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Understanding Superfine Graphite Iron Solidification Through Interrupted Solidification Experiments

Effect of Carbon Equivalent and Alloying Elements on the Tensile Properties of Superfine Interdendritic Graphite Irons

Kinetics of graphite expansion during eutectic solidification of cast iron

Investigation on the Effect of Sulfur and Titanium on the Microstructure of Lamellar Graphite Iron

Gray cast iron with superfine graphite, high primary austenite fraction and optimized mechanical properties

Gray Cast iron with high austenite to eutectic ratio. Part III. High strength, low hardness, high carbon equivalent gray iron with superfine graphite

Gray cast iron with high austenite-to eutectic ratio. Part II. Increasing the austenite-to eutectic ratio trough inoculation

Gray cast iron with high austenite to eutectic ratio. Part I. Calculation and experimental evaluation of the fraction of primary austenite in cast iron

Understanding Superfine Graphite Iron Solidification Through Interrupted Solidification Experiments

Effect of Carbon Equivalent and Alloying Elements on the Tensile Properties of Superfine Interdendritic Graphite Irons

Kinetics of graphite expansion during eutectic solidification of cast iron

Investigation on the Effect of Sulfur and Titanium on the Microstructure of Lamellar Graphite Iron

Gray cast iron with superfine graphite, high primary austenite fraction and optimized mechanical properties

Gray Cast iron with high austenite to eutectic ratio. Part III. High strength, low hardness, high carbon equivalent gray iron with superfine graphite

Gray cast iron with high austenite-to eutectic ratio. Part II. Increasing the austenite-to eutectic ratio trough inoculation

Gray cast iron with high austenite to eutectic ratio. Part I. Calculation and experimental evaluation of the fraction of primary austenite in cast iron

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