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eBook - ePub
Thermal Stability and Oxidation Kinetics of MAX Phases
About this book
Thermal Stability and Oxidation Kinetics of MAX Phases provides techniques for improving the thermal stability of MAX phases, enabling their enhanced performance in extreme environments. The book provides a general overview of the physical and mechanical properties of MAX phases, including techniques for their synthesis and characterization. Oxidation characteristics, thermal stability, and decomposition kinetics are then covered for many individual MAX phases, including titanium silicon carbide, titanium aluminum carbide, titanium aluminum nitride, chromium aluminum carbide, and many more. In addition, their mechanical behaviors in vacuum settings and argon gas environments, in particular, are covered at length, and the application of these materials in aerospace, nuclear, and other settings is also discussed.
- Outlines techniques for improving the thermal stability of MAX phases, enabling more effective performance of these materials in extreme environments
- Discusses the physical and mechanical properties of MAX phases
- Studies the oxidation characteristics and decomposition kinetics of different MAX phases in various environments
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Subtopic
Materials ScienceTable of contents
- Title of Book
- 1 Introduction
- 2 Overview of thermal stability in extreme environments
- 3 Experimental procedure
- 4 Physical and mechanical characteristics of Ti3SiC2
- 5 Oxidation characteristics of Ti3SiC2
- 6 Oxidation and hot corrosion of Ti3AlC2, Ti2AlC, and Cr2AlC
- 7 Thermal stability and decomposition kinetics of MAX 312 phases
- 8 Thermal stability and decomposition kinetics of MAX 211 phases
- 9 Thermal stability and decomposition kinetics of MAX 413 phases
- 10 Comparing the high-temperature thermal stability of MAX 211, 312, and 413 phases
- 11 Critical parameters controlling the kinetics of decomposition in Mn+1AXn phases
- 12 Concluding remarks
- Index
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Yes, you can access Thermal Stability and Oxidation Kinetics of MAX Phases by It Meng Low in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Materials Science. We have over 1.5 million books available in our catalogue for you to explore.