We describe here a comprehensive study on the effect of cellular structure and melt pool boundary (MPB) condition on the mechanical properties, deformation and failure behavior of AlSi10Mg alloy processed by selective laser melting (SLM). The morphology of melt pool (MP) on the load bearing face of tensile samples was significantly different with build directions. It resulted in different mechanical properties of the samples with different build directions. Furthermore, the microstructure analysis revealed that the MP in the SLM AlSi10Mg alloy mainly consisted of columnar alpha-Al grains which were made of ultra-fine elongated cellular structure. Electron back-scatter diffraction (EBSD) analysis revealed that the long axis of cellular struc...
During the selective laser melting (SLM) process, the scanned layers are subjected to rapid thermal ...
AlSi10Mg is the most widely additively manufactured and commercialized aluminum alloy and has been u...
The present study analyzed the microstructure and the mechanical properties of AlSi10Mg SLMed bars (...
We describe here a comprehensive study on the effect of cellular structure and melt pool boundary (M...
The influences of processing parameters such as volumetric energy density (ε) and, particula...
The effect of the volumetric energy density (VED) on the keyhole formation, microstructural evolutio...
The rupture zone in AlSi10Mg tensile specimen processed by selective laser melting is investigated. ...
Al alloy AlSi10Mg processed by Selective Laser Melting displays a very fine cellular eutetic microst...
The influences of processing parameters such as volumetric energy density (ε) and, particularly, def...
The laser-based fusion of metallic powder allows construction of components with arbitrary complexit...
An AlSi11Cu alloy was obtained by additive manufacturing (AM) using powder bed fusion by selective l...
Additive manufacturing has developed as a strong tool in making parts with complex shapes and high q...
Selective laser melting additive manufacturing of the AlSi12 material parts through the re-melting o...
Selective laser melting (SLM) process is the most widely used additive manufacturing technique due t...
Selective Laser Melting (SLM) process has a great potential to create unique 3D components of AlSi10...
During the selective laser melting (SLM) process, the scanned layers are subjected to rapid thermal ...
AlSi10Mg is the most widely additively manufactured and commercialized aluminum alloy and has been u...
The present study analyzed the microstructure and the mechanical properties of AlSi10Mg SLMed bars (...
We describe here a comprehensive study on the effect of cellular structure and melt pool boundary (M...
The influences of processing parameters such as volumetric energy density (ε) and, particula...
The effect of the volumetric energy density (VED) on the keyhole formation, microstructural evolutio...
The rupture zone in AlSi10Mg tensile specimen processed by selective laser melting is investigated. ...
Al alloy AlSi10Mg processed by Selective Laser Melting displays a very fine cellular eutetic microst...
The influences of processing parameters such as volumetric energy density (ε) and, particularly, def...
The laser-based fusion of metallic powder allows construction of components with arbitrary complexit...
An AlSi11Cu alloy was obtained by additive manufacturing (AM) using powder bed fusion by selective l...
Additive manufacturing has developed as a strong tool in making parts with complex shapes and high q...
Selective laser melting additive manufacturing of the AlSi12 material parts through the re-melting o...
Selective laser melting (SLM) process is the most widely used additive manufacturing technique due t...
Selective Laser Melting (SLM) process has a great potential to create unique 3D components of AlSi10...
During the selective laser melting (SLM) process, the scanned layers are subjected to rapid thermal ...
AlSi10Mg is the most widely additively manufactured and commercialized aluminum alloy and has been u...
The present study analyzed the microstructure and the mechanical properties of AlSi10Mg SLMed bars (...