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Vibration fatigue study of the helical spring in the base-excited inerter-based isolation system

机译:基于基于基于基于基于基于过程的螺旋弹簧的振动疲劳研究

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The aim of this study is to analytically and numerically model the vibration-induced helical spring fatigue in a generalized vibration isolation system. The system consists of a receiving body and a dynamically active base coupled through a passive isolator. The isolator consists of a coupling helical spring and an inerter. System inherent damping is considered through modal damping. Vibration isolation system is analysed parametrically by varying its corresponding dimensionless coefficients. The coupling helical spring fatigue life extension is used as the isolation quality criterion. Since isolator spring stress and related fatigue life directly correspond to relative displacement between spring terminals, the effect of inerter on relative displacement amplitudes is determined. Novel helical spring stress and deflection correction factors are proposed based on the theory of elasticity and finite element analysis results. The proposed helical spring correction factors are more accurate compared to correction factors available in the current literature, especially when considering very large pitch angles. Fatigue life improvement of considered helical spring is achieved due to introduction of inerter in the isolator system, which is especially evident in the resonant working conditions.
机译:本研究的目的是在广义隔振系统中分析和数值模拟振动引起的螺旋弹簧疲劳。该系统由接收机构和通过被动隔离器耦合的动态有源基座组成。隔离器由连接螺旋弹簧和处于处方组成。通过模态阻尼考虑系统固有阻尼。通过改变其相应的无量纲系数来分析振动隔离系统。联轴器螺旋弹簧疲劳寿命延伸用作隔离质量标准。由于隔离器弹簧应力和相关疲劳寿命直接对应于弹簧端子之间的相对位移,因此确定了处于相对位移幅度的效果。基于弹性理论和有限元分析结果提出了新型螺旋弹簧应力和偏转校正因子。与当前文献中可用的校正因子相比,所提出的螺旋弹簧校正因子更准确,特别是在考虑非常大的俯仰角时。由于在隔离器系统中引入导入,因此实现了被认为螺旋簧的疲劳寿命改善,这在谐振工作条件下特别明显。

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