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Microbial Corrosion01:24

Microbial Corrosion

Microbiologically Influenced Corrosion (MIC) is a significant form of material degradation caused by the metabolic activities of microorganisms. This phenomenon poses substantial challenges across various industries, including oil and gas, maritime, and water treatment sectors.MIC occurs when microorganisms, such as bacteria, archaea, and fungi, colonize metal surfaces, forming biofilms that alter the local electrochemical environment. These biofilms can lead to the production of corrosive...

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Nanostructured Coatings: Review on Processing Techniques, Corrosion Behaviour and Tribological Performance.

Sheikh Aamir Farooq1, Ankush Raina1, Sanjay Mohan1

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Nanostructured coatings offer effective surface protection against corrosion and wear. This review details recent advancements in ceramic, metallic, and nanocomposite coatings, highlighting their synthesis, performance, and challenges.

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Area of Science:

  • Materials Science
  • Surface Engineering
  • Nanotechnology

Background:

  • Corrosion and tribology are critical surface phenomena impacting material performance in engineering.
  • Surface modification without altering bulk properties is key to mitigating wear and corrosion.
  • Nanomaterials enable the development of advanced surface protective coatings.

Purpose of the Study:

  • To review recent developments in nanostructured coatings for surface protection.
  • To explore synthesis routes, corrosion behavior, and tribological performance of these coatings.
  • To highlight biomimetic approaches and challenges in nanostructured coating development.

Main Methods:

  • Review of literature on nanostructured coatings.
  • Analysis of synthesis methods for ceramic, metallic, and nanocomposite coatings.
  • Evaluation of corrosion and tribological data for various nanocoatings.

Main Results:

  • Nanostructured coatings, including ceramic, metallic, and nanocomposite types, show significant potential.
  • These coatings effectively mitigate corrosion, friction, and wear.
  • Biomimetic strategies offer novel pathways for advanced nanocoating design.

Conclusions:

  • Nanostructured coatings are crucial for enhancing the lifespan and performance of industrial components.
  • Continued research into synthesis and application is needed to overcome development challenges.
  • The field shows promise for innovative surface protection solutions.