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Dynamic analysis of multi-supported nonlinear vibration isolation system mounted on flexible foundation

机译:柔性基础安装多支撑非线性隔振系统的动态分析

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In view of its prototype in engineering application, a theoretical model of multi-supported nonlinear vibration isolation system installed on flexible foundation is studied, including derivation of system dynamic equations and analysis of system dynamic characteristics. For effectiveness evaluation of nonlinear vibration isolation systems, a generalized time-averaged power is proposed as an extension of classical theory of vibratory power flow, and a numerical solution method of time-averaged power is probed accompanying with the numerical solution of nonlinear dynamic equations. In a further concrete calculation example, an air spring vibration isolation system of a small UAV engine is numerically simulated based on Runge-Kutta method, and dynamic behavior and power flow transmission characteristics influenced by system parameters are investigated.
机译:鉴于其在工程应用中的原型,研究了安装在柔性基础上的多支撑非线性隔离系统的理论模型,包括系统动态方程的推导和系统动态特性分析。对于非线性隔振系统的有效性评估,提出了一种广义的时间平均功率作为振动功率流的经典理论的延伸,并且随着非线性动力学方程的数值解探测了时间平均功率的数值解方法。在另一个具体的计算示例中,基于Runge-Kutta方法进行数值模拟小UV发动机的空气弹簧振动隔离系统,并研究了受系统参数影响的动态行为和功率流动传输特性。

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