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- W2038403710 abstract "The commercial exploitation of metal matrix composites (MMCs) is dependent upon the reproducibility of properties and high part yield. Thus, managing the fracture of particles during the hot extrusion of particulate reinforced MMCs is of interest for a number of reasons. Particle fracture is a potential defect if associated with void formation: notably the modulus of the resultant extrudate would be deleteriously affected. However, if void formation is suppressed then benefits in terms of mechanical properties may result from the increased homogeneity of particle distribution, and decrease in particle size. This paper maps the changes in particle size, distribution, and orientation during the extrusion of one MMC. Particle size and aspect ratio were found to decrease during extrusion; the size distributions were found to be skewed to smaller sizes after extrusion. Particles were found to have become oriented in the direction of extrusion. From these data it would appear possible to incorporate particle fracture into extrusion limit diagrams in order to predict properties; a model is currently under development to do just this. Furthermore, the authors show that, at elevated temperatures, particle fracture need not necessarily be classed as `damage`." @default.
- W2038403710 created "2016-06-24" @default.
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- W2038403710 date "1995-02-01" @default.
- W2038403710 modified "2023-09-27" @default.
- W2038403710 title "Particle fracture during extrusion of a 6061/alumina composite" @default.
- W2038403710 doi "https://doi.org/10.1016/s0956-716x(99)80056-9" @default.
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