Claims
- 1. A system for pressure molding plastic material, comprising:
a source of hot flowable plastic material; a manifold for receiving hot flowable plastic material from said source and for transporting the hot flowable plastic material; a nozzle cavity that is defined by at least one wall; a nozzle disposed within said nozzle cavity, said nozzle being operatively in communication with said manifold for receiving hot flowable plastic material therefrom; a heater for heating said nozzle, said heater being positioned outside of said nozzle cavity and having at least one electrical supply wire; a shut-off seal positioned within said nozzle cavity to seal said nozzle with respect to said wall defining said shut-off cavity; and a secondary seal positioned between said shut-off seal and said heater for ensuring that any hot flowable plastic material that might leak through said shut-off seal does not come into contact with said electrical supply wire.
- 2. A system according to claim 1, wherein said secondary seal is fabricated from a material comprising a high temperature plastic.
- 3. A system according to claim 2, wherein said secondary seal is fabricated from a material comprising Polyether-ether-ketone.
- 4. A system according to claim 1, wherein said secondary seal is positioned within a mold cavity that is separated from said nozzle cavity by said shut off seal.
- 5. A system according to claim 4, wherein said mold cavity is partially defined by a counterbore, and wherein said secondary seal is constructed and arranged to seal against an inner wall of said counterbore.
- 6. A system according to claim 5, wherein said secondary seal includes an outer surface having a first generally cylindrical portion and a second generally frustoconical portion.
- 7. A system according to claim 5, wherein said secondary seal includes an inner surface having a first generally cylindrical portion and a second generally frustoconical portion.
- 8. A system according to claim 7, wherein said inner surface further includes a generally horizontal portion.
- 9. A nozzle assembly for pressure molding plastic material, comprising:
a nozzle cavity that is defined by at least one wall; a nozzle disposed within said nozzle cavity, said nozzle being constructed and arranged to receive hot flowable plastic material from a source thereof; a heater for heating said nozzle, said heater being positioned outside of, but close to, said nozzle cavity and comprising an electrical supply wire; a shut-off seal positioned within said nozzle cavity to seal said nozzle with respect to said wall defining said shut-off cavity; and a secondary seal positioned between said shut-off seal and said heater for ensuring that any hot flowable plastic material that might leak through said shut-off seal does not come into contact with said electrical supply wire.
- 10. A nozzle assembly according to claim 9, wherein said secondary seal is fabricated from a material comprising a high temperature plastic.
- 11. A nozzle assembly according to claim 10, wherein said secondary seal is fabricated from a material comprising Polyether-ether-ketone.
- 12. A nozzle assembly according to claim 9, wherein said secondary seal is positioned within a mold cavity that is separated from said nozzle cavity by said shut off seal.
- 13. A nozzle assembly according to claim 12, wherein said mold cavity is partially defined by a counterbore, and wherein said secondary seal is constructed and arranged to seal against an inner wall of said counterbore.
- 14. A nozzle assembly according to claim 13, wherein said secondary seal includes an outer surface having a first generally cylindrical portion and a second generally frustoconical portion.
- 15. A nozzle assembly according to claim 13, wherein said secondary seal includes an inner surface having a first generally cylindrical portion and a second generally frustoconical portion.
- 16. A nozzle assembly according to claim 15, wherein said inner surface further includes a generally horizontal portion.
- 17. A method of retrofitting a pressure molding system of the type that includes a nozzle cavity having a nozzle disposed therein that is constructed and arranged to receive hot flowable plastic material from a source thereof, a heater for heating the nozzle that is positioned outside of, but close to, the nozzle cavity, and includes an electrical supply wire, and a shut-off seal positioned within the nozzle cavity to seal the nozzle with respect to the wall defining the shut-off cavity, comprising steps of:
(a) gaining access to an area within the pressure molding system that is between the shutoff seal and the electrical supply wire; and (b) installing a secondary seal in the area between the shut-off seal and the electrical supply wire to ensure that any hot flowable plastic material that might leak through the shut-off seal does not come into contact with the heater.
- 18. A method according to claim 17, wherein step (b) is performed with a secondary seal that is fabricated from a material including a high temperature plastic.
- 19. A method according to claim 18, wherein step (b) is performed with a secondary seal that is fabricated from a material comprising Polyether-ether-ketone
Parent Case Info
[0001] This is a continuation in part of Ser. No. 09/492,481, filed Jan. 27, 2000, the disclosure of which is hereby incorporated as if set forth fully herein.
Divisions (1)
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Number |
Date |
Country |
Parent |
09977825 |
Oct 2001 |
US |
Child |
10212586 |
Aug 2002 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09492481 |
Jan 2000 |
US |
Child |
09977825 |
Oct 2001 |
US |