AbstractThis paper aims at estimating the low-cycle and high-cycle fatigue life of a turbocharged Diesel engine exhaust manifold. First, a decoupled thermo-structural Finite Element analysis has been performed to investigate low-cycle fatigue phenomena due to the thermal loadings applied to the exhaust manifold. High/low temperature cycles causes stress-strain hysteresis loops in the manifold material whose related dissipated energy can be directly correlated to low-cycle thermal fatigue. Afterwards, a dynamic harmonic analysis has been performed aiming at investigating the existence of high-cycle fatigue phenomena due to vibrational loading applied to the exhaust manifold during the duty cycle. Three direction acceleration experimental loa...
International audienceThis paper deals with the computational modeling of the high cycle fatigue of ...
In the same context of thermo-mechanical fatigue and high temperature applications of stainless stee...
In this paper thermomechanical fatigue assessment in the automotive industry is discussed. The desig...
AbstractThis paper aims at estimating the low-cycle and high-cycle fatigue life of a turbocharged Di...
This paper aims at estimating the low-cycle and high-cycle fatigue life of a turbocharged Diesel eng...
This contribution presents a methodology for the structural analysis of the exhaust manifold of an i...
The following paper presents a detailed description of a thermo-mechanical analysis method of an exh...
AbstractSome mechanical components are subjected to thermo-mechanical fatigue, which occurs when bot...
National audienceStainless steel grades are now widely used for automotive exhaust systems, in order...
The effect of perimeter fins on the thermal stress and High Cycle Fatigue (HCF) life in an exhaust m...
In this work a numerical method for the design of components submitted to severe cyclic thermomechan...
The performance and reliability of an internal combustion engine depend on the robustness of the eng...
Exhaust manifold is a main heated component of engine,which has poor working conditions. High levels...
This paper presents a global approach to the design of structures that experience thermomechanical f...
International audienceThis paper deals with the computational modeling of the high cycle fatigue of ...
In the same context of thermo-mechanical fatigue and high temperature applications of stainless stee...
In this paper thermomechanical fatigue assessment in the automotive industry is discussed. The desig...
AbstractThis paper aims at estimating the low-cycle and high-cycle fatigue life of a turbocharged Di...
This paper aims at estimating the low-cycle and high-cycle fatigue life of a turbocharged Diesel eng...
This contribution presents a methodology for the structural analysis of the exhaust manifold of an i...
The following paper presents a detailed description of a thermo-mechanical analysis method of an exh...
AbstractSome mechanical components are subjected to thermo-mechanical fatigue, which occurs when bot...
National audienceStainless steel grades are now widely used for automotive exhaust systems, in order...
The effect of perimeter fins on the thermal stress and High Cycle Fatigue (HCF) life in an exhaust m...
In this work a numerical method for the design of components submitted to severe cyclic thermomechan...
The performance and reliability of an internal combustion engine depend on the robustness of the eng...
Exhaust manifold is a main heated component of engine,which has poor working conditions. High levels...
This paper presents a global approach to the design of structures that experience thermomechanical f...
International audienceThis paper deals with the computational modeling of the high cycle fatigue of ...
In the same context of thermo-mechanical fatigue and high temperature applications of stainless stee...
In this paper thermomechanical fatigue assessment in the automotive industry is discussed. The desig...