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Article cité :

Fatigue assessment of additively-manufactured C-18150 copper alloy at room and elevated temperatures via a microstructure-sensitive algorithm

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https://doi.org/10.1016/j.ijfatigue.2022.106777

The Potential of the Internal Friction Technique to Evaluate the Role of Vacancies and Dislocations in the Hydrogen Embrittlement of Steels

Liese Vandewalle, Milan J. Konstantinović, Tom Depover and Kim Verbeken
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Mobility of Twin Boundaries in Fe-Pd-Based Ferromagnetic Shape Memory Alloys

Federico Guillermo Bonifacich, Osvaldo Agustín Lambri, José Ignacio Pérez-Landazábal, et al.
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A micro-structural model for dissipation phenomena in the concrete

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International Journal for Numerical and Analytical Methods in Geomechanics 39 (18) 2037 (2015)
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Microstructure of Low C Steel Isothermally Transformed in the M S to M f Temperature Range

Donghwi Kim, Seok-Jae Lee and Bruno C. De Cooman
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H. Numakura, Y. Minonishi and M. Koiwa
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Study of the dislocation mechanism responsible for the Bordoni relaxation in aluminum by the two‐wave acoustic coupling method

M. Bujard, G. Gremaud and W. Benoit
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The effect of small pre-strain on the internal friction and modulus of high-purity molybdenum II. Transient peaks between 400–540 K, the region of the γ peak

J. A. Garcia, M. A. Abdelgadir and Jenifer N. Lomer
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