机械和电力设备的热防护:抗氧化镍基复合涂层的应用

V. Varavka, O. Kudryakov, V. Grishchenko
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引用次数: 0

摘要

介绍。在使用过热蒸汽热能的动力工程领域,提供设备可靠性和安全性的一个重要方面是所采用材料的耐热性。在制造感应过热器时,蒸汽管(盘管)的最佳材料是铜。然而,它的最终抗氧化性不超过400°C,这大大限制了蒸汽发生器的效率。因此,本研究的目的是研究用于蒸汽发生器盘管热保护的Mo-Ni-Cr体系复合电镀层在铜管样品上的氧化动力学。材料与方法。在实验铜管样品上形成了总厚度为12 ~ 35 μm的Mo-Ni-Cr复合镀层体系。在铜管表面形成厚度约1.5 μm的Mo亚层,防止Cu向Ni涂层扩散。涂层表面1.5 μm厚的铬层作为氧化过程的指示物。采用光学显微镜、电子显微镜、能量色散分析和氧化膜生长参数的精密测定等方法,对铜表面氧化过程和Mo-Ni-Cr复合镀层在铜基体上的氧化过程进行了对比分析。通过实验确定了铜基体和镍镀层的热稳定时间间隔。得到的实验依赖关系表征了铜氧化的抛物线规律,当温度高于350℃时,CuO形成单相扩散区,当温度高于750℃时,镍开始向Ni2O3氧化物转变。氧化膜按二次规律生长,薄膜厚度迅速增加,应力积累,开裂和剥落。讨论与结论。结果表明,在750 ~ 800℃的高温下,Mo-Ni-Cr电镀具有良好的耐高温性能。介绍了Mo和Cr在涂层结构中的功能作用。重点介绍了所研究涂层在提高中、低功率工业感应过热器蒸汽管道热稳定性方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aspects of Thermal Protection of Machine-Building and Power Equipment: Application of Oxidation-Resistant Combined Nickel-Based Coatings
Introduction. In the areas of power engineering where the thermal energy of superheated steam is used, an important aspect of providing the reliability and safety of equipment is the heat resistance of the materials employed. In the manufacture of induction superheaters, the optimal material for the steam pipe (coil) is copper. However, its ultimate resistance to oxidation does not exceed 400 °C, which significantly limits the efficiency of steam generators. Therefore, the objective of the work was to study the kinetics of oxidation of the combined galvanic coating of the Mo-Ni-Cr system applied to copper tubular samples and intended for thermal protection of steam generator coils.Materials and Methods. A combined electroplating of the Mo-Ni-Cr system with a total thickness of 12–35 μm was formed on the experimental copper tubular samples. A Mo sublayer with a thickness of about 1.5 μm on the surface of the copper tube was formed to prevent the diffusion of Cu into the Ni coating. A 1.5 μm thick chromium layer on the coating surface acted as an indicator of the oxidation process. A comparative analysis of the oxidation processes of the copper surface and the combined coating of the Mo-Ni-Cr system on a copper substrate was carried out using the methods of optical and electron microscopy, energy dispersive analysis, and precision determination of the growth parameters of oxide films.Results. The intervals of thermal stability of the copper substrate and nickel coating were experimentally determined. The obtained experimental dependences characterized the parabolic law of copper oxidation with the formation of a single-phase diffusion zone of CuO at temperatures above 350 °C, and nickel at temperatures above 750 °C, when the transition of NiO monoxide into oxide Ni2O3 began. The growth of oxide films according to quadratic laws provided a rapid increase in the thickness of the films, the accumulation of stresses in them, cracking, and chipping.Discussion and Conclusion. It is shown that the Mo-Ni-Cr electroplating is resistant to heating during long-term operation up to temperatures of 750–800 °C. The functional roles of Mo and Cr in the coating architecture were described. The work focused on the applied aspect of using the coating under study to increase the thermal stability of the steam pipelines of industrial induction superheaters with low and medium power.
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