Additive manufacturing of industrially-relevant high-performance parts and products is today a reality, especially for metal additive manufacturing technologies. The design complexity that is now possible makes it particularly useful to improve product performance in a variety of applications. Metal additive manufacturing is especially well matured and is being used for production of end-use mission-critical parts. The next level of this development includes the use of intentionally designed porous metals - architected cellular or lattice structures. Cellular structures can be designed or tailored for specific mechanical or other performance characteristics and have numerous advantages due to their large surface area, low mass, regular repe...
Low-density cellular materials, metallic bodies with gaseous voids, are a unique class of materials ...
With the rapid development of additive manufacturing (AM), high-quality fabrication of lightweight d...
Cellular materials are known for being lightweight as well as deforming in unique ways. Cellular ma...
Additive manufacturing of industrially-relevant high-performance parts and products is today a reali...
Additive manufacturing (AM) refers to a collection of manufacturing methods involving the incrementa...
Architected cellular materials, Cellular structures, Lattice structures, Porous materials, Metamater...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
One of the main advantages of Additive Manufacturing (AM) is the ability to produce topologically op...
Cellular materials offer high strength accompanied by low-density and can offer high stiffness, goo...
Low-density cellular materials, metallic bodies with gaseous voids, are a unique class of materials ...
Additive Manufacturing (AM) has enabled the fabrication of metallic cellular materials that are of i...
The rapid evolution in additive manufacturing (AM) technology advocates a periodic assessment of the...
Low-density cellular materials, metallic bodies with gaseous voids, are a unique class of materials ...
Over the past two decades, a large number of metallic foams have been developed. In recent years res...
Over the past two decades, a large number of metallic foams have been developed. In recent years res...
Low-density cellular materials, metallic bodies with gaseous voids, are a unique class of materials ...
With the rapid development of additive manufacturing (AM), high-quality fabrication of lightweight d...
Cellular materials are known for being lightweight as well as deforming in unique ways. Cellular ma...
Additive manufacturing of industrially-relevant high-performance parts and products is today a reali...
Additive manufacturing (AM) refers to a collection of manufacturing methods involving the incrementa...
Architected cellular materials, Cellular structures, Lattice structures, Porous materials, Metamater...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
One of the main advantages of Additive Manufacturing (AM) is the ability to produce topologically op...
Cellular materials offer high strength accompanied by low-density and can offer high stiffness, goo...
Low-density cellular materials, metallic bodies with gaseous voids, are a unique class of materials ...
Additive Manufacturing (AM) has enabled the fabrication of metallic cellular materials that are of i...
The rapid evolution in additive manufacturing (AM) technology advocates a periodic assessment of the...
Low-density cellular materials, metallic bodies with gaseous voids, are a unique class of materials ...
Over the past two decades, a large number of metallic foams have been developed. In recent years res...
Over the past two decades, a large number of metallic foams have been developed. In recent years res...
Low-density cellular materials, metallic bodies with gaseous voids, are a unique class of materials ...
With the rapid development of additive manufacturing (AM), high-quality fabrication of lightweight d...
Cellular materials are known for being lightweight as well as deforming in unique ways. Cellular ma...