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Организация диссипативной структуры в Y-TZP керамике А. С. Буяков, А. Ю. Мировой, Д. А. Ткачев [и др.]

Contributor(s): Мировой, А. Ю | Ткачев, Дмитрий Александрович | Мартышина, Ирина Павловна | Буякова, Светлана Петровна | Буяков, Алесь СергеевичMaterial type: ArticleArticleOther title: Organization of dissipative structure in Y-TZP ceramics [Parallel title]Subject(s): керамика на основе тетрагонального диоксида циркония | вязкость разрушения | углеродные нанотрубкиGenre/Form: статьи в сборниках Online resources: Click here to access online In: Полифункциональные химические материалы и технологии. [Т. 1] : материалы Международной научной конференции, 22-25 мая 2019 г Т. 1. С. 33-35Abstract: In this paper, an approach to increasing the resistance to crack propagation in a non-plastic ceramic matrix is studied by organizing a heteromodular dissipative structure. It is shown that the introduction of low modulus hexagonal boron nitride particles and high modulus carbon nanotubes into zirconia ceramic leads to an increase in crack resistance due to the simultaneous implementation of several mechanisms of the crack front energy dissipation.
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In this paper, an approach to increasing the resistance to crack propagation in a non-plastic ceramic matrix is studied by
organizing a heteromodular dissipative structure. It is shown that the introduction of low modulus hexagonal boron
nitride particles and high modulus carbon nanotubes into zirconia ceramic leads to an increase in crack resistance due to
the simultaneous implementation of several mechanisms of the crack front energy dissipation.

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