首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Global toolpath modulation–based contour error pre-compensation for multi-axis CNC machining
【24h】

Global toolpath modulation–based contour error pre-compensation for multi-axis CNC machining

机译:基于全局刀具路径调制的多轴数控加工轮廓误差预补偿

获取原文
获取原文并翻译 | 示例

摘要

Abstract  Contour error compensation is an active research topic in five-axis CNC machining, especially in the manufacturing of sculptured surface parts. Nevertheless, current methods are mainly based on the mirror compensation principle, and fail to obtain a desired level of accuracy when processing parts with tight curvature feature. To address this issue, a global toolpath modulation-based contour error pre-compensation method is developed in this paper, which incorporates the error compensation issue into the stage of toolpath planning with a linear analytical solution. In this method, the nominal toolpaths used to machine the products is first expressed by dual B-spline curves, and then the instantaneous tracking error model of each individual drive is built with respect to control points of splined path. Afterward, the satisfaction condition of the spline control points for eliminating the contour error is yielded, which provides a possibility for compensating contour error in a global manner, and the neighbor-dependent coupling issue in error compensation between adjacent cutter location points is capable of being handled as well. On this basis, by applying the least-squares technique, the complicated contour error pre-compensation problem is further converted into a solution of simpler linear equation system. For enhancing its robustness when processing long toolpaths, an adaptive piecewise modulation strategy is also developed. Finally, both experiment and simulation are conducted to validate the proposed method, and the results demonstrate that the proposed method can significantly improve contour precision at low computational costs when compared with the existing pre-compensation method.
机译:摘要 轮廓误差补偿是五轴数控加工中一个活跃的研究课题,特别是在雕刻曲面零件的制造中。然而,目前的方法主要基于镜面补偿原理,在加工具有紧密曲率特征的零件时无法获得理想的精度水平。针对该问题,该文提出一种基于全局刀具路径调制的轮廓误差预补偿方法,将误差补偿问题纳入刀具路径规划阶段,并采用线性解析解。该方法首先用双B样条曲线表示用于加工产品的标称刀具路径,然后建立每个驱动器相对于花键路径控制点的瞬时跟踪误差模型。然后,给出了样条控制点消除轮廓误差的满足条件,为全局补偿轮廓误差提供了可能,并且能够处理相邻刀具定位点之间误差补偿中的邻域依赖耦合问题。在此基础上,应用最小二乘法,将复杂的轮廓误差预补偿问题进一步转化为更简单的线性方程组的解。为了提高其在加工长刀具路径时的鲁棒性,还开发了一种自适应分段调制策略。最后,通过实验和仿真验证了所提方法的有效性,结果表明,与现有的预补偿方法相比,所提方法能够显著提高轮廓精度,且计算成本较低。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号