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Manufacturing and Compressive Deformation Behavior of High-Strength Aluminum Coating Material Fabricated by Kinetic Spray Process

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Abstract

The compressive deformation behavior in the thickness direction of a kinetic-sprayed pure-aluminum layer whose thickness is ~15 mm was investigated. The yield strength of coating material was 200 MPa, and a unique strain softening phenomenon occurred even at room temperature. Due to the initial severely deformed structure of the kinetic-sprayed coating material based on the results of microstructure analysis, the production of high-strength metal bulk materials using kinetic spray processes was deemed possible.

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Correspondence to Kee-Ahn Lee.

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Manuscript submitted January 30, 2013.

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Kim, KS., Yu, JS., Won, J. et al. Manufacturing and Compressive Deformation Behavior of High-Strength Aluminum Coating Material Fabricated by Kinetic Spray Process. Metall Mater Trans A 44, 4876–4879 (2013). https://doi.org/10.1007/s11661-013-1970-x

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