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Investigation of Cutting Temperature during Turning Inconel 718 with (Ti,Al)N PVD Coated Cemented Carbide Tools

机译:用(Ti,Al)N PVD涂层硬质合金工具转向旋转型718期间切削温度的研究

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摘要

Physical Vapor Deposition (PVD) Ti1−xAlxN coated cemented carbide tools are commonly used to cut difficult-to-machine super alloy of Inconel 718. The Al concentration x of Ti1−xAlxN coating can affect the coating microstructure, mechanical and thermo-physical properties of Ti1−xAlxN coating, which affects the cutting temperature in the machining process. Cutting temperature has great influence on the tool life and the machined surface quality. In this study, the influences of PVD (Ti,Al)N coated cemented carbide tools on the cutting temperature were analyzed. Firstly, the microstructures of PVD Ti0.41Al0.59N and Ti0.55Al0.45N coatings were inspected. The increase of Al concentration x enhanced the crystallinity of PVD Ti1−xAlxN coatings without epitaxy growth of TiAlN crystals. Secondly, the mechanical and thermo-physical properties of PVD Ti0.41Al0.59N and Ti0.55Al0.45N coated tools were analyzed. The pinning effects of coating increased with the increasing of Al concentration x, which can decrease the friction coefficient between the PVD Ti1−xAlxN coated cemented carbide tools and the Inconel 718 material. The coating hardness and thermal conductivity of Ti1−xAlxN coatings increased with the increase of Al concentration x. Thirdly, the influences of PVD Ti1−xAlxN coated tools on the cutting temperature in turning Inconel 718 were analyzed by mathematical analysis modelling and Lagrange simulation methods. Compared with the uncoated tools, PVD Ti0.41Al0.59N coated tools decreased the heat generation as well as the tool temperature to reduce the thermal stress generated within the tools. Lastly, the influences of Ti1−xAlxN coatings on surface morphologies of the tool rake faces were analyzed. The conclusions can reveal the influences of PVD Ti1−xAlxN coatings on cutting temperature, which can provide guidance in the proper choice of Al concentration x for PVD Ti1−xAlxN coated tools in turning Inconel 718.
机译:物理气相沉积(PVD)Ti1-XalxN涂覆的硬质合金工具通常用于切割难以加入的Inconel 718的超级合金。Ti1-XalXN涂层的Al浓度X可以影响涂层微观结构,机械和热物理性质Ti1-XALXN涂层,影响加工过程中的切削温度。切割温度对工具寿命和机加工表面质量产生了很大的影响。在该研究中,分析了PVD(Ti,Al)N涂覆的碳化物碳化物工具对切削温度的影响。首先,检查PVD Ti0.41Al0.59N和Ti0.55A10.45N涂层的微观结构。 Al浓度X的增加增强了PVD Ti1-XalXN涂层的结晶度,而无需突出的TiAln晶体生长。其次,分析了PVD Ti0.41Al0.59N和Ti0.55A10.45N涂层工具的机械和热物理性质。涂层的钉扎效应随着Al浓度X的增加而增加,这可以降低PVD Ti1-Xalxn涂覆的硬质合金工具和Inconel 718材料之间的摩擦系数。随着Al浓度X的增加,Ti1-XalxN涂层的涂层硬度和导热率增加。第三,通过数学分析建模和拉格朗日仿真方法分析了PVD TI1-XALXN涂覆工具对转动Inconel 718中的切削温度的影响。与未涂层工具相比,PVD Ti0.41Al0.59N涂层工具减少了发热以及刀具温度,以减少工具内产生的热应力。最后,分析了Ti1-XALXN涂层对工具耙面的表面形态的影响。结论可以揭示PVD TI1-XALXN涂层对切削温度的影响,这可以为PVD TI1-XALXN涂覆工具的正确选择提供指导,在转动的INCONEL 718中的涂覆工具。

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