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Experimental Evaluation of the Variable-Feedrate Intelligent Segmentation Method for High-Speed, High-Precision Micromilling

机译:高速高精度微铣削的可变进给率智能分割方法的实验评估

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摘要

This study will present an experimental evaluation of the variable-feedrate intelligent segmentation (VFISj method described by Mayor and Sodemann (2008, "Intelligent Tool-Path Segmentation for Improved Stability and Reduced Machining Time in Micromilling, " ASME J. Manuf. Set Eng., 130(3), p. 031121). The apparatus for the tests will be identified and the approach to the testing procedure will be laid out, including the means of evaluation of the method. A detailed explanation is then given for the choice of process parameters. This is followed by the introduction of the ji parameter as an additional factor in the VFIS implementation. Results are presented from cutting tests. The first set of test results presented is from a complete set of evaluation tests performed on sine wave geometries. The second set is an evaluation of the fan and airfoil shapes used previously in the numerical simulations of the VFIS method. It is found that the VFIS method is able to successfully constrain geometric error to within specified bounds in most cases. The cutting time for the VFIS method shows as much as 53% reduction relative to the nonuniform rational B-spline-based trajectory generation method.
机译:这项研究将提供可变进给率智能分割的实验评估(Mayor和Sodemann描述的VFISj方法(2008年,“用于改进微铣削稳定性和减少加工时间的智能刀具路径分割”,ASME J. Manuf。Set Eng。 ,130(3),第031121页)。将确定测试的设备,并列出测试程序的方法,包括对该方法的评估方法,然后对选择方法进行详细说明。工艺参数,然后在VFIS实施中引入ji参数作为附加因素,结果来自切削测试,给出的第一组测试结果来自对正弦波几何形状进行的完整评估测试。第二组是对先前在VFIS方法数值模拟中使用的风扇和翼型的评估,发现VFIS方法能够成功地约束在大多数情况下,度量误差在指定范围内。与基于非均匀有理B样条的轨迹生成方法相比,VFIS方法的切割时间最多减少了53%。

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