About: Modelling of Crack Bifurcation in Laminar Ceramics with Large Compressive Stress     Goto   Sponge   NotDistinct   Permalink

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  • . Ceramic laminates designed with strong interfaces have shown crack growth resistance (R-curve) behaviour through microstructural design (e.g. grain size, layer composition) and/or due to the presence of compressive residual stresses, acting as a barrier to crack propagation. The goal of the contribution is to model the mechanism of crack bifurcation in laminar ceramics with large compressive stress which still have not been satisfactory explained.
  • . Ceramic laminates designed with strong interfaces have shown crack growth resistance (R-curve) behaviour through microstructural design (e.g. grain size, layer composition) and/or due to the presence of compressive residual stresses, acting as a barrier to crack propagation. The goal of the contribution is to model the mechanism of crack bifurcation in laminar ceramics with large compressive stress which still have not been satisfactory explained. (en)
Title
  • Modelling of Crack Bifurcation in Laminar Ceramics with Large Compressive Stress
  • Modelling of Crack Bifurcation in Laminar Ceramics with Large Compressive Stress (en)
skos:prefLabel
  • Modelling of Crack Bifurcation in Laminar Ceramics with Large Compressive Stress
  • Modelling of Crack Bifurcation in Laminar Ceramics with Large Compressive Stress (en)
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  • RIV/00216305:26210/11:PU95778!RIV12-GA0-26210___
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  • P(GA101/09/1821)
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  • 9
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  • 213077
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  • RIV/00216305:26210/11:PU95778
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  • Laminar Ceramics, Compressive Stress, Crack Bifurcation, Finite Fracture Mechanics (en)
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  • CH - Švýcarská konfederace
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  • [34E23B8DABD5]
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  • 488
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  • Kotoul, Michal
  • Profant, Tomáš
  • Ševeček, Oldřich
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  • 1662-9795
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  • 26210
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