Bio-inspired functionally graded cellular materials (FGCM) have improved performance in energy absorption compared with a uniform cellular material (UCM). In this work, sheet-based and strut-based gyroid cellular structures with graded densities are designed and manufactured by stereo-lithography (SLA). For comparison, uniform structures are also designed and manufactured, and the graded structures are generated with different gradients. The mechanical behaviors of these structures under compressive loads are investigated. Furthermore, the anisotropy and effective elastic modulus of sheet-based and strut-based unit gyroid cellular structures are estimated by a numerical homogenization method. On the one hand, it is found from the numerical ...
Bionic design is considered a promising approach to improve the performance of lattice structures. I...
Due to their excellent properties, including low weight, high stiffness and strength and heat insula...
Triply periodic minimal surfaces (TPMSs) have attracted increasing attention for their high manufact...
Functional graded cellular materials (FGCMs) have attracted increasing attentions for their improved...
Functional graded cellular materials (FGCMs) have attracted increasing attentions for their improved...
Additive manufacturing allows the tailoring of the structure of energy-absorbing materials. It is th...
The development of additive manufacturing and lattice structures has created opportunities for the d...
Lightweight cellular structure generation and topology optimization are common design methodologies ...
Gradual and localised changes in mechanical properties can be achieved by functionally graded cellul...
Triply Periodic Minimal Surface (TPMS) structures fabricated via Additive Manufacturing (AM) have re...
Typically, cellular materials are designed for structural applications to provide stiffness or absor...
Functionally graded materials raise considerable interest in the biomedical research. In particular,...
Triply periodic minimal surface (TPMS) is identified as a suitable model for designing porous struct...
Cellular structures are complex lightweight structures that are characterized by their excellent mec...
The design of cellular materials with controlled energy dissipation is relevant to a broad range of ...
Bionic design is considered a promising approach to improve the performance of lattice structures. I...
Due to their excellent properties, including low weight, high stiffness and strength and heat insula...
Triply periodic minimal surfaces (TPMSs) have attracted increasing attention for their high manufact...
Functional graded cellular materials (FGCMs) have attracted increasing attentions for their improved...
Functional graded cellular materials (FGCMs) have attracted increasing attentions for their improved...
Additive manufacturing allows the tailoring of the structure of energy-absorbing materials. It is th...
The development of additive manufacturing and lattice structures has created opportunities for the d...
Lightweight cellular structure generation and topology optimization are common design methodologies ...
Gradual and localised changes in mechanical properties can be achieved by functionally graded cellul...
Triply Periodic Minimal Surface (TPMS) structures fabricated via Additive Manufacturing (AM) have re...
Typically, cellular materials are designed for structural applications to provide stiffness or absor...
Functionally graded materials raise considerable interest in the biomedical research. In particular,...
Triply periodic minimal surface (TPMS) is identified as a suitable model for designing porous struct...
Cellular structures are complex lightweight structures that are characterized by their excellent mec...
The design of cellular materials with controlled energy dissipation is relevant to a broad range of ...
Bionic design is considered a promising approach to improve the performance of lattice structures. I...
Due to their excellent properties, including low weight, high stiffness and strength and heat insula...
Triply periodic minimal surfaces (TPMSs) have attracted increasing attention for their high manufact...