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Group by: Creators | Date | Item Type | Full Text Status | No Grouping
Jump to: C | J | P | R | S | Y
Number of items: 9.

C

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CHAVES, V, BALBÍN, JA, NAVARRO, A, SUSMEL, Luca and TAYLOR, D (2023). Calculations of biaxial fatigue limits with models using the experimental crack direction. International Journal of Fatigue, 174: 107726. [Article]

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CHAVES, V, NAVARRO, A, SUSMEL, Luca and TAYLOR, D (2022). Analysis of biaxial fatigue limit models for cases with circular notches. International Journal of Fatigue, 162: 106981. [Article]

J

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JOHN, Edward, BOXALL, Joby, COLLINS, Richard, BOWMAN, Elisabeth and SUSMEL, Luca (2024). Multiaxial fatigue of water pipe grey cast iron. International Journal of Fatigue, 178: 108002. [Article]

P

PETROYIANNIS, P. V., KERMANIDIS, A. T., AKID, R., RODOPOULOS, C. A. and PANTELAKIS, S. G. (2005). Analysis of the effects of exfoliation corrosion on the fatigue behaviour of the 2024-T351 aluminium alloy using the fatigue damage map. International Journal of Fatigue, 27 (7), 817-827. [Article]

R

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RAZAVI, Nima, ASKES, H, BERTO, F and SUSMEL, Luca (2023). Length scale parameters to estimate fatigue lifetime of 3D-printed titanium alloy Ti6Al4V containing notches in the as-manufactured condition. International Journal of Fatigue, 167 (B): 107348. [Article]

ROUSE, J.P, ZACHARZEWSKI, P, HYDE, C.J, JEFFERSON-LOVEDAY, R, MORRIS, A and KYAW, Si (2018). A case study investigation into the effects of spatially dependent convection coefficients on the fatigue response of a power plant header component. International Journal of Fatigue, 113, 137-148. [Article]

S

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SUSMEL, Luca (2024). Estimating notch fatigue limits via a machine learning-based approach structured according to the classic Kf formulas. International Journal of Fatigue, 179: 108029. [Article]

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SUSMEL, Luca (2022). Notches, nominal stresses, fatigue strength reduction factors and constant/variable amplitude multiaxial fatigue loading. International Journal of Fatigue, 162: 106941. [Article]

Y

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YAREN, Mehmet F and SUSMEL, Luca (2025). A novel critical distance-based homogenised material approach to estimate fatigue lifetime of plain/notched polylactide 3D-printed with different in-fill levels. International Journal of Fatigue, 193: 108750. [Article]

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