Damages on Prefabricated Concrete Dapped-End Purlins Due To Snow Loads and a Novel Reinforcement Detail
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Date
2020
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
ELSEVIER SCI LTD
Open Access Color
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
In prefabricated industrial buildings, damages and collapses may occur under snow loads. If the necessary precautions are not taken, the damage can spread to the whole structure which leads to total collapse. Therefore, it is very crucial for manufacturers to comprehend the nature of the damage and to take necessary precautions to prevent this damage. In this present study, the damages occurred at dapped-end region of prefabricated purlins due to snow load accumulated at the roof and the reasons for these damages were investigated in detail. Pursuant to this goal, comprehensive experimental and numerical studies have been undertaken. 10 specimens with 5 different configurations were tested under four point loading. A novel reinforcement detail and the usage of practical methods used by the manufacturers are selected as main parameters. In all purlins, damages occurred at the dapped-end in shear formation. The experimentally obtained results were compared with field tests and TS9967 design code. It was observed that the specimen with Z type of the proposed novel reinforcement exhibited approximately 30% higher load capacity than that of other specimens. Moreover, the numerical analyses were performed in order to determine optimum Z type reinforcement for dapped-end purlin beams using finite element methods.
Description
ORCID
Keywords
Dapped-End Purlin, Snow Load, Prefabricated Structure, Collapse, Experiment, Numerical Analyses, Truss Roof Structure, Shear-Strength, Tie Models, Beams, Steel, Performance, Behavior, Design, Turkey, Earthquake
Turkish CoHE Thesis Center URL
Fields of Science
02 engineering and technology, 0201 civil engineering
Citation
WoS Q
Q1
Scopus Q
Q1

OpenCitations Citation Count
43
Source
ENGINEERING STRUCTURES
Volume
225
Issue
Start Page
111225
End Page
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Citations
CrossRef : 45
Scopus : 52
Captures
Mendeley Readers : 18
SCOPUS™ Citations
51
checked on Feb 03, 2026
Web of Science™ Citations
52
checked on Feb 03, 2026
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