Claims
- 1. A system for synthesizing a nano-scaled powder material, comprising:
(A) a chamber for receiving nano-scaled clusters generated from a material selected from the group consisting of a metal, a metal compound, and a ceramic; (B) a twin-wire electrode device in supplying relation to said chamber for supplying nano-scaled clusters therein, said electrode device comprising
(i) two wires made up of said material, with each wire having a leading tip which is continuously or intermittently fed into said chamber in such a fashion that the two leading tips are maintained at a desired separation; and (ii) means for providing electric currents and a working gas flow for creating an ionized arc between the two leading tips for melting and/or vaporizing said material to generate said nano-scaled clusters; (C) means for injecting a quench gas and/or a reaction gas into a quenching/reaction zone inside said chamber at a point inside said arc or downstream from said arc to facilitate the formation of nano-scaled powder particles; and (D) means to collect the nano-scaled powder material.
- 2. The system as defined in claim 1, further including a second plasma arc zone below said ionized arc to vaporize any un-vaporized material dripped therefrom.
- 3. The system as defined in claim 1, further including a reservoir disposed at the bottom portion of said arc or a distance below said arc in such a fashion that said reservoir receives any unvaporized material from the wires and exposes said un-vaporized material to the heat energy of said arc to further vaporize at least a portion of said un-vaporized material.
- 4. A system for synthesizing a nano-scaled powder material mixture, comprising:
(A) a chamber for receiving nano-scaled clusters generated from two materials of different compositions with each material selected from the group consisting of a metal, a metal compound, and a ceramic; (B) a twin-wire electrode device in supplying relation to said chamber for providing nano-scaled clusters therein, said electrode device comprising
(i) two wires respectively made up of said two different materials, each wire having a leading tip and each wire being continuously or intermittently fed into said chamber in such a fashion that the two leading tips are maintained at a desired separation; and (ii) means for providing electric currents and a working gas flow for creating an ionized arc between the two leading tips for melting and/or vaporizing said materials to generate said nano-scaled clusters; (C) means for injecting a quench gas and/or a reaction gas into a quenching/reaction zone inside said chamber at a point inside said arc or downstream from said arc to produce a nano-scaled powder particle mixture; and (D) means to collect the nano-scaled powder material mixture.
- 5. The system as defined in claim 1, 2, 3, or 4 further including wire feed and control means to regulate the feed rates of said two wires.
- 6. The system as defined in claim 1, 2, 3, or 4 wherein said means for providing electric currents comprises an electric power supply selected from the group consisting of a high-voltage source, a high-current source, a pulsed power source, and combinations thereof.
- 7. The system as defined in claim 1, 2, 3, or 4 further including means for controlling the rate of flow of the quench gas and/or the reaction gas, thereby enabling change of particle size of the nano-scaled powder material.
- 8. The system as defined in claim 1, 2, 3, or 4 wherein said reaction gas is selected from the group consisting of nitrogen, phosphorus, arsenic, oxygen, sulfur, selenium, tellurium, fluorine, chlorine, bromine, iodine, a carbon-containing gas, and mixtures thereof.
- 9. The system as defined in claim 1, 2, 3, or 4 wherein said working gas is selected from the group consisting of nitrogen, hydrogen, noble gases and mixtures thereof.
- 10. The system as defined in claim 1, 2, 3, or 4 wherein said means to collect the nano-scaled powder material comprises a cyclonic mixer for turbulently mixing said nano clusters produced in said reaction zone for cooling said nano clusters to become a solid nano powder and means for filtering the nano powder material from gas flowing through the system.
- 11. The system as defined claim 1, 2, 3, or 4 wherein said means for injecting comprises a concentric gas injection device adjustably positioned along the location of said ionized arc.
- 12. The system as defined in claim 1, 2, 3, or 4 wherein said quench gas is selected from the group consisting of helium, argon, air, water vapor, carbon monoxide, carbon dioxide, hydrogen and combinations thereof.
- 13. The system as defined in claim 1, 2, 3, or 4 further including means for providing dissociable inert gas mixable with said working gas, the dissociable inert gas increasing the temperature gradient in said ionized arc.
- 14. The system as defined in claim 1, 2, 3, or 4 further including means separate from said means for injecting a quench/reaction gas, said separate means for injecting a cooling gas into said nano clusters, thereby minimizing agglomeration of the nano powder material or mixture.
- 15. The system as defined in claim 1, 2, 3, or 4 wherein said working gas flow direction is approximately vertical.
Government Interests
[0001] The present invention was based on the research results of a project supported by the U.S. National Science Foundation SBIR Program. The U.S. Government has certain rights on this patent.