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An Investigation of Thermal Shock in Porous Clay Ceramics

An Investigation of Thermal Shock in Porous Clay Ceramics

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dc.contributor.author F. W. Nyongesa
dc.contributor.author Nima Rahbar
dc.contributor.author Sam Kinyera Obwoya
dc.contributor.author J. Zimba
dc.contributor.author Bernard O. Aduda
dc.contributor.author Winston O. Soboyejo
dc.date.accessioned 2021-01-10T11:55:43Z
dc.date.available 2021-01-10T11:55:43Z
dc.date.issued 2011
dc.identifier.issn 20905122
dc.identifier.issn 20905130
dc.identifier.uri https://combine.alvar.ug/handle/1/49136
dc.description.abstract The thermal shock resistance of porous ceramic materials is often characterized by the Hasselman parameters. However, in other scenarios, the room-temperature residual strengths after thermal shock are also used to quantify the damage due to thermal shock. This paper attempts to link the measured residual strengths to the dominant crack features that are introduced due to thermal shock in porous clay ceramics produced by the sintering of clay powders with well-controlled size ranges. Residual strength estimates from bend tests are compared with fracture mechanics predictions. The implications of the residual strength results are then discussed for the characterization of damage due to thermal shock.
dc.description.sponsorship National Science Foundation
dc.publisher Hindawi Limited
dc.relation.ispartof ISRN Mechanical Engineering
dc.title An Investigation of Thermal Shock in Porous Clay Ceramics
dc.type journal article
dc.identifier.doi 10.5402/2011/816853
dc.identifier.mag 2113801909
dc.identifier.lens 052-019-222-310-909
dc.identifier.volume 2011
dc.identifier.spage 1
dc.identifier.epage 9
dc.subject.lens-fields Ceramic
dc.subject.lens-fields Residual
dc.subject.lens-fields Composite material
dc.subject.lens-fields Thermal shock
dc.subject.lens-fields Materials science
dc.subject.lens-fields Residual strength
dc.subject.lens-fields Sintering
dc.subject.lens-fields Porous ceramics
dc.subject.lens-fields Fracture mechanics
dc.subject.lens-fields Porosity


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