SMART CASTING® – As cast osagaien fabrikazioa

Get rid of low value finishing operations. Gain efficiency, safe costs.

Evolution of the Metallurgical Quality of Spheroidal Graphite Iron during the Thermal Cycle of the Melt: Furnace – Ladle – Heating/Pouring Unit

Damping behaviour of high silicon nodular cast iron

Mechanisms of Formation of Degenerated Graphite in Lamellar Graphite Cast Iron

Optimization of ductile iron casting production by using advanced thermal analysis and simulation techniques

The Effects of Holding Time in the Heating/Pouring Unit on the Metallurgical Quality of Spheroidal Graphite Iron

Influence of the Holding Time in the Heating/Pouring Unit on the Metallurgical Quality of Spheroidal Graphite Iron

The Role of Selenium on the Formation of Spheroidal Graphite in Cast Iron

Effect of the Type of Inoculant on the Shrinkage Porosity of High Silicon SG Iron

Nodule Count, End of Solidification Cooling Rate, and Shrinkage Porosity Correlations in High Silicon Spheroidal Graphite Iron

SMART CASTING® – As cast osagaien fabrikazioa

Get rid of low value finishing operations. Gain efficiency, safe costs.

Evolution of the Metallurgical Quality of Spheroidal Graphite Iron during the Thermal Cycle of the Melt: Furnace – Ladle – Heating/Pouring Unit

Damping behaviour of high silicon nodular cast iron

Mechanisms of Formation of Degenerated Graphite in Lamellar Graphite Cast Iron

Optimization of ductile iron casting production by using advanced thermal analysis and simulation techniques

The Effects of Holding Time in the Heating/Pouring Unit on the Metallurgical Quality of Spheroidal Graphite Iron

Influence of the Holding Time in the Heating/Pouring Unit on the Metallurgical Quality of Spheroidal Graphite Iron

The Role of Selenium on the Formation of Spheroidal Graphite in Cast Iron

Effect of the Type of Inoculant on the Shrinkage Porosity of High Silicon SG Iron

Nodule Count, End of Solidification Cooling Rate, and Shrinkage Porosity Correlations in High Silicon Spheroidal Graphite Iron