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Functionally graded ultra-high temperature ceramics: from thermo-elastic numerical analysis to fracture tolerant materials

Academic Article
Publication Date:
2022
abstract:
temperature ceramics containing variable amounts of short carbon fiber in functionally graded stacking sequences were designed and characterized. Stress fields evaluated by finite element model on (AB)nA and more complex asymmetric architectures were compared to the experimental fracture toughness pointing to an effective toughness increment in those structures where the notch fell in zones of residual compression. For the best composite, toughness at room temperature achieved 7 MPa·m0.5 and further increased to 10 MPa·m0.5 when tested at 1500 °C within a light ZrB2-based composite with density below 4 g/cm3. According to the numerical simulations and the effective microstructural features of the composites, the main guidelines for the realization of ceramics with simultaneous failure tolerance and ablation resistance were established.
Iris type:
01.01 Articolo in rivista
Keywords:
Functionally graded composite; Finite element model; Residual stress; Toughness; Carbon fiber
List of contributors:
Gilli, Nicola; Sciti, Diletta; Silvestroni, Laura; Melandri, Cesare
Authors of the University:
MELANDRI CESARE
SCITI DILETTA
SILVESTRONI LAURA
Handle:
https://iris.cnr.it/handle/20.500.14243/442953
Published in:
MATERIALS & DESIGN
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S0264127522010012
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