Claims
- 1. An apparatus comprising:
a dispensing means; a collecting means; a means for directing a molten particle from the dispensing means to the collecting means comprising at least one of an electrostatic field or an electromagnetic field; and a means for transferring heat from the collecting means comprising a means for generating a non-equilibrium plasma.
- 2. The apparatus of claim 1, further comprising at least one magnetic coil.
- 3. The apparatus of claim 1, further comprising a means for charging the molten particles.
- 4. The apparatus of claim 3, wherein the means for charging the molten particle comprises a thermionic emission source or a tribocharging device.
- 5. The apparatus of claim 1, wherein the dispensing means comprises a gas atomizer.
- 6. The apparatus of claim 1, further comprising a means for transferring heat from the molten particles.
- 7. The apparatus of claim 6, wherein the means for transferring heat from the molten particle comprises gas conduction or convection.
- 8. The apparatus of claim 6, wherein the means for transferring heat from the molten particle comprises a non-equilibrium plasma.
- 9. The apparatus of claim 1, further comprising a means for transferring heat from the molten particle comprising:
a first heat sink, wherein the first heat sink is electrically charged or held at a potential; and a means for transferring heat from the molten particle to the first heat sink comprising a means for generating a non-equilibrium plasma.
- 10. The apparatus of claim 9, wherein the non-equilibrium plasma is a glow discharge or a cold corona discharge.
- 11. The apparatus of claim 1, further comprising
a means for expelling the molten particle through at least one orifice in the dispensing means; and a means for applying a rapid electrostatic charge to the molten particle.
- 12. The apparatus of claim 11, wherein the means for expelling the molten particle through the at least one orifice comprises a mechanical or electromechanical actuator.
- 13. The apparatus of claim 11, wherein the means for expelling the molten particle through the at least one orifice comprises a pressure means that produces a pressure one the inside of the dispensing means that is greater than the pressure on the outside of the dispensing means.
- 14. The apparatus of claim 13, wherein the pressure means causes interrupted flow of the molten particle from the dispensing means.
- 15. The apparatus of claim 11, wherein the rapid electrostatic charge comprises an arc discharge or an electron beam.
- 16. A spray forming method comprising:
directing molten particle from a dispensing means to a collecting means by producing at least one of an electrostatic field or an electromagnetic field between the dispensing means and the collecting means; and transferring heat from the molten particle using a non-equilibrium plasma.
- 17. The method of claim 16, comprising producing the electromagnetic field with at least one magnetic coil.
- 18. The method of claim 16, further comprising charging the molten particles.
- 19. The method of claim 18, comprising charging the molten particle using a thermionic emission source or a tribocharging device.
- 20. The method of claim 16, wherein the dispensing means is a gas atomizer.
- 21. The method of claim 16, comprising transferring heat from the molten particle using gas conduction and convection.
- 22. The method of claim 16, further comprising producing a second electromagnetic field.
- 23. The method of claim 16, further comprising transferring heat from the collecting means.
- 24. The method of claim 23, comprising transferring heat from the collecting means using a non-equilibrium plasma.
- 25. The method of claim 16, comprising applying a rapid electrostatic charge to the molten particle, wherein the rapid electrostatic charge causes the molten particle to form at least one smaller molten particle.
- 26. The method of claim 25, wherein the rapid electrostatic charge is an arc discharge or an electron beam.
- 27. The method of claim 16, wherein transferring heat from the molten particle comprises producing a non-equilibrium plasma that transfers heat from the molten particle to a first heat sink, wherein the first heat sink is electrically charged or held at a potential.
- 28. The method of claim 27, wherein the non-equilibrium plasma is a glow discharge or a cold corona discharge.
- 29. An apparatus comprising:
a melt chamber comprising at least one orifice; a means for forcing a molten material through the at least one orifice in the melt chamber; a means for applying a rapid electrostatic charge to the molten material; and a means for transferring heat from the collecting means comprising a means for generating a non-equilibrium plasma.
- 30. The apparatus of claim 29, wherein the rapid electrostatic charge is an arc discharge or an electron beam.
- 31. The apparatus of claim 29, further comprising a means for cooling the molten material.
- 32. The apparatus of claim 31, wherein the means for cooling the molten material comprises:
a first heat sink, wherein the first heat sink is electrically charged or held at a potential; and a means for transferring heat from the molten material to the first heat sink comprising a means for generating a non-equilibrium plasma.
- 33. The apparatus of claim 32, wherein the non-equilibrium plasma is a glow discharge or a cold corona discharge.
- 34. A method for atomizing a particle comprising:
producing a first molten particle;
applying a rapid electrostatic charge to the first molten particle, wherein the rapid electrostatic charge causes the first molten particle to form at least one smaller second molten particle; and cooling the second molten particle by producing a non-equilibrium plasma that transfers heat from the second molten particle to a first heat sink, wherein the first heat sink is electrically charged or held at a potential.
- 35. The method of claim 34, wherein the first molten particle is produced by melting a material in a melt chamber, and expelling the first molten particle through at least one orifice in the melt chamber.
- 36. The method of claim 34, wherein the rapid electrostatic charge is an arc discharge or an electron beam.
- 37. The method of claim 34, wherein the non-equilibrium plasma is a glow discharge or a cold corona discharge.
- 38. An apparatus for transferring heat between a first heat-transfer device and a workpiece comprising:
the first heat-transfer device, wherein the first heat-transfer device is electrically charged or held at a potential, and wherein the first heat-transfer device comprises a heat sink or a heat source; the workpiece, wherein the workpiece is mechanically separate from the first heat-transfer device; and a means for transferring heat between the workpiece and the first heat-transfer device comprising a means for generating a non-equilibrium plasma.
- 39. The apparatus of claim 38, wherein the non-equilibrium plasma is a glow discharge or a cold corona discharge.
- 40. The apparatus of claim 38, further comprising an external means for generating or maintaining the non-equilibrium plasma.
- 41. The apparatus of claim 40, wherein the external means for generating or maintaining the non-equilibrium plasma is a thermionic emission, an RF electromagnetic radiation, an electromagnetic radiation, a magnetic field or an electron beam.
- 42. The apparatus of claim 38, wherein the first heat-transfer device comprises a plurality of heat-transfer devices.
- 43. The apparatus of claim 38, further comprising a second heat-transfer device that is mechanically and electrically separate from the first heat-transfer device, wherein the second heat-transfer device comprises a heat sink or a heat source, and wherein the potential between the first heat-transfer device and the second heat-transfer device produces a non-equilibrium plasma.
- 44. A method for transferring heat between a first heat-transfer device and a workpiece comprising producing a non-equilibrium plasma that transfers heat between the first heat-transfer device and the workpiece, wherein the first heat-transfer device is electrically charged or held at a potential, wherein the first heat-transfer device is mechanically separate from the workpiece, and wherein the first heat-transfer device comprises a heat sink or a heat source.
- 45. The method of claim 44, wherein the non-equilibrium plasma comprises a glow discharge or a cold corona discharge.
- 46. The method of claim 44, further comprising an external means for producing or maintaining the non-equilibrium plasma.
- 47. The method of claim 44, wherein the external means for producing or maintaining the non-equilibrium plasma comprises a thermionic emission, an RF electromagnetic radiation, an electromagnetic radiation, a magnetic field or an electron beam.
- 48. A preform produced by the method of one of claims 44-47.
- 49. The preform of claim 48 which is a near net preform.
- 50. An article of manufacture produced by the method of one of claims 44-47.
- 51. The article of claim 50 which is a component of a gas turbine engine.
- 52. An apparatus comprising:
a dispenser; a collector; a means for directing a molten particle from the dispenser to the collector comprising at least one of an electrostatic field or an electromagnetic field; and a heat transferring device from the collector comprising a non-equilibrium plasma generator.
- 53. The apparatus of claim 52, wherein the non-equilibrium plasma generator is configured to produce a glow discharge or a cold corona discharge.
- 54. The apparatus of claim 52, further comprising a means for charging the molten particles.
- 55. The apparatus of claim 54, wherein the means for charging the molten particle comprises a thermionic emission source or a tribocharging device.
- 56. The apparatus of claim 52, wherein the dispenser is a gas atomizer.
- 57. An apparatus comprising:
a dispenser; a collector; a means for directing a molten particle from the dispenser to the collector comprising at least one of an electrostatic field or an electromagnetic field; and a heat transferring device from the molten particle comprising a non-equilibrium plasma generator.
- 58. The apparatus of claim 57, wherein the heat transferring device comprises gas conduction or convection.
- 59. The apparatus of claim 57, wherein the non-equilibrium plasma generator is configured to produce a glow discharge or a cold corona discharge.
RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Application No. 60/212,122, which was filed on Jun. 18, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60212122 |
Jun 2000 |
US |