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- W4281890708 abstract "Deposition of hard coatings via cold spray, while desirable, has proven challenging due to the lack of plasticity upon the impact of hard powder particles on substrates. We systematically study a core-shell strategy where a hard particle is coated with a softer shell to address this challenge. We use laser-induced projectile impact tests to study the impact behavior of W-Cu core-shell particles at the single powder particle level. Impact and bonding characteristics of the core-shell particles with two different shell thicknesses are studied in-situ and post-mortem, and compared with that of monolithic W and Cu particles. We complement our experimental observations with finite element simulations of the impact behavior of core-shell particles. We find that the core-shell configuration can be used to tune the impact deformation and that the deformable shell can provide the plasticity needed for successful impact bonding. As the thickness of the Cu shell increases, the bonding mode begins to shift from merely mechanical embedment to metallurgical bonding." @default.
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- W4281890708 date "2022-07-01" @default.
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- W4281890708 title "Impact and bonding behavior of core-shell powder particles" @default.
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- W4281890708 doi "https://doi.org/10.1016/j.surfcoat.2022.128591" @default.
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