Claims
- 1. A method of producing a ceramic composite particle, said ceramic composite particle having an average particle size of 0.1-120 μm, which comprises a plurality of fine ceramic particle phases and a binder phase formed by a reaction between a fine particle of at least one ceramic material and a sintering aid, each of said fine ceramic particle phases comprising a fine primary particle of said at least one ceramic material and having a particle size in the range of 1 nm to 1 μm and said fine ceramic particle phases being bound together through said binder phase, the method comprising the steps of:preparing a homogeneous powder mixture of said fine particle of at least one ceramic material and said sintering aid; and heat-treating said homogeneous powder mixture at 1200-1500° C. until said binder phase is formed by a reaction between said sintering aid and said fine particle of at least one ceramic material.
- 2. The method of claim 1 wherein the content of α-silicon nitride is 30% or more of the silicon nitride in the ceramic composite particle when measured by X-ray diffraction.
- 3. The method of claim 1 wherein the content of α-silicon nitride is 40% or more of the silicon nitride in the ceramic composite particle when measured by X-ray diffraction.
- 4. A method of producing a ceramic composite particle, said ceramic composite particle having an average particle size of 0.1-120 μm, which comprises a plurality of fine ceramic particle phases and a binder phase formed by a reaction between a fine particle of at least one ceramic material and a sintering aid, each of said fine ceramic particle phases comprising a fine primary particle of said at least one ceramic material and having a particle size in the range of 1 nm to 1 μm, and said fine ceramic particle phases being bound together through said binder phase, said method comprising the steps of:preparing a homogeneous powder mixture of a silicon powder, a carbonaceous powder, said sintering aid and optionally said fine particle of at least one ceramic material; heat-treating said homogeneous powder mixture in a nitrogen-containing atmosphere at 1450° C. or lower to simultaneously cause nitriding and carbonizing reactions of silicon; and continuously heat-treating said homogeneous powder mixture at a temperature 10-100° C. higher than the nitriding and carbonizing temperature until said binder phase is formed by a reaction between said sintering aid and silicon nitride formed by said nitriding reaction of silicon.
- 5. The method of claim 4 wherein the content of α-silicon nitride is 30% or more of the silicon nitride in the ceramic composite particle when measured by X-ray diffraction.
- 6. The method of claim 4 wherein the content of α-silicon nitride is 40% or more of the silicon nitride in the ceramic composite particle when measured by X-ray diffraction.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9-219791 |
Aug 1997 |
JP |
|
Parent Case Info
This is a divisional of application Ser. No. 09/103,571 filed Jun. 24, 1998, now U.S. Pat. No. 6,133,180 the disclosure of which is incorporated herein by reference.
US Referenced Citations (9)
Foreign Referenced Citations (2)
Number |
Date |
Country |
2-160669 |
Jun 1990 |
JP |
3-261611 |
Nov 1991 |
JP |