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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Modeling and compensation of volumetric errors for five-axis machine tools
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Modeling and compensation of volumetric errors for five-axis machine tools

机译:五轴机床的体积误差建模和补偿

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摘要

This article proposes a method to measure, model and compensate both geometrically dependent and independent volumetric errors of five-axis, serial CNC machine tools. The forward and inverse kinematics of the machine tool are modeled using the screw theory, and the 41 errors of all 5 axes are represented by error motion twists. The component errors of translational drives have been measured with a laser interferometer, and the errors of two rotary drives have been identified with ballbar measurements. The complete volumetric error model of a five-axis machine has been modeled in the machine's coordinate system and proven experimentally. The volumetric errors are mapped to the part coordinates along the tool path, and compensated using the kinematic model of the machine. The compensation strategy has been demonstrated on a five-axis machine tool controlled by an industrial CNC with a limited freedom, as well as by a Virtual CNC which allows the incorporation of compensating all 41 errors. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种测量,建模和补偿五轴串行CNC机床的几何相关和独立体积误差的方法。使用丝杠理论对机床的正向和反向运动学进行建模,并通过误差运动扭曲表示所有5个轴的41个误差。平移驱动器的组件误差已使用激光干涉仪进行了测量,两个旋转驱动器的误差已通过球杆仪测量进行了识别。五轴机床的完整体积误差模型已在机床的坐标系中建模,并经过实验验证。体积误差沿着刀具路径映射到零件坐标,并使用机床的运动学模型进行补偿。补偿策略已在由具有有限自由度的工业CNC控制的五轴机床以及允许合并补偿所有41个误差的虚拟CNC上演示。 (C)2015 Elsevier Ltd.保留所有权利。

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