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Finite Element Simulation of Impacting Behavior of Particles in Cold Spraying by Eulerian Approach

机译:欧拉法模拟冷喷涂颗粒冲击行为的有限元模拟

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In this study, an investigation on the impacting behavior of cold-sprayed particles using the Eulerian formulation available in ABAQUS/Explicit was conducted with typical copper material. The results show that a jet cannot be formed at an impact velocity less than about 290 m/s, while a continuous jet composed of both particle and substrate materials begins to initially form at about 290 m/s and a maximum equivalent plastic strain plateau can be found, which could be the approximate critical velocity. In addition, the jet presents discontinuities and the splashing causes the loss of material as the impact velocity exceeds the velocity extent of 290-400 m/s. Therefore, through theoretical analysis of the jet morphology, the Eulerian model could provide a prediction of the critical velocity.
机译:在这项研究中,使用典型的铜材料,使用ABAQUS / Explicit中提供的欧拉配方,对冷喷涂颗粒的冲击行为进行了研究。结果表明,不能以低于约290 m / s的冲击速度形成射流,而同时由颗粒和基质材料组成的连续射流开始以约290 m / s的速度形成,并且最大等效塑性应变平稳被发现,这可能是近似的临界速度。另外,当冲击速度超过290-400 m / s的速度范围时,射流会出现间断,飞溅会导致材料损失。因此,通过对射流形态的理论分析,欧拉模型可以提供临界速度的预测。

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