TY - JOUR
T1 - Effects of contact friction and ply blocking on the crush behaviour of thin-walled composite structures
T2 - A numerical study
AU - Liu, Haibao
AU - Zhou, Jin
AU - Zhang, Di
AU - Li, Shipeng
AU - Giannopoulos, Ioannis
N1 - Publisher Copyright:
© 2022 The Author(s)
PY - 2023/1
Y1 - 2023/1
N2 - The present paper presents a three-dimensional composite damage model for predicting the crush response of thin-walled structures, i.e., cylindrical tubes, manufactured employing fibre-reinforced polymer–matrix composites. This computational model is based upon a Continuum Damage Mechanics (CDM) approach and accounts for both the intralaminar and interlaminar damage as well as nonlinear behaviour that occur in the composite materials. Experimental data, obtained from published literature, are employed to validate the proposed composite damage model. A comparison between the experimental and computationally predicted results, including the load response, energy absorption and damage morphology, shows good agreement. Subsequently, the validated computational model is employed to investigate the effects of contact friction and ply blocking on the crush response of thin-walled composite structures. The results reveal that the friction between the tube/platen surfaces has a positive effect on the crushing performance of the composite structures and the ply blocking can somehow inhibit the crushing performance of the investigated composite structures.
AB - The present paper presents a three-dimensional composite damage model for predicting the crush response of thin-walled structures, i.e., cylindrical tubes, manufactured employing fibre-reinforced polymer–matrix composites. This computational model is based upon a Continuum Damage Mechanics (CDM) approach and accounts for both the intralaminar and interlaminar damage as well as nonlinear behaviour that occur in the composite materials. Experimental data, obtained from published literature, are employed to validate the proposed composite damage model. A comparison between the experimental and computationally predicted results, including the load response, energy absorption and damage morphology, shows good agreement. Subsequently, the validated computational model is employed to investigate the effects of contact friction and ply blocking on the crush response of thin-walled composite structures. The results reveal that the friction between the tube/platen surfaces has a positive effect on the crushing performance of the composite structures and the ply blocking can somehow inhibit the crushing performance of the investigated composite structures.
KW - Computational mechanics
KW - Crashworthiness
KW - Damage mechanisms
KW - Energy absorption
KW - Thin-walled composite structures
UR - https://www.scopus.com/pages/publications/85140065484
U2 - 10.1016/j.tws.2022.110214
DO - 10.1016/j.tws.2022.110214
M3 - 文章
AN - SCOPUS:85140065484
SN - 0263-8231
VL - 182
JO - Thin-Walled Structures
JF - Thin-Walled Structures
M1 - 110214
ER -