Improving of fatigue assessment method of stud shear connectors using experimental data from studs' test of existing road bridge

Author:

Kozak Nikolai1,Bystrov Vladimir1,Yaroshutin Dmitry1,Daliaev Nikolai1

Affiliation:

1. Saint Petersburg State University of Architecture and Civil Engineering, St. Petersburg, Russia

Abstract

<p>Nowadays there are varieties of methods for fatigue assessment of stud shear connectors in bridges with steel-concrete composite superstructures. These methods can consider various parameters, such as traffic flow characteristics, asymmetry factors, etc. Bridge design codes used in Russia are quite conservative in this matter and prescribe fatigue assessment based only on the maximum stress value, taking into consideration the reduction factor, ignoring the actual traffic loads. To improve the methodology for fatigue assessment, the authors of the article performed a full-scale experiment on a reconstructed bridge on the federal highway in Russia. The purpose was to determine the actual dynamic stresses in stud shear connectors from the transport load. During the reconstruction of the bridge, strain gauges were installed on stud shear connectors, and then connected to a digital measuring system. The article provides a complete description of the methods used and the results of the experiment. Based on the obtained data analysis, authors propose recommendations for adjusting the standard impact factors. Based on the results of comparison of the damage values obtained theoretically and experimentally, the authors make a proposal on the need to adjust the design loads used.</p>

Publisher

International Association for Bridge and Structural Engineering (IABSE)

Reference10 articles.

1. Bystrov V, Kozak N, Yaroshutin D. Problems of4.4 Refinement of calculation modelsIt should be noted that the above-described results were obtained under the conditions of using design model with a set of assumptions (hypotheses about constant stiffness of bonds for the macrolevel model, hypotheses about a concrete model and a simplified data processing method for a microlevel model, a hypothesis about stress distribution in studs when processing experimental data). At further stages of the study, the possibility of transferring to conditions that are more generalreal dynamically loading mode and structure fatigue mode determination in composite steel-concrete city and road bridges. Russian journal of transport engineering [Internet]. 2019 Dec [cited 2020 Sep 25]; 6(4). Available from: https://t-s.today/en/06SATS419.html

2. Johnson RP. Resistance of stud shear connectors to fatigue. Journal of Constructional Steel Research. 2000; (56): 101–16.

3. Hassanin AI, Shabaan HF, Elsheikh AI. The Effects of Shear Stud Distribution on the Fatigue Behavior of Steel–Concrete Composite Beams. Arab J Sci Eng. 2020 Oct; 45(10): 8403–26.

4. Henderson IEJ, Zhu XQ, Uy B, Mirza O. Dynamic behaviour of steel–concrete composite beams with different types of shear connectors. Part I: Experimental study. Engineering Structures. 2015 Nov; 103: 298– 307.

5. Xu C, Sugiura K, Su Q. Fatigue Behavior of the Group Stud Shear Connectors in Steel- Concrete Composite Bridges. J Bridge Eng. 2018 Aug; 23(8): 04018055.

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