TY - JOUR
T1 - Adjustable indentation and vibration isolation performances of nacre-like metamaterial
AU - Zhang, Shushan
AU - Jiang, Peng
AU - Qi, Jixiang
AU - Chen, Ganchao
AU - Wang, Yonghuan
AU - Tao, Ran
AU - Chen, Zhaoyue
AU - Li, Ying
N1 - Publisher Copyright:
© 2023 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.
PY - 2023
Y1 - 2023
N2 - Along with the living environment, organisms have evolved structures that adapt to specific environments and have better mechanical properties. Bioinspired materials learn from nature and improve their mechanical properties by imitating the structure of living organisms. Based on the 4D printed shape memory polymer and the bioinspired design method, this research proposes a soft and hard phase hybrid bioinspired metamaterial with shape memory effect and programmable mechanical properties. Compared with traditional nacre-like materials, bioinspired materials have adjustable characteristics of mechanical properties, impact resistance, and low-frequency vibration isolation. First, based on the constitutive relation of SMP (Shape memory polymer) material and its numerical simulation, an intelligent bioinspired metamaterial is designed. Subsequently, the mechanical properties and vibration isolation behavior and adjustability performance of multi-scale bioinspired metamaterials are explained by experiments. Finally, the adjustable functional mechanism of the deformation and vibration isolation of the bioinspired metamaterial is described. The research of these bioinspired metamaterials has broad application prospects in the fields of impact protection and low-frequency vibration absorption.
AB - Along with the living environment, organisms have evolved structures that adapt to specific environments and have better mechanical properties. Bioinspired materials learn from nature and improve their mechanical properties by imitating the structure of living organisms. Based on the 4D printed shape memory polymer and the bioinspired design method, this research proposes a soft and hard phase hybrid bioinspired metamaterial with shape memory effect and programmable mechanical properties. Compared with traditional nacre-like materials, bioinspired materials have adjustable characteristics of mechanical properties, impact resistance, and low-frequency vibration isolation. First, based on the constitutive relation of SMP (Shape memory polymer) material and its numerical simulation, an intelligent bioinspired metamaterial is designed. Subsequently, the mechanical properties and vibration isolation behavior and adjustability performance of multi-scale bioinspired metamaterials are explained by experiments. Finally, the adjustable functional mechanism of the deformation and vibration isolation of the bioinspired metamaterial is described. The research of these bioinspired metamaterials has broad application prospects in the fields of impact protection and low-frequency vibration absorption.
KW - 4D printed
KW - Indentation properties vibration isolation
KW - Nacre-like metamaterial
KW - Shape memory effect
UR - http://www.scopus.com/inward/record.url?scp=85163067932&partnerID=8YFLogxK
U2 - 10.1080/19475411.2023.2221668
DO - 10.1080/19475411.2023.2221668
M3 - Article
AN - SCOPUS:85163067932
SN - 1947-5411
VL - 14
SP - 303
EP - 320
JO - International Journal of Smart and Nano Materials
JF - International Journal of Smart and Nano Materials
IS - 3
ER -