Inhomogeneity of misfit stresses in nickel-base superalloys: Effect on propagation of matrix dislocation loops

Author:

Link T.1,Epishin A.1,Fedelich B.2

Affiliation:

1. a Institute for Material Science and Engineering, Technical University Berlin , BH 18, Ernst Reuter Platz 1, 10587 Berlin, Germany

2. b Federal Institute for Materials Research and Testing , Unter den Eichen 87, 12205 Berlin, Germany

Publisher

Informa UK Limited

Subject

Condensed Matter Physics

Reference20 articles.

1. Interfacial Dislocation Networks and Creep in Directional Coarsened Ru-Containing Nickel-Base Single-Crystal Superalloys

2. Sato , A , Yeh , ACh , Kobayashi , T , Yokokawa , T , Harada , H , Murakumo , T and Zhang , J . 2006.A 5th generation Ni-base single crystal superalloy with superior elevated temperature properties, in Materials for Advanced Power Engineering, Edited by: Lecomte-Beckers , J , Carton , M , Schubert , F and Ennis , PJ . 287Jülich: Forschungszentrum Jülich GmbH.

3. The effect of lattice misfit on the dislocation motion in superalloys during high-temperature low-stress creep

4. Strengthening by γ/γ′ interfacial dislocation networks in TMS-162—Toward a fifth-generation single-crystal superalloy

5. Directional coarsening in nickel-base single crystals with high volume fractions of coherent precipitates

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