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Tool path optimization in postprocessor of five-axis machine tools

机译:五轴机床后处理器中的刀具路径优化

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摘要

Generally, tool path is generated in a computer-aided manufacturing software considering only the geometry of machining parts. It is converted into numerical control (NC) codes in the postprocessor based on the particular machine kinematics. For some special types of five-axis machine tools, e.g., non-orthogonal five-axis machine tools, the generated NC codes may produce unqualified parts because of the existence of the non-linear error. Conventional commercialized postprocessors usually do not have the function of non-linear error checking. Observing that the tool path is a non-smooth trajectory full of corners and a series of connected line segments, cubic spline interpolation is applied to smooth the tool path at regular points in this study. The cutter tip center points are computed by the cubic spine interpolation, while the cutter posture vectors are obtained via linear interpolation. At the splines (for regular points) and the line segments (feature points), more points are chosen to be converted into NC codes to reduce the non-linear error, which is called data densification. Using the cubic spline to smooth the tool path and the data densification to reduce the non-linear error, a novel tool path optimization algorithm in postprocessor is proposed. Experiments were carried out on an inclined rotary spindle axis non-orthogonal five-axis machine tool. It shows that the proposed tool path optimization provides improved accuracy and surface quality.
机译:通常,刀具路径是在计算机辅助制造软件中生成的,仅考虑加工零件的几何形状。它根据特定的机器运动学在后处理器中转换为数控(NC)代码。对于某些特殊类型的五轴机床,例如非正交五轴机床,由于存在非线性误差,因此生成的NC代码可能会产生不合格的零件。常规的商业化后处理器通常不具有非线性错误检查的功能。观察到刀具路径是一个充满角和一系列连接的线段的非光滑轨迹,因此在本研究中,三次样条插值用于平滑规则点上的刀具路径。刀尖中心点通过三次脊柱插值计算,而刀体姿态矢量通过线性插值获得。在样条曲线(对于常规点)和线段(特征点)处,选择更多的点以转换为NC代码以减少非线性误差,这称为数据致密化。利用三次样条对刀具路径进行平滑处理,并通过数据密集化处理以减少非线性误差,提出了一种新型的后处理器刀具路径优化算法。实验是在倾斜的旋转主轴轴非正交五轴机床上进行的。结果表明,所建议的刀具路径优化可提高精度和表面质量。

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