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Materials science superalloy

Often there is a borrowing of terms between metal-intense materials science and polymer-intense materials science where there is actually little relationship between the two. This is not the case with metal-matrix composites (MMCs). Although the materials are often different, there are a number of similarities. For polymer-intense composites, the matrix materials are organic polymers. For MMCs, the matrix materials are typically a metal or less likely an alloy. Popular metals include aluminum, copper, copper-alloys, magnesium, titanium, and superalloys. ... [Pg.253]

Tawancy H. M., Sridhar N., Abbas N. M., Rickerby D. 1998. Failure mechanism of a thermal barrier coating system on a nickel-base superalloy. Journal of Materials Science 33, 681-686. [Pg.145]

Liu C, Shen J, Zhang J, et al. Effect of Withdrawal Rates on Microstructure and Creep Strength of a Single Crystal Superalloy Processed by LMC[J]. Journal of Materials Science amp Technology. 2010,26(4) 306-310. [Pg.350]

U. Krupp, S. Y. Chang and H. J. Christ, Microstructural changes in the sub smface area of Ni-base superalloys as a consequence of oxide scale failure. Materials Science Forum, 2001, 369-372, 287. [Pg.499]

Grain boundary strengthening precipitation in Ni-base superalloys. (Reprinted from Mitchell, R., Department of Materials Science and Metallurgy, Nickel-Base Superalloys Group, University of Cambridge, http //www.msm.cam.ac.uk/UTC/projects, accessed March 2,2009. With permission.)... [Pg.152]


See other pages where Materials science superalloy is mentioned: [Pg.23]    [Pg.1080]    [Pg.539]    [Pg.293]    [Pg.1080]    [Pg.410]    [Pg.270]    [Pg.591]    [Pg.138]   
See also in sourсe #XX -- [ Pg.257 ]




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