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Additive manufacturing based bellows
B. Bonvoisin
*
, A. Brandao
, M. Hatzenbichler
, M. Scheerer
, Zoltan Simon
,
Sascha Senck
, T. Ghidini
*
Corresponding author for this work
Computed Tomography
Center of Excellence Automotive/Mobility
Center of Excellence Medical Engineering/TIMed Center
Center of Excellence for Smart Production
Focal area Materials
Research Center Wels
Research output
:
Contribution to journal
›
Article
›
peer-review
1
Citation (Scopus)
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Keyphrases
Additive Manufacturing
100%
Bellows
100%
Rutile
50%
Computed Tomography
25%
Cleaning Methods
25%
Selective Laser Melting
25%
Plastic Deformation
25%
Powder Layer
25%
Cooling System
25%
Welded Joint
25%
Metallic Parts
25%
Propulsion System
25%
European Space Agency
25%
Development Roadmap
25%
Elastic Vessel
25%
Powder Bed Fusion Technologies
25%
Laser Source
25%
Manufacturing Constraints
25%
Plastic Leakage
25%
Welded Bellows
25%
Failure number
25%
Metallic Bellows
25%
SLM Technology
25%
Under Vacuum
25%
Scientific Satellite
25%
Layer-by-layer Approach
25%
Engineering
Additive Manufacturing
100%
Welds
50%
Selective Laser Melting
50%
Plastic Deformation
50%
Powder Layer
50%
Critical Application
50%
Powder Bed Fusion
50%
Cooling System
50%
Outer Surface
50%
Propulsion System
50%
Cleaning Procedure
50%
Layer Approach
50%
Melting Point
50%
Spacecraft
50%
Material Science
Three Dimensional Printing
100%
Selective Laser Melting
100%
Titanium
66%
Plastic Deformation
33%
Welded Joint
33%
Powder Bed Fusion
33%
Laser Source
33%
Spacecraft
33%
X-Ray Computed Tomography
33%