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Effect of Velocity and Impact Angle on Residual Stress Generation in Cold Spray Process – A Molecular Dynamics Simulation Study

机译:速度与冲击角对冷喷涂过程中残余应力产生的影响 - 一种分子动力学模拟研究

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摘要

Cold Spray (CS) process is a solid-phase metal deposition technique capable of depositing micro to nanosized particles on a substrate without melting the particles. The CS process thus retains the original mechanical and chemical properties of the coating material. Residual stresses are an important factor affecting the quality, strength, and performance of the coated substrate in CS process. Currently, there is a lack of clear understanding of the residual stress generation in CS process and its control measures. Existing studies have not investigated the type III residual stress in CS process. This study attempts to investigate the effects of impact velocity and angle of impact on the Type III residual stress generation in CS process using molecular dynamics simulation technique. The study considers the impact of nanosized copper particles on copper substrate and the magnitude of the residual stresses is monitored. It is seen that the coated surface retains both tensile and compressive residual stresses. A higher angle impact shows higher compressive residual stresses, which are beneficial to industrial applications. Similarly, 400 m/s impact velocity showed the highest distribution of compressive residual stress on the body. The study results would be crucial in extending the industrial applications of the CS process.
机译:冷喷雾(CS)方法是能够在基板上沉积微量到纳米粒子颗粒而不熔化颗粒的固相金属沉积技术。因此,CS工艺保留了涂料的原始机械和化学性质。残余应力是影响CS工艺中涂覆的基材的质量,强度和性能的重要因素。目前,缺乏对CS过程中的残留应力产生及其控制措施的清晰了解。现有的研究未研究CS过程中的III型残留应力。本研究试图研究利用分子动力学模拟技术研究CS过程中CS过程III型残余应力产生的影响的影响。该研究考虑纳米化铜颗粒对铜基材的影响,并监测残余应力的大小。可以看出,涂层表面保持拉伸和压缩残余应力。更高的角度撞击显示出更高的压缩残余应力,这对工业应用有益。类似地,400米/升冲击速度显示了身体上压缩残余应力的最高分布。研究结果对于扩展CS过程的工业应用至关重要。

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