气动冷喷涂
材料科学
复合材料
压扁
涂层
纳米复合材料
沉积(地质)
复合数
粒子(生态学)
热喷涂
变形(气象学)
渗透(战争)
撞击坑
冶金
纳米颗粒
颗粒沉积
分子动力学
粒径
基质(水族馆)
纳米尺度
喷射成形
纳米技术
粒度分布
变形机理
形态学(生物学)
累积滚焊
金属
金属粉末
作者
Pengfei Wu,Arash Kardani,Mabao Liu,Sara Bagherifard
标识
DOI:10.1016/j.surfcoat.2025.132763
摘要
Cold spray is a solid-state process with a high potential for deposition of nanocomposite powders without notable heat input. In the present work, molecular dynamics simulations are developed to explore how graphene distribution and the metallic particle morphology would influence the atomic scale bonding mechanisms of cold sprayed Cu-graphene nanoplatelet (GNPs) nanocomposite powders onto an Al substrate. Our analysis provides critical insights into the influence of cold spray process parameters and powder characteristics on interfacial behavior. Higher impact velocity flattens particles more, leading to deeper substrate penetration and greater crater formation, which can in turn improve adhesion strength. The distribution of graphene, whether aggregated, uniform, or randomly positioned around the metallic powder particle, is found to have a significant impact on the plastic deformation and deposition state of the nanocomposite particles. Furthermore, changing particle morphology from spherical to semispherical, besides altering flattening ratio and crater depths, also affects GNPs states at heterogeneous interfaces. These findings establish a mechanistic framework linking major powder parameters (velocity, morphology, GNP distribution) to cold spray deposition dynamics and interface characteristics. • Bringing insight into atomic bonding in cold spray coating of Cu-GNP/Al powder. • Revealing how GNP distribution impacts particle deformation and deposition. • Demonstrating the effects of particle morphology on flattening and GNP bonding. • Establishing link between powder parameters and interface characteristics.
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