Abstract:
A container lid can include: a body having an opening formed therethrough; a sipping member rotatably coupled to the body, a passageway formed through an interior of the sipping member so as to extend from a proximal end of the sipping member to a distal end of the sipping member, the sipping member configured to rotate between a stowed position in which the passageway and the opening are misaligned, such that the opening is sealed, and a released position in which the passageway and the opening are aligned; and a flexible handle connected at a first end to the sipping member and rotatably coupled at a second end to the body via a pivot pin. The handle can be configured such that a substantially downward force exerted on the handle causes rotation of the sipping member toward the released position.
Abstract:
The present invention provides a lid connected to a container, comprising a lid body adapted to be removably attached to the opening of the container, a spout unit comprising a spout and a passage in fluid communication with the spout and with the opening of the container, and a cover member pivotably mounted on the lid body and pivotal between a locked position wherein the cover member acts on the spout unit, thereby causing twistable turning of the passage of the spout unit to prevent a fluid contained in the container from being dispensed through the opening of the container, and an unlocked position wherein the action on the spout unit is released, thereby allowing untwisting of the twisted passage to resume the fluid communication of the passage with the spout and the opening of the container. The invention also provides a container assembly comprising the lid.
Abstract:
Disclosed is an environmentally-friendly, anti-contamination suction-nozzle beverage cup cover, comprising a cover body (1), with the lower part of the cover body (1) being connected to a beverage cup (2), the top of the cover body (1) being formed with a suction nozzle mounting chamber (4), a tube insertion hole (5) being formed in the suction nozzle mounting chamber (4), and a suction nozzle (7) being disposed in the tube insertion hole (5), characterized in that a swing sleeve (8) is provided outside the suction nozzle (7) made of silicone, swing holes (9) are formed in both sides of the mounting chamber (4), the swing sleeve (8) is formed with a swing pin (10) fitted into the swing holes (9), a connecting ear (11) is formed at one side of the cover body (1), a clamp (12) and a safety catch (13) are disposed on the connecting ear (11), the clamp (12) and the safety catch (13) are fixed with the connecting ear (11) via a small shaft (14), a return ejector spring (15) is disposed in the clamp (12), a shield (17) is disposed on the cover body (1), the inner wall of the shield (17) is in contact with the head of the suction nozzle, the head (20) of the shield (17) is formed with a clamp rib (18), and the clamp rib (18) matches the clamp (12). Bacterial contamination can be avoided when the cup cover is opened and closed.
Abstract:
A pouring device for pouring material from a container and method of using same are disclosed. The pouring device is movable between open and closed configurations. An embodiment provides a pouring device that includes a main body which comprises a main body portion, an attachment portion, and at least two hinges which connect to at least two movable walls extending angularly from the main body to form a conduit when the pouring device is in the open configuration. Another embodiment provides a pouring device that has a central portion rigidly connecting two walls. The attachment portion is placed within the container below an upper plane of a rim of the container. Embodiments foster a pouring solution that can be easily and quickly mounted within a container and that allows a user to close the container while the pouring device is mounted entirely within the container.
Abstract:
A system for distributing a fluid product which is packaged in a tank, the system comprises a base and a cap which are intended to be mounted on the tank together forming a distribution chamber which has a supply passage for packaged product, the cap having a wall which is provided with a skirt for assembly on the tank and a sleeve which is arranged around a nozzle of the base forming between the sleeve and the nozzle a distribution interface which opens in a distribution hole formed in the wall, the wall being reversibly deformable by the pressure of the product in the distribution chamber from a stable closed state of the interface in which the sleeve is arranged in sealed contact around the nozzle towards a deformed opening state of the interface in which the sealed contact is broken in order to allow the distribution of the product contained in the distribution chamber through the distribution hole.
Abstract:
A lid with a retractable straw for a cup or other fluid container is disclosed. The device includes a body including a cavity that extends from a bottom surface of the body to an upper surface of the body and a lid positionable between a closed position in which the lid lays on an upper surface of the body and an open position in which the lid is displaced from the upper surface of the body. The device also includes a tube, a straw and a mouthpiece. The mouthpiece coupled to the body and in fluid communication with the tube, the mouthpiece being positionable between a closed position in which the mouthpiece crimps the tube to the bottom surface of the body and an open position in which the tube couples the mouthpiece in fluid communication with the straw.
Abstract:
A multiple stage pinch valve generally includes a pinch valve body, a manifold top head connected to a proximal end of the pinch valve body and a nozzle head connected to a distal end of the pinch valve body. In one embodiment, the pinch valve body includes a first pinch valve section and a second pinch valve section disposed downstream of the first pinch valve section. In another embodiment, the pinch valve body includes an inner pinch valve section and an outer pinch valve section disposed coaxially around the inner pinch valve section.
Abstract:
A bottle for the creation, storage, administration and dispensing of elemental iodine is disclosed. An amount of crystal iodine is safely housed at the bottom of the bottle. Water is poured into the bottle and contacts with the crystal iodine to form elemental iodine. With the crystal iodine safely secured at the bottom of the housing, the formed elemental iodine maintains contact with the crystal iodine to maintain its stability and extends is shelf life. Several dispensing device are also disclosed for dispensing or administering the elemental iodine, as needed, in order to treat internal and external areas of a human's or animal's body.
Abstract:
A plastic lid for a metal can including a liquid. The lid includes a cavity (20) receiving a neck (15) that can be folded down and secured to a wall section (21) of the cavity. The free end of the folded-down neck (15) compresses a wall (23) of the cavity and seals the can, closing an air intake slit (27) provided in an elastomer material (29).
Abstract:
A drainable ostomy pouch includes a collection portion and a drain chute portion extending from the collection portion and having a discharge opening for permitting emptying of contents from the pouch. The drain chute is foldable between an open condition in which the drain chute portion is extended from the collection portion, and a closed condition in which the drain chute portion is folded towards the collection portion. At least one flap retains the folded drain chute portion.