F. J. Martín-muñoz, Compatibility of structural materials with lead-bismuth eutectic and lead: Standardisation of data, corrosion mechanism and rate, in Handbook on lead-bismuth eutectic alloy and lead properties, materials compatibility, thermal-hydraulics and technologies, vol.6, pp.431-486, 2015.

J. Vogt, I. Serre, and D. Gorse, Effect of lead-bismuth eutectic and lead on mechanical properties of martensitic and austenitic steels, in Handbook on lead-bismuth eutectic alloy and lead properties, materials compatibility, thermal-hydraulics and technologies, pp.487-570, 2015.

M. H. Kamdar, Embrittlement by liquid metals, Prog. Mater. Sci, vol.15, issue.4, pp.289-374, 1973.

M. Nicholas and C. Old, Liquid metal embrittlement, J. Mater. Sci, vol.14, issue.1, pp.1-18, 1979.

C. F. Old, Liquid metal embrittlement of nuclear materials, J. Nucl. Mater, vol.92, issue.1, pp.2-25, 1980.

P. J. Fernandes, R. E. Clegg, and D. R. Jones, Failure by Liquid Metal Induced Embrittlement, Eng. Fail. Anal, vol.1, issue.1, pp.51-63, 1994.

B. Joseph, M. Picat, and F. Barbier, Liquid metal embrittlement: A state of the art appraisal, Eur. Phys

, J, vol.5, pp.19-31, 1999.

G. Nicaise, A. Legris, J. Vogt, and F. Foct, Embrittlement of the martensitic steel 91 tested in liquid lead, J. Nucl. Mater, vol.296, pp.256-264, 2001.
URL : https://hal.archives-ouvertes.fr/hal-02395636

J. Vogt, G. Nicaise, A. Legris, and F. Foct, The risk of liquid metal embrittlement of the Z10CDNbV 9-1 martensitic steel, J. Phys IV, vol.12, pp.217-225, 2002.
URL : https://hal.archives-ouvertes.fr/hal-02395554

A. Legris, G. Nicaise, J. Vogt, and J. Foct, Liquid metal embrittlement of the martensitic steel 91: influence of the chemical composition of the liquid metal. Experiments and electronic structure calculations, J. Nucl. Mater, vol.301, issue.1, pp.70-76, 2002.
URL : https://hal.archives-ouvertes.fr/hal-02395562

T. Auger and G. Lorang, Liquid metal embrittlement susceptibility of T91 steel by lead-bismuth, Scripta Mater, vol.52, pp.1323-1328, 2005.

A. Verleene, J. Vogt, I. Serre, and A. Legris, Low cycle fatigue behaviour of T91 martensitic steel at 300°C in air and liquid lead bismuth eutectic, Int. J. Fatigue, vol.28, pp.843-851, 2006.

Y. Dai, B. Long, and F. Gröeschel, Slow strain rate tensile tests on T91 in static lead-bismuth eutectic, J. Nucl. Mater, vol.356, pp.222-228, 2006.

J. Van-den, D. Bosch, A. Sapundjiev, and . Almazouzi, Effects of temperature and strain rate on the mechanical properties of T91 material tested in liquid lead bismuth eutectic, J. Nucl. Mater, vol.356, pp.237-246, 2006.

I. Serre and J. Vogt, Heat Treatment Effect of T91 martensitic steel on Liquid Metal Embrittlement, J. Nucl. Mater, vol.376, pp.330-335, 2008.

T. Auger, I. Serre, G. Lorang, Z. Hamouche, D. Gorse et al., Role of oxidation on LME of T91 steel studied by Small Punch Test, J. Nucl. Mater, vol.376, pp.336-340, 2008.

B. Long, Z. Tong, F. Gröschel, and Y. Dai, Liquid Pb-Bi embrittlement effects on the T91 steel after different heat treatments, J. Nucl. Mater, vol.377, pp.219-224, 2008.

D. Gorse, T. Auger, J. Vogt, I. Serre, A. Weisenburger et al.,

F. Hojna, J. Di-gabriele, . Van-den, G. Bosch, A. Coen et al., Influence of liquid lead and lead-bismuth eutectic on tensile, fatigue and creep properties of ferritic/martensitic and austenitic steels for transmutation systems, J. Nucl. Mater, vol.415, issue.3, pp.284-292, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00761826

A. Hojna and F. D. Gabriele, On the kinetics of LME for the ferritic-martensitic steel T91 immersed in liquid PbBi eutectic, J. Nucl. Mater, pp.21-29, 2011.

X. Gong, P. Marmy, A. Volodin, B. Amin-ahmadi, L. Qin et al., Multiscale investigation of quasi-brittle fracture characteristics in a 9Cr-1Mo ferritic-martensitic steel embrittled by lead-bismuth eutectic under low cycle fatigue, Corros. Sci, vol.102, pp.137-152, 2016.

C. Ye, J. Vogt, and I. Serre, Liquid metal embrittlement of the T91 steel in lead bismuth eutectic: The role of loading rate and of the oxygen content in the liquid metal, Mat. Sci. Eng. A, vol.608, pp.242-248, 2014.

X. Gong, P. Marmy, B. Verlinden, M. Wevers, and M. Seefeldt, Low cycle fatigue behavior of a modified 9Cr-1Mo ferritic-martensitic steel in lead-bismuth eutectic at 350 °C -Effects of oxygen concentration in the liquid metal and strain rate, Corros. Sci, vol.94, pp.337-391, 2015.

J. Vogt, J. Bouquerel, C. Carlé, and I. Serre, Stability of fatigue cracks at 350 °C in air and in liquid metal in T91 martensitic steel, Int. J. Fatigue, p.105265, 2020.
URL : https://hal.archives-ouvertes.fr/hal-02310474

M. L. Martin, T. Auger, D. D. Johnson, and I. M. Robertson, Liquid-metal-induced fracture mode of martensitic T91 steels, J. Nucl. Mater, vol.426, issue.1-3, pp.71-77, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00813893

Z. Hadjem-hamouche, T. Auger, and I. Guillot, Temperature effect in the maximum propagation rate of a liquid metal filled crack: The T91 martensitic steel/Lead-Bismuth Eutectic system, Corros. Sci, vol.51, issue.11, pp.2580-2587, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00429999

I. Serre and J. Vogt, ToF-SIMS investigation of absorption of lead and bismuth in T91 steel deformed in liquid lead bismuth eutectic, Appl. Surf. Sci, vol.471, pp.36-42, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02308679

I. Serre and J. Vogt, Liquid Metal Embrittlement of the T91 martensitic steel evidenced by the Small Punch Test, Nucl. Eng. Des, vol.237, pp.677-685, 2007.

T. Misawa, T. Adachi, M. Saito, and Y. Hamaguchi, Small punch tests for evaluating ductile-brittle transition behavior of irradiated ferritic steels, J. Nucl. Mater, vol.150, pp.194-202, 1987.

G. E. Lucas, Review of small specimen test techniques for irradiation testing, Metall. Trans. A, vol.21, pp.1105-1119, 1990.

X. Mao and J. Kameda, Small-punch technique for measurement of material degradation of irradiated ferritic alloys, J. Mater. Sci, vol.26, pp.2436-2440, 1991.

I. Penuelas, I. I. Cuesta, C. Betegon, C. Rodriguez, and F. J. Belzunce, Inverse determination of the elastoplastic and damage parameters on small punch tests, Fatigue Fract Engng Mater Struct, vol.32, pp.872-885, 2009.

O. Hamdane, J. Bouquerel, I. Serre, and J. Vogt, Effect of heat treatment on liquid sodium embrittlement of T91 martensitic steel, J. Mater. Process. Technol, vol.211, pp.2085-2090, 2011.
URL : https://hal.archives-ouvertes.fr/hal-02279456

F. Di-gabriele, A. Doubkova, and A. Hojna, Investigation of the sensitivity to EAC of steel T91 in contact with liquid LBE, J. Nucl. Mater, vol.376, pp.307-311, 2008.

X. Gong, P. Marmy, L. Qin, B. Verlinden, M. Wevers et al., Temperature dependence of liquid metal embrittlement susceptibility of a modified 9Cr-1Mo steel under low cycle fatigue in leadbismuth eutectic at 160-450 °C, J. Nucl. Mater, vol.468, pp.289-298, 2016.

V. Popovich and I. Dmukhovskaya, Rebinder effect in the fracture of Armco iron in liquid metals, Sov. Mater. Sci, vol.14, issue.4, pp.365-370, 1978.

I. Dmukhovskaya, N. Yaremchenko, Y. Zima, and . Popovich, Influence of temperature on the character of failure of Armco iron in liquid-metal media, Sov. Mater. Sci, vol.19, issue.5, pp.431-434, 1984.

A. Hojna, F. Di-gabriele, J. Klecka, and J. Burda, Behaviour of the steel T91 under uniaxial and multiaxial slow loading in contact with liquid lead, J. Nucl. Mater, vol.466, pp.292-301, 2015.

D. Gabriele, F. Hojná, A. Chocholousek, M. Klecka, and J. , Behavior of the steel T91 under multi axial loading in contact with liquid and solid, Pb. Metals, vol.7, issue.9, p.342, 2017.

A. Hojná, F. Di-gabriele, M. Chocholou?ek, L. Rozumová, and J. Vít, Effect of applied stress on T91 steel performance in liquid lead at 400 °C, Materials, vol.10, issue.12, p.2512, 2018.

V. P. Sobolev and A. Gessi, Chapter 2: Thermophysical and electric properties of liquid lead, bismuth and lead-bismuth eutectic, in Handbook on lead-bismuth eutectic alloy and lead properties, materials compatibility, thermal-hydraulics and technologies, pp.27-142, 2015.

L. Martinelli, Thermodynamic relationships and heavy liquid metal interaction with other coolants, in Handbook on lead-bismuth eutectic alloy and lead properties, materials compatibility, thermal-hydraulics and technologies, vol.3, pp.143-184, 2015.

S. Gossé, S. , and T. , Assessment of Solubility and Activity of Iron, Chromium, and Nickel in Lead Bismuth Eutectic, J. Nucl. Mater, vol.449, pp.122-131, 2014.

P. Protsenko, A. Terlain, M. Jeymond, and N. Eustathopoulos, Wetting of Fe-7.5%Cr steel by molten Pb and Pb-17Li, J. Nucl. Mater, vol.307, pp.1396-1399, 2002.

P. Protsenko and N. Eustathopoulos, Surface and grain boundary wetting of Fe based solids by molten Pb and Pb-Bi eutectic, J. Mater. Sci, vol.40, pp.2383-2387, 2005.

D. A. Kambolov, A. Z. Kashezhev, R. A. Kutuev, M. Kh, V. A. Ponezhev et al.,

. Shermetov, Polytherms of density and surface tension of bismuth lead and of angle of wetting of high nickel and ferritic-martensitic steels by the Pb-Bi alloy, High Temperature, vol.52, issue.3, pp.381-384, 2014.

F. Balbaud-celerier, P. Deloffre, A. Terlain, and A. Rusanov, Corrosion of metallic materials in flowing liquid lead-bismuth, J. Phys IV France, vol.12, pp.177-190, 2002.

L. Martinelli, T. Dufrenoy, K. Jaakou, A. Rusanov, and F. Balbaud-célérier, High temperature oxidation of Fe-9Cr-1Mo steel in stagnant liquid lead-bismuth at several temperatures and for different lead contents in the liquid alloy, J. Nucl. Mater, vol.376, issue.3, pp.282-288, 2008.

C. Lesueur, D. Chatain, C. Bergman, P. Gas, and F. Baqué, Analysis of the stability of native oxide films at liquid lead/metal interfaces, J. Phys IV, vol.12, pp.155-162, 2002.
URL : https://hal.archives-ouvertes.fr/hal-01722642

A. T. Hasouna, K. Nogi, and K. Ogino, Influence of Oxygen Partial Pressure on the Wettability of Solid Fe by Liquid Bi, Mater. Trans. JIM, vol.31, issue.4, pp.302-306, 1990.

L. Martinelli, F. Balbaud-célérier, A. Terlain, S. Delpech, G. Santarini et al., Oxidation mechanism of a Fe-9Cr-1Mo steel by liquid Pb-Bi eutectic alloy (Part I), Corros. Sci, vol.50, issue.9, pp.2523-2536, 2008.
URL : https://hal.archives-ouvertes.fr/hal-01911375