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Combination Optimization Design Method of Vibration Isolation and Shock Resistance System

机译:隔振与抗冲击系统组合优化设计方法

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摘要

The optimization design problem of vibration isolation and shock resistance system is studied in consideration of acoustical concealment performance and life-force of ships. The weakness of design method based on continuity is pointed out and combination optimal design method is brought forward. Then the limiting performance of shock isolation system is analyzed and two realization methods are discussed. One method is to adopt linear stiffness component with large damping. The other method is to use multiple linear stiffness components without damping. Simulation results showed that the optimal loss factor is still 0.4 when the stiffness of shock bumper is much larger than that of vibration isolator, just the same with that suffering from only shock loads. Simulation results also showed that limiting performance can be achieved by configuration optimal design using multiple linear components. The two discussed methods can be used to direct engineering application.
机译:研究了隔声性能和船舶的生命力,对隔振抗冲击系统的优化设计问题进行了研究。指出了基于连续性的设计方法的弱点,并提出了组合最优设计方法。然后分析了隔震系统的极限性能,并讨论了两种实现方法。一种方法是采用具有大阻尼的线性刚度分量。另一种方法是使用多个线性刚度分量而没有阻尼。仿真结果表明,当减震器的刚度远大于隔振器的刚度时,最佳损耗因子仍为0.4,与仅承受冲击载荷的刚度相同。仿真结果还表明,可以通过使用多个线性组件进行配置优化设计来实现极限性能。讨论的两种方法可用于指导工程应用。

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