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Crack Behaviour in Laminar Ceramics with Strong Interfaces

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    0354085 - ÚFM 2011 RIV CH eng J - Journal Article
    Náhlík, Luboš - Šestáková, Lucie - Hutař, Pavel
    Crack Behaviour in Laminar Ceramics with Strong Interfaces.
    Key Engineering Materials. Roč. 417-418, - (2010), s. 301-304. ISSN 1013-9826
    R&D Projects: GA AV ČR(CZ) KJB200410803; GA ČR GA106/09/0279
    Institutional research plan: CEZ:AV0Z20410507
    Keywords : ceramic laminate * crack propagation direction * residual stress * flaw tolerant ceramic
    Subject RIV: JL - Materials Fatigue, Friction Mechanics

    The paper deals with crack propagation in ceramic laminates. Assumptions of linear elastic fracture mechanics and small scale yielding are considered. Crack behaviour in a ceramic laminate body under external loading is investigated. Strong residual stresses due to different coefficients of thermal expansion of individual material layers are taken into account in finite element calculations. The change of crack propagation direction at the material interface is estimated on the base of the strain energy density factor and maximum tangential stress criteria. The influence of thickness of laminate layers on crack propagation direction is estimated. The stepwise crack propagation through the Al2O3-ZrO2 ceramic laminate is numerically estimated. It can be concluded that good agreement between the estimated crack path and experimental data was found.
    Permanent Link: http://hdl.handle.net/11104/0193164

     
     
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