@inproceedings{9e68749996964f0392748f1344fedc72,
title = "Longitudinal shear modulus of honeycomb cores based on shear-compressive model",
abstract = "The deformation mechanism of unit cell wall is investigated by use of FEM, and the numerical simulation results show that the predominant deformations consist of shear deformation and compressive deformation. One new model based the shear deformation and the compressive deformation is put forward to investigate the longitudinal shear modulus of honeycomb cores. Owing to taking skin effect into consideration in our model, it is found that the equivalent shear modulus depends on not only the material properties and configuration parameters of cores, but also the material properties and configuration parameters of facesheets.",
keywords = "Honeycomb cores, Shear modulus, Shear-compressive model",
author = "Pan, \{Shi Dong\} and Zhou, \{Zhen Gong\} and Wu, \{Lin Zhi\}",
year = "2013",
doi = "10.4028/www.scientific.net/AMR.773.555",
language = "英语",
isbn = "9783037857908",
series = "Advanced Materials Research",
pages = "555--560",
booktitle = "Industrial Technologies for Sustainable Development",
note = "2013 International Conference on Materials for Renewable Energy and Environment, MREE 2013 ; Conference date: 15-05-2013 Through 16-05-2013",
}