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Model development of slag foaming SCIE SCOPUS

Title
Model development of slag foaming
Authors
Ghag, SSHayes, PCLee, HG
Date Issued
1998-01
Publisher
IRON STEEL INST JAPAN KEIDANREN KAIKA
Abstract
A general model of foaming has been developed which relates the structure of a foam stabilised by viscoelastic forces to the bubble rupturing processes. For the specific case of negligible bubble coalescence within the foam it has been shown that, in the region of linearity between the foam height and gas flux, the residence time of gas in the foam (Sigma) is solely a function of the bubble diameter (d), the liquid phase density (rho) and viscosity (mu), and the effective elasticity (E-eff) resulting from the dynamic adsorption of surface active species: Sigma=1x10(6) (mu.E-eff/(rho g)(2)d(3)) The model, which shows that the gas bubble diameter has the greatest effect on the retention of gas bubbles within the foam, has been found to be applicable to a range of system in which foams are stabilised by viscoelastic forces.
Keywords
slag; foaming; cold modelling; physical modelling; SURFACE ELASTICITY; STABILITY
URI
https://oasis.postech.ac.kr/handle/2014.oak/21116
DOI
10.2355/isijinternational.38.1208
ISSN
0915-1559
Article Type
Article
Citation
ISIJ INTERNATIONAL, vol. 38, no. 11, page. 1208 - 1215, 1998-01
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