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

Correction to: 90 years of thermal analysis as a control tool in the melting of cast iron

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

Quantitative Analysis of Solidification of Compacted Graphite Irons – A Modelling Approach

Método para determinar el contenido de carbono equivalente de una aleación de fundición de composición hipereutéctica y equipo para llevarlo a cabo

Chunky Graphite in Low and High Silicon Spheroidal Graphite Cast Irons–Occurrence, Control and Effect on Mechanical Properties

Study of Graphite Nucleation in High Sulfur Ductile Irons

Determination of Microshrinkage Risk Index in Ductile Cast Iron Production

Revisiting Thermal Analysis of Hypereutectic Spheroidal Graphite Cast Irons

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

Correction to: 90 years of thermal analysis as a control tool in the melting of cast iron

marzo 30, 2022

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

junio 29, 2021

Quantitative Analysis of Solidification of Compacted Graphite Irons – A Modelling Approach

Método para determinar el contenido de carbono equivalente de una aleación de fundición de composición hipereutéctica y equipo para llevarlo a cabo

Chunky Graphite in Low and High Silicon Spheroidal Graphite Cast Irons–Occurrence, Control and Effect on Mechanical Properties

Study of Graphite Nucleation in High Sulfur Ductile Irons

Determination of Microshrinkage Risk Index in Ductile Cast Iron Production

Revisiting Thermal Analysis of Hypereutectic Spheroidal Graphite Cast Irons

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