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Study on the Damage Mechanism of TiN/Ti Coatings Based on Multi-Directional Impact

机译:基于多向冲击的锡/ TI涂层损伤机理研究

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TiN/Ti coatings have great application potential in improving aero-engine server lives in a dusty environment. However, the damage behavior and mechanism of the coating and substrate under high impact speed and multi-direction loading conditions has scarcely been investigated. In this paper, TiN/Ti coatings were deposited on Ti6Al4V alloys by a magnetic filter cathode vacuum arc. Multi-directional impact tests were carried out by a gas gun system at, 45°, 60°, and 90° with a velocity of 330 m/s. The damage behaviors and mechanisms of the TiN/Ti coatings were investigated and revealed by researching the damage morphology, crack propagation, and stress distribution. The results show that plastic deformation occurs both in the coatings and the substrates under high speed impacting. Cracks extend vertically downward in the TiN layer first and are deflected at the Ti layer when the driving force is not enough. Circular cracks and radical cracks are found to form network cracks on the surface of the coating and the shear stress loaded by the particles, which drives cracks’ propagation is the main reason for the peeling off on the coatings.
机译:锡/ TI涂层具有巨大的应用潜力,在尘土飞扬的环境中改善航空发动机服务器。然而,涂层和基材在高冲击速度和多向负载条件下的损伤行为和机理几乎已经研究过。在本文中,通过磁滤清器阴极真空弧沉积在Ti6Al4V合金上的锡/ Ti涂层。通过45°,60°和90°的气枪系统进行多向冲击试验,速度为330米/秒。通过研究损伤形态,裂缝繁殖和应力分布,研究了罐/ Ti涂层的损伤行为和机制。结果表明,在高速冲击下,塑性变形均在涂层和基板中发生。裂缝在锡层中垂直向下延伸,并且当驱动力不够时在Ti层处偏转。发现圆形裂缝和自由基裂缝形成涂层表面上的网络裂缝和由颗粒装载的剪切应力,该颗粒驱动裂缝的传播是在涂层上剥离的主要原因。

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