Adhesion with Aluminum for Material Surfaces Additively Manufactured by Directed Energy Deposition

Author:

Jeong Ju-Young,Kang Hyun-Sung,Kim Su-Ho,Lee Ki-Yong,Kim Dong-Ju,Shim Do-Sik

Funder

Korea Evaluation Institute of Industrial Technology

National Research Foundation of Korea

Publisher

Springer Science and Business Media LLC

Subject

Management of Technology and Innovation,Industrial and Manufacturing Engineering,Mechanical Engineering,General Materials Science,Renewable Energy, Sustainability and the Environment

Reference36 articles.

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2. Naraynan, L. A., Samuel, F. H., & Gruzleski, J. E. (2004). Dissolution of iron intermetallics in Al–Si alloys through nonequilibrium heat treatment. Metallurgical and Materials Transactions A, 26A, 2161–2174.

3. Mascre, C. (1995). Influence of iron and manganese on type A-S13 (Alpax) alloys. Fonderie, 108, 4330–4336.

4. Kim, H. J., Cho, C. M., & Jeong, C. Y. (2009). Effect of Fe, Mn contents of Al–9wt% Si–0.3 wt% Mg alloys on the thickness of die soldering reaction layer for SKD61 die steel. Journal of Korea Foundry Society, 29(4), 169–175.

5. Yamada, S., Tsukahara, S., Ohtsuka, H., & Hirosaki, N. (2007). Soldering reaction between aluminum die casting alloy and die steel couples. Journal of Japan Foundry Engineering Society, 79(6), 291–296.

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