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Helium bubble formation in additive manufactured L-PBF AlSi10Mg
P. Landau
, T. Saffar
, I. Orion
, O. Girshevitz
, E. Tiferet
NRCN
Ben-Gurion University of the Negev
Bar Ilan Nanotechnology
Ind
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Scopus citations
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Keyphrases
Additive Manufacturing
100%
Laser Powder Bed Fusion (L-PBF)
100%
AlSi10Mg
100%
Bubble Formation
100%
Helium Bubbles
100%
AlSi10Mg Alloy
66%
Microstructure
33%
Mechanical Properties
33%
Dislocation
33%
Bulk Material
33%
Energy Range
33%
Defect Density
33%
Nuclear Industry
33%
Damage Accumulation
33%
Radiation Damage
33%
Uniform Layer
33%
Size-density
33%
Dislocation Structure
33%
Nanohardness
33%
Sink Strength
33%
Interface Microstructure
33%
Stopping Range
33%
Bubble Size Distribution
33%
Microstructural Component
33%
Bubble Density
33%
He Ion Implantation
33%
Laser Powder Bed Fusion Additive Manufacturing
33%
Material Science
Laser Powder Bed Fusion
100%
Density
50%
Three Dimensional Printing
50%
Mechanical Strength
50%
Ion Implantation
50%
Radiation Damage
50%
Defect Density
50%
Dislocation Structure
50%
Nanohardness
50%