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Design of piezo-based AVC system for machine tool applications

机译:基于压电的机床AVC系统设计

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摘要

The goal of machine tools for Ultra High Precision Machining is to guarantee high specified performances and to maintain them over life cycle time. In this paper the design of an innovative mechatronic subsystem (platform) for Active Vibration Control (AVC) of Ultra High Precision micromilling Machines is presented. The platform integrates piezoelectric stack actuators and a novel sensor concept. During the machining process (e.g. milling), the contact between the cutting tool and the work-piece surface at the tool tip point generates chattering vibrations. Any vibration is recorded on the workpiece surface, directly affecting its roughness. Consequently, uncontrolled vibrations lead to poor surface finishing, unacceptable in high precision milling. The proposed Smart Platform aims to improve the surface finishing of the workpiece exploiting a broadband AVC strategy. The paper describes the steps throughout the design phase of the platform, beginning from the actuator/sensor criteria selection taking into account both performance and durability. The novel actuation principle and mechanism and the related FE analysis are also presented. Finally, an integrated mechatronic model able to predict in closed-loop the active damping and vibration-suppression capability of the integrated system is presented and simulation results are discussed.
机译:用于超高精度加工的机床的目标是保证高规定的性能并在整个生命周期内维持它们。在本文中,提出了一种用于超高精度微铣削机主动振动控制(AVC)的创新型机电一体化子系统(平台)的设计。该平台集成了压电堆栈致动器和新颖的传感器概念。在加工过程中(例如铣削),切削刀具与工件表面在刀具尖端点的接触会产生颤动振动。任何振动都会记录在工件表面上,直接影响其粗糙度。因此,不受控制的振动会导致不良的表面光洁度,这在高精度铣削中是无法接受的。拟议的智能平台旨在利用宽带AVC策略来改善工件的表面光洁度。本文介绍了平台设计阶段的各个步骤,从考虑性能和耐用性的执行器/传感器标准选择开始。提出了新颖的驱动原理和机理以及相关的有限元分析。最后,提出了一种能够在闭环中预测集成系统的主动阻尼和振动抑制能力的集成机电一体化模型,并讨论了仿真结果。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2013年第1期|53-65|共13页
  • 作者单位

    Department of Mechanical and Industrial Engineering, University of Brescia, Via Branze, 38, 25123 Brescia, Italy;

    Katholieke Universitiet Leuven - PMA Div., Celestijnenlaan 300B, BE-3001 Heverlee, Belgium;

    Fraunhofer-lnstitut fuer Silicatforschung ISC, Neunerplatz, 2, D-97082 Wuerzburg, Germany;

    Katholieke Universitiet Leuven - PMA Div., Celestijnenlaan 300B, BE-3001 Heverlee, Belgium;

    Department of Mechanical and Industrial Engineering, University of Brescia, Via Branze, 38, 25123 Brescia, Italy;

    CE.S.I. Centra Studi Industriali, Via Tintoretto 10, 20093 Cologne M.se, Italy;

    CE.S.I. Centra Studi Industriali, Via Tintoretto 10, 20093 Cologne M.se, Italy;

    Fundacion Tecnalia Research & Innovation, Paseo Mikeletegi, 7 - Parque Tecnologico, E-20009 San Sebastian, Spain;

    CE.S.I. Centra Studi Industriali, Via Tintoretto 10, 20093 Cologne M.se, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Piezoelectric stack actuator; Active vibration control; Machine tool; Robust design;

    机译:压电堆栈致动器;主动振动控制;机床;坚固的设计;

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