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Basic Compounds for Superalloys: Mechanical Properties

Autor Joshua Pelleg
en Limba Engleză Paperback – 21 iun 2018
Basic Compounds for Superalloys: Mechanical Properties explores the mechanical properties of the iron group based intermetallic compounds that are the basis of super-alloys. Chapters explore tensile tests and compressive stress and hardness and provide detailed considerations that are devoted to time dependent deformation, namely creep and cyclic deformation. In addition, a discussion of the nano-crystalline L12 and B2 structures and their mechanical properties is included. Fracture and failure of these materials in both macro and nano-iron based compounds is also considered. This book is ideal for engineers, scientists and technical personnel who work in materials engineering, materials science, and mechanical and chemical engineering.


  • Provides an in-depth focus on the mechanical properties of Fe- superalloy materials
  • Includes a discussion of the static, time dependent and cyclic deformation properties of macro- and nano materials
  • Reviews how superalloy materials behave under a variety of ‘in-service’ environments and conditions
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Specificații

ISBN-13: 9780128161333
ISBN-10: 0128161337
Pagini: 624
Dimensiuni: 152 x 229 mm
Greutate: 0.82 kg
Editura: ELSEVIER SCIENCE

Public țintă

Students, engineers, scientists and technical persons in the fields of: Materials Engineering, Material Science; Mechanics and Mechanical Engineers, Chemical Engineers, Physicists

Cuprins

1. Fe group L12 and B2 structures2. Testing3. Testing in Fe Based DO34. The Effect of B5. The Effect of B in the DO3 Structures6. B2 structures-Testing7. The effect of Boron (B) on B2 compounds8. Mechanical Properties of Thin Films in L12 and B2 structures9. Dislocations in the Fe group L12 and DO3 alloys10. Dislocations and Strength Anomaly in B2 type crystals11. Time Dependent Deformation-Creep: L12 and DO3 compounds12. Time dependent Deformation-Creep: B2 compounds13. Fatigue (cyclic deformation) in L12 and DO314. Fatigue (cyclic deformation) in B2 Compounds15. Fracture in L12 and DO316. Fracture in B2 Intermetallics17. Mechanical Properties of L12 (DO3) Nano Structures18. Mechanical Properties of B2 Nano Structures