ENHANCEMENT OF MARINE CORROSION AND TRIBOCORROSION RESISTANCE OF OFFSHORE MOORING CHAIN STEEL BY ALUMINIZING PROCESS

IF 3.9 4区 工程技术 Q1 ENGINEERING, MARINE Brodogradnja Pub Date : 2022-10-01 DOI:10.21278/brod73407
S. Alkan
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引用次数: 3

Abstract

The safety of mooring systems and accessories is one of the most critical issues in the structural integrity of floating oil/gas and renewable offshore structures. Mooring chains and accessories operate under dynamic conditions in harsh marine environments. They are subject to severe wear and corrosion between their links due to relative movement from waves, wind, and ocean currents that disrupt structural integrity. To cope with this problem, the pack-aluminizing process was applied on the R4 grade offshore mooring chain steel for 2 h at 850 °C to improve corrosion and wear-corrosion (tribocorrosion) resistance in 3.5% NaCl. The tribocorrosion behaviour of untreated and aluminized samples was investigated by a tribo-electrochemical setup that simultaneously allows for collecting the wear and corrosion data. Potentiodynamic and potentiostatic corrosion and tribocorrosion tests were carried out to understand corrosion kinetics. Optical, SEM, XRD and EDS analyses were performed to characterize the aluminide layer and surface morphologies before and after tribocorrosion investigations. In polarization scans under corrosion and tribocorrosion conditions, the current showed a significant activation stretch of several orders of magnitude, with minor potential changes in the anodic region. Due to the galvanic effects of sliding under natural electrochemical conditions, the untreated R4 alloy exhibited cathodic properties in the wear track, while the aluminium coating was out of the wear track due to its oxide-forming ability. At the cathodic potential, two hard Al2O3 materials under pure mechanical effects and third bodies emerging from cracks on the coating surface increase the friction coefficient (COF), while the oxide product film, which has a lubricating ability and pits which reduces the contact area, caused a decrease in COF at the high anodic potential. The study revealed that while the aluminide layer improved the corrosion and tribological character of R4 alloy, material loss from wear track increased due to micro fractures and cracks in the coating layer during sliding tribocorrosion conditions.
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渗铝工艺提高海洋系泊锚链钢的耐海洋腐蚀和耐摩擦腐蚀性能
系泊系统及其附件的安全是浮式油气和可再生海上结构完整性的关键问题之一。在恶劣的海洋环境中,系泊链和附件在动态条件下运行。由于海浪、风和洋流的相对运动破坏了结构的完整性,它们的连接之间会受到严重的磨损和腐蚀。为了解决这一问题,对R4级海上系泊锚链钢在850℃下进行了2小时的包层渗铝工艺,以提高3.5% NaCl环境下的耐腐蚀和耐磨损(摩擦腐蚀)能力。通过摩擦电化学装置同时收集磨损和腐蚀数据,研究了未经处理和镀铝样品的摩擦腐蚀行为。通过动电位、恒电位腐蚀和摩擦腐蚀试验来了解腐蚀动力学。通过光学、扫描电镜、x射线衍射和能谱分析对摩擦腐蚀前后的铝化物层和表面形貌进行了表征。在腐蚀和摩擦腐蚀条件下的极化扫描中,电流显示出几个数量级的显著激活延伸,阳极区域的电位变化很小。在自然电化学条件下,由于滑动的电效应,未处理的R4合金在磨损轨迹中表现出阴极性能,而铝涂层由于其形成氧化的能力而处于磨损轨迹之外。在阴极电位下,纯机械作用下的两种硬Al2O3材料和涂层表面裂纹产生的第三体使摩擦系数(COF)增加,而具有润滑能力的氧化产物膜和减少接触面积的凹点使COF降低。研究表明,虽然铝化物层改善了R4合金的腐蚀和摩擦学性能,但在滑动摩擦腐蚀条件下,由于涂层中的微断裂和裂纹,磨损轨迹的材料损失增加。
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来源期刊
Brodogradnja
Brodogradnja ENGINEERING, MARINE-
CiteScore
4.30
自引率
38.90%
发文量
33
审稿时长
>12 weeks
期刊介绍: The journal is devoted to multidisciplinary researches in the fields of theoretical and experimental naval architecture and oceanology as well as to challenging problems in shipbuilding as well shipping, offshore and related shipbuilding industries worldwide. The aim of the journal is to integrate technical interests in shipbuilding, ocean engineering, sea and ocean shipping, inland navigation and intermodal transportation as well as environmental issues, overall safety, objects for wind, marine and hydrokinetic renewable energy production and sustainable transportation development at seas, oceans and inland waterways in relations to shipbuilding and naval architecture. The journal focuses on hydrodynamics, structures, reliability, materials, construction, design, optimization, production engineering, building and organization of building, project management, repair and maintenance planning, information systems in shipyards, quality assurance as well as outfitting, powering, autonomous marine vehicles, power plants and equipment onboard. Brodogradnja publishes original scientific papers, review papers, preliminary communications and important professional papers relevant in engineering and technology.
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