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Microstructure, mechanical properties, and cutting performance of TiAlSiN multilayer coatings prepared by HiPIMS

机译:HIPIMS制备的TiAlsin多层涂层的微观结构,机械性能和切割性能

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摘要

To explore mechanical properties of multilayer TiAlSiN coatings deposited on turning tools and their cutting performance against Inconel 718, TiAlSiN coatings with five different multilayer configurations, including single layer TiAlSiN-A (with higher adhesion strength), single layer TiAlSiN-B (with higher hardness), bilayer, four layer, and eight-layer, were deposited using high power impulse magnetron sputtering (HiPIMS). The microstructure, chemical composition, hardness, adhesion, toughness and surface roughness of those coatings are measured and the cutting performance against Inconel 718 is analyzed. It is demonstrated that the multilayer structure results in an increase of both toughness and compressive stress of TiAlSiN coatings, and the one with eight-layer configuration shows the highest toughness among the five coatings. The results of the cutting experiment showed that eight layer coatings have maximum life while the TiAlSiN-A has minimum. This improvement of multilayer structure is believed to be due to the increasing toughness, which alleviates the damage caused by the frequent impact of Inconel 718 hard particles during cutting. This study also shows there is a negative correlation between spalling area of flank surface and adhesion of coatings.
机译:探讨沉积在转动工具上的多层TiAlsin涂层的机械性能及其对Inconel 718的切削性能,具有五种不同的多层配置,包括单层TiAlsin-A(具有较高的粘合强度),单层Tialsin-B(具有更高的硬度使用高功率脉冲磁控溅射(Hipims)沉积双层,四层和八层。测量这些涂层的微观结构,化学成分,硬度,粘附,韧性和表面粗糙度,并分析了对818的切削性能。结果证明,多层结构导致TiAlsin涂层的韧性和压缩应力的增加,并且具有八层配置的韧性呈现出五种涂层中的最高韧性。切割实验的结果表明,8层涂层具有最大寿命,而TiAlsin-A最小。认为这种改进的多层结构是由于韧性的增加,这减轻了在切割过程中频繁影响了818个硬颗粒的频繁影响。该研究还示出了侧面的剥落面积与涂层的粘附之间存在负相关性。

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