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냉간성형 탄소강 이면전단 볼트접합부 최대내력에 관한 실험적 고찰An Experimental Investigation on Ultimate Strength of Cold-formed Carbon Steel Double-shear Bolted Connections

Other Titles
An Experimental Investigation on Ultimate Strength of Cold-formed Carbon Steel Double-shear Bolted Connections
Authors
Jeong, WonhunKim, JunsuKim, Taesoo
Issue Date
May-2022
Publisher
Architectural Institute of Korea
Keywords
Block shear fracture; Cold-formed carbon steel; Design specification; Double shear bolted connection; Net section fracture; Ultimate strength; 냉간성형 탄소강; 이면전단 볼트접합; 블록전단파단; 순단면파단; 최대내력; 설계기준
Citation
Journal of the Architectural Institute of Korea, v.38, no.5, pp 235 - 242
Pages
8
Indexed
SCOPUS
KCI
Journal Title
Journal of the Architectural Institute of Korea
Volume
38
Number
5
Start Page
235
End Page
242
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/118367
DOI
10.5659/JAIK.2022.38.5.235
ISSN
2733-6239
2733-6247
Abstract
In this study, experiments with monotonic tensile loading have been performed to investigate the structural behaviors such as ultimate strength and fracture mode of double shear cold-formed carbon steel two-bolted connection and four-bolted connection with varied end distances for providing the basic data of domestic design specification draft for cold-formed carbon steel bolted connection. Main variables are bolt arrangement (2 columns × 1 row and 2 columns × 1 rows) and end distance parallel to the direction of applied load. Specimens with two bolts failed by block shear fracture. Four-bolted connection showed two types of fracture mode at test end such as block shear fracture and tensile net-section fracture at test end. Moreover, test ultimate strengths were compared with those by current design specifications (Korean Design Standard (KDS)/American Institute of Steel Construction (AISC), Eurocode 3 (EC3), Canadian Standards Association (CSA), American Iron and Steel Institute (AISI), Architectural Institute of Japan (AIJ) and strength equations suggested by previous studies for carbon steel bolted connection. © 2022 Architectural Institute of Korea.
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ERICA 공학대학 (MAJOR IN ARCHITECTURAL ENGINEERING)
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