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单相CoCrFeNi高熵合金的组成元素对其在NaCl溶液中的耐蚀性能的影响 |
杨海欧1, 尚旭亮1, 王理林2, 王志军1( ), 王锦程1, 林鑫1 |
1 西北工业大学凝固技术国家重点实验室 西安 710072 2 西安理工大学材料科学与工程学院 西安 710048 |
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Effect of Constituent Elements on the Corrosion Resistance of Single-Phase CoCrFeNi High-Entropy Alloys in NaCl Solution |
Haiou YANG1, Xuliang SHANG1, Lilin WANG2, Zhijun WANG1( ), Jincheng WANG1, Xin LIN1 |
1 State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an 710072, China 2 School of Materials Science and Engineering, Xi'an University of Technology, Xi'an 710048, China |
引用本文:
杨海欧, 尚旭亮, 王理林, 王志军, 王锦程, 林鑫. 单相CoCrFeNi高熵合金的组成元素对其在NaCl溶液中的耐蚀性能的影响[J]. 金属学报, 2018, 54(6): 905-910.
Haiou YANG,
Xuliang SHANG,
Lilin WANG,
Zhijun WANG,
Jincheng WANG,
Xin LIN.
Effect of Constituent Elements on the Corrosion Resistance of Single-Phase CoCrFeNi High-Entropy Alloys in NaCl Solution[J]. Acta Metall Sin, 2018, 54(6): 905-910.
[1] | Zhang Y, Zuo T T, Tang Z, et al.Microstructures and properties of high-entropy alloys[J]. Prog. Mater. Sci., 2014, 61: 1 | [2] | Murty B S, Yeh J W, Ranganathan S.High-Entropy Alloys[M]. London: Butterworth-Heinemann, 2014: 1 | [3] | Yeh J W, Chen S K, Lin S J, et al.Nanostructured high-entropy alloys with multiple principal elements: Novel alloy design concepts and outcomes[J]. Adv. Eng. Mater., 2004, 6: 299 | [4] | Cantor B, Chang I T H, Knight P, et al. Microstructural development in equiatomic multicomponent alloys [J]. Mater. Sci. Eng., 2004, A375-377: 213 | [5] | Sohn S, Liu Y H, Liu J B, et al.Noble metal high entropy alloys[J]. Scr. Mater., 2017, 126: 29 | [6] | Tsai M H, Yeh J W.High-entropy alloys: A critical review[J]. Mater. Lett., 2014, 2: 107 | [7] | Shi Y Z, Yang B, Liaw P K.Corrosion-resistant high-entropy alloys: A review[J]. Metals, 2017, 7: 43 | [8] | Xiang C, Wang J Z, Fu H M, et al.Corrosion behavior of several high-entropy alloys in high temperature high pressure water[J]. J. Chin. Soc. Corros. Prot., 2016, 36: 107(向超, 王家贞, 付华萌等. 几种高熵合金在核电高温高压水中的腐蚀行为研究[J]. 中国腐蚀与防护学报, 2016, 36: 107) | [9] | Tang Z, Huang L, He W, et al.Alloying and processing effects on the aqueous corrosion behavior of high-entropy alloys[J]. Entropy, 2014, 16: 895 | [10] | Kozak R, Sologubenko A, Steurer W.Single-phase high-entropy alloys—An overview[J]. Z. Kristallogr., 2015, 230: 55 | [11] | Qiu Y, Thomas S, Gibson M A, et al.Corrosion of high entropy alloys[J]. NPJ Mater. Degrad., 2017, 1: 15 | [12] | Wu Z, Bei H, Otto F, et al.Recovery, recrystallization, grain growth and phase stability of a family of FCC-structured multi-component equiatomic solid solution alloys[J]. Intermetallics, 2014, 46: 131 | [13] | Chen Y Y, Hong U T, Yeh J W, et al.Selected corrosion behaviors of a Cu0.5NiAlCoCrFeSi bulk glassy alloy in 288 ℃ high-purity water[J]. Scr. Mater., 2006, 54: 1997 | [14] | Chen Y Y, Duval T, Hong U T, et al.Corrosion properties of a novel bulk Cu0.5NiAlCoCrFeSi glassy alloy in 288 ℃ high-purity water[J]. Mater. Lett., 2007, 61: 2692 | [15] | Hsu Y J, Chiang W C, Wu J K.Corrosion behavior of FeCoNiCrCux high-entropy alloys in 3.5% sodium chloride solution[J]. Mater. Chem. Phys., 2005, 92: 112 | [16] | Lin C M, Tsai H L.Evolution of microstructure, hardness, and corrosion properties of high-entropy Al0.5CoCrFeNi alloy[J]. Intermetallics, 2011, 19: 288 | [17] | Chou Y L, Yeh J W, Shih H C.Effect of molybdenum on the pitting resistance of Co1.5CrFeNi1.5Ti0.5Mox alloys in chloride solutions[J]. Corrosion, 2011, 67: 085002 | [18] | Cheng J B, Liang X B, Xu B S.Effect of Nb addition on the structure and mechanical behaviors of CoCrCuFeNi high-entropy alloy coatings[J]. Surf. Coat. Technol., 2014, 240: 184 | [19] | Shang C Y, Axinte E, Sun J, et al.CoCrFeNi(W1-xMox) high-entropy alloy coatings with excellent mechanical properties and corrosion resistance prepared by mechanical alloying and hot pressing sintering[J]. Mater. Des., 2017, 117: 193 | [20] | Qiu X W, Wu M J, Liu C G, et al.Corrosion performance of Al2CrFeCoxCuNiTi high-entropy alloy coatings in acid liquids[J]. J. Alloys Compd., 2017, 708: 353 | [21] | Wang P, Cai H N, Cheng X W.Effect of Ni/Cr ratio on phase, microstructure and mechanical properties of NixCoCuFeCr2-x (x=1.0, 1.2, 1.5, 1.8 mol) high entropy alloys[J]. J. Alloys Compd., 2016, 662: 20 | [22] | Chou Y L, Yeh J W, Shih H C.The effect of molybdenum on the corrosion behaviour of the high-entropy alloys Co1.5CrFeNi1.5Ti0.5Mox in aqueous environments[J]. Corros. Sci., 2010, 52: 2571 | [23] | Qiu X W, Liu C G.Microstructure and properties of Al2CrFeCoCuTiNix high-entropy alloys prepared by laser cladding[J]. J. Alloys Compd., 2013, 553: 216 | [24] | He F, Wang Z J, Wu Q F, et al.Solid solution island of the Co-Cr-Fe-Ni high entropy alloy system[J]. Scr. Mater., 2017, 131: 42 | [25] | Shang X L, Wang Z J, He F, et al.The intrinsic mechanism of corrosion resistance for FCC high entropy alloys[J]. Sci. China Technol. Sci., 2018, 61: 189 | [26] | Hamdy A S, El-Shenawy E, El-Bitar T.Electrochemical impedance spectroscopy study of the corrosion behavior of some niobium bearing stainless steels in 3.5% NaCl[J]. Int. J. Electrochem. Sci., 2006, 1: 171 | [27] | Kumar N, Fusco M, Komarasamy M, et al.Understanding effect of 3.5 wt.% NaCl on the corrosion of Al0.1CoCrFeNi high-entropy alloy[J]. J. Nucl. Mater., 2017, 495: 154 | [28] | Shi Y Z, Yang B, Xie X, et al.Corrosion of AlxCoCrFeNi high-entropy alloys: Al-content and potential scan-rate dependent pitting behavior[J]. Corros. Sci., 2017, 119: 33 | [29] | Kocijan A, Milo?ev I, Pihlar B.Cobalt-based alloys for orthopaedic applications studied by electrochemical and XPS analysis[J]. J. Mater. Sci.: Mater. Med., 2004, 15: 643 | [30] | Sekine I, Chinda A.Comparison of the corrosion behavior of pure Fe, Ni, Cr, and type 304 stainless steel in formic acid solution[J]. Corrosion, 1984, 40: 95 |
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