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GEAR COORDINATE MEASUREMENT ONBOARD CNC MACHINE WITH TOUCH-TRIGGER PROBE

机译:带有触发式测头的齿轮坐标测量机载数控机床

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摘要

Performing gear coordinate measurement on-board multi-axis CNC machines is not just feasible but potentially offers several benefits. For the operation to yield valid results, two critical issues must be addressed: 1) how to convert the machine coordinates resulted from touch-trigger probes to gear tooth deviations, and 2) how to minimize the impact of system errors on measurement accuracy. Serving as measurement references is a grid-net of points on the gear tooth numerically determined from the tooth surface equations. A touch-trigger probe with spherical stylus is considered as having directionally variable effective radius. The multi-axis CNC machine is modeled as a two-branched linkage. The probing system comprised of the probe, the gear, the CNC machine and a referencing sphere forms two closed kinematic chains. Equations of closure are derived which define the mapping between machine coordinates and Cartesian coordinates. Forward and inverse kinematic solutions are obtained for determining the probe stylus effective radius, measuring the gear and evaluating gear tooth deviations. Measurement accuracy is maximized to approach the repeatability of the probing system by means of minimizing the number of moving machine axes for probing and dynamic determination of the effective stylus radius. The methods are presented with the example of measuring face gears on a 6-axis CNC machine.
机译:在车载多轴CNC机床上执行齿轮坐标测量不仅可行,而且还可能带来许多好处。为了获得有效结果,必须解决两个关键问题:1)如何将触发式测头产生的机器坐标转换为齿轮齿偏差,以及2)如何最大程度地减少系统误差对测量精度的影响。用作测量参考的是齿轮齿上的点的网格,该点是通过齿面方程数值确定的。具有球形触针的触发式测头被认为具有方向可变的有效半径。多轴CNC机床建模为两分支联动。由测头,齿轮,CNC机床和参考球组成的探测系统形成两个闭合的运动链。得出闭合方程,该方程定义了机器坐标和笛卡尔坐标之间的映射。获得正向和反向运动学解决方案,以确定测针的有效半径,测量齿轮并评估齿轮齿偏差。通过最小化用于探测和动态确定有效测针半径的移动机器轴的数量,可以最大程度地提高测量精度以接近探测系统的可重复性。以在6轴CNC机床上测量端面齿轮的示例介绍了这些方法。

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