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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >An analytical model for cutter-workpiece engagement calculation in ball-end finish milling of doubly curved surfaces
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An analytical model for cutter-workpiece engagement calculation in ball-end finish milling of doubly curved surfaces

机译:双弯曲表面球端铣削铣刀工件接合计算的分析模型

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摘要

This paper presents a new analytical model for calculating the cutter-workpiece engagement (CWE) boundaries in the ball-end finish milling process of curved surfaces. To this end, first, a quadratic mathematical representation considering the principal curvatures of the surface is employed to locally describe the workpiece surface around the instantaneous cutting region. This description, then, is utilized to find the intersection curves of the tool rotary and workpiece surfaces in three ball-end milling modes including slotting, first cutting, and following cutting. Through comparison studies, the model predictions are verified by the corresponding results obtained via solid modeling in computer-aided design (CAD) environment. The agreement between the results indicates that the model can accurately calculate the CWE boundaries in the ball-end milling of all inclined, convex, concave, and saddle surfaces. Good performance of the model is also demonstrated by comparing the computation time of the model with that of the z-map method. Finally, parametric studies are performed to reveal the effects of surface curvatures and cutting depth on the CWE region. The results show that the CWE is more affected by the surface curvatures as the cutting depth decreases, especially at the concave and saddle regions of the workpiece surface. The proposed analytical model is capable of calculating the CWE boundaries in both three-axis and five-axis milling processes, and there is no need to neither use any numerical solutions nor update the in-process workpiece geometry during the simulation of the CWE boundaries.
机译:本文介绍了一种新的分析模型,用于计算弯曲表面的球端饰面铣削过程中的刀具 - 工件接合(CWE)边界。为此,首先,考虑表面的主要曲率的二次数学表示用于在瞬时切割区域周围地描述工件表面。然后,该描述用于在包括开槽,第一切割和切割的三个球端铣削模式中找到工具旋转和工件表面的交叉点曲线。通过比较研究,通过计算机辅助设计(CAD)环境中的实体建模获得的相应结果来验证模型预测。结果之间的协议表明,该模型可以精确地计算所有倾斜,凸起,凹凸表面的球端铣削中的CWE边界。还通过将模型的计算时间与Z-MAP方法的计算时间进行比较来说明模型的良好性能。最后,进行参数研究以揭示表面曲率和切削深度对CWE区域的影响。结果表明,由于切割深度降低,CWE受到表面曲率的影响,特别是在工件表面的凹形和鞍座区域处。所提出的分析模型能够计算三轴和五轴铣削过程中的CWE边界,并且不需要使用任何数值解决方案,并且在模拟CWE边界期间也没有更新过程工件几何形状。

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