[1]
A.S. Nowick, B.S. Berry, Anelastic Relaxation in Crystalline Solids, Academic Press, New York, 1972.
Google Scholar
[2]
M.S. Blanter, I.S. Golovin, H. Neuhäuser, H.-R. Sinning, Internal Friction in Metallic Materials, Springer Series in Materials Science, Springer Verlag, Berlin Heidelberg, 2007.
DOI: 10.1007/978-3-540-68758-0
Google Scholar
[3]
P. Gondi, R. Montanari, R. Coppola, On the statistical distribution of Cr atoms in Fe-Cr alloys with high swelling resistance in NFR, J. Nucl. Mater. 191-194 (1992) 1274.
DOI: 10.1016/0022-3115(92)90679-f
Google Scholar
[4]
P. Gondi, R. Montanari, On the Cr distribution in MANET steel, Phys. Stat. Sol. (a), 131 (1992) 465.
DOI: 10.1002/pssa.2211310221
Google Scholar
[5]
R. Coppola, P. Gondi, R. Montanari, Effects of C-Cr elementary aggregates on the properties of the MANET steel, J. Nucl. Mater. 206 (1993) 360.
DOI: 10.1016/0022-3115(93)90135-l
Google Scholar
[6]
P. Gondi, R. Montanari, Q-1 spectra connected with C under solute atom interaction, J. Alloys Compd. 211-212 (1994) 33.
DOI: 10.1016/0925-8388(94)90441-3
Google Scholar
[7]
P. Gondi, R. Montanari, A. Sili, R. Coppola, Solute Cr atom distribution and fracture behaviour of MANET steel, J. Nucl. Mater. 212-215 (1994) 564.
DOI: 10.1016/0022-3115(94)90123-6
Google Scholar
[8]
G. Albertini, M. Ceretti, R. Coppola, F. Fiori, P. Gondi, R. Montanari, Small-angle neutron scattering of C-Cr elementary aggregates in a martensitic steel for fusion reactor technology, Phisica B 213-214 (1995) 812.
DOI: 10.1016/0921-4526(95)00288-k
Google Scholar
[9]
P. Gondi, R. Montanari, M.E. Tata, MANET steel: thermal treatments and Q-1 spectrum evolution, Mater. Lett. 25 (1995) 249.
DOI: 10.1016/0167-577x(95)00175-1
Google Scholar
[10]
P. Gondi, R. Montanari, M.E. Tata, C-Cr associates and carbide precipitation in MANET steel, J. Phys. C8-6 (1996) 155.
DOI: 10.1051/jp4:1996832
Google Scholar
[11]
P. Gondi, R. Montanari, M.E. Tata, Internal friction study on MANET steel: effects of cooling rate from austenitic domain, J. Phys. C8-6 (1996) 115.
DOI: 10.1051/jp4:1996822
Google Scholar
[12]
A. Fava, R. Montanari, A. Varone, Mechanical spectroscopy investigation of point defects driven phenomena in a Cr martensitic steel, Metals 8(11) (2018) 870.
DOI: 10.3390/met8110870
Google Scholar
[13]
E. Bolli, A. Fava, P. Ferro, S. Kaciulis, A. Mezzi, R. Montanari, A. Varone, Cr Segregation and Impact Fracture in a Martensitic Stainless Steel, Coatings 10 (2020) 843.
DOI: 10.3390/coatings10090843
Google Scholar
[14]
P. Deodati, R. Donnini, R. Montanari, C. Testani, High temperature damping behaviour of Ti6Al4V+SiCf composite, Mater. Sci. Eng. A 521-522 (2009) 318-321.
DOI: 10.1016/j.msea.2008.09.109
Google Scholar
[15]
S. Amadori, E. Bonetti, P. Deodati, R. Donnini, R. Montanari, L. Pasquini, C. Testani, Low temperature damping behaviour of Ti6Al4V+SiCf composite, Mater. Sci. Eng. A 521-522 (2009) 340-342.
DOI: 10.1016/j.msea.2008.09.156
Google Scholar
[16]
P. Deodati, R. Montanari, O. Tassa, N. Ucciardello, Single crystal PWA 1483 superalloy: dislocation rearrangement and damping phenomena, Mater. Sci. Eng. A 521-522 (2009) 102-105.
DOI: 10.1016/j.msea.2008.09.107
Google Scholar
[17]
E. Bonetti, R. Montanari, C. Testani, G. Valdré, Irreversible transformation in as-cast FeAl B2-ordered alloy obtained by melt spinning, J. Mater. Res. 3 (2000) 659.
DOI: 10.1557/jmr.2000.0098
Google Scholar
[18]
P. Deodati, R. Montanari, L. Rovatti, N. Ucciardello, A. Carosi, Anelastic phenomena and Cr2N precipitation in a high nitrogen austenitic steel, Adv. Mat. Res. 89-91 (2010) 485-490.
DOI: 10.4028/www.scientific.net/amr.89-91.485
Google Scholar
[19]
A. Fava, R. Montanari, M. Richetta, A. Varone, Analysis of relaxation processes in HNS due to interstitial-substitutional pairs, Metals 7 (2017) 178-191.
DOI: 10.3390/met7070246
Google Scholar
[20]
A. Di Schino, R. Montanari, C. Testani, A. Varone, Dislocation Breakaway Damping in AA7050 Alloy, Metals 10 (2020) 1682.
DOI: 10.3390/met10121682
Google Scholar
[21]
S.K. Balijepalli, R. Donnini, S. Kaciulis, R. Montanari, A. Varone, Young's modulus profile in kolsterized AISI 316 L steel, Mater. Sci. Forum 762 (2013) 183-188.
DOI: 10.4028/www.scientific.net/msf.762.183
Google Scholar
[22]
R. Montanari, A. Varone, Synergic role of self-interstitials and vacancies in Indium melting, Metals 5 (2015) 1061-1072.
DOI: 10.3390/met5021061
Google Scholar
[23]
R. Montanari, A. Varone, Mechanical spectroscopy investigation of liquid Pb-Bi alloys, Solid State Phenomena 184 (2012) 434-439.
DOI: 10.4028/www.scientific.net/ssp.184.434
Google Scholar
[24]
S. Amadori, E.G. Campari, A.L. Fiorini, R. Montanari, L. Pasquini, L. Savini, E. Bonetti, Automated resonant vibrating reed analyzer apparatus for a non destructive characterization of materials for industrial applications, Mater. Sci. Eng. A 442 (2006) 543-546.
DOI: 10.1016/j.msea.2006.02.210
Google Scholar
[25]
E. Arzt, Size effects in materials due to microstructural and dimensional constraints: a comparative review, Acta Mater. 46 (1998) 5611-5626.
DOI: 10.1016/s1359-6454(98)00231-6
Google Scholar
[26]
M.D. Uchic, D.M. Dimiduk, J.N. Florando, W.D. Nix, Sample Dimensions Influence on strength and Crystal Plasticity, Science 305 (2004) 986-989.
DOI: 10.1126/science.1098993
Google Scholar
[27]
H.J. Lee, P.Zhang, J. C. Bravman, Stress relaxation in free-standing aluminum beams, Thin Solid Films 476 (2005) 118-124.
DOI: 10.1016/j.tsf.2004.10.001
Google Scholar
[28]
K. Mongolsuttirat, J.R. Smyth, W.L. Brown, R.P. Vinci, The effect of grain size on viscoelastic relaxation behavior of Au thin films, Scripta Mater. 155 (2018) 1-4.
DOI: 10.1016/j.scriptamat.2018.06.003
Google Scholar
[29]
E. Bonetti, M. Cabibbo, E.G. Campari, R. Montanari, Correlation between anelastic response and microstructure of 5N-Al thin foils, J Alloys Compd. 872 (2021), 159693.
DOI: 10.1016/j.jallcom.2021.159693
Google Scholar
[30]
T.-S. Kê, Experimental evidence of the viscous behaviour of grain boundaries in metals, Phys. Rev. 71 (1947) 533-546.
DOI: 10.1103/physrev.71.533
Google Scholar
[31]
D.-h. Choi, W.D. Nix, Anelastic behavior of copper thin films on silicon substrates: damping associated with dislocations, Acta Mater. 54 (2004) 679-687.
DOI: 10.1016/j.actamat.2005.10.003
Google Scholar
[32]
E. Bolli, S. Kaciulis, A. Mezzi, R. Montanari, A. Varone, XPS investigation of 5N purity Al thin foils for MEMS devices, Surf. Interface Anal. 2022.
DOI: 10.1002/sia.7150
Google Scholar
[33]
I.A. Tomilin, V.I. Sarrak, N.A. Gorokhova, S.O. Suvorova, L.L. Zhukov, Non-regular carbon atom distribution in iron-chromium alloys. Phys. Met. Metallogr. 56 (1983) 501–506.
Google Scholar
[34]
M. Richetta, A. Varone, A Focus on Dynamic Modulus: Effects of External and Internal Morphological Features, Metals 11 (2021) 40.
DOI: 10.3390/met11010040
Google Scholar
[35]
M. Cabibbo, C. de Crescenzo, A. Fava, R. Montanari, A. Pola, M.L. Tocci, A. Varone, Dynamic modulus anomaly in metallic alloys prepared by additive manufacturing, Proc. of THERMEC 2023, Vienna, 2023.
Google Scholar
[36]
S. Wang, J. Luo, L. Hou, J. Zhang, L. Zhuang, Physically based constitutive analysis and microstructural evolution of AA7050 aluminum alloy during hot compression, Mater. Des. 107 (2016) 277-289.
DOI: 10.1016/j.matdes.2016.06.023
Google Scholar
[37]
G. Maizza, R. Pero, M. Richetta, R. Montanari. Continuous dynamic recrystallization (CDRX) model for aluminum alloys, J. Mater. Sci. 53 (2017) 4563-4573.
DOI: 10.1007/s10853-017-1845-4
Google Scholar
[38]
G. Angella, A. Di Schino, R. Donnini, M. Richetta, C. Testani, A. Varone, AA7050 Al alloy hot-forging process for improved fracture toughness properties, Metals 9 (2019) 64.
DOI: 10.3390/met9010064
Google Scholar