Selective laser melting (SLM) is an additive manufacturing process which enables the creation of intricate components from high performance alloys. This facilitates the design and fabrication of new cellular materials for blast and impact mitigation, where the performance is heavily influenced by geometric and material sensitivities. Design of such materials requires an understanding of the relationship between the additive manufacturing process and material properties at different length scales: from the microstructure, to geometric feature rendition, to overall dynamic performance. To date, there remain significant uncertainties about both the potential benefits and pitfalls of using additive manufacturing processes to design and o...
Selective laser melting (SLM) is a widely used additive manufacturing technique that effectively ma...
Metal components with applications across a range of industrial sectors can be manufactured by selec...
Cellular structures are widely used in many engineering applications, because of their light weight,...
Additive manufacturing (AM) enables the design of new cellular materials for blast and impact mitiga...
Additive Manufacturing (AM) has enabled the fabrication of metallic cellular materials that are of i...
Porous materials are of great interest because of improved energy absorption over their solid counte...
Additive manufacture (AM) technologies allow innovative structural design, including complex lattice...
© 2018 Elsevier Ltd Cellular structures with controllable mechanical properties and porous architect...
This paper investigates the effect of processing parameters on the dimensional accuracy and mechanic...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
By the term, lattice structures are intended topologically ordered open-celled structures consisting...
The fast development of additive manufacturing technologies allows the optimization of lattice struc...
Additive manufacturing (AM), particularly Selective Laser Melting (SLM) has enabled development of l...
Selective laser melting (SLM) is a manufacturing process that builds up metallic or ceramic parts la...
Designing new lattice structures falls under the same category of defining a new material, owing to ...
Selective laser melting (SLM) is a widely used additive manufacturing technique that effectively ma...
Metal components with applications across a range of industrial sectors can be manufactured by selec...
Cellular structures are widely used in many engineering applications, because of their light weight,...
Additive manufacturing (AM) enables the design of new cellular materials for blast and impact mitiga...
Additive Manufacturing (AM) has enabled the fabrication of metallic cellular materials that are of i...
Porous materials are of great interest because of improved energy absorption over their solid counte...
Additive manufacture (AM) technologies allow innovative structural design, including complex lattice...
© 2018 Elsevier Ltd Cellular structures with controllable mechanical properties and porous architect...
This paper investigates the effect of processing parameters on the dimensional accuracy and mechanic...
Cellular material structures, such as honeycombs and lattice structures, enable unprecedented stiff...
By the term, lattice structures are intended topologically ordered open-celled structures consisting...
The fast development of additive manufacturing technologies allows the optimization of lattice struc...
Additive manufacturing (AM), particularly Selective Laser Melting (SLM) has enabled development of l...
Selective laser melting (SLM) is a manufacturing process that builds up metallic or ceramic parts la...
Designing new lattice structures falls under the same category of defining a new material, owing to ...
Selective laser melting (SLM) is a widely used additive manufacturing technique that effectively ma...
Metal components with applications across a range of industrial sectors can be manufactured by selec...
Cellular structures are widely used in many engineering applications, because of their light weight,...