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The Stiffness and Damping Characteristics of a Dual-Chamber Air Spring Device Applied to Motion Suppression of Marine Structures

机译:双腔空气弹簧装置在海洋结构运动抑制中的刚度和阻尼特性

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Dual-chamber air springs are used as a key component for vibration isolation in some industrial applications. The working principle of the dual-chamber air spring device as applied to motion suppression of marine structures is similar to that of the traditional air spring, but they differ in their specific characteristics. The stiffness and damping of the dual-chamber air spring device determine the extent of motion suppression. In this article, we investigate the stiffness and damping characteristics of a dual-chamber air spring device applied to marine structure motion suppression using orthogonal analysis and an experimental method. We measure the effects of volume ratio, orifice ratio, excitation amplitude, and frequency on the stiffness and damping of the dual-chamber vibration absorber. Based on the experimental results, a higher-order non-linear regression method is obtained. We achieve a rapid calculation model for dual-chamber air spring stiffness and damping, which can provide guidance to project design.
机译:双室空气弹簧被用作某些工业应用中隔振的关键组件。用于抑制船舶结构运动的双室空气弹簧装置的工作原理与传统的空气弹簧相似,但是它们的具体特征有所不同。双室空气弹簧装置的刚度和阻尼决定了运动抑制的程度。在本文中,我们使用正交分析和实验方法研究了应用于室内结构运动抑制的双室空气弹簧装置的刚度和阻尼特性。我们测量了体积比,节流比,激励幅度和频率对双腔减震器刚度和阻尼的影响。根据实验结果,获得了高阶非线性回归方法。我们实现了双腔空气弹簧刚度和阻尼的快速计算模型,可以为项目设计提供指导。

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