Mechanical Behaviour of Materials at High Temperature: NATO Science Partnership Subseries: 3, cartea 15
Editat de C. Moura Branco, R. Ritchie, V. Sklenickaen Limba Engleză Hardback – 30 iun 1996
| Toate formatele și edițiile | Preț | Express |
|---|---|---|
| Paperback (1) | 2027.00 lei 6-8 săpt. | |
| SPRINGER NETHERLANDS – 22 sep 2011 | 2027.00 lei 6-8 săpt. | |
| Hardback (1) | 1771.77 lei 6-8 săpt. | |
| SPRINGER NETHERLANDS – 30 iun 1996 | 1771.77 lei 6-8 săpt. |
Din seria NATO Science Partnership Subseries: 3
- 15%
Preț: 628.47 lei - 15%
Preț: 578.83 lei - 18%
Preț: 1914.28 lei -
Preț: 378.21 lei -
Preț: 375.81 lei - 18%
Preț: 1777.22 lei -
Preț: 396.68 lei - 18%
Preț: 1181.14 lei - 15%
Preț: 617.72 lei -
Preț: 387.47 lei - 18%
Preț: 1758.43 lei -
Preț: 365.09 lei - 18%
Preț: 1176.89 lei -
Preț: 386.16 lei - 18%
Preț: 1769.80 lei -
Preț: 377.12 lei - 18%
Preț: 1186.41 lei -
Preț: 389.88 lei -
Preț: 381.55 lei - 18%
Preț: 1178.99 lei - 18%
Preț: 1185.51 lei - 18%
Preț: 1180.81 lei - 5%
Preț: 363.18 lei - 18%
Preț: 1759.04 lei - 20%
Preț: 323.41 lei - 18%
Preț: 1177.80 lei -
Preț: 382.30 lei - 18%
Preț: 1759.19 lei - 15%
Preț: 625.44 lei - 5%
Preț: 1361.54 lei
Preț: 1771.77 lei
Preț vechi: 2160.69 lei
-18% Nou
Puncte Express: 2658
Preț estimativ în valută:
313.60€ • 365.56$ • 274.26£
313.60€ • 365.56$ • 274.26£
Carte tipărită la comandă
Livrare economică 21 ianuarie-04 februarie 26
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9780792341130
ISBN-10: 0792341139
Pagini: 726
Ilustrații: XX, 726 p.
Dimensiuni: 210 x 297 x 40 mm
Greutate: 1.22 kg
Ediția:1996
Editura: SPRINGER NETHERLANDS
Colecția Springer
Seria NATO Science Partnership Subseries: 3
Locul publicării:Dordrecht, Netherlands
ISBN-10: 0792341139
Pagini: 726
Ilustrații: XX, 726 p.
Dimensiuni: 210 x 297 x 40 mm
Greutate: 1.22 kg
Ediția:1996
Editura: SPRINGER NETHERLANDS
Colecția Springer
Seria NATO Science Partnership Subseries: 3
Locul publicării:Dordrecht, Netherlands
Public țintă
ResearchCuprins
I: High Temperature Metallic Alloys.- Overview on monotonic, creep and cyclic stress strain behaviour at high values of strain.- Creep behaviour of engineering alloys.- Development of intergranular damage under high temperature loading conditions.- Defect assessment procedures in the creep range.- Intergranular creep cavitation and fracture.- Elevated temperature fatigue crack growth of nickel base superalloys; A review and modelling.- Fatigue and creep-fatigue behaviour of Ni-base superalloys: Microstructural and environmental effects.- Interaction of high temperature creep with high cycle fatigue.- Creep and creep-fatigue crack growth of high strength steels.- The behaviour of short cracks at elevated temperatures.- Local approach: Numerical simulation of creep crack initiation and growth.- The effect of temperature on the growth of cracks subjected to combined major and minor stress cycles.- II: Engineering Applications of High Temperature Alloys.- Aspects of the assessment of the mechanical behaviour of metallic materials at high temperature.- The behaviour of defects in welds at high temperature.- Developments in creep-fatigue crack initiation and growth procedures in high temperature codes.- Quantitative microstructural assessment of P91 ferritic steel after long term creep at high temperature.- Aeroengine applications of advanced high temperature materials.- Stressing and lifing techniques for high temperature aeroengine components.- III: Thermal-Mechanical Fatigue and Thermal Shock.- Thermo-mechanical deformation of engineering alloys and components — Experiments and modeling.- Thermal-mechanical fatigue and thermal fatigue experiments.- Damage modelling in thermal mechanical fatigue.- Analysis of thermal shock and thermal-mechanical fatigue.- Experimentalanalysis of thermal shock.- IV: High Temperature Behaviour of Metal Matrix and Ceramic Matrix Composites.- Crack propagation in metal-matrix composites. I: Interaction of cracks with metal/ceramic interfaces.- Crack propagation in metal-matrix composites. II: Mechanisms of fatigue-crack growth.- Processing structure and high temperature creep of MMCs.- Modelling of high temperature deformation in MMCs.- Temperature and loading rate effects on toughness of in-situ niobium silicide — niobium composites.- Sialons and silicon nitrides as high temperature engineering materials; Retrospect and prospect.- Toughened silicon carbides for high-temperature use.- Indentation creep behaviour of glasses and glass-ceramics.- Mechanical properties of mullite at high temperature.- Ceramic matrix composites.- Si3N4-SiC composites prepared by SHS technique.- CMC processing routes for high temperature applications.- Design concepts for CMC structures.- CMC’s static and fatigue behaviour at high temperature.- New developments in engineering applications of materials at high temperatures.- CMC component joining.