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Cutting Force Investigation of Trochoidal Milling in Nickel-Based Superalloy

机译:镍基超合金中牵引碾磨的削减力研究

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The gas turbine, aerospace and nuclear industries are dependent upon nickel-based superalloys to enable these industries to continue to innovate. Without these materials the industries would fail to achieve new heights of efficiency as the strength and operating temperature requirements continue to climb. Nickel-based superalloys thrive in these elevated temperature applications, where their great resistance to creep and corrosion is coupled with remarkably high strength values. These same characteristics that are invaluable to the final operating environment severely degrade their machinability with high cutting forces and aggressive rate of tool wear. Although the field of machining research is very well established, when it comes to nickel-based superalloys there is a large amount of that is yet to be understood. Trochoidal milling has been identified to extend tool life and reduce machining time in the milling of aluminums, however in nickel-based superalloys it remains largely unexplored. This work aims to understand the cutting force behavior of milling nickel-based superalloys using this alternative milling technique.
机译:燃气轮机,航空航天和核工业依赖于镍基超合金,使这些行业能够继续创新。如果没有这些材料,行业将无法实现新的效率高度,因为力量和工作温度要求继续攀升。镍基超合金在这些升高的温度应用中茁壮成长,其中它们对蠕变和腐蚀的耐受性具有显着高强度值。这些对最终操作环境中宝贵的这些特征严重降低了它们的可加工性,具有高切削力和工具磨损的侵蚀性。虽然加工研究领域很好地建立,但涉及基于镍的超合金,尚未理解的大量。已经识别了穿着碎片铣削以延长工具寿命,并降低铝的研磨中的加工时间,然而,在镍基超合金中,它仍然很大程度上是未探斗的。这项工作旨在使用这种替代铣削技术了解铣削镍基超合金的切削力行为。

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