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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >On-machine measurement of location errors on five-axis machine tools by machining tests and a laser displacement sensor
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On-machine measurement of location errors on five-axis machine tools by machining tests and a laser displacement sensor

机译:通过机械测试和激光位移传感器在机上测量五轴机床上的位置误差

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摘要

This paper proposes an on-machine measurement (OMM) of all location errors on five-axis machine tools. Five machining patterns are successively performed on a cubic workpiece. The basic idea is to use a set of large rotations of rotary axes to prolong the moving distance of linear axes when squareness errors of linear axes are identified. Then, a set of small rotations of rotary axes are used to decouple the squareness errors of linear and rotary axes. Based on this, the long and deep slots in previous machining tests are improved to be a set of short and shallow ones. These miniaturized slots reduce the material removal and minimize the influence of cutting force and thermal deformation on the measuring results. Then the cutting tool is substituted by a laser displacement sensor (LDS) to measure the mismatch between the finished surfaces of the corresponding slots. All the measured surfaces are located on the bottom of the slots to fit the LDS characteristic of one dimensional measurement. Three gestures of the rotary table and tilting head are used to implement the single-setup OMM and the influence of location errors on the measuring results is compensated. Validation of the identified values is also provided by a set of simple tests using different measuring instruments. The efficiency and accuracy of location errors measurement method on five-axis machine tools are improved. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了对五轴机床上所有位置误差的在线测量(OMM)。在一个立方体工件上连续执行五个加工模式。基本思想是,在识别线性轴的垂直度误差时,使用一组旋转轴的大旋转来延长线性轴的移动距离。然后,使用一组旋转轴的小旋转来解耦线性轴和旋转轴的矩形度误差。基于此,以前的加工测试中的长槽和深槽被改进为一组短槽和浅槽。这些微型槽减少了材料的去除,并使切削力和热变形对测量结果的影响最小化。然后,将切割工具替换为激光位移传感器(LDS),以测量相应槽的精加工表面之间的不匹配。所有测量的表面都位于插槽的底部,以适合一维测量的LDS特性。旋转工作台和倾斜头的三个手势用于实现单设置OMM,并且可以补偿位置误差对测量结果的影响。通过使用不同测量仪器进行的一组简单测试,还可以提供对所标识值的验证。提高了五轴机床位置误差测量方法的效率和准确性。 (C)2015 Elsevier Ltd.保留所有权利。

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