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The Installation Eccentricity Error Compensation Technology for Gear Based on CNC Gear Measuring Center

机译:基于CNC齿轮测量中心的齿轮安装偏心误差补偿技术

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In order to decrease the influence of installation eccentricity on gear error evaluation and to raise its accuracy, a compensation algorithm for installation eccentricity is proposed and a compensation model of installation eccentricity is established. A new installation eccentricity parameter identification method determined with involute equations is also raised. Installation Eccentricity parameters are gained through measuring points on involute profile with the method of unconstrained parameter identification. Taking involute profile evaluation as an example, the eccentricity compensation model is introduced into the error evaluation of CNC Gear Measuring Center. The experiment shows that the compensation model raised in this paper can compensate for evaluation results of the involute gear whose eccentricity value is within 2/3 of the total measurement range of the probe and lead it into the non-eccentricity condition, and the most installation eccentricity value that can be compensated in the experiment is 300 μm. The proposition of this compensation method not only improves the accuracy of gear evaluation, but also lowers the requirements on installation accuracy of the gear.
机译:为了减少安装偏心对齿轮误差评估的影响并提高其精度,提出了一种安装偏心的补偿算法,建立了安装偏心的补偿模型。还提出了一种新的安装偏心参数识别方法,也提出了渐开线等式。通过渐开线概况的测量点来获得安装偏心参数,其具有无限制参数识别方法。以渐开心的简介评估为例,偏心补偿模型被引入CNC齿轮测量中心的误差评估。该实验表明,本文提出的补偿模型可以补偿偏心齿轮的偏心齿轮的评估结果,其偏心值在探头的总测量范围的2/3内,并将其引入非偏心条件,以及最多的安装可以在实验中补偿的偏心值为300μm。该补偿方法的命题不仅提高了齿轮评估的准确性,而且还降低了齿轮安装精度的要求。

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