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Fracture, Fatigue and Structural Integrity of Metallic Materials

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

n/a; reuse; microstructure; fatigue crack growth; micromechanisms; weld joint; FFM; slow strain rate tensile test; fracture; orthotropic steel bridge deck; fatigue; three-point bending fatigue; EMC; notch effect; thermal desorption spectroscopy; synchrotron radiation; tube specimen with hole; critical distance; Inconel 690 tube; fatigue test; failure assessment diagram (FAD); alloy steel; X-ray techniques; overload; aluminium plates; fatigue strength; fastener; high strength low alloy steels (HSLA); internal fatigue fracture; ?CT imaging; hydrogen induced cracking (HIC); notch; rotating bending; local strain; aluminum foam sandwich; structural steel; surface defect; compressive residual stress; blunt V-notches; cathodic polarization; needle peening; semi-elliptical crack; fatigue life; hydrogen-induced delayed fracture; fatigue design curve; subcritical propagation; cathodic polarization or cathodic charge (CC); hydrogen embrittlement; aircraft; fatigue limit; environmentally assisted cracking; ductile failure; mode I loading; cathodic protection (CP); peel strength; hot-press-formed steel; crack initiation; retardation; theory of critical distances; welded joint

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-03928-860-1

País de edición

Suiza

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