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Title: Low cycle notched fatigue behavior and life predictions of A723 high strength steels

Book ·
OSTI ID:191356
; ;  [1]
  1. Army Armament Research, Development and Engineering Center, Watervliet, NY (United States). Benet Labs.

Two types of ASTM A723 steels have been investigated for their low cycle fatigue behavior. Specimens were tested in four-point bending, both with and without notches, and the measured fatigue lives were compared with those predicted by Neubers notch analysis, and standard fracture mechanics life prediction techniques. Comparison of measured and predicted lives indicate that the elastic/plastic Neuber analysis under predicts the measured fatigue life by as much as 67% at large strains, and becomes a better predictor of life as the applied strains decrease. The elastic Neubers analysis also under predicts the measured fatigue lives by 45% at large applied strains, but seems to accurately predict lives at reversals to failure greater than 100. The fracture mechanics approach assumes elastic stresses at the crack tip, and predicts lives within 30% over the full range of strains investigated. The results show that the Neuber notch analysis is not as good an indicator of the low cycle fatigue behavior of A723 steels as is the fracture mechanics life prediction techniques. As the life cycles to failure decreases, the Neubers analysis predicts lives that are two to three times more conservative than those experimentally measured.

OSTI ID:
191356
Report Number(s):
CONF-950740-; ISBN 0-7918-1337-1; TRN: IM9610%%357
Resource Relation:
Conference: Joint American Society of Mechanical Engineers (ASME)/Japan Society of Mechanical Engineers (JSME) pressure vessels and piping conference, Honolulu, HI (United States), 23-27 Jul 1995; Other Information: PBD: 1995; Related Information: Is Part Of Fatigue and crack growth: Environmental effects, modeling studies, and design considerations. PVP-Volume 306; Yukawa, S. [ed.] [Yukawa (Sumio), Boulder, CO (United States)]; Jones, D.P. [ed.] [Bettis Atomic Power Lab., West Mifflin, PA (United States)]; Mehta, H.S. [ed.] [GE Nuclear Energy, San Jose, CA (United States)]; PB: 331 p.
Country of Publication:
United States
Language:
English