AbstractMechanical properties, porosity, and microstructure of Ti6Al4V (ELI) material produced by Selective Laser Melting (SLM) under controlled oxygen content were analyzed. Fully martensitic α’structure with high dislocation density and stacking faults was observed in both as-built and stress relieved samples by means of XRD and TEM. Tensile {101 ̅2} twinning was identified by TEM and electron diffraction. Accommodation of thermal stresses during manufacturing was suggested as a possible reason for twinning. Computed tomography of pores was carried out. Pores in the specimens were evenly distributed and mostly had an elongated shape. Defect analysis by micro CT scans in pre-strained samples confirmed that the pore coalescence was the main...
AbstractIn this paper we present the results from field studies of two low-energy office buildings i...
AbstractAl-Cu and Al-Zn-Mg alloys exhibit excellent physical and mechanical properties, and are wide...
AbstractSelective Laser Deburring (SLD) is an innovative edge-refinement process being developed at ...
AbstractNanoindentation testing has been used to study mechanical properties of as-cast BNi-2 solder...
AbstractTFA-MOD (Metal Organic Deposition using Trifluoro-acetates) process is of considerable pract...
AbstractWe propose a newly developed stress analysis system combined with quartz crystal microbalanc...
AbstractThe friction and wear properties of acrylonitrile-butadiene-styrene (ABS) filled with micro-...
AbstractThe combination of different materials such as thermoplastic composites and metals is an imp...
AbstractTo optimize the cell colonization on electrospun polyamide nanofibers, the fiber scaffolds w...
AbstractInnovative chip breakers for cutting tools made of very hard materials require laser ablatio...
AbstractThe aim of present research was to find an effective method to manufacture sand blasted and ...
AbstractRTI International, Masdar, and Pennsylvania State University (PSU) are leading an effort to ...
AbstractDirect laser interference patterning (DLIP) facilitates the creation of periodic micro- and ...
AbstractAluminum 6061 is of great commercial interest due to its ubiquitous use in manufacturing, ad...
AbstractAlloying of refractory high entropy alloys (HEAs) such as MoNbTaW is usually done by vacuum ...
AbstractIn this paper we present the results from field studies of two low-energy office buildings i...
AbstractAl-Cu and Al-Zn-Mg alloys exhibit excellent physical and mechanical properties, and are wide...
AbstractSelective Laser Deburring (SLD) is an innovative edge-refinement process being developed at ...
AbstractNanoindentation testing has been used to study mechanical properties of as-cast BNi-2 solder...
AbstractTFA-MOD (Metal Organic Deposition using Trifluoro-acetates) process is of considerable pract...
AbstractWe propose a newly developed stress analysis system combined with quartz crystal microbalanc...
AbstractThe friction and wear properties of acrylonitrile-butadiene-styrene (ABS) filled with micro-...
AbstractThe combination of different materials such as thermoplastic composites and metals is an imp...
AbstractTo optimize the cell colonization on electrospun polyamide nanofibers, the fiber scaffolds w...
AbstractInnovative chip breakers for cutting tools made of very hard materials require laser ablatio...
AbstractThe aim of present research was to find an effective method to manufacture sand blasted and ...
AbstractRTI International, Masdar, and Pennsylvania State University (PSU) are leading an effort to ...
AbstractDirect laser interference patterning (DLIP) facilitates the creation of periodic micro- and ...
AbstractAluminum 6061 is of great commercial interest due to its ubiquitous use in manufacturing, ad...
AbstractAlloying of refractory high entropy alloys (HEAs) such as MoNbTaW is usually done by vacuum ...
AbstractIn this paper we present the results from field studies of two low-energy office buildings i...
AbstractAl-Cu and Al-Zn-Mg alloys exhibit excellent physical and mechanical properties, and are wide...
AbstractSelective Laser Deburring (SLD) is an innovative edge-refinement process being developed at ...