Patent classifications
B65D81/2038
Vacuum Sealed Container for Perishable and Non Perishable Goods
An inventive vacuum storage container for long term storage of perishable and non-perishable items, incorporating a pump, power supply, controller, sensor, top cover, expandable seal, pressure sensor and base plate. The controller activates the pump based on signals from said sensor to maintain a vacuum state within an interior vacuum chamber formed by said top cover, expandable seal, and base plate. The container is configured to effectively maintain vacuum pressure by activating a pump when the lack of vacuum pressure is indicated.
LID FOR A STORAGE CONTAINER
There is provided herein a lid for a vacuum storage container, which contains a lid body having a top side and an opposing bottom side, the lid comprising one or both of (1) a vacuum pressure-indicating nipple having an upper length portion having a first color corresponding to a pressurized position, and a lower length portion having a second color corresponding to an unpressurized position, and (2) a pressure-release valve having a vacuum-sealed position and a vacuum-release position, and a collar on the bottom side of the lid body having an open end, the pressure-release valve extending from the top side of the lid body into the collar on the bottom side, and a sheath covering the open end of the collar on the bottom side, which sheath reduces a vacuum loss when the pressure-release valve is in the vacuum-sealed position while permitting a release of vacuum when the pressure-release valve is in the vacuum-release position.
Vacuum Pouch for Athletics
A pouch or pocket may act as a container and may be used to securely hold objects (e.g., cell phone, keys, wallet, etc.) during athletic activity (e.g., running). The pouch may be a standalone item or integrally formed as part of other items. The pouch may hold the object to be stored in place within the pouch or pocket. The pouch may provide some cushioning or impact force attenuation to protect the object being held within the pouch or pocket. Additionally, the pouch may be attached to a garment, such as running clothes. The pouch includes an outer envelope sealable by a closure and a one-way valve with foam layers located inside the pouch. After the object is placed in the pouch, the closure is closed, and the air within the pouch is expelled via the one-way valve by compressing the foam layers from the outside.
Container with closures
A container having a full perimeter lid pressure or tensioning mechanism. The container can also have a removable temperature sensor to monitor an internal compartment temperature. A pressure regulator is also disclosed to regulate a pressure differential and vacuum of the container in order to control an amount of vacuum sealing of the lid to the container.
Vacuum container for storage of air sensitive materials
A storage container apparatus is provided for storing air sensitive materials under a vacuum. The apparatus includes having a cylindrical container body opened at its upper end and a cap apparatus with an integral air pump to evacuate air from the container body to create a vacuum. The cap apparatus comprises an inner cap with a one-way air valve and an outer cap. The outer cap is slidably nested over the inner cap and confines a central air chamber which fills with air from the container body through the one-way air valve when pulled upwardly in a reciprocating motion. In the down stroke the air is evacuated from the air chamber through vents. The outer cap may include locking mechanism and vacuum level indicator. The outer cap may include an activated carbon cloth insert that suppresses odors from the material stored in the container.
Vacuum storage bag assembly and vacuum storage system therewith
A vacuum storage bag assembly includes a zipper bag and a vacuum valve. An opening is formed on the zipper bag. The vacuum valve is connected to the zipper bag. The vacuum valve includes a valve seat, a filtrating component and a check valve. The valve seat is disposed on the zipper bag. The valve seat includes a connecting port and a communication channel communicated with the connecting port and with interior of the zipper bag via the opening, and the connecting port is configured to be connected to a vacuum source. The filtrating component is disposed on an upstream portion of the communication channel. The check valve is disposed on a downstream portion of the communication channel and allows fluid to flow from the interior of the zipper bag, through the filtrating component, and to flow out of the connecting port.
VACUUM FRESHNESS PRESERVATION CONTAINER THAT CAN BE PRESSED ON TWO SIDES
A vacuum freshness preservation container that can be pressed on two sides provided in this application includes a container body and container cove. The container cover has chambers disposed symmetrically, a piston is slidably disposed in each chamber, and each chamber has an air outlet which communicates with an interior of the container body and where a first check valve is disposed. The piston is provided with an air discharge structure that communicates the chamber with an outside when the piston moves toward the first check valve, and the container cover is provided with a linkage mechanism such that the two pistons move in opposite directions. By alternately pressing pistons in two chambers, the chambers always keep in a vacuumizing state, thereby achieving a higher efficiency.
VACUUM STORAGE CONTAINER
A vacuum storage container includes a container body and a lid, wherein the container body has a top opening, and the lid includes a lid body and a valve plug. The lid body is removably engaged with the container body to cover the top opening to seal a peripheral edge of the top opening. The lid body has a perforation. The valve plug includes a plug body and a poked member. The plug body is disposed in the perforation and is adapted to close or to open the perforation. The poked member is disposed on a top of the plug body. In this way, a user could simply push the poked member to shift the plug body to open the perforation, which is convenient.
VACUUM STORAGE OF PERISHABLES AND CYCLINDRICAL STORAGE VESSEL METHOD, SYSTEM, AND APPARATUS
Systems, methods, and apparatus for storing perishable items under reduced pressure conditions. Total atmospheric pressure within a vacuum chamber containing a perishable item is reduced below a total pressure limit. Oxygen partial pressure and total pressure within the vacuum chamber are monitored. When oxygen partial pressure falls below a lower oxygen partial pressure limit, an oxygen-containing gas is admitted to raise oxygen partial pressure above the lower oxygen partial pressure limit. When the total atmospheric pressure reaches or exceeds the total pressure limit, total pressure is once again reduced. The vacuum container or chamber comprises a section of cylindrical pipe open at both ends, a first end cap and a second end cap, and formed of a plastic material. Notwithstanding that the pipe and end caps are formed of plastic, they are formed with a structure capable of withstanding pressure created by a high vacuum in the vacuum container.
Tray, package, apparatus and process of making said tray and said package
A tray for containing a product includes a base, a lateral wall emerging from the base to define a containing seat adapted to receive the product. The lateral wall comprises at least one movable portion configurable between a first stable position, wherein the movable portion is placed in continuity with respect to the lateral wall, and a second stable position, wherein the movable portion protrudes from the lateral wall and defines an access passing through the lateral wall itself. Moreover, the present invention refers to a process and an associated apparatus of making said tray. Further, the present invention refers to a vacuum package using the above described tray and to a plastic film sealingly applied on the tray and closing the access, and also to a process and a packaging apparatus for making said package.