J. Mater. Sci. Technol. ›› 2026, Vol. 260: 53-66.DOI: 10.1016/j.jmst.2025.10.011
• Research Article • Previous Articles Next Articles
Gao Fengyanga, Liu Yulinga,*, Zhang Ligangb, Du Yonga, Seifert Hans Jürgenc,*
Received:2025-06-26
Revised:2025-10-02
Accepted:2025-10-03
Published:2026-07-20
Online:2025-10-20
Contact:
*E-mail addresses: liu.yuling@csu.edu.cn (Y. Liu), hans.seifert@kit.edu (H.J. Seifert)
Gao Fengyang, Liu Yuling, Zhang Ligang, Du Yong, Seifert Hans Jürgen. Thermodynamic investigation of the Al2O3-CaO-Fe2O3-FeO system: Heat capacity measurement, modeling, and application[J]. J. Mater. Sci. Technol., 2026, 260: 53-66.
| [1] F. Kongoli, A. Yazawa, Metall, Mater. Trans. B 32 (2001) 583-592. [2] J. Jeon, D. Lindberg, J. Eur. Ceram.Soc. 45(2025) 117099. [3] F. Sorrentino, D. Damidot, C. Fentiman, in: CaO-SiO2 -Al2 O3 -Fe Oxides Chemical System: Description and Applications, 1st edition, EDP Sciences, France, 2021, pp. 227-237. [4] Y. Tang, L. Zhao, B. Li, W. Chen, Cem. Concr. Res. 157(2022) 106832. [5] P. Hewlett, M. Liska, in: Lea’s chemistry of cement and concrete, fifth ed., But-terworth-Heinemann, Oxford, 2019, pp. 104-115. [6] R.V. Väinölä, L.E.K.Holappa, P.H.J.Karvonen, J. Mater. Process. Technol. 53(1995) 453-465. [7] H.V. Atkinson, G. Shi, Prog. Mater. Sci. 48(2003) 457-520. [8] Y. Ren, W. Wang, W. Yang, L. Zhang, ISIJ Int. 63(2023) 1927-1940. [9] L. Zhang, B.G. Thomas, ISIJ Int. 43(2003) 271-291. [10] Thermal-Calc Software AB, TCS Metal Oxide Solutions Database (TCOX14) Technical information, 2025. [11] C.W. Bale, P. Chartrand, S.A. Degterov, G. Eriksson, K. Hack, R. Ben Mahfoud, J. Melançon, A.D. Pelton, S. Petersen, Calphad 26 (2002) 189-228. [12] J. Tan, C. Shi, Y. Liu, T. Deng, Q. Wu, Y. Du, J. Am. Ceram.Soc. 107(2024) 6388-6409. [13] F. Gao, Y. Liu, L. Zhang, H.J. Seifert, Y. Du, J. Mol. Liq. 425(2025) 127191. [14] M. Selleby, B. Sundman, Calphad 20 (1996) 381-392. [15] T. Hidayat, D. Shishin, S.A. Decterov, E. Jak, Metall. Mater. Trans. B 47 (2015) 256-281. [16] S. Cheng, E. Nekhoroshev, M. Shevchenko, D. Shishin, E. Jak, Ceram. Int. 50(2024) 45438-45452. [17] E. Nekhoroshev, D. Shishin, S. Cheng, M. Shevchenko, E. Jak, Ceram. Int. 51(2025) 1456-1478. [18] R.R. Dayal, F.P.Glasser, in: Phase relations in the system CaO-Al2 O3 -Fe2 O3 , Sci-ence of ceramics, Academic Press, London, 1967, pp. 191-214. [19] D.H. Lister, F.P. Glasser, Trans. Br. Ceram. Soc. 66(1967) 293-305. [20] J.A. Imlach, F.P. Glasser, Trans. J. Br. Ceram. Soc. 72(1973) 221-228. [21] T.Y. Malysheva, I.V. Ostrovskaya, V.Y. Lyadova, M.S. Model, V.I. Ponomarev, Izv. Akad. Nauk SSSR, Met. 5(1976) 78-86. [22] M.Y. Hassaan, M.M.El-Desoky, Y.M. Abou Zeid, Mater. Sci. Eng. A 276 (20 0 0) 147-151. [23] J. Chen, S. Cheng, M. Shevchenko, P.C. Hayes, E. Jak, Metall. Mater. Trans. B 52 (2021) 517-527. [24] S.Y. Cheng, M. Shevchenko, P.C. Hayes, E. Jak, Metall. Mater. Trans. B 52 (2021) 2416-2429. [25] J.D.G.Hamilton, B.F. Hoskins, W.G. Mumme, W.E. Borbidge, M.A. Montague, Neues Jahrb. Mineral., Abh. 161(1989) 1-26. [26] T.R.C. Patrick, M.I. Pownceby, Metall. Mater. Trans. B 33 (2002) 79-89. [27] S. Nicol, J. Chen, M.I. Pownceby, N.A.S.Webster, ISIJ Int. 58(2018) 2157-2172. [28] M.I. Pownceby, T.R.C.Patrick, Eur. J. Mineral. 12(20 0 0) 455-468. [29] R. Murao, T. Harano, M. Kimura, I.-H. Jung, ISIJ Int. 58(2018) 259-266. [30] W.G. Mumme, Neues Jahrb. Mineral., Abh. 178(2003) 307-335. [31] A.V. Arakcheeva, O.G. Karpinskii, V.Y. Lyadova, Kristallografiya 36 (1991) 603-611. [32] W.G. Mumme, J.M.F.Clout, R.W. Gable, Neues Jahrb. Mineral., Abh. 173(1998) 93-117. [33] N.A.S.Webster, M.I. Pownceby, I.C. Madsen, J.A. Kimpton, ISIJ Int. 53(2013) 774-781. [34] V. Kahlenberg, H. Krüger, M. Tribus, Phys. Chem. Miner. 48(2021) 25. [35] W.G. Mumme, R.W. Gable, Neues Jahrb. Mineral., Abh. 195(2018) 89-100. [36] H. Sato, M. Shevchenko, K. Sugiyama, S. Cheng, J. Chen, P.C. Hayes, E. Jak, M. Hayashi, ISIJ Int. 64(2024) 2098-2106. [37] J.-C. Wrampelmeyer, S.Dimitrov, D. Janke, Steel Res. 60(1989) 539-549. [38] V. Espejo, M. Iwase, Metall. Mater. Trans. B 26 (1995) 257-264. [39] N. Wang, W.-J. Huang, S.-C. Chen, M. Chen, J. Iron Steel Res. Int. 19(2012) 8-12. [40] N. Wang, M. Chen, Z. Zou, Z. Zhang, Y. Xiao, Y. Yang, J. Min. Metall., Sect. B 49 (2013) 139-144. [41] O. Redlich, A.T. Kister, Ind. Eng. Chem. Res. 40(1948) 345-348. [42] L. Dreval, T. Zienert, O. Fabrichnaya, J. Alloy. Compd. 657(2016) 192-214. [43] F. Gao, Y. Liu, L. Zhang, H.J. Seifert, Y. Du, J. Mol. Liq. 425(2025) 127191. [44] M. Hillert, M. Selleby, B. Sundman, Metall. Trans. A 21 (1990) 2759-2776. [45] R.W. Nurse, J.H. Welch, A.J. Majumdar, Trans. Br. Ceram. Soc. 64(1965) 323-332. [46] R.W. Nurse, J.H. Welch, A.J. Majumdar, Trans. Br. Ceram. Soc. 64(1965) 409. [47] D.A. Jerebtsov, G.G. Mikhailov, Ceram. Int. 27(2001) 25-28. [48] H. Mao, M. Selleby, B. Sundman, Calphad 28 (2004) 307-312. [49] B. Hallstedt, J. Am. Ceram.Soc. 78(1995) 193-198. [50] B. Sundman, B. Jansson, J.-O. Andersson, Calphad 9 (1985) 153-190. [51] G.M. Faulring, D.C. Hilty, Sanborn, Process for continuous casting of aluminumdeoxidized steel, US Patent, No. 4317678, 1982. [52] S.K. Paul, A. Ray, J. Mater. Eng.Perform. 6(1997) 27-34. [53] N. Bannenberg, Inclusion modification to prevent nozzle clogging, in: 78th Steelmaking Conference Proceedings, Nashville, Tennessee, U.S, 1995, pp. 2-5. [54] J.M.A.Geldenhuis, P.C. Pistorius, Ironmak. Steelmak. 27(20 0 0) 4 42-4 49. [55] M.K. Sardar, S. Mukhopadhyay, U.K. Bandopadhyay, S.K. Dhua, Steel Res. Int. 78(2007) 136-140. [56] S. Sun, S. Waterfall, N. Strobl, D. Liao, D. Holdridge, Inclusion Control with Ca Treatment to Improve Castability of Low Carbon Aluminum-Killed Steel, in: J.-Y. Hwang, T. Jiang, M.W. Kennedy, O. Yücel, P.C. Pistorius, V. Seshadri, B. Zhao, D. Gregurek, E. Keskinkilic (Eds.) 8th International Symposium on High- Temperature Metallurgical Processing, Springer International Publishing, Cham, 2017, pp. 347-357. [57] H. Ahmad, F. Tang, Z. Yao, Y. Xu, Z. Huang, B. Zhao, X. Ma, Metals 13 (2023) 1153. [58] T.-Y. Zhan, J.Tian, X.-L. Li, L.-J. Su, D. Hou, T.-P. Qu, D.-Y. Wang, J. Iron Steel Res. Int. 31(2024) 2755-2773. [59] W.V. Bielefeldt, A.C.F.Vilela, Steel Res. Int. 86(2015) 375-385. [60] G. Xu, Z. Jiang, Y. Li, Metall. Mater. Trans. B 47 (2016) 2411-2420. [61] K. Miao, M. Nabeel, N. Dogan, Metall. Mater. Trans. B 53 (2022) 2897-2913. [62] SGTE Substance Database (SSUB), Thermo-Calc Software AB, [dataset]v4.1, 2008. [63] D. Dilner, L. Kjellqvist, M. Selleby, J. Phase Equilib.Diffus. 37(2016) 277-292. [64] N. Verma, P.C. Pistorius, R.J. Fruehan, M. Potter, M. Lind, S. Story, Metall. Mater. Trans. B 42 (2011) 711-719. [65] L. Zhu, G. Chen, Y. Ren, L. Zhang, Steel Res. Int. 96(2025) 295-301. |
| [1] | Shengkun Xi, Qiuling Tao, Zhou Li, Jiahui Li, Longke Bao, Cuiping Wang, Rongpei Shi, Haijun Zhang, Jinxin Yu, Zhifu Yao, Xiaoyu Chong, Xingjun Liu. Accelerated design and property validation of L12-strengthened Co-Ni-Cr-Al-Cu-Ti high-entropy superalloys based on unsupervised and supervised learning [J]. J. Mater. Sci. Technol., 2026, 259(0): 162-172. |
| [2] | Zhixuan Zhang, Yiqi Guan, Hong Mao, Qi Huang, Na Li, Weili Wang, Weibin Zhang. Multiscale phase-field simulation framework for spinodal decomposition behavior in composite carbide ceramics [J]. J. Mater. Sci. Technol., 2026, 246(0): 58-75. |
| [3] | Akash A. Deshmukh, Raghavan Ranganathan. Recent advances in modelling structure-property correlations in high-entropy alloys [J]. J. Mater. Sci. Technol., 2025, 204(0): 127-151. |
| [4] | Nagasivamuni Balasubramani, Michael Moodispaw, Alan A Luo. Controlling the Fe-intermetallic phases and mechanical properties of secondary Al-9Si-1Fe alloy with Cr and Mn additions [J]. J. Mater. Sci. Technol., 2025, 206(0): 135-152. |
| [5] | Xiyu He, Xuehong Xu, Xiang Xiao, Guojun Wang, Yunlai Deng, Yunqiang Fan. A simple model revealing the evolution of mechanical properties in Al-Zn-Mg-Cu alloys with a rich Al angle based on CALPHAD [J]. J. Mater. Sci. Technol., 2025, 227(0): 241-254. |
| [6] | Wang Yi, Sa Ma, Jianbao Gao, Jing Zhong, Tianchuang Gao, Shenglan Yang, Lijun Zhang, Qian Li. A novel atomic mobility model for alloys under pressure and its application in high pressure heat treatment Al-Si alloys by integrating CALPHAD and machine learning [J]. J. Mater. Sci. Technol., 2025, 217(0): 116-127. |
| [7] | Meifeng Li, Hani Henein, Chungen Zhou, Jing Liu. Towards high-entropy alloys with high-temperature corrosion resistance and structural stability [J]. J. Mater. Sci. Technol., 2024, 174(0): 133-144. |
| [8] | Zunhong Wen, Yanglin Wang, Wensheng Zhao, Min Jiang, Hongxiao Li, Yuping Ren, Gaowu Qin. Effects of Ni addition on the order-disorder transitions of Fe-Pt intermetallic compounds: An experimental study on Fe-Ni-Pt phase diagrams [J]. J. Mater. Sci. Technol., 2024, 182(0): 54-66. |
| [9] | Yu Fu, Hongxia Li, Kai Tang, Shenglan Yang, Yue Shi, Bin Liu, Qun Luo, Lijun Zhang, Qian Li, Fusheng Pan. Melt viscosity of light alloys: Progress and challenges [J]. J. Mater. Sci. Technol., 2024, 183(0): 72-88. |
| [10] | Kai Xu, Chengcheng Zhan, Ming Lou, Xuelian Xiao, Ruonan Zhou, Fangming Wang, Xiaofei Hu, Yuan Yuan, Keke Chang. Design of the rare-earth-containing materials based on the micro-alloying phase equilibria, phase diagrams and phase transformations [J]. J. Mater. Sci. Technol., 2023, 151(0): 119-149. |
| [11] | Jinliang Zhang, Jianbao Gao, Shenglan Yang, Bo Song, Lijun Zhang, Jian Lu, Yusheng Shi. Breaking the strength-ductility trade-off in additively manufactured aluminum alloys through grain structure control by duplex nucleation [J]. J. Mater. Sci. Technol., 2023, 152(0): 201-211. |
| [12] | Bin Xu, Haiqing Yin, Xue Jiang, Cong Zhang, Ruijie Zhang, Yongwei Wang, Xuanhui Qu, Zhenghua Deng, Guoqiang Yang, Dil Faraz Khan. Data-driven design of Ni-based turbine disc superalloys to improve yield strength [J]. J. Mater. Sci. Technol., 2023, 155(0): 175-191. |
| [13] | Xuelian Xiao, Keke Chang, Kai Xu, Ming Lou, Liping Wang, Qunji Xue. Efficient prediction of corrosion behavior in ternary Ni-based alloy systems: Theoretical calculations and experimental verification [J]. J. Mater. Sci. Technol., 2023, 167(0): 94-106. |
| [14] | Shenglan Yang, Jing Zhong, Jiong Wang, Jianbao Gao, Qian Li, Lijun Zhang. A novel computational model for isotropic interfacial energies in multicomponent alloys and its coupling with phase-field model with finite interface dissipation [J]. J. Mater. Sci. Technol., 2023, 133(0): 111-122. |
| [15] | Tianci Xie, Hui Shi, Hongbin Wang, Qun Luo, Qian Li, Kuo-Chih Chou. Thermodynamic prediction of thermal diffusivity and thermal conductivity in Mg-Zn-La/Ce system [J]. J. Mater. Sci. Technol., 2022, 97(0): 147-155. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
