Planar structured materials with extreme elastic anisotropy
Jagannadh Boddapati, Chiara Daraio

TL;DR
This paper explores the design of 2D structured materials with extreme elastic anisotropy, developing a database of unit cells, comparing with hierarchical laminates, and creating graded structures with unique mechanical behaviors.
Contribution
It introduces a method to estimate the range of anisotropic stiffness tensors for single-scale 2D materials and constructs graded structures with controllable functional gradients.
Findings
Identified regions where hierarchical design is needed for extremal properties.
Developed a database of anisotropic unit cells using cosine functions.
Demonstrated graded structures with unique mechanical behaviors.
Abstract
Designing anisotropic structured materials by reducing symmetry results in unique behaviors, such as shearing under uniaxial compression or tension. This direction-dependent coupled mechanical phenomenon is crucial for applications such as energy redirection. While rank-deficient materials such as hierarchical laminates have been shown to exhibit extreme elastic anisotropy, there is limited knowledge about the fully anisotropic elasticity tensors achievable with single-scale fabrication techniques. No established upper and lower bounds on anisotropic moduli achieving extreme elastic anisotropy exist, similar to Hashin-Shtrikman bounds in isotropic composites. In this paper, we estimate the range of anisotropic stiffness tensors achieved by single-scale two-dimensional structured materials. To achieve this, we first develop a database of periodic anisotropic single-scale unit cell…
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Taxonomy
TopicsElasticity and Wave Propagation · Material Science and Thermodynamics · Material Properties and Applications
