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An Efficient, Accurate Approach to Representing Cutter-Swept Envelopes and Its Applications to Three-Axis Virtual Milling of Sculptured Surfaces

机译:一种高效,精确的刀具切割包络表示方法及其在雕刻表面三轴虚拟铣削中的应用

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To address a major technical challenge in simulating geometric models of machined sculptured surfaces in three-axis virtual machining, this paper presents an efficient, accurate approach to representing the 3D envelopes of a cutter sweeping sequentially through cutter locations; these envelopes embody the furrow patches of the machined surfaces. In our research, the basic mechanism of removing stock material in three-axis computer numerically controlled (CNC) milling of sculptured surfaces is investigated, and, consequently, an effective model is proposed to represent the 3D envelopes (or furrow patches). Our main contribution is that a new directrix (or swept profile) of the furrow patches (mathematically, ruled surfaces) is identified as a simple 2D envelope of cutting circles and is formulated with a closed-form equation. Therefore, the 3D cutter-swept envelopes can be represented more accurately and quickly than the existing swept-volume methods. With this innovative approach, a method of accurate prediction of the machining errors along tool paths in three-axis finish machining is provided, which is then applied to the optimization of tool-path discretization in two examples. Their results demonstrate the advantages of our approach and verify that the current machining-error-prediction methods can cause gouging in three-axis sculptured surface milling.
机译:为了解决在三轴虚拟加工中模拟加工的雕刻表面的几何模型时遇到的一项重大技术挑战,本文提出了一种高效,准确的方法来表示依次扫过刀具位置的刀具的3D包络。这些信封体现了加工表面的沟纹。在我们的研究中,研究了在雕刻表面的三轴计算机数控(CNC)铣削中去除坯料的基本机理,并因此提出了一种有效的模型来表示3D信封(或犁沟)。我们的主要贡献在于,将沟纹补丁(在数学上,直纹表面)的新方向(或扫掠轮廓)识别为切割圆的简单2D包络,并由封闭形式的方程式表示。因此,与现有的扫掠体积方法相比,可以更准确,更快地表示3D裁切器掠过的信封。通过这种创新方法,提供了一种精确预测三轴精加工中沿刀具路径的加工误差的方法,然后在两个示例中将其应用于优化刀具路径离散化。他们的结果证明了我们方法的优势,并验证了当前的加工误差预测方法会导致三轴雕刻曲面铣削中的气刨。

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