Numerical Modeling Of High-Temperature Corrosion Processes - Info and Reading Options
By Nesbitt, James A
"Numerical Modeling Of High-Temperature Corrosion Processes" and the language of the book is English.
“Numerical Modeling Of High-Temperature Corrosion Processes” Metadata:
- Title: ➤ Numerical Modeling Of High-Temperature Corrosion Processes
- Author: Nesbitt, James A
- Language: English
“Numerical Modeling Of High-Temperature Corrosion Processes” Subjects and Themes:
- Subjects: ➤ OXYGEN - COMPRESSION LOADS - SYSTEMS ENGINEERING - SAFETY FACTORS - VIBRATION EFFECTS - TEST FACILITIES - PERFORMANCE PREDICTION - FLAMMABILITY - HAZARDS - COMBUSTION - IGNITION - ELECTRIC ARCS - CHEMICAL REACTIONS - RISK - ADIABATIC CONDITIONS
Edition Identifiers:
- Internet Archive ID: nasa_techdoc_19970002929
AI-generated Review of “Numerical Modeling Of High-Temperature Corrosion Processes”:
"Numerical Modeling Of High-Temperature Corrosion Processes" Description:
The Internet Archive:
Numerical modeling of the diffusional transport associated with high-temperature corrosion processes is reviewed. These corrosion processes include external scale formation and internal subscale formation during oxidation, coating degradation by oxidation and substrate interdiffusion, carburization, sulfidation and nitridation. The studies that are reviewed cover such complexities as concentration-dependent diffusivities, cross-term effects in ternary alloys, and internal precipitation where several compounds of the same element form (e.g., carbides of Cr) or several compounds exist simultaneously (e.g., carbides containing varying amounts of Ni, Cr, Fe or Mo). In addition, the studies involve a variety of boundary conditions that vary with time and temperature. Finite-difference (F-D) techniques have been applied almost exclusively to model either the solute or corrodant transport in each of these studies. Hence, the paper first reviews the use of F-D techniques to develop solutions to the diffusion equations with various boundary conditions appropriate to high-temperature corrosion processes. The bulk of the paper then reviews various F-D modeling studies of diffusional transport associated with high-temperature corrosion.
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"Numerical Modeling Of High-Temperature Corrosion Processes" is available for download from The Internet Archive in "texts" format, the size of the file-s is: 6.27 Mbs, and the file-s went public at Mon May 23 2011.
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