Author/Authors :
Leonel Edson Denner نويسنده . , Oliveira Hugo luiz نويسنده School of Engineering of Sao Carlos, University of Sao Paulo, A
Abstract :
The present study aims at performing a
mechanical analysis of 2D viscoelastic cracked structural
materials using the Boundary Element Method (BEM). The
mesh dimensionality reduction provided by the BEM and
its accuracy in representing high gradient fields make this
numerical method robust to solve fracture mechanics
problems. Viscoelastic models address phenomena that
provide changes on the mechanical material properties
along time. Well-established viscoelastic models such as
Maxwell, Kelvin–Voigt and Boltzmann are used in this
study. The numerical viscoelastic scheme, which is based
on algebraic BEM equations, utilizes the Euler method for
time derivative evaluation. Therefore, the unknown variables
at the structural boundary and its variations along
time are determined through an ordinary linear system of
equations. Moreover, time-dependent boundary conditions
may be considered, which represent loading phases. The
dual BEM formulation is adopted for modelling the
mechanical structural behaviour of cracks bodies. Three
examples are considered to illustrate the robustness of the
adopted formulation. The results achieved by the BEM are
in good agreement with reported data and numerical stability
is observed.