By Dwight G. Weldon(auth.)
- Entirely dedicated to the failure research of coatings and paints – an “excellent connection with a pick out market”.
- Latest variation includes new fabric on floor training, move of salt to metal from infected abrasive, influence of height density on coating functionality, on galvanizing, silane-modified coatings, polyurea coatings, polyaspartics, and powder coatings and on dry spray.
- Balances medical historical past and functional recommendation, giving either the idea and purposes in a slender, simply readable shape.
- Includes case reports of laboratory exams.
- Written through an writer with over 25 years of expertise within the paint and coatings undefined.
Chapter 1 normal ideas of Coating formula (pages 1–8):
Chapter 2 Why Coatings paintings and Why They Fail (pages 9–37):
Chapter three Pigments (pages 39–50):
Chapter four ingredients and Solvents (pages 51–64):
Chapter five Coating kinds and customary Failure Modes (pages 65–124):
Chapter 6 Application?Related difficulties (pages 125–134):
Chapter 7 box tools (pages 135–139):
Chapter eight Analytical tools (pages 141–260):
Chapter nine actual equipment (pages 261–273):
Chapter 10 Examples of Coating disasters (pages 275–345):
Chapter eleven The fix of Coating mess ups (pages 347–349):
Read or Download Failure Analysis of Paints and Coatings, Revised Edition PDF
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Extra info for Failure Analysis of Paints and Coatings, Revised Edition
2, The Society for Protective Coatings (SSPC), Pittsburgh, PA, USA, 1995, pp. 9–66. WHY COATINGS WORK AND WHY THEY FAIL 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15. 16. 17. 18. 19. 20. 21. 22. 23. 24. 25. 26. 27. 28. 37 H. J. Roper, R. E. Weaver and J. H. Brandon, J. Prot. Coat. Linings, 22 (6), 52 (2005). M. A. Kuehner, Met. , 83, 15 (1985). W. J. Wittke, Met. , 87, 24 (1989). W. Rausch, The Phosphating of Metals, Finishing Publications Ltd, Teddington, Middlesex, UK, 1990, p. 153. B. N. McBane, Automotive Coatings, Federation of Societies for Coatings Technology, Blue Bell, Philadelphia, PA, USA, 1987, p.
However, there are other factors and forces which can stress a coating, such as chemical attack, degradation by ultraviolet (UV) light and even the fundamental tendency for all closed systems to reach a state of equilibrium. In subsequent chapters, we will deal with failure modes specific to certain coating types, and the analytical and physical techniques available to investigate them. However, taking such an approach to failure analysis without understanding some of the underlying factors is somewhat akin to studying history by memorizing dates and places, with no understanding of the social and political forces which shaped the events.
An experiment that adds to this confusion is that of applying a two-component, thermosetting epoxy coating to thin aluminium foil. As the epoxy cures, the foil curls up, and it is said that this is a consequence of the internal stress generated when the epoxy cures and shrinks. What is actually happening is that the epoxy is relieving its internal stress by shrinking, and the forces are being transferred to the aluminium foil substrate, which has insufficient strength to resist them. If the substrate is thicker and stronger, such as structural steel, it will not deform.
Failure Analysis of Paints and Coatings, Revised Edition by Dwight G. Weldon(auth.)