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A five-axis CNC machining method of orthogonal variable transmission ratio face gear

机译:正交变传动比端面齿轮的五轴数控加工方法

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In order to verify the validity of the design for the orthogonal variable transmission ratio face gear pair, a five-axis CNC machine tool was used to machine this gear. The cutter tooth profile coordinate system, orthogonal variable ratio face gear machining coordinates, the model for the round-corner at tooth tip, the contact line model and CNC machining models were established by using space gear meshing theory and the machining principle of five-axis CNC machine tools. The method of machining this gear along the contact line has been obtained through the combination of the envelope method and milling principle. Cutter tooth profile equations, coordinate transformation matrices between the non-circular gear tooth surface and orthogonal variable transmission ratio gear tooth surface, transition surface equations and five-axis motion equations were derived. The rolling experiment and tooth surface measurement experiment were conducted on the gear, which was processed by a five-axis CNC machine. The results show that the tooth surface accuracy of the orthogonal variable transmission ratio face gear is high. The design of the orthogonal variable transmission ratio face gear, and its processing method using a five-axis NC machine have been verified.
机译:为了验证正交可变传动比端面齿轮对设计的有效性,使用了五轴CNC机床对该齿轮进行机械加工。利用空间齿轮啮合理论和五轴加工原理,建立了刀具齿廓坐标系,正交变比端面齿轮加工坐标,齿尖圆角模型,接触线模型和CNC加工模型。数控机床。通过包络线法和铣削原理相结合,获得了沿接触线加工该齿轮的方法。推导了刀具齿廓方程,非圆齿轮齿面与正交变传动比齿轮齿面之间的坐标变换矩阵,过渡面方程和五轴运动方程。在齿轮上进行了滚动实验和齿面测量实验,并通过五轴数控机床对其进行了加工。结果表明,正交变传动比端面齿轮的齿面精度较高。验证了正交变传动比端面齿轮的设计及其使用五轴数控机床的加工方法。

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