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Published in: Arabian Journal for Science and Engineering 8/2021

31-03-2021 | Research Article-Mechanical Engineering

Mechanical and Corrosion Properties of Low-Carbon Steel Processed by Cryorolling: Effect of Different Initial Microstructures

Authors: S. A. Zakaria, M. P. Lew, A. S. Anasyida, M. N. Idris, H. Zuhailawati, A. Ismail

Published in: Arabian Journal for Science and Engineering | Issue 8/2021

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Abstract

In this study, low-carbon steel was fabricated by 70% rolling with ferrite–pearlite and ferrite–martensite as starting microstructures at liquid nitrogen temperature. The samples were characterized for microstructure, crystallite size, strength, and corrosion behaviour by using optical microscopy, X-ray diffraction, tensile test, potentiodynamic polarization, immersion test and electrochemical impedance spectroscopy. The ferrite–martensite starting microstructure has the highest grain aspect ratio (12.86), highest ultimate tensile strength (927.36 MPa), highest yield strength (920.05 MPa), smallest crystallite size (4.80 nm) and elongation (8.08%) than cryorolled sample with ferrite–pearlite structure. Moreover, the sample with initial structure of ferrite–martensite has the highest corrosion resistance.

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Literature
1.
go back to reference Motham, K.; Khamsuk, S.; Miura, H.; Anasyida, A.S.: Influent of soaking time in liquid nitrogen on microstructure and mechanical properties of AISI 1018 low carbon steel processed by cryorolling. IOP Conf. Ser. J. Phys. Conf. Ser. 1082, 012113 (2018)CrossRef Motham, K.; Khamsuk, S.; Miura, H.; Anasyida, A.S.: Influent of soaking time in liquid nitrogen on microstructure and mechanical properties of AISI 1018 low carbon steel processed by cryorolling. IOP Conf. Ser. J. Phys. Conf. Ser. 1082, 012113 (2018)CrossRef
2.
go back to reference Tsuji, N.; Maki, T.: Enhanced structural refinement by combining phasetransformation and plastic deformation in steels. Scr. Mater. 60, 1044–1049 (2009)CrossRef Tsuji, N.; Maki, T.: Enhanced structural refinement by combining phasetransformation and plastic deformation in steels. Scr. Mater. 60, 1044–1049 (2009)CrossRef
3.
go back to reference Vedani, M.; Bassani, P.; Tuissi, A.; Angella, G.: Ultrafine grained alloys produced by severe plastic deformation: issues on microstructural control and mechanical behaviour. Metall. Sci. Technol. 22(2), 21–30 (2004) Vedani, M.; Bassani, P.; Tuissi, A.; Angella, G.: Ultrafine grained alloys produced by severe plastic deformation: issues on microstructural control and mechanical behaviour. Metall. Sci. Technol. 22(2), 21–30 (2004)
4.
go back to reference Anasyida, A.S.; Mohammed, Z.A.M.K.; Zuhailawati, H.: Effect of cold and cryo rolling on microstructure and mechanical properties of low carbon steel. Mater. Today Proc. 17, 846–852 (2019)CrossRef Anasyida, A.S.; Mohammed, Z.A.M.K.; Zuhailawati, H.: Effect of cold and cryo rolling on microstructure and mechanical properties of low carbon steel. Mater. Today Proc. 17, 846–852 (2019)CrossRef
5.
go back to reference Maier, G.G., et al.: Annealing behavior of ultrafine grained structure in low-carbon steel produced by equal channel angular pressing. Mater. Sci. Eng. A 581, 104–107 (2013)CrossRef Maier, G.G., et al.: Annealing behavior of ultrafine grained structure in low-carbon steel produced by equal channel angular pressing. Mater. Sci. Eng. A 581, 104–107 (2013)CrossRef
6.
go back to reference Rifai, M.; Miyamoto, H.; Fujiwara, H.: Effects of strain energy and grain size on corrosion resistance of ultrafine grained Fe–20% Cr steels with extremely low C and N fabricated by ECAP. Int. J. Corros. 2015 (2015). Rifai, M.; Miyamoto, H.; Fujiwara, H.: Effects of strain energy and grain size on corrosion resistance of ultrafine grained Fe–20% Cr steels with extremely low C and N fabricated by ECAP. Int. J. Corros. 2015 (2015).
7.
go back to reference Wang, J.T., et al.: Microstructure and properties of a low-carbon steel processed by equal-channel angular pressing. Mater. Sci. Eng. A 410–411, 312–315 (2005)CrossRef Wang, J.T., et al.: Microstructure and properties of a low-carbon steel processed by equal-channel angular pressing. Mater. Sci. Eng. A 410–411, 312–315 (2005)CrossRef
8.
go back to reference Singh, D.; Rao, P.N.; Jayaganthan, R.: Effect of deformation temperature on mechanical properties of ultrafine grained Al–Mg alloys processed by rolling. Mater. Des. 50, 646–655 (2013)CrossRef Singh, D.; Rao, P.N.; Jayaganthan, R.: Effect of deformation temperature on mechanical properties of ultrafine grained Al–Mg alloys processed by rolling. Mater. Des. 50, 646–655 (2013)CrossRef
9.
go back to reference Ueji, R., et al.: Ultragrain refinement of plain low carbon steel by cold-rolling and annealing of martensite. Acta Mater. 50(16), 4177–4189 (2002)CrossRef Ueji, R., et al.: Ultragrain refinement of plain low carbon steel by cold-rolling and annealing of martensite. Acta Mater. 50(16), 4177–4189 (2002)CrossRef
10.
go back to reference Yuan, Q., et al.: The recrystallization behavior in ultrafine-grained structure steel fabricated by cold rolling and annealing. Arab. J. Sci. Eng. 42, 4771–4777 (2017)CrossRef Yuan, Q., et al.: The recrystallization behavior in ultrafine-grained structure steel fabricated by cold rolling and annealing. Arab. J. Sci. Eng. 42, 4771–4777 (2017)CrossRef
11.
go back to reference Roy, B.; Kumar, R.; Das, J.: Effect of cryorolling on the microstructure and tensile properties of bulk nano-austenitic stainless steel. Mater. Sci. Eng. A 631, 241–247 (2015)CrossRef Roy, B.; Kumar, R.; Das, J.: Effect of cryorolling on the microstructure and tensile properties of bulk nano-austenitic stainless steel. Mater. Sci. Eng. A 631, 241–247 (2015)CrossRef
12.
go back to reference Singh, D.; Rao, P.N.; Jayaganthan, R.: Microstructures and impact toughness behavior of Al 5083 alloy processed by cryorolling and afterwards annealing. Int. J. Miner. Metall. Mater. 20(8), 759–769 (2013)CrossRef Singh, D.; Rao, P.N.; Jayaganthan, R.: Microstructures and impact toughness behavior of Al 5083 alloy processed by cryorolling and afterwards annealing. Int. J. Miner. Metall. Mater. 20(8), 759–769 (2013)CrossRef
13.
go back to reference Wang, Y.; Jiao, T.; Ma, E.: Dynamic processes for nanostructure development in Cu after severe cryogenic rolling deformation. Mater. Trans. 44(10), 1926–1934 (2003)CrossRef Wang, Y.; Jiao, T.; Ma, E.: Dynamic processes for nanostructure development in Cu after severe cryogenic rolling deformation. Mater. Trans. 44(10), 1926–1934 (2003)CrossRef
14.
go back to reference Calcagnotto, M.; Ponge, D.; Raabe, D.: Effect of grain refinement to 1 mm on strength and toughness of dual-phase steels. Mater. Sci. Eng. A 527(29), 7832–7840 (2010)CrossRef Calcagnotto, M.; Ponge, D.; Raabe, D.: Effect of grain refinement to 1 mm on strength and toughness of dual-phase steels. Mater. Sci. Eng. A 527(29), 7832–7840 (2010)CrossRef
15.
go back to reference Yuan, Q.; Xu, G.; Liu, M.; Liu, M.; Hu, H.J.: Evaluation of mechanical properties and microstructures of ultrafine grain low-carbon steel processed by cryorolling and annealing. Trans. Indian Inst. Metal 72, 741–749 (2019)CrossRef Yuan, Q.; Xu, G.; Liu, M.; Liu, M.; Hu, H.J.: Evaluation of mechanical properties and microstructures of ultrafine grain low-carbon steel processed by cryorolling and annealing. Trans. Indian Inst. Metal 72, 741–749 (2019)CrossRef
16.
go back to reference Singh, R.B., et al.: Recovery of ductility in ultrafine-grained low-carbon steel processed through equal-channel angular pressing followed by cold rolling and flash annealing. Metall. Mater. Trans. A 48(3), 1189–1203 (2017)CrossRef Singh, R.B., et al.: Recovery of ductility in ultrafine-grained low-carbon steel processed through equal-channel angular pressing followed by cold rolling and flash annealing. Metall. Mater. Trans. A 48(3), 1189–1203 (2017)CrossRef
17.
go back to reference Siti Aminah, Z.; Kanchana, M.; Anasyida, A.S.; Zuhailawati, H.; Hiromi, M.: Effect of pre-heat treatment on microstructure and mechanical properties of cryorolled low carbon steel. Mater. Today Proc. 17, 1176–1182 (2019)CrossRef Siti Aminah, Z.; Kanchana, M.; Anasyida, A.S.; Zuhailawati, H.; Hiromi, M.: Effect of pre-heat treatment on microstructure and mechanical properties of cryorolled low carbon steel. Mater. Today Proc. 17, 1176–1182 (2019)CrossRef
18.
go back to reference Hammond, C.: The basics of crystallography and diffraction, 3rd edn., p. 2009. Oxford University Press Inc., New York (2009) Hammond, C.: The basics of crystallography and diffraction, 3rd edn., p. 2009. Oxford University Press Inc., New York (2009)
19.
go back to reference Kumar, N.; Jayaganthan, R.; Brokmeier, H.G.: Effect of deformation temperature on precipitation, microstructural evolution, mechanical and corrosion behavior of 6082 Al alloy. Trans. Nonferrous Metals Soc. China 27, 475–492 (2017)CrossRef Kumar, N.; Jayaganthan, R.; Brokmeier, H.G.: Effect of deformation temperature on precipitation, microstructural evolution, mechanical and corrosion behavior of 6082 Al alloy. Trans. Nonferrous Metals Soc. China 27, 475–492 (2017)CrossRef
20.
go back to reference Park, M.H.; Shibata, A.; Tsuji, N.: Effect of grain size on mechanical properties of dual phase steels composed of ferrite and martensite. Mater. Res. Soc. 1(12), 811–816 (2016) Park, M.H.; Shibata, A.; Tsuji, N.: Effect of grain size on mechanical properties of dual phase steels composed of ferrite and martensite. Mater. Res. Soc. 1(12), 811–816 (2016)
21.
go back to reference Goloborodko, A.; Sitdikov, O.; Kaibyshev, R.; Miura, H.; Sakai, T.: Effect of pressing temperature on fine-grained structure formation in 7475 aluminum alloy during ECAP. Mater. Sci. Eng. A 381, 121–128 (2004)CrossRef Goloborodko, A.; Sitdikov, O.; Kaibyshev, R.; Miura, H.; Sakai, T.: Effect of pressing temperature on fine-grained structure formation in 7475 aluminum alloy during ECAP. Mater. Sci. Eng. A 381, 121–128 (2004)CrossRef
22.
go back to reference Prasetya, A.D.; Rifai, M.; Miyamoto, M.H.: X-ray diffraction (XRD) profile analysis of pure ECAP annealing Nickel samples. IOP Conf. Ser. J. Phys. Conf. Ser. 1436, 012113 (2020)CrossRef Prasetya, A.D.; Rifai, M.; Miyamoto, M.H.: X-ray diffraction (XRD) profile analysis of pure ECAP annealing Nickel samples. IOP Conf. Ser. J. Phys. Conf. Ser. 1436, 012113 (2020)CrossRef
23.
go back to reference Xiong, Y.; He, T.; Li, H.; Lu, Y.; Ren, F.; Volinsky, A.A.: Annealing effects on microstructure and mechanical properties of cryorolled Fe–25Cr–20Ni steel. Mater. Sci. Eng. A 703, 68–75 (2017)CrossRef Xiong, Y.; He, T.; Li, H.; Lu, Y.; Ren, F.; Volinsky, A.A.: Annealing effects on microstructure and mechanical properties of cryorolled Fe–25Cr–20Ni steel. Mater. Sci. Eng. A 703, 68–75 (2017)CrossRef
24.
go back to reference Mirzaei, M.; Roshan, M.R.; Jenabali Jahromi, S.A.: Microstructure and mechanical properties relation in cold rolled Al 2024 alloy determined by X-ray line profile analysis. Mater. Sci. Eng. A 620, 44–49 (2015)CrossRef Mirzaei, M.; Roshan, M.R.; Jenabali Jahromi, S.A.: Microstructure and mechanical properties relation in cold rolled Al 2024 alloy determined by X-ray line profile analysis. Mater. Sci. Eng. A 620, 44–49 (2015)CrossRef
25.
go back to reference Goel, S.; Nachiket, K.; Jayaganthan, R.; Singh, I.V.; Singh, D.; Srivastava, G.; Dey, K.; Saibaba, N.: Mechanical behaviour and microstructural characterizations of ultrafine grained zircaloy-2 processed by cryorolling. Mater. Sci. Eng. A 603, 23–29 (2014)CrossRef Goel, S.; Nachiket, K.; Jayaganthan, R.; Singh, I.V.; Singh, D.; Srivastava, G.; Dey, K.; Saibaba, N.: Mechanical behaviour and microstructural characterizations of ultrafine grained zircaloy-2 processed by cryorolling. Mater. Sci. Eng. A 603, 23–29 (2014)CrossRef
26.
go back to reference Fattah-alhosseini, A.; Gashti, S.O.: Passive behavior of ultra-fine-grained 1050 aluminum alloy produced by accumulative roll bonding in a borate buffer solution. Acta Metall. Sin. (English Letters) 28(10), 1222–1229 (2015)CrossRef Fattah-alhosseini, A.; Gashti, S.O.: Passive behavior of ultra-fine-grained 1050 aluminum alloy produced by accumulative roll bonding in a borate buffer solution. Acta Metall. Sin. (English Letters) 28(10), 1222–1229 (2015)CrossRef
27.
go back to reference Gopi, B.; Naga Krishna, N.; Sivaprasad, K.; Venkateswarlu, K.: Effect of rolling temperature on microstructure and mechanical properties of cryorolled Al–Mg–Si alloy reinforced with 3wt% TiB2 in situ composite. Adv. Mater. Res. 584, 556–560 (2012)CrossRef Gopi, B.; Naga Krishna, N.; Sivaprasad, K.; Venkateswarlu, K.: Effect of rolling temperature on microstructure and mechanical properties of cryorolled Al–Mg–Si alloy reinforced with 3wt% TiB2 in situ composite. Adv. Mater. Res. 584, 556–560 (2012)CrossRef
28.
go back to reference Yuan, Q.; Xu, G.; Tian, J.Y.; Liang, W.C.: The recrystallization behavior in ultrafine-grained structure steel fabricated by cold rolling and annealing. Arab. J. Sci. Eng. 42, 4771–4777 (2017)CrossRef Yuan, Q.; Xu, G.; Tian, J.Y.; Liang, W.C.: The recrystallization behavior in ultrafine-grained structure steel fabricated by cold rolling and annealing. Arab. J. Sci. Eng. 42, 4771–4777 (2017)CrossRef
29.
go back to reference Yuan, Q.; Xu, G.; Liu, M.; Hu, H.; Tian, J.: Effects of rolling temperature on the microstructure and mechanical properties in an ultrafine-grained low-carbon steel. Steel Res. Int. 90, 1800318 (2019)CrossRef Yuan, Q.; Xu, G.; Liu, M.; Hu, H.; Tian, J.: Effects of rolling temperature on the microstructure and mechanical properties in an ultrafine-grained low-carbon steel. Steel Res. Int. 90, 1800318 (2019)CrossRef
30.
go back to reference Tian, J.; Xu, G.; Liang, W.; Yuan, Q.: Effect of annealing on the microstructure and mechanical properties of a low-carbon steel with ultrafine grains. Metall. Microstruct. Anal. 6, 233–239 (2017)CrossRef Tian, J.; Xu, G.; Liang, W.; Yuan, Q.: Effect of annealing on the microstructure and mechanical properties of a low-carbon steel with ultrafine grains. Metall. Microstruct. Anal. 6, 233–239 (2017)CrossRef
31.
go back to reference Takahashi, M.; Bhadeshia, H.K.D.H.: Model for transition from upper to lower bainite. Mat. Sci. Tech. 6(7), 592–603 (1990)CrossRef Takahashi, M.; Bhadeshia, H.K.D.H.: Model for transition from upper to lower bainite. Mat. Sci. Tech. 6(7), 592–603 (1990)CrossRef
32.
go back to reference Lan, H.F.; Liu, W.J.; Liu, X.H.: Ultrafine ferrite grains produced by tempering cold-rolled martensite in low carbon and microalloyed steels. Isij Int. 47(11), 1652–1657 (2007)CrossRef Lan, H.F.; Liu, W.J.; Liu, X.H.: Ultrafine ferrite grains produced by tempering cold-rolled martensite in low carbon and microalloyed steels. Isij Int. 47(11), 1652–1657 (2007)CrossRef
33.
go back to reference Wang, Y.M.; Ma, E.: Temperature and strain rate effects on the strength and ductility of nanostructured copper. Appl. Phys. Lett. 83, 3165 (2003)CrossRef Wang, Y.M.; Ma, E.: Temperature and strain rate effects on the strength and ductility of nanostructured copper. Appl. Phys. Lett. 83, 3165 (2003)CrossRef
34.
go back to reference Chen, Y.; Li, Y.; He, L.; Lu, C.; Ding, H.; Li, Q.: The influence of cryo ECAP on microstructure and property of commercial pure aluminum. Mater. Lett. 62, 2821 (2008)CrossRef Chen, Y.; Li, Y.; He, L.; Lu, C.; Ding, H.; Li, Q.: The influence of cryo ECAP on microstructure and property of commercial pure aluminum. Mater. Lett. 62, 2821 (2008)CrossRef
35.
go back to reference Chatterjee, A.; Sharma, G.; Sarkar, A.; Singh, J.; Chakravartty, J.: A study on cryogenic temperature ECAP on the microstructure and mechanical properties of Al–Mg alloy. Mater. Sci. Eng. A 556, 653–657 (2012)CrossRef Chatterjee, A.; Sharma, G.; Sarkar, A.; Singh, J.; Chakravartty, J.: A study on cryogenic temperature ECAP on the microstructure and mechanical properties of Al–Mg alloy. Mater. Sci. Eng. A 556, 653–657 (2012)CrossRef
36.
go back to reference Bourell, D.L.; Rizk, A.: Influence of martensite transformation strain on the ductility of dual-phase steels. Acta Mater. 31, 609–617 (1983)CrossRef Bourell, D.L.; Rizk, A.: Influence of martensite transformation strain on the ductility of dual-phase steels. Acta Mater. 31, 609–617 (1983)CrossRef
37.
go back to reference Yuan, Q.; Xu, G.; Liu, S.; Liu, M.; Hu, H.; Li, G.: Effect of rolling reduction on microstructure and property of ultrafine grained low-carbon steel processed by cryorolling martensite. Metals 8, 518 (2018)CrossRef Yuan, Q.; Xu, G.; Liu, S.; Liu, M.; Hu, H.; Li, G.: Effect of rolling reduction on microstructure and property of ultrafine grained low-carbon steel processed by cryorolling martensite. Metals 8, 518 (2018)CrossRef
38.
go back to reference Mohd Fauzi, M.A.; Saud, S.N.; Hamzah, E.; Mamat, M.F.; Ming, L.J.: In vitro microstructure, mechanical properties and corrosion behaviour of low, medium and high carbon steel under different heat treatments. J. Bio- Tribo Corros. 5, 37 (2019)CrossRef Mohd Fauzi, M.A.; Saud, S.N.; Hamzah, E.; Mamat, M.F.; Ming, L.J.: In vitro microstructure, mechanical properties and corrosion behaviour of low, medium and high carbon steel under different heat treatments. J. Bio- Tribo Corros. 5, 37 (2019)CrossRef
39.
go back to reference Wang, D.; Zhao, Q.; Yang, T.; Chang, X.; Qu, S.; Sun, S.; Gao, S.; Zhang, C.; Lu, X.; Yin, Y.: Influences of thermomechanical conditions on corrosion behavior of low-carbon steels in artificial seawater. Int. J. Electrochem. Sci. 14, 2509–2525 (2019)CrossRef Wang, D.; Zhao, Q.; Yang, T.; Chang, X.; Qu, S.; Sun, S.; Gao, S.; Zhang, C.; Lu, X.; Yin, Y.: Influences of thermomechanical conditions on corrosion behavior of low-carbon steels in artificial seawater. Int. J. Electrochem. Sci. 14, 2509–2525 (2019)CrossRef
40.
go back to reference Dolega, L.; Adamczyk-Cieslak, B.; Mizera, J.; Kurzydłowski, K.J.: Corrosion resistance of model ultrafine-grained Al–Li alloys produced by severe plastic deformation. J. Mater. Sci. 47, 3026–3033 (2012)CrossRef Dolega, L.; Adamczyk-Cieslak, B.; Mizera, J.; Kurzydłowski, K.J.: Corrosion resistance of model ultrafine-grained Al–Li alloys produced by severe plastic deformation. J. Mater. Sci. 47, 3026–3033 (2012)CrossRef
41.
go back to reference Rai, P.K.; Shekhar, S.; Mondal, K.: Development of gradient microstructure in mild steel and grain size dependence of its electrochemical response. Corros. Sci. 138, 85–95 (2018)CrossRef Rai, P.K.; Shekhar, S.; Mondal, K.: Development of gradient microstructure in mild steel and grain size dependence of its electrochemical response. Corros. Sci. 138, 85–95 (2018)CrossRef
42.
go back to reference Chen, Y.; Tzeng, H.; Wei, L.; Wang, L.; Oung, J.; Shih, H.: Corrosion resistance and mechanical properties of low-alloy steels under atmospheric conditions. Corros. Sci. 47, 1001–1021 (2005)CrossRef Chen, Y.; Tzeng, H.; Wei, L.; Wang, L.; Oung, J.; Shih, H.: Corrosion resistance and mechanical properties of low-alloy steels under atmospheric conditions. Corros. Sci. 47, 1001–1021 (2005)CrossRef
43.
go back to reference Chaudhari, G.; Padap, A.; Behera, S.; Nath, S.: Processing, microstructure and corrosion behaviour of multi-axially forged low carbon steels. Corros. Eng. Sci. Technol. 46, 392–399 (2011)CrossRef Chaudhari, G.; Padap, A.; Behera, S.; Nath, S.: Processing, microstructure and corrosion behaviour of multi-axially forged low carbon steels. Corros. Eng. Sci. Technol. 46, 392–399 (2011)CrossRef
44.
go back to reference Argade, G.R.; Panigrahi, S.K.; Mishra, R.S.: Effects of grain size on the corrosion resistance of wrought magnesium alloys containing neodymium. Corros. Sci. 58, 145–151 (2012)CrossRef Argade, G.R.; Panigrahi, S.K.; Mishra, R.S.: Effects of grain size on the corrosion resistance of wrought magnesium alloys containing neodymium. Corros. Sci. 58, 145–151 (2012)CrossRef
45.
go back to reference Gopala Krishna, K.; Sivaprasad, K.; Sankara Narayanan, T.S.N.; Hari Kumar, K.C.: Localized corrosion of an ultrafine grained Al–4Zn–2Mg alloy produced by cryorolling. Corros. Sci. 60, 82–89 (2012)CrossRef Gopala Krishna, K.; Sivaprasad, K.; Sankara Narayanan, T.S.N.; Hari Kumar, K.C.: Localized corrosion of an ultrafine grained Al–4Zn–2Mg alloy produced by cryorolling. Corros. Sci. 60, 82–89 (2012)CrossRef
46.
go back to reference Hadzima, B.; Janecek, M.; Estrin, Y.; Kim, H.Y.: Microstructure and corrosion properties of ultrafine-grained interstitial free steel. Mater. Sci. Eng. A 462, 243–247 (2007)CrossRef Hadzima, B.; Janecek, M.; Estrin, Y.; Kim, H.Y.: Microstructure and corrosion properties of ultrafine-grained interstitial free steel. Mater. Sci. Eng. A 462, 243–247 (2007)CrossRef
47.
go back to reference Poornima, T.; Jagannatha, N.; Nityananda, S.A.: Studies on corrosion of annealed and aged 18 Ni 250 grade maraging steel in sulphuric acid medium. Portugaliae Electrochimica Acta 28(3), 173–188 (2010)CrossRef Poornima, T.; Jagannatha, N.; Nityananda, S.A.: Studies on corrosion of annealed and aged 18 Ni 250 grade maraging steel in sulphuric acid medium. Portugaliae Electrochimica Acta 28(3), 173–188 (2010)CrossRef
48.
go back to reference Osorio, W.R.; Goulart, P.R.; Garcia, A.: Effect of silicon content on microstructure and electrochemical behavior of hypoeutectic Al–Si alloys. Mater. Lett. 62, 365–369 (2008)CrossRef Osorio, W.R.; Goulart, P.R.; Garcia, A.: Effect of silicon content on microstructure and electrochemical behavior of hypoeutectic Al–Si alloys. Mater. Lett. 62, 365–369 (2008)CrossRef
49.
go back to reference Vera, R.; Rosales, B.; Tapia, C.: Effect of the exposure angle in the corrosion rate of plain carbon steel in a marine atmosphere. Corros. Sci. 45, 321–337 (2007)CrossRef Vera, R.; Rosales, B.; Tapia, C.: Effect of the exposure angle in the corrosion rate of plain carbon steel in a marine atmosphere. Corros. Sci. 45, 321–337 (2007)CrossRef
50.
go back to reference Osorio, W.; Peixoto, L.; Garcia, L.; Garcia, A.: Electrochemical corrosion response of a low carbon heat treated steel in a Nacl solution. Mater. Corros. 60, 804–812 (2009)CrossRef Osorio, W.; Peixoto, L.; Garcia, L.; Garcia, A.: Electrochemical corrosion response of a low carbon heat treated steel in a Nacl solution. Mater. Corros. 60, 804–812 (2009)CrossRef
51.
go back to reference Zhang, C.; Cai, D.; Liao, B.; Zhao, T.; Fan, Y.: A study on the dual-phase treatment of weathering steel 09cupcrni. Mater. Lett. 58, 1524–1529 (2004)CrossRef Zhang, C.; Cai, D.; Liao, B.; Zhao, T.; Fan, Y.: A study on the dual-phase treatment of weathering steel 09cupcrni. Mater. Lett. 58, 1524–1529 (2004)CrossRef
52.
go back to reference Hamdy, H.; Abdelghani, E.; Amin, M.A.: Inhibition of mild steel corrosion in hydrochloric acid solution by triazole derivatives: Part I. Polarization and EIS studies. Electrochim. Acta 52, 6359–6366 (2007)CrossRef Hamdy, H.; Abdelghani, E.; Amin, M.A.: Inhibition of mild steel corrosion in hydrochloric acid solution by triazole derivatives: Part I. Polarization and EIS studies. Electrochim. Acta 52, 6359–6366 (2007)CrossRef
Metadata
Title
Mechanical and Corrosion Properties of Low-Carbon Steel Processed by Cryorolling: Effect of Different Initial Microstructures
Authors
S. A. Zakaria
M. P. Lew
A. S. Anasyida
M. N. Idris
H. Zuhailawati
A. Ismail
Publication date
31-03-2021
Publisher
Springer Berlin Heidelberg
Published in
Arabian Journal for Science and Engineering / Issue 8/2021
Print ISSN: 2193-567X
Electronic ISSN: 2191-4281
DOI
https://doi.org/10.1007/s13369-021-05507-9

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