The Effects of Chromium on the High Temperature Corrosion of Ni–Cr Alloys Exposed to Calcium Sulfate

IF 2.1 3区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Oxidation of Metals Pub Date : 2024-03-08 DOI:10.1007/s11085-024-10232-3
Nicholas Ury, Vilupanur Ravi
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Abstract

Calcium- and sulfur-rich deposits have been linked to failure of turbine components as a consequence of high temperature exposures (> 1000 °C). There are only limited studies on the effects of these deposits on the degradation behavior of turbine alloys. To gain further understanding of this phenomenon, a systematic study was undertaken with model binary nickel–chromium alloys. Three alloys with different chromium contents—low, medium and high—represented by Ni-5Cr, Ni-10Cr and Ni-18Cr, were exposed to CaSO4-deposit-induced corrosion in the 900–1100 °C temperature range. At 1000 and 1100 °C, the decomposition of CaSO4 (either by decomposition to CaO and SO3 or by reacting with Cr2O3) led to the formation of calcium chromates and chromium sulfides. At the lower temperature, 900 °C, the limited decomposition of CaSO4 allowed the formation of a continuous Cr2O3 scale.

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铬对暴露于硫酸钙的镍铬合金高温腐蚀的影响
富含钙和硫的沉积物与涡轮机部件在高温(1000 °C)条件下发生故障有关。有关这些沉积物对涡轮机合金降解行为影响的研究非常有限。为了进一步了解这一现象,我们对模型二元镍铬合金进行了系统研究。在 900-1100 °C 的温度范围内,三种不同铬含量(低、中、高)的合金(Ni-5Cr、Ni-10Cr 和 Ni-18Cr)暴露在 CaSO4 沉淀诱导的腐蚀下。在 1000 和 1100 °C,CaSO4 的分解(分解为 CaO 和 SO3 或与 Cr2O3 反应)导致铬酸钙和铬硫化物的形成。在较低温度(900 °C)下,CaSO4 的有限分解可形成连续的 Cr2O3 鳞片。
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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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