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Relationship Between Microstructure, Strength, and Fracture in an Al-Zn-Mg Electron Beam Weld: Part II: Mechanical Characterization and Modeling
by
Deschamps, Alexis
, De Geuser, Frédéric
, Puydt, Quentin
, Estevez, Rafael
, Parry, Guillaume
, Flouriot, Sylvain
, Ringeval, Sylvain
in
Aluminum base alloys
/ Applied sciences
/ Characterization and Evaluation of Materials
/ Chemical Sciences
/ Chemistry and Materials Science
/ Electron beams
/ Evolution
/ Exact sciences and technology
/ Fractures
/ Joining, thermal cutting: metallurgical aspects
/ Material chemistry
/ Materials Science
/ Mathematical models
/ Mechanical properties
/ Mechanical properties and methods of testing. Rheology. Fracture mechanics. Tribology
/ Metallic Materials
/ Metallurgy
/ Metals. Metallurgy
/ Microstructure
/ Nanotechnology
/ Physical metallurgy
/ Structural Materials
/ Surfaces and Interfaces
/ Thin Films
/ Welded joints
/ Welding
2014
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Relationship Between Microstructure, Strength, and Fracture in an Al-Zn-Mg Electron Beam Weld: Part II: Mechanical Characterization and Modeling
by
Deschamps, Alexis
, De Geuser, Frédéric
, Puydt, Quentin
, Estevez, Rafael
, Parry, Guillaume
, Flouriot, Sylvain
, Ringeval, Sylvain
in
Aluminum base alloys
/ Applied sciences
/ Characterization and Evaluation of Materials
/ Chemical Sciences
/ Chemistry and Materials Science
/ Electron beams
/ Evolution
/ Exact sciences and technology
/ Fractures
/ Joining, thermal cutting: metallurgical aspects
/ Material chemistry
/ Materials Science
/ Mathematical models
/ Mechanical properties
/ Mechanical properties and methods of testing. Rheology. Fracture mechanics. Tribology
/ Metallic Materials
/ Metallurgy
/ Metals. Metallurgy
/ Microstructure
/ Nanotechnology
/ Physical metallurgy
/ Structural Materials
/ Surfaces and Interfaces
/ Thin Films
/ Welded joints
/ Welding
2014
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Relationship Between Microstructure, Strength, and Fracture in an Al-Zn-Mg Electron Beam Weld: Part II: Mechanical Characterization and Modeling
by
Deschamps, Alexis
, De Geuser, Frédéric
, Puydt, Quentin
, Estevez, Rafael
, Parry, Guillaume
, Flouriot, Sylvain
, Ringeval, Sylvain
in
Aluminum base alloys
/ Applied sciences
/ Characterization and Evaluation of Materials
/ Chemical Sciences
/ Chemistry and Materials Science
/ Electron beams
/ Evolution
/ Exact sciences and technology
/ Fractures
/ Joining, thermal cutting: metallurgical aspects
/ Material chemistry
/ Materials Science
/ Mathematical models
/ Mechanical properties
/ Mechanical properties and methods of testing. Rheology. Fracture mechanics. Tribology
/ Metallic Materials
/ Metallurgy
/ Metals. Metallurgy
/ Microstructure
/ Nanotechnology
/ Physical metallurgy
/ Structural Materials
/ Surfaces and Interfaces
/ Thin Films
/ Welded joints
/ Welding
2014
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Relationship Between Microstructure, Strength, and Fracture in an Al-Zn-Mg Electron Beam Weld: Part II: Mechanical Characterization and Modeling
Journal Article
Relationship Between Microstructure, Strength, and Fracture in an Al-Zn-Mg Electron Beam Weld: Part II: Mechanical Characterization and Modeling
2014
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Overview
This paper presents an experimental and modeling study of the mechanical behavior of an electron beam welded EN-AW 7020 aluminum alloy. The heterogeneous distribution of mechanical properties is characterized by micro-tensile tests and by strain field measurements using digital image correlation technic. These results are related to the microstructural observation presented in the companion paper. The mechanical behavior of the weld is simulated by a finite element model including a Gurson-type damage evolution model for void evolution. The model is shown to be capable of describing accurately experimental situations where the sample geometry is varied, resulting in stress triaxiality ratios ranging from 0.45 to 1.3.
Publisher
Springer US,Springer,Springer Verlag/ASM International
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