Nonlinear dynamics of origami metamaterials: energetic discrete approach accounting for bending and in-plane deformation of facets
In this paper, we start the analysis of the nonlinear dynamics of structural elements having an origami-type microstructure and micro-kinematics, also known as origami metamaterials. We use a finite-dimensional Lagrangian system to explore, via numerical simulations, the overall behaviour of an orig...
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Published in | Zeitschrift für angewandte Mathematik und Physik Vol. 74; no. 1 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
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Springer International Publishing
01.02.2023
Springer Nature B.V Springer Verlag |
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ISSN | 0044-2275 1420-9039 |
DOI | 10.1007/s00033-022-01917-3 |
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Abstract | In this paper, we start the analysis of the nonlinear dynamics of structural elements having an origami-type microstructure and micro-kinematics, also known as origami metamaterials. We use a finite-dimensional Lagrangian system to explore, via numerical simulations, the overall behaviour of an origami beam. This provides some significant hints about the structure of an effective homogenized continuum model for such a beam. We introduce a geometrically exact two-dimensional triangular discrete element, whose kinematics is given in terms of three-dimensional nodal displacements. Inertial terms are taken into account. Facets—which in this paper are quadrilateral—are modelled as the union of several triangles, each triangle deforming affinely in plane. Facet bending and sheet folding are taken into account by constraining through cylindrical hinges adjacent triangles and placing in-between torsional springs between them. In-plane and bending/folding strain energies are estimated from the elongation of the triangles’ sides and from the relative rotations of adjacent triangles, respectively. The actual reconstruction of the equilibrium path is performed numerically through a stepwise time integration scheme that can handle large displacements. |
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AbstractList | In this paper, we start the analysis of the nonlinear dynamics of structural elements having an origami-type microstructure and micro-kinematics, also known as origami metamaterials. We use a finite-dimensional Lagrangian system to explore, via numerical simulations, the overall behaviour of an origami beam. This provides some significant hints about the structure of an effective homogenized continuum model for such a beam. We introduce a geometrically exact two-dimensional triangular discrete element, whose kinematics is given in terms of three-dimensional nodal displacements. Inertial terms are taken into account. Facets—which in this paper are quadrilateral—are modelled as the union of several triangles, each triangle deforming affinely in plane. Facet bending and sheet folding are taken into account by constraining through cylindrical hinges adjacent triangles and placing in-between torsional springs between them. In-plane and bending/folding strain energies are estimated from the elongation of the triangles’ sides and from the relative rotations of adjacent triangles, respectively. The actual reconstruction of the equilibrium path is performed numerically through a stepwise time integration scheme that can handle large displacements. |
ArticleNumber | 26 |
Author | Barchiesi, Emilio Turco, Emilio dell’Isola, Francesco |
Author_xml | – sequence: 1 givenname: Emilio surname: Turco fullname: Turco, Emilio email: emilio.turco@uniss.it organization: Department of Architecture, Design and Urban planning (DADU), University of Sassari – sequence: 2 givenname: Emilio surname: Barchiesi fullname: Barchiesi, Emilio organization: Department of Architecture, Design and Urban planning (DADU), University of Sassari, Instituto de Investigación Científica (IDIC), Universidad de Lima – sequence: 3 givenname: Francesco surname: dell’Isola fullname: dell’Isola, Francesco organization: Department of Civil, Construction-Architectural and Environmental Engineering (DICEAA), University of L’Aquila |
BackLink | https://hal.science/hal-04088259$$DView record in HAL |
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Keywords | Nonlinear dynamics 74A60 74H45 Origami metamaterials 74A05 74G65 Time-stepping analysis 74B20 74K15 Mathematics Subject Classification. 74A05 Mathematics Subject Classification. 74A05 74A60 74B20 74G65 74H45 74K15 Nonlinear dynamics Origami metamaterials Time-stepping analysis 74K15 Nonlinear dynamics |
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SubjectTerms | Bending Continuum modeling Deformation Dynamic structural analysis Dynamical systems Elongation Engineering Folding Kinematics Mathematical Methods in Physics Mathematical models Metamaterials Nonlinear dynamics Physics Quadrilaterals Structural members Theoretical and Applied Mechanics Time integration Triangles |
Title | Nonlinear dynamics of origami metamaterials: energetic discrete approach accounting for bending and in-plane deformation of facets |
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