The total ion flux and nitriding rate for stainless steel specimens exposed to a modulated electron beam generated argon-nitrogen plasma were measured as a function of distance from the electron beam axis. The total ion flux decreased linearly with distance, but the nitriding rate increased under certain conditions, contrary to other ion flux/nitriding rate comparisons published in the literature. Variation in ion flux composition with distance was explored with a mass spectrometer and energy analyzer as a possible explanation for the anomalous nitriding rate response to ion flux magnitude. A transition in ion flux composition from mostly to predominantly ions with increasing distance was observed. Significant differences in molecular and atomic nitrogen ion energy distributions at a negatively biased electrode were also measured. An explanation for nitriding rate dependence based on flux composition and magnitude is proposed.
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July 2004
Papers from the 50th International AVS Symposium and Exhibition
2-7 November 2003
Baltimore, Maryland (USA)
Research Article|
July 20 2004
Effect of plasma flux composition on the nitriding rate of stainless steel
C. Muratore;
C. Muratore
Plasma Physics Division, Naval Research Laboratory Washington, DC 20375-5346
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S. G. Walton;
S. G. Walton
Plasma Physics Division, Naval Research Laboratory Washington, DC 20375-5346
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D. Leonhardt;
D. Leonhardt
Plasma Physics Division, Naval Research Laboratory Washington, DC 20375-5346
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R. F. Fernsler;
R. F. Fernsler
Plasma Physics Division, Naval Research Laboratory Washington, DC 20375-5346
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D. D. Blackwell;
D. D. Blackwell
Plasma Physics Division, Naval Research Laboratory Washington, DC 20375-5346
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R. A. Meger
R. A. Meger
Plasma Physics Division, Naval Research Laboratory Washington, DC 20375-5346
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J. Vac. Sci. Technol. A 22, 1530–1535 (2004)
Article history
Received:
November 19 2003
Accepted:
March 29 2004
Citation
C. Muratore, S. G. Walton, D. Leonhardt, R. F. Fernsler, D. D. Blackwell, R. A. Meger; Effect of plasma flux composition on the nitriding rate of stainless steel. J. Vac. Sci. Technol. A 1 July 2004; 22 (4): 1530–1535. https://doi.org/10.1116/1.1752894
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