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Gaofeng Guan, Dengfeng Xu, Yu Zhu, Qiang Yu, Qiang Li. Energy Cycle Insingle Degree of Freedom Conservative Vibration Isolation Systems[J]. JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2019, 28(3): 644-650. doi: 10.15918/j.jbit1004-0579.18149
Citation: Gaofeng Guan, Dengfeng Xu, Yu Zhu, Qiang Yu, Qiang Li. Energy Cycle Insingle Degree of Freedom Conservative Vibration Isolation Systems[J].JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2019, 28(3): 644-650.doi:10.15918/j.jbit1004-0579.18149

Energy Cycle Insingle Degree of Freedom Conservative Vibration Isolation Systems

doi:10.15918/j.jbit1004-0579.18149
  • Received Date:2018-11-16
  • To obtain a longer natural period in single degree of freedom(SDF) conservative vibration isolation systems, many scholars have proposed different methods. This paper uncovers a clockwise energy cycle existing in a mass-spring system, in which the potential energy and kinetic energy convert with each other, and the natural period is determined by the magnitude of the energy cycle. Compared to water flow inside a pipe, the previous methods can be consolidated into two methods to make the energy cycle narrower; one is to optimize the parameters directly, the other is to indirectly add an anticlockwise energy cycle to the original one. The anticlockwise energy cycle has the characteristic of gravitational potential energy or elastic potential energy that reduces with displacement. The highly abstract method can provide a better optimization tool to design a practice system.
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