Actualidade » Situação do projeto » Successful Load Test of Yangshan Steel No.2 2-strand Heavy Plate Caster
Successful Load Test of Yangshan Steel No.2 2-strand Heavy Plate Caster
2011-04-23 05:24:41
Successful Load Test of Yangshan Steel No.2 2-strand Heavy Plate Caster
Start-up of Continuous Caster
Successful Load Test of Yangshan Steel No.2 2-strand Heavy Plate Caster
Joint Photo with Client after Start-up

April, 2nd, 2011 registered successful load test of Yanshan Iron & Steel Group new area No.2 2-strand heavy plate caster built by CISDI on EP basis. All equipment operated normally and performance data reached design requirements with test steel grades Q235, section 250mm×1800mm, casting speed 0.6m/min and 4 heats per sequence.

In addition, CISDI undertakes Yanshan Steel 150t converter EP project and plant design of Yanshan Steel 1780mm hot strip mill (HSM) project. The smooth startup of the project lays a solid foundation for propelling follow-up projects.
 
Multiple CISDI-developed technologies and products were applied in the project, including multi-functional liquid steel ladle turret with rotating, lifting, weighing and steel ladle manipulation and temperature holding function, large-volume tundish with slag dam, mould hydraulic oscillating, vertical curved continuous bending continuous straightening roller array, closely-arranged roller array and fully-segmented roller array, secondary cooling dynamic control model, secondary cooling area water spray and water-mist cooling, mould on-line cold width adjustment, mould breakout prediction etc. Meanwhile, in light of project features, mould level auto control system, full-process liquid steel protective casting, strand electromagnetic stirring, infrared camera length cutting etc. were proposed. In particular, CISDI-developed core CCM technology, mould breakout prediction system, was successfully applied in the CCM with steady operation and won acknowledgement from the owner.

Mould breakout prediction system: using neutral network and expert system for identification of temperature measuring curve of thermocouples buried in the mould copper plate to realize prediction of sticking breakout.
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