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Steel Designers Manual - TheBestFriend.org

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This material is copyright - all rights reserved. Reproduced under licence from The <strong>Steel</strong> Construction Institute on 12/2/2007<br />

To buy a hardcopy version of this document call 01344 872775 or go to http://shop.steelbiz.<strong>org</strong>/<br />

<strong>Steel</strong> <strong>Designers</strong>' <strong>Manual</strong> - 6th Edition (2003)<br />

274 Fracture and fatigue<br />

7. British Standards Institution (2000) Structural use of steelwork in building. Code<br />

of practice for design. BS 5950-1: 2000.<br />

8. British Standards Institution (2000) <strong>Steel</strong>, concrete and composite bridges. Code<br />

of practice for design of steel bridges. BS 5400-3: 2000 and Code of practice for<br />

fatigue. BS 5400-10: 1980, BSI, London.<br />

9. British Standards Institution (1999) Guidance on methods for assessing the<br />

acceptability of flaws in fusion welded structures. BS 7910: 1999, BSI, London.<br />

10. SINTAP (1999) Structural Integrity Assessment Procedures for European<br />

Industry. Project BE 95-1426. Final Procedure, British <strong>Steel</strong> Report, Rotherham,<br />

UK.<br />

11. American Society for Testing and Materials (1982) Design of fatigue and fracture<br />

resistant structures. ASTM STP 761.<br />

12. British Standards Institution (1993) Fatigue design and assessment of steel structures.<br />

BS 7608: 1993, BSI, London.<br />

13. Department of Energy (1990) Offshore Installations: Guidance Design<br />

Construction and Certification, 4th edn. HMSO.<br />

14. British Standards Institution (1983 & 1980) Rules for the design of cranes.<br />

Part 1: Specification for classification, stress calculations and design criteria for<br />

structures. Part 2: Specification for classification, stress calculations and design of<br />

mechanisms. BS 2573, BSI, London.<br />

15. Miner, M.A. (1945) Cumulative damage in fatigue. Journal of Applied<br />

Mechanics, 12, A159–A164.<br />

16. Paris P.C. & Erdogan F. (1963) A critical analysis of crack propagation laws.<br />

Journal of Basic Engineering, 85, 528–534.<br />

Further reading for Chapter 7<br />

Dowling N.E. (1999) Mechanical Behavior of Materials: Engineering Methods for<br />

Deformation, Fracture, and Fatigue, 2nd edn. Prentice-Hall, Inc.<br />

Gray T.F.G., Spence J. & North T.H. (1982) Rational Welding Design, 2nd edn.<br />

Butterworth, London.<br />

Gurney T.R. (1979) Fatigue of Welded Structures, 2nd edn. Cambridge University<br />

Press.<br />

Pellini W.S. (1983) Guidelines for Fracture-Safe and Fatigue-Reliable Design of <strong>Steel</strong><br />

Structures. The Welding Institute.<br />

Radaj D. (1990) Design and Analysis of Fatigue Resistant Welded Structures.<br />

Abington Publishing, Cambridge.

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