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首页> 外文期刊>Journal of vibration and control: JVC >Optimization of damped dynamic vibration absorber to control chatter in metal cutting process
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Optimization of damped dynamic vibration absorber to control chatter in metal cutting process

机译:阻尼动态减振器的优化,以控制金属切削过程中的震颤

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摘要

This paper deals with finding the optimum parameters of a damped dynamic vibration absorber (DVA) to control chatter in metal cutting systems. The performance of conventional damped DVA is compared with the proposed skyhook damper in which the damper of the absorber system is connected between the absorber mass and an inertial reference in the sky, referred to as a skyhook damper. The damped DVA is optimized by reducing the magnitude in the positive side and increasing it in the negative side of the real part of the frequency response function of the main system. The optimum frequency ratio and the damping ratio of the damped DVA for the undamped and damped main system are obtained using analytical solutions and a numerical optimisation technique, viz genetic algorithm, respectively. The performance of the proposed skyhook damper is marginally better than the conventional type of damped DVA in controlling the vibration of the main system. This is verified by analyzing both the proposed and conventional models using finite element method-based commercial software ANSYS.
机译:本文致力于寻找阻尼动态减振器(DVA)的最佳参数,以控制金属切削系统中的震颤。将传统阻尼DVA的性能与建议的天钩阻尼器进行了比较,在天钩阻尼器中,吸收器系统的阻尼器连接在吸收器质量和天空中的惯性参考之间,称为天钩阻尼器。通过减小主系统频率响应函数实部正值的幅度并增加其负值的幅度来优化阻尼DVA。分别使用解析解和数值优化技术(即遗传算法)获得了无阻尼主系统和阻尼主系统的最佳DVA频率比和最佳阻尼比。在控制主系统的振动方面,所提出的天钩阻尼器的性能略优于传统类型的阻尼DVA。通过使用基于有限元方法的商业软件ANSYS分析提议的模型和常规模型,可以验证这一点。

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