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An evaluation method of gear profile deviations based on the consideration of installation errors

机译:基于安装误差的考虑因素的齿轮轮廓偏差评估方法

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摘要

Gear elemental deviations, such as profile deviations, are important items for gear accuracy evaluation and generally measured on a Gear Measurement Center or Coordinate Measuring Machine. There are installation errors when the gear installed on the shaft positioned in the center before measurement. Therefore, the evaluation method of gear profile deviations considering installation errors was introduced to measure gear profile deviations without the precise adjustment of installation errors in the study. In this method, installation errors were described as the installation eccentricity error and the installation wobbling error. Then, the installation error model, the coordinate transformation model and the tooth profile deviation evaluation method were established. The gear base circle center was calculated with the tooth profile measurement points. Then, the tooth profile measurement points under the machine coordinate system were transformed into the coordinates in the work-piece coordinate system. After that, the profile deviations were evaluated according to ISO 1328-1:2013. The measurement experiments were carried out on a gear measurement center under different installation errors. The application scope of the method was discussed by simulation. The range of the total profile deviation obtained with this method was 0.51 mu m under four groups of the installation conditions, whereas the value obtained with GMC was 3.17 mu m. Experimental results showed that this method could significantly decrease the influence of installation errors for measuring gear profile deviations under the rough positioning conditions of product gears. (C) 2019 Elsevier Ltd. All rights reserved.
机译:齿轮元素偏差(例如轮廓偏差)是用于齿轮精度评估的重要项目,并且通常在齿轮测量中心或坐标测量机上测量。当在测量前安装在中心的轴上时,有安装错误。因此,引入了考虑安装误差的齿轮轮廓偏差的评估方法,以测量齿轮轮廓偏差,而无需精确调整该研究中的安装误差。在此方法中,将安装错误描述为安装偏心误差和安装摆动错误。然后,建立了安装错误模型,坐标变换模型和牙齿轮廓偏​​差评估方法。齿轮基圈中心用齿轮廓测量点计算。然后,将机器坐标系下的牙齿轮廓测量点变换为工作件坐标系中的坐标。之后,根据ISO 1328-1:2013评估轮廓偏差。在不同的安装误差下在齿轮测量中心进行测量实验。通过模拟讨论了该方法的应用范围。通过该方法获得的总轮廓偏差的范围在安装条件的四组中为0.51μm,而使用GMC获得的值为3.17μm。实验结果表明,该方法可以显着降低安装误差在产品齿轮粗定位条件下测量齿轮轮廓偏差的影响。 (c)2019年elestvier有限公司保留所有权利。

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