Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5350533 | Applied Surface Science | 2017 | 5 Pages |
Abstract
Nickel (Ni) materials with a thickness of a few hundred nm were homogeneously coated on the surfaces of aluminum (Al) powders by an electroless plating process. The Ni-coated Al powders show characteristic interfacial structures mixed of Ni, Al and O instead of densely packed Al oxide at the surface. The explosion test of the Ni-coated Al powders utilizing flame ignition showed that the powders had a 3.6 times enhanced pressurization rate of 405Â kPa/ms compared to 111Â kPa/ms of uncoated Al powders. It was found that this is due to a feasible diffusion of oxygen atoms into the Al powders through the thin and rough interfacial layers present at the Ni/Al interface. These results clearly indicate that nano-sized Ni film introduced instead of surface oxide acts as a very profitable layer to achieve efficient combustion behaviors by a rapid oxidation of Al powders.
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Authors
Kyung Tae Kim, Dong Won Kim, Soo Hyung Kim, Chang Kee Kim, Yoon Jeong Choi,