By designing advantageous cellular geometries and combining the material size effects at the nanometer scale, lightweight hybrid microarchitectured materials with tailored structural properties are achieved. Prior studies reported the mechanical properties of high strength cellular ceramic composites, obtained by atomic layer deposition. However, few studies have examined the properties of similar structures with metal coatings. To determine the mechanical performance of polymer cellular structures reinforced with a metal coating, 3D laser lithography and electroless deposition of an amorphous layer of nickel-boron (NiB) is used for the first time to produce metal/polymer hybrid structures. In this work, the mechanical response of microarch...
Lightweight structures directly contribute to the sustainability of aviation, as their use reduces t...
The triply periodic minimal surface design (TPMS, Schwarz Primitive) is utilized to numerically inve...
Fabrication of optimal ultra-lightweight hybrid cellular materials via a two-step synthesis method o...
By designing advantageous cellular geometries and combining the material size effects at the nanomet...
Micro-architectured materials are a new class of hierarchical cellular material with outstanding pro...
2017-09-29Lightweight hierarchical materials, which have tunable structural features on multiple len...
Cellular metallic materials have emerged as a new promising class of materials due to their lightwei...
Abstract Mechanical metamaterials such as microlattices are an emerging kind of new materials that u...
Lightweight structures directly contribute to the sustainability of aviation, as their use reduces t...
Materials with dense architectures are composed of stiff and strong building blocks that are arrange...
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...
The need for high-performance and lightweight materials which have superior mechanical performance h...
The combination of high strength, high stiffness and low mass density requires new approaches in the...
Two novel hybrid materials for use in sandwich cores of structural materials are designed, manufactu...
Lightweight structures directly contribute to the sustainability of aviation, as their use reduces t...
The triply periodic minimal surface design (TPMS, Schwarz Primitive) is utilized to numerically inve...
Fabrication of optimal ultra-lightweight hybrid cellular materials via a two-step synthesis method o...
By designing advantageous cellular geometries and combining the material size effects at the nanomet...
Micro-architectured materials are a new class of hierarchical cellular material with outstanding pro...
2017-09-29Lightweight hierarchical materials, which have tunable structural features on multiple len...
Cellular metallic materials have emerged as a new promising class of materials due to their lightwei...
Abstract Mechanical metamaterials such as microlattices are an emerging kind of new materials that u...
Lightweight structures directly contribute to the sustainability of aviation, as their use reduces t...
Materials with dense architectures are composed of stiff and strong building blocks that are arrange...
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...
The need for high-performance and lightweight materials which have superior mechanical performance h...
The combination of high strength, high stiffness and low mass density requires new approaches in the...
Two novel hybrid materials for use in sandwich cores of structural materials are designed, manufactu...
Lightweight structures directly contribute to the sustainability of aviation, as their use reduces t...
The triply periodic minimal surface design (TPMS, Schwarz Primitive) is utilized to numerically inve...
Fabrication of optimal ultra-lightweight hybrid cellular materials via a two-step synthesis method o...