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Block Shear Strength Estimation of STS304L Stainless Steel Fillet-Welded Connection with Base Metal Fracture오스테나이트계 스테인리스강(STS304L) 필릿 용접접합부의 모재블록전단파단강도의 내력평가

Other Titles
오스테나이트계 스테인리스강(STS304L) 필릿 용접접합부의 모재블록전단파단강도의 내력평가
Authors
Lee, Hoo ChangHwang, Bo KyungKim, Tae Soo
Issue Date
Jun-2018
Publisher
한국정밀공학회
Keywords
Austenitic stainless steel; Base metal fracture; Block shear; Design specification; Weld length; 오스테나이트계 스테인리스강; 용접길이; 모재파단; 블록전단; 설계기준
Citation
Journal of the Korean Society for Precision Engineering, v.35, no.6, pp 615 - 621
Pages
7
Indexed
SCOPUS
KCI
Journal Title
Journal of the Korean Society for Precision Engineering
Volume
35
Number
6
Start Page
615
End Page
621
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/114234
DOI
10.7736/KSPE.2018.35.6.615
ISSN
1225-9071
2287-8769
Abstract
Recently, the use of stainless steels have been increased steadily as a sustainable structural material in infrastructures and thanks to its superior corrosion resistance, fire resistance and ductility compared with those of carbon steels. In this paper, block shear fracture behaviors in base metal of fillet-welded connection fabricated with austenitic stainless steel (STS304L) were investigated through monotonic tensile test. Main variables are weld lengths in the longitudinal and the transverse directions of applied force. Gas tungsten arc welding (GTAW) which is also known as tungsten inert gas (TIG) welding was chosen to join two metals. As a result, test specimens failed by typical block shear fracture (the combination of tensile fracture and shear-out fracture) in base steel. With the increase of two weld lengths, the ultimate strengths of specimens tended to get higher. Block shear fracture strengths predicted by current design specifications and existing proposed equations for welded connections were compared with those of test results. It is found that the discrepancy of strength prediction resulted from the effect of stress triaxiality on welded connections and the difference of material properties with carbon steel. Therefore, modified block shear fracture equation was suggested in this paper. Copyright © The Korean Society for Precision Engineering.
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Kim, Tae Soo
ERICA 공학대학 (MAJOR IN ARCHITECTURAL ENGINEERING)
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