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Notch stress analyses of high‐frequency mechanical impact‐improved welds by using ρf = 1 mm and ρf = ρ + 1 mm approaches
Authors:H. C. Yildirim  G. B. Marquis
Affiliation:1. Department of Applied Mechanics, Aalto University, , FI‐00076 Aalto, Finland;2. Department of Aeronautical and Vehicle Engineering, Division of Lightweight Structures, KTH Royal Institute of Technology, , 100 44 Stockholm, Sweden
Abstract:This paper presents further assessments of the previously reported round‐robin fatigue data obtained from high‐frequency mechanical impact (HFMI)‐improved longitudinal welds. A detailed statistical analyses of geometry measurements of HFMI‐treated weld toe profiles are presented. The fatigue analyses based on notch stress as defined by the International Institute of Welding are performed using the finite element method. Notch stresses are assessed based on both the fictitious weld toe radius and the addition of measured actual notch radius to the fictitious radius. While no large differences are observed between the results of methods, the former one is found to be more practical and faster to implement from the end‐user point of view.
Keywords:effective notch stress  fatigue strength improvement  high‐frequency mechanical impact (HFMI)  high‐strength steels  weld toe geometry  weld toe improvement
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