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A refined cohesive zone model that accounts for inertia of cohesive zone of a moving crack
Institution:1. College of Civil Engineering, Hebei University of Engineering, Handan 056038, PR China;2. Department of Civil Engineering, The University of Akron, OH 44325-3905, USA
Abstract:Existing cohesive zone models assume that actual fracture zone of non-zero mass can be modeled by a line segment (cohesive zone) with no mass and inertia. In the present work, a simplified mass-spring model is presented to study inertia effect of cohesive zone on a mode-I steady-state moving crack. It is showed that fracture energy predicted by the present model increases dramatically when a finite limiting crack speed is approached. Reasonable agreement with known experiments indicates that the present model has the potential to catch the inertia effect of cohesive zone which has been ignored in existing cohesive zone models and better simulate dynamic fracture at high crack speed.
Keywords:Dynamic fracture  Cohesive zone model  Inertia  Crack speed
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