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Flank milling model for tool path programming of turbine blisks and compressors

机译:涡轮铣刀和压缩机的刀路编程侧面铣削模型

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摘要

In this paper, a methodology for complex surface machining based on cutting forces prediction is presented. The work is focused on blade finishing operations. The cutting forces model developed can be applied to three axis and five axis milling cases. For three-axis cases, the chip thickness is calculated according to traditional analytical methods. On the contrary, for five-axis cases the chip thickness is obtained from a geometric method developed in the paper. The cutting forces values can be calculated for the complete toolpath, but the presented model can also provide the programmer information about the cutting forces in a single point of the toolpath. The cutting force model is integrated in the CAM software in order to provide an extra tool that helps the programmer to decide which the optimal milling strategy is, based on the minimum cutting forces. In the last section, results of a case study based on impeller and blisk blades flank milling are discussed. Model predicted forces and real measured forces of flank milling operations are compared for model validation. Applying this methodology, cutting forces can be taken into account as a decisive criterion for optimal tool path selection.
机译:本文提出了一种基于切削力预测的复杂表面加工方法。这项工作集中在叶片精加工操作上。开发的切削力模型可应用于三轴和五轴铣削工况。对于三轴情况,切屑厚度是根据传统分析方法计算的。相反,对于五轴情况,切屑厚度是通过本文开发的几何方法获得的。可以为整个刀具路径计算切削力值,但是所提供的模型还可以为程序员提供有关刀具路径单点切削力的信息。切削力模型集成在CAM软件中,以提供一个额外的工具,该工具可帮助程序员基于最小切削力确定最佳的铣削策略。在最后一部分中,讨论了基于叶轮和叶轮侧面铣削的案例研究结果。比较侧面铣削操作的模型预测力和实际测得力,以进行模型验证。应用这种方法,切削力可以作为最佳刀具路径选择的决定性标准。

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