Claims
- 1. The process which comprises:
forming a plastic article by injecting molten plastic into an injection mold at an elevated temperature; cooling the plastic from the molten condition to a solid condition; wherein a first portion of the molten plastic is rapidly cooled from the molten condition to the solid condition by a first means adjacent said first portion to form an amorphous first portion, and a second portion of the plastic is slowly cooled from the molten condition to the solid condition by a second means adjacent said second portion to form a crystallized second portion.
- 2. The process of claim 1, wherein said article has a closed bottom, a sidewall portion extending from the closed bottom, and a neck region extending from the sidewall, including the step of crystallizing at least a portion of the neck region to form a neck region where the crystallized portion thereof has a higher strength than the body region.
- 3. The process of claim 1, including the step of providing cooling means in said injection mold to cool said article, and insulating at least a portion of the second portion from said cooling means.
- 4. The process of claim 1, including forming a plastic preform in said injection mold.
- 5. The process of claim 1, wherein said plastic is polyethylene terephthalate.
- 6. The process of claim 2, including providing said injection mold with a mold core and a cooling tube inside said mold core, and insulating said cooling tube adjacent at least a portion of said neck region.
- 7. The process of claim 2, including providing said injection mold with a mold core and a cooling tube inside said mold core, and insulating said mold core adjacent at least a portion of said neck region.
- 8. The process of claim 2, including providing said injection mold with a mold core and a neck ring with at least one cooling channel in said neck ring, and insulating said neck ring adjacent at least a portion of said neck region.
- 9. The process of claim 1, including the step of providing heating means adjacent at least a portion of said second portion to heat at least a portion of said second portion to at least begin crystallizing said second portion.
- 10. The process of claim 2, including the step of providing a thermal break means adjacent at least a portion of said second portion to at least begin crystallizing said second portion.
- 11. The process of claim 2, including the step of providing a neck ring adjacent said neck region, and including the step of heating a first part of said neck ring and cooling a second part of said neck ring, and insulating the first from the second part.
- 12. The process of claim 2, including providing a mold core of said injection mold, forming a cooling channel inside said mold core, and forming a cooling restriction in said cooling channel adjacent said neck region.
- 13. The process of claim 1, including the step of forming a multilayered plastic article.
- 14. The process according to claim 1, wherein slow cooling of said second portion continues outside of said injection mold.
- 15. The apparatus which comprises:
an injection mold having a mold cavity therein; means for injecting molten plastic into said mold to form a plastic article therein; means in heat exchange relationship with said mold cavity to cool said plastic from the molten condition to the solid condition; wherein said means includes a first means adjacent a first portion of said plastic to rapidly cool said first portion of said plastic from the molten condition to the solid condition to form an amorphous first portion, and includes a second means adjacent a second portion of said plastic to slowly cool said second portion from the molten condition to the solid condition to form crystallized second portion.
- 16. The apparatus of claim 15, wherein the article has a closed bottom, a sidewall portion extending from the closed bottom, and a neck region extending from the sidewall, wherein the means adjacent the second portion is adjacent at least a portion of the neck region to form a neck region where the crystallized portion thereof has a higher strength than the body region.
- 17. The apparatus of claim 15, wherein the means adjacent the second portion includes insulating means which insulates at least a portion of the second portion from the cooling means.
- 18. The apparatus of claim 15, wherein said mold cavity defines the shape of a preform.
- 19. The apparatus of claim 15, wherein said plastic is polyethylene terephthalate.
- 20. The apparatus according to claim 16, wherein said injection mold includes a mold core and a cooling tube inside said mold core, and wherein said means adjacent said second portion includes insulating means on said cooling tube adjacent at least a portion of said neck region.
- 21. The apparatus according to claim 16, wherein said injection mold includes a mold core and a cooling tube inside said mold core, and wherein said means adjacent said second portion includes insulating means on said mold core adjacent at least a portion of said neck region.
- 22. The apparatus according to claim 16, wherein said injection mold includes a mold core and a neck ring and at least one cooling channel in said neck ring, and wherein said means adjacent said second portion includes insulating means on said neck ring adjacent at least a portion of said neck region.
- 23. The apparatus of claim 15, wherein said means adjacent said second portion includes heating means adjacent at least a portion of said second portion to heat at least a portion of said second portion to at least begin crystallizing said second portion.
- 24. The apparatus according to claim 16, wherein said means adjacent said second portion includes a thermal break means adjacent at least a portion of said second portion to at least begin crystallizing said second portion.
- 25. The apparatus according to claim 16, including a neck ring adjacent said neck region, said neck ring including a heated first part and a cooled second part, with insulation therebetween.
- 26. The apparatus according to claim 16, wherein said injection mold includes a mold core and a cooling tube inside said mold core which forms a cooling channel, including a cooling restriction in said cooling channel adjacent the neck region.
- 27. The apparatus according to claim 15, for forming a multilayered, plastic article.
- 28. The apparatus according to claim 15, wherein said second means continues slow cooling of said second portion outside of said injection mold.
- 29. An injection molded article which comprises: an injection molded plastic article formed by injecting molten plastic into an injection mold, wherein said article includes an amorphous first portion formed by rapidly cooling said molten plastic of said first portion by a first means adjacent said first portion to the solid condition, and a crystallized second portion formed by slowly cooling said molten plastic of said second portion from the molten condition to the solid condition by a second means adjacent said second portion.
- 30. The article of claim 29, wherein said article has a closed bottom, a sidewall portion extending from the closed bottom, and a neck region extending from the sidewall, wherein at least a portion of the neck region is crystallized.
- 31. The article of claim 30, wherein said article is a plastic preform.
- 32. The article of claim 30, wherein said plastic is polyethylene terephthalate.
- 33. The article of claim 29, wherein said article is a multilayered plastic article.
- 34. An injection process for molding articles made of a single or multiple materials having amorphous and crystalline portions, comprising the steps of:
(a) injecting molten material into a mold cavity space made of a mold cavity and a mold core; (b) cooling the molten material from the molten condition characterized by a melt temperature range to a substantially solid condition characterized by a glass temperature range, while passing through an intermediate crystalline condition characterized by a crystallinity temperature range, wherein,
at least a first portion of the molten material is cooled by a first temperature conditioning means from the molten condition to the solid condition by rapidly passing through said crystallinity temperature range to form at least an amorphous first portion; at least a second portion of the molten material is cooled by a second temperature conditioning means from the molten condition to the solid condition by relatively slowly passing through said crystalline temperature range to form at least a second crystalline portion; and c) opening the mold cavity space for further processing and handling the molded article having a first portion at said glass condition and a second portion at least partially at said crystalline condition.
- 35. An injection process for molding articles made of a single or multiple materials having amorphous and crystalline portions according to claim 34, wherein said further processing includes a temperature processing step applied to said second portion to maintain it within the crystalline temperature range to enhance the crystallinity content of the second portion initiated at step b).
- 36. An injection process of molding articles made of a single or multiple materials having amorphous and crystalline portions according to claim 34, wherein said first and second temperature conditioning means are located in the mold cavity and the mold core.
- 37. An injection process of molding articles made of a single or multiple materials having amorphous and crystalline portions according to claim 36, wherein said first and second temperature conditioning means are respectively adjacent said first portion, said second portion.
- 38. A method of injection molding an article comprising the steps of:
injecting a molten material in the cavity space formed between a cavity and a core, whereby said cavity space having a plurality of consecutive portions arranged along the injection axis of the cavity space; cooling the molten material from the melt temperature to the glass temperature using cooling means adjacent said portions that provide simultaneously different temperatures to the molten material; ejecting the molded article from the cavity space immediately after the material at the portions that have been cooled at the highest temperatures can be removed using mold ejection means from the mold cores without suffering any substantial deformation.
- 39. A mold for forming blowable polyethylene terephthalate preform articles comprising:
a mold cavity made of at least two portions, where one portion comprises molding means to form a threaded portion in the neck portion of the molded preform; a mold core cooperating with the mold cavity to form a mold cavity space to receive a heated polyethylene terephthalate melt; means to temperature condition the cavity portions independently so that the portions are cooled at different temperatures during the transition of the polyethylene terephthalate from the melt status to the glass status and passing through the crystalline status.
- 40. A mold for forming blowable PET preform articles comprising:
a mold cavity made of at least two portions, where one portion comprises molding means to form a threaded portion in the neck portion of the molded preform; a mold core cooperating with the mold cavity to form a mold cavity space to receive a heated polyethylene terephthalate melt; separate means to temperature condition the neck portion independently so that the neck portion is cooled at different temperatures during the transition of the PET from the melt status to the crystalline and glass status.
- 41. A neck ring for use in injection molding plastic articles which comprises a neck ring portion adjacent the neck portion of said plastic articles, and cooling and heating means provided in said neck ring.
- 42. A neck ring according to claim 41, including thermal insulation adjacent at least a portion of the neck portion of said plastic articles.
- 43. A neck ring according to claim 41, wherein said heating means is operative to heat at least a portion of said neck ring and said adjacent neck portion of the plastic articles.
- 44. A neck ring according to claim 41, including a thin film heater adjacent the neck portion of said plastic articles.
- 45. A core for use in injection molding plastic articles comprising a core surface adjacent said plastic articles and cooling and heating means in said core.
- 46. A core according to claim 45, including a core tube within said core made of at least two materials.
- 47. A core according to claim 45, wherein said core includes internal thermal insulation of at least a portion of a surface thereof.
- 48. A core according to claim 45, wherein said core includes heating means over at least a portion of the surface thereof.
- 49. A core according to claim 48, wherein said heating means is a thin film heater.
- 50. A core according to claim 45, wherein the internal surface thereof includes grooves to increase the internal surface of the core and create turbulent flow.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of Provisional Application Serial No. 60/043,703, filed Apr. 16, 1997.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60043703 |
Apr 1997 |
US |
Divisions (2)
|
Number |
Date |
Country |
Parent |
09617563 |
Jul 2000 |
US |
Child |
09832547 |
Apr 2001 |
US |
Parent |
09057883 |
Apr 1998 |
US |
Child |
09617563 |
Jul 2000 |
US |