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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >The development of a triple ball bar system for calibration of CNC machine tools
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The development of a triple ball bar system for calibration of CNC machine tools

机译:开发用于数控机床校准的三重球杆系统

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The accuracy of machine tools restricts the dimensional accuracy of parts processed thereon. It is, therefore, necessary to monitor the errors of machine tools constantly. Normally, it takes a long set-up time before one can observe the machine tool and monitor its errors. The cost of such delays is inevitably high. As for CNC, the conventional measurement system is capable of measuring one-dimensional signals, as a laser interferometer does, and two-dimensional signals, as a grid encoder does. Three-dimensional measurement techniques, however, are far from being well developed and are not yet well known. This paper proposes a triangulation method incorporating three built-in linear-scale ball bars that requires less set-up time and lower costs than the laser ball bar system, and is capable of acquiring three-dimensional signals with greater accuracy with the extension bars, so that large volumes can be checked.
机译:机床的精度限制了在其上加工的零件的尺寸精度。因此,有必要不断监视机床的错误。通常,需要较长的设置时间才能观察机床并监控其错误。这种延误的代价不可避免地很高。对于CNC,常规测量系统能够像激光干涉仪那样测量一维信号,并且像栅格编码器一样能够测量二维信号。但是,三维测量技术远未得到很好的发展,并且尚未广为人知。本文提出了一种三角测量方法,该方法结合了三个内置的线性刻度球杆,与激光球杆系统相比,它需要更少的设置时间和更低的成本,并且能够通过延伸杆获得更高精度的三维信号,这样就可以检查大批量。

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