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Investigation on Ultimate Strength of STS304L Stainless Steel Welded Connection with Base Metal Fracture Using Finite Element Analysis

Authors
Lee, HooChangKim, TaeSooHwang, BoKyungCho, TaeJun
Issue Date
Nov-2018
Publisher
한국강구조학회
Keywords
Austenitic stainless steel; Base metal fracture; Design code; Weld length; Welding direction
Citation
International Journal of STEEL STRUCTURES, v.18, no.4, pp 1139 - 1152
Pages
14
Indexed
SCIE
SCOPUS
KCI
Journal Title
International Journal of STEEL STRUCTURES
Volume
18
Number
4
Start Page
1139
End Page
1152
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/114228
DOI
10.1007/s13296-018-0072-4
ISSN
1598-2351
2093-6311
Abstract
Many studies on the application of stainless steels as structural materials in buildings and infra-structures have been performed thanks to superior characteristics of corrosion resistance, fire resistance and aesthetic appeal. Experimental investigation to estimate the ultimate strength and fracture mode of the fillet-welded connections of cold-formed austenitic stainless steel (STS304L) with better intergranular corrosion resistance than that of austenitic stainless steel, STS304 commonly used has carried out by authors. Specimens were fabricated to fail by base metal fracture not weld metal fracture with main variables of weld lengths according to loading direction. All specimens showed a block shear fracture mode. In this paper, finite element analysis model was developed to predict the ultimate behaviors of welded connection and its validity was verified through the comparison with test results. Since the block shear behavior of welded connection due to stress triaxiality and shear-lag effects is different from that of bolted connection, stress and strain distributions in the critical path of tensile and shear fracture section were investigated. Test and analysis strengths were compared with those by current design specifications such as AISC, EC3 and existing researcher’s proposed equations. In addition, through parametric analysis with extended variables, the conditions of end distance and longitudinal weld length for block shear fracture and tensile fracture were suggested. © 2018, Korean Society of Steel Construction.
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Kim, Tae Soo
ERICA 공학대학 (MAJOR IN ARCHITECTURAL ENGINEERING)
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