Artículos de revistas
Fourth order phase-field model for local max-ent approximants applied to crack propagation
Fecha
2016-12Registro en:
Amiri, Fatemeh; Millán, Raúl Daniel; Arroyo, Marino; Silani, Mohammad; Rabczuk, Timon; Fourth order phase-field model for local max-ent approximants applied to crack propagation; Elsevier Science Sa; Computer Methods in Applied Mechanics and Engineering; 312; 12-2016; 254-275
0045-7825
CONICET Digital
CONICET
Autor
Amiri, Fatemeh
Millán, Raúl Daniel
Arroyo, Marino
Silani, Mohammad
Rabczuk, Timon
Resumen
We apply a fourth order phase-field model for fracture based on local maximum entropy (LME) approximants. The higher order continuity of the meshfree LME approximants allows to directly solve the fourth order phase-field equations without splitting the fourth order differential equation into two second order differential equations. We will first show that the crack surface can be captured more accurately in the fourth order model. Furthermore, less nodes are needed for the fourth order model to resolve the crack path. Finally, we demonstrate the performance of the proposed meshfree fourth order phase-field formulation for 5 representative numerical examples. Computational results will be compared to analytical solutions within linear elastic fracture mechanics and experimental data for three-dimensional crack propagation.