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Mathematical Model for Assessing the Accuracy of Processed Gears on Gear Shaping Machines

机译:用于评估齿轮成型机上加工齿轮精度的数学模型

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This paper examines the impact of the geometric and kinematic errors of gear shaping machines for the accuracy of processed wheels. There is a problem to establish a correlation between the errors of the technological system with the gear accuracy parameters defined by standards. In this article, the equation of the machined surface is proposed based on the coordinate transformation matrices and equations of involute surface of the tool in the form of a matrix equation. On the basis of this equation the machine output precision is given in the form of matrix equation. The impact of errors of the technological system elements is displayed by a matrix of variations, components of which are the projection of errors on the axis. Output errors are applied on the machined surface via the projection on the line of action. Next, the obtained values are translated into a standardized deviation of the gear accuracy. This enables forecasting the possibility of obtaining the products of certain accuracy on this machine, as well as to control the specific parameters of the technological system to ensure the accuracy and stability of the process.
机译:本文研究了齿轮成形机的几何和运动误差的影响,以便加工轮的精度。存在一个问题,可以在具有标准定义的齿轮精度参数之间建立技术系统的误差之间的相关性。在本文中,基于矩阵方程的形式基于坐标变换矩阵和工具的渐开线表面的坐标变换矩阵和方程来提出加工表面的等式。在该等方程的基础上,机器输出精度以矩阵方程的形式给出。通过变型矩阵显示技术系统元素的误差的影响,其部件是轴上的误差的投影。输出误差通过在动作线上的投影上施加在加工表面上。接下来,所获得的值被翻译成换档精度的标准化偏差。这使得能够预测获得本机上某些精度的产品的可能性,以及控制技术系统的特定参数,以确保该过程的准确性和稳定性。

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