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Tool performance and attainable surface quality during the machining of aerospace alloys using self-propelled rotary tools

机译:使用自行式旋转刀具加工航空航天合金时的刀具性能和可获得的表面质量

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摘要

This paper presents an experimental investigation to evaluate the performance of self-propelled rotary tools and machined surface quality during machining waspaloy and titanium alloys. A new rotary tool design with different insert diameters and material/coatings is utilized. The criteria used in the assessment of tool performance are modes of tool wear and roughness as well as topography of machined surface. The performance of the self-propelled rotary tool is compared to that of other conventional tool designs with the same circular tool as well as cutting angles. The experimental results are used to define the optimum and safe cutting conditions for high performance machining of aerospace material using self-propelled tools.
机译:本文提出了一项实验研究,以评估在加工waspaloy和钛合金过程中自走式旋转工具的性能和表面质量。使用了具有不同刀片直径和材料/涂层的新型旋转工具设计。评估刀具性能的标准是刀具磨损和粗糙度以及加工表面形貌的模式。将自走式旋转工具的性能与具有相同圆形工具以及切削角度的其他常规工具设计的性能进行了比较。实验结果用于定义使用自行式工具进行航空航天材料高性能加工的最佳和安全切削条件。

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