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The mechanical behavior of laminates after glass-fracture, for example energy absorbing capacity and residual stiffness, determines their utility.
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The effective elastic behavior of laminates is well understood.
Sung-Kyu Ha, "Mechanical Behavior of Laminated Composites at Elevated Temperatures".
To study the mechanical behavior of laminate hinges, Fields created the laminates by laser cutting paper hinges, applying a pressure-sensitive adhesive and attaching a biaxially pre-strained polymer, such as PVC or polyethylene, to the adhesive.
This paper studies interfacial mechanical behavior of laminate beams, consisting of two piezoelectric facial sheets and an elastic core.
The numerical methods currently available for modeling composites can adequately describe the behavior of polymeric laminates, but have limited application in cementitious laminates that can have multiple cracking.
This paper presents a detailed investigation about the vibration behavior of corrugated laminates.
One cannot properly describe or model the behavior of composite laminates, therefore, without an understanding and representation of nonlinear behavior.
The 2D delamination behavior of composite laminates under quasi-static out-of-plane opening loading has been experimentally investigated.
The impact behavior of aluminum/epoxy laminates was studied by changing the number of layers and the interface strength.
Mechanical behavior of cracked laminates has been studied through model experiments and excellent agreement between experiments and theory is observed.
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