The most studies in the field of rolling contact fatigue and wear consider that these phenomenons are independent, but this paper shows strong coupling of both in the case, when ratcheting mechanism is the driving one. There is presented the application of semi-analytical approach, introduced by A. Mazzu [1], for two dimensional rolling contact case. The model is based on non-linear kinematic and isotropic hardening rule of Chaboche and Lemaitre [2]. Mazzu´s approach has been modified to correctly predict ratcheting and wear rate for different values of contact pressure. A correlation between the parameter L (yield stress) and the value of the maximum contact pressure p0 has been found. All performed simulations are based on rollin...
Rolling contact fatigue appears in many mechanical elements, in the presence of variable local loadi...
AbstractRolling contact fatigue initiation life of 1070 steel was predicted by the FE method with an...
A two-surface plasticity theory is used to predict ratcheting strain under multiaxial loading. A kin...
Presented paper deals with ratcheting prediction in the field of contact fatigue for the case of lin...
A model for plasticity assessment in rolling contact is introduced, aimed at simulating the effect o...
Residual stresses are a crucial matter regarding rolling contact fatigue, either for ratchetting and...
The paper presents a ratchetting model, based on the non-linear kinematic-isotropic hardening law of...
Knowledge of residual stresses is crucial in rolling contact fatigue, particularly when high cycle f...
Knowledge of residual stresses is crucial in rolling contact fatigue, particularly when high cycle f...
Knowledge of residual stresses is crucial in rolling contact fatigue, particularly when high cycle f...
Knowledge of residual stresses is crucial in rolling contact fatigue, particularly when high cycle f...
Railway rails accumulate severe plastic deformation at the surface as a result of loading by passing...
AbstractRolling contact fatigue initiation life of 1070 steel was predicted by the FE method with an...
In finite element (FE) simulations of a twin disc test of a wheel/rail contact, fatigue crack initia...
A re-interpretation of recent RCF experiments by Clayton and Su (C&S) [Wear 200 (1996) 63] under...
Rolling contact fatigue appears in many mechanical elements, in the presence of variable local loadi...
AbstractRolling contact fatigue initiation life of 1070 steel was predicted by the FE method with an...
A two-surface plasticity theory is used to predict ratcheting strain under multiaxial loading. A kin...
Presented paper deals with ratcheting prediction in the field of contact fatigue for the case of lin...
A model for plasticity assessment in rolling contact is introduced, aimed at simulating the effect o...
Residual stresses are a crucial matter regarding rolling contact fatigue, either for ratchetting and...
The paper presents a ratchetting model, based on the non-linear kinematic-isotropic hardening law of...
Knowledge of residual stresses is crucial in rolling contact fatigue, particularly when high cycle f...
Knowledge of residual stresses is crucial in rolling contact fatigue, particularly when high cycle f...
Knowledge of residual stresses is crucial in rolling contact fatigue, particularly when high cycle f...
Knowledge of residual stresses is crucial in rolling contact fatigue, particularly when high cycle f...
Railway rails accumulate severe plastic deformation at the surface as a result of loading by passing...
AbstractRolling contact fatigue initiation life of 1070 steel was predicted by the FE method with an...
In finite element (FE) simulations of a twin disc test of a wheel/rail contact, fatigue crack initia...
A re-interpretation of recent RCF experiments by Clayton and Su (C&S) [Wear 200 (1996) 63] under...
Rolling contact fatigue appears in many mechanical elements, in the presence of variable local loadi...
AbstractRolling contact fatigue initiation life of 1070 steel was predicted by the FE method with an...
A two-surface plasticity theory is used to predict ratcheting strain under multiaxial loading. A kin...