Block Shear Strength of Double-Lap Welded Connections in Mild Carbon Steel Plate

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초록

This paper presents experimental and numerical investigations related to the block shear mechanism of double-lap welded connections. The experiment investigation includes 36 specimens composed of 3.0 mm and 6.0 mm thick mild carbon steel SS275 plates with varying block lengths and widths. It is found that the tension fracture in block shear of welded connection tends to be curved along the critical plane. The numerical results shows that the stress triaxiality effect in increasing the tensile stress over the critical tension plane, and thus the tension resistance component increases. This paper also examines the accuracy of various block shear strength equations given in the design codes as well as the literature. Topkaya's equation is found to be significantly more accurate than other block shear strength equations for the tested specimens. Nonetheless, it is recommended to use the reduced tensile coefficient to ensure both safe margin and the accuracy.

키워드

Block shear fractureCarbon mild steelDouble-lap welded connectionNumerical simulationStress triaxialityBOLTED CONNECTIONSGUSSET PLATESFAILURE
제목
Block Shear Strength of Double-Lap Welded Connections in Mild Carbon Steel Plate
저자
Cho, YongHyunKim, TaeSooKim, JunSuLee, Dongkeun
DOI
10.1007/s13296-021-00541-7
발행일
2021-10
유형
정기학술지(Article(Perspective Article포함))
저널명
International Journal of STEEL STRUCTURES
21
5
페이지
1894 ~ 1909