TY - JOUR
T1 - In-plane compressive properties of assembled auxetic chiral honeycomb composed of slotted wave plate
AU - Zhang, Yi
AU - Ren, Xin
AU - Jiang, Wei
AU - Han, Dong
AU - Yu Zhang, Xiang
AU - Pan, Yang
AU - Min Xie, Yi
N1 - Publisher Copyright:
© 2022 The Authors
PY - 2022/9
Y1 - 2022/9
N2 - Auxetic metamaterials tend to be fabricated using additive manufacturing and laser cutting due to their special porous microstructures. Although the auxetic metamaterials have many applications currently, the high cost and the low efficiency of available manufacturing are adverse to expend their application range. In this work, the auxetic chiral honeycomb is assembled crosswise using the slotted wave plate. Effects of wave radius, plate thickness, slot percentage, and base material on the Poisson's ratio and mechanical performance are explored experimentally and numerically. The results show that assembled auxetic chiral honeycomb (AACH) exhibits lower peak force and high plateau stress than the conventional assembled one. With the increase of wave radius and plate thickness, the energy absorption (EA) and specific energy absorption (SEA) would increase. As for the different material combinations, when the base materials in vertical and horizontal wave plates adopt stainless steel and aluminum, respectively, the AACH would exhibit desirable EA, SEA, and auxetic behavior. These findings provide a new approach to the manufacture of auxetics at a low cost, which is beneficial for potential applications.
AB - Auxetic metamaterials tend to be fabricated using additive manufacturing and laser cutting due to their special porous microstructures. Although the auxetic metamaterials have many applications currently, the high cost and the low efficiency of available manufacturing are adverse to expend their application range. In this work, the auxetic chiral honeycomb is assembled crosswise using the slotted wave plate. Effects of wave radius, plate thickness, slot percentage, and base material on the Poisson's ratio and mechanical performance are explored experimentally and numerically. The results show that assembled auxetic chiral honeycomb (AACH) exhibits lower peak force and high plateau stress than the conventional assembled one. With the increase of wave radius and plate thickness, the energy absorption (EA) and specific energy absorption (SEA) would increase. As for the different material combinations, when the base materials in vertical and horizontal wave plates adopt stainless steel and aluminum, respectively, the AACH would exhibit desirable EA, SEA, and auxetic behavior. These findings provide a new approach to the manufacture of auxetics at a low cost, which is beneficial for potential applications.
KW - Assembled chiral honeycomb
KW - Auxetic
KW - Energy absorption
KW - Mechanical metamaterial
KW - Negative Poisson's ratio
UR - http://www.scopus.com/inward/record.url?scp=85134711662&partnerID=8YFLogxK
U2 - 10.1016/j.matdes.2022.110956
DO - 10.1016/j.matdes.2022.110956
M3 - 文章
AN - SCOPUS:85134711662
SN - 0264-1275
VL - 221
JO - Materials and Design
JF - Materials and Design
M1 - 110956
ER -