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16 Functionalized thin film coatings for automotive coatings

  • Amita Somya and Amit Prakash Varshney
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Corrosion Mitigation Coatings
This chapter is in the book Corrosion Mitigation Coatings

Abstract

Automobile coatings are an excellent example of cutting-edge technology that can provide long-lasting surfaces, satisfy customers’ expectations for design, maximize efficiency, and adhere to environmental requirements. These successes are the result of a century’s worth of experience, investigation methods, technological and methodological developments, and theoretical evaluations. Thin coatings are used in the automotive sector to save both resources and the environment. This is accomplished by lightening the weight of construction materials now in use, extending their useful lives, and raising the manufacturing standards for the materials as a result. In this chapter, automotive thin-layer coating has been described with the focus on specific functions of each layer. State-of-the-art automotive coating procedures have also been explained herewith.

Abstract

Automobile coatings are an excellent example of cutting-edge technology that can provide long-lasting surfaces, satisfy customers’ expectations for design, maximize efficiency, and adhere to environmental requirements. These successes are the result of a century’s worth of experience, investigation methods, technological and methodological developments, and theoretical evaluations. Thin coatings are used in the automotive sector to save both resources and the environment. This is accomplished by lightening the weight of construction materials now in use, extending their useful lives, and raising the manufacturing standards for the materials as a result. In this chapter, automotive thin-layer coating has been described with the focus on specific functions of each layer. State-of-the-art automotive coating procedures have also been explained herewith.

Chapters in this book

  1. Frontmatter I
  2. Preface V
  3. Contents VII
  4. List of contributing authors IX
  5. 1 An overview of corrosion and functionalized thin film coating 1
  6. 2 Functionalized thin film coatings: fabrication strategies, synthesis, and characterization 21
  7. 3 Functionalized thin film coatings: basics, properties, and applications 39
  8. 4 Functionalized superhydrophobic surface and thin film coatings for corrosion protection 53
  9. 5 Porous materials-based functionalized thin film coatings as corrosion inhibitors 85
  10. 6 Functionalized conductive polymer-based thin film coating as corrosion inhibitors 115
  11. 7 Functionalized nanomaterials/nanocomposites-based thin film coatings as corrosion inhibitors 159
  12. 8 Functionalized carbon allotropes-based thin film coatings as corrosion inhibitors 173
  13. 9 Metal-organic frameworks (MOFs)-based functionalized thin film coating for corrosion protection 199
  14. 10 Functionalized quantum dots/carbonaceous quantum dots-based thin film coating as corrosion inhibitor 227
  15. 11 Functionalized hybrid sol–gel thin film coatings for corrosion inhibition 263
  16. 12 Incorporating microcapsules-embedded corrosion inhibitor in functionalized thin film coatings 293
  17. 13 Surface functionalized bio ceramic coatings for anti-corrosion performance 331
  18. 14 Functionalized thin film coatings for reinforced concrete engineering 347
  19. 15 Modeling of SH waves in a functionally graded piezo-poroelastic structure with sensitive coating in presence of point source of disturbance 369
  20. 16 Functionalized thin film coatings for automotive coatings 385
  21. 17 Influence of inorganic/organic additives on mechanical and electrochemical properties of functionalized thin film coatings 403
  22. 18 Role of surface functionalization on corrosion resistance and thermal stability of functionalized thin film coatings 427
  23. 19 Challenges and future outlooks 441
  24. Index 469
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