The phase field fracture method is attracting significant interest. Phase field approaches have enabled predicting-on arbitrary geometries and dimensions-complex fracture …
Thermally induced cracking occurs in many engineering problems such as drying shrinkage cracking of concrete, thermal shock induced fracture, micro cracking of two-phase composite …
BB Yin, WK Sun, Y Zhang, KM Liew - Computer Methods in Applied …, 2023 - Elsevier
Hyperelastic materials are frequently observed in the natural world and engineering applications such as rubbers and animal soft tissues. Modeling large deformation and …
Fracture of composites consisting of isotropic matrix and anisotropic fibers is an essential problem in many engineering applications. The computational simulation of such a fracture …
Pre-existing flaws in highly stretchable elastomers trigger fracture under large deformations. For multifunctional materials, fracture mechanics may be influenced by additional physical …
C Xing, T Yu, Y Sun, Y Wang - Engineering Fracture Mechanics, 2023 - Elsevier
In this work, an adaptive phase-field method is proposed for modeling fracture of hyperelastic materials at large deformations. The adaptive mesh refinement is facilitated by …
We develop a fully data-driven model of anisotropic finite viscoelasticity using neural ordinary differential equations as building blocks. We replace the Helmholtz free energy …
Phase-field damage models are able to describe crack nucleation as well as crack propagation and coalescence without additional technicalities, because cracks are treated …
Elastomers are typically considered incompressible or slightly compressible. However, we present simple tension and bulk tests showing that, under large deformations, these …