TY - JOUR
T1 - 3D Printing Holey-Column Metamaterial Structure Undergoing Tailorable Buckling Deformation of Local Instability
AU - Liu, Yuheng
AU - Shu, Dong Wei
AU - Lu, Haibao
AU - Tao, Ran
N1 - Publisher Copyright:
© 2023 World Scientific Publishing Europe Ltd.
PY - 2023/11/1
Y1 - 2023/11/1
N2 - 3D printing metamaterial structures have attracted extensive attentions, due to their multifunctional, programmable and tailorable mechanical behaviors. Currently, the buckling behaviors of irregular and non-uniform metamaterial structures have become a prominent challenge due to their unstable deformations. In this study, we designed a 3D printed metamaterial structure with tailorable buckling behaviors by means of viscoelastic materials and holey column structure. Effects of pore shapes, porosity, rotation angles, and temperature on the buckling modes and mechanical properties of metamaterial structures have been investigated using finite element analysis and experimental tests. Furthermore, the constitutive relationships among critical buckling stress, strain, pore shape, porosity and rotation angle have been formulated to explore the design principle of local instability in holey-column metamaterial structure towards tailorable buckling modes.
AB - 3D printing metamaterial structures have attracted extensive attentions, due to their multifunctional, programmable and tailorable mechanical behaviors. Currently, the buckling behaviors of irregular and non-uniform metamaterial structures have become a prominent challenge due to their unstable deformations. In this study, we designed a 3D printed metamaterial structure with tailorable buckling behaviors by means of viscoelastic materials and holey column structure. Effects of pore shapes, porosity, rotation angles, and temperature on the buckling modes and mechanical properties of metamaterial structures have been investigated using finite element analysis and experimental tests. Furthermore, the constitutive relationships among critical buckling stress, strain, pore shape, porosity and rotation angle have been formulated to explore the design principle of local instability in holey-column metamaterial structure towards tailorable buckling modes.
KW - 3D printing
KW - Metamaterial
KW - buckling
KW - local instability
UR - http://www.scopus.com/inward/record.url?scp=85169318182&partnerID=8YFLogxK
U2 - 10.1142/S1758825123500813
DO - 10.1142/S1758825123500813
M3 - Article
AN - SCOPUS:85169318182
SN - 1758-8251
VL - 15
JO - International Journal of Applied Mechanics
JF - International Journal of Applied Mechanics
IS - 9
M1 - 2350081
ER -