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Finite element modeling of superplastic forming of weldalite™ (049) alloy
Ihab Ragai
, Maher Y.A. Younan
School of Engineering (Behrend)
Research output
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peer-review
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Dive into the research topics of 'Finite element modeling of superplastic forming of weldalite™ (049) alloy'. Together they form a unique fingerprint.
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Keyphrases
Strain Rate
100%
Finite Element Modeling
100%
Temperature Rate
75%
Friction
25%
Strain Distribution
25%
Finite Element Method
25%
Biaxial Strain
25%
Aluminum Alloy
25%
Experimental Testing
25%
Creep
25%
Material Parameters
25%
Deformation Behavior
25%
High Strength
25%
Large Deformation
25%
ABAQUS
25%
Aerospace Applications
25%
Material Model
25%
Stress-strain Relationship
25%
Displacement Curve
25%
Nonlinear Finite Element Analysis
25%
Forming Conditions
25%
Thickness Distribution
25%
Material Deformation
25%
Engineering
Strain Rate
100%
Fem Model
100%
Good Correlation
50%
Finite Element Analysis
50%
Experimental Result
25%
Creep
25%
Material Parameter
25%
Process Parameter
25%
Deformation Behavior
25%
Stress-Strain Relations
25%
Large Deformation
25%
Aerospace Applications
25%
Material Model
25%
Displacement Curve
25%
Forming Condition
25%
Thickness Distribution
25%
Nonlinearity
25%
Material Science
Strain Rate
100%
Finite Element Modeling
100%
Superplastic Forming
100%
Finite Element Method
50%
Creep
25%
Stress-Strain Relations
25%
Large Deformation
25%
Aluminum Alloy
25%