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Dynamics of flexible detail milling

机译:柔性细节铣削的动力学

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摘要

The five-axis milling operations are commonly used in aerospace industry. For example, this operation is the base for the machining process of the turbine blade production. The milling operations of thin-walled structures cause the vibrations of the tool and the workpiece and this turn affect the quality of the workpiece surface. Modelling of the milling process is necessary to determine the proper cutting conditions for the required productivity and the surface quality. In this article, the geometry modelling algorithm for five-axis milling process is proposed. Dynamics of the machined surface is modelled using the finite-element method. The obtained results make possible to conclude about the stability of milling process and to calculate the efficient processing conditions at which the amplitude of the generated vibrations does not exceed the admissible level. The results of this research can be used while the milling process technologies are designed. Especially, it is significant for the machining of hard-to-machine materials and processing of heat-resistant alloys in space and aircraft industries.
机译:五轴铣削操作通常用于航空航天工业。例如,该操作是涡轮叶片生产机加工过程的基础。薄壁结构的铣削操作会引起工具和工件的振动,从而影响工件表面的质量。为了确定所需的生产率和表面质量的合适切削条件,必须对铣削过程进行建模。本文提出了一种五轴铣削加工的几何建模算法。加工表面的动力学使用有限元方法建模。所获得的结果可以推断出铣削过程的稳定性,并可以计算出有效的加工条件,在该条件下所产生的振动幅度不会超过允许的水平。研究的结果可在设计铣削工艺技术时使用。尤其对于航天和航空工业中难加工材料的加工和耐热合金的加工具有重要意义。

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