Corrosion resistance of bainitic steels alloyed with boron

Respuestas Pub Date : 2020-01-01 DOI:10.22463/0122820X.2410
Pedro Javier Lizarazo-Ávila, R. Rodríguez-Baracaldo, J. Olaya-Florez
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引用次数: 1

Abstract

Due to its good combination of properties and its wide range of application in the automotive and rail sector, among others, banitic steels have been studied by modifying their chemical composition using different alloys in order to improve their resistance, as is the case of boron, which is an element that allows to increase the mechanical properties of steel and its behavior against phenomena such as wear when is used in small quantities. In the present investigation, through of saline chamber and potentiodynamic polarization tests, the influence of boron was studied in steels with bainitic microstructure against phenomena as corrosion by varying its percentage in each sample analyzed, which was developed from the measurement of parameters such as the percentage of corroded area and the current density. Although no significant influence of boron was observed in the saline chamber results, in potentiodynamic polarization, a greater reduction in current density was observed for steel with a higher boron content, which results in a better resistance to corrosion compared to other steels that had a lower percentage of this element.
硼合金贝氏体钢的耐蚀性
由于其良好的组合性能及其在汽车和铁路部门的广泛应用,除其他外,人们通过使用不同的合金修改其化学成分来研究铁体钢,以提高其耐磨性,如硼的情况,硼是一种元素,可以增加钢的机械性能,并在少量使用时抵抗磨损等现象。在本研究中,通过盐室试验和动电位极化试验,通过对腐蚀面积百分比和电流密度等参数的测量,研究了硼在贝氏体微结构钢中对腐蚀现象的影响。虽然在盐水室结果中没有观察到硼的显著影响,但在动电位极化中,硼含量较高的钢的电流密度降低幅度更大,与硼含量较低的其他钢相比,硼含量较高的钢具有更好的耐腐蚀性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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