[1] J.Z. Yi, H.X. Hu, Z.B. Wang, Y.G. Zheng, On the critical flow velocity for erosioncorrosion in local eroded regions under liquid-solid jet impingement, Wear 422(2019) 94-99. [2] A. Neville, C. Wang, Erosion-corrosion mitigation by corrosion inhibitors-an assessment of mechanisms, Wear 267(2009) 195-203. [3] M. Askari, M. Aliofkhazraei, S. Ghaffari, A. Hajizadeh, Film former corrosion inhibitors for oil and gas pipelines-A technical review, Journal of Natural Gas Science and Engineering 58(2018) 92-114. [4] A. Neville, C. Wang, Erosion-corrosion of engineering steels-Can it be managed by use of chemicals? Wear 267(2009) 2018-2026. [5] O.O. Ige, R. Barker, X. Hu, L.E. Umoru, A. Neville, Assessing the influence of shear stress and particle impingement on inhibitor efficiency through the application of in-situ electrochemistry in a CO2-saturated environment, Wear 304(2013) 49-59. [6] J. Ryl, J. Wysocka, M. Cieslik, H. Gerengi, T. Ossowski, S. Krakowiak, P. Niedzialkowski, Understanding the origin of high corrosion inhibition efficiency of bee products towards aluminium alloys in alkaline environments, Electrochem. Acta. 304(2019) 263-274. [7] I.B. Obot, N.O. Obi-Egbedi, S.A. Umoren, Antifungal drugs as corrosion inhibitors for aluminium in 0.1 M HCl, Corros. Sci. 51(2009) 1868-1875. [8] Xinming Hu, Khaled Alzawai, Abinesh Gnanavelu, Anne Neville, Chun Wang, Alan Crossland, John Martin, Assessing the effect of corrosion inhibitor on erosion-corrosion of API-5L-X65 in multi-phase jet impingement conditions, Wear. 271(2011) 1432-1437. [9] Shahid Muhammad, Corrosion protection with eco-friendly inhibitors, Adv. Nat. Sci. Nanosci. 22(2011) 043001-043007. [10] L. Zeng, X.P. Guo, G.A. Zhang, Inhibition of the erosion-corrosion of a 90° low alloy steel bend, J. Alloys Compd. (2017) 827-840. [11] S. Yahya, N.K. Othman, M.C. Ismail, Corrosion inhibition of steel in multiple flow loop under 3.5% NaCl in the presence of rice straw extracts, lignin and ethylene glycol, Eng.Fail.Anal. (2019) 365-380. [12] E. Barmatov, T. Hughes, M. Nagl, Efficiency of film-forming corrosion inhibitors in strong hydrochloric acid under laminar and turbulent flow conditions, Corros. Sci. 92(2011) 85-94. [13] M. Lavanya, V. Ramachandra Murthy, Padmalatha Rao, Electrochemical Investigation of Erosion-corrosion behavior of 6061 aluminum alloy in Marine Environment, Tribol. Ind. 40(2018) 552-564. [14] R. Revie, Winston, Corrosion and Corrosion Control:An Introduction to Corrosion Science and Engineering, John Wiley & Sons, 2008. [15] S. Guo, J.J. Leavitt, X. Xie Zhou, Y. Tietze, S.Y. Zhu, J. Zhang, Effects of flow, Si inhibition, and concurrent corrosion of dissimilar metals on the corrosion of aluminium in the environment following a loss-of-coolant accident, Corros. Sci. 128(2017) 100-109. [16] A.Y. Musa, A.A.H. Kadhum, A.B. Mohamad, M.S. Takriff, Forming of corrosion inhibitor film during turbulent flow, Appl. Mech.Mater 66(2011) 540-544. [17] M.E. Olvera-Martínez, J. Mendoza-Flores, J. Genesca, CO2 corrosion control in steel pipelines. Influence of turbulent flow on the performance of corrosion inhibitors, J. Loss. Prevent. Proc. Ind. 35(2015) 19-28. [18] M. Christian, Effect of wall shear stress on corrosion inhibitor film performance, PhD Diss. Ohio University, 2015. [19] R.C. Barik, J.A. Wharton, R.J.K. Wood, K.R. Stokes, R.L. Jones, Corrosion, erosion and erosion-corrosion performance of plasma electrolytic oxidation[PEO] deposited Al2O3 coatings, Surf coat tech 199(2005) 158-167. [20] Xin Chen, Wenming Tian, Songmei Li, Mei Yu, Jianhua Liu, Effect of temperature on corrosion behavior of 3003 aluminum alloy in ethylene glycol-water solution, Chinese J Aeronaut 29(2016) 1142-1150. [21] Y. Zhao, F. Zhou, J. Yao, S. Dong, N. Li, Erosion-corrosion behavior and corrosion resistance of AISI 316 stainless steel in flow jet impingement, Wear 328(2015) 464-474. [22] J.F. Rios, J.A. Calderón, R.P. Nogueira, Eectrochemical behavior of copper in drinking water:evaluation of dissolution process at low anodic overpotential, J Brazil Chem Soc 22(2011) 1362-1370. [23] N.Y. Wei, Z. Jiang, Y. Liu, X. Ying, Y. Guo, Y. Wu, Y. Wen, H. Yang, 4-Phenylpyrimidine monolayer protection of a copper surface from salt corrosion, RSC Adv. 14(2018) 7340-7349. [24] Y. Chen, W.P. Jepson, EIS measurement for corrosion monitoring under multiphase flow conditions, Electrochim. Acta 44(1999) 4453-4464. [25] Mishra Ajit Kumar, R. Balasubramaniam, Corrosion inhibition of aluminum alloy AA 2014 by rare earth chlorides, Corros. Sci. 49(2007) 1027-1044. [26] N. Wei, Y. Jiang, Z. Liu, Y. Ying, X. Guo, Y. Wen, H. Yang, 4-Phenylpyrimidine monolayer protection of a copper surface from salt corrosion, RSC Advances 14(2018) 7340-7349. [27] Neelima Mahato, M.M. Singh, Investigation of passive film properties and pitting resistance of AISI 316 in aqueous ethanoic acid containing chloride ions using electrochemical impedance spectroscopy[EIS], Port. Electrochim. Acta 29(2011) 233-251. [28] P. Cisquini, S.V. Ramos, P.R.P. Viana, V.D.F.C. Lins, A.R. Franco Jr., E.A. Vieira, Effect of the roughness produced by plasma nitrocarburizing on corrosion resistance of AISI 304 austenitic stainless steel, J.Mater.Res. Technol 8(2) (2019) 1897-1906. [29] S.A.L. Lajevardi, T. Mosalaeepour, T. Shahrabi, Electrochemical impedance spectroscopic study on cathodic polarisation of 5083 Al alloy under stagnant and dynamic flow conditions in 3.5% NaCl solution, Corros. Eng. Sci. Techn. 45(2010) 295-301. [30] M.B. Kermani, A. Morshed, Carbon dioxide corrosion in oil and gas production-A compendium, Corros. 59(2003) 659-683. [31] Abdulkareem Mohammed Ali Alsamuraee, Harith Ibraheem Jaafer, Hani Aziz Ameen, Ahmed Qasim Abdullah, Electrochemical impedance spectroscopic evaluation of corrosion protection properties of polyurethane/polyvinyl chloride blend coatings on steel, AJSIR (2011) 761-768. [32] Y. Ahmed Musa, Abdul Amir H. Kadhum, Abu Bakar Mohamad, Mohd Sobri Takriff, Forming of corrosion inhibitor film during turbulent flow, Appl. Mech. Mater. 66(2011) 540-544. |