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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A hybrid approach for cutting force prediction in flank milling based on analytical and 3D finite element method
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A hybrid approach for cutting force prediction in flank milling based on analytical and 3D finite element method

机译:一种基于分析和3D有限元法的侧翼铣削中碾磨力预测的混合方法

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摘要

Flank milling is one of the most widely used milling processes characterized by high machining efficiency. However, due to the low thermal conductivity and high-temperature strength of nickel-based superalloy Inconel 718, flank milling of Inconel 718 is still an extremely difficult and challenging task in which the milling cutter suffers large cutting force and excessive tool wear. Therefore, prediction of cutting force in milling process has caused due attention and became a major concern in manufacturing process. The present work is thus aimed at developing a new cutting force model for flank milling, which might try to eliminate the drawbacks of pure analytical force model, data-based reasoning method (DBRM), and full three dimensional (3D) finite elements (FE) model. The hybrid cutting force model is conducted by discretizing cutting edge into fragments based on infinitesimal method and regarding each fragment as a 3D oblique cutting FEM model. With the integration of 3D predicted cutting force along the axis considering the run-in and run-out effect of each cutting edge, the predicted cutting force can be obtained. Finally, the predicted results showed a good agreement with that of experimental.
机译:侧翼铣削是最广泛使用的铣削过程之一,其特征在于高加工效率。然而,由于镍基超合金的高温导电性和高温强度718,Inconel 718的侧面铣削仍然是一个极其困难和具有挑战性的任务,其中铣刀遭受大的切割力和过度的工具磨损。因此,在铣削过程中的切割力预测导致了主要的关注,并成为制造过程中的主要问题。因此,目前的工作旨在开发一种用于侧翼铣削的新切割力模型,这可能试图消除纯分析力模型,数据的推理方法(DBRM)和全三维(3D)有限元(FE)的缺点) 模型。通过基于无穷大处的方法将切削刃离心分成片段,并且关于每个片段作为3D斜切割FEM模型来进行混合切割力模型。考虑到每个切割边缘的沿轴和输出效果的轴线的沿轴的沿线的整合,可以获得预测的切割力。最后,预测结果表现出与实验性的良好一致性。

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