TY - JOUR
T1 - Comparative study of dynamically equivalent modeling methods for honeycomb sandwich structure
T2 - Numerical simulations and experiments
AU - Guo, Ning
AU - Chen, Hao
AU - Zhang, Zhong
AU - Du, Fei
AU - Xu, Chao
N1 - Publisher Copyright:
© 2020 Author(s).
PY - 2020/9/11
Y1 - 2020/9/11
N2 - The structure of the lightweight honeycomb sandwich panel is complex. Thus, establishing an equivalent simplified model is indispensable to improve the efficiency of the dynamic analysis of honeycomb sandwich panels. In this paper, three commonly used dynamically equivalent modeling methods for honeycomb sandwich panel are studied: a dynamically equivalent method based on laminated plate theory, a single-layer plate equivalent method based on the theory of Hoff (1948), and an improved equivalent method based on Allen (1969). Using theoretical study, numerical simulations, and experiments, the applicability of these equivalent methods and the effect of design parameters on the dynamic characteristics are studied, and the optimal dynamically equivalent method for honeycomb sandwich panels is obtained.
AB - The structure of the lightweight honeycomb sandwich panel is complex. Thus, establishing an equivalent simplified model is indispensable to improve the efficiency of the dynamic analysis of honeycomb sandwich panels. In this paper, three commonly used dynamically equivalent modeling methods for honeycomb sandwich panel are studied: a dynamically equivalent method based on laminated plate theory, a single-layer plate equivalent method based on the theory of Hoff (1948), and an improved equivalent method based on Allen (1969). Using theoretical study, numerical simulations, and experiments, the applicability of these equivalent methods and the effect of design parameters on the dynamic characteristics are studied, and the optimal dynamically equivalent method for honeycomb sandwich panels is obtained.
UR - http://www.scopus.com/inward/record.url?scp=85091855492&partnerID=8YFLogxK
U2 - 10.5194/ms-11-317-2020
DO - 10.5194/ms-11-317-2020
M3 - 文章
AN - SCOPUS:85091855492
SN - 2191-9151
VL - 11
SP - 317
EP - 328
JO - Mechanical Sciences
JF - Mechanical Sciences
IS - 2
ER -