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EFFICACY OF A SLIDING BEAM AS A NONLINEAR VIBRATION ISOLATOR

机译:滑动梁作为非线性隔振器的效率

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The influence of friction due to beam sliding at its supports on its dynamic behavior and its efficacy as a nonlinear isolator is studied numerically under sinusoidal and random excitation excitations. Under sinusoidal excitation, the equation of motion of the system is solved numerically and the solution is utilized to estimate the system transmissibility. It is found that when the excitation frequency is increased beyond resonance, the friction at the sliding supports serves to improve the transmissibility. The dependence of the response on initial conditions establishes the basins of attraction for different values of friction coefficient and excitation frequency and amplitude. Under random excitation, the system response statistics are estimated from Monte Carlo simulation results for different values of friction coefficient and excitation power spectral density level. The friction is found to result in a significant reduction of the system response mean square.
机译:在正弦和随机激励激励下,数值研究了梁在其支座上滑动引起的摩擦对其动态行为及其作为非线性隔离器的功效的影响。在正弦激励下,对系统的运动方程进行数值求解,并将其用于估算系统的透射率。已经发现,当激发频率增加到超过共振时,滑动支撑件上的摩擦用于改善透射率。响应对初始条件的依赖性为摩擦系数以及激励频率和振幅的不同值建立了吸引盆。在随机激励下,对于不同的摩擦系数和激励功率谱密度值,可以从蒙特卡罗模拟结果估算系统响应统计量。发现该摩擦导致系统响应均方根的显着降低。

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