Effect of additional applied thermal/electric field on the float-glass surface

Zuwu Shen , Qiming Liu , Li Meng , Hongcheng Wang

Journal of Wuhan University of Technology Materials Science Edition ›› 2009, Vol. 24 ›› Issue (2) : 308 -311.

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Journal of Wuhan University of Technology Materials Science Edition ›› 2009, Vol. 24 ›› Issue (2) : 308 -311. DOI: 10.1007/s11595-009-2308-9
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Effect of additional applied thermal/electric field on the float-glass surface

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Abstract

The chemical resistances of float-glasses subjected to different electric field strength and temperature were investigated. It is indicated that the chemical resistance increases after the float-glasses are annealed with suitable temperature and electric field strength. It is also observed that the Na+ content varies obviously under the conditions of 570 °, 1500 V/cm and 10 min, implying that the application of thermal/electric field improves the chemical resistance of float-glass online.

Keywords

float-glass / chemical resistance / thermal/electric field

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Zuwu Shen, Qiming Liu, Li Meng, Hongcheng Wang. Effect of additional applied thermal/electric field on the float-glass surface. Journal of Wuhan University of Technology Materials Science Edition, 2009, 24(2): 308-311 DOI:10.1007/s11595-009-2308-9

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References

[1]

Gladushko O.A., Chesnlkov A.G. Identification of Float Glass Surfaces[J]. Glass and Ceramics, 2005, 62(10): 9-10.

[2]

Ydstie B.E., Yu Jiao. Passivity-based Control of the Float-glass Process[J]. Control Systems Magazine, 2006, 26(6): 64-72.

[3]

Atkarskaya A.B. Sol-gel Coatings on Float Glass[J]. Glass and Ceramics, 2006, 63(3): 107-109.

[4]

Dal Bianco B., Bertoncello R., Milanese L., . Surface Study of Water Influence on Chemical Corrosion of Roman Glass[J]. Surface Engineering, 2005, 21(4): 393-396.

[5]

Ji H., Rouxelw T. Mechanical Behavior of a Borosilicate Glass under Aqueous Corrosion[J]. J. Am. Ceram. Soc., 2005, 88(11): 3256-3259.

[6]

Yang P., Song C.F., M.K., . The Effect of Alkaline Earth Metallic Ions on the Photoluminescence Properties of Sol-gel Silica Glass[J]. Appl. Phys. A, 2002, 74(5): 689-692.

[7]

Woisetschlaèger G., Dutz M., Paul S. Weathering Phenomena on Naturally Weathered Potash-Lime-Silica-Glass with Medieval Composition Studied by Secondary Electron Microscopy and Energy Dispersive Microanalysis[J]. Mikrochim. Acta, 2000, 135(3): 121-130.

[8]

Rana M. A., Douglas R. W. Reaction between Glass and Water[J]. Phys. Chem. Glasses, 1961, 2(3): 179-181.

[9]

Boksay Z. Diffusion Processes in the Surface Layer of Glass[J]. Phys. Chem.Glasses, 1967, 8(3): 140-144.

[10]

Doremus R. H. Mixed-Alkali Effect and Interdiffusion of Na and K Ions in Glass [J]. J. Am. Ceram. Soc., 2006, 57(11): 478-480.

[11]

Trotignon L., Petit J. C., Della Mea G., . The Compared Aqueous Corrosion of Four Simple Borosilicate Glasses: Influence of Al, Ca and Fe on the Formation and Nature of Secondary Phases[J]. J. Nucl. Mater., 1992, 190(8): 228-246.

[12]

Maria-Teresa D.-Carbo. A Study on Corrosion Processes of Archaeological Glass from the Valencian Region (Spain) and Its Consolidation Treatment[J]. Microchim Acta, 2006, 154(1): 123-142.

[13]

Sharma A., Jain H., OCarnali J. Influence of the Manufacturing Process on Corrosion Behavior of Soda-Lime-Silicate Glassware[J]. J.Am.Ceram.Soc., 2003, 86(10): 1669-1676.

[14]

Melcher M. Statistical Evaluation of Potash-lime-silica Glass Weathering[J]. M. Anal Bioanal Chem., 2004, 379(4): 628-639.

[15]

Schaut R. A., Gpantano C. Acid Interleave Coatings Inhibit Float-glass Weathering, Corrosion [J]. American Ceramic Society Bulletin, 2005, 84(10): 44-49.

[16]

Doremus R. H. Interdiffusion of Hydrogen and Alkali Ions in a Glass Surface[J]. J. Non-Cryst. Solids, 1975, 19(6): 137-144.

[17]

Smets B. M. J., Lommen T. P. A. The Role of Molecular Water in the Leaching of the Glass[J]. Phys. Chem. Glasses, 1983, 24(2): 35-36.

[18]

Tadjiev D. R., J R. Hand Inter-relationships between Composition and Near Surface Mechanical Properties of Silicate Glasses[J]. J. Non-Cryst Solids, 2008, 354(47): 5108-5109.

[19]

Feng J., Wong R.S.K., Hu X., Yue P.L. Discoloration and Mineralization of Orange II by Using Fe3+ Doped TiO2 and Bentonite Clay-based Fe Nanocatalysts[J]. Catalysis Today, 2004, 98(3): 441-446.

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