Claims
- 1. A multi-layered container, comprising:
a layer of a formable polymer; and a layer of a composition comprising a blend of (i) between 10 and 70% by weight of a polyethylene terephthalate material and (ii) at least 30% by weight of a polyamide material, wherein the container has superior layer-to-layer lamination strength.
- 2. The container of claim 1, wherein the layer-to-layer lamination strength is sufficient such that a filled 473 ml bottle can withstand a drop of 46 cm without appreciable delamination.
- 3. The container of claim 1, wherein the layer-to-layer lamination strength is sufficient such that a filled 473 ml bottle can withstand a drop of 1.2 m without appreciable delamination.
- 4. The container of claim 1, wherein the formable polymer comprises a formable polyester is selected from the group consisting of PET, PC-PET, PETG, PEN and PBT and the blend comprises between 30 and 60% by weight polyamide.
- 5. The container of claim 4, wherein the blend comprises between 20 and 60% by weight PET and wherein the polyamide comprises MXD6.
- 6. The container of claim 1, wherein the blend further comprising an oxygen scavenging material, wherein the oxygen scavenging material forms active metal complexes having capacity to bond with oxygen for conferring high oxygen barrier properties to the composition.
- 7. The container of claim 6, wherein the oxygen scavenging material comprises cobalt.
- 8. The container of claim 6, wherein the oxygen scavenging material comprises mixed metal nanoparticles.
- 9. The container of claim 1, wherein the blend comprises between 45 and 60% by weight PET.
- 10. The container of claim 1, wherein the blend comprises between 30 and 60% by weight MXD6.
- 11. The container of claim 1, wherein the blend comprises between 40 and 55% by weight of the polyamide material.
- 12. The container of claim 1, wherein the blend, when formed into a three-layer (PET-Blend-PET), 295 ml beverage bottle having a total wall thickness of 0.051 cm and a core layer of 5% of the total wall thickness, would exhibit less than 15% loss of CO2 over a 7.5 week period.
- 13. The container of claim 1, wherein the blend, when formed into a three-layer (PET-Blend-PET), 295 ml beverage bottle having a total wall thickness of 0.051 cm and a core layer of 5% of the total wall thickness, would exhibit less than 0.02 cc/pkg/day transmission of O2.
- 14. A preform for expansion into a hollow plastic container body, the preform having a multilayered body-forming portion including:
a blend layer comprising: a between 10 and 70% by weight formable polyester and at least 30% by weight polyamide material; and at least one adjacent layer of a formable polymer composition.
- 15. The preform of claim 14, wherein the formable polymer composition comprises polyethylene terephthalate.
- 16. The preform of claim 15, wherein the preform has been expanded into a hollow plastic container body.
- 17. The expanded preform of claim 16, wherein the blend layer has an average thickness of between 1 and 10 percent of the overall thickness of the body.
- 18. The perform of claim 14, wherein the formable polyester is selected from the group consisting of PET, PC-PET, PETG, PEN and PBT.
- 19. A method of producing a container having a multilayered wall, comprising the steps of:
providing a blend comprising: between 10 and 70% by weight formable polyester and at least 30% by weight polyamide material; providing a formable polymer; co-injecting the blend and the formable polymer to form a multilayered preform; and expanding the preform to form a container.
- 20. A method of producing a container having a multilayered wall, comprising the steps of:
providing a blend comprising: between 10 and 70% by weight formable polyester and at least 30% by weight polyamide material; providing a formable polymer; extruding a multilayer parison tube having inner and outer layers of the formable polymer and a core layer of the blend; clamping the parison tube into a hollow cavity mold; and blowing the parison against the cavity.
- 21. A method of producing a container having a multilayered wall, comprising the steps of:
providing a blend comprising: between 10 and 70% by weight formable polyester and at least 30% by weight polyamide material; providing a formable polymer; extruding a multilayer parison tube comprising inner and outer layers of the formable polymer and core layer of the blend; injecting one or more additional layers of polymer over the parison; clamping the parison tube into a hollow cavity mold; and blowing the parison against the cavity.
- 22. A method of producing a container having a multilayered wall, comprising the steps of:
providing a blend comprising: between 10 and 70% by weight formable polyester and at least 30% by weight polyamide material; providing a formable polymer; injecting the blend to form a preform; injecting a layer of the formable polymer against the preform; and heating and expanding the preform to form a container.
Priority Claims (1)
Number |
Date |
Country |
Kind |
PCT/US01/46050 |
Oct 2001 |
WO |
|
RELATED APPLICATIONS
[0001] This is a continuation-in-part of PCT Application Serial No. PCT/US01/45254 filed Oct. 31, 2001 (published in English under PCT Article 21(2)), which claims priority from the following: 1) U.S. Provisional Patent Application No. 60/246,834, filed on Nov. 8, 2000; 2) U.S. Provisional Patent Application No. 60/273,610 filed Mar. 6, 2001; and 3) PCT Application Serial No. PCT/US01/46050 filed on Oct. 31, 2001. All of these applications for which priority is claimed, as well as PCT/US01/45254, are incorporated herein by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60246834 |
Nov 2000 |
US |
|
60273610 |
Mar 2001 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/US01/45254 |
Oct 2001 |
US |
Child |
10215365 |
Aug 2002 |
US |