AbstractA three-dimensional crack propagation simulation of a hollow cylinder undergoing coupled traction and torsion loading conditions is performed by the Dual Boundary Element Method (DBEM). The maximum tension load and torque are equal to 40 kN and 250 Nm respectively. Specimens, made of Al alloys B95AT and D16T, have been experimentally tested with in-phase constant amplitude loads. The Stress Intensity Factors (SIFs) along the front of an initial part through crack, initiated from the external surface of the hollow cylinder, are calculated by the J-integral approach. The crack path is evaluated by using the Minimum Strain Energy Density (MSED) criterion whereas the Paris’ law, calibrated for the material under analysis, is used to cal...
An edge crack propagation in a steel bar of circular cross-section undergoing multiaxial fatigue lo...
AbstractFatigue surface crack growth are studied through experiments and computations for aluminum a...
In this work, the fatigue crack-growth process in a rotating disk of an aircraft gas turbine engine ...
A three-dimensional crack propagation simulation of a hollow cylinder undergoing coupled traction an...
AbstractA three-dimensional crack propagation simulation of a hollow cylinder undergoing coupled tra...
AbstractThe main purpose of the research presented herein was to study the fatigue crack propagation...
AbstractThis paper presents a study aiming at characterizing the fatigue crack growth behaviour of t...
New generation jet engines are subject to severe reduced fuel consumption requirements. This usually...
A new generation of smaller and more efficient biaxial fatigue testing machines has arrived on the m...
Three-dimensional numerical analyses, using the finite element method (FEM), have been adopted to si...
AbstractThe time-dependent stress state of railway wheels leads to fatigue crack propagation in mixe...
AbstractFatigue crack propagation in railway wheels occurs under mixed mode (I-II) conditions, and f...
An edge crack propagation in a steel bar of circular cross-section undergoing multiaxial fatigue lo...
AbstractFatigue surface crack growth are studied through experiments and computations for aluminum a...
In this work, the fatigue crack-growth process in a rotating disk of an aircraft gas turbine engine ...
A three-dimensional crack propagation simulation of a hollow cylinder undergoing coupled traction an...
AbstractA three-dimensional crack propagation simulation of a hollow cylinder undergoing coupled tra...
AbstractThe main purpose of the research presented herein was to study the fatigue crack propagation...
AbstractThis paper presents a study aiming at characterizing the fatigue crack growth behaviour of t...
New generation jet engines are subject to severe reduced fuel consumption requirements. This usually...
A new generation of smaller and more efficient biaxial fatigue testing machines has arrived on the m...
Three-dimensional numerical analyses, using the finite element method (FEM), have been adopted to si...
AbstractThe time-dependent stress state of railway wheels leads to fatigue crack propagation in mixe...
AbstractFatigue crack propagation in railway wheels occurs under mixed mode (I-II) conditions, and f...
An edge crack propagation in a steel bar of circular cross-section undergoing multiaxial fatigue lo...
AbstractFatigue surface crack growth are studied through experiments and computations for aluminum a...
In this work, the fatigue crack-growth process in a rotating disk of an aircraft gas turbine engine ...