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Complex mode superposition method of nonproportionally damped linear systems with hysteretic damping

机译:具有滞回阻尼的非抑郁衰减线性系统复合模式叠加方法

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摘要

The vibration response of a damped linear system is always calculated based on the mode superposition method. However, the construction of the damping matrix is difficult for the conventional mode superposition methods based on the viscous damping model, and this problem is much more serious for nonproportionally damped linear systems. The damping matrix based on the hysteretic damping model is easy to construct and unique, which is determined only by the structural stiffness and material loss factor. The time-domain motion equation of a multi-degree-of-freedom nonproportionally damped linear system is easily constructed based on the hysteretic damping model. According to the characteristics of external excitation, the general solution of the corresponding homogeneous equation and special solution of the corresponding nonhomogeneous equation can be solved. By the aid of the easiness of the damping matrix, a complex mode superposition method based on the hysteretic damping model is proposed for the nonproportionally damped linear system. Based on the proposed method, a user subroutine in ANSYS and MATLAB is developed to calculate vibration responses in time-domain dynamic analyses. A shaking table test of a cantilever plate composed of host and damping layers is conducted to validate the proposed method. The method proposed in this article is unconditionally convergent, and its convergence is independent of the time step of time-domain analyses. Compared with the common complex mode superposition method based on the viscous damping model, the simulation results of the proposed method are closer to the test results, and its accuracy and efficiency are higher. In addition, the calculation results of the proposed method are unique, which is irrelevant to the choice of vibration modes.
机译:阻尼线性系统的振动响应通常采用模态叠加法计算。然而,传统的基于粘性阻尼模型的模态叠加方法很难构造阻尼矩阵,而对于非比例阻尼线性系统,这一问题更为严重。基于滞回阻尼模型的阻尼矩阵易于构造且唯一,仅由结构刚度和材料损耗因子决定。基于滞回阻尼模型,可以方便地建立多自由度非比例阻尼线性系统的时域运动方程。根据外激励的特点,可以求出相应齐次方程的通解和相应非齐次方程的特解。利用阻尼矩阵的简便性,提出了一种基于滞回阻尼模型的非比例阻尼线性系统复模态叠加方法。基于该方法,在ANSYS和MATLAB中开发了一个用户子程序,用于计算时域动力分析中的振动响应。通过一个由主体层和阻尼层组成的悬臂板的振动台试验,验证了该方法的有效性。本文提出的方法是无条件收敛的,其收敛性与时域分析的时间步长无关。与基于粘性阻尼模型的共复模态叠加法相比,该方法的仿真结果更接近试验结果,精度和效率更高。此外,该方法的计算结果是唯一的,与振型的选择无关。

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