Claims
- 1. A method of manufacturing a polymerized electrically conducting composite material, the polymerized electrically conducting composite material comprising at least one polymer matrix and at least one conductive filler; the at least one polymer matrix comprising at least one thermoplastic polymerized from at least one cyclic thermoplastic oligomer, the method comprising:providing at least one cyclic thermoplastic oligomer; providing at least one metallic conductive filler; providing at least one polymerization reaction initiator; dry blending the at least one cyclic thermoplastic oligomer, the at least one polymerization reaction initiator and the at least one metallic conductive filler to form a dry blend of at least one cyclic thermoplastic oligomer and at least one metallic conductive filler, wherein the conductive filler is dispersed in the dry blend; applying heat and pressure to the blend of the at least one cyclic thermoplastic oligomer and at least one metallic conductive filler; and polymerizing the at least one cyclic thermoplastic oligomer and at least one metallic conductive filler blend to form a polymerized electrically conductive composite material.
- 2. A method according to claim 1, placing the blend of at least one metallic polymer matrix and the at least one conductive filler in a mold prior to the applying heat and pressure.
- 3. A method according to claim 1, further comprising cooling the polymerized electrically conductive composite material while maintaining the applied pressure.
- 4. A method according to claim 3, further comprising moving the polymerized electrically conductive composite material from the mold after the cooling.
- 5. A method according to claim 1, further comprising cooling the polymerized electrically conductive composite material while maintaining the applied pressure and removing the polymerized electrically conductive composite material from the mold after the cooling.
- 6. The method according to claim 1, further comprising sandwiching the polymerized electrically conductive composite material between two electrically conducting materials.
- 7. The method according to claim 1, wherein the providing at least one cyclic thermoplastic oligomer comprises:providing the at least one cyclic thermoplastic oligomer in solution; blending the at least one cyclic thermoplastic oligomer in solution with the at least one polymerization reaction initiator to form an at least one cyclic thermoplastic oligomer and at least one polymerization reaction initiator blend; drying the at least one cyclic thermoplastic oligomer and at least one polymerization reaction initiator blend into a dried blend at a temperature below a melting point of each at least one cyclic thermoplastic oligomer; and grinding the dried at least one cyclic thermoplastic oligomer and at least one polymerization reaction initiator blend into a powder.
- 8. The method according to claim 1, wherein the providing at least one cyclic thermoplastic oligomer, the providing at least one metallic conductive filler, the providing at least one polymerization reaction initiator, and the blending the at least cyclic thermoplastic oligomer and the at least one metallic conductive filler together to form an at least one metallic cyclic thermoplastic oligomer and at least one conductive filler blend comprises:providing a melt of at least one cyclic thermoplastic oligomer; adding the at least one metallic conductive filler to the melt; and blending the melt of at least one cyclic thermoplastic oligomer and the at least one metallic conductive filler with the at least one polymerization reaction initiator.
- 9. The method according to claim 1, wherein the providing at least one cyclic thermoplastic oligomer, the providing at least one metallic conductive filler, the providing at least one polymerization reaction initiator, and the blending the at least one cyclic thermoplastic oligomer and the at least one metallic conductive filler together to form an at least one metallic cyclic thermoplastic oligomer and at least one conductive filler blend comprises:blending the at least one polymerization reaction initiator with the at least one cyclic thermoplastic oligomer to form a blend; melting the blend to form an at least one cyclic thermoplastic oligomer and at least one polymerization reaction initiator melt mixture; and adding the at least one metallic conductive filler to the melt mixture.
- 10. The method according to claim 1, wherein the providing at least one cyclic thermoplastic oligomer, the providing at least one metallic conductive filler, the providing at least one polymerization reaction initiator, and the blending the at least one polymer matrix and the at least one metallic conductive filler together to form an at least one cyclic thermoplastic oligomer and at least one metallic conductive filler blend comprises:melting the at least one cyclic thermoplastic oligomer to form a melt; blending the at least one polymerization reaction initiator with the melt to form a blend; and adding the at least one metallic conductive filler to the blend.
- 11. The method according to claim 1, wherein the at least one cyclic thermoplastic oligomer comprises at least one at least one cyclic thermoplastic oligomer selected from the group consisting of:cyclic polycarbonates; cyclic polyesters; and cyclic polyamides.
- 12. The method according to claim 1, wherein the at least one cyclic thermoplastic oligomer comprises at least one of cyclic bisphenol-A carbonate and cyclic butyleneterephthalate ester.
- 13. The method according to claim 1, further comprising cooling the polymerized conductive composite material.
- 14. The method according to claim 1, wherein the polymerizing occurs essentially without formation of by-products and without a need for solvent.
- 15. The method according to claim 14, wherein the providing at least one polymerization reaction initiator comprises selecting at least one of a 1,1,6,6-tetra-butyl-1,6-distanna-2,5,7,10-tetraoxacyclodecane polymerization reaction initiator and a lithium salicylate polymerization reaction initiator.
- 16. The method according to claim 1, wherein the blending comprises dry-blending.
- 17. A method of manufacturing a polymerized electrically conducting composite material, the polymerized electrically conducting composite material comprising at least one polymer matrix and at least one conductive filler; the at least one polymer matrix comprising at least one thermoplastic polymerized from at least one cyclic thermoplastic oligomer, the method comprising:providing at least one cyclic thermoplastic oligomer; providing at least one conductive filler; providing at least one polymerization reaction initiator; blending the at least one cyclic thermoplastic oligomer, the at least one polymerization reaction initiator and the at least one conductive filler to form a blend of at least one cyclic thermoplastic oligomer and at least one conductive filler; applying heat and pressure to the blend of the at least one cyclic thermoplastic oligomer and at least one conductive filler; and polymerizing the at least one cyclic thermoplastic oligomer and at least one conductive filler blend to form a polymerized electrically conductive composite material; wherein the at least one cyclic thermoplastic oligomer comprises cyclic butyleneterephthalate ester oligomers and the at least one conductive filler comprises nickel.
- 18. A method of manufacturing a polymerized electrically conducting composite material, the polymerized electrically conducting composite material comprising at least one polymer matrix and at least one conductive filler; the at least one polymer matrix comprising at least one thermoplastic polymerized from at least one cyclic thermoplastic oligomer, the method comprising:providing at least one cyclic thermoplastic oligomer; providing at least one conductive filler; providing at least one polymerization reaction initiator; blending the at least one cyclic thermoplastic oligomer, the at least one polymerization reaction initiator and the at least one conductive filler to form a blend of at least one cyclic thermoplastic oligomer and at least one conductive filler; applying heat and pressure to the blend of the at least one cyclic thermoplastic oligomer and at least one conductive filler; and polymerizing the at least one cyclic thermoplastic oligomer and at least one conductive filler blend to form a polymerized electrically conductive composite material; wherein the at least one cyclic thermoplastic oligomer comprises cyclic polyamide ester oligomers and the at least one conductive filler comprises nickel.
- 19. A method of manufacturing a polymerized electrically conducting composite material, the polymerized electrically conducting composite material comprising at least one polymer matrix and at least one conductive filler; the at least one polymer matrix comprising at least one thermoplastic polymerized from at least one cyclic thermoplastic oligomer, the method comprising:providing at least one cyclic thermoplastic oligomer; providing at least one conductive filler; providing at least one polymerization reaction initiator; blending the at least one cyclic thermoplastic oligomer, the at least one polymerization reaction initiator and the at least one conductive filler to form a blend of at least one cyclic thermoplastic oligomer and at least one conductive filler; applying heat and pressure to the blend of the at least one cyclic thermoplastic oligomer and at least one conductive filler; and polymerizing the at least one cyclic thermoplastic oligomer and at least one conductive filler blend to form a polymerized electrically conductive composite material; wherein the step of polymerizing comprises forming a polycarbonate from the at least one cyclic thermoplastic oligomer and the at least one conductive filler comprises nickel.
- 20. A method of manufacturing a polymerized electrically conducting composite material, the polymerized electrically conducting composite material comprising at least one polymer matrix and at least one conductive filler; the at least one polymer matrix comprising at least one thermoplastic polymerized from at least one cyclic thermoplastic oligomer, the method comprising:providing at least one cyclic thermoplastic oligomer; providing at least one conductive filler; providing at least one polymerization reaction initiator; blending the at least one cyclic thermoplastic oligomer, the at least one polymerization reaction initiator and the at least one conductive filler to form a blend of at least one cyclic thermoplastic oligomer and at least one conductive filler; applying heat and pressure to the blend of the at least one cyclic thermoplastic oligomer and at least one conductive filler; and polymerizing the at least one cyclic thermoplastic oligomer and at least one conductive filler blend to form a polymerized electrically conductive composite material; wherein the at least one conductive filler comprises nickel.
- 21. A method of manufacturing a current limiting device, the current limiting device comprising at least two electrodes; an electrically conducting composite material structure between said electrodes; interfaces between said electrodes and electrically conducting composite material structure; an inhomogeneous distribution of resistance at said interfaces whereby, during a high current event, adiabatic resistive heating at said interfaces causes rapid thermal expansion and vaporization and at least a partial physical separation at said interfaces; and means for exerting compressive pressure on said electrically conducting composite material structure, wherein said electrically conducting composite material comprises at least one polymer matrix formed from at least one cyclic thermoplastic oligomer and at least one conductive filler; the method comprising:manufacturing the electrically conducting composite material, formed from at least one polymer matrix and at least one conductive filler; the manufacturing the electrically conducting composite material comprising: providing at least one cyclic thermoplastic oligomer; providing at least one conductive filler; providing at least one polymerization reaction initiator, blending the at least one cyclic thermoplastic oligomer, the at least one polymerization reaction initiator, and the at least one conductive filler together to form an at least one cyclic thermoplastic oligomer and at least one conductive filler blend; and applying heat and pressure to the at least one cyclic thermoplastic oligomer and at least one conductive filler blend to polymerize the at least one cyclic thermoplastic oligomer and at least one conductive filler blend and form a polymerized the electrically conducting composite material; the manufacturing the current limiting device comprising: providing the at least two electrodes; and providing the polymerized electrically conducting composite material between the at least two electrodes and placing the at least two electrodes and electrically conducting composite material under pressure from the exerting means.
- 22. A method of manufacturing a electrically conducting composite material, the electrically conducting composite material comprising at least one polymer matrix and at least one preform, where the at least one polymer matrix is impregnated in the at least one preform; the at least one polymer matrix comprising at least one thermoplastic polymerized from at least one cyclic thermoplastic oligomer, the method comprising:providing at least one cyclic thermoplastic oligomer; blending the at least one cyclic thermoplastic oligomer with at least one polymerization reaction initiator; providing at least one electrically conductive metallic preform; providing the at least one electrically conductive metallic preform in a mold; impregnating the blend of the at least one cyclic thermoplastic with at least one polymerization reaction initiator into the at least one electrically conductive metallic preform provided in the mold; applying heat and pressure to the blend of the at least one cyclic thermoplastic oligomer with at least one polymerization reaction initiator in the mold; and polymerizing the blend of the at least one cyclic thermoplastic oligomer with at least one polymerization reaction initiator in the mold to form a polymerized electrically conductive composite material.
- 23. The method of claim 22, further comprising melting the at least one cyclic thermoplastic oligomer prior to the blending.
- 24. The method of claim 22, wherein the blending comprises dry blending the at least one cyclic thermoplastic oligomer and the at least one polymerization reaction initiator.
Parent Case Info
This application is a division of application Ser. No. 08/977,672, filed Nov. 24, 1997 now U.S. Pat. No. 6,373,372 which is hereby incorporated by reference in its entirety.
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