A new rotation-free isogeometric thin shell formulation and a corresponding continuity constraint for patch boundaries
Thang Xuan Duong, Farshad Roohbakhshan, Roger Andrew Sauer

TL;DR
This paper introduces a comprehensive rotation-free isogeometric thin shell formulation that supports various material models and enforces patch boundary continuity, demonstrated through classical benchmarks and effective for large deformations.
Contribution
It presents a novel non-linear, displacement-based isogeometric shell formulation with a unified approach for patch boundary continuity and boundary conditions, applicable to multiple constitutive laws.
Findings
Robustness demonstrated on classical benchmarks
Accurate results for large deformations
Supports a wide range of material models
Abstract
This paper presents a general non-linear computational formulation for rotation-free thin shells based on isogeometric finite elements. It is a displacement-based formulation that admits general material models. The formulation allows for a wide range of constitutive laws, including both shell models that are extracted from existing 3D continua using numerical integration and those that are directly formulated in 2D manifold form, like the Koiter, Canham and Helfrich models. Further, a unified approach to enforce the -continuity between patches, fix the angle between surface folds, enforce symmetry conditions and prescribe rotational Dirichlet boundary conditions, is presented using penalty and Lagrange multiplier methods. The formulation is fully described in the natural curvilinear coordinate system of the finite element description, which facilitates an efficient computational…
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