海上机械部件的润滑:实现可持续可靠的电力生产

Juan Guillermo Zapata Tamayo, Sergei Glavatskih
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引用次数: 0

摘要

随着不同的波浪和潮汐能发电机进入商业部署阶段,由于海洋环境中遇到的恶劣操作条件,解决与集成动力起飞系统(PTO)的机器组件润滑相关的潜在问题变得更加重要。基于水溶性聚合物的环境可接受润滑剂(EALs)是一种减少波浪和潮汐能发电机机械部件摩擦和磨损的方法。尽管这些流体具有可生物降解和无毒的优点,但它们在防止腐蚀、严重摩擦和磨损方面不如其他合成流体或矿物油有效,从而增加了运动部件过早失效的风险。这项工作探索了不同水溶性聚合物在EALs配方中的潜力,这些EALs可以满足严格的环境法规,同时在海上作业条件下提供有效的抗磨损和腐蚀保护。为了评估这些润滑油作为传统矿物油替代品的潜力,研究人员分析了不同聚合物形成有效的全润滑膜的能力,这种膜可以保持接触面之间的分离,减轻磨损,防止腐蚀。研究了这些聚合物在不同浓度下的流变性能,以优化其在应用中的性能。报道了由不同分子量、浓度和粘度的水溶性聚合物配制的EALs的水动力成膜性能。与海水相比,钢构件暴露于不同配方时所表现出的耐腐蚀性是一个研究对象。该研究还旨在建立润滑油成膜性能、粘度和电阻抗之间的相关性。结果表明,高分子量聚合物即使在低浓度下也能在相对高压下在低速区形成分离膜。而随着速度的增加,流体粘度对于维持接触面之间的完整膜变得更加重要。随着水溶液中聚合物浓度的增加,钢的开路电位(OCP)趋于负,表明钢的耐蚀性变差。研究结果为EALs的设计提供了新的见解,该EALs可以有效地保护波浪和潮汐能发电机的机械部件,同时最大限度地减少对环境的影响。研究结果表明,水溶性聚合物是一种很有前途的海上应用解决方案,因为它们可以提供有效的全膜润滑,减轻磨损,防止腐蚀。这些聚合物可以帮助提高海上发电机的性能和使用寿命,同时最大限度地减少对环境的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LUBRICATION OF OFFSHORE MECHANICAL COMPONENTS: TOWARDS SUSTAINABLE & RELIABLE POWER PRODUCTION
As different wave and tidal energy generators advance towards the commercial deployment phase, addressing potential issues related to the lubrication of the machine components integrating the Power Take Off system (PTO) due to the harsh operating conditions encountered in the marine environment becomes even more essential. Environmentally Acceptable Lubricants (EALs) based on water-soluble polymers are proposed as a way to reduce friction and wear of the mechanical components in wave and tidal energy generators. Although these fluids have the advantage of being biodegradable and non-toxic, they have not shown to be as effective as other synthetic fluids, or mineral oils in preventing corrosion, severe friction, and wear, thus increasing the risk of moving parts experiencing premature failure. This work explores the potential of different water-soluble polymers to be used in the formulation of EALs that can meet the strict environmental regulations while providing effective protection against wear, and corrosion in offshore operating conditions. To evaluate the potential of these lubricants as an alternative to replace conventional mineral oils, different polymers were analyzed from the point of view of their ability to form an effective full lubricant film that can keep separation between the contacting surfaces, mitigate wear, and prevent corrosion. The rheological properties of these polymers were also studied at different concentrations in order to optimize the performance in the application. The hydrodynamic film build-up properties of EALs formulated with water-soluble polymers with different molecular weight, concentration, and viscosity are reported. The corrosion resistance exhibited by steel components when exposed to the different formulations compared to seawater was an object of examination. The study also aimed to establish correlations between the lubricant film-build up properties, viscosity, and electrical impedance. The results showed that high molecular weight polymers can form a separating film at relative high pressure in the low-speed region even at low polymer concentrations. While with the increasing speed, the fluid viscosity becomes more important to sustain a full film between contacting surfaces. With the increasing concentration of polymer in the aqueous solution the open circuit potential (OCP) becomes more negative indicating the deterioration of the steel corrosion resistance. The results provide new insights into the design of EALs that can effectively protect the mechanical components of wave and tidal energy generators while minimizing environmental impact. The findings suggest that water-soluble polymers are a promising solution for offshore applications, as they can provide efficient full film lubrication, mitigate wear, and prevent corrosion. These polymers can help to improve the performance and lifespan of offshore power generators while minimizing the environmental impact.
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