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- W2026398487 abstract "In this paper, the continuum theory of dispacive phase transformation is applied to investigate the kinematical aspect of twinning in monoclinic ZrO2 particles transformed from tetragonal phase. The numerical calculations show that six twin systems may operate in the monoclinic zirconia particles, from a pure kinematical point of view. We have also demonstrated that the fine coherence of the twin interface expects an amplitude vector on the interface which happens to approximately satisfy the invariant plane strain assumption in the phenomenological theory of martensite transformation. Dans cet article, on applique la théorie de continuum d'une transformation de phase displacive pour étudier l'aspect cinématique du maclage dans des particules monocliniques de ZrO2 obtenues par transformation à partir de la phase quadratique. Les calculus numériques montrent que six systèmes de macles peuvent opérer dans les particules monocliniques de zircone d'un point de vue purement cinématique. On montre aussi que la cohérence fine de l'interface de macle suppose un vecteur d'amplitude sur l'interface qui arrive à satisfaire approximativement l'hypothèse de la déformation plane invariante de la théorie phénoménologique de la transformation martensitique. In dieser Arbeit wird die Kontinuumstheorie der displaziven Umwandlungen benutzt, um den kinematischen Aspekt der Zwillingsbildung in monoklinen ZrO2-Teilchen, die aus der tetragonalen Phase entstehen, zu untersuchen. Die numerischen Berechnungen zeigen, daβ -von einem rein kinematischen Gesichtspunkt aus- sechs Zwillingssysteme in den monoklinen Zirkonoxid-Teilchen aktiv sein können. Auβerdem zeigen wir, daβ die ausgezeichnete Kohärenz der Zwillingsgrenzfläche einem Amplitudenvektor in der Grenzfläche entspricht, der zufällig etwa der in der phänomenologischen Theorie der martensitischen Umwandlung angenommenen invarianten ebenen Verzerrung entspricht." @default.
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- W2026398487 date "1992-06-01" @default.
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- W2026398487 title "Transformation twinning in monoclinic zirconia particles" @default.
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- W2026398487 doi "https://doi.org/10.1016/0956-7151(92)90440-p" @default.
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