The present paper discusses the formulation of weight functions for inclined edge cracks in finite width plates, typical of Rolling Contact Fatigue defects, to obtain the Stress Intensity Factor and the T-stress. Because the weight functions do not depend on the load and boundary conditions, their use is convenient to study cracks subjected to complex stress fields, e.g. fretting fatigue and rolling contact fatigue, since the stress field is calculated for the uncracked geometry. In this work, the weight functions are derived for both mode-I and mode-II of loading using the finite element method
Surface cracks represent a frequent cause of damage and even failure in rolling contacts, observed i...
The matrix-like structure of the Weight Function (WF) for determining the Stress Intensity Factors (...
Weight functions for any local point, 0 < Φ < π/2 along a semi-elliptical surface crack in finite th...
The present paper discusses the formulation of weight functions for inclined edge cracks in finite w...
The present paper discusses the formulation of weight functions for inclined edge cracks in finite w...
The present paper discusses the formulation of weight functions for inclined edge cracks in finite w...
The present paper discusses the formulation of weight functions for inclined edge cracks in finite w...
The present paper discusses the estimation of the stress state of Rolling Contact Fatigue (RCF) crac...
The present paper discusses the estimation of the stress state of Rolling Contact Fatigue (RCF) crac...
The present paper discusses the estimation of the stress state of Rolling Contact Fatigue (RCF) crac...
The present paper discusses the estimation of the stress state of Rolling Contact Fatigue (RCF) crac...
This paper presents the application of the weight function method for the calculation of elastic T-s...
This paper presents the application of the weight function method for the calculation of stress inte...
The Green Functions, giving the Crack Opening Displacement components of an inclined edge crack unde...
A general method for evaluating the Stress Intensity Factors of an inclined edge crack originated at...
Surface cracks represent a frequent cause of damage and even failure in rolling contacts, observed i...
The matrix-like structure of the Weight Function (WF) for determining the Stress Intensity Factors (...
Weight functions for any local point, 0 < Φ < π/2 along a semi-elliptical surface crack in finite th...
The present paper discusses the formulation of weight functions for inclined edge cracks in finite w...
The present paper discusses the formulation of weight functions for inclined edge cracks in finite w...
The present paper discusses the formulation of weight functions for inclined edge cracks in finite w...
The present paper discusses the formulation of weight functions for inclined edge cracks in finite w...
The present paper discusses the estimation of the stress state of Rolling Contact Fatigue (RCF) crac...
The present paper discusses the estimation of the stress state of Rolling Contact Fatigue (RCF) crac...
The present paper discusses the estimation of the stress state of Rolling Contact Fatigue (RCF) crac...
The present paper discusses the estimation of the stress state of Rolling Contact Fatigue (RCF) crac...
This paper presents the application of the weight function method for the calculation of elastic T-s...
This paper presents the application of the weight function method for the calculation of stress inte...
The Green Functions, giving the Crack Opening Displacement components of an inclined edge crack unde...
A general method for evaluating the Stress Intensity Factors of an inclined edge crack originated at...
Surface cracks represent a frequent cause of damage and even failure in rolling contacts, observed i...
The matrix-like structure of the Weight Function (WF) for determining the Stress Intensity Factors (...
Weight functions for any local point, 0 < Φ < π/2 along a semi-elliptical surface crack in finite th...