Porous metal oxides are an important class of engineering materials with unique combinations of lightweight, mechanical, photovoltaic, catalytic and thermal properties. The structural stability and load-bearing capabilities of porous metal oxides can be improved if stretch/compression-dominated lattice designs are used instead of bending-dominated foam structures. Here, we introduce a simple, scalable technique that involves the dip-coating of 3D printed polymeric lattices, of simple cubic design, in a metal particle (Fe and Cu) suspension. Subsequent heat treatment in a furnace removed the polymeric core and binder, leaving behind a hollow-truss lattice structure composed of sintered and oxidized metal particles. Examination of its microst...
The current study investigates the performance of Additive Manufactured (AM) silica (SiO2) scaffolds...
AbstractA sandwich panel with a core made from solid pyramidal struts is a promising candidate for m...
Architected lattice materials are some of the stiffest and strongest materials at ultra-light densit...
Mechanical properties of 3D printed ceramics with structural advantage were investigated. Three str...
The mechanical response of additively-manufactured hollow truss lattices is experimentally investiga...
Collinear lattice structures have been fabricated from 304 stainless steel hollow tubes via an alter...
Lightweight materials that are simultaneously strong and stiff are desirable for a range of applicat...
This study investigates the interplay between microstructure, topology and their combined effect on ...
Metal cellular lattice structure is a new class of material that combines useful mechanical properti...
With the rising popularity in 3D printing, the production of new prototype become very convenient. H...
In the analysis of complex, hierarchical structural meta-materials, it is critical to understand the...
International audiencePeriodic truss-lattice materials, especially when combined with current additi...
Additive manufacturing research is continuously growing, and this field requires a full improvement ...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
To better understand the impact of complex structure on mechanical properties in additively manufact...
The current study investigates the performance of Additive Manufactured (AM) silica (SiO2) scaffolds...
AbstractA sandwich panel with a core made from solid pyramidal struts is a promising candidate for m...
Architected lattice materials are some of the stiffest and strongest materials at ultra-light densit...
Mechanical properties of 3D printed ceramics with structural advantage were investigated. Three str...
The mechanical response of additively-manufactured hollow truss lattices is experimentally investiga...
Collinear lattice structures have been fabricated from 304 stainless steel hollow tubes via an alter...
Lightweight materials that are simultaneously strong and stiff are desirable for a range of applicat...
This study investigates the interplay between microstructure, topology and their combined effect on ...
Metal cellular lattice structure is a new class of material that combines useful mechanical properti...
With the rising popularity in 3D printing, the production of new prototype become very convenient. H...
In the analysis of complex, hierarchical structural meta-materials, it is critical to understand the...
International audiencePeriodic truss-lattice materials, especially when combined with current additi...
Additive manufacturing research is continuously growing, and this field requires a full improvement ...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
To better understand the impact of complex structure on mechanical properties in additively manufact...
The current study investigates the performance of Additive Manufactured (AM) silica (SiO2) scaffolds...
AbstractA sandwich panel with a core made from solid pyramidal struts is a promising candidate for m...
Architected lattice materials are some of the stiffest and strongest materials at ultra-light densit...