Characterization of corrosion products formed in high-strength dual-phase steels under an accelerated corrosion test

被引:4
作者
Giray, Digdem [1 ,2 ]
Sonmez, Mehmet Seref [2 ]
Yamanoglu, Ridvan [3 ]
Yavuz, Hasan Ismail [3 ]
Muratal, Onur [1 ,3 ]
机构
[1] TOYOTETSU Automot Parts Ind & Trade Inc, TR-41420 Kocaeli, Turkiye
[2] Istanbul Tech Univ, Dept Met & Mat Engn, TR-34475 Istanbul, Turkiye
[3] Kocaeli Univ, Dept Met & Mat Engn, TR-41380 Kocaeli, Turkiye
来源
ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH | 2024年 / 57卷
关键词
Dual phase steel; Electrochemical analysis; Raman spectroscopy; X -Ray diffraction; Microstructural characterization; CARBON-STEEL; BEHAVIOR; COATINGS; EXPOSURE; SURFACE;
D O I
10.1016/j.jestch.2024.101796
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
There are some researches in the literature on the mechanical characteristics of dual-phase (DP) steels used in the automotive industry, but there is no comprehensive research on the corrosion behavior of these steels. In this work, the corrosion behavior of DP steels (DP440, DP590, DP980) exposed to two cycles of accelerated corrosion testing in accordance with Ford CETP 00.00-L-467 was observed. Raman and X-ray diffraction (XRD) techniques were used to classify the corrosion products, and the morphology of the samples was studied using a scanning electron microscope (SEM). Goethite and haematite were the primary chemical compounds determined. In highmechanical strength DP steels, akaganeite was also identified in corroded specimens. The compounds formed due to corrosion were revealed by SEM images. In this work, according to the results of Raman spectroscopy, which was employed for the first time to reveal corrosion products in high-strength dual-phase steels, it was discovered that corrosion products increased with increasing mechanical strength due to an increasing martensite phase volume percentage. Polarization tests were carried out to support the electrochemical data reported by the Raman analysis. Similarly, an increase in the amount of martensite phase in the microstructure led to a decrease in the material's corrosion resistance. Polarization experiments were carried out to support the electrochemical data interpreted by Raman analysis. In addition, an increase in the amount of martensite phase in the microstructure led to a decrease in the corrosion resistance of the material. In addition, information regarding the material's electrochemical performance was obtained through Raman analysis. As shown by Raman, XRD, and polarization tests, the increase in corrosion products formed due to the increase in the amount of martensite led to a decrease in corrosion resistance.
引用
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页数:6
相关论文
共 31 条
[1]   An attempt to classify the morphologies presented by different rust phases formed during the exposure of carbon steel to marine atmospheres [J].
Alcantara, J. ;
Chico, B. ;
Simancas, J. ;
Diaz, I. ;
de la Fuente, D. ;
Morcillo, M. .
MATERIALS CHARACTERIZATION, 2016, 118 :65-78
[2]   Biocompatibility and Corrosion of Microplasma-Sprayed Titanium and Tantalum Coatings versus Titanium Alloy [J].
Alontseva, Darya ;
Safarova , Yuliya ;
Voinarovych, Sergii ;
Obrosov, Aleksei ;
Yamanoglu, Ridvan ;
Khoshnaw, Fuad ;
Yavuz, Hasan Ismail ;
Nessipbekova, Assem ;
Syzdykova, Aizhan ;
Azamatov, Bagdat ;
Khozhanov, Alexandr ;
Weiss, Sabine .
COATINGS, 2024, 14 (02)
[3]  
Antunes Renato Altobelli, 2003, Mat. Res., V6, P403
[4]   Characterization of Corrosion Products on Carbon Steel Exposed to Natural Weathering and to Accelerated Corrosion Tests [J].
Antunes, Renato Altobelli ;
Ichikawa, Rodrigo Uchida ;
Martinez, Luis Gallego ;
Costa, Isolda .
INTERNATIONAL JOURNAL OF CORROSION, 2014, 2014
[5]   Corrosion Behavior of Shot-Peened Ti6Al4V Alloy Produced via Pressure-Assisted Sintering [J].
Avcu, Egemen ;
Abakay, Eray ;
Avcu, Yasemin Yildiran ;
Calim, Emirhan ;
Gokalp, Idris ;
Iakovakis, Eleftherios ;
Koc, Funda Gul ;
Yamanoglu, Ridvan ;
Akinci, Akin ;
Guney, Mert .
COATINGS, 2023, 13 (12)
[6]   Corrosion resistance of composite coatings on low-carbon steel containing hydrophobic and superhydrophobic layers in combination with oxide sublayers [J].
Boinovich, L. B. ;
Gnedenkov, S. V. ;
Alpysbaeva, D. A. ;
Egorkin, V. S. ;
Emelyanenko, A. M. ;
Sinebryukhov, S. L. ;
Zaretskaya, A. K. .
CORROSION SCIENCE, 2012, 55 :238-245
[7]   Correlation of micro-galvanic corrosion behavior with corrosion rate in the initial corrosion process of dual phase steel [J].
Chen, Heng ;
Lv, Zhaochong ;
Lu, Lin ;
Huang, Yunhua ;
Li, Xiaogang .
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2021, 15 :3310-3320
[8]   Characterisation of rust surfaces formed on mild steel exposed to marine atmospheres using XRD and SEM/Micro-Raman techniques [J].
de la Fuente, D. ;
Alcantara, J. ;
Chico, B. ;
Diaz, I. ;
Jimenez, J. A. ;
Morcillo, M. .
CORROSION SCIENCE, 2016, 110 :253-264
[9]   Carbon steel corrosion: a review of key surface properties and characterization methods [J].
Dwivedi, Deepak ;
Lepkova, Katerina ;
Becker, Thomas .
RSC ADVANCES, 2017, 7 (08) :4580-4610
[10]  
Eliaz N., 2019, Physical Electrochemistry: Fundamentals, Techniques, and Applications