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Error Compensation Strategies for Workpiece Deflection During End Milling of Thin-Walled Straight and Curved Geometries

机译:薄壁直线和弯曲几何形状内铣削工件偏转的误差补偿策略

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Thin-walled parts and their precision manufacturing is finding importance in the field of aerospace as well as automobile component manufacturing industries. The value of machining of thin walls like honeycomb structures increases because of the efficiency of such parts in any assembly as robust members which results in reducing the fuel usage and increasing strength of the system. In this part of research work, characterization of surface errors and compensation of errors by offline toolpath modification techniques is discussed. Major concerns of machining in end milling and cutting conditions variables include axial as well as radial depths of cut. After validation of errors by some results of cutting experiments toward predicted using a model, compensation strategies negating the errors are proposed. The results are directly applicable to similar manufacturing of various complex parts.
机译:薄壁零件及其精密制造在航空航天领域以及汽车组件制造业的重要性。由于任何组装中的任何组件中的效率为鲁棒构件,所以蜂窝状结构的薄壁的加工值增加了导致系统的燃料使用和增加的系统强度的效率增加。在这部分的研究工作中,讨论了表面误差的表征和通过离线刀具路径修改技术的误差的补偿。在端铣和切割条件变量中加工的主要问题包括轴向以及切割的径向深度。在使用模型的切割实验的一些结果验证错误后,提出了否定误差的补偿策略。结果直接适用于各种复杂部件的类似制造。

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