The Study on Measurement Method of Glass Melts' Surface Tension at High Temperature

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Abstract:

At high temperature conditions, the glass molten by the combined action of gravity and surface tension form an oval. Through digital image measurement system we can obtain glass molten oval contours and the contact angle. By the Bashforth-Adams equation which deduced from Young- Laplace equation to obtain the glass molten' surface tension at the corresponding temperature conditions. This method has good reproducibility and accuracy.

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Advanced Materials Research (Volumes 889-890)

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732-736

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yingliang Tian , Shibing Sun. New glass process [M]. China Light Industry Press, 2009: 323-329. In Chinese.

Google Scholar

[2] Junpeng Wan, Jinshu Cheng, Ping Lu. Bulletin of the Chinese ceramic society. 2007, 26(6): 1197-1201. In Chinese.

Google Scholar

[3] Yanbo Liang, Fang Liu, Zhenglong Qin. Xu Zhou Normal University Journal, 2000, 18(4): 50-52. In Chinese.

Google Scholar

[4] Xiaobin Luo, Dingyi Zhu, Wei Qiao, et al. Materials Science and Engineering Journal, 2008, 26(6): 932-936. In Chinese.

Google Scholar

[5] Jixiang Guo, Meiyuan Li, Meiqin Lin, et al. Petroleum Journal, 2007, 23(4): 20–24. In Chinese.

Google Scholar

[6] GU Yong-an. Colloids and Surfaces A; Physicochemical and Engineering Aspects, 2001, 181: 215-224.

Google Scholar

[7] Wei Li, Maoliang Li. Petroleum Journal, 2008, 24(6): 744-748. In Chinese.

Google Scholar

[9] Jianqiang Li, Xiaorui Zhang, Ping Lu. Rare Metal Materials and Engineering. 2009, 38(2): 792-794. In Chinese.

Google Scholar

[10] Dingyi Zhu, Yuanchao Zhang, Pinqiang Dai, et al. Science Technology and Engineering, 2007, 7(13): 3063-3069. In Chinese.

Google Scholar

[11] Standard practice for estimating critical surface tensions [S]. International, D7541-11.

Google Scholar

[12] Yulong Dai, Lingling Tang. Glass & Enamel. 1987, 16(6): 16-23. In Chinese.

Google Scholar

[13] Zhongdong Yang, Peng Wang, Xsiaohui Li, et al. Chinese Journal of Scientific Instrument. 2013, 34(1): 147-152. In Chinese.

Google Scholar

[14] Kai Dong, Lanxiao Liu, et al. Materials Review, 2007, 21(5A): 425-427. In Chinese.

Google Scholar

[15] F Bashforth, S C Adams. Cambridge: Cambridge Univ. press, 1883.

Google Scholar

[16] L. Shartsis and S. pinneR: J. Reseach Natl. Bur. stands. 46. 385 (1951).

Google Scholar