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A precision generating grinding method for face gear using CBN wheel

机译:CBN砂轮精加工平面齿轮的精加工方法

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摘要

In order to improve the machining accuracy and production efficiency of face gear, a generating grinding method for face gear using cubic boron nitride (CBN) wheel is studied in this paper. The mathematical model of the CBN wheel profile is derived based on face gear grinding principle and theory of gearing. Taking the demands of machine motion during face gear grinding into account, a five-axis face gear grinding machine is developed. Then, the mathematical model of the ground face gear and the grinding method are proposed based on the structure of the machine. For reducing the face gear tooth profile errors induced by installation errors, an error analysis model of face gear grinding is established; the effects of installation errors on tooth profile errors are analyzed. The CBN wheel was manufactured, and the grinding experiments were performed on the self-developed grinding machine. The processing parameters of face gear grinding were amended according to the tooth flank measurement results obtained from coordinate measuring machine. The ground tooth profile deviation was reduced significantly after processing parameters amendment. Experiment results demonstrate that the generating grinding method is an effective approach to achieve the precision grinding of face gear.
机译:为了提高端面齿轮的加工精度和生产效率,本文研究了一种立方立方氮化硼(CBN)轮的端面齿轮生成磨削方法。基于平面齿轮磨削原理和齿轮理论推导了CBN轮廓的数学模型。考虑到平面齿轮磨削中的机械运动要求,开发了一种五轴平面齿轮磨削机。然后,根据机床的结构,提出了齿面齿轮的数学模型和磨削方法。为减少安装误差引起的端面齿轮齿廓误差,建立了端面齿轮磨削误差分析模型。分析了安装误差对齿廓误差的影响。制造了CBN砂轮,并在自行开发的磨床上进行了磨削实验。根据从坐标测量机获得的齿面测量结果,修改了平面齿轮磨削的加工参数。修改加工参数后,磨齿轮廓偏差显着降低。实验结果表明,生成磨削方法是实现平面齿轮精磨的有效方法。

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