基于SciGlass数据库的熔融硅酸盐玻璃电阻率计算模型
摘要
利用SciGlass数据库及大量文献中有用的数据分析了当温度在1000℃-1400℃时,熔融硅酸盐玻璃的化学成分和电阻系数之间的关系,并以此为基础利用多项式函数多元回归建立了一个电阻率计算的模型,该模型可高精度地估算已知化学成分的硅酸盐玻璃熔体的高温电阻率。
出处
《建筑玻璃与工业玻璃》
2012年第3期5-8,26,共5页
Architectural Glass and Functional Glass
参考文献24
-
1J. Stanek: "Electric Melting of Glass"; Elsevier Scientific Pub- lishing, Amsterdam 1977.
-
2O. V. Mazurin, O. A. Prokhorenko: "Electrical conductivity of glass melts"; Chapter 10 in: "Properties of Glass-Forming Melts" ed. by D. L. Pye, I. Joseph, A. Montenaro; CRC Press, Boca Raton, Florida, 2005, ISBN 1-57444-662-2.
-
3J. D. Vienna, P. R. Hmla et al.: "Effect of Composition and Temperature on the Properties of High Level Waste (HLW) Glass Melting above 1200R2 (Draft)"; PNNL Report 10987 to the US Department of Energy, Contract DE-AC06-76RLO 1830, February 1996.
-
4P. Hrma, R. J. Robertus: "Waste glass design based on proper- ty composition functions"; Ceram. Eng. Sci. Proc., vol. 14, 1993, no. 11/12, p 187-203.
-
5A. Fluegel, D. A. Earl, A. K. Varshneya, D. 6ksoy: "Statistical analysis of viscosity, electrical resistivity, and further glass melt properties", Chapter 9 in: "High temperature glass melt property database for process modeling"; Eds.: T. P. Seward III and T. Vascott; The American Ceramic Society, Westerville, Ohio, 2005, ISBN 1-57498-225-7.
-
6R. E. Tickle: "The electrical conductance of molten alkali sili- cates"; Phys. Chem. Glasses, vol. 8, 1967, no. 3, p 101-124.
-
7K. D. Kim: "Resistivity measurement of molten glass and mixed alkali effect in sodium and potassium silicate melts"; Glass Technol. vol. 36, 1995, no. 1, p 27-31.
-
8Standard Reference Material (SRM) 1414 (Lead-Alkali Sili- cate Glass), Electrical Resistivity, National Institute of Standards and Technology (NIST), 1991 (Standard retracted by NIST).
-
9K. Varshneya, T. Vascott: "Electrical resistivity", Chapter 8 in "High temperature glass melt property database for process model ing"; Eds.: T. P. Seward III and T. Vascott; The American Ce- ramic Society, Westerville, Ohio, 2005, ISBN 1-57498-225-7.
-
10E. K. Mazurina: "Influence of two-valence metal oxides on electrical conductivity of alkali silicate glasses in the temperature range 200-1400℃ (in Russian), Thesis, Lensoviet Technological Institute, Leningrad, 1967.
-
1尹珍,杨志强.基于SciGlass数据库的熔融硅酸盐玻璃电阻率计算模型[J].科技视界,2012(5):58-61.
-
2炭毛坯的焙烧方法[J].碳素译丛,1995(4):11-12.
-
3炭制品的制备方法[J].碳素译丛,1995(4):10-11.
-
4吴嘉培.应用非线性回归理论探讨钠钙玻璃高温电阻率的计算[J].玻璃纤维,2004(2):1-6. 被引量:1
-
5孙戈.炭—沥青组分在焙烧过程中物理量连续变化的研究[J].炭素,1990(1):12-16. 被引量:1
-
6邵珲,张邦国.钛材列管换热器的设计[J].化工装备技术,2004,25(3):25-26. 被引量:1
-
7张文丽.应用多元回归分析方法研究低温烧成日用陶瓷坯体[J].中国陶瓷工业,1998,5(1):6-7.
-
8陈红军,马小纪,何仁德,罗式辉.水泥熟料的黑度与成分间关系的研究[J].武汉工业大学学报,1992,14(4):7-10.
-
9新型聚氨酯泡沫[J].技术与市场,2008(10):12-12.
-
10WEI Xiaosheng,XIAO Lianzhen,LI Zongjin.Hyperbolic Method to Analyze the Electrical Resistivity Curve of Portland Cements with Superplasticizer[J].Journal of Wuhan University of Technology(Materials Science),2008,23(2):245-248. 被引量:7