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Mathematical Model of Helical Gear Topography Measurements and Tooth Flank Errors Separation

机译:螺旋齿轮形貌测量数学模型和牙齿侧翼误差分离

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摘要

During large-size gear topological modification by form grinding, the helical gear tooth surface geometrical shape will be complex and it is difficult for the traditional scanning measurement to characterize the whole tooth surface. Therefore, in order to characterize the actual tooth surfaces, an on-machine topography measurement approach is proposed for topological modification helical gears on the five-axis CNC gear form grinding machine that can measure the modified gear tooth deviations on the machine immediately after grinding. Combined with gear form grinding kinematics principles, the mathematical model of topography measurements is established based on the polar coordinate method. The mathematical models include calculating trajectory of the centre of measuring probe, defining gear flanks by grid of points, and solving coordinate values of topology measurement. Finally, a numerical example of on-machine topography measurement is presented. By establishing the topography diagram and the contour map of tooth error, the tooth surface modification amount and the tooth flank errors are separated, respectively. Research results can serve as foundation for topological modification and tooth surface errors closed-loop feedback correction.
机译:期间由形式磨削大齿轮拓扑变形例中,螺旋齿轮齿面形状几何将是复杂的,并且难以对传统扫描测量来表征整个牙齿表面。因此,为了表征实际牙齿表面,一种在机器上形貌测量方法,提出了拓扑修改斜齿轮五轴CNC齿轮形式磨床,可以在研磨后立即测量所述机器上的变位齿轮齿的偏差上。与齿轮形式磨削运动学原理相结合,形貌测量的数学模型,基于极坐标的方法。该数学模型包括计算测量探头,由点的网格限定齿轮齿面的中心的轨迹,和解决坐标拓扑测量的值。最后,在机形貌测量的数值例子。通过建立地形图和齿误差的等值线图,在牙齿表面改性量和齿侧面误差分别分离。研究成果可以作为拓扑修改和齿面误差的闭环反馈校正的基础。

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