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Sintered polycrystalline terbium aluminum garnet and use thereof in magneto-optical devices
   
Document Number
US Patent 7427577
Issued Date
September 23, 2008
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Inventors
Tang; Yin (Ann Arbor, MI)
Nguyen; Long (Belleville, MI)
Hinklin; Tom (Kalamazoo, MI)
Scerbak; David (Traverse City, MI)
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Abstract
A composition is provided that includes a plurality of calcined particles of terbium aluminum oxide having a mean particle domain size of between 30 and 600 nanometers. A translucent article having a surface includes polycrystalline terbium aluminum garnet having a mean grain size from 1 to 10 microns and light scattering inclusions of aluminum-rich oxide and/or terbium-rich oxide that are present at less than 2 surface area percent of the surface. A process for forming such an article involves sintering the above provided composition at a temperature between 1500.degree. C. and 1700.degree. C. to yield a sintered article. The article has improved translucency and even transparency as sintering is performed under vacuum at a temperature between 1610.degree. C. and 1680.degree. C. Hot isostatic pressing alone or in combination with article polishing also improves article translucency.
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Number of Claims:
7
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Owner
Published
September 23, 2008
Application Number
11/399,198
Filed
April 6, 2006
US Classification
501/152   501/153
Int'l Classification
C04B   35/50   (20060101)  
Examiner
USPTO Field of Search
501/152   501/153   252/301.4R   252/62.57  
Related Patents
7592281 - Sintered polycrystalline terbium aluminum garnet and use thereof in magneto-optical devices - Owned by Nanocerox, Inc. (Ann Arbor, MI)

A composition is provided that includes a plurality of calcined particles of terbium aluminum oxide having a mean particle domain size of between 30 and 600 nanometers. A translucent article having a surface includes polycrystalline terbium aluminum garnet having a mean grain size from 1 to 10 microns and light scattering inclusions of aluminum-rich oxide and/or terbium-rich oxide that are present at less than 2 surface area percent of the surface. A process for forming such an article involves sintering the above provided composition at a temperature between 1500.degree. C. and 1700.degree. C. to yield a sintered article. The article has improved translucency and even transparency as sintering is performed under vacuum at a temperature between 1610.degree. C. and 1680.degree. C. Hot isostatic pressing alone or in combination with article polishing also improves article translucency.

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Description
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