Page 357 - Дисертація ГРЕДІЛЬ_ФМІ
P. 357
357
339. Kostin V. A., Laukhin D. V., Nyrkova L. I. Cracking of the concrete
matrix due to the pressure of corrosion products in reinforced concrete. Materials
Science. 2023. Vol. 58, No. 6. P. 774–780.
340. Benea L., Wenger F., Galland J. Corrosion study of concrete
reinforcing steel by electrochemical methods. Proc. of 14th International
Corrosion Congress, Cape Town, South Africa, 1999. 6 p.
341. Hredil М. І. Express method for the evaluation of the effect of
corrosion of reinforcement on the integrity of reinforced concrete. Materials
Science. 2013. Vol. 49, No. 3. P. 394–397.
342. Hredil M. Peculiarities of bond strength degradation in reinforced
concrete induced by accelerated electrochemical methods. Procedia Structural
Integrity. 2018. Vol. 13. Р. 1657–1662.
343. Hredil M. Peculiarities of bond strength degradation in reinforced
concrete induced by accelerated electrochemical methods // Loading and
nd
Environment Effects on Structural Integrity: Book of Abstracts. 22 European
st
Conference on Fracture – ECF22, Belgrade, 26–31 August, 2018. – 1 ed. –
Belgrade: DIVK, 2018. – P. 456.
344. Hredil M., Toribio J., Kurnat I. et al. Electrochemical methods for
simulating bond strength degradation in reinforced concrete. Problems of Corrosion
and Corrosion Protection of Materials (Corrosion-2022): XVI International
Conference, November 15–17, 2022, Lviv, Ukraine: Book of Abstracts. P. 86.
345. Weyers R. Service life model for concrete structures in chloride laden
environments. ACI Materials Journal. 1998. Vol. 95, No. 4. P. 445–453.
346. Al Khalaf M. N., Page C. L. Steel/mortar interfaces: microstructural
features and mode of failure. Cement and Concrete Research. 1978. Vol. 9. P.
197–208.
347. Ma Y. G., Saraswathy, Wang L. et al. Experimental investigation of
corrosion effect on bond behavior between reinforcing bar and concrete.
Construction and Building Materials. 2017. Vol. 152. P. 240–249.

