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    Título
    Boron nitride nanosheets as an effective strategy against the slow crack growth and hydrothermal ageing in zirconia composites
    Autor(es)
    Muñoz-Ferreiro, C.
    Morales-Rodríguez, A.
    Reveron, H.
    Guisado-Arenas, E.
    Cottrino, S.
    Moreno Pedraz, Pablo ManuelUSAL authority ORCID
    Prada Rodrigo, JavierUSAL authority ORCID
    Chevalier, J.
    Gallardo-López, Á.
    Poyato, R.
    Palabras clave
    Boron nitride nanosheets
    Yttria stabilized zirconia
    Low temperature degradation
    Fecha de publicación
    2025-09
    Editor
    Elsevier
    Citación
    Muñoz-Ferreiro, C., Morales-Rodríguez, A., Reveron, H., Guisado-Arenas, E., Cottrino, S., Moreno, P., Prada-Rodrigo, J., Chevalier, J., Gallardo-López, Á., & Poyato, R. (2025). Boron nitride nanosheets as an effective strategy against the slow crack growth and hydrothermal ageing in zirconia composites. Open Ceramics, 23, 100816. https://doi.org/10.1016/j.oceram.2025.100816
    Resumen
    [EN]This paper explores the effectiveness of boron nitride nanosheets in preventing the premature failure of yttria-stabilized tetragonal zirconia ceramics, particularly in humid environments. A simple, low-cost and scalable technique -shear exfoliation in a kitchen blender- was used to prepare BNNS, and pure zirconia and composites with 1, 2.5 and 5 vol. % BNNS were spark plasma sintered. Accelerated hydrothermal ageing experiments in autoclave revealed a remarkable improvement of low temperature degradation resistance in all the composites. Fracture toughness and slow crack growth of the composites with 1 and 2.5 vol. % BNNS were evaluated by bending tests performed in notched specimens. Although the composites presented fracture toughness values similar to those of the reference zirconia, an increase of ∼18 % on crack-tip toughness was achieved. Similar R-curves evaluated in air and in oil-impregnated 2.5 vol. % BNNS composites revealed a limitation of stress-assisted corrosion by water in zirconia, thanks to the BNNS incorporation.
    URI
    https://hdl.handle.net/10366/168586
    ISSN
    2666-5395
    DOI
    10.1016/j.oceram.2025.100816
    Versión del editor
    https://doi.org/10.1016/j.oceram.2025.100816
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