金属切削设备几何精度对omv技术精度的影响评价

A. G. Koltsov, D. Blokhin, E. Krivonos, A. N. Narezhnev
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引用次数: 3

摘要

本文直接讨论了提高金属切削机床控制精度的细节问题。本文考虑了机床精度的指标,提高机床精度的一些途径,阐述了减少误差的方法。考虑了金属切削设备功能诊断的方法,即工作体定位的参数验证,以保持机器上omv技术的潜力。研究的目的是利用数理统计方法评估测量的精度取决于机器动力学,特别是在探测进给速度和机床的几何精度。在PowerInspect OMV机床上直接测量和在嵌入式软件坐标测量机上进行了两次测试。在机器设置前后进行了类似的测试。机床上的零件测量进给速率对测量结果的影响是确定的,当进给速率增大时,测量偏差率较小。通过将位置公差减少2倍,测量精度提高3倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence assessment of metal-cutting equipment geometrical accuracy on OMV-technologies accuracy
The paper presents the issue of improvement control accuracy details directly on metal cutting machine tools. The paper considers indicators of the accuracy of machine tools, certain ways to increase the accuracy of machine tools, describes the methods of reducing errors. Approaches to metal cutting equipment functional diagnostics are considered, namely the parameters verification of a working body positioning to maintain potential of OMV-technologies on a machine. The research objective is to assess the accuracy of measurement depending on machine dynamics specifically on the probing feed rate and the geometrical accuracy of the machine tool using mathematical statistics methods. The test specimina measurements were performed twice: directly on a machine tool with PowerInspect OMV and on embedded software coordinate measurement machine. The similar test was performed before and after machine setting. The component measurement feed rate on a machine tool was determined to affect the results of measurement, and the deviation rate is less at the feed rate being increased. By reducing the position tolerance by a factor of 2, the measurement accuracy is increased by a factor of 3.
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