Effect of damaged circular flange-bolted connections on behaviour of tall towers, modelled by multilevel substructuring
Autor: | W. Gutkowski, Bartlomiej Blachowski |
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Rok vydání: | 2016 |
Předmět: |
Engineering
business.industry Tension (physics) Stiffness 020101 civil engineering 02 engineering and technology Bending Structural engineering Flange Finite element method 0201 civil engineering Contact force 020303 mechanical engineering & transports 0203 mechanical engineering Bending moment medicine medicine.symptom business Tower Civil and Structural Engineering |
Zdroj: | Engineering Structures. 111:93-103 |
ISSN: | 0141-0296 |
DOI: | 10.1016/j.engstruct.2015.12.018 |
Popis: | The paper deals with non-linear analysis of a telecommunication tower with circular flange-bolted connections (CFBCs). They are composed of two flanges, welded to the structural tubes, and then connected together with pre-tensioned bolts. A rigorous FEM analysis is performed for finding the connection stiffness in two cases. One deals with all bolts undamaged and the second one with one or more bolts broken. The analysis, which includes contact and friction forces, shows that when joints are under tension, the bolts are not only subjected to axial forces, but also to bending moments due the prying effect. The value of stresses caused by bending depends strongly on the bolt pre-tension and flange thickness. Removing one of the six connection bolts significantly increases stresses in the remaining bolts. Knowing the behaviour of the connection, it is possible to study the behaviour of the whole structure. This is achieved by applying the multilevel substructuring approach. The first levels is related to the flanges and bolts, whereby the connection model is simplified, and compared with the rigorous one, the second level is related to the assembly of the whole tower. The paper is illustrated with several examples of connections of different thicknesses, and different bolt pre-tensions. The considered tower comes from a real design. |
Databáze: | OpenAIRE |
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