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RESEACH ON LUBRICATION IN HOT EXTRUSION OF G3 CORROSION RESISTANT Ni–BASED ALLOY TUBE II. Calculation and Application of Glass Lubricant Viscosity–Composition |
LIN Ben, WANG Baoshun, ZHANG Maicang, DONG Jianxin |
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing, 100083 |
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Cite this article:
LIN Ben WANG Baoshun ZHANG Maicang DONG Jianxin. RESEACH ON LUBRICATION IN HOT EXTRUSION OF G3 CORROSION RESISTANT Ni–BASED ALLOY TUBE II. Calculation and Application of Glass Lubricant Viscosity–Composition. Acta Metall Sin, 2011, 47(3): 374-379.
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Abstract Based on the classical first–order mixture method which describes the relationship between the property value and component, a modified mixture method for predicting the viscosity property of borosilicate glass lubricant used in the hot extrusion of G3 alloy was established. Then, the viscosity properties of 10 different borosilicate glasses were predicted using this method. The viscosity data predicted by this calculation method coincided well with the experimental data, which showed that the calculaton model was of strong reliability. Therefore, according to this model, the glass composition could be reversely designed, which will assure the viscosity of glass to meet the requirements of glass lubricated hot extrusion of G3 alloy which has beeraised in the first article. It provides theoetical guidance for the design and preparation of glass lubrcant in the glass lbricated hot extrusion of G3 alloy.
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Received: 28 September 2010
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Fund: Supported by National Natural Science Foundation of China (No.50831008) |
[1] Wang B S, Lin B, Luo K J, Zhang M C, Dong J X. World Iron Steel, 2010; 57(3): 44(王宝顺, 林奔, 罗坤杰, 张麦仓, 董建新. 世界钢铁. 2010; 57(3): 44)[2] Wang B S, Lin B, Zhang M C, Dong J X. Acta Metall Sin, 2011; 47: 367(王宝顺, 林奔, 张麦仓, 董建新. 金属学报, 2011; 47: 367)[3] Wang H L. Spec Steel Technol, 2008; 15(2): 31(王怀柳. 特钢技术. 2008; 15(2): 31)[4] Hrma P, Arrigoni B M, Schweiger M J. J Non–Cryst Solids, 2009; 355: 891[5] Nakamoto M, Lee J, Tanaka T. ISIJ Int, 2005; 45: 651[6] Zhang S, Xu Y, Shang Y, Yang K, Wang Z h. J Mater Sci Technol, 2001; 17: 113[7] Zhang Z W, Wang Z Y, Liang Q F, Guo Q H, Yu G S, Yu Z H. roc CSEE, 2008; 28(5): 39(张志文, 王增莹, 梁钦锋, 郭庆华, 于广锁, 于遵宏. 中国电机工程学报, 2008; 28(5): 39)[8] Ramachandrarao P, Dubey K S. Mater Sci Eng, 1995; B32: 285[9] Russell J K, Giordano D, Dingwell D B. Am Mineral, 2003; 88: 1390[10] Wang C Y, Tao Y. Designing and Adjusting of Glass Elements. Beijing: Chemical Industry Press, 2006: 42(王承遇, 陶瑛. 玻璃成分设计与调整. 北京: 化学工业出版社, 2006: 42)[11] Gan F X. J Chin Ceram Soc, 1962; 1: 55(干福熹. 硅酸盐学报, 1962; 1: 55)[12] Faruk C. Chem Eng Sci, 2008; 63: 5883[13] Marcio L F N, Cristina A. Physica, 2007; 398B: 71[14] Takeuchi A, Kato H, Inoue A. Intermetallics, 2010, 18: 406[15] Danifle G. Master Dissertation, Ludwig Maximilians Universit ¨at M¨unchen, 2002[16] Wang M T, Cheng J S. J Alloy Compd, 2010; 504: 273[17] Vargas S, Frandsen F J, Dam–Hohansen K. Prog Energy Combust Sci, 2001; 27: 237[18] Li L X, Peng D S, Liu J A, Liu Z Q, Jiang Y. J Mater Process Technol, 2000; 102: 138 |
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