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首页> 外文期刊>Materials Research >Vibration Control Using Multilayer Piezoelectric Actuators: Towards Chatter Supression in Turning Operations
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Vibration Control Using Multilayer Piezoelectric Actuators: Towards Chatter Supression in Turning Operations

机译:采用多层压电执行器的振动控制:在转动操作中倒塌抑制

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摘要

Chatter causes poor surface quality and damage to tools in machining. Therefore, strategies for chatter monitoring and reduction are constantly under investigation. Among these strategies, the use of piezoelectric layers embedded in the tool-holder as sensors/actuators for control strategies had been proposed for improving the stability limit reducing the system vibration. Nevertheless, actuators implemented using a single piezoelectric layer may fail to suppress chatter due to its limited actuation power. A method for assembling a series multilayer piezoelectric actuator is then proposed, which can provide a better performance and ultimately suppress chatter in turning operations. This actuator is used with passive and active control and the system response is investigated using frequency response functions. Two fixation conditions are tested to analyze the robustness of the control strategies. The results show that the use of a multilayer piezoelectric actuator made it possible for a greater reduction in vibration amplitude in the chatter frequency.
机译:Chatter会导致表面质量差和加工工具损坏。因此,喋喋不休的监测和减少的策略是不断调查的。在这些策略中,已经提出了使用嵌入工具保持器中的压电层作为用于控制策略的传感器/致动器,以改善减少系统振动的稳定性极限。然而,使用单个压电层实现的致动器可能由于其有限的致动电力而无法抑制颤动。然后提出了一种组装系列多层压电致动器的方法,其可以提供更好的性能和最终抑制转动操作的喋喋不休。该执行器与被动和主动控制一起使用,使用频率响应函数来研究系统响应。测试了两个固定条件以分析控制策略的稳健性。结果表明,使用多层压电致动器使得在颤振频率中的振动幅度变得更低。

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