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EFFECT OF GEOMETRIC SHAPE OF PERIODIC CAVITIES IN ATTENUATING BASEFRAME VIBRATION

机译:周期腔几何形状在衰减基框架振动中的影响

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Vibration attenuation is an important factor while designing rotating machinery since frequency lying in the range corresponding to natural modes of structures can result in resonance and ultimately failure. Damping dissipates energy in the system, which reduces the vibration level. The mitigation of vibrations can be achieved by designing the base frame with periodic air holes. The periodicity in air holes result in vibration attenuation by providing a stop band. A finite element-based approach is developed to predict the modal and frequency response. The analysis is carried out with different shapes of periodic cavities in order to study the effectiveness of periodic stop bands in attenuating vibrations. The amount of mass removed due to the periodic cavities is kept constant. It is seen that better attenuation is obtained in case of periodic cavities compared to a uniform base frame. Among the different geometries tested, rectangular cavities showed better results than circular and square cavities. As a result, it is seen that waves propagate along periodic cells only within specific frequency bands called the "Pass bands", while these waves are completely blocked within other frequency bands called the "Stopbands". The air cavities filter structural vibrations in certain frequency bands resulting in effective attenuation.
机译:振动衰减是设计旋转机械的重要因素,因为频率位于与结构的自然模式相对应的范围内,可能导致谐振和最终失效。阻尼耗散系统中的能量,从而降低了振动水平。通过使用周期性气孔设计底框,可以实现振动的减轻。气孔中的周期性通过提供止动杆导致振动衰减。开发了一种有限元的方法来预测模态和频率响应。通过不同形状的周期性腔进行分析,以研究在减弱振动中的周期止动带的有效性。由于周期性腔由于周期性腔而去除的质量量保持恒定。可以看出,与均匀的底架相比,在周期性的情况下获得更好的衰减。在测试的不同几何形状中,矩形腔显示出比圆形和方形腔更好的结果。结果,可以看出,在称为“通带”的特定频带内,波浪沿周期电池传播,而这些波完全被阻塞在称为“停机带”的其他频带内。空气腔在某些频带中过滤结构振动,导致有效衰减。

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