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Reduction of Titanium Dioxide to Metallic Titanium by Thermal Decomposition via Titanium Disulfide

Ichiro Seki

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Abstract

We have earlier reported the synthesis of metallic titanium ingot by thermal decomposition process using titanium nitride (TiN) as the intermediate material, with a significant low decomposition temperature of approximately 3500 K. The present study reports the manufacturing process of metallic titanium ingot via thermal decomposition using titanium sulfides (TiSX) as intermediate materials: decomposition temperature of one of the titanium sulfides, TiS, is approximately 4000 K. The thermal decomposition was performed by an arc-flame in a conventional arc melting equipment. The reduced product exhibiting a lustrous surface is analyzed by XRD, and is matched with diffraction pattern of metallic titanium.

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We have earlier reported the synthesis of metallic titanium ingot by thermal decomposition process using titanium nitride (TiN) as the intermediate material, with a significant low decomposition temperature of approximately 3500 K. The present study reports the manufacturing process of metallic titanium ingot via thermal decomposition using titanium sulfides (TiSX) as intermediate materials: decomposition temperature of one of the titanium sulfides, TiS, is approximately 4000 K. The thermal decomposition was performed by an arc-flame in a conventional arc melting equipment. The reduced product exhibiting a lustrous surface is analyzed by XRD, and is matched with diffraction pattern of metallic titanium.

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Available abstract

We have earlier reported the synthesis of metallic titanium ingot by thermal decomposition process using titanium nitride (TiN) as the intermediate material, with a significant low decomposition temperature of approximately 3500 K. The present study reports the manufacturing process of metallic titanium ingot via thermal decomposition using titanium sulfides (TiSX) as intermediate materials: decomposition temperature of one of the titanium sulfides, TiS, is approximately 4000 K. The thermal decomposition was performed by an arc-flame in a conventional arc melting equipment. The reduced product exhibiting a lustrous surface is analyzed by XRD, and is matched with diffraction pattern of metallic titanium.

Key concepts: Titanium, Materials science, Ingot, Tin, Thermal decomposition, Titanium nitride, Decomposition, Metal

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