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The failure surface is defined using an adequate overturning mechanism.
A planar failure surface is considered in the present analysis.
An elliptic failure surface, like that of Tsai Wu, has been previously proposed as a failure surface.
The inelastic failure surface is modeled using a Mohr Coulomb failure surface with a tension cut-off and a linear compression cap.
The ratio of orthoclase phenocrysts (ROP) on the failure surface was determined using image analysis.
The failure surface morphology was found to differ between specimens of different thicknesses.
This study demonstrated favorable agreement between FE and the centrifuge model in locating the failure surface.
Formulas are provided to calculate directly the yield acceleration and the inclination of the failure surface.
Design points, important for probabilistic design, have been located on the failure surface.
Experimental results are used to develop the failure surface for 5083 aluminum.
The sectional failure surface method is introduced for member strength checking.
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