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Open image in new window Fig. 10 Constitutive pinching material model proposed by Lowes and Altoontash (2003).
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A material model is proposed for ice.
The material model and proposed resistance functions are then described.
Motivated by creep experiments, a finite strain material model is proposed.
In addition to performing these measurements, a Prony series material model is proposed to reproduce the dynamic behavior of railpads.
Here, a numerical material model is proposed for high damping rubber using finite element (FE) simulation to capture its highly nonlinear behavior.
This numerical method, utilizes the classical elastic-perfectly plastic material model initially proposed by Wilkins [M.L. Wilkins, Calculation of elastic plastic flow, Meth. Comput. Phys. (1964)].
The force displacement relationship of the shear spring and the bending moment rotation relationship of the flexural spring are schematized by means of the uniaxial material model recently proposed by Zona and Dall'Asta for steel buckling restrained braces.
The dissipation follows a model proposed elsewhere for materials with randomly dispersed frictional microcracks.
The fatigue test data for two kinds of materials were used to verify the model proposed in this paper.
To illustrate how objective and subjective factors influence decision making, this paper presents two cases of a building in which materials are selected using the optimization model proposed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com