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Erschienen in: BHM Berg- und Hüttenmännische Monatshefte 3/2023

28.03.2023 | Originalarbeit

Surface Nitriding of Aluminum Using Barrel and Its Applications

verfasst von: Masahiro Okumiyia, Koichiro Nambu, Masashi Yoshid, Sang-Gweon Kim, Jung-Hyun Kong

Erschienen in: BHM Berg- und Hüttenmännische Monatshefte | Ausgabe 3/2023

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Abstract

A passivation layer is present on the aluminum surface, and Al has a better affinity for oxygen than nitrogen, so the generation of aluminum oxide is easier than with aluminum nitride (AlN). Therefore, it is difficult to form the AlN on an aluminum surface below the melting point. However, gas nitriding of aluminum is possible by using the barrel nitriding in which the oxygen partial pressure in the atmosphere is reduced and the passivation layer on the surface is polished with heating in nitrogen atmosphere. Scanning electron microscopy (SEM) is used for thickness measurement and structure observations of the modified layer. X‑ray diffraction analysis (XRD) is carried out to characterize the constituents of the modified layers. The distribution of nitrogen, oxygen Al, and magnesium in the modified layer is analyzed by electron probe micro analyzer (EPMA).
A nitrided layer of several hundred micrometers can be formed on the aluminum substrate by using the barrel nitriding, and its hardness is about 600 HV. The chemical composition of the aluminum alloy affects the formation of the nitrided layer. Magnesium promotes the formation of a nitride layer, and silicon prevents the formation of a nitride layer.
This method is also applicable to aluminum powder, and aluminum powder with a diameter from 75 to 125 micrometers can be nitrided uniformly. By mixing AlN powder nitrided by the barrel method with the resin, the thermal conductivity of the resin can be improved in heat dissipation material.

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Literatur
2.
Zurück zum Zitat Kawasaki, M., Takase, K., Kato, S., Nakagawa, M., Mori, K., Nemoto, M., Takagi, S., Sugimoto, H.: Development of Engine Valve Seats Directly Deposited onto Aluminum Cylinder Head by Laser Cladding Process. SAE technical paper, vol. 920571. (1992) https://doi.org/10.4271/920571CrossRef Kawasaki, M., Takase, K., Kato, S., Nakagawa, M., Mori, K., Nemoto, M., Takagi, S., Sugimoto, H.: Development of Engine Valve Seats Directly Deposited onto Aluminum Cylinder Head by Laser Cladding Process. SAE technical paper, vol. 920571. (1992) https://​doi.​org/​10.​4271/​920571CrossRef
3.
Zurück zum Zitat Tomida, S., Nakata, K.: Fe–Al composite layers on aluminum alloy formed by laser surface alloying with iron powder. Surf. Coat. Technol. 174, 559–563 (2003)CrossRef Tomida, S., Nakata, K.: Fe–Al composite layers on aluminum alloy formed by laser surface alloying with iron powder. Surf. Coat. Technol. 174, 559–563 (2003)CrossRef
4.
Zurück zum Zitat Tsunekawa, Y., Okumiya, M., Mohri, N., Kuribe, E.: Formation of composite layer containing tiC precipitates by electrical discharge alloying. Mater. Trans. JIM 38, 630–635 (1997)CrossRef Tsunekawa, Y., Okumiya, M., Mohri, N., Kuribe, E.: Formation of composite layer containing tiC precipitates by electrical discharge alloying. Mater. Trans. JIM 38, 630–635 (1997)CrossRef
5.
Zurück zum Zitat Takeuchi, H., Tamura, S., Tsunekawa, Y., Okumiya, M.: Application of electrolyte jet to rapid composite electroplating. Surf. Eng. 20, 25–30 (2004)CrossRef Takeuchi, H., Tamura, S., Tsunekawa, Y., Okumiya, M.: Application of electrolyte jet to rapid composite electroplating. Surf. Eng. 20, 25–30 (2004)CrossRef
6.
Zurück zum Zitat Tsunekawa, Y., Ueno, T., Okumiya, M., Yashiro, T.: Plasma sprayed coatings with water and gas atomised bearing steel powders. Surf. Eng. 19, 17–22 (2003)CrossRef Tsunekawa, Y., Ueno, T., Okumiya, M., Yashiro, T.: Plasma sprayed coatings with water and gas atomised bearing steel powders. Surf. Eng. 19, 17–22 (2003)CrossRef
7.
Zurück zum Zitat Tachikawa, H., Arai, T.: Influence of nitriding conditions on behavior of ion nitriding of aluminum. J. Surf. Finish. Soc. Jpn. 44(4), 320–325 (1993)CrossRef Tachikawa, H., Arai, T.: Influence of nitriding conditions on behavior of ion nitriding of aluminum. J. Surf. Finish. Soc. Jpn. 44(4), 320–325 (1993)CrossRef
9.
Zurück zum Zitat Okumiya, M., Tsunekawa, Y., Fukaya, K., Mohri, N.: Formation of TiC/Ti2AlC composite layer and improvement on surface roughness. Mater. Trans. 42(8), 1717–1722 (2001)CrossRef Okumiya, M., Tsunekawa, Y., Fukaya, K., Mohri, N.: Formation of TiC/Ti2AlC composite layer and improvement on surface roughness. Mater. Trans. 42(8), 1717–1722 (2001)CrossRef
12.
Zurück zum Zitat Okumiya, M., Takeuchi, H., Tsunekawa, Y.: Application of electrolyte jet to Al2O3 particle/Ni composite electro-plating. J. Japan Inst. Met. 59, 640–645 (1995)CrossRef Okumiya, M., Takeuchi, H., Tsunekawa, Y.: Application of electrolyte jet to Al2O3 particle/Ni composite electro-plating. J. Japan Inst. Met. 59, 640–645 (1995)CrossRef
13.
Zurück zum Zitat Tsunekawa, Y., Gotoh, K., Okumiya, M., Mohri, N.: Synthesis and high-temperature stability of titanium aluminide matrixin situ composites. J. Therm. Spray Technol. 1, 223–229 (1992)CrossRef Tsunekawa, Y., Gotoh, K., Okumiya, M., Mohri, N.: Synthesis and high-temperature stability of titanium aluminide matrixin situ composites. J. Therm. Spray Technol. 1, 223–229 (1992)CrossRef
Metadaten
Titel
Surface Nitriding of Aluminum Using Barrel and Its Applications
verfasst von
Masahiro Okumiyia
Koichiro Nambu
Masashi Yoshid
Sang-Gweon Kim
Jung-Hyun Kong
Publikationsdatum
28.03.2023
Verlag
Springer Vienna
Erschienen in
BHM Berg- und Hüttenmännische Monatshefte / Ausgabe 3/2023
Print ISSN: 0005-8912
Elektronische ISSN: 1613-7531
DOI
https://doi.org/10.1007/s00501-023-01334-7

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