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Coefficient of Thermal Diffusivity of Insulation Brick Developed from Sawdust and Clays

Coefficient of Thermal Diffusivity of Insulation Brick Developed from Sawdust and Clays

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dc.contributor.author E. Bwayo
dc.contributor.author S. K. Obwoya
dc.date.accessioned 2021-01-10T11:55:38Z
dc.date.available 2021-01-10T11:55:38Z
dc.date.issued 2014
dc.identifier.issn 20908628
dc.identifier.issn 20908644
dc.identifier.uri https://combine.alvar.ug/handle/1/49038
dc.description.abstract This paper presents an experimental result on the effect of particle size of a mixture of ball clay, kaolin, and sawdust on thermal diffusivity of ceramic bricks. A mixture of dry powders of ball clay, kaolin of the same particle size, and sawdust of different particle sizes was mixed in different proportions and then compacted to high pressures before being fired to 950°C. The thermal diffusivity was then determined by an indirect method involving measurement of thermal conductivity, density, and specific heat capacity. The study reveals that coefficient of thermal diffusivity increases with decrease in particle size of kaolin and ball clay but decreases with increase in particle size of sawdust.
dc.publisher Hindawi Limited
dc.relation.ispartof Journal of Ceramics
dc.title Coefficient of Thermal Diffusivity of Insulation Brick Developed from Sawdust and Clays
dc.type journal article
dc.identifier.doi 10.1155/2014/861726
dc.identifier.mag 2001187439
dc.identifier.lens 023-309-788-901-998
dc.identifier.volume 2014
dc.identifier.spage 1
dc.identifier.epage 6
dc.subject.lens-fields Particle
dc.subject.lens-fields Ceramic
dc.subject.lens-fields Brick
dc.subject.lens-fields Composite material
dc.subject.lens-fields Particle size
dc.subject.lens-fields Materials science
dc.subject.lens-fields Ball clay
dc.subject.lens-fields Sawdust
dc.subject.lens-fields Thermal diffusivity
dc.subject.lens-fields Thermal conductivity


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