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Vibration transmissibility characteristics of smart spring vibration isolation system

Vibration transmissibility characteristics of smart spring vibration isolation system
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摘要 The objective of this work was to study the vibration transmissibility characteristics of the undamped and damped smart spring systems. The frequency response characteristics of them were analyzed by using the equivalent linearization technique, and the possible types of the system motion were distinguished by using the starting and ending frequencies. The influences of system parameters on the vibration transmissibility characteristics were discussed. The following conclusions may be drawn from the analysis results. The undamped smart spring system may simultaneously have one starting frequency and one ending frequency or only have one starting frequency, and the damped system may simultaneously have two starting frequencies and one ending frequency. There is an optimal control parameter to make the peak value of the vibration transmissibility curve of the system be minimum. When the mass ratio is far away from the stiffness ratio, the vibration transmissibility is small. The effect of the damping ratio on the system vibration transmissibility is significant while the control parameter is less than its optimal value. But the influence of the relative damping ratio on the vibration transmissibility is small. The objective of this work was to study the vibration transmissibility characteristics of the undamped and damped smart spring systems. The frequency response characteristics of them were analyzed by using the equivalent linearization technique, and the possible types of the system motion were distinguished by using the starting and ending frequencies. The influences of system parameters on the vibration transmissibility characteristics were discussed. The following conclusions may be drawn from the analysis results. The undamped smart spring system may simultaneously have one starting frequency and one ending frequency or only have one starting frequency, and the damped system may simultaneously have two starting frequencies and one ending frequency. There is an optimal control parameter to make the peak value of the vibration transmissibility curve of the system be minimum. When the mass ratio is far away from the stiffness ratio, the vibration transmissibility is small. The effect of the damping ratio on the system vibration transmissibility is significant while the control parameter is less than its optimal value. But the influence of the relative damping ratio on the vibration transmissibility is small.
出处 《Journal of Central South University》 SCIE EI CAS 2014年第12期4489-4496,共8页 中南大学学报(英文版)
基金 Project(51375226)supported by the National Natural Science Foundation of China Project(20113218110017)supported by the Doctoral Program Foundation of Institutions of Higher Education of China Project(PAPD)supported by the Priority Academic Program Development of Jiangsu Higher Education Institutions,China Project(CXZZ11_0199)supported by the Funding of Jiangsu Innovation Program for Graduate Education,China Project(2014)supported by the the Fundamental Research Funds for the Central Universities,China
关键词 vibration transmissibility characteristics smart spring dry friction stiffness damping vibration isolation base excitation 振动传递特性 隔振系统 弹簧系统 智能 频率响应特性 振动传递率 控制参数 线性化技术
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