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Design of tuned mass dampers incorporating wire rope springs: Part I: Dynamic representation of wire rope springs

机译:包含钢丝绳弹簧的调谐质量阻尼器的设计:第一部分:钢丝绳弹簧的动态表示

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Two mathematical models for describing the effective stiffness and the equivalent viscous damping ratio of wire rope springs, as amplitude dependent, were developed. Twenty-four springs were tested in free vibration and the displacement decays were recorded. The free vibration time history was used to calculate the effective stiffness and the equivalent viscous damping ratio. For each displacement amplitude, the effective stiffness was determined from the observed period of vibration. The equivalent viscous damping ratio was determined from the logarithmic decrement of the velocity between the points of zero potential energy. The proposed models are semi-empirical in nature and require no testing since all parameters are fully determined from the physical properties of springs.
机译:建立了两个数学模型来描述钢丝弹簧的有效刚度和等效粘性阻尼比,这取决于振幅。在自由振动下测试了二十四个弹簧,并记录了位移衰减。自由振动时间历史用于计算有效刚度和等效粘性阻尼比。对于每个位移幅度,根据观察到的振动周期确定有效刚度。根据零势能点之间速度的对数递减确定等效粘性阻尼比。所提出的模型本质上是半经验的,并且不需要测试,因为所有参数都是由弹簧的物理特性完全确定的。

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