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Effect of substrate hardness on the deformation behavior of subsequently incident particles in cold spraying

机译:基体硬度对冷喷涂中后续入射颗粒变形行为的影响

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A systematic finite element analysis (FEA) on the subsequently incident particles which refer to the particles depositing after the formation of the first layer coating is conducted in this study to clarify the bonding mechanism inside the cold sprayed coating. A simplified particle impact model is proposed and the simulated results based on this model demonstrate that substrate hardness exerts some effects on the deformation behavior of the subsequently incident particles. Hard substrate makes these particles deform intensively but using soft substrate enables them to achieve a slight deformation. At the same time, it is also found that substrate hardness plays its best role only when the formed coating is thin, as the development of the coating, the particle deformation behavior becomes more and more insensitive to the substrate hardness. The multi-particle impact simulation based on Eulerian method is also performed and reaches the same conclusion, confirming the accuracy of the simplified model. Besides, it is also found that when the velocity is increased to a hypervelocity, excessive deformation occurs in the formed coatings due to the impact of the subsequently incident particles.
机译:在这项研究中,对随后入射的粒子进行了系统的有限元分析(FEA),这些粒子是指在形成第一层涂层之后沉积的粒子,以阐明冷喷涂涂层内部的结合机理。提出了一种简化的粒子碰撞模型,并基于该模型的仿真结果表明,基底硬度对随后入射粒子的变形行为有一定影响。硬质基材会使这些颗粒剧烈变形,但使用软质基材可使它们产生轻微变形。同时,还发现仅当所形成的涂层薄时基材硬度才发挥其最佳作用,随着涂层的发展,颗粒变形行为对基材硬度越来越不敏感。还进行了基于欧拉方法的多粒子碰撞仿真,并得出相同的结论,证实了简化模型的准确性。此外,还发现,当速度增加到超高速时,由于随后入射的颗粒的冲击,在形成的涂层中发生过度变形。

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