A full aperture beverage end has a center panel, a countersink surrounding the center panel, a main score arranged in proximity to the countersink to define a removable aperture panel and a vent score. The beverage end is adapted for use with products that are pressurized to over 30 psi (200 kPa) wh
A full aperture beverage end has a center panel, a countersink surrounding the center panel, a main score arranged in proximity to the countersink to define a removable aperture panel and a vent score. The beverage end is adapted for use with products that are pressurized to over 30 psi (200 kPa) when opened, and during opening the vent score is adapted to sever first, controlling the pressure differential between the external surface and internal surface of the center panel, thereby allowing the main score to tear in a controlled and reliable manner.
대표청구항▼
1. A method of opening a full aperture beverage can having an internal pressure of over 70 psi (483 kPa), the can having a can body and an end seamed onto the can body, the end including a center panel, a countersink surrounding the center panel, a tab attached to the center panel by a rivet, the ta
1. A method of opening a full aperture beverage can having an internal pressure of over 70 psi (483 kPa), the can having a can body and an end seamed onto the can body, the end including a center panel, a countersink surrounding the center panel, a tab attached to the center panel by a rivet, the tab having a nose and a heel defining a primary reference line that extends from the nose to the heel through a center of the rivet, the tab further defining a transverse reference line that is perpendicular to the primary reference line and extends through the center of the rivet; a main score that defines a removable aperture panel, a vent score formed in the aperture panel, the vent score having a central portion, lateral portions that extend away from the central portion and that are parallel to the transverse reference line and disposed forward of the transverse reference line towards the nose of the tab by a first distance that is between 0 and 0.050 inches, and side portions that extend away from each of the lateral portions such that each side portion extends inwardly towards the primary reference line and rearwardly relative to the transverse reference line towards the heel of the tab by a second distance that is between 0.15 and 0.4 inches and such that the side portions are oriented at an angle relative to the primary reference line that is between −30 and +30 degrees, the central portion, lateral portions, and side portions together defining a flap and the side portions comprising end points of the vent score, the method comprising the steps of: raising the heel of the tab to pivot the tab relative to the rivet;as a result of the raising step, rupturing the central portion and subsequently rupturing the lateral and side portions of the vent score, respectively, wherein an entirety of the step of rupturing the vent score occurs without arresting propagation of the vent score, and wherein the can internal pressure actuates the flap;after initiation of the step of rupturing the vent score, and during the raising step, rupturing the main score by continuing to raise the heel of the tab and propagating rupture of the main score around the center panel so as to completely detach the aperture panel. 2. The method of claim 1, wherein a first thickness of a score residual in the central portion of the vent score is greater than a second thickness of a score residual, and the method includes a step of building up energy in the central portion of the vent score prior to the step of rupturing the vent score. 3. The method of claim 1, wherein the main score has an outer wall proximate a lip of the end, an inner wall proximate the aperture panel, and a land at a base of the main score, the land having a thickness that is smaller proximate the main score outer wall than the land thickness proximate the main score inner wall, and wherein the step of propagating rupture of the main score includes separating at least a majority of a score residual with the aperture panel. 4. The method of claim 1, wherein the raising step includes shunting the tab forward so as to move the nose of the tab closer to the main score by about 0.003 inches. 5. The method of claim 4, wherein after the shunting step, and prior to the step of rupturing the main score, the nose of the tab contacts the center panel at a point that is between a centerline of the main score and 0.005 inches radially inboard from an inner edge of the main score. 6. The method of claim 5, wherein during the step of rupturing the main score, the countersink promotes initial score fracture of the main score. 7. The method of claim 4, wherein after the shunting step, and prior to the step of rupturing the main score, the nose of the tab contacts the center panel at a point that is within 0.002 of an inner edge of the main score. 8. The method of claim 7, wherein during the step of rupturing the main score, the countersink promotes initial score fracture of the main score. 9. The method of claim 1, wherein the rupturing step includes bending the flap upward about a hinge defined by terminations of the vent score.
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이 특허에 인용된 특허 (56)
LaCroce Leonard Thomas (Paramus NJ), Accurate flow control container means.
Ramsey, Christopher Paul; Chant, Garry Richard; Lockley, Andrew Robert; Fields, Brian; Watson, Martin John; Hyde, Eleanor Rachel Ann, Full aperture beverage end.
Baumeyer Phillip E. (North Canton OH) Frentzel Karl O. (Canton OH) Kirk William A. (Clinton OH) Manack Gary L. (Brewster OH), Full opening steel can end construction.
Henning George J. (Canton OH) McKinney Lynn B. (Massillon OH) Scalia Joseph (Massillon OH), Pull tab construction for full panel pull-out ends for easy opening cans.
Turner Timothy L. (5704 Greenview Rd. Cary IL 60013) Dettmer Dennis (126 N. Columbia St. Naperville IL 60540) Forrest Randall G. (1205 Monarch La. Hoffman Estates IL 60195), Reformed container end.
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