Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/2685
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dc.contributor.authorHari Babu, N-
dc.contributor.authorTzamtzis, S-
dc.contributor.authorBarekar, NS-
dc.contributor.authorPatel, JB-
dc.contributor.authorFan, Z-
dc.coverage.spatial6en
dc.date.accessioned2008-09-22T13:21:02Z-
dc.date.available2008-09-22T13:21:02Z-
dc.date.issued2008-
dc.identifier.citationSolid State Phenomena. 141-143(2008) 373-378.en
dc.identifier.urihttp://bura.brunel.ac.uk/handle/2438/2685-
dc.description.abstractCurrent processing methods for metal matrix composites (MMC) often produces agglomerated reinforced particles in the ductile matrix and also form unwanted brittle secondary phases due to chemical reaction between matrix and the reinforcement. As a result they exhibit extremely low ductility. In addition to the low ductility, the current processing methods are not economical for producing engineering components. In this paper we demonstrate that these problems can be solved to a certain extent by a novel rheo-process. The key step in this process is application of sufficient shear stress on particulate clusters embedded in liquid metal to overcome the average cohesive force of the clusters. Very high shear stress can be achieved by using the specially designed twin-screw machine, developed at Brunel University, in which the liquid undergoes high shear stress and high intensity of turbulence. Experiments with Al alloys and SiC reinforcement reveal that, under high shear stress and turbulence conditions Al liquid penetrates into the clusters and disperse the individual particle within the cluster, thus leading to a uniform microstructure.en
dc.format.extent1918020 bytes-
dc.format.mimetypeapplication/pdf-
dc.language.isoen-
dc.publisherTrans Tech Publicationsen
dc.relation.ispartofBrunel Centre for Advanced Solidification Technology;-
dc.subjectIntensive Shearing; Metal Matrix Composites; Rheo-processen
dc.titleFabrication of metal matrix composites under intensive shearingen
dc.typeResearch Paperen
Appears in Collections:Materials Engineering
Brunel Centre for Advanced Solidification Technology (BCAST)

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