Modeling of uniaxial compression in a 3D periodic re-entrant lattice structure
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- Type
- article
- Published
- 2013-02-01
- Cited by
- 145
- References
- 30
- OpenAlex
- https://openalex.org/W1965987259
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:136743372
Keywords
Auxetics, Materials science, Dodecahedron, Finite element method, Solid mechanics
References
- Examination of acoustic behavior of negative poisson's ratio materials
- Cellular solids: Structure & properties
- Microporous materials with negative Poisson's ratios. II. Mechanisms and interpretation
- Auxetic foams: Modelling negative Poisson's ratios
- An analytical model for producing negative Poisson’s ratios and its application in explaining off-axis elastic properties of the NAT-type zeolites
- Trends in acoustic properties of iron particle seeded auxetic polyurethane foam
- Characterization of edge effects in cellular materials
- Design Considerations for Materials with Negative Poisson’s Ratios
- A study of negative Poisson's ratios in auxetic honeycombs based on a large deflection model
- Auxetic cellular structures through selective electron‐beam melting
- Passive and MR Fluid-coated Auxetic PU Foam – Mechanical, Acoustic, and Electromagnetic Properties
- Tensile fatigue of conventional and negative Poisson’s ratio open cell PU foams
- Modelling and testing of a foldable macrostructure exhibiting auxetic behaviour
- On the transverse shear modulus of negative Poisson’s ratio honeycomb structures
- Stiffness and energy dissipation in polyurethane auxetic foams
- Auxetic compliant flexible PU foams: static and dynamic properties
- Properties of a chiral honeycomb with a poisson's ratio of — 1
- Auxetic behavior from rotating triangles
- Foam Structures with a Negative Poisson's Ratio
- Negative Poisson's ratios in composites with star-shaped inclusions: a numerical homogenization approach
Cited by
- Low-energy drop weight performance of cellular sandwich panels
- Mechanical equivalent diameter of single struts for the stiffness prediction of lattice structures produced by Electron Beam Melting
- The Preparation of Auxetic Foams by Three‐Dimensional Printing and Their Characteristics
- Experimental-assisted design development for an octahedral cellular structure using additive manufacturing
- Additive Manufacturing of Metal Cellular Structures: Design and Fabrication
- A Comparison of Bending Properties for Cellular Core Sandwich Panels
- The emergence of auxetic material as a result of optimal isotropic design
- Towards stiffness prediction of cellular structures made by electron beam melting (EBM)
- Fabrication and pressure drop behavior of novel monolithic structures with zeolitic architectures
- Mechanical properties of 3D re-entrant honeycomb auxetic structures realized via additive manufacturing
- The application of the method of fundamental solutions in modeling auxetic materials
- Mechanical Properties of Laser-Sintered-Nylon Diamond Lattices
- In-plane dynamic crushing of re-entrant auxetic cellular structure
- Experimental and numerical analysis of a novel three‐dimensional auxetic metamaterial
- A novel auxetic honeycomb with enhanced in-plane stiffness and buckling strength
- A novel chiral three-dimensional material with negative Poisson’s ratio and the equivalent elastic parameters
- Elastic properties of two novel auxetic 3D cellular structures
- A novel three-dimensional auxetic lattice meta-material with enhanced stiffness
- Directions dependence of the elastic properties of a 3D augmented re-entrant cellular structure
- Large deformation of an auxetic structure in tension: Experiments and finite element analysis
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