Separate Puck fibre and matrix/inter-fibre phase-field fatigue channels, degrading resistance not stiffness, reproduce orientation- and notch-dependent UD composite fatigue modes with one fixed card.
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A one-way coupled deep-energy phase-field fracture model with piezoresistive readout predicts that global resistance in fractured conductive materials rises sharply only when dominant current-carrying ligaments are disrupted.
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A Puck-informed mode-resolved phase-field fatigue framework for unidirectional composites
Separate Puck fibre and matrix/inter-fibre phase-field fatigue channels, degrading resistance not stiffness, reproduce orientation- and notch-dependent UD composite fatigue modes with one fixed card.
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A multiphysics deep energy method for fourth-order phase-field fracture with piezoresistive self-sensing
A one-way coupled deep-energy phase-field fracture model with piezoresistive readout predicts that global resistance in fractured conductive materials rises sharply only when dominant current-carrying ligaments are disrupted.