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毕业论文网 > 任务书 > 材料类 > 无机非金属材料工程 > 正文

离子掺杂对阿利特晶体结构调控及性能的影响任务书

 2020-04-15 10:04  

1. 毕业设计(论文)的内容和要求

硅酸盐水泥熟料中含有少量来自生料和燃料的碱和硫酸盐,这是熟料中so3的主要来源。

so3在水泥熟料中主要以碱金属的硫酸盐、硫酸钾钙、烧石膏以及固溶在熟料矿物中的形式存在。

熟料中有碱金属存在的情况下,so3会优先形成碱金属的硫酸盐。

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2. 参考文献

[1] S. Ma, R. Snellings, X. Li, X. Shen, K.L. Scrivener, Alite-ye'elimite cement: Synthesis and mineralogical analysis, Cement Concrete Res 45 (2013) 15-20. [2] X. Li, X. Shen, J. Xu, X. Li, S. Ma, Hydration properties of the alite-ye'elimite cement clinker synthesized by reformation, Constr Build Mater 99 (2015) 254-259. [3] X. Li, Y. Zhang, X. Shen, Q. Wang, Z. Pan, Kinetics of calcium sulfoaluminate formation from tricalcium aluminate, calcium sulfate and calcium oxide, Cement Concrete Res 55 (2014) 79-87. [4] B. Ma, X. Li, X. Shen, Y. Mao, H. Huang, Enhancing the addition of fly ash from thermal power plants in activated high belite sulfoaluminate cement, Constr Build Mater 52 (2014) 261-266. [5] B. Ma, M. Ma, X. Shen, X. Li, X. Wu, Compatibility between a polycarboxylate superplasticizer and the belite-rich sulfoaluminate cement: Setting time and the hydration properties, Constr Build Mater 51 (2014) 47-54. [6] M. Bigar#233;, A. Guinier, C. Mazi#232;res, M. Regourd, N. Yannaquis, W. Eysbl, T. Hahn, E. Woermann, Polymorphism of Tricalcium Silicate and Its Solid Solutions, J. Am. Ceram. Soc. 50(11) (1967) 609-619. [7] I.M. Chrom, Microscopic study on the polymorphism of Ca3SiO5, Cement Concrete Research 8(4) (1978) 407-414. [8] M. Regourd, POLYMORPHISM OF TRICALCIUM SILICATE - NEW X-RAY-DIFFRACTION DATA, Comptes Rendus Hebdomadaires Des Seances De L Academie Des Sciences Serie B 289(1) (1979) 17-20. [9] M.-N. de Noirfontaine, M. Courtial, F. Dunstetter, G. Gasecki, M. Signes-Frehel, Tricalcium silicate Ca3SiO5 superstructure analysis: a route towards the structure of the M-1 polymorph, Zeitschrift Fur Kristallographie-Crystalline Materials 227(2) (2012) 102-112. [10] F. Nishi, Y. Takeuchi, I. Maki, TRICALCIUM SILICATE CA3O[SIO4] - THE MONOCLINIC SUPERSTRUCTURE, Zeitschrift Fur Kristallographie 172(3-4) (1985) 297-314. [11] W.G. Mumme, CRYSTAL-STRUCTURE OF TRICALCIUM SILICATE FROM A PORTLAND-CEMENT CLINKER AND ITS APPLICATION TO QUANTITATIVE XRD ANALYSIS, Neues Jahrbuch Fur Mineralogie-Monatshefte (4) (1995) 145-160. [12] M. Courtial, M.N. de Noirfontaine, F. Dunstetter, G. Gasecki, M. Signes-Frehel, Polymorphism of tricalcium silicate in Portland cement: A fast visual identification of structure and superstructure, Powder Diffraction 18(1) (2003) 7-15. [13] T. Stanek, P. Sulovsky, The influence of the alite polymorphism on the strength of the Portland cement, Cement Concrete Res 32(7) (2002) 1169-1175. [14] H.F. Taylor, Cement chemistry, Thomas Telford1997. [15] I. Maki, K. Fukuda, H. Yoshida, J. Kumaki, EFFECT OF MGO AND SO3 ON THE IMPURITY CONCENTRATION IN ALITE IN PORTLAND-CEMENT CLINKER, J. Am. Ceram. Soc. 75(11) (1992) 3163-3165. [16] I. Maki, K. Goto, FACTORS INFLUENCING THE PHASE CONSTITUTION OF ALITE IN PORTLAND-CEMENT CLINKER, Cement Concrete Res 12(3) (1982) 301-308. [17] X. Li, W. Xu, S. Wang, M. Tang, X. Shen, Effect of SO3 and MgO on Portland cement clinker: Formation of clinker phases and alite polymorphism, Constr Build Mater 58 (2014) 182-192. [18] X. Li, H. Huang, J. Xu, S. Ma, X. Shen, Statistical research on phase formation and modification of alite polymorphs in cement clinker with SO3 and MgO, Constr Build Mater 37 (2012) 548-555. [19] S.J. Clark, M.D. Segall, C.J. Pickard, P.J. Hasnip, M.I.J. Probert, K. Refson, M.C. Payne, First principles methods using CASTEP, Zeitschrift Fur Kristallographie 220(5/6/2005) (2005) 567-570. [20] W. Kohn, L.J. Sham, Self-Consistent Equations Including Exchange and Correlation Effects, Physical Review 140(4A) (2008) A1133--A1138. [21] P. Hohenberg, W. Kohn, Inhomogeneous Electron Gas, Resonance 22(8) (2017) 809-811. [22] J.P. Perdew, K. Burke, M. Ernzerhof, Generalized Gradient Approximation Made Simple, Physical Review Letters 77(18) (1998) 3865-3868. [23] D.C. Patton, D.V. Porezag, M.R. Pederson, Simplified generalized-gradient approximation and anharmonicity: Benchmark calculations on molecules, Physical Review B 55(12) (1997) 7454-7459. [24] H.J. Monkhorst, Special points for Brillouin-zone integrations, Physical Review B Condensed Matter 16(4) (1977) 1748-1749. [25] C.X. Kou, Y.H. Dai, A Modified Self-Scaling Memoryless Broyden---Fletcher---Goldfarb---Shanno Method for Unconstrained Optimization, Journal of Optimization Theory Applications 165(1) (2015) 209-224. [26] J.D. Head, M.C. Zerner, A Broyden#8212;Fletcher#8212;Goldfarb#8212;Shanno optimization procedure for molecular geometries, Chemical Physics Letters 122(3) (1985) 264-270. [27] Q. Wang, F. Li, X. Shen, W. Shi, X. Li, Y. Guo, S. Xiong, Q. Zhu, Relation between reactivity and electronic structure for α′ L -, β- and γ-dicalcium silicate: A first-principles study, Cement Concrete Research 57 (2014) 28-32. [28] D.K. Smith, H.R. Leider, Low-temperature thermal expansion of LiH, MgO and CaO, Journal of Applied Crystallography 1(4) (2010) 246-249. [29] S. E., The crystal structure of periclase, Z Kristallogr, Kristallgeom, Kristallphys, Kristallchem 56 (1921) 430. [30] M. H., M. I., T. T., I. S., Anhydrite. Refinement, Acta Crystallographica, Section B: Structural Crystallography and Crystal Chemistry B31(8) (1975) 2164-5. [31] A.G. De La Torre, S. Bruque, J. Campo, M.A.G. Aranda, The superstructure of C3S from synchrotron and neutron powder diffraction and its role in quantitative phase analyses, Cement Concrete Res 32(9) (2002) 1347-1356. [32] H.-H. Min, F. Xu, Y.-N. Lu, J. Yang, L.-F. Ding, F. Su, J.-M. Zhu, Orientation Relations and Conversion Matrix Between M3 Supercell and Pseudohexagonal Subcell in Tricalcium Silicate Solid Solution, Chinese J Inorg Chem 32(1) (2016) 145-152. [33] H. Min, Y. Liu, H. Gao, J. Zhu, Y. Chen, L. Yinong, Orientation relations and conversion matrix between M1 supercell and pseudo-hexagonal subcell in alite, Journal of Nanjing University of Technology 14(3) (2012) 1 - 5. [34] K. Urabe, H. Nakano, H. Morita, Structural modulations in monoclinic tricalcium silicate solid solutions doped with zinc oxide, M(I), M(II), and M(III), J. Am. Ceram. Soc. 85(2) (2002) 423-429. [35] H. Min, Effect of Ion Doping on Alite Crystal Polymorphs and its Superstructures, Nanjing Tech University, 2012.

3. 毕业设计(论文)进程安排

2017.12.05~ 2017.12.23 确定课题,查阅文献; 2017.12.23~2018.1.13 完善课题研究方案,外文翻译,文献综述以及开题报告工作; 2018.1.13~2018.6.2 进行实验,完成论文写作

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