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The former (softening representation), usually adopted in literature, consists of modelling LVI damages by lowering the elastic material properties which allowed investigating the Lamb wave propagation at different stages of LVI damages evolution.
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Damage evolution is based on the Maimi continuum damage model.
An energy partitioning damage evolution (EPDE) model is proposed to describe the viscoplastic damage evolution.
Experimental global response and observed damage evolution are presented.
Damage evolution is monitored by acoustic emission and optical microscopy.
The damage evolution processes were investigated by optical microscope.
The damage evolution under given stress and damage fields for each block loading is determined by a damage evolution equation.
In recent investigations, the non-linear damage evolution approach was applied to capture progressive damage evolution in braided composites in static and quasi-static loading regimes.
Two distinct stages of damage evolution were identified.
Microstructural damage evolution often involves formation and growth of microcracks.
Damage evolution was recorded using a surface-replicating technique.
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