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Fracture mechanics of laminated glass subjected to blast loading
Authors:J Wei  LR Dharani  
Institution:Department of Mechanical and Aerospace Engineering, University of Missouri–Rolla, Rolla, MO 65409-0050, USA
Abstract:A failure criterion based on energy balance approach is introduced for the laminated glass panel subjected to blast loading. Based on this failure criterion, a damage factor is developed to assess the failure of the laminated glass panel. If the damage factor is less than one, the plate is safe otherwise unsafe. Trigonometric function is employed to express the transverse deflection and the Airy’s stress function in von Karman’s large deflection equations of a thin plate. The nonlinear ordinary differential equation of motion obtained using the Galerkin method is solved using Runge–Kutta method. The predicted results indicate that the breakages of the laminated glass may be caused by the negative phase of the blast load if the positive phase blast load is not violent enough to cause failure. Also, the size of glass shards the laminated glass plies breaks in to is predicted using the surface energy based failure model.
Keywords:Blast load  Laminated glass  Geometric nonlinearity  Linear viscoelasticity  Energy balance
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