Claims
- 1. A composition for ceramics, comprising: 100 parts per weight of a raw material powder composition having 100 vol. % of a powder of metallic silicon or from 0-55 vol. % of a powder selected from the group consisting of SiC, TiN, TiC, TiB.sub.2, ZrN, ZrC, ZrB.sub.2, Cr.sub.2 N, Cr.sub.3 C.sub.2, CrB, HfN, HfC, TaN, TaC, TaB.sub.2, Mo.sub.2 N, Mo.sub.2 C, MoB, NbN, NbC, NbB.sub.2, WC, TiB, VN, WSi.sub.2, TiSi.sub.2, ZrSi.sub.2, NbSi.sub.2, TaSi.sub.2, CrSi.sub.2, MoSi.sub.2, VC, Fe.sub.3 C, ThC, CeC.sub.2, Cr.sub.7 C.sub.2, Al.sub.2 O.sub.3, AlN, Si.sub.3 N.sub.4, Si.sub.2 N.sub.2 O, TiO.sub.2, BeO, and WN and from 45-100 vol. % of a powder of metallic silicon;
- and from 4-16 parts by weight of a binder, said binder being a thermoplastic resin and present in such an amount as to yield an apparent viscosity at 150.degree. C. of (3-90).times.10.sup.4 N.multidot.s/m.sup.2 for said composition for ceramics, wherein use of said composition in the production of a molded body results in a particle packing of at least 70 vol. % for the molded body.
- 2. A composition for ceramics comprising:
- 100 parts per weight of a raw material powder composition having from 0-55 vol. % of a powder selected from the group consisting of SiC, TiN, TiC, TiB.sub.2, ZrN, ZrC, ZrB.sub.2, Cr.sub.2 N, Cr.sub.3 C.sub.2, CrB, HfN, HfC, TaN, TaC, TaB.sub.2, Mo.sub.2 N, Mo.sub.2 C, MoB, NbN, NbC, NbB.sub.2, WC, TiB, VN, WSi.sub.2, TiSi.sub.2, ZrSi.sub.2, NbSi.sub.2, TaSi.sub.2, CrSi.sub.2, MoSi.sub.2, VC, Fe.sub.3 C, ThC, CeC.sub.2, Cr.sub.7 C.sub.2, Al.sub.2 O.sub.3, AlN, Si.sub.3 N.sub.4, Si.sub.2 N.sub.2 O, TiO.sub.2, BeO, and WN and from 45-100 vol. % of a powder of metallic silicon; and,
- from 4-16 parts by weight of a binder, said binder being a thermoplastic resin; and amount of said binder being B=((7S/20,000)+3).+-.2.5 wherein B represents parts by weight of the binder per 100 parts by weight of the raw material powder composition and S represents a specific surface area (cm/g) of the raw material powder composition, wherein use of said composition in the production of a molded body results in a particle packing of at least 70 vol. % for the molded body.
- 3. A ceramic composition for use in the production of a molded body having a particle packing of at least 70 vol. %, said ceramic composition prepared by a process comprising the steps of:
- (a) adding from 4-16 parts by weight of a binder, said binder being a thermoplastic resin, to 100 parts by weight of a raw material powder composition, said raw material powder composition comprising 100 volume percent of a powder of metallic silicon or from 0-55 volume percent of a powder selected from the group consisting of SiC, TiN, TiC, TiB.sub.2, ZrN, ZrC, ZrB.sub.2, Cr.sub.2 N, Cr.sub.3 C.sub.2, CrB, HfN, HfC, TaN, TaC, TaB.sub.2, Mo.sub.2 N, Mo.sub.2 C, MoB, NbN, NbC, NbB.sub.2, WC, TiB, VN, WSi.sub.2, TiSi.sub.2, ZrSi.sub.2, NbSi.sub.2, TaSi.sub.2, CrSi.sub.2, MoSi.sub.2, VC, Fe.sub.3 C, ThC, CeC.sub.2, Cr.sub.7 C.sub.2, Al.sub.2 O.sub.3, AlN, Si.sub.3 N.sub.4, Si.sub.2 N.sub.2 O, TiO.sub.2, BeO, and WN and from 45-100 vol. % of a powder of metallic silicon; and,
- (b) measuring the apparent viscosity at 150.degree. C. of said resulting composition to ensure that the apparent viscosity falls within a range of (3-90).times.10.sup.4 N.multidot.s/m.sup.2.
- 4. A ceramic composition for use in the production of a molded body having a particle packing of at least 70 vol. %, said ceramic composition prepared by a process comprising the steps of:
- (a) calculating an amount of a binder, said binder being a thermoplastic resin and the amount of said binder being B=((7S/20,000)+3).+-.2.5 wherein B represents parts by weight of the binder per 100 parts by weight of the raw material powder composition and S represents a specific surface area (cm/g) of the raw material powder composition; and,
- (b) adding said binder to 100 parts by weight of said raw material powder composition, said raw material powder composition comprising from 0-55 vol. % of a powder selected from the group consisting of SiC, TiN, TiC, TiB.sub.2, ZrN, ZrC, ZrB.sub.2, Cr.sub.2 N, Cr.sub.3 C.sub.2, CrB, HfN, HfC, TaN, TaC, TaB.sub.2, Mo.sub.2 N, Mo.sub.2 C, MoB, NbN, NbC, NbB.sub.2, WC, TiB, VN, WSi.sub.2, TiSi.sub.2, ZrSi.sub.2, NbSi.sub.2, TaSi.sub.2, CrSi.sub.2, MoSi.sub.2, VC, Fe.sub.3 C, ThC, CeC.sub.2, Cr.sub.7 C.sub.2, Al.sub.2 O.sub.3, AlN, Si.sub.3 N.sub.4, Si.sub.2 N.sub.2 O, TiO.sub.2, BeO, and WN and from 45-100 vol. % of a powder of metallic silicon.
Priority Claims (3)
Number |
Date |
Country |
Kind |
62-86871 |
Apr 1987 |
JPX |
|
62-110556 |
May 1987 |
JPX |
|
62-206698 |
Aug 1987 |
JPX |
|
Parent Case Info
This is a continuation of co-pending application Ser. No. 07/603,887 filed on Oct. 26, 1990, now abandoned, which is a divisional of co-pending application Ser. No. 07/500,102, now U.S. Pat. No. 5,130,055 filed on Mar. 26, 1990, which is a continuation of Ser. No. 179,984, filed Apr. 11, 1988, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (8)
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0296291 |
Dec 1988 |
EPX |
6092180 |
Jul 1981 |
JPX |
0172266 |
Oct 1983 |
JPX |
0200863 |
Oct 1985 |
JPX |
0246268 |
Dec 1985 |
JPX |
0178169 |
Apr 1986 |
JPX |
61-101465 |
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1101465 |
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JPX |
Divisions (1)
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Number |
Date |
Country |
Parent |
500102 |
Mar 1990 |
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Continuations (2)
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Number |
Date |
Country |
Parent |
603887 |
Oct 1990 |
|
Parent |
179984 |
Apr 1988 |
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