Cellular structures are complex lightweight structures that are characterized by their excellent mechanical, thermal, and acoustic properties. Advancements in additive manufacturing have led to an increased interest in these types of structures. The current work examines the possibility of adopting numerical unit-cell homogenization as a comparative and predictive tool for cellular structures’ stiffness. In this study, four cellular structures were investigated: octet-truss, octahedral, gyroid, and sheet IWP-CM. Homogenization models were developed for these four structures, and python scripts were written. Octet-truss and octahedral structures were additively manufactured and tested. Gyroid and sheet IWP-CM experimental results were obtain...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
The advances in additive manufacturing removed most of the limitations that were once stopping desig...
AbstractAdditive manufacturing has opened doors to many new technological developments that could no...
Periodic cellular materials can have superior mechanical effective properties such as higher stiffne...
Cellular solids form the basis of many biological and engineering structures. Most models use the re...
Lattice structures are lightweight materials, which exhibit a unique combination of properties such ...
The advancements in 3D printing technologies have resulted in the ease of manufacturing cellular mic...
Metal cellular lattice structure is a new class of material that combines useful mechanical properti...
<p>Additive manufacturing techniques have made it possible to create open-cell porous structures wit...
Cellular media materials are used for automobiles, aircrafts, energy-efficient buildings, transporta...
ABSTRACT: In a vast number of engineering fields like medicine, aerospace or robotics, materials are...
Cellular solids have been utilized in many engineering applications for thermal insulation, their hi...
For structures with uniform cell size, wall thickness, and shape, the fundamental question arises wh...
abstract: The goal of our research was to develop and validate a method for predicting the mechanica...
Additive manufacturing allows for light weight designs with controllable microstructures. In nature ...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
The advances in additive manufacturing removed most of the limitations that were once stopping desig...
AbstractAdditive manufacturing has opened doors to many new technological developments that could no...
Periodic cellular materials can have superior mechanical effective properties such as higher stiffne...
Cellular solids form the basis of many biological and engineering structures. Most models use the re...
Lattice structures are lightweight materials, which exhibit a unique combination of properties such ...
The advancements in 3D printing technologies have resulted in the ease of manufacturing cellular mic...
Metal cellular lattice structure is a new class of material that combines useful mechanical properti...
<p>Additive manufacturing techniques have made it possible to create open-cell porous structures wit...
Cellular media materials are used for automobiles, aircrafts, energy-efficient buildings, transporta...
ABSTRACT: In a vast number of engineering fields like medicine, aerospace or robotics, materials are...
Cellular solids have been utilized in many engineering applications for thermal insulation, their hi...
For structures with uniform cell size, wall thickness, and shape, the fundamental question arises wh...
abstract: The goal of our research was to develop and validate a method for predicting the mechanica...
Additive manufacturing allows for light weight designs with controllable microstructures. In nature ...
Tensile and compression test specimens comprising lattice structures with simple cubic, crossing-rod...
The advances in additive manufacturing removed most of the limitations that were once stopping desig...
AbstractAdditive manufacturing has opened doors to many new technological developments that could no...