Zero thermal expansion material and practical component...

Compositions: ceramic – Ceramic compositions – Titanate – zirconate – stannate – niobate – or tantalate or...

Reexamination Certificate

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C501S102000, C501S104000, C423S594120, C423S594130

Reexamination Certificate

active

06844283

ABSTRACT:
Using as a negative thermal expansion material a double oxide containing at least partly a compound represented by the chemical formula: RQ,O, (wherein R is Zr, Hf or a tetravalent metallic element represented by a mixture system of these, and Q is a hexavalent metallic element selected from W and Mo), and using as a positive thermal expansion material a material containing at least partly a compound represented by the chemical formula: MQX, (wherein M is Mg, Ca, Sr, Ba, Ra or a divalent metallic element represented by a mixture system of any of these, Q is a hexavalent metallic element selected from W and Mo, and X is an element selected from O and S), these are mixed preferably in a weight ratio of 1:1 and are synthesized to obtain a material whose coefficient of thermal expansion is substantially zero over a wide temperature range, i.e., a zero thermal expansion material. Using this zero thermal expansion material, high-precision and high-performance practical component parts can be obtained.

REFERENCES:
patent: 5322559 (1994-06-01), Sleight
patent: 5433778 (1995-07-01), Sleight
patent: 5514360 (1996-05-01), Sleight et al.
patent: 5694503 (1997-12-01), Fleming et al.
patent: 6187700 (2001-02-01), Merkel
patent: 6377729 (2002-04-01), Merkel
patent: 6403511 (2002-06-01), Fleming et al.
Chemi. Matter. 1995, 7, 412-417.
Chemi. Matter. 1996, 8, 2809-2823.
Physica B 241-243 (1998) 311-316.
Journal of Solid State Chemistry 149 (2000) 92-98.

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