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首页> 外文期刊>Advances in Mechanical Engineering >Optimizing tool size and tool path of five-axis flank milling with bounded constraints via normal mapping:
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Optimizing tool size and tool path of five-axis flank milling with bounded constraints via normal mapping:

机译:优化五轴侧面铣削的刀具大小和刀具路径,通过正常映射,界限约束:

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摘要

This article presents an approach to generate optimal couples of tool size and tool path for flank milling ruled surface with a conical cutter based on normal mapping, while at the same time keeping this couples within the given bounded constraints. For given initial pairs of taper tool and tool path, tool envelope surface is calculated. Then, the tool axis trajectory surface is related to envelope surface through the normal mapping. On this basis, the correspondence between the surface pair “design ruled surface–envelope surface–tool axis trajectory surface” is established, and it is used to obtain the signed flank milling error. By using this signed error, tool size and tool path optimization for flank milling is formulated as an optimization model subjected to bounds, and the trust-region-reflective least-squares method is used to solve this problem. Numerical example is given to confirm the validity of the proposed method.
机译:本文介绍了一种方法来产生具有基于正常映射的锥形切割器的侧面铣削表面的刀具尺寸和刀具路径的最佳耦合的方法,同时保持该耦合在给定的限制内。对于给定初始对锥形工具和刀具路径,计算工具包络表面。然后,刀具轴轨迹表面通过正常映射与包络表面有关。在此基础上,建立了表面对“设计裁定表面 - 包络表面轨迹轨迹轨迹表面”之间的对应关系,并且用于获得签名的侧面铣削误差。通过使用此符号错误,将侧翼铣削的刀具大小和刀具路径优化配制为对界限进行的优化模型,并且使用信任区域反射最小二乘法来解决这个问题。给出了数值例子来证实所提出的方法的有效性。

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