Search Results - "Short, KT"
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1
Nitrogen and carbon expanded austenite produced by PI3
Published in Surface & coatings technology (02-02-2001)Get full text
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2
The nature of expanded austenite
Published in Surface & coatings technology (01-09-2000)“…This paper attempts to reduce some of the confusion that exists over the nature of the nitrogen-rich layer produced by nitriding austenitic stainless steel at…”
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Journal Article Conference Proceeding -
3
Characteristics of the Ti2N layer produced by an ion assisted deposition method
Published in Surface & coatings technology (01-09-2003)“…An ion assisted deposition process (CMSII) has been developed by combining high-energy ion bombardment, produced by a high voltage pulse discharge, with…”
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4
Nitriding at low temperature
Published in Surface & coatings technology (01-09-2000)“…This paper reports advances in the use of low-pressure rf plasmas for nitriding with an emphasis on treatments at temperatures of 250–450°C; i.e. well below…”
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Journal Article Conference Proceeding -
5
Tension-driven cracking of an expanded austenite layer
Published in Journal of materials science (01-07-2004)“…The present study investigates the mode of damage in an expanded austenite layer on stainless steel [316] when subjected to monotonic tensile loading. Optical…”
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Journal Article -
6
Characterisation of duplex layer structures produced by simultaneous implantation of nitrogen and carbon into austenitic stainless steel X5CrNi189
Published in Surface & coatings technology (01-06-2000)“…Plasma immersion ion implantation has been used for simultaneous implantation of carbon and nitrogen into austenitic stainless steel X5CrNi189 at 400°C. Duplex…”
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Journal Article -
7
Nitriding of austenitic stainless steel by plasma immersion ion implantation
Published in Surface & coatings technology (01-09-1995)“…Plasma immersion ion implantation (PI 3™), in which the diffusion of nitrogen from a low pressure r.f. plasma is combined with the implantation of nitrogen…”
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Journal Article Conference Proceeding -
8
Ion-assisted surface modification by plasma immersion ion implantation
Published in Surface & coatings technology (01-05-1998)“…Plasma immersion ion implantation can add high-energy ion bombardment to almost any plasma-based surface treatment. It can be used as a non-line-of-sight…”
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9
Characterisation of PI3 and RF plasma nitrided austenitic stainless steels using plan and cross-sectional TEM techniques
Published in Surface & coatings technology (10-02-2003)Get full text
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10
Structural modifications and corrosion behavior of martensitic stainless steel nitrided by plasma immersion ion implantation
Published in Journal of vacuum science & technology. A, Vacuum, surfaces, and films (01-07-2005)“…In this work we report a study of the structural modifications and corrosion behavior of martensitic stainless steels (MSS) nitrided by plasma immersion ion…”
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11
Temperature effect of nitrided stainless steel coatings deposited by reactive DC-magnetron sputtering
Published in Thin solid films (22-12-2004)“…Stainless steel coatings were deposited on low carbon steel and on monocrystalline silicon substrates by DC-magnetron sputtering in a reactive atmosphere…”
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12
Influence of Si(1 0 0) surface pretreatment on the morphology of TiO2 films grown by atomic layer deposition
Published in Thin solid films (01-09-2003)“…The effect of water plasma treatment of both hydrophobic and hydrophilic Si(100) surfaces has been studied using infrared spectroscopy to monitor the various…”
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13
Influence of process parameters on the nitriding of steels by plasma immersion ion implantation
Published in Surface & coatings technology (01-05-1998)“…Nitriding of steels by Plasma Immersion Ion Implantation (PI 3) allows access to a large process parameter space. Although the parameters associated with the…”
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14
The effect of hydrogen on the growth of the nitrided layer in r.f.-plasma-nitrided austenitic stainless steel AISI 316
Published in Surface & coatings technology (10-01-2000)“…Austenitic stainless steel AISI 316 has been nitrided by low-temperature r.f. plasmas containing various nitrogen–hydrogen gas mixtures, in order to study the…”
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15
Rf-plasma nitriding of stainless steel
Published in Surface & coatings technology (1998)“…This paper presents results from a study of the nitriding of AISI-316 stainless steel by a low-pressure pure-nitrogen rf plasma at a temperature of 400°C. The…”
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Journal Article Conference Proceeding -
16
Low pressure r.f. nitriding of austenitic stainless steel in an industrial-style heat-treatment furnace
Published in Thin solid films (07-05-1999)“…The nitriding efficiency of a low pressure r.f. plasma is investigated in an industrial style hot-wall furnace in which the component is heated by thermal…”
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Journal Article Conference Proceeding -
17
Development of a plasma immersion ion implanter for the surface treatment of metal components
Published in Surface & coatings technology (01-10-1996)“…Plasma immersion ion implantation (PI 3) has emerged as a viable alternative to conventional ion implantation for specific applications, such as the…”
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18
Isotope effect in the high-Tc superconductors Ba2YCu3O7 and Ba2EuCu3O7
Published in Physical review letters (01-06-1987)“…The effect of isotopic substitution on the superconducting Tc in the 90-K superconductors Ba2YCu3O7 and Ba2EuCu3O7 by replacing O-16 with the heavier isotope…”
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Plasma-nitrided AISI-316 stainless steel examined by scanning electron microscopy and secondary ion mass spectrometry
Published in Thin solid films (07-05-1999)“…Samples of the austenitic stainless steel AISI 316 nitrided at low temperature in a low-pressure r.f. plasma have been examined by scanning electron microscopy…”
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Journal Article Conference Proceeding -
20
Uptake of light elements of nanoporous layers formed by helium ion implantation
Published in Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms (01-05-2003)“…Nanoporous cavity structures can be formed in surfaces by He ion implantation. In modifying materials by diffusing desired dopant atoms into the nanoporous…”
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