Difference between revisions of "Corundum"

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Corundum is the mineral aluminum oxide crystallized in a hard form.  Ruby and sapphire are forms of corundum.   
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Corundum is the mineral of aluminum oxide ([[alumina]]) crystallized in a hard form.  Ruby and sapphire are forms of corundum.   
Artificial Corundum could be made on the moon by purifying aluminum oxide, melting it, and recrystallizing it.  It is useful as grit for abrasive machining. Corundum can have a hardness of 9 Mohs. So, it should be useful for abrading cast basalt, iron, and steel.   
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Artificial Corundum could be made on the moon by purifying aluminum oxide, melting it, and recrystallizing it.  Corundum is produced artificially by various growth methods from very pure molten alumina. at 2100C.  It is useful as grit for abrasive machining of cast basalt, iron and steel Corundum can have a hardness of 9 Mohs.
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Corundum doped with iron or titanium with produces blue sapphires than can be used in lasers and optics. Corundum doped with chromium produces red rubies that are also used in optics and lasers. 
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Corundum cut from large boules (a single cristal grown from the molten alumina bath) create exceptionally strong and transparent windows for instrumentation.   
 
   
 
   
 
[[Category:Abrasive Machining]]
 
[[Category:Abrasive Machining]]
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[[Category:Engineering Stubs]]

Latest revision as of 13:53, 6 February 2021

Corundum is the mineral of aluminum oxide (alumina) crystallized in a hard form. Ruby and sapphire are forms of corundum. Artificial Corundum could be made on the moon by purifying aluminum oxide, melting it, and recrystallizing it. Corundum is produced artificially by various growth methods from very pure molten alumina. at 2100C. It is useful as grit for abrasive machining of cast basalt, iron and steel Corundum can have a hardness of 9 Mohs.

Corundum doped with iron or titanium with produces blue sapphires than can be used in lasers and optics. Corundum doped with chromium produces red rubies that are also used in optics and lasers.

Corundum cut from large boules (a single cristal grown from the molten alumina bath) create exceptionally strong and transparent windows for instrumentation.