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High-precision measurement of an involute artefact by a rolling method and comparison between measuring instruments

机译:滚动法高精度测量渐开线文物和测量仪器之间的比较

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摘要

The vibration of gears is a serious problem for machines. The characteristics of the vibration of gears are affected by tooth flank form deviation of submicrometre order. The quality of product gears is controlled by a gear-measuring instrument, which is calibrated by an involute artefact with high precision. A highly precise method for measuring the involute artefact by rolling has been proposed. However, this method does not yield sufficient accuracy. In this research, a novel rolling method for the involute artefact, a 'nonslip driving method', is proposed to achieve high accuracy. This method is compared with the conventional driving method by theoretical analysis of artefact motion. Moreover, its accuracy and effect are evaluated experimentally. The results show that this method is more stable on the basis of measurement results than the conventional driving method. Therefore, it is confirmed that the highly precise measurement of the involute artefact can be realized by incorporating the nonslip driving method into the rolling artefact method. In addition, measurement results for the involute artefact are compared among the proposed method and the methods involving the use of a coordinate measuring machine and a gear-measuring instrument.
机译:齿轮的振动对于机器是一个严重的问题。齿轮振动特性受亚微米级齿面形状偏差的影响。产品齿轮的质量由齿轮测量仪控制,该仪器由渐开线假象进行高精度校准。已经提出了一种用于测量通过滚动的渐开线假象的高精度方法。但是,这种方法不能产生足够的精度。在这项研究中,提出了一种新的渐开线伪影滚动方法,即“防滑驱动方法”,以实现高精度。通过对伪影运动的理论分析,将该方法与常规驱动方法进行了比较。此外,其准确性和效果进行了实验评估。结果表明,根据测量结果,该方法比常规驱动方法更稳定。因此,证实了通过将防滑驱动方法结合到滚动伪影方法中,可以实现对渐开线伪影的高精度测量。此外,在提出的方法与涉及使用坐标测量机和齿轮测量仪的方法之间比较了渐开线伪影的测量结果。

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