首页> 外文会议>Conference on mechanical vibration and noise >OPTIMIZATION OF VIBRATION ISOLATION MOUNTS WITH INTERNAL ROTATION IN RESPONSE TO SHOCK TYPE INPUTS
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OPTIMIZATION OF VIBRATION ISOLATION MOUNTS WITH INTERNAL ROTATION IN RESPONSE TO SHOCK TYPE INPUTS

机译:响应于冲击型输入的内部旋转优化振动隔离贴装

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The design of isolation mounts is of critical importance in the protection of structures and sensitive equipment from damage or failure. Simultaneous protection from both shock and vibration is particularly challenging because of the broadband nature of the input signal and because of the deleterious effect of damping on high-frequency isolation. Prior work by the authors has shown that chains of translating and rotating mass/spring elements can act as a "mechanical filter " for input disturbances. If designed correctly, the isolator is able to trap some of the input energy into rotational vibration, preventing it from damaging the structure. However, infinite-length chains, wave reflections can result in secondary pulses that hit the structure and can diminish the effectiveness of the isolator. In this paper, the design of dynamic isolation mounts is improved using an optimization technique. Numerical simulations are performed using a parametric model of the new mount design. The simulated annealing optimization algorithm is used to determine the optimal system parameters for a given chain length. It is shown that the optimized system is able to achieve significant performance improvements. It is also shown that dynamic mounts that allow rotational movement of internal elements outperform optimized purely translational-motion systems.
机译:隔离安装座的设计对于保护结构和敏感设备免受损坏或失败的关键重要性是至关重要的。由于输入信号的宽带性质,并且由于输入信号的宽带性质,并且由于阻尼对高频隔离的有害效果,因此同时保护尤为具有挑战性。作者之前的工作表明,平移和旋转质量/弹簧元件的链条可以充当输入干扰的“机械过滤器”。如果设计正确,隔离器能够将一些输入能量捕获到旋转振动中,防止其损坏结构。然而,无限长度的链,波反射可以导致击中结构的二次脉冲,并且可以减小隔离器的有效性。在本文中,使用优化技术改进了动态隔离安装座的设计。使用新安装设计的参数模型执行数值模拟。模拟退火优化算法用于确定给定链长的最佳系统参数。结果表明,优化的系统能够实现显着的性能改进。还示出了允许内部元件旋转运动的动态安装率优化纯粹的平移运动系统。

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