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Items where Author is "Zhang, S."

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Number of items: 8.

I

Iséni, S., Zhang, S., van Gessel, A. F. H., Hofmann, S., van Ham, B. T. J., Reuter, S., Weltmann, K. D., & Bruggeman, P. J. (2014). Nitric oxide density distributions in the effluent of an RF argon APPJ: effect of gas flow rate and substrate. New Journal of Physics, 16(12), 123011. External link

Z

Zhou, X., Sankaranarayanane, K., Rigaud, M., Zhou, N., & Zhang, S. (2004, August). Effect of dispersants on rheological behavior of bauxite-based low-cement castables [Paper]. Advances in refractories for the metallurgical industries IV : fourth international symposium on advances in refractories for the metallurgical industries, Hamilton, Ontario, Canada. Unavailable

Zhou, X., Sankaranarayanane, K., Rigaud, M., Zhou, N., & Zhang, S. (2004). Effect of microsilica on rheological behaviour of bauxite-based low-cement pumpable castable. Interceram, 53(3), 166-173. Unavailable

Zhou, X., Sankaranarayanane, K., Rigaud, M., Zhou, N., & Zhang, S. (2004). Effect of water addition on rheological behaviour of bauxite-based low-cement castables. China's Refractories, 13(3), 25-34. External link

Zhou, X., Sankaranarayanane, K., Rigaud, M., Zhou, N., & Zhang, S. (2004). Influence of calcium aluminate cement on rheological behaviour of bauxite-based low-cement pumpable castable. Refractories application and news, 9(1), 18-24. Unavailable

Zhou, X., Rigaud, M., Zhou, N., & Zhang, S. (2003, March). Design of bauxite-based low-cement self-flowing pumpable castable: a rheological approach [Paper]. 4th international symposium on refractories, Dalian, China. Published in China's refractories, 3. Unavailable

Zhou, X., Rigaud, M., Zhou, N., & Zhang, S. (2003, January). Multi-purpose bauxite-based low-cement castables [Paper]. UNITECR 2003, Osaka, Japan. Unavailable

Zhong, D., Tapponnier, P., Wu, H., Zhang, S., Ji, S., Zhong, X., Liu, U., Scharer, U., Lacassin, R., & Leloup, P. (1989). Intracontinental strike-slip: an important structure of post-collision deformation, Kexue Tongbao. [大型走滑断层——碰撞后陆内变形的重要形式]. Letters of China Science, 34(7), 526-529. External link

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