dr inż. Konrad Dadej
Dyscyplina:
inżynieria materiałowa
inżynieria mechaniczna
Artykuły z 2021 (2)
1. Short-beam shear fatigue life assessment of thermally cycled carbon–aluminium laminates with protective glass interlayers / Barbara Surowska, Konrad Dadej, Patryk Jakubczak, Jarosław Bieniaś // Archives of Civil and Mechanical Engineering.- 2021, vol. 21, nr 2, s. 1-11 [MNiSW: 140]
2. The role of non-linear material constitutive behaviour in modeling of fatigue crack growth of laminated plates / Konrad Dadej, Jarosław Bieniaś // Composite Structures.- 2021, vol. 267, s. 1-13 [MNiSW: 140]
Artykuły z 2020 (5)
1. Experimental and numerical investigation into the impact resistance of aluminium carbon laminates / Patryk Jakubczak, Jarosław Bieniaś, Konrad Dadej // Composite Structures.- 2020, vol. 244, s. 1-11 [MNiSW: 140]
2. Experimental Testing and Analytical Modeling of Asymmetric End-Notched Flexure Tests on Glass-Fiber Metal Laminates / Konrad Dadej, Jarosław Bieniaś and Paolo S. Valvo // Metals.- 2020, vol. 10, nr 1, s. 1-17 [MNiSW: 70]
3. Fatigue delamination growth of carbon and glass reinforcedfiber metallaminates in fracture mode II / Jarosław Bieniaś, Konrad Dadej // International Journal of Fatigue.- 2020, vol. 130, s. 1-11 [MNiSW: 140]
4. On fatigue stress-cycle curves of carbon, glass and hybrid carbon/glass-reinforced fibre metal laminates / Konrad Dadej, Jarosław Bieniaś // International Journal of Fatigue.- 2020, vol. 140, s. 1-14 [MNiSW: 140]
5. The Effect of Transverse Shear in Symmetric and Asymmetric End Notch Flexure Tests–Analytical and Numerical Modeling / Konrad Dadej, Paolo S. Valvo and Jarosław Bieniaś // Materials.- 2020, vol. 13, nr 14, s. 1-27 [MNiSW: 140]
Artykuły z 2019 (1)
1. On the effect of glass and carbon fiber hybridization in fiber metal laminates: analytical, numerical and experimental investigation / Konrad Dadej, Jarosław Bieniaś, Barbara Surowska // Composite Structures.- 2019, vol. 220, s. 250-260 [MNiSW: 140]
Artykuły z 2018 (2)
1. Isostrain elastoplastic model for prediction of static strength and fatigue life of fiber metal laminates / Konrad Dadej, Barbara Surowska, Jarosław Bieniaś // International Journal of Fatigue.- 2018, vol. 110, s. 31-41 [MNiSW: 40]
2. Numerical/phenomenological model for fatigue life prediction of hybrid laminates / Konrad Dadej, Barbara Surowska, Jarosław Bieniaś // AIP Conference Proceedings.- 2018, vol. 1922, nr 1, s. 1-7 [MNiSW: 15]
Artykuły z 2017 (3)
1. Interlaminar cracking resistance of nonhomogeneous composite beams / Konrad Dadej, Jarosław Bieniaś, Barbara Surowska // Composites Theory and Practice.- 2017, vol. 17, nr 3, s. 144-148 [MNiSW: 11]
2. Interlaminar fracture toughness of glass and carbon reinforced multidirectional fiber metal laminates / Jarosław Bieniaś, Konrad Dadej, Barbara Surowska // Engineering Fracture Mechanics.- 2017, vol. 175, s. 127-145 [MNiSW: 35]
3. Residual fatigue life of carbon fibre aluminium laminates / Konrad Dadej, Jarosław Bieniaś, Barbara Surowska // International Journal of Fatigue.- 2017, vol. 100, nr Pt 1, s. 94-104 [MNiSW: 40]
Artykuły z 2016 (2)
1. Analysis of cohesive zone model parameters on response of glass-epoxy composite in Mode II interlaminar fracture toughness test / Konrad Dadej, Barbara Surowska // Composites Theory and Practice.- 2016, nr 3, s. 180-188 [MNiSW: 11]
2. Low-velocity impact resistance of aluminium glass laminates – Experimental and numerical investigation / Jarosław Bieniaś, Patryk Jakubczak, Konrad Dadej // Composite Structures.- 2016, vol. 152, s. 339-348 [MNiSW: 35]
Artykuły z 2015 (1)
1. The influence of impactor energy and geometry on degree of damage of glass fiber reinforced polymer subjected to low-velocity impact / Konrad Dadej, Patryk Jakubczak, Jarosław Bieniaś, Barbara Surowska // Composites Theory and Practice.- 2015, vol. 15, nr 3, s. 163-167 [MNiSW: 11]
Artykuły z 2014 (1)
1. The issue of residual strength tests of thin fibre metal laminates / Patryk Jakubczak, Jarosław Bieniaś, Konrad Dadej, Wojciech Zawiejski // Composites Theory and Practice.- 2014, nr 3, s. 134-138 [MNiSW: 8]
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