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Dynamic analysis of unbalanced rotary machine support structures considering the effect of loading on the geometric stiffness

机译:考虑载荷对几何刚度效果的不平衡旋转机器支撑结构的动态分析

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We present a study of the effects of geometric nonlinearities on vibrations of rotating machines support structures. Dynamic characteristics of structures depend on their stiffness and mass. The initial stiffness of a structure, computed in its unloaded state, is affected by the applied forces, the so-called geometric stiffness. In bases of machines excited by the supported equipment, vibrations may affect the structures but, in general, may generate damage to the suspended equipment and the quality of the production. Here we study these effects via theoretical, numerical and experimental methods. The model is a metal beam under pretension supporting a rotational machine. The presence of large axial compressive force will reduce the beam stiffness and natural frequencies that may lead to unexpected potentially dangerous resonance states.
机译:我们展示了几何非线性对旋转机器支撑结构振动的影响。结构的动态特性取决于它们的刚度和质量。以其卸载状态计算的结构的初始刚度受应用力的影响,所谓的几何刚度。在由支持的设备激发的机器的基础中,振动可能会影响结构,但通常可能会对悬浮设备和生产质量产生损坏。在这里,我们通过理论,数值和实验方法研究这些效果。该模型是在支撑旋转机器的预挡板下的金属束。大轴向压缩力的存在将减少可能导致意外潜在危险的共振状态的光束刚度和自然频率。

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