TY - JOUR
T1 - Structural design and tunable mechanical properties of novel corrugated 3D lattice metamaterials by geometric tailoring
AU - Zhang, Hang
AU - Lin, Gaojian
AU - Sun, Weifu
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2023/3
Y1 - 2023/3
N2 - In this work, a novel corrugated 3D lattice metamaterial with stable mechanical response and deformation behavior was constructed by geometric tailoring. Through quasi-static compression experiments and finite element simulations, the effect of cell number, scaling factor and gradient design methods are systematically studied. Using specific energy absorption (SEA), plateau stress and densification strain as energy absorption indicators, the effects of various factors on the energy absorption performance of corrugated lattice metamaterials were evaluated. The results demonstrate that the proposed corrugated lattice has stable mechanical response and ideal energy absorption performance due to the stable deformation behavior. In addition, the scaling of the corrugated lattice unit cells can trim the lattice mechanical indicators. Furthermore, the continuous interface is effective for realizing controllable mechanical response and tunable energy absorption performance of gradient lattice metamaterials.
AB - In this work, a novel corrugated 3D lattice metamaterial with stable mechanical response and deformation behavior was constructed by geometric tailoring. Through quasi-static compression experiments and finite element simulations, the effect of cell number, scaling factor and gradient design methods are systematically studied. Using specific energy absorption (SEA), plateau stress and densification strain as energy absorption indicators, the effects of various factors on the energy absorption performance of corrugated lattice metamaterials were evaluated. The results demonstrate that the proposed corrugated lattice has stable mechanical response and ideal energy absorption performance due to the stable deformation behavior. In addition, the scaling of the corrugated lattice unit cells can trim the lattice mechanical indicators. Furthermore, the continuous interface is effective for realizing controllable mechanical response and tunable energy absorption performance of gradient lattice metamaterials.
KW - Energy absorption
KW - Gradient lattice
KW - Lightweight structure
KW - Mechanical metamaterials
KW - Structural design
UR - http://www.scopus.com/inward/record.url?scp=85145252788&partnerID=8YFLogxK
U2 - 10.1016/j.tws.2022.110495
DO - 10.1016/j.tws.2022.110495
M3 - Article
AN - SCOPUS:85145252788
SN - 0263-8231
VL - 184
JO - Thin-Walled Structures
JF - Thin-Walled Structures
M1 - 110495
ER -