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Modeling of laser beam absorption in a polymer powder bed
Fuad Osmanlic
,
Katrin Wudy
, Tobias Laumer
, Michael Schmidt
, Dietmar Drummer
, Carolin Körner
Friedrich Alexander Universität Erlangen-Nürnberg
Blz Bayerisches Laserzentrum GmbH
Research output
:
Contribution to journal
›
Article
›
peer-review
49
Scopus citations
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Keyphrases
Powder Bed
100%
Laser Absorption
100%
Polymer Powder
100%
Bulk Material
50%
Irradiation
50%
Numerical Results
50%
Ray Path
50%
Analytic Solution
50%
Ray Tracing
50%
Energy Density
50%
Penetration Depth
50%
Refraction
50%
Transmittance
50%
Laser Beams
50%
Selective Laser Sintering
50%
Powder Layer
50%
Polyamide 12 (PA12)
50%
Absorption Characteristics
50%
Absorptance
50%
Fine Powder
50%
Integrating Sphere
50%
Trace Model
50%
Plain Surface
50%
Effective Penetration Depth
50%
Powder Distribution
50%
Powder Bed Density
50%
Engineering
Penetration Depth
100%
Powder Bed
100%
Polymer Powder
100%
Laser Beams
100%
Bulk Material
50%
Processability
50%
Simulation Result
50%
Powder Layer
50%
Selective Laser Sintering
50%
Laser Sintering Process
50%
Finer Powder
50%
Powder Bed Density
50%
Ray Path
50%
Reflectance
50%
Flux Density
50%