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Hot Corrosion and HVOF Coatings
Details
Hot corrosion is an aggressive form of corrosion in which metals and alloys experienced accelerated degradation when their surfaces are covered with a thin film of fused salt in an oxidizing atmosphere at elevated temperatures. This form of corrosion consumes the material at an unpredictably rapid rate. Consequently, the load-carrying ability of the components reduces quickly, leading eventually to catastrophic failure. Hot corrosion occurred due to the presence of salt contaminants such as Na2SO4, NaCl, and V2O5 that combine to form molten deposits, which damage the protective surface oxides. The inability to either totally prevent hot corrosion or at least detect it at an early stage has resulted in several accidents, leading to loss of life and destruction of infrastructures. Hot corrosion has been observed in boilers, internal combustion engines, gas turbines, fluidized bed combustion and industrial waste incinerators since 1940's. However, it became a topic of importance and popular interest in the late 1960's when gas turbine engines of military aircrafts suffered severe corrosion attacks while operating over and near sea water during the Vietnam conflict
Autorentext
Dr. TS Sidhu is graduate & post graduate in mechanical engineering from Panjab University Chandigarh and Ph.D from IIT Roorkee. He got best Ph.D Award for submitting his Ph.D thesis in 02 Years and 04 months with 18 publications in international journals of repute. He is having total 32 teaching experience and 160 publications to his credit.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786205497395
- Genre Mechanical Engineering
- Sprache Englisch
- Anzahl Seiten 372
- Herausgeber LAP LAMBERT Academic Publishing
- Größe H220mm x B150mm x T23mm
- Jahr 2022
- EAN 9786205497395
- Format Kartonierter Einband
- ISBN 6205497395
- Veröffentlichung 04.10.2022
- Titel Hot Corrosion and HVOF Coatings
- Autor T. S. Sidhu
- Untertitel Some Studies to Understand the Mechanism of Hot Corrosion
- Gewicht 572g