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Fatigue Analysis of Welded Components

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Fatigue Analysis of Welded Components

Designer’s Guide to the Structural Hot-Spot Stress Approach
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Description

This report provides background and guidance on the use of the structural hot spot stress approach to the fatigue design of welded components and structures. It complements the IIW recommendations for 'Fatigue Design of Welded Joints and Components' and extends the information provided in the IIW recommendations on 'Stress Determination for Fatigue Analysis of Welded Components'. This approach is applicable to cases of potential fatigue cracking from the weld toe. It has been in use for many years in the context of tubular joints. The present report concentrates on its extension to structures fabricated from plates and non-tubular sections. Following an explanation of the structural hot spot stress, its definition and its relevance to fatigue, the authors describe methods for its determination. Stress determination from both finite element analysis and strain gauge measurements is considered. Parametric formulae for calculating stress increases due to misalignment and structural discontinuities are also presented. Special attention is paid to the use of finite element stress analysis and guidance is given on the choice of element type and size for use with either solid or shell elements. Design S-N curves for use with the structural hot spot stress are presented for a range of weld details. Finally, practical application of the recommendations is illustrated in two case studies involving the fatigue assessment of welded structures using the structural hot spot stress approach.

Author Biography:

Professor Erkki Niemi is Emeritus Professor of Steel Structures in Lappeenranta University of Technology, Finland. Dr-Ing. Wolfgang Fricke is Professor of Ship Structural Design and Analysis at Hamburg University of Technology, Germany. Dr Stephen Maddox, Chair of the IIW's Commission XIII, works at the internationally-renowned TWI in Cambridge, UK.
Release date NZ
September 27th, 2006
Audience
  • Professional & Vocational
Pages
56
Dimensions
210x297x3
ISBN-13
9781845691240
Product ID
11468178

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