[1]
Zhang Liangqi, Feng Zhongxu. Concrete Mixing Process and its Evaluation [J]. Journal of Chang'an Univercity, 2011, (2): 11-16.
Google Scholar
[2]
Feng Zhongxu. Mixing Arm Number and Blade areas [J]. Engineering Machinery, 2008, (14): 112-116.
Google Scholar
[3]
E Cekinski, M Giulietti, M M Seckler. A New Approach to Characterize Suspensions in Stirred Vessels Based on Compitational Fluid Dynamics [J]. Brazilian Journal of Chemical Engineering, April-June, (2010).
DOI: 10.1590/s0104-66322010000200005
Google Scholar
[4]
A Ochieng, M S Onyango, K H Kiriamiti. CFD Simulation and Experimental Measurement of Nickel Solids Concentration Distribution in a Stirred Tank[C]. The Journal of the Southern African Institute of Mining and metallurgy, May. (2010).
Google Scholar
[5]
Ma Qingyong. The Numerical Simulation of Solid-liquid Two-phase Flow's Whisk in Slurry Pond [J]. Hunan Agriculture Machinery, 2010, (7):88-94.
Google Scholar
[6]
Feng Zhongxu. Yao Luting. Mixing Equipment Design [M]. Xi'an University of Highway Traffic, (2005).
Google Scholar
[7]
Wang Xiuli. Parameter Optimization Design of Twin-shaft Concrete Mixing Engine [D]. Shan Dong University, (2012).
Google Scholar
[8]
Guo Jianwei. Research on the Similarity theory of the Twin-shaft Experimental Mixer [D]. Chang'an University, (2012).
Google Scholar
[9]
Du Zhanling. Test Study of Vibratory Mixer with Double-horizontal Shaft [D]. Chang'an University, (2003).
Google Scholar
[10]
Feng Zhongxu. Concrete Mixing Theory and Equipment[M]. Beijing: China Communication Press, (2001).
Google Scholar
[11]
Zhao Lijun. Research of Mechanical Methods for Improving Mixing Process of Concrete . Journal of Wuhan University of Technology [J], 2008, (1): 11-16.
Google Scholar