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Blow-molded container base structure 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B65D-001/142
출원번호 US-0339082 (1994-11-14)
발명자 / 주소
  • Semersky Frank E. (Toledo OH)
출원인 / 주소
  • Graham Packaging Corporation (York PA 02)
인용정보 피인용 횟수 : 103  인용 특허 : 0

초록

A base structure for a hot-fill plastic container provides the container with enhanced structural integrity. The base structure uses a series of vertically staggered circumferential ribs interrupted by radial lugs. The disclosed base structure enables the container to withstand the various forces en

대표청구항

A base structure for a blow-molded container having a sidewall, comprising: an annular support heel having an outer portion and an inner portion, said outer portion merging with the container sidewall; a bottom wall defining a central concavity surrounded by said annular support heel and merging wit

이 특허를 인용한 특허 (103)

  1. Pedmo, Marc A.; Miller, James J., Base for plastic container.
  2. Trude, Greg, Base structure for a container.
  3. Weick Robert D., Beverage container.
  4. Robert D. Weick, Beverage container and bell thereof.
  5. Boyd I. Willat, Beverage tasting vessel.
  6. Boyd I. Willat, Beverage tasting vessel with aerating ridges and agitating ribs.
  7. Willat, Boyd J., Beverage tasting vessel with multiple rim portions.
  8. Darr Richard C. ; Pedmo Marc A. ; Dorn James C., Bottle.
  9. Richard C. Darr ; Marc A. Pedmo ; James C. Dorn, Bottle.
  10. Richard C. Darr ; Marc A. Pedmo ; James C. Dorn, Bottle.
  11. Tanaka, Toshimasa; Imai, Hiroaki; Iizuka, Takao, Bottle.
  12. Darr Richard C. ; Pedmo Marc A. ; Dorn James C., Bottle base.
  13. Richard C. Darr ; Marc A. Pedmo ; James C. Dorn, Bottle base.
  14. Richard C. Darr ; Marc A. Pedmo ; James C. Dorn, Bottle base.
  15. Richard C. Darr ; Marc A. Pedmo ; James C. Dorn, Bottle base.
  16. Nakayama, Tadayori; Saito, Hiromichi; Iizuka, Takao, Bottle made from synthetic resin material and formed in a cylindrical shape having a bottom portion.
  17. Barel, Moreno; Bortoluzzi, Alessandro; Brugnera, Nicola, Bottle made of polymer material.
  18. Huels, Peter; Concin, Roland; Weber-Trinkfass, Gabriele; Kutscheid, Andrea; Kessler, Tilmann, Bottom structure for a plastic bottle.
  19. Matsui, Yutaka, Composite container with integral support, related method and mold.
  20. Nahill, Thomas E.; Armstrong, Ralph, Compression molded preform for forming invertible base hot-fill container, and systems and methods thereof.
  21. Manderfield ; Jr. Grover John ; Beaver Tracy Lynn ; Weick Robert D., Container.
  22. Silvers Kerry W. ; Steih Richard J. ; Zabinko Leonard, Container.
  23. Trude, Gregory, Container and method for blowmolding a base in a partial vacuum pressure reduction setup.
  24. Trude, Gregory, Container and method for blowmolding a base in a partial vacuum pressure reduction setup.
  25. Cheng, J. John; Yuan, XiaoXu, Container base.
  26. Simpson, Jr.,Charles P.; Budden,Todd; Dinkel,John Philip, Container base.
  27. Patcheak, Terry D.; Downing, David; Lisch, G. David; Silvers, Kerry W.; Vailliencourt, Dwayne G.; Pieszchala, Brian L.; Steih, Richard J., Container base structure responsive to vacuum related forces.
  28. Patcheak, Terry D.; Downing, David; Lisch, G. David; Silvers, Kerry W.; Vailliencourt, Dwayne G.; Pieszchala, Brian L.; Steih, Richard J., Container base structure responsive to vacuum related forces.
  29. Silvers, Kerry W., Container base structure responsive to vacuum related forces.
  30. Boukobza, Michel; Penet, Laurent, Container comprising an arched base having a star-shaped cross-section.
  31. Kelley, Paul; Goss, Kent; Sheets, Philip; Lyon, Ted; Ryl-Kuchar, Charles A., Container handling system.
  32. Kelley, Paul; Goss, Kent; Sheets, Philip; Lyon, Ted; Ryl-Kuchar, Charles A., Container handling system.
  33. Kelley, Paul; Goss, Kent; Sheets, Philip; Lyon, Ted; Ryl-Kuchar, Charles A., Container handling system.
  34. Trude, Gregory; Kelley, Paul, Container having outwardly blown, invertible deep-set grips.
  35. Godet, Florian, Container provided with an invertible diaphragm and a central portion of greater thickness.
  36. Denner, John; Kelley, Paul; Melrose, David, Container structure for removal of vacuum pressure.
  37. Melrose, David Murray, Container structure for removal of vacuum pressure.
  38. Melrose, David Murray, Container structure for removal of vacuum pressure.
  39. Melrose, David Murray, Container structure for removal of vacuum pressure.
  40. Melrose, David; Denner, John; Kelley, Paul, Container structure for removal of vacuum pressure.
  41. Nakayama, Tadayori; Iizuka, Takao; Kurihara, Goro; Imai, Hiroaki, Cylindrical bottle with bottom.
  42. Guerin, Stephen R.; Piccioli, David P.; Nahill, Thomas E.; Barker, Keith J., Deep grip mechanism for blow mold and related methods and bottles.
  43. Guerin, Stephen R.; Piccioli, David P.; Nahill, Thomas E.; Barker, Keith J., Deep grip mechanism within blow mold hanger and related methods and bottles.
  44. Guerin, Stephen R.; Piccioli, David R.; Nahill, Thomas E.; Barker, Keith J., Deep grip mechanism within blow mold hanger and related methods and bottles.
  45. Kelley, Paul V.; Bysick, Scott E., Deformable container with hoop rings.
  46. Ross, John R, Flex surface for hot-fillable bottle.
  47. Eberle Theodore F., Hot fill plastic container having spaced apart arched ribs.
  48. Theodore F. Eberle, Hot fill plastic container having spaced apart arched ribs.
  49. Patcheak, Terry D.; Downing, David; Beuerle, Frederick C.; Strasser, Walter J.; Howe, Christopher; Mast, Luke A., Hot-fill container.
  50. Roubal,Ed; Krohn,Roy N.; Kesselman,David; Taylor,Larry, Hot-fill container base structure.
  51. Roubal,Ed; Krohn,Roy; Kesselman,David; Taylor,Larry, Hot-fill container base structure.
  52. Weick Robert D. ; Mooney Michael R. ; Ogg Richard K. ; Pritchett ; Jr. Raymond A., Load bearing polymeric container.
  53. Kelley, Paul, Method and apparatus for manufacturing blow molded containers.
  54. Kelley, Paul, Method and apparatus for manufacturing blow molded containers.
  55. Farrell, James; Gardner, Clayton, Method and apparatus for rotationally restraining a mixing container.
  56. Kelley, Paul V.; Bysick, Scott B., Method and system for handling containers.
  57. Kelley, Paul V.; Bysick, Scott E., Method and system for handling containers.
  58. Trude, Gregory; Kelley, Paul, Method of forming container.
  59. Trude, Greg; Tobias, John W.; Ogg, Richard K., Method of hot-filling a plastic, wide-mouth, blow-molded container having a multi-functional base.
  60. Kelley, Paul V.; Bysick, Scott E.; Lynch, Brian A.; Nahill, Thomas E.; Philippe, Romuald, Method of making plastic container having a deep-inset base.
  61. Trude, Greg; Tobias, John W.; Ogg, Richard K., Method of processing a plastic container including a multi-functional base.
  62. Melrose, David; Kelley, Paul; Denner, John, Methods of compensating for vacuum pressure changes within a plastic container.
  63. Simpson, Jr.,Charles P; Guerin,Stephen R; Piccioli,David P; Zhang,Qiuchen Peter, Molded plastic container having hot-fill panels.
  64. Koskinen,Harri, Mountain-shaped punt.
  65. Trude, Greg; Tobias, John W.; Ogg, Richard K., Multi-functional base for a plastic, wide-mouth, blow-molded container.
  66. Trude, Greg; Tobias, John W.; Ogg, Richard K., Multi-functional base for a plastic, wide-mouth, blow-molded container.
  67. Trude, Greg; Tobias, John W.; Ogg, Richard K., Multi-functional base for a plastic, wide-mouth, blow-molded container.
  68. Trude, Greg; Tobias, John W.; Ogg, Richard K., Multi-functional base for a plastic, wide-mouth, blow-molded container.
  69. Hornung, Andreas; Bockhorn, Henning; Appenzeller, Karl; Roggero, Carlo Maria; Tumiatti, Wander, Plant for the thermal treatment of material and operation process thereof.
  70. Eberle Theodore F., Plastic container.
  71. Simpson, Jr., Charles P.; Budden, Todd; Dinkel, John Philip, Plastic container base structure and method for hot filling a plastic container.
  72. Melrose, David, Plastic container having a deep-set invertible base and related methods.
  73. Melrose, David Murray; Denner, John; Kelley, Paul; Trude, Gregory, Plastic container having a deep-set invertible base and related methods.
  74. Melrose, David; Denner, John; Kelley, Paul; Trude, Gregory, Plastic container having a deep-set invertible base and related methods.
  75. Simpson, Jr.,Charles P.; Guerin,Stephen R.; Piccioli,David P.; Zhang,Qiuchen Peter, Plastic container which is hot-fillable and/or having neck finish adapted for receipt of handle.
  76. Howell, Justin A.; Borger, Mark O.; Pritchett, Jr., Raymond A., Plastic container with angular vacuum panel and method of same.
  77. Wurster, Michael P.; Bysick, Scott E., Plastic containers having base configurations with up-stand walls having a plurality of rings, and systems, methods, and base molds thereof.
  78. Wurster, Michael P.; Bysick, Scott E., Plastic containers having base configurations with up-stand walls having a plurality of rings, and systems, methods, and base molds thereof.
  79. Wurster, Michael P.; Bysick, Scott E., Plastic containers, base configurations for plastic containers, and systems, methods, and base molds thereof.
  80. Melrose, David; Kelley, Paul; Denner, John, Pressure reinforced plastic container having a moveable pressure panel and related method of processing a plastic container.
  81. Sheets, Philip; Kelley, Paul; Denner, John, Process and device for conveying odd-shaped containers.
  82. Bysick, Scott E.; Trude, Gregory A., Repositionable base structure for a container.
  83. Saito, Hiromichi; Oshino, Tadayoshi; Asari, Tsutomu, Synthetic resin bottle.
  84. Trude, Gregory; Kelley, Paul, System and method for forming a container having a grip region.
  85. Trude, Gregory; Kelley, Paul, System and method for forming a container having a grip region.
  86. Trude, Gregory; Kelley, Paul, System and method for forming a container having a grip region.
  87. Trude, Gregory; Kelley, Paul, System and method for forming a container having a grip region.
  88. Bysick, Scott; Trude, Gregory A., System and method for handling a container with a vacuum panel in the container body.
  89. Sheets, Philip; Kelley, Paul; Denner, John, System for conveying odd-shaped containers.
  90. Kelley, Paul V.; Bysick, Scott E., System for filling, capping, cooling and handling containers.
  91. Melrose, David; Kelley, Paul; Denner, John, System for processing a pressure reinforced plastic container.
  92. Kelley, Paul V.; Kohler, David A., System, apparatus, and method for conveying a plurality of containers.
  93. Melrose, David Murray, Systems and methods for handling plastic containers having a deep-set invertible base.
  94. Melrose, David; Kelley, Paul; Denner, John, Systems for compensating for vacuum pressure changes within a plastic container.
  95. Kelley, Paul V., Systems for cooling hot-filled containers.
  96. Kelley, Paul V., Systems, methods, and apparatuses for cooling hot-filled containers.
  97. Mast, Luke A.; Steih, Richard; Maki, Kirk Edward; Dole, Omkar; Woloszyk, Mark; Downing, David, Two-stage container base.
  98. Stelzer, James; Lane, Michael T., Vacuum absorbing bases for hot-fill containers.
  99. Willat, Boyd I.; Perrulli, Joseph T.; Velick, Paul H., Wine glass.
  100. Willat, Boyd I.; Perrulli, Joseph T.; Velick, Paul H., Wine glass.
  101. Willat, Boyd I.; Perrulli, Joseph T.; Velick, Paul H., Wine glass.
  102. Willat, Boyd I.; Perrulli, Joseph T.; Willat, Amber R.; Velick, Paul H.; Delgado, Gary D., Wine glass.
  103. Willat,Boyd I.; Perrulli,Joseph T.; Velick,Paul H., Wine glass.

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