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JUHÁSZOVÁ, T. MIARKA, P. SEITL, S.
Original Title
Comparison of crack growth rates of IPE beams made from stainless steel in three-point bending
Type
conference paper
Language
English
Original Abstract
The main focus of research dealing with a fatigue of steel components is mostly performed by mechanical testing with focus set on small-scale components. On the other hand, from a civil engineering viewpoint, the steel load-bearing structures or their elements have much larger dimension, when comparing them to laboratory specimens. Therefore, the fatigue testing took place on IPE 80 specimens made from two different stainless steels AISI 304 and AISI 316, loaded in three-point bending with data collection of crack mouth opening displacement placed in mid-span using clip-on extensometer. This presented study focuses on the comparison of crack propagation rate in linear region of well-known Paris’ law. For the assessment of material constants from Paris’ equation C and m, two steel grades of stainless steel, AISI 304 and AISI 316 were experimentally obtained. To evaluate the experimental data, a three-dimensional (3D) numerical model, representing IPE 80 geometry, in a finite element method (FEM) software Ansys Mechanical APDL was created. The generated numerical results were used to evaluate stress intensity factor values, which serves as a main input to crack propagation Paris’ law.
Keywords
IPE 80; 3PBT; fatigue; Paris Law; AISI 304; AISI 316;
Authors
JUHÁSZOVÁ, T.; MIARKA, P.; SEITL, S.
Released
24. 11. 2023
Publisher
Elsevier
Location
online
ISBN
2452-3216
Periodical
Procedia Structural Integrity
Year of study
51
State
Republic of Italy
Pages from
1
Pages to
6
Pages count
URL
https://www.sciencedirect.com/science/article/pii/S2452321623006856
Full text in the Digital Library
http://hdl.handle.net/11012/245125
BibTex
@inproceedings{BUT182578, author="Tereza {Juhászová} and Petr {Miarka} and Stanislav {Seitl}", title="Comparison of crack growth rates of IPE beams made from stainless steel in three-point bending", booktitle="6th International Conference on Structural Integrity and Durability (ICSID 2022)", year="2023", journal="Procedia Structural Integrity", volume="51", pages="1--6", publisher="Elsevier", address="online", doi="10.1016/j.prostr.2023.10.091", issn="2452-3216", url="https://www.sciencedirect.com/science/article/pii/S2452321623006856" }