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Volumn 57, Issue 19, 2009, Pages 5645-5653
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Quantifying the strain-induced dissolution of precipitates in Al alloy microstructures using nuclear magnetic resonance
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Author keywords
Aluminum; Dissolution; Modeling; Nuclear magnetic resonance; Precipitates
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Indexed keywords
AL ALLOYS;
AL-CU-MG ALLOYS;
CU ATOMS;
CU BASED ALLOY;
DYNAMIC PARTITIONING;
GP ZONES;
META-STABLE STATE;
MODELING;
PRECIPITATE SIZE;
PRESTON;
ROOM TEMPERATURE;
SIMPLE MODEL;
SN ALLOYS;
STRAIN-INDUCED PHASE TRANSFORMATION;
ALUMINA;
ALUMINUM;
ALUMINUM ALLOYS;
CRYSTALLIZATION;
DISSOLUTION;
MECHANICAL PROPERTIES;
MICROSTRUCTURE;
NUCLEAR MAGNETIC RESONANCE;
NUCLEAR MAGNETIC RESONANCE SPECTROSCOPY;
PRECIPITATES;
RESONANCE;
SINGLE CRYSTALS;
SOLID SOLUTIONS;
SOLIDIFICATION;
STRAIN RATE;
TIN;
TIN ALLOYS;
COPPER ALLOYS;
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EID: 70349985489
PISSN: 13596454
EISSN: None
Source Type: Journal
DOI: 10.1016/j.actamat.2009.07.060 Document Type: Article |
Times cited : (64)
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References (39)
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