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- W2022072724 abstract "This paper is concerned with a micromechanical theory of macroscopic crack propagation due to stress-corrosion cracking in aligned continuous glass-fibre-reinforced polymer laminates, in particular, the relationship between the macroscopic crack propagation rate and the apparent stress-intensity factor at the macroscopic crack tip. A physically based micromechanical model of crack propagation in a glass fibre as a result of stress-corrosion cracking is proposed. It is based on the premise that a stress-corrosion crack initiates at a pre-existing surface flaw in a glass fibre, grows and finally leads to breakage of the fibre. We derive theoretically an equation for the macroscopic crack propagation rate as a function of the apparent stress-intensity factor. The theoretical prediction is in good agreement with experimental measurement. It is emphasized that the size of the inherent surface flaw affects significantly the macroscopic crack propagation rate. For glass fibres free of pre-existing flaws, the relationship can be represented by a simple power law with the value of power of 2. Finally, the macroscopic crack propagation rate in aligned short-glass-fibre-reinforced polymers is briefly discussed." @default.
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- W2022072724 date "1998-10-01" @default.
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- W2022072724 title "A physically based micromechanical theory of macroscopic stress-corrosion cracking in aligned continuous glass-fibre-reinforced polymer laminates" @default.
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- W2022072724 doi "https://doi.org/10.1016/s0266-3538(97)00236-4" @default.
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