Spline-based smooth beam-to-beam contact model
DOI10.1007/s00466-023-02283-1OpenAlexW4361304865MaRDI QIDQ6084765
Peter Wriggers, Celso Jaco Faccio Júnior, Alfredo Gay Neto
Publication date: 2 December 2023
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-023-02283-1
frictional contactviscoelastic dampingnonlinear normal contactquadratic beam finite elementsmooth spline contact element
Rods (beams, columns, shafts, arches, rings, etc.) (74K10) Friction in solid mechanics (74M10) Contact in solid mechanics (74M15) Finite element methods applied to problems in solid mechanics (74S05) Isogeometric methods applied to problems in solid mechanics (74S22)
Cites Work
- Unnamed Item
- Unnamed Item
- 3D dynamic modeling of powder forming processes via a simple and efficient node-to-surface contact algorithm
- Three-dimensional mortar-based frictional contact treatment in isogeometric analysis with NURBS
- Self-contact modeling on beams experiencing loop formation
- Isogeometric contact analysis: geometric basis and formulation for frictionless contact
- Geometrically exact covariant approach for contact between curves
- A \(C^1\)-continuous formulation for 3D finite deformation frictional contact
- A geometrically-exact rod model incorporating shear and torsion-warping deformation
- Hermite polynomial smoothing in beam-to-beam frictional contact
- A finite strain beam formulation. The three-dimensional dynamic problem. I
- A three-dimensional finite-strain rod model. II. Computational aspects
- Frictional contact between 3D beams.
- On rigid components and joint constraints in nonlinear dynamics of flexible multibody systems employing 3D geometrically exact beam model
- Accurate modeling of contact using cubic splines
- Rigid body formulation in a finite element context with contact interaction
- Contact-friction modeling within elastic beam assemblies: an application to knot tightening
- Large deformation frictional contact mechanics: Continuum formulation and augmented Lagrangian treatment
- A node-to-node scheme for three-dimensional contact problems using the scaled boundary finite element method
- A geometrically exact isogeometric beam for large displacements and contacts
- Master-master frictional contact and applications for beam-shell interaction
- Isogeometric analysis for numerical plate testing of dry woven fabrics involving frictional contact at meso-scale
- Non-localised contact between beams with circular and elliptical cross-sections
- Numerical method for solution of pointwise contact between surfaces
- A simple finite element for the geometrically exact analysis of Bernoulli-Euler rods
- A master-surface to master-surface formulation for beam to beam contact. II: Frictional interaction
- Computing pointwise contact between bodies: a class of formulations based on master-master approach
- Node-to-segment and node-to-surface interface finite elements for fracture mechanics
- A master-surface to master-surface formulation for beam to beam contact. I: Frictionless interaction
- Node-to-node scheme for three-dimensional contact mechanics using polyhedral type variable-node elements
- On calculating with B-splines
- Smooth C1‐interpolations for two‐dimensional frictional contact problems
- Contact‐impact by the pinball algorithm with penalty and Lagrangian methods
- ON CONTACT BETWEEN THREE-DIMENSIONAL BEAMS UNDERGOING LARGE DEFLECTIONS
- A three dimensional surface-to-surface projection algorithm for non-coincident domains
- Contact with friction between beams in 3-D space
- Isogeometric Analysis
- Isogeometric contact: a review
- Computational Contact Mechanics
- A framework for development of surface smoothing procedures in large deformation frictional contact analysis
This page was built for publication: Spline-based smooth beam-to-beam contact model