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- W2943736743 abstract "Self-healing, obtained by the oxidation of a glass-forming phase, is a crucial phenomenon to ensure the lifetime of new-generation refractory ceramic-matrix composites. The dynamics of oxygen diffusion, glass formation and flow are the basic ingredients of a self-healing model that has been developed here in 2D in a transverse crack of a mini-composite. The presented model can work on a realistic image of the material section and is able to simulate the healing process and to quantify the exposure of the material to oxygen: a prerequisite for its lifetime prediction. Crack reopening events are handled satisfactorily, and healing under cyclic loading can be simulated. This paper describes and discusses a typical case in order to show the model capabilities." @default.
- W2943736743 created "2019-05-09" @default.
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- W2943736743 date "2019-05-02" @default.
- W2943736743 modified "2023-10-02" @default.
- W2943736743 title "Image-Based Numerical Modeling of Self-Healing in a Ceramic-Matrix Minicomposite" @default.
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- W2943736743 doi "https://doi.org/10.3390/ceramics2020026" @default.
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