The use of additive manufacturing technologies to produce lightweight or functional structures is widespread. Especially Ti6Al4V plays an important role in this development field and parts are manufactured and analyzed with the aim to characterize the mechanical properties of open-porous structures and to generate scaffolds with properties specific to their intended application. An SLM and an EBM process were used respectively to fabricate the Ti6Al4V single struts. For mechanical characterization, uniaxial compression tests and hardness measurements were conducted. Furthermore, the struts were manufactured in different orientations for the determination of the mechanical properties. Roughness measurements and a microscopic characterization...
Porous metal lattice structures have a very high potential in biomedical applications, setting as in...
One of the challenges of additive manufacturing (AM) technology is the inability to generate repeata...
Selective laser melting (SLM) is an additive manufacturing (AM) process that has been gaining widesp...
The use of additive manufacturing technologies to produce lightweight or functional structures is wi...
An investigation of mechanical properties of Ti6Al4V produced by additive manufacturing (AM) in the ...
Bulk Ti–6Al–4V material and its lattice structures with rhombic dodecahedron unit cells are fabricat...
The metal additive manufacturing industry is rising and so is the interest in new lattice structures...
International audienceSelective laser melting (SLM) is of great interest for manufacturing lightweig...
AbstractThis paper presents a characterization study of titanium alloy (Ti-6Al-4V) micro-struts manu...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
Additive manufacturing has recently expanded its potential with the development of selective laser m...
Additive manufacturing has recently expanded its potential with the development of selective laser m...
AbstractTitanium alloys are widely used in various engineering design application due to its superio...
Intricate metal lattice structures enabled by additive manufacturing (AM) are finding increasing app...
Ti6Al4V lattice structures were fabricated using selective laser melting with a wide range of proces...
Porous metal lattice structures have a very high potential in biomedical applications, setting as in...
One of the challenges of additive manufacturing (AM) technology is the inability to generate repeata...
Selective laser melting (SLM) is an additive manufacturing (AM) process that has been gaining widesp...
The use of additive manufacturing technologies to produce lightweight or functional structures is wi...
An investigation of mechanical properties of Ti6Al4V produced by additive manufacturing (AM) in the ...
Bulk Ti–6Al–4V material and its lattice structures with rhombic dodecahedron unit cells are fabricat...
The metal additive manufacturing industry is rising and so is the interest in new lattice structures...
International audienceSelective laser melting (SLM) is of great interest for manufacturing lightweig...
AbstractThis paper presents a characterization study of titanium alloy (Ti-6Al-4V) micro-struts manu...
In this study, morphological and mechanical characterization was performed on Ti6Al4V scaffolds prod...
Additive manufacturing has recently expanded its potential with the development of selective laser m...
Additive manufacturing has recently expanded its potential with the development of selective laser m...
AbstractTitanium alloys are widely used in various engineering design application due to its superio...
Intricate metal lattice structures enabled by additive manufacturing (AM) are finding increasing app...
Ti6Al4V lattice structures were fabricated using selective laser melting with a wide range of proces...
Porous metal lattice structures have a very high potential in biomedical applications, setting as in...
One of the challenges of additive manufacturing (AM) technology is the inability to generate repeata...
Selective laser melting (SLM) is an additive manufacturing (AM) process that has been gaining widesp...