This paper focusses on the investigation of the mechanical properties of lattice structures manufactured by selective laser melting using contour-hatch scan strategy. The motivation for this research is the systematic investigation of the elastic and plastic deformation of TiAl6V4 at different strain rates. To investigate the influence of the strain rate on the mechanical response (e.g., energy absorption) of TiAl6V4 structures, compression tests on TiAl6V4-lattice structures with different strain rates are carried out to determine the mechanical response from the resulting stress-strain curves. Results are compared to the mechanical response of stainless steel lattice structures (316L). It is shown that heat-treated TiAl6V4 specimens have ...
This paper investigates the effect of designs and process parameters on the dimensional accuracy and...
The compression behavior of different 316L steel cellular dodecahedron structures with different den...
Additive manufacture (AM) technologies allow innovative structural design, including complex lattice...
This paper focusses on the investigation of the mechanical properties of lattice structures manufact...
© 2017, Springer-Verlag London Ltd. Selective laser melting (SLM) is a transformative manufacturing ...
The fast development of additive manufacturing technologies allows the optimization of lattice struc...
In this work, we used the powder bed fusion selective laser melting (SLM) technique to build two dif...
Abstract Plate-lattices are a new emerging class of isotropic cellular solids that attain the theor...
Ti6Al4 V (Ti64) lattice structures manufactured using selective laser melting (SLM) have been used i...
A detailed study of compression tests on lattice structures obtained by selective laser melting with...
Porous materials are of great interest because of improved energy absorption over their solid counte...
The interest in manufacturing complex devices with integrated extra-functional properties is steadil...
Designing new lattice structures falls under the same category of defining a new material, owing to ...
Selective Laser Melting is a powder-bed additive manufacturing technology that allows producing full...
Aluminum sandwich structures are commonly used in aeronautical and aerospatial applications. Essenti...
This paper investigates the effect of designs and process parameters on the dimensional accuracy and...
The compression behavior of different 316L steel cellular dodecahedron structures with different den...
Additive manufacture (AM) technologies allow innovative structural design, including complex lattice...
This paper focusses on the investigation of the mechanical properties of lattice structures manufact...
© 2017, Springer-Verlag London Ltd. Selective laser melting (SLM) is a transformative manufacturing ...
The fast development of additive manufacturing technologies allows the optimization of lattice struc...
In this work, we used the powder bed fusion selective laser melting (SLM) technique to build two dif...
Abstract Plate-lattices are a new emerging class of isotropic cellular solids that attain the theor...
Ti6Al4 V (Ti64) lattice structures manufactured using selective laser melting (SLM) have been used i...
A detailed study of compression tests on lattice structures obtained by selective laser melting with...
Porous materials are of great interest because of improved energy absorption over their solid counte...
The interest in manufacturing complex devices with integrated extra-functional properties is steadil...
Designing new lattice structures falls under the same category of defining a new material, owing to ...
Selective Laser Melting is a powder-bed additive manufacturing technology that allows producing full...
Aluminum sandwich structures are commonly used in aeronautical and aerospatial applications. Essenti...
This paper investigates the effect of designs and process parameters on the dimensional accuracy and...
The compression behavior of different 316L steel cellular dodecahedron structures with different den...
Additive manufacture (AM) technologies allow innovative structural design, including complex lattice...