论文标题

生长引起的横向各向同性高弹性材料的不稳定性

Growth-induced instabilities for transversely isotropic hyperelastic materials

论文作者

Altun, Cem, Gürses, Ercan, Dal, Hüsnü

论文摘要

这项工作着重于三维双层结构中的平面生长引起的不稳定性,即在兼容的底物上厚实的僵硬膜。使用五场Hu-Washizu型混合变分配方的不同范围的纤维刚度检查了生长引起的不稳定性。考虑了横向各向同性材料的准压缩和准Xinexensible限制。通过在自动化微分方程求解器平台Fenics上实现T2P0F0元素来解决一个数值示例。结果表明,波长和临界生长参数G通过增加沿刚性纤维方向获得的第一个不稳定性的纤维刚度而降低。纤维刚度对次要屈曲的影响很小,该屈曲垂直于纤维方向。对于一系列纤维刚度,还通过监测位移和能量来确定不稳定性的分叉点。研究了与不同纤维刚度不同范围的层的能量贡献。可以得出结论,主要屈曲开始时的能量释放机制主要是由于刚性膜层的各向同性和各向异性贡献。对于高纤维刚度,各向异性能量对第一个屈曲的影响比其他类型更为主导。然而,在继发性不稳定中,膜层的各向同性能成为主要的能量。这项研究的数值结果将有助于了解纤维刚度对双层系统的屈曲和屈曲后行为的影响。

This work focuses on planar growth-induced instabilities in three-dimensional bilayer structures, i.e., thick stiff film on a compliant substrate. Growth-induced instabilities are examined for a different range of fiber stiffness with a five-field Hu-Washizu type mixed variational formulation. The quasi-incompressible and quasiinextensible limits of transversely isotropic materials were considered. A numerical example was solved by implementing the T2P0F0 element on an automated differential equation solver platform, FEniCS. It was shown that both the wavelength and critical growth parameter g decrease by increasing the fiber stiffness for the first instability, which is obtained along the stiff fiber direction. The effect of the fiber stiffness is minor on the secondary buckling, which was observed perpendicular to the fiber direction. For a range of fiber stiffnesses, bifurcation points of instabilities were also determined by monitoring displacements and energies. The energy contributions of layerswith different ranges of fiber stiffnesses were examined. It is concluded that the energy release mechanism at the initiation of the primary buckling is mainly due to isotropic and anisotropic contributions of the stiff filmlayer. For high fiber stiffnesses, the effect of the anisotropic energy on the first buckling becomes more dominant over other types. However, in the secondary instability, the isotropic energy of the film layer becomes the dominant one. Numerical outcomes of this study will help to understand the fiber stiffness effect on the buckling and post-buckling behavior of bilayer systems.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源