associated with the need to increase rigidity and reduce the material consumption of structures,however,it is important to fulfil the technological requirements of the operating conditions and protect people from the harmful effects of oscillations.The article highlights some of the main ways to damp oscillations of rigid bus structures.Is given a mathematical model of the simplest single-mass spring inertial dynamic oscillation damper.Experimental studies have been carried out on the joint work of the rigid bus structure with the spring damper.Has been confirmed the effectiveness of spring dampers using,both outside and inside the tube-bus.
机译:刚性总线设计中的一个主要问题是在各种动态载荷的作用下结构稳定的问题。具有大型管跨越管的刚性总线的实现显示了圆柱形管结构的真正风险风险(空气弹性自振荡)。这一现象是危险的,因为在风流量的低速下,管子的强烈振荡发生在垂直平面中,加入静态负载的基本动态分量。水平与载荷相当从其自身的结构和可以与其他载荷组合,将是由第一组限制状态接近限制载荷的应力的原因。在许多情况下降低结构振荡水平的问题与需要提高刚性并降低结构的材料消耗,但是,满足操作条件的技术要求和保护PE是重要的从振荡的有害影响中拍摄。本文突出了刚性总线结构的振荡振荡的一些主要方式。给定最简单的单质量弹簧惯性动态振荡阻尼器的数学模型。在关节上进行了实验研究刚性总线结构的工作与弹簧闸门。在管道上的外部和内部,确认了弹簧阻尼器的有效性。

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