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A new error measurement method to identify all six error parameters of a rotational axis of a machine tool

机译:一种新的误差测量方法,可识别机床旋转轴的所有六个误差参数

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This paper presents a new error measurement method, a Dual Optical Path Measurement Method (DOPMM), to identify error parameters of the rotational axis of a machine tool along its error sensitive directions. The method development was carried out on a motorized rotary stage equipped with a Doppler laser instrument. An error measurement experiment and a machining experiment were conducted on a five-axis machining center with a titling rotary table. It was found that the DOPMM can identify all of the six volumetric error parameters with the simple algebraic operations. Compared with the existing ball bar tests, which need a mathematical error modeling of machine tools to separate the error parameters, the identified process of DOPMM is more simple and easier to understand. And the operation of machine tools during the measurement is much easier than that of the existing ball bar tests. The experimental results showed that the part precision can have a significant improvement of 68% when the identified error parameters are used for error compensation. Hence, the measurement method established in this study is sensible and efficient, and could be used for the error compensation on a wide range of machine tools to improve their machining precision. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新的误差测量方法,即双光路测量方法(DOPMM),用于识别机床旋转轴沿其误差敏​​感方向的误差参数。该方法的开发是在配备有多普勒激光仪器的电动旋转平台上进行的。在带有倾斜转盘的五轴加工中心上进行了误差测量实验和加工实验。发现DOPMM可以通过简单的代数运算识别所有六个体积误差参数。与现有的球杆测试相比,现有的球杆测试需要机床的数学误差建模来分离误差参数,因此DOPMM的识别过程更加简单易懂。测量期间机床的操作比现有的球杆测试容易得多。实验结果表明,当使用识别出的误差参数进行误差补偿时,零件精度可以显着提高68%。因此,本研究建立的测量方法是合理而有效的,可用于多种机床的误差补偿,以提高其加工精度。 (C)2014 Elsevier Ltd.保留所有权利。

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