Recent Advances in Corrosion Science

The dynamic development of global industry and growing demand for new material technologies generate constantly increasing problems regarding premature material degradation and the requirement to determine corrosion mechanisms and to develop new protection/evaluation approaches. Corrosion resistance...

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Bibliographic Details
Other Authors: Ryl, Jacek (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2020
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DOAB: description of the publication
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MARC

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520 |a The dynamic development of global industry and growing demand for new material technologies generate constantly increasing problems regarding premature material degradation and the requirement to determine corrosion mechanisms and to develop new protection/evaluation approaches. Corrosion resistance depends on numerous determinants, such as material structure, chemistry, and complex environmental factors. It is highly challenging to obtain consensus between high corrosion resistance and an economic approach. On the other hand, inadequate levels of corrosion control create serious hazards to life and the environment. This Special Issue, "Recent Advances in Corrosion Science", brings together fourteen articles and one review, providing a snapshot of the recent activity and development in this field. The book contains studies related to the development of new corrosion-resistant alloys and the determination of microstructure-dependent properties; it also provides an insight into recent approaches towards anticorrosion technologies, such as corrosion inhibitors and composite and metal protective coatings. 
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546 |a English 
650 7 |a Research & information: general  |2 bicssc 
653 |a corrosion inhibitor 
653 |a electrochemical 
653 |a AFM 
653 |a CO2 corrosion 
653 |a austempered gray cast iron 
653 |a austempering temperature 
653 |a microstructure 
653 |a potentiodynamic polarization 
653 |a electrochemical impedance spectroscopy 
653 |a titanium-based alloys 
653 |a passivity breakdown 
653 |a pitting corrosion 
653 |a carbon steel 
653 |a indazole derivatives 
653 |a electrochemistry 
653 |a DFT 
653 |a thermal diffusion coatings 
653 |a grade 10.9 bolts 
653 |a corrosion resistance 
653 |a thermal deformation parameters 
653 |a 35CrMoV steel 
653 |a grain size 
653 |a electrochemical corrosion 
653 |a aluminum alloys 
653 |a phase characterization 
653 |a de-alloying 
653 |a titanium aluminides 
653 |a oxidation 
653 |a non-isothermal 
653 |a mechanism 
653 |a internal oxidation 
653 |a pre-corrosion pits 
653 |a residual fatigue life 
653 |a 42CrMo steel 
653 |a stress intensity factor 
653 |a aluminum alloy 
653 |a alkaline environment 
653 |a impedance analysis 
653 |a adsorption 
653 |a dihydroxybenzene 
653 |a magnesium 
653 |a immersion test 
653 |a polarization 
653 |a cleaning 
653 |a bond coat 
653 |a PDC coatings 
653 |a fillers 
653 |a EC-AFM 
653 |a corrosion 
653 |a metallic materials 
653 |a metal coatings 
653 |a nickel 
653 |a composite coatings 
653 |a electrodeposition 
653 |a XPS 
653 |a electrochemical impedance spectroscopy (EIS) 
653 |a boron-doped diamond 
653 |a high-temperature treatment 
653 |a surface oxidation 
653 |a microstructure defects 
653 |a electrochemical activity 
653 |a n/a 
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