Residual Stress Effects on Fatigue Life Via the Stress Intensity Parameter, K

Residual Stress Effects on Fatigue Life Via the Stress Intensity Parameter, K PDF Author: Jeffrey L. Roberts
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description
Residual stresses are known to have a significant effect on fatigue crack propagation and thus fatigue life. These effects have generally been quantified through an empirical approach, lending little help in the quantitative prediction of such effects. The weight function method has been used as a quantitative predictor, but its use neglects residual stress redistribution, treating the residual stress as a constant during crack growth. At least three different behaviors contribute to the redistribution of residual stress. First, the residual stress behind the crack tip is reduced to a negligible level as soon as the crack tip passes. Second, the residual stress tends to redistribute away from the crack tip with crack growth, and third, crack growth results in an overall relaxation of residual stress. An alternative method for predicting the effect of a residual stress distribution on fatigue crack growth is herein developed. The stress intensity factor due to residual stress, K[subscript res], is characterized as the change in crack driving force due to the presence of the residual stress. This crack driving force, being the derivative of a potential, is found through superposition of an applied stress and a residual stress, and subsequent manipulation of finite element strain energy and nodal displacement results. Finite element modeling is carried out using a spatial distribution of non-uniform thermal expansion coefficients and a unit temperature load to simulate the desired residual stress. Crack growth is then achieved through use of a node release algorithm which sequentially removes nodal displacement constraint. The complete stress distribution, nodal displacements and internal strain energy are captured for each increment of crack growth, and from this information, knowledge of the stress intensity factor as a function of crack length is derived. Results of the K[subscript res] calculations are used in a fatigue crack growth model to predict fatigue lives. The fatigue life model involves step by step analysis of crack growth increment based on knowledge of stress intensity factors resulting from applied and residual stress. The qualitative effects of residual stress predicted by this model agree with documented empirical results which show that compressive residual stress increases fatigue life, while tensile residual stress decreases fatigue life. Two solutions for K[subscript res] are possible, depending on the choice of load-control or displacement-control modeling. Use of displacement-control, or fixed displacement loading, minimizes redistribution of residual stress and, under net tensile loading, tends to lead to more conservative fatigue life predictions. Load-control modeling, not having the same displacement constraint, allows more relaxation of the residual stress and tends to provide the more non-conservative life estimates. Three residual stress patterns, two due to welding and one to shot peening, are also investigated. K[subscript res] solutions for each residual stress are developed, and fatigue life predictions made.

Residual Stress Effects on Fatigue Life Via the Stress Intensity Parameter, K

Residual Stress Effects on Fatigue Life Via the Stress Intensity Parameter, K PDF Author: Jeffrey L. Roberts
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description
Residual stresses are known to have a significant effect on fatigue crack propagation and thus fatigue life. These effects have generally been quantified through an empirical approach, lending little help in the quantitative prediction of such effects. The weight function method has been used as a quantitative predictor, but its use neglects residual stress redistribution, treating the residual stress as a constant during crack growth. At least three different behaviors contribute to the redistribution of residual stress. First, the residual stress behind the crack tip is reduced to a negligible level as soon as the crack tip passes. Second, the residual stress tends to redistribute away from the crack tip with crack growth, and third, crack growth results in an overall relaxation of residual stress. An alternative method for predicting the effect of a residual stress distribution on fatigue crack growth is herein developed. The stress intensity factor due to residual stress, K[subscript res], is characterized as the change in crack driving force due to the presence of the residual stress. This crack driving force, being the derivative of a potential, is found through superposition of an applied stress and a residual stress, and subsequent manipulation of finite element strain energy and nodal displacement results. Finite element modeling is carried out using a spatial distribution of non-uniform thermal expansion coefficients and a unit temperature load to simulate the desired residual stress. Crack growth is then achieved through use of a node release algorithm which sequentially removes nodal displacement constraint. The complete stress distribution, nodal displacements and internal strain energy are captured for each increment of crack growth, and from this information, knowledge of the stress intensity factor as a function of crack length is derived. Results of the K[subscript res] calculations are used in a fatigue crack growth model to predict fatigue lives. The fatigue life model involves step by step analysis of crack growth increment based on knowledge of stress intensity factors resulting from applied and residual stress. The qualitative effects of residual stress predicted by this model agree with documented empirical results which show that compressive residual stress increases fatigue life, while tensile residual stress decreases fatigue life. Two solutions for K[subscript res] are possible, depending on the choice of load-control or displacement-control modeling. Use of displacement-control, or fixed displacement loading, minimizes redistribution of residual stress and, under net tensile loading, tends to lead to more conservative fatigue life predictions. Load-control modeling, not having the same displacement constraint, allows more relaxation of the residual stress and tends to provide the more non-conservative life estimates. Three residual stress patterns, two due to welding and one to shot peening, are also investigated. K[subscript res] solutions for each residual stress are developed, and fatigue life predictions made.

Residual Stress Effects in Fatigue

Residual Stress Effects in Fatigue PDF Author: J. F. Throop
Publisher: ASTM International
ISBN: 9780803107113
Category : Technology & Engineering
Languages : en
Pages : 252

Get Book Here

Book Description


Analytical and Experimental Methods for Residual Stress Effects in Fatigue

Analytical and Experimental Methods for Residual Stress Effects in Fatigue PDF Author: Robert L. Champoux
Publisher: ASTM International
ISBN: 0803111959
Category : Fatigue strength (Engineering materials).
Languages : en
Pages : 141

Get Book Here

Book Description


Residual Stress Effects in Fatigue

Residual Stress Effects in Fatigue PDF Author:
Publisher:
ISBN:
Category : Materials
Languages : en
Pages : 256

Get Book Here

Book Description


Residual Stress and Its Effects on Fatigue and Fracture

Residual Stress and Its Effects on Fatigue and Fracture PDF Author: Anastasius Youtsos
Publisher: Springer Science & Business Media
ISBN: 1402053290
Category : Technology & Engineering
Languages : en
Pages : 229

Get Book Here

Book Description
The contents of this book have been grouped into three topic areas covering theoretical /numerical and experimental analyses of residual stress and its effects on fatigue and fracture. It details recent advances on its title topics by leading European experts and contains theoretical/numerical studies of high value backed by sound experimental data. It also provides experimental studies based on novel and verifiable testing methods.

Residual Stress Effects in Fatigue

Residual Stress Effects in Fatigue PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description


The Influence of Residual Stresses on Fatigue

The Influence of Residual Stresses on Fatigue PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 219

Get Book Here

Book Description
A key aim of this work has been to provide an accurate estimation of component fatigue life under conditions of residual stress. An essential prerequisite for achieving such a goal is the ability to calculate the stress intensity factor for cracks under these conditions. Despite being a simple fracture mechanics problem, residual stresses exhibit several features which together mean that care must be taken during analysis. Established techniques have been successfully adapted to provide accurate stress intensity factors for a variety of problems of this type.

The Effect of Residual Stress on Fatigue Strength

The Effect of Residual Stress on Fatigue Strength PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description


Fatigue Life

Fatigue Life PDF Author: V. S. Goel
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 440

Get Book Here

Book Description


The Effect of Residual Stress on Fatigue Strength

The Effect of Residual Stress on Fatigue Strength PDF Author: E. J. Pattinson
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description