Impact Deposition Behavior of Al/B4C Cold-Sprayed Composite Coatings: Understanding the Role of Porosity on Particle Retention

Author:

Manafi Farid Hannaneh1ORCID,McDonald André1,Hogan James David1ORCID

Affiliation:

1. Department of Mechanical Engineering, University of Alberta, Edmonton, AB T6G 2R3, Canada

Abstract

This study explores the role of porosity in the impact deposition of a ceramic-reinforced metal-matrix (i.e., Al/B4C) composite coating fabricated via cold spraying. The Johnson–Holmquist–Beissel constitutive law and the modified Gurson–Tvergaard–Needleman model were used to describe the high strain-rate behavior of the boron carbide and the aluminum metal matrix during impact deposition, respectively. Within a finite element model framework, the Arbitrary Lagrangian–Eulerian technique is implemented to explore the roles of reinforcement particle size and velocity, and pore size and depth in particle retention by examining the post-impact crater morphology, penetration depth, and localized plastic deformation of the aluminum substrate. Results reveal that some degree of matrix porosity may improve particle retention. In particular, porosity near the surface facilitates particle retention at lower impact velocities, while kinetic energy dominates particle retention at higher deposition velocities. Altogether, these results provide insights into the effect of deposition variables (i.e., particle size, impact velocity, pore size, and pore depth) on particle retention that improves coating quality.

Funder

InnoTech Alberta, the Major Innovation Fund (MIF) Program

Publisher

MDPI AG

Subject

General Materials Science

Reference105 articles.

1. Deformation behavior and damage in B4Cp/6061Al composites: An actual 3D microstructure-based modeling;Peng;Mater. Sci. Eng. A,2020

2. Characterisation of cold sprayed Al5056/SiCp coating: Effect of SiC particle size;Yang;Surf. Eng.,2016

3. Microstructure characterization and nanomechanics of cold-sprayed pure Al and Al-Al2O3 composite coatings;Wang;Surf. Coat. Technol.,2013

4. Cold spraying–A materials perspective;Assadi;Acta Mater.,2016

5. Miracle, D.B., and Hunt, W. (2004). Automotive Applications of Metal Matrix Composites, Aluminium Consultant Group Inc.

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