We extend a recently-developed framework for isogeometric analysis of composite laminates to drive material damage evolution with a smoothed strain field. This builds on ideas from gradient-enhanced continuum damage modeling, and is intended to limit the dependence of damage predictions on the choice of discrete mesh. The resulting enhanced framework models each lamina of a composite shell structure as a Kirchhoff–Love thin shell. To account for the anisotropic damage modes of laminae, we smooth a tensor-valued strain by solving an elliptic partial differential equation (PDE) system on each lamina. This strain-smoothing PDE system is formulated to be independent of the choice of coordinates and is applicable to general manifold shell geomet...
Isogeometric analysis (IGA) has recently received much attention in the computational mechanics comm...
Several applications in many engineering fields need particular structural elements characterized by...
Continuum damage formulations are commonly used for the simulation of diffuse fracture processes. Im...
We extend a recently-developed framework for isogeometric analysis of composite laminates to drive m...
We extend a recently-developed framework for isogeometric analysis of composite laminates to drive m...
High-fidelity progressive damage simulations of composite materials are important for advancements i...
Fiber-reinforced composite materials have become increasingly popular in the past few decades for li...
© 2014 Elsevier B.V.A large-deformation, isogeometric rotation-free Kirchhoff-Love shell formulation...
To accurately predict damage growth in large, thin-walled composite structures, it is required\ua0to...
Layerwise theories provide an accurate prediction of the three-dimensional stress state of composite...
The conceptual ideas behind isogeometric analysis (IGA) are aimed at unifying computer aided design ...
As a means to decrease the complexity and size of numerical models for the simulation of progressive...
Isogeometric analysis (IGA) has recently received much attention in the computational mechanics comm...
Several applications in many engineering fields need particular structural elements characterized by...
Continuum damage formulations are commonly used for the simulation of diffuse fracture processes. Im...
We extend a recently-developed framework for isogeometric analysis of composite laminates to drive m...
We extend a recently-developed framework for isogeometric analysis of composite laminates to drive m...
High-fidelity progressive damage simulations of composite materials are important for advancements i...
Fiber-reinforced composite materials have become increasingly popular in the past few decades for li...
© 2014 Elsevier B.V.A large-deformation, isogeometric rotation-free Kirchhoff-Love shell formulation...
To accurately predict damage growth in large, thin-walled composite structures, it is required\ua0to...
Layerwise theories provide an accurate prediction of the three-dimensional stress state of composite...
The conceptual ideas behind isogeometric analysis (IGA) are aimed at unifying computer aided design ...
As a means to decrease the complexity and size of numerical models for the simulation of progressive...
Isogeometric analysis (IGA) has recently received much attention in the computational mechanics comm...
Several applications in many engineering fields need particular structural elements characterized by...
Continuum damage formulations are commonly used for the simulation of diffuse fracture processes. Im...