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Microcracking in polycrystalline ceramics: Elastic isotropy and thermal anisotropy

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Publication:918267
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DOI10.1016/0022-5096(89)90031-8zbMath0705.73169OpenAlexW2011271107MaRDI QIDQ918267

Elsie Sterbin Gottlieb

Publication date: 1989

Published in: Journal of the Mechanics and Physics of Solids (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1016/0022-5096(89)90031-8


zbMATH Keywords

stress intensity factorsresidual stressexplicit analytic solutioncritical grain sizeexplicit algebraic formulaegrain boundary stress fieldshexagonal grain array modelresidual stress fieldspontaneous microcracking


Mathematics Subject Classification ID

Stress concentrations, singularities in solid mechanics (74G70) Fracture and damage (74R99)


Related Items (3)

Characterization of random microstructural stresses and fracture estimation ⋮ A structural model of ceramics: Multiple fracture ⋮ Residual stresses in polycrystals as influenced by grain shape and texture



Cites Work

  • Dislocations in visco-elastic materials


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