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H_2 optimization and numerical study of inerter-based vibration isolation system helical spring fatigue life

机译:基于工具的隔振系统螺旋春天疲劳寿命的H_2优化与数值研究

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This paper presents an optimization and numerical analysis of vibration-induced fatigue in a two degree-of-freedom inerter-based vibration isolation system. The system is comprised of a primary, e.g. source body, and a secondary, e.g. receiving body, mutually connected through an isolator. The isolator includes a spring, a dashpot and an inerter. Inerter is a mechanical device which produces a force proportional to relative acceleration between its terminals. A broadband frequency force excitation of the primary body is imposed throughout the study. The goal of the proposed optimization is to prolong the fatigue life of the ground connecting helical spring of the secondary body. The optimization is based on minimizing separately the displacement and velocity amplitudes. Both optimization criteria are compared with regard to spring fatigue life improvement for fair benchmark comparison. The inerter-based optimized systems, in which the H2 index of the receiving body is minimized, are also compared with the optimized systems without inerter. Notable improvements are observed in inerter-based systems due to the inclusion of an optimally tuned inerter in the isolator. The proposed analytical vibration fatigue method optimization results are compared with the finite element method results, and a very good agreement is observed. Most accurate helical spring deflection and stress correction factors are discussed and determined. Furthermore, the inerter concept is successfully implemented into finite element-based dynamic solution.
机译:本文介绍了两种自由度的振动隔离系统中振动诱导疲劳的优化和数值分析。该系统由主要,例如,源体和次要的,例如,接收体,通过隔离器相互连接。隔离器包括弹簧,DASHPOT和活动。活动是一种机械装置,其产生与其端子之间的相对加速度成比例的力。在整个研究中施加了宽带频率势激发。所提出的优化的目的是延长第二型螺旋螺旋弹簧的地面的疲劳寿命。优化基于单独最小化位移和速度幅度。与公平基准比较的春季疲劳寿命改进进行比较了各种优化标准。还与没有处于优化系统的优化系统相比,基于过程的优化系统,其中接收体的H2索引被最小化。由于在隔离器中包含了最佳调谐的离子,因此在基于过程中观察到了显着的改进。将所提出的分析振动疲劳方法优化结果与有限元方法结果进行比较,观察到非常良好的协议。讨论和确定最精确的螺旋弹簧偏转和应力校正因子。此外,Inerter Concept成功地实现为基于有限元的动态解决方案。

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