3 edition of As-received microstructure of a SiC/Ti-15-3 composite found in the catalog.
As-received microstructure of a SiC/Ti-15-3 composite
1988 by National Aeronautics and Space Administration, For sale by the National Technical Information Service in [Washington, DC], [Springfield, Va .
Written in English
Distributed to depository libraries in microfiche.
|Statement||Bradley A. Lerch and David R. Hall and Todd A. Leonhardt.|
|Series||NASA technical memorandum -- 100938|
|Contributions||Hall, David R., Leonhardt, Todd A., United States. National Aeronautics and Space Administration.|
|The Physical Object|
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Get this from a library. As-received microstructure of a SiC/Ti composite. [Bradley A Lerch; David R Hall; Todd A Leonhardt; United States. National Aeronautics and Space Administration.]. The measured thickness of the reaction layer of the composite, X̄ 2, ranges from to μm with an average of μm.
The thickness of the remaining unreacted outermost layer, X̄ 1, is ≈ μm, ≈17% thinner than that of the as-received fiber (≈ μm). This result suggests that the outermost coating layer thickness of ≈ Cited by: This book is a welcome addition to the literature on metal matrix composites.
It is suitable for scientists, engineers, and practicing engineers who deal with metal matrix composites. A E L S E V I E R Materials Science and Engineering A () Interfaces and fatigue damage in a metastable beta titanium matrix composite W.O.
Soboyejoa, B.M. Rabeehb, P. Kantzosc aDepartment of Materials Science and Engineering, The Ohio State University, West 19th Avenue, Columbus, OHUSA bDepartment of Industrial Systems and Cited by: A SiC reinforced Ti-5Al-5Mo-5V-3Cr matrix metal matrix composite is developed.
Monolithic blocks of alloy are hot rolled via pack rolling to produce foils for MMC panel fabrication. In an effort to possibly create a better composite, the influence of heat treatments on the damage evolution and strength of a SiC/Ti metal matrix composite (MMC) was studied.
Heat treatments of °C and °C for 24 hours were performed on axial and transverse unidirectional by: 1. Foulk J.W., Allen D.H., Lagoudas D.C. () A Micromechanical Model for Predicting Fatigue Response of Metal Matrix Composites Subjected to Environmental Degradation.
In: Bahei-El-Din Y.A., Dvorak G.J. (eds) IUTAM Symposium on Transformation Problems in Composite and Active Materials. Solid Mechanics and its Applications, vol Springer Cited by: 2. Encontrá Libro Sic 3 en Mercado Libre Argentina.
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