Article ID Journal Published Year Pages File Type
5362903 Applied Surface Science 2011 6 Pages PDF
Abstract

In the present study, Zn/Al composite coating was selected for the typical case to study the deposition behavior and the deformation of binary mixing particles in cold spraying process by means of an experiment and numerical simulation. The experimental results demonstrated that the coating had a dense microstructure, and that Zn and Al were uniformly distributed in the coating. Al particles deformed more severely than Zn particles, and extensively deformed Al particles had a local jet-metallic mixing area. The steel substrate underwent a small amount of deformation when impacted by Zn particles, whereas the substrate did not deform when impacted by Al particles. XRD results show that the Zn/Al composite coating did not form a new phase, and only resulted in the mechanical mixing of Zn and Al, producing a pseudo-alloy coating. In addition, a binary Zn/Al multiparticle impact was first simulated using the finite element analysis software ANSYS/LS-DYNA. The effective plastic strain contour, which enabled the description of the particle deposit procedure, was demonstrated. The plastic deformation evolution of Zn and Al particles in the composite coating was analyzed individually, and the curves of effective plastic strain versus time of typical monitored elements at the edge of the Zn and Al particles were plotted. The simulations showed good concordance with the experimental results.

► A Zn/Al pseudo-alloy coating was prepared by cold spray. ► Microstructures of the coating were characterized. ► Multicomposite particle impact was simulated using the ANSYS/LS-DYNA software. ► The bonding of particles and the formation of coatings are discussed. ► The research tries to supply a guide in the preparation of metal composite coatings.

Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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