Authors: Аleksey V. LEONTYEV (b. 1988) graduated from the Gubkin Russia State Oil and Gas University in 2013. Post-graduate of сhemistry and technology of lubricants and сhemmotology department of the Gubkin Russia State Oil and Gas University. Research Fellowin Ltd. „United Research and Development Center” (Ltd. „RN-CIR”). Author of 4 publications and 3 patents
E-mail: Leontyev-Alexey@mail.ru
Igor G. TATUR (b. 1956) graduated from Gubkin Moscow Institute of Petrochemical and Gas Industry in 1979. He is Candidate of Technical Sciences, Assistant professor of Department of Chemistry and Technology of Lubricants and Chemmotology of Gubkin Russian State Oil and Gas. He is author of more than 85 publications, 2 books and 27 patents.
E-mail: igtatur@yandex.ru.
Dmitry N. SHERONOV (b. 1986) graduated from Gubkin Russian State University of Oil and Gas in 2006. He is engineer of the Department of Chemistry and Technology of Lubricants and Chemmotology. He is author of 14 publications and 2 patents.
E-mail: r75opposite@mail.ru.
Vladimir G. SPIRKIN (b. 1937) graduated from the Military Missile Forces Academy named after Great the Peter in 1959. He is D.Sc., Professor of the Department of Chemistry and Technology of Lubricants and Chemmotology of Gubkin Russian State University of Oil and Gas. He is author of more than 350 publications, 10 books and monographs, as well as 35 patents.
E-mail: vgspirkin@mail.ru
Abstract: Protective fluids are widely used in systems of hot water supply to protect from corrosion tanks and batteries, as well as to prevent water from aeration. Modern protective fluids possess high anti-aeration properties but do not meet the increasing requirements to anti-corrosion properties. Effective way to improve anti-corrosion properties of protective fluids is to use corrosion inhibitors. This paper examines the possibility of improving anti-corrosion properties of protective fluids by adding corrosion inhibitors into their composition. Basing on the study of surface properties of protective fluids, the dependence of the sealing properties of inhibited protective fluids from adhesion of their films to the surface of a metal has been defined. The influence of corrosion inhibitors on thermo-oxidative stability of the protective fluid has been studied. The authors recommend to increase thermo-oxidative stability of inhibited protective fluids by using antioxidant additives that allow to obtain a high-performance anti-corrosion material.
Index UDK: УДК 622.244
Keywords: protective fluids, industrial oils, corrosion inhibitors, thermal stability, adhesion work
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