Abstract:
The present invention relates to a closure for a container, wherein the closure comprises a base element and a flip-top lid attached to said base element by a hinge, such that the flip-top lid can be moved between an opened and a closed position, wherein said closure comprises a spout for dispensing a fluid material. Said spout has a first dispensing opening and a second dispensing opening, whereas said spout additionally comprises a vent opening. The present invention also relates to a system with a container and such a closure, wherein said closure is directly or indirectly attached or attachable to said container.
Abstract:
A portable beverage container is provided. The portable beverage container may include a glass vessel having a neck; a metal outer shell configured to surround a first portion of the glass vessel; a cap configured to engage with the metal outer shell to surround a second portion of the glass vessel; and an amorphous thermoplastic spout having a neck configured to be inserted through an opening in the cap and into the neck of the glass vessel. The spout may be configured to securely engage with the cap. The cap may include a lid with an elastomeric sealing member having a knob configured to extend into a recess in the spout and a recess configured to wrap around and over a lip of the spout. The spout may be removable from the cap while the cap is engaged with the outer shell.
Abstract:
A closure is provided and comprises a base and a lid, the base and lid being joined by a double hinge arrangement so that the lid is movable between a closed position and an open position, the double hinge arrangement comprising a first hinge and a second hinge, in which the closure comprises holding means for holding or causing the lid to be held stably in the open position.
Abstract:
A push button, flip top closure for a container, includes a base portion, a push button actuator situated on the base portion and twistingly mounted thereon to pivotally rotate with respect to the base portion, a central cap having an orifice formed through the thickness thereof, the push button actuator at least partially surrounding the central cap, and a lid hingedly mounted to the base portion and positionable between at least a closed position to cover the orifice formed in the central cap and an open position to uncover the orifice formed in the central cap. The push button actuator selectively forces the lid to pivot to the open position to allow the contents of the container on which the closure is mounted to pass through the orifice in the central cap.
Abstract:
A multi-section lid for a can containing edible material includes a lid base, a cover portion, and a tear strip. The lid base can attach the lid to the can. The lid base defines one or more openings that permit access to the edible material. The cover portion includes one or more doors to cover the openings. The tear strip portion is positioned between the lid base and the cover portion. The tear strip portion is connected to the lid base and the cover portion by a plurality of bridges. The mold for forming the lid includes cavities that define flow channels that permit the lid material to flow through bridge cavities to fill the cavities in the mold during formation of the lid such that the lid base, the cover portion, and the tear strip portion are the single integral component.
Abstract:
A closure having a base and a lid is provided. The lid is movable between a closed and an open position. The closure comprises retaining means for stably retaining the lid in the open position.
Abstract:
A closure device for a container, particularly a bottle, has a stopper called the service cap, arranged at the end thereof, on which a closing flap pivots. The closure device is provided with a locking system and cooperates with a hole in the sealed closure, or can be opened by pivoting. The closing flap has an opening device to guarantee the complete pivoting of the closing flap on opening, by a constant force and a constant movement without manual action of the user, immediately after the same has carried out a voluntary manual operation on the closing flap which is limited to releasing the locking system thereof.
Abstract:
The dispensing closure for a container for dispensing a liquid contained therein, includes a closure body adapted to be mounted on the container. The closure body has an upper wall and a skirt depending downwardly therefrom and a dispensing orifice positioned thereon. A tubular flow modulating structure depends downwardly from the upper wall of the closure body. The tubular flow modulating structure has an inner surface configured and arranged to control the flow of liquid through the dispensing orifice and includes at least one dependent capillary slot. Optionally, the dispensing closure further includes a syneresis capture structure depending downwardly from the upper wall to prevent syneresis fluid from flowing through the dispensing orifice during the dispensing of the liquid contained within the container.
Abstract:
A self-opening mechanism for a cap is capable of maintaining a restoring force of an elastic member and easily and tightly locking the cap and also releasing the locking. The mechanism has an elastic member (4) that is attached to an inner side of a hinge (3), and also a stopper block (7) is provided in a direction in which the elastic member (4) deforms so that the elastic member (4) deforms to an S-shaped form. Engagement pieces (10, 10a) in the cap (2) side are inserted into and fixed between hooks (16, 16a) of a push piece (18) and a protruding engagement pieces (15, 15a) to lock the cap more tightly. As the hook (16, 16a) moves upward and moves away from the protruding engagement pieces (15, 15a) when the push piece (18) is pressed, the engagement pieces (10, 10a) are released and a cover (2) automatically opens due to the restoring force of the elastic member (4).
Abstract:
A hinge structure is provided for connecting two members, such as a container closure base and lid, so as to accommodate movement between an open position and a closed position. An elastomeric element extends from one of the members to the other of the members. The elastomeric element has an outer surface that is outwardly exposed when the two members are in the closed position as well as when the two members are in the open position. The elastomeric element exerts a force to urge the two members from the closed position toward the open position. In one embodiment, the elastomeric element has two lateral margins, and the hinge structure is free of structure laterally of the elastomeric element so that the two lateral margins are laterally exposed when the two members are in the closed position as well as when the two members are in the open position. The elastomeric element outer surface is in tension when the two members are in the closed position.