In this work we present the application of isogeometric collocation techniques to the solution of spatial Timoshenko rods. The strong form equations of the problem are presented in both displacement-based and mixed formulations and are discretized via NURBS-based isogeometric collocation. Several numerical experiments are re- ported to test the accuracy and efficiency of the considered methods, as well as their applicability to problems of practical interest. In particular, it is shown that mixed collocation schemes are locking-free independently of the choice of the polynomial degrees for the unknown fields. Such an important property is also analytically proven
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
A frictionless contact formulation for spatial rods is developed within the framework of isogeometri...
In this work we present the application of isogeometric collocation techniques to the solution of sp...
In this work we study isogeometric collocation methods for the Timoshenko beam problem, considering ...
Isogeometric collocation mixed methods for spatial rods are presented and studied. A theoretical ana...
Isogeometric collocation mixed methods for spatial rods are presented and studied. A theoretical ana...
We present a reformulation of the classical Timoshenko beam problem, resulting in a single different...
We present a reformulation of the classical Timoshenko beam problem, resulting in a single different...
This is a PDF file of an unedited manuscript that has been accepted for publication. As a service to...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
A frictionless contact formulation for spatial rods is developed within the framework of isogeometri...
In this work we present the application of isogeometric collocation techniques to the solution of sp...
In this work we study isogeometric collocation methods for the Timoshenko beam problem, considering ...
Isogeometric collocation mixed methods for spatial rods are presented and studied. A theoretical ana...
Isogeometric collocation mixed methods for spatial rods are presented and studied. A theoretical ana...
We present a reformulation of the classical Timoshenko beam problem, resulting in a single different...
We present a reformulation of the classical Timoshenko beam problem, resulting in a single different...
This is a PDF file of an unedited manuscript that has been accepted for publication. As a service to...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
We present a novel method for the mechanical simulation of slender, elastic, spatial rods and rod st...
A frictionless contact formulation for spatial rods is developed within the framework of isogeometri...