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Poe, Jr.: “Fatigue Crack Propagation in Stiffened Panels”

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Bibliografia

Bibliografia

[1] “Better production: High Speed Machined helps modernize bulkhead manufactoring”

dal sito internet http://www.mmsonline.com/articles/0399bp1.html.

[2] Terry Khaled, Ph.D.: “An Outsider looks at Friction Stir Welding”.

Report : ANM-112N-05-06, July 2005.

[3] Mazumder, J.: “Laser welding: state of the art review”. J. Metal. July 16-24,1982

[4] C. C. Poe, Jr.: “Fatigue Crack Propagation in Stiffened Panels”. Damage Tolerance in Aircraft Structures, ASTM STP 486, American Society for Testing and Materials, 1971.

[5] C. C. Poe, Jr.: “The Effect of Riveted and Uniformly Spaced Stringer on the Stress Intensity Factor of a Cracked Sheet”. M. S. thesis, Virginia Polytechnic Institute, 1969.

[6] Robert J. Dexter, Paul J. Pilarski, Hussam N. Mahmound: “Analysis of crack propagation in welded stiffened panels”. International Journal of Fatigue 25 (2003) 1169-1174.

[7] Thayamballi AK: “Reliability of ship hull in the fracture and fatigue modes of failure”. Ph.

D. dissertation in Engineering, University of California, 1983.

[8] Hussam N. Mahmound, Robert J. Dexter: “Propagation rate of large cracks in stiffened panels under tension loading”. Marine Structures 18 (2005) 265-288.

[9] Prof. Tony Ingraffea, Dr. Wash Wawrzynek, Cornell University Fracture Group:

“Introduction to FRANC2D, FRANC2D/L and FRANC3D”. ASTM Workshop on Computational Fracture Mechanics for Composites, Salt Lake City, March 22-23, 2004.

[10] FRANC2D: “A Two Dimensional Crack Propagation Simulator”. Version 3.1 User’s Guide.

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Bibliografia

[11] Daniel Swenson and Mark James, Kansas State University - Manhattan, Kansas:

“FRANC2D/L: A Crack Propagation Simulator for Plane Layered Structures”. Version 1.4 User’s Guide.

[12] FRANC3D: “Concepts & Users Guide”. Version 2.6, 2003.

[13] OSM: “Menu & Dialog Reference”. Version 2.6, 2003.

[14] FRANC3D: “Menu & Dialog Reference”. Version 2.6, 2003.

[15] H. Ewalds, R. J. H. Wanhill: “Fracture Mechanics”, published by E. Arnold Ltd – Delfetse U. M., 1984.

[16] AFGROW Version 4.0002.12.8, 9/18/00, Copyright © 1996-2000 AFRL/VASM

[17] ABAQUS Version 6.5-001, Copyrigth © Hibbitt, Karlsson & Sorensen Italy,srl.

[18] Claudia Polese: “Propagazione per fatica di difetti sotto l’azione combinata di tensioni di trazione e flessione”. Tesi di laurea in Ing. Aerospaziale, Università di Pisa, 2001.

[19] K. N. Shivakumar, P. W. Tan, J. C. Newman Jr. “A Virtual Crack-Closure Technique for Calculating Stress Intensity Factors for Cracked Three Dimensional Bodies” International Journal of Fracture Vol. 36, R43-R50,1988.

[20] James A. Harter: “AFGROW Users Guide and Technical Manual”. Version 4.0002.12.8, May 2000.

[21] Test Report 1: “Damage Tolerant Investigations on Integral Shells (Crack propagation test)”. Compiled by Airbus for use on EC DATON Project only.

[22] Lanciotti A. Lazzeri L. Polese C.: “Working Document: Description of the test programme” , DaToN – WD - WP 3.1 – 1.0 / DIA-UniPi.

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Bibliografia

[23] Microsoft ® Excel 2000 SR-1, Copyrigth © 1983-1998 Microsoft Corporation.

[24] Daniela Baratto: “Structural and Mechanical Analysis of Aircraft Fuselage Laser Welded Al-Alloys Skin-Stringer Elements”. Final Thesis supported by EADS, 2003.

[25] J.C. Ehrström, H. Ribes, B. Bès: “6X56 Properties”. 2005 © ALCAN INC.

Ulteriori articoli e testi consultati:

o Fabrice Congourdeau, Bertrand Journet, Cédric Meyer: “Damage Tolerance of Fuselage Welded Stiffened Panels”. Fatigue of Aeronautical Structures as an Engineering Challenge, ICAF 2003.

o FRANC3D & BES: “Benchmarking”. Version 2.6, 2003.

o FRANC3D & OSM: “3D Tutorial”. Version 2.6, 2003.

o FRANC3D &OSM: “3D Advanced Tutorial: Automated Growth in Turbine Disk”.

Version2.6, 2003.

o FRANC3D & STAGS: “Thin Shell Tutorial”. Version2.6, 2003.

o Test Report 2: “Damage Tolerant Investigations on Integral Shells (Crack propagation and residual strength test)”. Compiled by Airbus for use on EC DATON Project only.

o Célio O. Moretti, Tulio N. Bittencourt, Luiz F. Martha: “An Integrated Parallel System for Propagation of Arbitrary Cracks in Solid Models”.

o B. J. Carter, P. A. Wawrzynek and A. R. Ingraffea: “Automated 3-D crack growth simulation”. International Journal for Numerical Methods in Engineering, Int. J.

Numer. Meth. Engng. 47, 229-253 (2000).

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