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铁素体与奥氏体不锈钢
AISI 430和AISI 316L)在CSP/CST应用中与LiNaK碳酸盐共晶混合物接触时腐蚀行为的比较
| 作者 | Mafalda Gil · Fátima Pedros · Teresa Paiva · Isabel Figueir · Fernando A.Costa Oliveir · Teresa C.Diamantin |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 298 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 SiC器件 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Importance of optimizing the descaling methods used to evaluate the [corrosion rate](https://www.sciencedirect.com/topics/engineering/corrosion-rate "Learn more about corrosion rate from ScienceDirect's AI-generated Topic Pages"). |
语言:
中文摘要
本研究重点探讨了两种不锈钢——奥氏体AISI 316L和铁素体AISI 430,在650 °C下长期暴露于LiNaK碳酸盐共晶混合物中的腐蚀速率及腐蚀机理。选择这两种不锈钢是基于它们在固有特性以及各自相关成本方面的差异。研究还强调了优化用于评估腐蚀速率的除垢方法的重要性。根据ISO 17245:2015标准,采用重量法测量腐蚀速率,结果显示两种钢均表现出渐近型腐蚀行为:经过2000小时的试验后,AISI 430的腐蚀速率为237 ± 21 µm,而AISI 316L为151 ± 13 µm。通过扫描电子显微镜/能谱分析(SEM/EDS)、辉光放电原子发射光谱(GDOES)以及X射线衍射(XRD)等技术对腐蚀机理进行了分析,识别出具有不同组成的清晰氧化层结构。鉴于所观察到的腐蚀机理以及其较低的成本,AISI 430钢在配备适当防护涂层的前提下,在聚光太阳能发电/太阳能热利用(CSP/CST)电站中展现出良好的应用前景。
English Abstract
Abstract This study focuses on the corrosion rates and mechanisms of two stainless steels, austenitic AISI 316L and ferritic AISI 430, in contact with a eutectic mixture of LiNaK carbonates in long-term tests at 650 °C. The selection of these two stainless steels was based on their differences, both in their intrinsic characteristics and in the cost associated with each one. The research also underscores the importance of optimizing the descaling methods used to evaluate the corrosion rate. Corrosion rates were measured gravimetrically according to ISO 17245:2015, revealing an asymptotic behavior for both steels, with AISI 430 with a corrosion rate of 237 ± 21 µm and AISI 316L of 151 ± 13 µm after 2000 h of testing. Corrosion mechanisms were analyzed using SEM/EDS, GDOES, and XRD techniques, which identified well-defined oxide layers with varying compositions. Given the observed corrosion mechanisms and its lower cost, AISI 430 steel seems to have great applicability in CSP/CST plants, provided it is paired with an appropriate protective coating.
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SunView 深度解读
该研究对阳光电源光热储能系统具有重要参考价值。LiNaK碳酸盐作为高温储热介质(650°C)的耐腐蚀性分析,可指导PowerTitan等大型储能系统在光热电站(CSP)应用中的材料选型。AISI 430钢配合防护涂层的经济性方案,为ST系列PCS的热管理系统及储热罐体设计提供成本优化思路。研究中的长周期腐蚀机理分析方法,可应用于iSolarCloud平台的预测性维护模型,提升光热储能设备全生命周期可靠性,支撑阳光电源在新型储能领域的技术创新。