Experiments and parametric studies on 3D metallic auxetic metamaterials with tuneable mechanical properties
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- Type
- article
- Published
- 2015-08-19
- Cited by
- 208
- References
- 91
- Access
- Open access
- OpenAlex
- https://openalex.org/W1671950909
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:54213170
Keywords
Auxetics, Metamaterial, Materials science, Parametric statistics, Stiffness
References
- Energy Absorption of Structures and Materials
- On the properties of real finite‐sized planar and tubular stent‐like auxetic structures
- Modeling auxetic foams through semi‐rigid rotating triangles
- Negative Poisson's ratios as a common feature of cubic metals
- Poisson's ratio of rectangular anti‐chiral structures with size dispersion of circular nodes
- In situ 3D X‐ray microtomography study comparing auxetic and non‐auxetic polymeric foams under tension
- Negative Poisson's Ratio Behavior Induced by an Elastic Instability
- Constant thermodynamic tension Monte Carlo studies of elastic properties of a two-dimensional system of hard cyclic hexamers
- Micro‐/Nanostructured Mechanical Metamaterials
- Auxetic Materials : Functional Materials and Structures from Lateral Thinking!
- Two-dimensional isotropic system with a negative poisson ratio
- Mechanical properties of luffa sponge.
- An Auxetic Filter: A Tuneable Filter Displaying Enhanced Size Selectivity or Defouling Properties
- Numerical study on a three-dimensional broadband isotropic left-handed metamaterial based on closed rings
- Auxetic materials for bioprostheses [In the Spotlight]
- Grain size dependence of elastic anomalies accompanying the α–β phase transition in polycrystalline quartz
- Pattern switching in two and three-dimensional soft solids
- Poisson's ratio in polymer gels near the phase-transition point.
- Modelling the deformation mechanisms, structure–property relationships and applications of auxetic nanomaterials
- Tensile fatigue of conventional and negative Poisson’s ratio open cell PU foams
Cited by
- Tuning the Performance of Metallic Auxetic Metamaterials by Using Buckling and Plasticity
- Energy absorption of thin-walled tubes with pre-folded origami patterns: Numerical simulation and experimental verification
- Design and properties of 3D‐printed chiral auxetic metamaterials by reconfigurable connections
- Experimental and numerical analysis of a novel three‐dimensional auxetic metamaterial
- A simple auxetic tubular structure with tuneable mechanical properties
- Maximizing the effective Young's modulus of a composite material by exploiting the Poisson effect
- Three Decades of Auxetics Research − Materials with Negative Poisson's Ratio: A Review
- Geometric Bounds for Buckling-Induced Auxetic Metamaterials Undergoing Large Deformation
- The effect of a negative Poisson’s ratio on thermal stresses in cellular metallic structures
- Fabrication and characterisation of a fully auxetic 3D lattice structure via selective electron beam melting
- Design of Hierarchical Structures for Synchronized Deformations
- Design and fabrication of materials and structures with negative Poisson's ratio and negative linear compressibility
- A novel chiral three-dimensional material with negative Poisson’s ratio and the equivalent elastic parameters
- Large deformations of soft metamaterials fabricated by 3D printing
- Pattern transformation of single-material and composite periodic cellular structures
- A novel three-dimensional auxetic lattice meta-material with enhanced stiffness
- Polymers for 3D Printing and Customized Additive Manufacturing
- Directions dependence of the elastic properties of a 3D augmented re-entrant cellular structure
- A modified elliptic integral method and its application in three-dimensional honeycombs
- Nature-Inspired Structural Materials for Flexible Electronic Devices.
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- On the deformation mechanism of re-entrant honeycomb auxetics under inclined static loads