Overmolded containers and methods of manufacture and use thereof
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B32B-027/08
B02C-023/20
B29C-047/02
B29C-045/14
B29C-049/08
B29C-049/22
B29D-022/00
출원번호
US-0307700
(2006-02-17)
등록번호
US-8192812
(2012-06-05)
발명자
/ 주소
Shi, Yu
Durham, Daniel J.
Readdy, Robert L.
출원인 / 주소
The Coca-Cola Company
대리인 / 주소
Sutherland Asbill & Brennan LLP
인용정보
피인용 횟수 :
0인용 특허 :
24
초록▼
Overmolded containers and methods of manufacture thereof are disclosed, which may provide enhanced visual and tactile characteristics, enabling innovative packaging designs, improved grippability and thermal insulation. The containers can be made cost effectively manner, with minimal impact on polym
Overmolded containers and methods of manufacture thereof are disclosed, which may provide enhanced visual and tactile characteristics, enabling innovative packaging designs, improved grippability and thermal insulation. The containers can be made cost effectively manner, with minimal impact on polymer recycling streams. The methods of making the container include the steps of providing a container preform which comprises a thermoplastic polymer, such as a PET copolymer; overmolding an elastomeric material over at least a portion of the preform to form an overmolded preform; and blow-molding the overmolded preform to form an overmolded container. In one embodiment, the overmolded container is a beverage container.
대표청구항▼
1. A method for making an overmolded container comprising: providing a preform for a container, the preform comprising a thermoplastic polymer;overmolding an elastomeric overmold material over at least a portion of the preform to form an overmolded preform; andstretch blow-molding the overmolded pre
1. A method for making an overmolded container comprising: providing a preform for a container, the preform comprising a thermoplastic polymer;overmolding an elastomeric overmold material over at least a portion of the preform to form an overmolded preform; andstretch blow-molding the overmolded preform to form an overmolded container, wherein the stretch blow-molding functions to conformingly and separably secure the elastomeric overmold material to at least a portion of an outer surface of the container. 2. The method of claim 1, wherein the overmolding container is a beverage container. 3. The method of claim 1, wherein the thermoplastic polymer comprises one or more polyesters. 4. The method of claim 3, wherein the thermoplastic polymer comprises a polyethylene terephthalate copolymer. 5. The method of claim 1, wherein the overmold material comprises a thermoplastic elastomer. 6. The method of claim 1, wherein the overmold material is selected from the group consisting of polyolefin elastomers, polyolefin plastomers, modified polyolefin elastomers, modified polyolefin plastomers, and combinations thereof. 7. The method of claim 1, wherein the overmold material is selected from the group consisting of acrylic-olefin copolymer elastomers, polyester elastomers, and combinations thereof. 8. The method of claim 1, wherein the overmold material has a density less than 1.00 g/cc. 9. The method of claim 1, wherein the overmold material further comprises one or more additives. 10. The method of claim 9, wherein the one or more additives are selected from the group consisting colorants, UV blockers, lubricants, slip agents, processing aids, anti-oxidants, antimicrobial agents, thermal stabilizers, and combinations thereof. 11. The method of claim 1, wherein the blow molding process comprises preheating the overmolded preform and then stretch blow molding the preheated preform. 12. The method of claim 1, wherein the overmolded material covers a majority of the outer surface of the overmolded container. 13. A blow molded container comprising: a container body having an outer surface and an interior space, wherein the container body is formed by stretch blow molding a thermoplastic polymer preform; andan overmolded layer, which comprises a thermoplastic elastomer, conformingly and separably secured to at least a portion of the outer surface of the container body. 14. The container of claim 13, wherein the container body is in the shape of a bottle comprising one or more sidewalls, a closed base end, and an open mouth end. 15. The container of claim 13, wherein the thermoplastic polymer comprises one or more polyesters. 16. The container of claim 13, wherein the thermoplastic polymer comprises a polyethylene terephthalate copolymer. 17. The container of claim 13, wherein the overmolded layer comprises an overmold material selected from the group consisting of polyolefin elastomers, polyolefin plastomers, modified polyolefin elastomers, modified polyolefin plastomers, and combinations thereof. 18. The container of claim 13, wherein the overmolded layer comprises an overmold material selected from the group consisting of acrylic-olefin copolymer elastomers, polyester elastomers, and combinations thereof. 19. The container of claim 13, wherein the overmolded layer comprises an overmold material having a density less than 1.00 g/cc. 20. The container of claim 13, wherein the overmold layer further comprises one or more additives. 21. The container of claim 20, wherein the one or more additives are selected from the group consisting of colorants, UV blockers, lubricants, slip agents, processing aids, anti-oxidants, antimicrobial agents, thermal stabilizers, and combinations thereof. 22. The container of claim 13, wherein the overmolded layer covers a majority of the outer surface of the overmolded container. 23. The container of claim 13, wherein the overmolded layer has a thickness of 0.1 mm to 5 mm. 24. The container of claim 14, wherein the bottle is cylindrical and includes a neck finish and a capping flange, the neck finish comprising outer threads disposed between the open mouth end and the capping flange. 25. The container of claim 24, wherein the overmolded layer covers the base end and sidewalls with an edge of the overmolded layer terminating at the capping flange. 26. The container of claim 24, wherein the overmolded layer covers the base end, the sidewalls, and the capping flange. 27. The container of claim 13, wherein the overmolded layer has a hardness less than Shore D 30. 28. A packaged beverage comprising: the container of claim 13; anda beverage disposed in the interior space of the container. 29. A packaged beverage comprising: a stretch blow molded bottle formed from at least a PET copolymer;an overmolded layer comprising a thermoplastic elastomer, wherein the overmolded layer is conformingly and separably secured over at least a portion of the outer surface of the bottle; anda beverage disposed inside the bottle. 30. The packaged beverage of claim 29, wherein the thermoplastic elastomer comprises a polyolefin plastomer. 31. The packaged beverage of claim 29, wherein the overmolded layer is separable from the PET copolymer by a mechanical process. 32. A method for recycling an overmolded container comprising: chopping the container of claim 13 into a plurality of pieces; andusing a mechanical separation process to separate the pieces of the overmolded layer from the pieces of the container body. 33. The method of claim 32, wherein the mechanical separation process comprises an air separation process or a sink-float separation process. 34. A bottle comprising: a body having an outer surface and an interior space, wherein the body is formed by blow molding a polyester preform; andan overmolded layer, which comprises a thermoplastic elastomer, conformingly stretched and separably secured, by the stretch blow molding to, at least a portion of the outer surface of the body. 35. The bottle of claim 34, wherein the bottle comprises one or more sidewalls, a closed base end, an open mouth end opposing the closed base end, a neck finish, and a capping flange, the neck flange comprising outer threads disposed between the open mouth end and the capping flange, and wherein the overmolded layer covers the base end, the sidewalls, and the capping flange. 36. A method for making an overmolded container comprising: providing a preform for a container, the preform comprising a polyester;overmolding an elastomeric overmold material over at least a portion of the preform to form an overmolded preform; andstretch blow-molding the overmolded preform to form an overmolded container,wherein the elastomeric overmold material is the outermost surface of at least a portion of the overmolded container. 37. The method of claim 36, wherein the elastomeric overmold material is selected from the group consisting of polyolefin elastomers, polyolefin plastomers, and combinations thereof. 38. The method of claim 1, wherein the elastomeric overmold material is separably secured to the underlying thermoplastic polymer via mechanical interlock through rough surface or mechanical bonding through functional groups in the layer of the elastomeric overmold material. 39. A bottle comprising: a blow molded body having an outer surface and an interior space, the body being formed of a PET copolymer or another polyester; andan overmolded layer, which consists essentially of a thermoplastic elastomer, conformingly stretched and secured via mechanical interlock or through rough surface or mechanical bonding through functional groups in the thermoplastic elastomer to at least a portion of the outer surface of the body.
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