Structural Hot Spot Stress Approach to Fatigue Analysis of Welded Components

Structural Hot Spot Stress Approach to Fatigue Analysis of Welded Components
Author: Erkki Niemi,Wolfgang Fricke,Stephen J. Maddox
Publsiher: Springer
Total Pages: 76
Release: 2017-08-28
Genre: Technology & Engineering
ISBN: 9789811055683

Download Structural Hot Spot Stress Approach to Fatigue Analysis of Welded Components Book in PDF, Epub and Kindle

This book provides background and guidance on the use of the structural hot-spot stress approach to fatigue analysis. The book also offers Design S-N curves for use with the structural hot-spot stress for a range of weld details, and presents parametric formulas for calculating stress increases due to misalignment and structural discontinuities. Highlighting the extension to structures fabricated from plates and non-tubular sections. The structural hot-spot stress approach focuses on cases of potential fatigue cracking from the weld toe and it has been in use for many years in tubular joints. Following an explanation of the structural hot-spot stress, its definition and its relevance to fatigue, the book describes methods for its determination. It considers stress determination from both finite element analysis and strain gauge measurements, and emphasizes the use of finite element stress analysis, providing guidance on the choice of element type and size for use with either solid or shell elements. Lastly, it illustrates the use of the recommendations in four case studies involving the fatigue assessment of welded structures using the structural hot-spot stress

Fatigue Analysis of Welded Components

Fatigue Analysis of Welded Components
Author: E. Niemi,W Fricke,S J Maddox
Publsiher: Woodhead Publishing
Total Pages: 56
Release: 2006-09-27
Genre: Technology & Engineering
ISBN: 9781845696665

Download Fatigue Analysis of Welded Components Book in PDF, Epub and Kindle

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. Provides practical guidance on the application of the structural hot-spot stress approach Discusses stress determination from both finite element analysis and strain gauge measurements Practical application of the recommendations is illustrated in two case studies

Stress Determination for Fatigue Analysis of Welded Components

Stress Determination for Fatigue Analysis of Welded Components
Author: E. Niemi
Publsiher: Woodhead Publishing
Total Pages: 80
Release: 1995-04-30
Genre: Technology & Engineering
ISBN: 1855732130

Download Stress Determination for Fatigue Analysis of Welded Components Book in PDF, Epub and Kindle

This report introduces definitions of the terminology relevant to stress determination for fatigue analysis of welded components. The various stress concentrations, stress categories and fatigue analysis methods are defined. Fatigue analysis methods considered are nominal stress, hot spot stress, notch stress, notch strain and fracture mechanics approaches. The report also contains comprehensive recommendations concerning the application of finite element methods and experimental methods for stress determination. It is intended for fatigue design of common welded structures, such as cranes, excavators, vehicle frames, bridges, ship hulls, offshore structures etc. fabricated from materials at least 3mm thick. In general, attention is focused on weld details which give rise to fatigue cracking from the surface, notably from the weld toe.

Fatigue Assessment of Welded Joints by Local Approaches

Fatigue Assessment of Welded Joints by Local Approaches
Author: Dieter Radaj,C M Sonsino,W Fricke
Publsiher: Woodhead Publishing
Total Pages: 660
Release: 2006-10-30
Genre: Technology & Engineering
ISBN: 9781845691882

Download Fatigue Assessment of Welded Joints by Local Approaches Book in PDF, Epub and Kindle

Local approaches to fatigue assessment are used to predict the structural durability of welded joints, to optimise their design and to evaluate unforeseen joint failures. This standard work provides a systematic survey of the principles and practical applications of the various methods. It covers the hot spot structural stress approach to fatigue in general, the notch stress and notch strain approach to crack initiation and the fracture mechanics approach to crack propagation. Seam-welded and spot-welded joints in structural steels and aluminium alloys are also considered. This completely reworked second edition takes into account the tremendous progress in understanding and applying local approaches which has been achieved in the last decade. It is a standard reference for designers, structural analysts and testing engineers who are responsible for the fatigue-resistant in-service behaviour of welded structures. Completely reworked second edition of a standard work providing a systematic survey of the principles and practical applications of the various methods Covers the hot spot structural stress approach to fatigue in general, the notch stress and notch strain approach to crack initiation and the fracture mechanics approach to crack propagation. Written by a distinguished team of authors

Fatigue Assessment of Welded Joints by Local Approaches

Fatigue Assessment of Welded Joints by Local Approaches
Author: Dieter Radaj,Cetin Morris Sonsino
Publsiher: Woodhead Publishing
Total Pages: 476
Release: 1998
Genre: Technology & Engineering
ISBN: 1855734036

Download Fatigue Assessment of Welded Joints by Local Approaches Book in PDF, Epub and Kindle

IIW Recommendations for the Fatigue Assessment of Welded Structures By Notch Stress Analysis

IIW Recommendations for the Fatigue Assessment of Welded Structures By Notch Stress Analysis
Author: W Fricke
Publsiher: Woodhead Publishing
Total Pages: 65
Release: 2012-10-22
Genre: Technology & Engineering
ISBN: 9780857098566

Download IIW Recommendations for the Fatigue Assessment of Welded Structures By Notch Stress Analysis Book in PDF, Epub and Kindle

The notch stress approach for fatigue assessment of welded joints is based on the highest elastic stress at the weld toe or root. In order to avoid arbitrary or infinite stress results, a rounded shape with a reference radius instead of the actual sharp toe or root is usually assumed. IIW recommendations for the fatigue assessment of welded structures by notch stress analysis reviews different proposals for reference radii together with associated S-N curves. Detailed recommendations are given for the numerical analysis of notch stress by the finite or boundary element method. Several aspects are discussed, such as the structural weakening by keyhole-shaped notches and the consideration of multiaxial stress states. Appropriate S-N curves are presented for the assessment of the fatigue strength of different materials. Finally, four examples illustrate the application of the approach as well as the variety of structures which can be analysed and the range of results that can be obtained from different models. Provides detailed recommendations for the number analysis of notch stress by the finite or boundary element method Discusses structural weakening by keyhole-shaped notches and the consideration of multiaxial stress states Provides four comprehensive examples, illustrating the variety of structures which can be analysed and the range of results that can be obtained from different models

Fatigue of Welded Structures

Fatigue of Welded Structures
Author: Timothy Russell Gurney
Publsiher: CUP Archive
Total Pages: 480
Release: 1979-12-20
Genre: Technology & Engineering
ISBN: 0521225582

Download Fatigue of Welded Structures Book in PDF, Epub and Kindle

Recommendations for Fatigue Design of Welded Joints and Components

Recommendations for Fatigue Design of Welded Joints and Components
Author: A. F. Hobbacher
Publsiher: Springer
Total Pages: 153
Release: 2015-12-23
Genre: Technology & Engineering
ISBN: 9783319237572

Download Recommendations for Fatigue Design of Welded Joints and Components Book in PDF, Epub and Kindle

This book provides a basis for the design and analysis of welded components that are subjected to fluctuating forces, to avoid failure by fatigue. It is also a valuable resource for those on boards or commissions who are establishing fatigue design codes. For maximum benefit, readers should already have a working knowledge of the basics of fatigue and fracture mechanics. The purpose of designing a structure taking into consideration the limit state for fatigue damage is to ensure that the performance is satisfactory during the design life and that the survival probability is acceptable. The latter is achieved by the use of appropriate partial safety factors. This document has been prepared as the result of an initiative by Commissions XIII and XV of the International Institute of Welding (IIW).