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Modeling of cutting forces in a face-milling operation with self-propelled round insert milling cutter

机译:自推式圆刀片铣刀在平面铣削加工中的切削力建模

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摘要

Rotary tools are being rediscovered for their applications in machining of 'difficult-to-machine' materials or for general improvement in the productivity of machining operations. While, a detailed analysis of application of rotary tools in turning operations has been done, their application in the generation of plain surfaces has received limited attention. This paper deals with the modeling of cutting forces in a face-milling operation performed using self-propelling inserts. The proposed model incorporates differences in the machining mechanics of self-propelling inserts due to the difference in their geometry and rotation in a static force prediction model in a face-milling operation with stationary inserts. The predicted values of cutting forces evaluated by the proposed model are in excellent agreement with the experimental value than those predicted using the static force model as it is.
机译:旋转刀具正被重新发现,以用于“难加工”材料的加工中,或用于整体提高加工效率。尽管已经对旋转工具在车削操作中的应用进行了详细的分析,但它们在平面生成中的应用受到了有限的关注。本文涉及使用自推进刀片执行的平面铣削加工中切削力的建模。所提出的模型由于在静态刀片的平面铣削操作中的静力预测模型中,由于其几何形状和旋转方面的差异,从而使自推进式刀片的加工机理有所不同。与按原样使用静力模型的预测值相比,由所提出的模型评估的切削力的预测值与实验值非常吻合。

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