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The effect of beam inclination on the performance of a passive vibration isolator using buckled beams

机译:光束倾斜对使用屈曲光束进行无源隔振器的性能的影响

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Passive vibration isolators are desired to have both high static stiffness to support large static load and low local stiffness to reduce the displacement transmissibility at frequencies greater than resonance. Utilization of a vertical buckled beam as a spring component is one way to realize such a stiffness characteristic since it exhibits a smaller ratio of local stiffness to static stiffness than that of a linear spring. This paper investigates the behaviour of a vibration isolator using inclined beams as well as vertical ones and examines the effect of beam inclination for the purpose of improving the isolation performance. The experimental system investigated has an isolated mass which is supported by a combination of two types of beams: buckled beams and constraining beams. The buckled beams can be inclined from the vertical by attachment devices, and the constraining beams are employed to prevent off-axis motion of the isolated mass. The results demonstrate that the inclination of the buckled beams reduces the resonance frequency and improves the displacement transmissibility at frequencies greater than resonance.
机译:绝经隔振器是具有高静态刚度以支持大的静载荷和低局部刚度,以降低大于谐振的频率的位移传递性。利用垂直弯曲光束作为弹簧部件是实现这种刚度特性的一种方式,因为它表现出较小的局部刚度与静态刚度比线性弹簧的比率。本文研究了使用倾斜光束以及垂直梁以及垂直梁以及梁倾斜的效果来研究振动隔离器的行为,以提高隔离性能。研究的实验系统具有分离的质量,其由两种梁的组合支撑:弯梁和约束光束。弯梁可以通过附接装置从垂直轴倾斜,并且使用约束光束来防止隔离质量的轴轴运动。结果表明,屈曲光束的倾斜度降低了谐振频率,并在大于谐振的频率下提高位移传递性。

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