Claims
- 1. A method of microwave sintering boron carbide comprising the following steps:
- Step 1--leaching boron carbide powder with an aqueous solution of nitric acid to form a leached boron carbide powder;
- Step 2--coating said leached boron carbide powder of Step 1 with a glassy carbon precursor to form a coated boron carbide powder;
- Step 3--consolidating said coated boron carbide powder of Step 2 to form a consolidated powder and enclosing said consolidated powder in an enclosure of boron nitride particles coated with a of glassy carbon within a container for microwave heating to form consolidated and an enclosed coated boron carbide powder; and
- Step 4--sintering said consolidated and enclosed coated boron carbide powder within said container for microwave heating with microwave energy.
- 2. A method of microwave sintering boron carbide in accordance with claim 1 wherein said sintering in Step 4 is at a temperature less that 2000.degree. C.
- 3. A method of microwave sintering boron carbide in accordance with claim 1 wherein said sintering in Step 4 is at a temperature of about 1900 to about 1950.degree. C.
- 4. A method of microwave sintering boron carbide in accordance with claim 1 wherein said microwave energy in Step 4 is at 2.45 GHz.
- 5. A method of microwave sintering boron carbide in accordance with claim 1 wherein said consolidating of Step 3 comprises unidirectional pressing at about 5,000 to about 10,000 psi.
- 6. A method of microwave sintering boron carbide in accordance with claim wherein said glassy carbon precursor comprises a crosslinkable aromatic polymers selected from the group consisting of polyphenylenes, polyimides, aromatic epoxy formulations, phenolic resins, furan resins, and combination thereof.
Government Interests
This invention was made with Government support under contract DE-AC05-840R21400 awarded by the U.S. Department of Energy to Martin Marietta Energy Systems, Inc. and the Government has certain rights in this Invention.
US Referenced Citations (2)
| Number |
Name |
Date |
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4880578 |
Holcombe et al. |
Nov 1989 |
|
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5164130 |
Holcombe et al. |
Nov 1992 |
|