Utilize este identificador para referenciar este registo: https://hdl.handle.net/10316/105790
Título: Fatigue Life Assessment in Bainitic Steels Based on The Cumulative Strain Energy Density
Autor: Martins, Rui F.
Branco, Ricardo 
Long, Xiaoyan
Palavras-chave: high-strength bainitic steels; Mn effect; strain energy density; fatigue life predictions
Data: 2020
Editora: MDPI
Projeto: UIDB/00667/2020 
Título da revista, periódico, livro ou evento: Applied Sciences (Switzerland)
Volume: 10
Número: 21
Resumo: Carbide-free bainitic steels are an example of high-strength steels that show an excellent combination of strength, ductility, toughness and rolling fatigue contact resistance and are progressively being introduced in the production of railways, crossings and automotive components. Although there are Mn-free approaches able to produce carbide-free bainitic steels, those based on the addition of Mn are less expensive. Therefore, it is important to fully understand the mechanical behavior of such materials to develop reliable engineering products. In this paper, three low-carbon bainitic steels, di ering in Mn content, namely 0%, 2.3% and 3.2%, designated as steel A, B and C, respectively, were studied in a systematic manner. Low-cycle fatigue tests were conducted under symmetrical strain-controlled conditions for di erent strain amplitudes (0.6%, 0.7%, 0.8% and 1%). Independent of Mn content, a strong relationship between cumulative strain energy density and number of cycles to failure was found. Based on this relationship, a new predictive model, capable of estimating the fatigue lifetime, was developed. Predictions based on the new model were close to the experimental lives and were more accurate than those computed via the well-known Smith-Watson-Topper (SWT) and Liu criteria.
URI: https://hdl.handle.net/10316/105790
ISSN: 2076-3417
DOI: 10.3390/app10217774
Direitos: openAccess
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