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Generalized multistage mechanical model for nonlinear metallic materials
Petr Hradil
*
, Asko Talja
, Esther Real
, Enrique Mirambell
, Barbara Rossi
*
Corresponding author for this work
Polytechnic University of Catalonia (UPC)
University of Liège
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Article
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Scientific
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peer-review
69
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Keyphrases
Stress-strain
100%
Metallic Materials
100%
Mechanical Model
100%
Multi-stage Model
100%
Unique Properties
50%
Mechanical Behavior
50%
Corrosion Resistance
50%
Europe
50%
Analytical Formula
50%
Nonlinearity
50%
Austenitic Stainless Steel
50%
Low Density
50%
Design Rules
50%
Computer Code
50%
Thin-walled
50%
Proof Stress
50%
Engineering Structures
50%
Ferritic Stainless Steel
50%
Duplex Stainless Steel
50%
Testing Standards
50%
Work Hardening
50%
Material Parameters
50%
Direct Form
50%
Approximate Inversion
50%
Measured Stress
50%
Metallic Alloys
50%
Measured Strain
50%
Ultimate Strength
50%
Inverse Form
50%
Internal Force
50%
Curve Fitting
50%
Hardening Process
50%
Structural Stainless Steel
50%
Code Implementation
50%
Deformation Force
50%
Material Model
50%
Reliability Prediction
50%
INIS
comparative evaluations
100%
nonlinear problems
100%
stainless steels
66%
durability
33%
density
33%
data
33%
engineering
33%
applications
33%
implementation
33%
design
33%
deformation
33%
approximations
33%
strains
33%
corrosion resistance
33%
computer codes
33%
equations
33%
alloys
33%
prediction
33%
yields
33%
europe
33%
testing
33%
curves
33%
austenitic steels
33%
ferritic steels
33%
work hardening
33%
ultimate strength
33%
Engineering
Multistage
100%
Mechanical Model
100%
Material Model
33%
Design Rule
33%
Engineering Structure
33%
Duplex Stainless Steel
33%
Measured Data
33%
Material Parameter
33%
Internal Force
33%
Direct Form
33%
Inverse Form
33%
Hardening Process
33%
Ultimate Strength
33%
Austenitic Stainless Steel
33%
Ferritic Stainless Steel
33%
Fitting Curve
33%
Stainless Steel
33%
Corrosion Resistance
33%
Strain Hardening
33%
Nonlinearity
33%