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The 3DFE computer program PLAXIS 3D 2016 was selected to simulate the GRS-IBS behavior under different loading conditions.
Analytical models such as Finite Element (FE) models, which are calibrated using structural health monitoring (SHM) data, better represent the existing structures' behavior under different loading conditions.
A concept of crack driving force and crack stability analysis is employed to predict crack behavior under different loading conditions; the concept of crack growth resistance, such as an effective surface energy, is used.
The present study also demonstrates that the proposed method of characterizing the strain electric butterfly behavior based on the underlying domain switching mechanism is very effective for studying ferroelectric behavior under different loading conditions.
Since the experimental results demonstrate a rate dependent behavior of the beam, then to predict its mechanical behavior under different loading velocities two strain rate sensitive progressive damage models have been developed based on Continuum Damage Mechanics approach.
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A two-port wideband model that is capable to represent the transformer behavior under different load conditions is considered.
The extensive utilization of this equipment has raised the need to investigate their behavior under different load cases and determine their service life due to cyclic loading.
It allows service providers to monitor the operational status of their services, understand the service behavior under different load types and with different network locations of the synchronization clients.
Interestingly, this laminated structure possesses distinct electrical behaviors under different loading conditions.
On the basis of the experimental results, the paper discusses the distinctions of cyclic behaviors under different loading methods in terms of crack pattern, joint shear strength, joint shear transfer mechanism, joint shear deformation, longitudinal bar-slip, energy dissipation, and stiffness degradation.
Also, the failure behaviors of NFMLs under different loading conditions were revealed.
More suggestions(15)
behavior under different operating
behavior under different buckling
behavior under different network
behavior under different assay
behavior under different time
behavior under random loading
behavior under cyclic loading
behavior under unidirectional loading
behavior under constant loading
behavior under hydrostatic loading
behavior under identical loading
behavior under orthodontic loading
behavior under high loading
behavior under quasistatic loading
behavior under axisymmetric loading
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