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Academic Journal of Materials & Chemistry, 2023, 4(4); doi: 10.25236/AJMC.2023.040405.

Research on Aluminizing Process of Friction Coating and Its Corrosion Resistance

Author(s)

Boya Yang1, Rongpeng Yang2

Corresponding Author:
Boya Yang
Affiliation(s)

1School of Mechanical and Electrical Engineering, China University of Petroleum, Qingdao, Shandong, 266000, China

2Avic Lithium Power Luoyang Co. Ltd, Luoyang, Henan, 471000, China

Abstract

In this paper, a friction coating aluminizing process is used to create an aluminum coating layer on the surface of the steel, and a low-temperature diffusion treatment forms a Fe-Al infiltration layer to improve the corrosion resistance of carbon steel. This paper introduces the basic concepts, classifications, and application areas of aluminized steel, analyzes the corrosion mechanisms of aluminized steel in different environments and summarizes the commonly used evaluation methods. This paper also determined the appropriate range of parameters for the friction coating aluminizing process and investigated the effects of various process parameters on the surface structure and properties of the steel. Finally, this paper evaluates the corrosion resistance of friction-coating aluminized steel in typical environments. The results show that friction-coating aluminized steel has better corrosion resistance and can effectively prolong the service life of carbon steel.

Keywords

Friction coating; Aluminizing; Corrosion resistance; Metal-matrix composite

Cite This Paper

Boya Yang, Rongpeng Yang. Research on Aluminizing Process of Friction Coating and Its Corrosion Resistance. Academic Journal of Materials & Chemistry (2023) Vol. 4, Issue 4: 28-33. https://doi.org/10.25236/AJMC.2023.040405.

References

[1] W. Xuming, W. Xianpeng, Y. Zhanjin, Y. Boyan, H. Junke and H. Yao, "Application Study of Hot Dip Aluminized Steel in Transformer Substation," 2015 8th International Conference on Intelligent Computation Technology and Automation (ICICTA), Nanchang, China, 2015, pp. 221-224.

[2] Y. Liao, B. Jin, L. Liu, J. Yuan and P. Liu, "Experimental Study on Multi-method Synchronous Combustion Diagnosis of Aluminized Solid Propellants under 7.5-20 MPa," 2021 12th International Conference on Mechanical and Aerospace Engineering (ICMAE), Athens, Greece, 2021, pp. 7-11.

[3] T. Zhylenko and O. Gaponova, "Statistical Analysis of Aluminized Coatings Obtained by Electrospark Deposition," 2018 International Conference on Information and Telecommunication Technologies and Radio Electronics (UkrMiCo), Odessa, Ukraine, 2018, pp. 1-4.

[4] Bloom, J. E. Indacochea, M. Krumpelt and T. G. Benjamin, "A comparison of two aluminizing methods for corrosion protection in the wet seal of molten carbonate fuel cells," IECEC-97 Proceedings of the Thirty-Second Intersociety Energy Conversion Engineering Conference (Cat. No.97CH6203), Honolulu, HI, USA, 1997, pp. 782-786 vol.2.

[5] T. Kohriki, A. Mochizuki, Y. Ikegami, Y. Unno, S. Terada and K. Hara, "Evaluation of contact resistance of silver-loaded epoxy with aluminized backplane of silicon microstrip sensors," 2007 IEEE Nuclear Science Symposium Conference Record, Honolulu, HI, USA, 2007, pp. 673-676.

[6] C. Biino, R. Mussa, S. Palestini, N. Pastrone and L. Pesando, "A very light proportional chamber constructed with aluminized mylar tubes for drift time and charge division readouts," in IEEE Transactions on Nuclear Science, vol. 36, no. 1, pp. 98-100, Feb. 1989.

[7] C. Vermare, J. Labrouche, P. Le Taillandier de Gabory, D. Villate and J. T. Donohue, "Strong self-focusing of a 7.2 MeV electron beam striking an aluminized mylar target," in IEEE Transactions on Plasma Science, vol. 27, no. 6, pp. 1566-1571, Dec. 1999.

[8] H. Ahmad et al., "Aluminized Film as Saturable Absorber for Generating Passive Q-Switched Pulses in the Two-Micron Region," in Journal of Lightwave Technology, vol. 35, no. 12, pp. 2470-2475, 15 June15, 2017.

[9] J. L. Gottfried, S. W. Dean, C. -C. Wu and F. C. De Lucia, "Optimizing the Performance of Aluminized Explosives: Laser-Based Measurements of Energy Release and Spectroscopic Diagnostics," 2019 IEEE Research and Applications of Photonics in Defense Conference (RAPID), Miramar Beach, FL, USA, 2019, pp. 1-3.

[10] X. Shangqing, W. Xuming, L. Bo, C. Dequan and L. Rongmin, "Retracted: Effect of Heat Treatment Process on Mechanical Properties of Aluminized Steel," 2016 International Conference on Smart City and Systems Engineering (ICSCSE), Hunan, China, 2016, pp. 104-106.