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Effect of Dry Cutting on Force and Tool Life when Machining Aerospace Material

机译:航空航天材料加工中干切削对力和刀具寿命的影响

摘要

Cutting fluids, usually in the form of a liquid, are applied to the chip formation zone in order to improve the cutting conditions. Cutting fluid can be expensive and represents a biological and environmental hazard that requires proper recycling and disposal, thus adding to the cost of the machining operation. For these reasons dry cutting or dry machining has become an increasingly important approach; in dry machining no coolant or lubricant is used. This paper discussed the effect of the dry cutting on cutting force and tool life when machining aerospace materials (Haynes 242) with using two different coated carbide cutting tools (TiAlN and TiN/MT-TiCN/TiN). Response surface method (RSM) was used to minimize the number of experiments. ParTiAlN Swarm Optimisation (PSO) models were developed to optimize the machining parameters (cutting speed, federate and axial depth) and obtain the optimum cutting force and tool life. It observed that carbide cutting tool coated with TiAlN performed better in dry cutting compared with TiN/MT-TiCN/TiN. On other hand, TiAlN performed more superior with using of 100 % water soluble coolant. Due to the high temperature produced by aerospace materials, the cutting tool still required lubricant to sustain the heat transfer from the workpiece.
机译:通常以液体形式的切削液被施加到切屑形成区,以改善切削条件。切削液可能很昂贵,并且代表着对生物和环境的危害,需要进行适当的回收和处置,从而增加了加工成本。由于这些原因,干切削或干加工已成为越来越重要的方法。在干式加工中,不使用冷却液或润滑剂。本文讨论了在使用两种不同的涂层硬质合金切削刀具(TiAlN和TiN / MT-TiCN / TiN)加工航空航天材料(Haynes 242)时,干切削对切削力和刀具寿命的影响。响应面法(RSM)用于最大程度地减少实验次数。开发了ParTiAlN群优化(PSO)模型以优化加工参数(切削速度,联邦和轴向深度)并获得最佳切削力和刀具寿命。研究发现,与TiN / MT-TiCN / TiN相比,涂有TiAlN的硬质合金刀具在干切削中表现更好。另一方面,使用100%水溶性冷却液时,TiAlN的性能更高。由于航空航天材料产生的高温,切削工具仍然需要润滑剂以维持从工件传递的热量。

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