© 2014, Springer-Verlag London. This work recovers an established technique for improving quadrilateral shell element performance in both out-of-plane and in-plane bending cases using a mixed formulation. A four-field variational principle is established and we relate, at the discrete level, the Lagrange multipliers and secondary right Cauchy–Green field with the displacement and rotation fields. This is the main contribution of this work. High coarse-mesh accuracy is observed for distorted meshes and the robustness is shown to be adequate for crack propagation simulations. A consistent director normalization is performed, as an alternative to our recent spherical interpolation. Covariant metric components are deduced and exact linearizatio...
The final publication is available at Springer via http://dx.doi.org/10.1007/s00466-017-1438-8This p...
In this paper, we demonstrate the use of two conceptual principles, the field-consistency requiremen...
We present a phase field based MITC4+ shell element formulation to simulate fracture propagation in ...
© 2014, Springer-Verlag London. This work recovers an established technique for improving quadrilate...
This work presents a finite strain quadrilateral element with least-squares assumed in-plane shear s...
Very good results in infinitesimal and finite strain analysis of shells are achieved by combining ei...
When compared with advanced triangle formulations (e.g. Allman triangle and Arnold MINI), specially ...
The paper is concerned with a geometrically non-linear solid shell finite element formulation, which...
Very good results in infinitesimal and finite strain analysis of shells are achieved by combining ei...
An alternative approach for the analysis of non-linear shells is adopted, based on mixed forms of th...
In this paper, two new quadrilateral elements are formulated to solve plane problems. Low sensitivit...
We present a thickness-extensible finite strain quadrilateral element based on least-squares in-plan...
In this paper, we demonstrate the use of two conceptual13; principles, the field-consistency require...
In this paper the smoothed strain based four-node flat element MISQ24 with driiling degrees of freed...
Abstract The finite displacement formulation of a quadrilateral element containing an embedded dis-p...
The final publication is available at Springer via http://dx.doi.org/10.1007/s00466-017-1438-8This p...
In this paper, we demonstrate the use of two conceptual principles, the field-consistency requiremen...
We present a phase field based MITC4+ shell element formulation to simulate fracture propagation in ...
© 2014, Springer-Verlag London. This work recovers an established technique for improving quadrilate...
This work presents a finite strain quadrilateral element with least-squares assumed in-plane shear s...
Very good results in infinitesimal and finite strain analysis of shells are achieved by combining ei...
When compared with advanced triangle formulations (e.g. Allman triangle and Arnold MINI), specially ...
The paper is concerned with a geometrically non-linear solid shell finite element formulation, which...
Very good results in infinitesimal and finite strain analysis of shells are achieved by combining ei...
An alternative approach for the analysis of non-linear shells is adopted, based on mixed forms of th...
In this paper, two new quadrilateral elements are formulated to solve plane problems. Low sensitivit...
We present a thickness-extensible finite strain quadrilateral element based on least-squares in-plan...
In this paper, we demonstrate the use of two conceptual13; principles, the field-consistency require...
In this paper the smoothed strain based four-node flat element MISQ24 with driiling degrees of freed...
Abstract The finite displacement formulation of a quadrilateral element containing an embedded dis-p...
The final publication is available at Springer via http://dx.doi.org/10.1007/s00466-017-1438-8This p...
In this paper, we demonstrate the use of two conceptual principles, the field-consistency requiremen...
We present a phase field based MITC4+ shell element formulation to simulate fracture propagation in ...