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Tooth error analysis and control of internal helical gear form grinding

机译:内斜齿轮齿形磨齿误差分析与控制

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In order to improve the tooth profile accuracy, main factors causing tooth error were analyzed by means of numerical simulation. Based on the principle of internal helical gear form grinding, it was known that the tooth error had much to do with the axial-section shape of form grinding wheel and the installation position of grinding wheel relative to the gear to be ground. Firstly, the mathematical model of internal helical gear form grinding was established, and the form wheel profile was determined through solving the contact equations of grinding wheel and tooth space. Then according to the wheel profile, the tooth profile at the end face of gear was found by means of the numerical imitation method. Taking the installation angle error AS, center distance error Aa, tangential position error Ay0 and other factors into account, and combining specific example, the tooth error caused by AE, Aa, Ay0 etc. was simulated and analyzed respectively. The error analysis method is helpful to finding the primary reason for tooth error and providing the basis for setting gear grinding machine correctly.
机译:为了提高齿廓精度,通过数值模拟分析了引起齿误差的主要因素。根据内斜齿轮齿形磨削的原理,已知齿形误差与齿形砂轮的轴向截面形状以及砂轮相对于要磨削齿轮的安装位置有很大关系。首先,建立了内斜齿轮齿形磨削的数学模型,并通过求解砂轮与齿距的接触方程,确定了齿形轮廓。然后根据车轮轮廓,通过数值模拟方法找到齿轮端面的齿轮廓。考虑到安装角度误差AS,中心距误差Aa,切向位置误差Ay0等因素,并结合具体实例,分别对AE,Aa,Ay0等引起的齿形误差进行了仿真分析。误差分析方法有助于找出引起齿误差的主要原因,并为正确设置齿轮磨床提供依据。

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