TL;DR: In this paper, the composition and working principle of the thin slab caster of FTSC at Tangshan Iron and Steel Company is described. And the casting situation from thermal map during casting and the relevant guidelines on adjusting operation for operator in time are given.
Abstract: This paper briefly introduces the composition and working principle of the thin slab caster of FTSC at Tangshan Iron and Steel Company, also describes how to distinguish abnormal casting peramerters and casting situation from thermal map during casting and gives the relevant guidelines on adjusting operation for operator in time
TL;DR: Mould electromagnetic braking technique has been widely used for large section slab casting three different typets of mould electromagnetic braking techniques are introduced in this article through the introduction of basic concept, equipment, characteristics of electromagnetic force and metallurgical mechanism, different effects in slab qualities and caster productivity can be drawn from the introduction and ahalyses
Abstract: Mould electromagnetic braking technique has been widely used for large section slab castingThree different typets of mould electromagnetic braking techniques are introduced in this paper Through the introduction of basic concept, equipment, characteristics of electromagnetic force and metallurgical mechanism, different effects in slab qualities and caster productivity can be drawn from the introduction and ahalyses
TL;DR: Using Matlab project data software, the numerical simulation of the force field in the CSP slab mold and in traditional thick slab mold were carried out, and the diffecrence between them were compared as mentioned in this paper.
Abstract: Using Matlab project data software,the numerical simulation of the force field in the CSP slab mold and in traditional thick slab mold were carried out,and the diffecrence between them were comparedThe results showed that the force in the CSP is higher than in the thick slab mold,and the filler edge of CSP slab mold have more force than other area because of its break of shape