Probabilistic S-N fields based on statistical distributions applied to metallic and composite materials: State of the art

Author:

Barbosa Joelton Fonseca123ORCID,Correia José AFO4,Freire Júnior RCS1,Zhu Shun-Peng5ORCID,De Jesus Abílio MP2

Affiliation:

1. Federal University of Rio Grande do Norte, Natal, Brazil

2. Faculty of Engineering, University of Porto, Porto, Portugal

3. Federal Rural University of the Semi-Arid, Mossoró, Brazil

4. INEGI and CONSTRUCT, Faculty of Engineering, University of Porto, Porto, Portugal

5. School of Mechanical and Electrical Engineering, University of Electronic Science and Technology of China, Chengdu, China

Abstract

Fatigue life prediction of materials can be modeled by deterministic relations, via mean or median S-N curve approximation. However, in engineering design, it is essential to consider the influence of fatigue life scatter using deterministic-stochastic methods to construct reliable S-N curves and determine safe operation regions. However, there are differences between metals and composites that must be considered when proposing reliable S-N curves, such as distinct fracture mechanisms, distinct ultimate strengths under tension and compression loading, and different cumulative fatigue damage mechanisms including low-cycle fatigue. This study aims at conducting a review of the models used to construct probabilistic S-N fields ( P-S-N fields) and demonstrate the methodologies applied to fit the P-S-N fields that are best suited to estimate fatigue life of the selected materials. Results indicate that the probabilistic Stüssi and Sendeckyj models were the most suitable for composite materials, while, for metals, only the probabilistic Stüssi model presented a good fitting of the experimental data, for all fatigue regimes.7

Funder

fundação para a ciência e a tecnologia

FiberBridge—Fatigue strengthening and assessment of railway metallic bridges using fiber-reinforced polymers by FEDER funds through COMPETE2020 (POCI)

National Natural Science Foundation of China

Sichuan Provincial Key Research and Development Program

coordenação de aperfeiçoamento de pessoal de nível superior

guangzhou science and technology program key projects

Instituto de I&D em Estruturas e Construções

Publisher

SAGE Publications

Subject

Mechanical Engineering

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