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The Research of the Non-circular Contour Grinding Speed Optimization and NC Programming

机译:非圆形轮廓研磨速度优化和数控编程的研究

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摘要

In non-circular contour grinding process, a theoretical model of constant linear velocity grinding has been established based on the X-C Axis linkage motion principle of grinding machine. Based on this theoretical model, a numerical calculation model, which can be used for practical grinding process and can optimize and regulate the grinding speed, has be built by way of cubic spline fitting interpolation method. The calculated numerical result of this model can switch into NC code of some NC system. According to the motion principle of grinding machine, the geometry information of specific non-circle contour part and the real parameter of the grinding processing plan, the corresponding NC Programming function also has been modularized. An experiment has been done on the NC high speed camshaft grinding machine type of CNC8312A, and obtained the ideal processing effect. At the same time, it also shows that the proposed method has strong practical feasibility and great practical value.
机译:在非圆形轮廓研磨过程中,基于研磨机的X-C轴线连杆运动原理建立了恒定线性速度研磨的理论模型。 基于该理论模型,一种数值计算模型,可用于实际研磨过程,可以通过立方样条拟合插值方法构建。 该模型的计算数值结果可以切换到某些NC系统的NC码。 根据研磨机的运动原理,特定非圆形轮廓部分的几何信息和研磨处理计划的实际参数,相应的NC编程功能也已经模块化。 在NC高速凸轮轴研磨机类型的CNC8312A上进行了实验,并获得了理想的加工效果。 与此同时,它还表明该方法具有强大的实用可行性和巨大的实用价值。

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