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Form-truing error compensation of diamond grinding wheel in CNC envelope grinding of free-form surface

机译:自由曲面CNC包络磨削中金刚石砂轮的成型误差补偿

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摘要

In computer numerical control (CNC) grinding of free-form surface, an ideal arc profile of trued diamond grinding wheel is generally employed to plan 3D tool paths, whereas its form-truing errors greatly influence the ground form accuracy. A form-truing error compensation approach is proposed by using an approached wheel arc profile to replace the previously designed ideal one. The objective is to directly compensate the trued wheel arc-profile errors. It may avoid the time consumption of traditional approach that compensates the measured coordinate point errors of workpiece to an iterative grinding operation. First, the 3D tool path surface was constructed to plan the 3D tool paths. Second, the CNC arc truing of grinding wheel was conducted to analyze the form-truing error distribution relative to the applied wheel arc profile. Then, the form-truing error compensation was carried out in CNC envelope grinding. Finally, the iterative closest point (ICP) algorithm was used to match the measured coordinate points of workpiece to ideal free-form surface. It is shown that the 3D tool path surface constructed is practicable to plan arbitrary 3D tool paths for the form-truing error compensation. The ICP matching may be used to investigate 3D ground form error distribution. It is confirmed that the form-truing error compensation can directly improve the 3D ground form accuracy. It may decrease the 3D ground form error by about 20% when the 2D form-truing error is reduced by about 58% using the same truing conditions for CNC grinding.
机译:在自由曲面的计算机数控(CNC)磨削中,通常使用精磨金刚石砂轮的理想弧形轮廓来规划3D刀具路径,而其成型误差会极大地影响地面成型精度。通过使用逼近的轮弧轮廓来代替先前设计的理想轮廓,提出了一种形状校正误差补偿方法。目的是直接补偿真实的车轮弧形轮廓误差。可以避免传统方法的时间消耗,该方法将工件的测量坐标点误差补偿为迭代研磨操作。首先,构造3D工具路径表面以计划3D工具路径。其次,进行了砂轮的CNC弧形修整,以分析相对于所施加的砂轮弧形轮廓的型构误差分布。然后,在CNC外壳磨削中进行成形误差补偿。最后,使用迭代最近点(ICP)算法将测得的工件坐标点与理想的自由曲面相匹配。结果表明,构造的3D工具路径表面对于规划任意3D工具路径以进行成形误差补偿是可行的。 ICP匹配可用于研究3D地面形式误差分布。可以确认,成型误差补偿可以直接提高3D地面成型精度。当在相同的CNC磨削修整条件下,将2D成型的铸造误差降低约58%时,可以将3D地面的成型误差降低约20%。

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