Anais do Seminário de Laminação, Conformação de Metais e Produtos


ISSN 2594-5297

Título

MI.DA®—EXPERIENCE IN CASTING AND ROLLING AN OCTAGONAL SECTION

MI.DA®—EXPERIENCE IN CASTING AND ROLLING AN OCTAGONAL SECTION

DOI

10.5151/2594-5297-39726

Downloads

Baixar Artigo 20 Downloads

Resumo

The increased demand for quality, productivity, reduced emissions and reduced OpEx have driven Danieli to continuously develop the most efficient long products minimills, by means of endless operation from caster to rolling mill, the MI.DA® technology. This paper represents the milestones of each development to match the demands from long-products manufacturers. From square billets high-speed casting, increased by application of Power Mould® and FastCast Cube (FCC) mould oscillator technologies, to the breakthrough and patented development of Octocaster® mould, which is the state-of-the-art in long products lines, with high yield equivalent to two (2) additional weeks of production if compared to conventional Minimills.

 

The increased demand for quality, productivity, reduced emissions and reduced OpEx have driven Danieli to continuously develop the most efficient long products minimills, by means of endless operation from caster to rolling mill, the MI.DA® technology. This paper represents the milestones of each development to match the demands from long-products manufacturers. From square billets high-speed casting, increased by application of Power Mould® and FastCast Cube (FCC) mould oscillator technologies, to the breakthrough and patented development of Octocaster® mould, which is the state-of-the-art in long products lines, with high yield equivalent to two (2) additional weeks of production if compared to conventional Minimills.

Palavras-chave

Endless rolling, Direct Charging, Octocaster®, OpEx Reduction

Endless rolling, Direct Charging, Octocaster®, OpEx Reduction

Como citar

Luca, Andrea de; Laura, Nicolo' de. MI.DA®—EXPERIENCE IN CASTING AND ROLLING AN OCTAGONAL SECTION , p. 214-227. In: 58º Seminário de Laminação, Conformação de Metais e Produtos, São Paulo, 2023.
ISSN: 2594-5297 , DOI 10.5151/2594-5297-39726