TY - JOUR
T1 - Numerical investigation on stress concentration factors of square bird-beak SHS T-joints subject to axial forces
AU - Cheng, Bin
AU - Qian, Qin
AU - Zhao, Xiao Ling
N1 - Funding Information:
The present research was undertaken with support from the special project of Science and Technology Research and Development Plan funded by the Ministry of Railway of P.R.C. (No. J2011G002 ).
Publisher Copyright:
© 2015 Elsevier Ltd. All rights reserved.
PY - 2015/5/30
Y1 - 2015/5/30
N2 - This paper presents a numerical study on stress concentration square bird-beak square hollow section (SHS) welded joints. Both conventional and square bird-beak SHS joints considered have T-shapes and are simply supported at their chord ends. Refined finite element models are developed to obtain the strain/stress concentration factors (SNCFs/SCFs) of square bird-beak joints with various dimensions. The FE models are validated by comparing with the experimental data. The SNCF differences among considered hot spots are analyzed for the identification of critical locations. The influences of three major non-dimensional parameters, i.e., brace/chord width ratio β, chord wall slenderness ratio 2γ, and brace/chord wall thickness ratio τ, on the stress concentration factors (SCFs) of square bird-beak T-joints are revealed on the basis of numerous parametric studies. Comparisons of joint types are finally made. The results indicate that, in case of identical non-dimensional parameters, square bird-beak SHS T-joints provide SCFs smaller than conventional SHS T-joints in most occasions, especially when β is small; and SCFs of square bird-beak T-joints are expected to be lower than CHS T-joints with small β and large 2γ and τ.
AB - This paper presents a numerical study on stress concentration square bird-beak square hollow section (SHS) welded joints. Both conventional and square bird-beak SHS joints considered have T-shapes and are simply supported at their chord ends. Refined finite element models are developed to obtain the strain/stress concentration factors (SNCFs/SCFs) of square bird-beak joints with various dimensions. The FE models are validated by comparing with the experimental data. The SNCF differences among considered hot spots are analyzed for the identification of critical locations. The influences of three major non-dimensional parameters, i.e., brace/chord width ratio β, chord wall slenderness ratio 2γ, and brace/chord wall thickness ratio τ, on the stress concentration factors (SCFs) of square bird-beak T-joints are revealed on the basis of numerous parametric studies. Comparisons of joint types are finally made. The results indicate that, in case of identical non-dimensional parameters, square bird-beak SHS T-joints provide SCFs smaller than conventional SHS T-joints in most occasions, especially when β is small; and SCFs of square bird-beak T-joints are expected to be lower than CHS T-joints with small β and large 2γ and τ.
KW - Axial load
KW - Bird-beak joint
KW - Finite element analysis
KW - Hot spot stress
KW - Square hollow section
KW - Stress concentration factor
UR - http://www.scopus.com/inward/record.url?scp=84930202935&partnerID=8YFLogxK
U2 - 10.1016/j.tws.2015.05.003
DO - 10.1016/j.tws.2015.05.003
M3 - Journal article
AN - SCOPUS:84930202935
SN - 0263-8231
VL - 94
SP - 435
EP - 445
JO - Thin-Walled Structures
JF - Thin-Walled Structures
ER -