Abstract
We show that most geometrically nonlinear three-dimensional shell elements and solid shell elements suffer from a previously unknown artificial stiffening effect that only appears in geometrically nonlinear problems, in particular in the presence of large bending deformations. It can be interpreted as a nonlinear variant of the well-known Poisson thickness locking effect. We explain why and under which circumstances this phenomenon appears and propose concepts to avoid it.
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Willmann, T., Bieber, S., & Bischoff, M. (2023). Investigation and elimination of nonlinear Poisson stiffening in 3d and solid shell finite elements. International Journal for Numerical Methods in Engineering, 124(1), 235–263. https://doi.org/10.1002/nme.7119
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