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首页> 外文期刊>International journal of non-linear mechanics >Exact and approximate analytical solutions of oscillator with piecewise linear asymmetrical damping
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Exact and approximate analytical solutions of oscillator with piecewise linear asymmetrical damping

机译:分段线性不对称阻尼振荡器的精确解和近似解

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摘要

The objective of this work is to present exact and approximate analytical solutions of a 1-DOF oscillator with asymmetrical damping under harmonic excitation, and to explore the role of asymmetrical damping in the response of such oscillator. The response of the case with overdamped expansion and underdamped compression is shown in details to illustrate the effect of the asymmetry ratio (beta) on the transition time, the mean position and energy dissipation. The solutions for all other cases are also shown, indicating similar effects. Higher asymmetry ratio (beta 1) provides lower peak acceleration in high frequency, while (beta 1) results in lower acceleration in low frequency. As it is shown that asymmetrical damping can be advantageous over symmetrical systems regarding vibration isolation and energy transfer in certain frequency ranges, the solutions shown here can aid the design of such asymmetrical systems.
机译:这项工作的目的是提供在谐波激励下具有不对称阻尼的1-DOF振荡器的精确和近似解析解,并探讨不对称阻尼在这种振荡器响应中的作用。详细显示了带有过度阻尼膨胀和不足阻尼压缩的情况的响应,以说明不对称率(β)对过渡时间,平均位置和能量耗散的影响。还显示了所有其他情况的解决方案,表明了类似的效果。较高的不对称比(β> 1)在高频下提供较低的峰值加速度,而(β<1)在低频下提供较低的加速度。如图所示,在某些频率范围内,关于振动隔离和能量传递,非对称阻尼优于对称系统,此处所示的解决方案可帮助设计此类非对称系统。

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