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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Enhanced virtual machining for sculptured surfaces by integrating machine tool error models into NC machining simulation
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Enhanced virtual machining for sculptured surfaces by integrating machine tool error models into NC machining simulation

机译:通过将机床误差模型集成到NC加工仿真中来增强对雕刻表面的虚拟加工

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摘要

Sculptured surface machining is a time-consuming and costly process. It requires simultaneously controlled motion of the machine axes. However, positioning inaccuracies or errors exist in machine tools. The combination of error motions of the machine axes will result in a complicated pattern of part geometry errors. In order to quantitatively predict these part geometry errors, a new application framework 'enhanced virtual machining' is developed. It integrates machine tool error models into NC machining simulation. The ideal cutter path in the NC program for surface machining is discretized into sub-paths. For each interpolated cutter location, the machine geometric errors are predicted from the machine tool error model. Both the solid modeling approach and the surface modeling approach are used to translate machine geometric errors into part geometry errors for sculptured surface machining. The solid modeling approach obtains the final part geometry by subtracting the tool swept volume from the stock geometric model. The surface modeling approach approximates the actual cutter contact points by calculating the cutting tool motion and geometry. The simulation results show that the machine tool error model can be effectively integrated into sculptured surface machining to predict part geometry errors before the real cutting begins.
机译:雕刻表面加工是耗时且昂贵的过程。它需要同时控制机床轴的运动。但是,机床中存在定位误差或错误。机床轴的误差运动的组合将导致零件几何形状误差的复杂模式。为了定量预测这些零件的几何误差,开发了一种新的应用框架“增强型虚拟加工”。它将机床误差模型集成到NC加工仿真中。在NC程序中用于表面加工的理想刀具路径被离散化为子路径。对于每个插补的刀具位置,可根据机床误差模型预测机床几何误差。实体建模方法和曲面建模方法均用于将机器几何误差转换为零件几何误差,以进行雕刻曲面加工。实体建模方法是通过从库存几何模型中减去工具清扫体积来获得最终零件的几何形状。表面建模方法通过计算切削刀具的运动和几何形状来近似实际的刀具接触点。仿真结果表明,机床误差模型可以有效地集成到雕刻表面加工中,从而在实际切削开始之前预测零件的几何误差。

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