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How literature reviews influence the selection of fatigue analysis framework
How literature reviews influence the selection of fatigue analysis framework
Erratum to “Unraveling the myth of closure corrections
Erratum to “Unraveling the myth of closure corrections: Sharpening the definition of opening and closure stresses with an energy approach” [Int. J. Fatigue 143 (2021) 106016] (International Journal of Fatigue (2021) 143, (S014211232030548X), (10.1016/j.ijfatigue.2020.106016))
Unraveling the myth of closure corrections
Unraveling the myth of closure corrections: Sharpening the definition of opening and closure stresses with an energy approach
Measuring crack growth and related opening and closing stresses using continuous potential drop recording
Measuring crack growth and related opening and closing stresses using continuous potential drop recording
Enhancing the fracture toughness of carbon fibre/epoxy composites by interleaving hybrid meltable/non-meltable thermoplastic veils
Enhancing the fracture toughness of carbon fibre/epoxy composites by interleaving hybrid meltable/non-meltable thermoplastic veils
Co-cure joining of epoxy composites with rapidly UV-irradiated PEEK and PPS composites to achieve high structural integrity
Co-cure joining of epoxy composites with rapidly UV-irradiated PEEK and PPS composites to achieve high structural integrity
Significantly enhanced structural integrity of adhesively bonded PPS and PEEK composite joints by rapidly UV-irradiating the substrates
Significantly enhanced structural integrity of adhesively bonded PPS and PEEK composite joints by rapidly UV-irradiating the substrates
The influence of interlayer/epoxy adhesion on the mode-I and mode-II fracture response of carbon fibre/epoxy composites interleaved with thermoplastic veils
The influence of interlayer/epoxy adhesion on the mode-I and mode-II fracture response of carbon fibre/epoxy composites interleaved with thermoplastic veils
Determining finite-width-correction factors for fatigue crack growth prediction in GLARE using the equivalent compliance method
Determining finite-width-correction factors for fatigue crack growth prediction in GLARE using the equivalent compliance method
On the physics of applying finite width and geometry correction factors in fatigue crack growth predictions of GLARE
On the physics of applying finite width and geometry correction factors in fatigue crack growth predictions of GLARE
Structural health monitoring data fusion for in-situ life prognosis of composite structures
Structural health monitoring data fusion for in-situ life prognosis of composite structures
Fatigue crack surface area and crack front length
Fatigue crack surface area and crack front length: New ways to look at fatigue crack growth
The stress ratio effect on plastic dissipation during fatigue crack growth
The stress ratio effect on plastic dissipation during fatigue crack growth
Towards a physics-based relationship for crack growth under different loading modes
Towards a physics-based relationship for crack growth under different loading modes
Using acoustic emission to understand fatigue crack growth within a single load cycle
Using acoustic emission to understand fatigue crack growth within a single load cycle
The effect of temperature on fatigue crack growth in FM94 epoxy adhesive bonds investigated by means of energy dissipation
The effect of temperature on fatigue crack growth in FM94 epoxy adhesive bonds investigated by means of energy dissipation
Mode I fatigue delamination growth with fibre bridging in multidirectional composite laminates
Mode I fatigue delamination growth with fibre bridging in multidirectional composite laminates
Understanding mixed-mode cyclic fatigue delamination growth in unidirectional composites
Understanding mixed-mode cyclic fatigue delamination growth in unidirectional composites: An experimental approach
Fibre bridging effect on the Paris relation for mode I fatigue delamination growth in composites with consideration of interface configuration
Fibre bridging effect on the Paris relation for mode I fatigue delamination growth in composites with consideration of interface configuration
Stress ratio dependence of fiber bridging significance in mode I fatigue delamination growth of composite laminates
Stress ratio dependence of fiber bridging significance in mode I fatigue delamination growth of composite laminates
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