Area of research
Mechanics of Materials · Statistics, Probability and Uncertainty
Research interest
Research focused on Frequency domain and Spectral density, with related work in Structural engineering, Finite element method, Perspective (graphical). Notable publications include 'Dirlik and Tovo-Benasciutti Spectral Methods in Vibration Fatigue: A Review with a Historical Perspective', 'Recent developments in frequency domain multi-axial fatigue analysis', and 'Analogies between spectral methods and multiaxial criteria in fatigue damage evaluation'.
Microstructure and mechanical properties of two quenched and tempered steels for industrial undercarriage track links: A preliminary comparison
Low cycle fatigue modelling of cellular materials produced by laser-powder bed fusion
On applying the Neuber's rule to spectral fatigue damage estimation under elasto-plastic strain
A probabilistic fatigue model based on nonlinear Kohout-Věchet function: Application to 42CrMo4+QT steel
Low cycle fatigue behaviour of cellular materials: Experimental comparative study of strut-based and gyroid structures made of additively manufactured 316L steel
A probabilistic stress-life model supported by weakest link principle and highly-stressed volume/surface area concepts
Strain‐controlled fatigue loading of an additively manufactured AISI 316L steel: Cyclic plasticity model and strain–life curve with a comparison to the wrought material
Experimental characterization and modelling of cyclic elastoplastic response of an AISI 316L steel lattice structure produced by laser-powder bed fusion
Editorial: Structural integrity and durability of engineering materials and components
Fatigue Analysis of Nonstationary Random Loadings Measured in an Industrial Vehicle Wheel: Uncertainty of Fatigue Damage
Evaluating size effects on fatigue life of 42CrMo4+QT steel using a statistical S-N model with highly-stressed volume and surface
Fracture, Fatigue, and Structural Integrity of Metallic Materials and Components Undergoing Random or Variable Amplitude Loadings
Evaluating Confidence Interval of Fatigue Damage from One Single Measured Non-stationary Time-History
Fracture, Fatigue, and Structural Integrity of Metallic Materials and Components Undergoing Random or Variable Amplitude Loadings
Cyclic Plasticity and Low-Cycle Fatigue of an AISI 316L Stainless Steel Tested at Room Temperature
Cluster Analysis in the Choice of Operating Modes in Durability Analysis of Random Time-History Records
Dirlik and Tovo-Benasciutti Spectral Methods in Vibration Fatigue: A Review with a Historical Perspective
An Overview of Fatigue Testing Systems for Metals under Uniaxial and Multiaxial Random Loadings
Cyclic Plasticity and Low Cycle Fatigue of an AISI 316L Stainless Steel: Experimental Evaluation of Material Parameters for Durability Design
Variance of the fatigue damage in non-Gaussian stochastic processes with narrow-band power spectrum
A frequency-domain model assessing random loading damage by the strain energy density parameter
Variance of fatigue damage in narrowband Gaussian random loadings: Exact solution and approximations
Corrigendum to “Variability of the fatigue damage due to the randomness of a stationary vibration load” [Int. J. Fatigue 141 (2020) 105891]
An algorithm for fast critical plane search in computer‐aided engineering durability analysis under multiaxial random loadings: Application to the Carpinteri–Spagnoli–Vantadori spectral method
Variability of the fatigue damage due to the randomness of a stationary vibration load
More on variance of fatigue damage in non-Gaussian random loadings – effect of skewness and kurtosis
Benchmarks for Accelerated Cyclic Plasticity Models with Finite Elements
Metal Plasticity and Fatigue at High Temperature
Comment on paper: A unified frequency domain fatigue damage modeling approach for random-on-random spectrum [Z. Li and A. Ince. Int J Fatigue, 2019;124:123–137]
Modeling the cyclic plasticity behavior of 42CrMo4 steel with an isotropic model calibrated on the whole shape of the evolution curve