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Reducing undesirable vibrations of planar linkage mechanism with joint clearance

机译:减少平面连杆机制的不希望的振动,具有关节间隙

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摘要

An optimization design method is presented to reduce the undesirable vibrations caused by clearance for planar linkage mechanism. A clearance joint is defined and considered a contact/impact force constraint. Contact and impact force models for the clearance joint are established using a normal contact force model based on Hertz model with energy loss and a tangential friction model based on modified Coulomb model with dynamic friction coefficient, respectively. In view of the clearance joint, dynamic equations and optimization method for a planar four-bar mechanism are then presented as an application example. The optimization aims to minimize the maximum absolute acceleration peaks of the mechanism by determining the link lengths of the planar linkage mechanism. Finally, the optimization design is solved by a generalized reduced gradient algorithm. Results show evident decrease in vibration peaks of the mechanism and obvious reduction in the contact forces in the clearance joint, which contribute to a good performance of planar linkage mechanism systems.
机译:提出了优化设计方法以减少由平面连杆机制的间隙引起的不希望的振动。清关接头被定义并考虑接触/冲击力约束。基于赫兹模型的正常接触力模型,基于动态摩擦系数的改良库仑模型,使用基于赫兹模型的正常接触力模型建立了间隙接头的接触和冲击力模型。鉴于间隙接头,然后将平面的动态方程和优化方法作为应用示例呈现。优化旨在通过确定平面连杆机构的连杆长度来最小化机构的最大绝对加速峰。最后,通过广义减少梯度算法解决了优化设计。结果表明,间隙接头中的机构振动峰的显着降低,可促进平面连杆机制系统的良好性能。

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