In this work, three novel re-entrant plate lattice structures (LSs) have been designed by transforming conventional truss-based lattices into hybrid-plate based lattices, namely, flat-plate modified auxetic (FPMA), vintile (FPV), and tesseract (FPT). Additive manufacturing based on stereolithography (SLA) technology was utilized to fabricate the tensile, compressive, and LS specimens with different relative densities (ρ). The base material’s mechanical properties obtained through mechanical testing were used in a finite element-based numerical homogenization analysis to study the elastic anisotropy of the LSs. Both the FPV and FPMA showed anisotropic behavior; however, the FPT showed cubic symmetry. The universal anisotropic index was found...
Lattice structures, whose manufacturing has been enabled by additive technologies, are gaining growi...
In energy absorption applications, post-yield behaviour is important. Lattice structures, having low...
Lattice structures are regarded as excellent candidates for use in lightweight energy absorbing appl...
In this work, three novel re-entrant plate lattice structures (LSs) have been designed by transformi...
In recent years, the advancement in additive manufacturing have enable the fabrication of complex la...
Additively manufactured mechanical metamaterials are gaining prominence in lightweight energy-absorp...
The need for high-performance and lightweight materials which have superior mechanical performance h...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
Lattice structures are regarded as excellent candidates for use in lightweight energy absorbing appl...
The design and analysis of lattice structures manufactured using Additive Manufacturing (AM) techniq...
Cellular solids are characteristically excellent energy absorbers due to their capacity to store lar...
Lattice-structured materials are becoming increasingly adopted for impact absorption and load-carryi...
With the increasing development of additive manufacturing (AM) technology, lattice structure (LS) em...
The strength and energy absorption properties of the auxetic 3D anti-tetrachiral (3ATC) lattice, a m...
Lattice structures, whose manufacturing has been enabled by additive technologies, are gaining growi...
Lattice structures, whose manufacturing has been enabled by additive technologies, are gaining growi...
In energy absorption applications, post-yield behaviour is important. Lattice structures, having low...
Lattice structures are regarded as excellent candidates for use in lightweight energy absorbing appl...
In this work, three novel re-entrant plate lattice structures (LSs) have been designed by transformi...
In recent years, the advancement in additive manufacturing have enable the fabrication of complex la...
Additively manufactured mechanical metamaterials are gaining prominence in lightweight energy-absorp...
The need for high-performance and lightweight materials which have superior mechanical performance h...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
Lattice structures are regarded as excellent candidates for use in lightweight energy absorbing appl...
The design and analysis of lattice structures manufactured using Additive Manufacturing (AM) techniq...
Cellular solids are characteristically excellent energy absorbers due to their capacity to store lar...
Lattice-structured materials are becoming increasingly adopted for impact absorption and load-carryi...
With the increasing development of additive manufacturing (AM) technology, lattice structure (LS) em...
The strength and energy absorption properties of the auxetic 3D anti-tetrachiral (3ATC) lattice, a m...
Lattice structures, whose manufacturing has been enabled by additive technologies, are gaining growi...
Lattice structures, whose manufacturing has been enabled by additive technologies, are gaining growi...
In energy absorption applications, post-yield behaviour is important. Lattice structures, having low...
Lattice structures are regarded as excellent candidates for use in lightweight energy absorbing appl...