The investigation of fatigue strength of lotus-type structure with nodular cast iron as a base material using computational model is analysed in present study. The irregular pores distribution in transversal and longitudinal direction, regarding the external loading, is considered in the computational models. The complete fatigue process of analyzed porous structure is then divided into the crack initiation (Ni) and crack propagation (Np) period where the total fatigue life (N) is defined as: N = Ni + Np. The crack initiation period is determined using strain life approach where elastic-plastic numerical analysis is performed to obtain the total strain amplitude in the critical stress fields around the pores. The simplified universal slope ...
Nowadays cast iron components are widely used in highly stressed structures. Component lifetime is s...
Ductile iron discovery in 1948 gave a new lease on life to the cast iron family. In fact, these cast...
The theory describing the fatigue mechanism in elasto-plastic material containing pores or inclusio...
The investigation of fatigue strength of lotus-type structure with nodular cast iron as a base mater...
The objective of this paper is to analyse fatigue strength behaviour of lotus-type structure with no...
The investigation of low-cycle fatigue behaviour of lotus-type porous material is presented in this ...
The investigation of low-cycle fatigue behaviour of lotus-type porous material is presented in this ...
A computational simulation of low-cycle fatigue behaviour of lotus-type porous material, subjected t...
The aim of this work is to propose an engineering procedure to simulate the fatigue strength of ferr...
This work focusses on the problem of predicting the fatigue strength of engineering components where...
Elastic-plastic porous materials experience an increase in the mean void volume fraction when they a...
This paper deals with the fatigue assessment of cast steel defects in terms of macroscopic shrinkage...
Fatigue cracking in the cement mantle of total hip replacement has been identified as a possible cau...
The morphology of the fatigue crack in nodular cast iron has great influence on the material perform...
The pores in pressed and sintered components constitute weak points in the material since the stress...
Nowadays cast iron components are widely used in highly stressed structures. Component lifetime is s...
Ductile iron discovery in 1948 gave a new lease on life to the cast iron family. In fact, these cast...
The theory describing the fatigue mechanism in elasto-plastic material containing pores or inclusio...
The investigation of fatigue strength of lotus-type structure with nodular cast iron as a base mater...
The objective of this paper is to analyse fatigue strength behaviour of lotus-type structure with no...
The investigation of low-cycle fatigue behaviour of lotus-type porous material is presented in this ...
The investigation of low-cycle fatigue behaviour of lotus-type porous material is presented in this ...
A computational simulation of low-cycle fatigue behaviour of lotus-type porous material, subjected t...
The aim of this work is to propose an engineering procedure to simulate the fatigue strength of ferr...
This work focusses on the problem of predicting the fatigue strength of engineering components where...
Elastic-plastic porous materials experience an increase in the mean void volume fraction when they a...
This paper deals with the fatigue assessment of cast steel defects in terms of macroscopic shrinkage...
Fatigue cracking in the cement mantle of total hip replacement has been identified as a possible cau...
The morphology of the fatigue crack in nodular cast iron has great influence on the material perform...
The pores in pressed and sintered components constitute weak points in the material since the stress...
Nowadays cast iron components are widely used in highly stressed structures. Component lifetime is s...
Ductile iron discovery in 1948 gave a new lease on life to the cast iron family. In fact, these cast...
The theory describing the fatigue mechanism in elasto-plastic material containing pores or inclusio...