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A study on the effect of magnetic field on the corrosion behavior of materials.

机译:磁场对材料腐蚀行为的影响研究。

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摘要

Corrosion causes deterioration of a material due to its environment. Corrosion control has been one of the biggest challenges in most industries since many years. There are various notable and unknown factors that influence the rate of corrosion of a certain material/environment system. Magnetic fields and their driven effects on an electrochemical system has been recently gained interest. Various magnetic field driven forces occurring in an electrolyte have been reported during an electrochemical reaction. Lorentz force driven convection in the electrolyte, known as MHD effect and paramagnetic gradient forces are reported to be the most effective.;This research studies the effects of an external magnetic field on the electrochemical nature of materials in 3.5% NaCl solution. To understand and analyze magnetic field effects on a wide range of materials, both ferromagnetic and non-magnetic materials which are active, active-passive type are studied in near sea water solution i.e. 3.5% NaCl solution. Potentiodynamic polarization and corrosion potential vs time tests were carried out to study and analyze corrosion behavior in 3.5% NaCl solution. Corrosion tests results were obtained both with and without the influence of an external magnetic field of 0.75T. On comparing the electrochemical analysis results of both conditions in 3.5% NaCl solution, it clearly depicts the effect of an external magnetic field on the corrosion potential and corrosion rate. In the case of ferromagnetic materials like 416 SS and 1018 carbon steel, a cathodic shift of the corrosion potential and increase in the corrosion rate was observed. While for ferrous but non-magnetic and passivating material like 304 SS, no effect of the magnetic field was observed which can be attributed to its non-magnetic austenitic phase and highly stable oxide formation tendency. Also, no effect was observed on the non-ferrous alloys like Ti alloy (Ti6Al4V) and Zn due to not only because of diamagnetic nature of its ions but also of its actively passivating and dissolution nature respectively. On comparing the SEM micrographs taken post each experiment to study the surface morphology, it confirmed the increased corrosion activity on 416 SS and 1018 carbon steel and no effect on 304 SS, Ti and Zn.
机译:由于环境,腐蚀导致材料变质。多年来,腐蚀控制一直是大多数行业中最大的挑战之一。有多种显着和未知的因素会影响某种材料/环境系统的腐蚀速率。近年来,磁场及其对电化学系统的驱动作用已引起人们的关注。在电化学反应期间,已经报道了电解质中发生的各种磁场驱动力。据报道,电解质中的洛伦兹力驱动的对流,称为MHD效应和顺磁梯度力,是最有效的。本研究研究了外部磁场对3.5%NaCl溶液中材料电化学性质的影响。为了理解和分析磁场对多种材料的影响,在近海水溶液(即3.5%NaCl溶液)中研究了有源,有源-无源类型的铁磁和非磁材料。进行了电位动力学极化和腐蚀电位随时间变化的试验,以研究和分析在3.5%NaCl溶液中的腐蚀行为。在有和没有0.75T外部磁场的影响下均获得了腐蚀测试结果。通过比较这两种条件在3.5%NaCl溶液中的电化学分析结果,可以清楚地描述外部磁场对腐蚀电位和腐蚀速率的影响。在诸如416 SS和1018碳钢之类的铁磁材料的情况下,观察到腐蚀电位的阴极移动和腐蚀速率的增加。对于含铁但非磁性和钝化的材料(如304 SS),未观察到磁场的影响,这可归因于其非磁性奥氏体相和高度稳定的氧化物形成趋势。同样,对钛合金(Ti6Al4V)和Zn等有色金属合金也没有观察到影响,这不仅是由于其离子的抗磁特性,而且还在于其主动钝化和溶解特性。通过比较每个实验后拍摄的SEM显微照片以研究表面形貌,可以确认对416 SS和1018碳钢的腐蚀活性增强,而对304 SS,Ti和Zn无影响。

著录项

  • 作者

    Pondichery, Soundarya.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Materials Science.;Physics Electricity and Magnetism.
  • 学位 M.S.
  • 年度 2014
  • 页码 85 p.
  • 总页数 85
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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