Effect of Application of Compressive and Shear Force on Iron Ore Pellet Wet Feed on Green and Fired Pellet Quality

Society for Mining, Metallurgy & Exploration
Neha Gupta Chandra Sekhar Shaik Mahaboob Basha Dhiraj Madhukar Kadhe Manikanta Nallamilli Srinivas Dwarapudi Saurabh Kundu Shakuntala Tudu Indrajit Paul
Organization:
Society for Mining, Metallurgy & Exploration
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17
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5214 KB
Publication Date:
Jan 29, 2022

Abstract

Iron ore pelletizing using compressive and shear action on wet mixture feed has been studied. The physical properties, namely, moisture content, drop strength, green compressive strength (GCS), dry compressive strength (DCS), porosity, and cold crushing strength (CCS), have been studied. Pelletizing tests were carried out on four different types of ore, namely, hematite ore, magnetite ore, goethite ore, and sinter return fines. The inference of shear forces on silica distribution index in dry pellet has been studied using optical and scanning electron microscopy. Significant improvement in physical strength was observed due to compressive and shear forces on the pellet mixture feed. However, decrease in moisture content and ball porosity has been observed. Silica distribution index improved by 1.72 times for hematite ore, 1.47 times for magnetite ore, and 1.68 times for goethite ore. It has been found that bubble cavity has been reduced which is good indicator in terms of physical properties.
Citation

APA: Neha Gupta Chandra Sekhar Shaik Mahaboob Basha Dhiraj Madhukar Kadhe Manikanta Nallamilli Srinivas Dwarapudi Saurabh Kundu Shakuntala Tudu Indrajit Paul  (2022)  Effect of Application of Compressive and Shear Force on Iron Ore Pellet Wet Feed on Green and Fired Pellet Quality

MLA: Neha Gupta Chandra Sekhar Shaik Mahaboob Basha Dhiraj Madhukar Kadhe Manikanta Nallamilli Srinivas Dwarapudi Saurabh Kundu Shakuntala Tudu Indrajit Paul Effect of Application of Compressive and Shear Force on Iron Ore Pellet Wet Feed on Green and Fired Pellet Quality. Society for Mining, Metallurgy & Exploration, 2022.

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