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Particle Size and the Mechanical Properties of Uganda Clay

Particle Size and the Mechanical Properties of Uganda Clay

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dc.contributor.author Sam Kinyera Obwoya
dc.contributor.author Timothy J. Baker
dc.contributor.author Wole Soboyejo
dc.date.accessioned 2021-01-10T11:55:45Z
dc.date.available 2021-01-10T11:55:45Z
dc.date.issued 2007
dc.identifier.issn 10426914
dc.identifier.issn 15322475
dc.identifier.uri https://combine.alvar.ug/handle/1/49166
dc.description.abstract This paper describes a study of the effects of particle size on the porosity, microstructure, and mechanical properties of compacts fabricated under uniaxial compression with a rectangular die. Four ranges of different particle sizes were investigated to determine the dependence of fracture toughness; porosity and strength of the compacts on particle size. Thermal shock effects on the compacts were also investigated by determining the number of cycles to failure, when the compacts were cold shocked at four different temperatures. Compacts made from powders of larger particle size tended to have larger number of cycles to failure than those made of finer particle sizes. Contrary to this, compacts made from smaller particles size exhibited higher fracture toughness compared to those made from larger particle size.
dc.publisher Informa UK Limited
dc.relation.ispartof Materials and Manufacturing Processes
dc.title Particle Size and the Mechanical Properties of Uganda Clay
dc.type journal article
dc.identifier.doi 10.1080/10426910601063337
dc.identifier.mag 2169585329
dc.identifier.lens 059-192-126-175-034
dc.identifier.volume 22
dc.identifier.issue 2
dc.identifier.spage 206
dc.identifier.epage 213
dc.subject.lens-fields Particle
dc.subject.lens-fields Composite material
dc.subject.lens-fields Thermal shock
dc.subject.lens-fields Particle size
dc.subject.lens-fields Materials science
dc.subject.lens-fields Uniaxial compression
dc.subject.lens-fields Porosity
dc.subject.lens-fields Microstructure
dc.subject.lens-fields Fracture toughness


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