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Fatigue properties of aluminium foams at high numbers of cycles
B. Zettl
, H. Mayer
, S.E. Stanzl-Tschegg
, H.P. Degischer
Research output
:
Contribution to journal
›
Article
›
peer-review
69
Citations (Scopus)
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Keyphrases
Cell Wall
100%
Aluminum Foam
100%
Fatigue Properties
100%
Number of Cycles
100%
Young's Modulus
50%
Loading Conditions
50%
Inhomogeneous Structure
50%
Al-Mg-Si
50%
Fatigue Damage
50%
Ultrasound
50%
Cell Size
50%
Crack Formation
50%
Fatigue Crack Growth
50%
Fully Reversed Loading
50%
Endurance Limit
50%
Fatigue Data
50%
Minimum Wall Thickness
50%
Pre-crack
50%
Al-Si
50%
Deformation Bands
50%
Plateau Stress
50%
Fatigue Testing Methods
50%
Fatigue Experiment
50%
Strain Localization
50%
Cyclic Properties
50%
Endurance Fatigue
50%
Constant Amplitude Fatigue
50%
Engineering
Nodes
100%
Young's Modulus
100%
Data Show
100%
Fatigue Damage
100%
Loading Condition
100%
Mechanical Fatigue Test
100%
Fatigue Property
100%
Constant Amplitude
100%
Fatigue Crack Growth
100%
Endurance Limit
100%
Fully Reversed Loading
100%
near Cell
100%
Strain Localization
100%
Minimum Wall Thickness
100%
Material Science
Young's Modulus
100%
Fatigue Damage
100%
Fatigue Crack Growth
100%