Price et al., 2017 - Google Patents
Corrosion protection systems and fatigue corrosion in offshore wind structures: current status and future perspectivesPrice et al., 2017
View HTML- Document ID
- 9165437168723991160
- Author
- Price S
- Figueira R
- Publication year
- Publication venue
- Coatings
External Links
Snippet
Concerns over reducing CO2 emissions associated with the burning of fossil fuels in combination with an increase in worldwide energy demands is leading to increased development of renewable energies such as wind. The installation of offshore wind power …
- 238000005260 corrosion 0 title abstract description 289
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Price et al. | Corrosion protection systems and fatigue corrosion in offshore wind structures: current status and future perspectives | |
Trentin et al. | Electrochemical characterization of polymeric coatings for corrosion protection: A review of advances and perspectives | |
Syrek-Gerstenkorn et al. | Sacrificial thermally sprayed aluminium coatings for marine environments: A review | |
Cao et al. | A review of corrosion under insulation: a critical issue in the oil and gas industry | |
Solovyeva et al. | Current downhole corrosion control solutions and trends in the oil and gas industry: A review | |
López-Ortega et al. | Evaluation of protective coatings for high-corrosivity category atmospheres in offshore applications | |
Duarte et al. | The holes of Zn phosphate and hot dip galvanizing on electrochemical behaviors of multi-coatings on steel substrates | |
Knudsen et al. | Experiences with thermal spray zinc duplex coatings on road bridges | |
Ni et al. | Comparative study of anti-corrosion properties and lifespan prediction model for inorganic zinc-rich coating and thermal-spray zinc coating | |
Ahuir‐Torres et al. | Benchmarking parameters for remote electrochemical corrosion detection and monitoring of offshore wind turbine structures | |
Zhang et al. | Long-term atmospheric corrosion behavior of epoxy prime coated aluminum alloy 7075-T6 in coastal environment | |
Cristoforetti et al. | On the limits of the EIS low-frequency impedance modulus as a tool to describe the protection properties of organic coatings exposed to accelerated aging tests | |
Ferkous et al. | Electrochemical and computational approaches of polymer coating on carbon steel X52 in different soil extracts | |
Skotnicki et al. | The comparative analysis of the coatings deposited on the automotive parts by the cataphoresis method | |
Gericke et al. | Fatigue strength of structural steel-welded connections with arc-sprayed aluminum coatings and corrosion behavior of the corresponding coatings in sea water | |
Savill et al. | Techniques for in situ monitoring the performance of organic coatings and their applicability to the pre-finished steel industry: A review | |
Adsetts et al. | Steel bridge-coating systems and their environmental impacts: Current practices and future trends | |
Pélissier et al. | Evaluation of the long-term performance of marine and offshore coatings system exposed on a traditional stationary site and an operating ship and its correlation to accelerated test | |
Mardare et al. | Effects of TiO2 nanoparticles on the corrosion protection ability of polymeric primer coating system | |
Liang et al. | Corrosion of buried pipelines by stray current in electrified railways: Mechanism, influencing factors, and protection | |
Huang et al. | Degradation behavior of arc-sprayed zinc aluminum alloy coatings for the vessel yongle in the south China sea | |
Kunce et al. | Accelerated corrosion tests in quality labels for powder coatings on galvanized steel—comparison of requirements and experimental evaluation | |
Milz et al. | Corrosion fatigue behavior of twin wire arc sprayed and machine hammer peened ZnAl4 coatings on S355 J2C+ C substrate | |
Ulbrich et al. | The Influence of Surface Preparation of the Steel during the Renovation of the Car Body on Its Corrosion Resistance | |
Renaud et al. | Aggressiveness of Different Ageing Conditions for Three Thick Marine Epoxy Systems |