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Investigation Of Particle/Substrate Bonding Between Copper Powder And Different Substrates In Cold Spray

机译:冷喷涂铜粉与不同基材的粒子/基板键合的研究

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In this work, the bonding mechanism between Cu particle and substrates of Mg. Cu and stainless Steel (SS) was investigated by the direct observation of bonding interface on detached particle and substrate crater. In the cases of Cu/Cu and Cu/SS, dimple-like fractures were found on the detached Cu particle and substrate crater for the first time. Accompanying with EDS line scan and mapping results, such dimple fractures can be considered as the signs of strong metallurgical bonding. However, the bonding interface in case of Cu/Mg is smooth without signs of metallurgical bonding. Finite element analysis results revealed a ring of high contact pressure zone on the surface of particle and substrate, which is exactly the place where metallurgical bonding was observed. It can suggest that the high contact pressure zone is the dominant factor for the formation of metallurgical bonding on the oxide-free interface. The evolution of maximum contact pressure in different cases shows that the substrate hardness plays an important role during the single particle bonding. The present study provides a profound insight into the bonding mechanism of a single cold sprayed particle, which can give the guidance to the full deposition of cold sprayed coating.
机译:在这项工作中,Cu颗粒与Mg底物之间的键合机理。通过直接观察脱离颗粒和基材陨石坑的粘合界面直接观察Cu和不锈钢(SS)。在Cu / Cu和Cu / ss的情况下,首次在分离的Cu颗粒和基材陨石坑上发现凹陷的骨折。伴随着EDS线扫描和绘图结果,这种凹坑骨折可以被认为是强冶金键合的迹象。然而,在Cu / mg的情况下的粘合界面是光滑的,没有冶金键合的迹象。有限元分析结果显示了颗粒表面的高接触压力区环,这正是观察到冶金键合的地方。它可以提出高接触压力区是在无氧化物界面上形成冶金键合的主要因素。不同情况下最大接触压力的演变表明,在单颗粒键合期间,基材硬度在单颗粒粘合期间起着重要作用。本研究提供了对单一冷喷涂颗粒的粘合机理的深刻洞察力,这可以为冷喷涂的全部沉积提供引导。

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