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Modeling on Deformation Behavior of Al Particles Impacting on Al Substrate and Effect of Surface Oxide Films on Interfacial Bonding in Cold Spraying

机译:铝颗粒变形行为对铝基体的影响建模及表面氧化物膜对冷喷涂界面结合的影响

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In this study, a comprehensive examination of deformation of Al particles impacting on Al substrate was conducted by using the Arbitrary Lagrangian Eulerian (ALE) method to clarify the deposition characteristics of Al powder and effect of surface oxide films in cold spraying. It was found that the deformation behaviour of Al particles is different from that of Cu particles under the same impact conditions owing to its lower density and thus less kinetic energy upon impact. The results indicate that the Al particles need a higher velocity to reach the same compression ratio as that of Cu particles. On the other hand, the numerical results show that the oxide films at particle surfaces influences the bonding condition between the particles and substrate. The inclusions of the crushed oxide films at the interfaces between the depostied particles inhibit the deformation.
机译:在这项研究中,通过使用任意拉格朗日欧拉(ALE)方法对铝颗粒撞击铝基材的变形进行了全面检查,以阐明铝粉的沉积特性和表面喷涂在冷喷涂中的作用。发现在相同的冲击条件下,Al颗粒的变形行为不同于Cu颗粒,这是由于其较低的密度,因此冲击时的动能较小。结果表明,Al颗粒需要更高的速度才能达到与Cu颗粒相同的压缩比。另一方面,数值结果表明,颗粒表面的氧化膜影响颗粒与基材之间的结合条件。在变质颗粒之间的界面处的破碎氧化膜夹杂物抑制了变形。

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