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On Programming for NC Grinding of Grooved Cam with Discretional Plane Curve Profile

机译:任意平面曲线轮廓的坡口凸轮数控磨削程序设计

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In grinding of grooved cam, the programming for NC machining can't directly be accomplished according to track curve of roller center in working drawing because the diameter of wheel becomes smaller than diameter of cam's follower roller after wheel dressing. Track curves of wheel center are equidistant curves of the track curve of roller center and they can be gained by equidistant offset. But track curves of wheel center can't be gained by equidistant offset for grooved cam with discretional plane curve profile, due to the profile including aspheric curves whose equations are usually unknown. To solve above problem, circular arc approximation for the aspheric curve part was realized by using Approximate Double Circular Arc Interpolated Method (ADCAIM), then equidistant offset of circular arcs was carried out by "offset" way, and consequently track curves designed for wheel center of any diameter can expediently be gained on AutoCAD platform. Validation experiment of simulation grinding was fulfilled on a NC milling machine. The experiment results indicate: it is feasible to NC grind grooved cam with discretional plane curve profile using the method introduced in this paper for the example.
机译:在沟槽凸轮的磨削中,由于砂轮修整后砂轮的直径变得小于凸轮从动辊的直径,因此无法直接根据工作图中的辊中心轨迹曲线来完成NC加工的编程。轮心的轨迹曲线是滚子中心的轨迹曲线的等距曲线,可以通过等距偏移量获得。但是,具有任意平面曲线轮廓的带槽凸轮的等距偏移无法获得轮距的轨迹曲线,这是因为该轮廓包括非球面曲线,其方程通常是未知的。为了解决上述问题,采用近似双圆弧插补法(ADCAIM)实现了非球面曲线部分的圆弧近似,然后通过“偏移”的方式进行了等距圆弧的偏移,从而设计出了用于轮心的轨迹曲线。在AutoCAD平台上可以方便地获得任何直径。在数控铣床上完成了模拟磨削的验证实验。实验结果表明:以本文介绍的方法为例,采用任意平面曲线轮廓数控磨削沟槽凸轮是可行的。

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