首页> 外文期刊>Coatings >A Comprehensive Study of Al0.6Ti0.4N Coatings Deposited by Cathodic Arc and HiPIMS PVD Methods in Relation to Their Cutting Performance during the Machining of an Inconel 718 Alloy
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A Comprehensive Study of Al0.6Ti0.4N Coatings Deposited by Cathodic Arc and HiPIMS PVD Methods in Relation to Their Cutting Performance during the Machining of an Inconel 718 Alloy

机译:综合研究了阴极弧和HIPIMS PVD方法沉积的Al0.6Ti0.4N涂层及其在Inconel 718合金加工过程中的切削性能相关

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The structural, physical–chemical, and micromechanical characteristics of Al0.6Ti0.4N coatings deposited by different physical vapor deposition (PVD) methods, such as cathodic arc deposition (CAD), as well as advanced HiPIMS techniques were investigated in terms of their cutting performance during the machining of an Inconel 718 alloy. XRD studies had revealed that the HiPIMS coating featured lower residual stresses and more fine-grained structure. Electrochemical characterization with the potentiostat-impendence method shows that the HiPIMS coating has a significantly lower porosity than CAD. SEM and AFM studies of the surface morphology demonstrate that the HiPIMS coating has a smoother surface and an absence of droplet phases, in contrast with CAD. XRD, combined with FIB/TEM studies, shows a difference in the crystal structure of both coatings. The micromechanical characteristics of each coating, such as hardness, elastic modulus, fracture toughness, and adhesion to the substrate, were evaluated. The HiPIMS coating was found to possess a more beneficial combination of micromechanical properties compared to CAD. The beneficial characteristics of the HiPIMS coating alleviated the damage of the coated layer under operation. Combined with grain size refinement, this results in the improved adaptive performance of the HiPIMS coating through the formation of a greater amount of thermal barrier sapphire tribo-films on the friction surface. All of these characteristics contribute to the reduction of flank and crater wear intensity, as well as notching, leading to an improvement of the HiPIMS coating’s tool life.
机译:通过不同物理气相沉积(PVD)方法的Al0.6Ti0.4N涂层的结构,物理化学和微机械特性,例如阴极弧沉积(CAD)以及其切割方面的高级HIPIMS技术研究在inconel 718合金的加工过程中的性能。 XRD研究表明,HIPIMS涂层具有较低的残余应力和更细粒度的结构。用电量稳定性的电化学表征表明,Hipims涂层具有比CAD显着降低的孔隙率。与CAD相比,表面形态的SEM和AFM研究表明,HIPIMS涂层具有更平滑的表面和液滴阶段的不存在。 XRD与FIB / TEM研究结合,显示了两种涂层的晶体结构的差异。评估每种涂层的微机械特性,例如硬度,弹性模量,断裂韧性和对基材的粘附性。与CAD相比,发现HIPIMS涂层具有更有益的微机械性能组合。 Hipims涂层的有益特性减轻了在操作下涂覆层的损伤。结合晶粒尺寸改进,这导致Hipims涂层通过在摩擦表面上形成更大量的热屏障蓝宝石摩擦膜来改善Hipims涂层的改进性能。所有这些特征都有助于减少侧面和火山口磨损强度,以及缺口,导致覆盖覆盖刀具寿命的改善。

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