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首页> 外文期刊>International Journal of Computer Integrated Manufacturing >A global space-based approach for wide strip flank milling of freeform surface with a barrel cutter
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A global space-based approach for wide strip flank milling of freeform surface with a barrel cutter

机译:具有枪管刀具的自由形状表面宽带侧面铣削的全球空间方法

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摘要

Due to the wide contact area between the tool and the machining surface in flank milling, the engagement relationship between them cannot be well described by the local differential property of the surface. In terms of this problem, a new global space based approach is presented to realise the path planning for wide strip flank milling with barrel cutter. Firstly, the method for calculation of the global space in machining process is given through the analysis of the engagement relationship between the barrel cutter and the machined surface, and the error in the global space is analysed. Secondly, the maximum strip width-based optimisation of tool axis is established combining with the engagement relationship, and the corresponding tool orientation and feed direction are determined. Thirdly, by establishing the maximum strip width vector field in the parameter domain and combining the stream function to determine the initial toolpath, the path planning of the flank milling with the barrel cutter is achieved. Finally, the developed algorithm is validated by geometrical simulation and comparing with existing methods.
机译:由于工具和侧面铣削的加工表面之间的宽接触面积,因此它们之间的接合关系不能通过表面的局部差异性描述。就此问题而言,提出了一种新的全局空间的方法,以实现与桶切割器的宽带侧面铣削的路径规划。首先,通过分析筒切割器和机加工表面之间的接合关系来提供用于计算加工过程中的全局空间的方法,并且分析了全局空间中的误差。其次,建立与接合关系的基于刀具宽度的基于条带宽度的优化,并且确定了相应的刀具方向和进给方向。第三,通过建立参数域中的最大条带宽矢量字段并将流功能组合以确定初始刀具路径,实现了与枪管切割器的侧面铣削的路径规划。最后,通过几何模拟验证了开发的算法,并与现有方法进行了验证。

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