The influence of temperature and nitrogen pressure on S-phase coatings deposition by reactive magnetron sputtering (original) (raw)
Structural and quantitative analysis of nitrided stainless steel coatings deposited by dc-magnetron sputtering
Guy Terwagne
Thin Solid Films, 2000
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Temperature effect of nitrided stainless steel coatings deposited by reactive DC-magnetron sputtering
Julie Colaux
Thin Solid Films, 2004
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Applied Surface Science, 2011
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Preparation and characterization of (Ti, Al, Si)N coatings developed by d.c. reactive magnetron sputtering
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Journal of Optoelectronics and Advanced Materials
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Effect of nitrogen concentration on microstructure and microhardness of nanostructured (Ti, Al, Si)N coatings developed by d.c. reactive magnetron sputtering
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Surface and Coatings Technology, 2010
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Alexandre Mello
Surface and Interface Analysis, 2017
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The Properties of Hard Coating Composed of S-Phase Obtained by PVD Method
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Structure and properties of magnetron-sputteredTiVN coatings
Petr Zeman
Thin Solid Films, 1990
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EFFECT OF NITROGEN GAS RATIO ON THE PROPERTIES OF TI-ZR-N COATINGS DEPOSITED BY PULSED MAGNETRON SPUTTERING
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142 – 155 Effect of Nitrogen Gas Ratio on the Properties of Ti-ZR-N Coatings Deposited by Pulsed Magnetron Sputtering
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Nazlim Bagcivan
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Deposition of the stoichiometric coatings by reactive magnetron sputtering
Olexiy V . Sagalovych, Дудник С.Ф.
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Influence of substrate pre-treatments by Xe + ion bombardment and plasma nitriding on the behavior of TiN coatings deposited by plasma reactive sputtering on 100Cr6 steel
Haroldo C . Pinto
Materials Chemistry and Physics, 2016
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Microstructure and properties of DC magnetron sputtered Ni-Hf coatings, Surface and Coatings Technology, Volume 179, Issue 2-3, 201-209, 2004. B.Ning, M. Shamsuzzoha, M. L. Weaver
Mohammad Shamsuzzoha
Surface and Coatings Technology
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Characterization CompareProcesses and Parameter of SS304 between Nitriding and Thin FilmDepositionofTiNby Reactive Magnetron Sputtering
Anam Parveen
2015
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Characterization Compare Procesess And Parametre Of SS304 Between Nitriding and Thin Film Deposition Of TiN By Reactive Magnetron Sputtering
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International Journal of Advance Research and Innovative Ideas in Education, 2015
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Comparative study of niobium nitride coatings deposited by unbalanced and balanced magnetron sputtering
Sandra Rodil
Thin Solid Films, 2008
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A comparative study of conventional magnetron sputter deposited and plasma enhanced magnetron sputter deposited Ti–Si–C–N nanocomposite coatings
Ahmed Abdelrahman, R. Wei
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Effects of Nitrogen Concentration on Microstructure of Tungsten Coatings Synthesized by Plasma Sputtering Method
S. Deambrosis
Journal of Fusion Energy, 2015
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The Effect of Nitrogen Flow Rate on the Loadbearing Capacity from Nano- to Macro-Hardness of Austenitic Stainless Steels Magnetron Sputtering-Coated with Stainless Steel Films
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The Comparative Study of the Structure and Phase Composition of Ni-Based Coatings Modified by Plasma Jet or Electron Beam
Darya Alontseva
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Optimization of Reactive Sputtering Technology for Hard Coatings Deposition
Gabriela Strnad
Applied Mechanics and Materials, 2014
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Development and characterization of Ti-Nb-N coatings on stainless steel using reactive DC magnetron sputtering
Editor CSRL
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XPS and AFM Investigations of Ti-Al-N Coatings Fabricated Using DC Magnetron Sputtering at Various Nitrogen Flow Rates and Deposition Temperatures
Sebastian Bolz, Markus Ratzke, Aleksei Obrosov, Sabine Weiß
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TiAlN coatings deposited by r.f. magnetron sputtering on previously treated ASTM A36 steel
Elizabeth Restrepo
Surface & Coatings Technology, 2006
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Microstructure and property analysis of DC magnetron sputtered NiAl–0.6Hf coatings
Mohammad Shamsuzzoha
Surface & Coatings Technology, 2005
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