首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Parametric study on the tool inclination angle for side milling thin-walled workpiece edges based on finite element simulation
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Parametric study on the tool inclination angle for side milling thin-walled workpiece edges based on finite element simulation

机译:基于有限元模拟的侧铣削薄壁工件边缘刀具倾斜角度的参数研究

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摘要

Side milling thin-walled workpiece edges is an indispensible procedure in the continuous process chains for the high-efficiency machining of thin-walled functional parts, for example, the small- and medium-sized compressor blades. In these operation cases, the workpiece vibration is easy to occur due to the poor stiffness of the thin-walled structures, causing defects to the machined surface finish and even the dimensional accuracy of the thin-walled workpiece edges. To this problem, this study proposes the tool inclination method based on the adaption of the cutting force component in the lowest stiffness direction of the thin-walled workpiece, and it aims, first, to guarantee the machined surface finish which is mostly dominated by the workpiece vibrations mainly induced by the relatively high cutting forces and, second, to guarantee the high machining efficiency. The parametric study on the tool inclination angle for side milling the thin-walled workpiece edges was conducted by using the finite element simulations. First, the finite element models were elaborated and validated by the experimental results in terms of the cutting forces. Then, based on a series of finite element simulations, the effects of the tool inclination angle on the cutting forces adaption and its corresponding mechanism, that is, the chip formation variation, were investigated. Simulation results under the given conditions showed that the optimal tool inclination angle for the minimum absolute value of F-n was 26 degrees. At last, the prediction feasibility for the best machined surface finish when side milling the low-stiffness thin-walled workpiece edges at the optimal tool inclination angle was well validated by the experimental results. The proposed tool inclination method with the solid end mill based on the finite element model to improve the machined surface finish is meaningful and feasible for the high-efficiency manufacturing processes of thin-walled workpieces.
机译:侧铣削薄壁工件边缘是用于薄壁功能部件的高效加工的连续处理链中的不可或缺的过程,例如,小型和中型压缩机叶片。在这些操作情况下,由于薄壁结构的较差,工件振动容易发生,导致加工表面的缺陷甚至薄壁工件边缘的尺寸精度。本研究提出了基于薄壁工件的最低刚度方向的切割力分量的适应性刀具倾斜方法,并且首先是保证大多主导的机加工表面处理工件振动主要由相对高的切削力引起,第二,保证高加工效率。通过使用有限元模拟进行侧铣削薄壁工件边缘的刀具倾斜角的参数研究。首先,通过实验结果在切割力方面阐述并验证了有限元模型。然后,基于一系列有限元模拟,研究了刀具倾斜角度对切割力适应的影响及其对应机构,即芯片形成变化。在给定条件下的仿真结果表明,F-N的最小绝对值的最佳工具倾斜角度为26度。最后,当侧铣削低刚度薄壁工件边缘在最佳工具倾斜角处的低刚性薄壁工件边缘时,通过实验结果验证了最佳加工表面的预测可行性。所提出的工具倾斜方法,基于有限元模型的固体液体研磨方法改善加工表面光洁度对薄壁工件的高效制造工艺有意义,可行。

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