|
Volumn 89, Issue 32, 2009, Pages 2887-2901
|
High-strength and ductile glassy-crystal Ni-Cu-Zr-Ti composite exhibiting stress-induced martensitic transformation
|
Author keywords
Acoustic emission; Composite; Martensitic phase transformation; Mechanical properties; Metallic glasses
|
Indexed keywords
ACOUSTIC EMISSION TECHNIQUES;
COMPOSITE;
CRYSTALLINE PHASE;
DISLOCATION SLIP;
GLASSY MATRICES;
HIGH-STRENGTH;
MARTENSITIC PHASE TRANSFORMATION;
METASTABLE CRYSTALLINE PHASE;
ROOM TEMPERATURE;
SHEAR BAND FORMATION;
SHEAR BAND PROPAGATION;
STRESS INDUCED MARTENSITIC TRANSFORMATION;
UNDERLYING MECHANISM;
ACOUSTIC EMISSIONS;
ACOUSTICS;
BRITTLE FRACTURE;
COMPOSITE MICROMECHANICS;
CRYSTALLINE MATERIALS;
DISLOCATIONS (CRYSTALS);
DUCTILITY;
GLASS;
MARTENSITE;
MECHANICAL PROPERTIES;
METALLIC GLASS;
PLASTIC DEFORMATION;
SHEAR BANDS;
ZIRCONIUM;
MARTENSITIC TRANSFORMATIONS;
|
EID: 70449123925
PISSN: 14786435
EISSN: 14786443
Source Type: Journal
DOI: 10.1080/14786430903128577 Document Type: Article |
Times cited : (40)
|
References (53)
|