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Effects of cutting angle, edge preparation, and nano-structured coating on milling performance of a gamma titanium aluminide

机译:切削角度,修边和纳米结构涂层对γ-铝化钛铣削性能的影响

摘要

Gamma titanium aluminides are intermetallic alloys. Recently, they have been evaluated as important contenders for structural applications in the automotive and aerospace sectors. This is due to their excellent high-temperature performances and their significantly lower density compared to Nickel-based superalloys. In this paper, an analysis of machinability of a gamma TiAl obtained via an electron beam melting (EBM) process is presented. The effects of tool geometry modifications, in terms of cutting tool angles and cutting edge preparation, were investigated. The reduction of radial rake angle and the drag finishing process for cutting edge preparation resulted in an increase of the tool life of the carbide end mills. Nanogradient tool coatings were also observed to affect tool wear during milling tests, and the results highlight that AlSiTiN coating performs better compared to CrAlSiN coating. A post-coating polishing treatment was also taken into account, and it allowed a further reduction of tool wear. The overall results indicate that the machinability of this difficult-to-cut material can be significantly improved by an adjustment of the cutting edge geometry, and by using an AlSiTiN coating system
机译:伽马钛铝化物是金属间合金。最近,它们已被评估为汽车和航空航天领域结构应用的重要竞争者。这是由于与镍基高温合金相比,它们具有出色的高温性能和低得多的密度。在本文中,对通过电子束熔化(EBM)工艺获得的伽马TiAl的可切削性进行了分析。研究了刀具几何形状修改对切削刀具角度和切削刃准备的影响。径向前角的减小和用于切削刃准备的阻力精加工过程导致了硬质合金立铣刀的刀具寿命的增加。还观察到纳米梯度工具涂层会影响铣削测试期间的工具磨损,结果表明,与CrAlSiN涂层相比,AlSiTiN涂层的性能更好。还考虑了涂后抛光处理,它可以进一步减少工具磨损。总体结果表明,通过调整切削刃的几何形状以及使用AlSiTiN涂层系统,可以显着改善这种难切削材料的切削性能。

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