Structural Hot Spot Stress Approach to Fatigue Analysis of Welded Components is popular PDF and ePub book, written by Erkki Niemi in 2017-08-28, it is a fantastic choice for those who relish reading online the Technology & Engineering genre. Let's immerse ourselves in this engaging Technology & Engineering book by exploring the summary and details provided below. Remember, Structural Hot Spot Stress Approach to Fatigue Analysis of Welded Components can be Read Online from any device for your convenience.

Structural Hot Spot Stress Approach to Fatigue Analysis of Welded Components Book PDF Summary

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

Detail Book of Structural Hot Spot Stress Approach to Fatigue Analysis of Welded Components PDF

Structural Hot Spot Stress Approach to Fatigue Analysis of Welded Components
  • Author : Erkki Niemi
  • Release : 28 August 2017
  • Publisher : Springer
  • ISBN : 9789811055683
  • Genre : Technology & Engineering
  • Total Page : 76 pages
  • Language : English
  • PDF File Size : 7,6 Mb

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