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The compliant centrifugal pendulum as the vibration absorber with second-order elasto-kinematic approximation

机译:柔性离心摆片作为具有二阶Elasto-运动学近似的振动吸收器

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摘要

Centrifugal dampers are used to reduce the vibrations and irregularities of motion of rotating parts subjected to torque perturbations. Compliant mechanisms can be used for building compact and simple embodiments of such devices. On the other hand, the elasto-kinematic behaviour of compliant structures requires a more accurate design with respect to standard solutions. The study discusses a methodology for designing compliant centrifugal dampers based on the arrangement of a collection of leaf flexure hinges connecting peripheral masses. The design is based on the equations of motion written under the approximation of an equivalent pseudo-rigid assembly. To preserve accuracy, the pseudo-rigid surrogate model is deduced taking into account second-order kinematic invariants and Euler-Savary equations, thus providing second-order approximation of the relative motion. This strategy combines accuracy and simplicity. The design can benefit from design equations for choosing the dimensions of the flexible links and the weight of the peripheral masses. An example of application is also discussed and a comparison with a flexible multibody model is also presented to demonstrate the accuracy of the proposed methodology.
机译:离心阻尼器用于减少受到扭矩扰动的旋转部件的振动和不规则运动。兼容机制可用于构建此类设备的紧凑且简单的实施例。另一方面,柔顺结构的弹性运动特性要求相对于标准解决方案进行更精确的设计。本研究讨论了一种设计柔性离心阻尼器的方法,该方法基于连接外围质量的叶片柔性铰链的布置。该设计基于在等效伪刚性组件近似下编写的运动方程。为了保持精度,在考虑二阶运动学不变量和Euler-Savary方程的情况下推导了伪刚性代理模型,从而提供了相对运动的二阶近似。这种策略结合了准确性和简单性。该设计可以从选择柔性连杆尺寸和外围质量重量的设计方程中受益。文中还讨论了一个应用实例,并与一个柔性多体模型进行了比较,证明了该方法的准确性。

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