The triply periodic minimal surface design (TPMS, Schwarz Primitive) is utilized to numerically investigate lattices with sandwich cell walls of constant macroscopic density. The sandwich construction of the cell walls involves a polymer (core material) and a ceramic material (skin). The ceramic (alumina) weight fraction in the sandwich construction is varied such that for each density a range of weight fractions from 0%wt (monolithic polymer) to 100%wt (monolithic alumina lattice) is under investigation in terms of the Young's modulus, peak stress and specific energy absorption. It is found that the specific energy absorption of sandwich TPMS lattices is higher compared to monolithic polymer or alumina TPMS lattices of equal density (42 kg...
Sandwich panels serve many purposes in engineering applications. Additive manufacturing opened the d...
Additive Manufacturing (AM) technologies offer the ability to construct complex geometrical structur...
Cellular materials with periodic architectures have been extensively investigated over the past deca...
Mechanical properties of 3D printed ceramics with structural advantage were investigated. Three str...
Additively manufactured mechanical metamaterials are gaining prominence in lightweight energy-absorp...
Cellular solids are characteristically excellent energy absorbers due to their capacity to store lar...
The advancements in 3D printing technologies have resulted in the ease of manufacturing cellular mic...
This paper investigates the deformation mechanism and energy absorption behaviour of 316 L triply pe...
The need for high-performance and lightweight materials which have superior mechanical performance h...
With the rising popularity in 3D printing, the production of new prototype become very convenient. H...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Mechanical metamaterials, a novel class of cellular solids, have recently received much attention si...
Mechanical metamaterials, a novel class of cellular solids, have recently received much attention si...
Additive manufacturing such as vat photopolymerization allows to fabricate intricate geometric struc...
Cellular lattice structures have been gaining traction because of its fairly low mass and density, ...
Sandwich panels serve many purposes in engineering applications. Additive manufacturing opened the d...
Additive Manufacturing (AM) technologies offer the ability to construct complex geometrical structur...
Cellular materials with periodic architectures have been extensively investigated over the past deca...
Mechanical properties of 3D printed ceramics with structural advantage were investigated. Three str...
Additively manufactured mechanical metamaterials are gaining prominence in lightweight energy-absorp...
Cellular solids are characteristically excellent energy absorbers due to their capacity to store lar...
The advancements in 3D printing technologies have resulted in the ease of manufacturing cellular mic...
This paper investigates the deformation mechanism and energy absorption behaviour of 316 L triply pe...
The need for high-performance and lightweight materials which have superior mechanical performance h...
With the rising popularity in 3D printing, the production of new prototype become very convenient. H...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Mechanical metamaterials, a novel class of cellular solids, have recently received much attention si...
Mechanical metamaterials, a novel class of cellular solids, have recently received much attention si...
Additive manufacturing such as vat photopolymerization allows to fabricate intricate geometric struc...
Cellular lattice structures have been gaining traction because of its fairly low mass and density, ...
Sandwich panels serve many purposes in engineering applications. Additive manufacturing opened the d...
Additive Manufacturing (AM) technologies offer the ability to construct complex geometrical structur...
Cellular materials with periodic architectures have been extensively investigated over the past deca...