TY - JOUR
T1 - Built-up battened steel columns under impact loading
T2 - Experimental and numerical analysis
AU - Cui, Juanling
AU - Wang, Rui
AU - Zhao, Hui
AU - Hou, Chuan Chuan
AU - Hu, Wenwei
N1 - Publisher Copyright:
© 2020 Elsevier Ltd
PY - 2021/4
Y1 - 2021/4
N2 - In this work, experimental and numerical investigations are employed to examine the performance of the built-up battened steel columns under lateral impact load. The columns consist of four equal angle sections connected using batten plates. Drop-hammer impact tests were performed on six specimens, in which 3 impact energies were employed. Modes of failure, impact force-time histories and permanent deformations were obtained in the test. Subsequently, finite element (FE) models were established using ABAQUS, in which the strain-rate effects of steel material and initial global imperfections were considered. In addition, the validated FE models were utilized to analyze the whole dynamic response and investigate the influences of key parameters, including the impact energy, impact location, boundary condition and axial-load level etc., on the impact behaviour. A further discussion on the non-dimensional parameter of the energy absorption capacity (EAC) was conducted to qualify the behaviour of the built-up battened steel columns under impact load.
AB - In this work, experimental and numerical investigations are employed to examine the performance of the built-up battened steel columns under lateral impact load. The columns consist of four equal angle sections connected using batten plates. Drop-hammer impact tests were performed on six specimens, in which 3 impact energies were employed. Modes of failure, impact force-time histories and permanent deformations were obtained in the test. Subsequently, finite element (FE) models were established using ABAQUS, in which the strain-rate effects of steel material and initial global imperfections were considered. In addition, the validated FE models were utilized to analyze the whole dynamic response and investigate the influences of key parameters, including the impact energy, impact location, boundary condition and axial-load level etc., on the impact behaviour. A further discussion on the non-dimensional parameter of the energy absorption capacity (EAC) was conducted to qualify the behaviour of the built-up battened steel columns under impact load.
KW - Built-up battened steel
KW - Dynamic response
KW - Failure modes
KW - Finite element (FE) modeling
KW - Lateral impact
UR - https://www.scopus.com/pages/publications/85099714413
U2 - 10.1016/j.jcsr.2020.106515
DO - 10.1016/j.jcsr.2020.106515
M3 - 文章
AN - SCOPUS:85099714413
SN - 0143-974X
VL - 179
JO - Journal of Constructional Steel Research
JF - Journal of Constructional Steel Research
M1 - 106515
ER -