灰分和硫酸盐对模拟富氧燃烧环境中镍基合金腐蚀的影响

IF 2.1 3区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Oxidation of Metals Pub Date : 2024-08-07 DOI:10.1007/s11085-024-10289-0
Xuteng Xi, Jianqiang Zhang, David J. Young
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引用次数: 0

摘要

灰+(0、10、50 和 90)wt% 硫酸盐混合沉积物下的 Ni-25Cr-(2Mn-1Si) 合金在 650 和 750 °C 的 Ar-60CO2-20H2O 气体中暴露长达 300 小时,形成保护铬和富镍氧化物区域。与无沉积物条件相比,灰+硫酸盐混合物的存在改善了镍-25Cr 合金的保护性能,增加了表面薄层保护铬的覆盖范围。增加这些混合物中的硫酸盐比例可加速铬鳞的生长并减少内部氧化区(IOZ)。这些有利影响在 750 °C 时更为显著,保护鳞片的表面覆盖率增加,并且在 IOZ-基底界面的非保护区域下方形成了铬带。合金中添加的锰和硅通常会减缓外部氧化镍和 IOZ 的生长,但不会导致形成唯一的铬鳞片。
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Effect of Ash and Sulphate on Corrosion of Ni-Based Alloys in a Simulated Oxyfuel Combustion Environment

Alloys of Ni–25Cr–(2Mn–1Si) under mixed deposits of ash + (0, 10, 50 and 90) wt% sulphate were exposed to an Ar–60CO2–20H2O gas at 650 and 750 °C for up to 300 h, forming both protective chromia and regions of Ni-rich oxide. The presence of ash + sulphate mixtures improved Ni–25Cr alloy protection, increasing surface coverage by thin, protective chromia compared with the deposit-free condition. Increasing sulphate proportions in these mixtures led to an accelerated chromia scale growth and reduced internal oxidation zone (IOZ). These beneficial effects were more significant at 750 °C, where surface coverage by the protective scale was increased, and a chromia band was formed beneath nonprotective regions at the IOZ-substrate interface. Alloy additions of Mn and Si generally slowed the growth of outer NiO and IOZ but did not lead to exclusive chromia scale formation.

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来源期刊
Oxidation of Metals
Oxidation of Metals 工程技术-冶金工程
CiteScore
5.10
自引率
9.10%
发文量
47
审稿时长
2.2 months
期刊介绍: Oxidation of Metals is the premier source for the rapid dissemination of current research on all aspects of the science of gas-solid reactions at temperatures greater than about 400˚C, with primary focus on the high-temperature corrosion of bulk and coated systems. This authoritative bi-monthly publishes original scientific papers on kinetics, mechanisms, studies of scales from structural and morphological viewpoints, transport properties in scales, phase-boundary reactions, and much more. Articles may discuss both theoretical and experimental work related to gas-solid reactions at the surface or near-surface of a material exposed to elevated temperatures, including reactions with oxygen, nitrogen, sulfur, carbon and halogens. In addition, Oxidation of Metals publishes the results of frontier research concerned with deposit-induced attack. Review papers and short technical notes are encouraged.
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