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Hartwig, A.; Decker, M.; Klein, O.; Karl, H., E-mail: helmut.karl@physik.uni-augsburg.de2015
AbstractAbstract
[en] The aim of this study is to evaluate the applicability of highly chemically inert titanium dioxide synthesized by ion beam implantation for corrosion protection of AISI 304 stainless steel in sodium chloride solution. More specifically, the prevention of galvanic corrosion between carbon-fiber reinforced plastic (CFRP) and AISI 304 was investigated. Corrosion performance of TiO_2 implanted AISI 304 – examined for different implantation and annealing parameters – is strongly influenced by implantation fluence. Experimental results show that a fluence of 5 × 10"1"6 cm"−"2 (Ti"+) and 1 × 10"1"7 cm"−"2 (O"+) is sufficient to prevent pitting corrosion significantly, while galvanic corrosion with CFRP can already be noticeably reduced by an implantation fluence of 5 × 10"1"5 cm"−"2 (Ti"+) and 1 × 10"1"6 cm"−"2 (O"+). Surface roughness, implantation energy and annealing at 200 °C and 400 °C show only little influence on the corrosion behavior. TEM analysis indicates the existence of stoichiometric TiO_2 inside the steel matrix for medium fluences and the formation of a separated metal oxide layer for high fluences.
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Source
IBMM 2014: 19. international conference on ion beam modification of materials; Leuven (Belgium); 14-19 Sep 2014; S0168-583X(15)00603-5; Available from http://dx.doi.org/10.1016/j.nimb.2015.07.025; Copyright (c) 2015 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
Nuclear Instruments and Methods in Physics Research. Section B, Beam Interactions with Materials and Atoms; ISSN 0168-583X;
; CODEN NIMBEU; v. 365(Part A); p. 94-99

Country of publication
ALKALI METAL COMPOUNDS, ALLOYS, AUSTENITIC STEELS, BEAMS, CARBON ADDITIONS, CHALCOGENIDES, CHARGED PARTICLES, CHEMICAL REACTIONS, CHLORIDES, CHLORINE COMPOUNDS, CHROMIUM ALLOYS, CHROMIUM-NICKEL STEELS, CORROSION, CORROSION RESISTANT ALLOYS, ELECTRON MICROSCOPY, ELEMENTS, FIBERS, HALIDES, HALOGEN COMPOUNDS, HEAT RESISTANT MATERIALS, HEAT RESISTING ALLOYS, HEAT TREATMENTS, HIGH ALLOY STEELS, IONS, IRON ALLOYS, IRON BASE ALLOYS, MATERIALS, METALS, MICROSCOPY, NICKEL ALLOYS, ORGANIC COMPOUNDS, ORGANIC POLYMERS, OXIDES, OXYGEN COMPOUNDS, PETROCHEMICALS, PETROLEUM PRODUCTS, PLASTICS, POLYMERS, REINFORCED MATERIALS, SODIUM COMPOUNDS, SODIUM HALIDES, STAINLESS STEELS, STEEL-CR19NI10, STEELS, SURFACE PROPERTIES, SYNTHETIC MATERIALS, TITANIUM COMPOUNDS, TRANSITION ELEMENT ALLOYS, TRANSITION ELEMENT COMPOUNDS, TRANSITION ELEMENTS
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