Research Group of Fatigue Fracture of Materials and Structures
Research Group of Fatigue Fracture of Materials and Structures
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Dydaktyka🇵🇱
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Filippo Berto
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Fatigue crack growth modelling by means of the strain energy density-based Huffman model considering the residual stress effect
Flexural analysis of GFRP/BFRP composite hybrid bars
The mechanical investigation of filament-wound composite cylinders subjected to axial compression
Application and discussion of various crack closure models to predict fatigue crack growth in 6061-T651 aluminium alloy
Evaluation of multiaxial high-cycle fatigue criteria under proportional loading for s355 steel
Fatigue strength assessment of riveted details in railway metallic bridges
Low-cycle fatigue modelling supported by strain energy density-based Huffman model considering the variability of dislocation density
Multiaxial fatigue assessment of S355 steel in the high-cycle region by using Susmel’s criterion
Influence of fillet end geometry on fatigue behaviour of welded joints
Kinetics of fatigue crack growth and crack closure effect in long term operating steel manufactured at the turn of the 19th and 20th centuries
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