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Vibration absorbers for chatter suppression: A new analytical tuning methodology

机译:用于抑制颤振的振动吸收器:一种新的分析调整方法

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摘要

Vibration absorbers have been widely used to suppress undesirable vibrations in machining operations, with a particular emphasis on avoiding chatter. However, it is well known that for vibration absorbers to function effectively their stiffness and damping must be accurately tuned based upon the natural frequency of the vibrating structure. For general vibration problems, suitable tuning strategies were developed by Den Hartog and Brock over 50 years ago. However, the special nature of the chatter stability problem means that this classical tuning methodology is no longer optimal. Consequently, vibration absorbers for chatter mitigation have generally been tuned using ad hoc methods, or numerical or graphical approaches. The present article introduces a new analytical solution to this problem, and demonstrates its performance using time domain milling simulations. A 40-50% improvement in the critical limiting depth of cut is observed, compared to the classically tuned vibration absorber. © 2006 Elsevier Ltd. All rights reserved.
机译:减振器已被广泛用于抑制加工操作中不希望的振动,特别强调避免振动。然而,众所周知,为了使减振器有效地起作用,必须基于振动结构的固有频率来精确地调节其刚度和阻尼。对于一般的振动问题,Den Hartog和Brock于50年前开发了合适​​的调整策略。但是,颤振稳定性问题的特殊性质意味着这种经典的调谐方法不再是最优的。因此,通常已经使用特设方法或数字或图形方法对用于减轻颤振的减振器进行了调整。本文介绍了针对此问题的一种新的解析解决方案,并使用时域铣削仿真演示了其性能。与经典调谐的减震器相比,观察到的临界极限切削深度提高了40-50%。 ©2006 Elsevier Ltd.保留所有权利。

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    Sims N.D.;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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