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MALÍKOVÁ, L. DOUBEK, P. MIARKA, P. SEITL, S.
Originální název
Influence of the interphase between laser-cladded metal layer and steel substrate on the fatigue propagation of a short edge crack
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
angličtina
Originální abstrakt
Laser cladding is a relatively new technology how to combine properties of various materials. Thus, bi-material interfaces are presented in real structures and can affect the fatigue crack propagation. A cracked bar subjected to pure tensile loading is numerically simulated in this work in order to analyze the effect of the interphase layer between the cladded metal layer and the steel substrate on crack growth in the surface layer. Particularly, the influence of various Young’s modulus of the interphase on the stable/unstable edge crack propagation is assessed. Moreover, the number of cycles necessary for achievement of the defined critical crack length is calculated and it is summarized that knowledge of elastic properties of the thin interphase is crucial for fracture and fatigue analyses.
Klíčová slova
Laser cladding; Bi-material; Interphase; Fatigue crack propagation; Fracture mechanics; Edge crack
Autoři
MALÍKOVÁ, L.; DOUBEK, P.; MIARKA, P.; SEITL, S.
Vydáno
1. 1. 2022
Nakladatel
Gruppo Italiano Frattura
Místo
Italy
ISSN
1971-8993
Periodikum
Frattura ed Integrita Strutturale
Ročník
16
Číslo
59
Stát
Italská republika
Strany od
514
Strany do
524
Strany počet
11
URL
https://www.fracturae.com/index.php/fis/article/view/3348
Plný text v Digitální knihovně
http://hdl.handle.net/11012/203277
BibTex
@article{BUT175727, author="Lucie {Malíková} and Pavel {Doubek} and Petr {Miarka} and Stanislav {Seitl}", title="Influence of the interphase between laser-cladded metal layer and steel substrate on the fatigue propagation of a short edge crack", journal="Frattura ed Integrita Strutturale", year="2022", volume="16", number="59", pages="514--524", doi="10.3221/IGF-ESIS.59.33", issn="1971-8993", url="https://www.fracturae.com/index.php/fis/article/view/3348" }