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Titlebook: Coatings for High-Temperature Environments; Anti-Corrosion and A Amirhossein Pakseresht,Kamalan Kirubaharan Amirtha Book 2024 The Editor(s)

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Silicon-Based Technologies for High-Temperature Coatings and Their Corrosion Behaviours silicon-based technology high-temperature applications and corrosion mitigation where coatings play a crucial role and the parameters influencing their selection and processing step have been elaborated. Components that run at extremely high temperatures, such as gas turbines, jet engines and indus
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Wear/Erosion Resistant High-Temperature Coatingscing variables, properties, and failures of high-temperature erosion-resistant coatings are therefore highlighted in the current chapter. This could open up new opportunities for research into cutting-edge high-temperature erosive wear resistance coatings.
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Research on Anti-Oxidation and Wear-Resistance Co–Cr–Fe–Nb–Ni High Entropy Alloys Coatings Prepared precipitated by the diffusion of Nb and C and decreased the Laves content. The wear mechanism changed from abrasive wear to oxidation wear as temperature increased. The Co–Cr–Fe–Nb–Ni HEAs coatings exhibited superior performance of anti-oxidation and wear resistance compared to electroplated hard Cr
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Protective Coatings for High-Temperature Thermoelectric Materialson systems. TEM is prone to oxygen corrosion and sublimation when used in a high-temperature environment. It lacks long-term stability, performance degradation, and repeatability loss in heating–cooling cycles and will further decrease its properties. This chapter summarizes various types of protect
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Silicone-Based Coatings for High-Temperature Applicationsposed to chemicals, abrasion, and weathering. Finally, the chapter highlights the importance of curing conditions on the coating performance. In conclusion, silicone coatings play a vital role in many industries, and understanding their properties is essential for achieving optimal performance and d
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