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用于聚光太阳能发电系统的双相高熵合金的熔盐腐蚀行为

Molten Salt Corrosion Behavior of Dual-Phase High Entropy Alloy for Concentrating Solar Power Systems.

作者信息

Patel Kunjal, Hasannaeimi Vahid, Sadeghilaridjani Maryam, Muskeri Saideep, Mahajan Chaitanya, Mukherjee Sundeep

机构信息

Department of Material Science and Engineering, University of North Texas, Denton, TX 76203, USA.

出版信息

Entropy (Basel). 2023 Feb 4;25(2):296. doi: 10.3390/e25020296.

Abstract

Dual-phase high entropy alloys have recently attracted widespread attention as advanced structural materials due to their unique microstructure, excellent mechanical properties, and corrosion resistance. However, their molten salt corrosion behavior has not been reported, which is critical in evaluating their application merit in the areas of concentrating solar power and nuclear energy. Here, the molten salt corrosion behavior of AlCoCrFeNi eutectic high-entropy alloy (EHEA) was evaluated in molten NaCl-KCl-MgCl salt at 450 °C and 650 °C in comparison to conventional duplex stainless steel 2205 (DS2205). The EHEA showed a significantly lower corrosion rate of ~1 mm/year at 450 °C compared to ~8 mm/year for DS2205. Similarly, EHEA showed a lower corrosion rate of ~9 mm/year at 650 °C compared to ~20 mm/year for DS2205. There was selective dissolution of the body-centered cubic phase in both the alloys, B2 in AlCoCrFeNi and α-Ferrite in DS2205. This was attributed to micro-galvanic coupling between the two phases in each alloy that was measured in terms of Volta potential difference using a scanning kelvin probe. Additionally, the work function increased with increasing temperature for AlCoCrFeNi indicating that the FCC-L1 phase acted as a barrier against further oxidation and protected the underlying BCC-B2 phase with enrichment of noble elements in the protective surface layer.

摘要

双相高熵合金由于其独特的微观结构、优异的力学性能和耐腐蚀性,最近作为先进结构材料受到广泛关注。然而,它们的熔盐腐蚀行为尚未见报道,而这对于评估其在聚光太阳能和核能领域的应用价值至关重要。在此,将AlCoCrFeNi共晶高熵合金(EHEA)与传统双相不锈钢2205(DS2205)相比较,在450℃和650℃的NaCl-KCl-MgCl熔盐中评估了其熔盐腐蚀行为。与DS2205的约8毫米/年相比,EHEA在450℃时的腐蚀速率显著更低,约为1毫米/年。同样,与DS2205的约20毫米/年相比,EHEA在650℃时的腐蚀速率更低,约为9毫米/年。两种合金中体心立方相均发生选择性溶解,AlCoCrFeNi中的B2相和DS2205中的α-铁素体相。这归因于每种合金中两相之间的微电偶耦合,使用扫描开尔文探针根据伏特电位差进行测量。此外,AlCoCrFeNi的功函数随温度升高而增加,表明面心立方-L1相起到了防止进一步氧化的屏障作用,并通过在保护表面层中富集贵金属元素保护了下面的体心立方-B2相。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e3f/9955357/221398bee97c/entropy-25-00296-g001.jpg

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