Parametric Study of the Numerical Model of a Bolted Connection of Steel Structure for Photovoltaic Panels
Type
Journal article
Language
English
Date issued
2022
Author
Faculty
Wydział Inżynierii Środowiska i Inżynierii Mechanicznej
Journal
Materials
ISSN
1996-1944
Web address
Volume
15
Number
19
Pages from-to
art. 6794
Abstract (EN)
In the face of the reality that unexpectedly mobilized the governments of most central European countries (including Poland), the development of renewable energy sources (RES) seems to be an important direction. Therefore, both wind parks and solar farms will be constructed at double speed for energetic independence. This urgency makes the market of producers of structures for mounting solar panels also need to adapt quickly to the new situation. New constructions adapted to quick assembly with the use of nutless screw connections seem to be one of the best solutions. These structures must not only be easy and quick to install but also durable, which makes the connections resistant to cyclical loads. The speed of assembly of the substructure can be achieved precisely with the help of nutless connections, but their durability should be carefully analyzed. This article presents parametric analyses of the numerical model of this type of connection. The selection of appropriate numerical models for simulation is of key importance in the fatigue strength analysis of bolted connections. This article investigates two different models used in numerical fatigue analyses performed in the Abaqus FEA and FE-Safe program, namely, traditional bolt with nut and innovative self-tapping nutless bolt. Extended parametric analyses of both numerical models were carried out, which ultimately allowed optimization of the fatigue capacity of the connection.
License
CC-BY - Attribution
Open access date
September 30, 2022