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- W4207038097 abstract "Incremental elastic wave in a hyperelastic semi-linear (SL) material can be purposely controlled by pre-deformation with help of hyperelastic transformation (HT) theory. However, this material model, assuming a linear stress-strain relation for large deformation, has neither been realized with naturally occurring materials nor through microstructure design. By balancing the stiffness of axial and rotational springs in a hexagonal mass-spring lattice, we propose a lattice prototype to realize the SL material. The performance of the model is systematically verified from static strain energy to wave property on different finitely deformed configurations. Based on this SL lattice, an elastic wave cloak is designed and validated through numerical simulation. This work provides the first two-dimensional (2D) microstructure model for realizing SL material and paves the way for elastic wave control with HT method. • First microstructure design for a 2D semi-linear material through a hexagonal mass-spring lattice. • Wave deflection device for both P and SV waves through simple-sheared semi-linear lattice. • Realization of elastic cloak for both P and SV waves by pre-deforming the designed semi-linear lattice." @default.
- W4207038097 created "2022-01-26" @default.
- W4207038097 creator A5046205090 @default.
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- W4207038097 date "2022-03-01" @default.
- W4207038097 modified "2023-09-27" @default.
- W4207038097 title "Rational design of hyperelastic semi-linear material and its application to elastic wave control" @default.
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- W4207038097 doi "https://doi.org/10.1016/j.mechmat.2022.104237" @default.
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