The objective of this work is to study the effects of contact parameters on the cracking parameters of a specimen and a pad assembly. These parameters have been studied and evaluated by the finite element method analysis in two dimensions fretting fatigue model through the Abaqus calculation code. Different values of the coefficient of friction of 0.1, 0.3 and 0.6 were applied on the various lengths in contact for a = 0.1, 0.5 and 1mm. Thus, on the various values of angle of orientation of the crack equal to 15 °, 30 ° and 45 °. In addition, elements of the type (CPE4R) and the criterion of maximum tangential stress were applied. The curves of the crack parameters such as the SIF coefficients and the integral J were obtained and discuss...
This paper studies the contact mechanics in a line contact during fretting fatigue conditions. In li...
Fretting is the micrometer-level relative movement between contacting surfaces that can lead to fret...
International audienceA 2D X-FEM/LATIN numerical model (eXtended Finite Element Method/Large Time In...
The objective of this work is to study the effects of contact parameters on the cracking parameters ...
Fretting fatigue is a consequence of small oscillatory movement between two contacting parts. This ...
Fretting fatigue is a phenomenon, in which two contact surfaces undergo a small relative oscillatory...
The stress field that results from two bodies in contact is an important aspect that governs the fre...
A numerical model for the calculation of fretting fatigue crack initiation in smooth elastic contact...
Fretting fatigue is a type of failure that may affect various mechanical components, such as bolted ...
AbstractA 2D X-FEM/LATIN numerical model (eXtended Finite Element Method/Large Time Increment method...
Fretting is a term covering a wide array of physical phenomena. When contacting bodies vibrate, rela...
This paper analyses the influence that the type of geometry used to obtain the stress/strain fields ...
This paper summarises the research carried out to develop Finite Element (FE) modelling and predict...
In this work, the orientation and propagation of a crack in a fretting fatigue problem is analyzed n...
International audienceIn this work, the finite elements method (FEM) is used to analyse the growth o...
This paper studies the contact mechanics in a line contact during fretting fatigue conditions. In li...
Fretting is the micrometer-level relative movement between contacting surfaces that can lead to fret...
International audienceA 2D X-FEM/LATIN numerical model (eXtended Finite Element Method/Large Time In...
The objective of this work is to study the effects of contact parameters on the cracking parameters ...
Fretting fatigue is a consequence of small oscillatory movement between two contacting parts. This ...
Fretting fatigue is a phenomenon, in which two contact surfaces undergo a small relative oscillatory...
The stress field that results from two bodies in contact is an important aspect that governs the fre...
A numerical model for the calculation of fretting fatigue crack initiation in smooth elastic contact...
Fretting fatigue is a type of failure that may affect various mechanical components, such as bolted ...
AbstractA 2D X-FEM/LATIN numerical model (eXtended Finite Element Method/Large Time Increment method...
Fretting is a term covering a wide array of physical phenomena. When contacting bodies vibrate, rela...
This paper analyses the influence that the type of geometry used to obtain the stress/strain fields ...
This paper summarises the research carried out to develop Finite Element (FE) modelling and predict...
In this work, the orientation and propagation of a crack in a fretting fatigue problem is analyzed n...
International audienceIn this work, the finite elements method (FEM) is used to analyse the growth o...
This paper studies the contact mechanics in a line contact during fretting fatigue conditions. In li...
Fretting is the micrometer-level relative movement between contacting surfaces that can lead to fret...
International audienceA 2D X-FEM/LATIN numerical model (eXtended Finite Element Method/Large Time In...