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For this purpose analytical models based on equilibrium considerations and finite elements models are used.
The comparison with the experimental results shows that the proposal finite elements models are able to accurately reproduce the behaviour of the E-stub.
Three-dimensional finite elements models are built for this purpose, Goncalves et al. [19] having observed the three-dimensional nature of the stresses occurring in a joint, showing that two-dimensional models should be taken with care.
Additionally, numerical models have been developed and calibrated, and the comparison with the experimental results shows that the proposal finite elements models are able to reproduce the strength behaviour of the E-stub accurately.
Comparison with three-dimensional finite elements models are provided, showing that the proposed class of finite elements matches the reference results as long as the appropriate approximation over the cross-section is considered.
Similar(55)
Response of finite elements models were calculated by pushover analysis.
Finite element models are created with ANSYS.
Two finite-element models are used.
Element models are basic building blocks to a system model.
The drawbacks of existing finite element models are summarized.
The detailed finite element models are used for final evaluation.
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