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A Review on Fatigue Life Prediction Methods for Metals

Title
A Review on Fatigue Life Prediction Methods for Metals
Author
Zal Nezhad, Erfan
Keywords
LOW-CYCLE FATIGUE; CONTINUUM DAMAGE MECHANICS; AEROSPACE AL7075-T6 ALLOY; LOW-AMPLITUDE LOADS; STRAIN-CONTROLLED FATIGUE; MINIMUM ENERGY FORMALISM; CRITICAL-PLANE CRITERION; SLIP BAND MODEL; OF-THE-ART; S-N CURVE
Issue Date
2016-09
Publisher
HINDAWI PUBLISHING CORP
Citation
ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, v. 2016, Page. 1-26
Abstract
Metallic materials are extensively used in engineering structures and fatigue failure is one of the most common failure modes of metal structures. Fatigue phenomena occur when a material is subjected to fluctuating stresses and strains, which lead to failure due to damage accumulation. Different methods, including the Palmgren-Miner linear damage rule- (LDR-) based, multiaxial and variable amplitude loading, stochastic-based, energy-based, and continuum damage mechanics methods, forecast fatigue life. This paper reviews fatigue life prediction techniques for metallic materials. An ideal fatigue life prediction model should include the main features of those already established methods, and its implementation in simulation systems could help engineers and scientists in different applications. In conclusion, LDR-based, multiaxial and variable amplitude loading, stochastic-based, continuum damage mechanics, and energy-based methods are easy, realistic, microstructure dependent, well timed, and damage connected, respectively, for the ideal prediction model.
URI
https://www.hindawi.com/journals/amse/2016/9573524/https://repository.hanyang.ac.kr/handle/20.500.11754/76760
ISSN
1687-8434; 1687-8442
DOI
10.1155/2016/9573524
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > MECHANICAL ENGINEERING(기계공학부) > Articles
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