Patent classifications
B65B3/04
LIDLESS CONTAINER AND METHOD FOR ASSEMBLING THE CONTAINER
The container for product has a bottom wall and a lateral wall of tubular extension up to an annular and surrounding an opening for access to the inner volume. The container is of the type without cover or part that can be lost, including two distinct protrusions, projecting from the lateral wall in order to get a closed configuration, wherein the two protrusions are simultaneously: projecting opposite the bottom wall, from the annular end; and sealed to each other so as to form a sealing zone in order to hermetically close the opening. The container has two gripping portions, offset and distributed on the two protrusions and arranged outside of the sealing zone, which makes it quick to open. The container is recyclable, formed for example based on laminated paper or cardboard.
LIDLESS CONTAINER AND METHOD FOR ASSEMBLING THE CONTAINER
The container for product has a bottom wall and a lateral wall of tubular extension up to an annular and surrounding an opening for access to the inner volume. The container is of the type without cover or part that can be lost, including two distinct protrusions, projecting from the lateral wall in order to get a closed configuration, wherein the two protrusions are simultaneously: projecting opposite the bottom wall, from the annular end; and sealed to each other so as to form a sealing zone in order to hermetically close the opening. The container has two gripping portions, offset and distributed on the two protrusions and arranged outside of the sealing zone, which makes it quick to open. The container is recyclable, formed for example based on laminated paper or cardboard.
SYSTEM FOR SIMULTANEOUSLY FORMING AND FILLING A POLYMERIC CONTAINER
A system for simultaneously forming and filling a polymeric container with a product. The system includes a mold defining a container profile and a mold vacuum vent extending from the container profile to an upper surface of the mold. A striker plate is secured to the upper surface of the mold. The striker plate defines a striker vacuum vent that aligns with the mold vacuum vent to allow some of the product to be pulled by vacuum out of the mold through the mold vacuum vent and the striker vacuum vent.
SYSTEM FOR SIMULTANEOUSLY FORMING AND FILLING A POLYMERIC CONTAINER
A system for simultaneously forming and filling a polymeric container with a product. The system includes a mold defining a container profile and a mold vacuum vent extending from the container profile to an upper surface of the mold. A striker plate is secured to the upper surface of the mold. The striker plate defines a striker vacuum vent that aligns with the mold vacuum vent to allow some of the product to be pulled by vacuum out of the mold through the mold vacuum vent and the striker vacuum vent.
Mould filling with subsequent closing under internal pressure
Disclosed is an apparatus for expanding and filling plastic parisons to form plastic containers with a liquid medium, with at least one transforming station which has a hollow mould, inside which the plastic parisons can be expanded into plastic containers and can be simultaneously filled by application of a liquid medium, wherein the transforming station is arranged on a carrier and wherein the transforming station has a filling device which feeds the liquid medium to the plastic parisons under pressure, wherein the transforming station has a pressure chamber to which a gas can be applied, wherein for filling of the plastic parisons the filling device can be introduced into the pressure chamber and after the filling can be removed at least partially, and wherein a closing unit can be introduced into the pressure chamber, in order to close the expanded und filled plastic containers.
Mould filling with subsequent closing under internal pressure
Disclosed is an apparatus for expanding and filling plastic parisons to form plastic containers with a liquid medium, with at least one transforming station which has a hollow mould, inside which the plastic parisons can be expanded into plastic containers and can be simultaneously filled by application of a liquid medium, wherein the transforming station is arranged on a carrier and wherein the transforming station has a filling device which feeds the liquid medium to the plastic parisons under pressure, wherein the transforming station has a pressure chamber to which a gas can be applied, wherein for filling of the plastic parisons the filling device can be introduced into the pressure chamber and after the filling can be removed at least partially, and wherein a closing unit can be introduced into the pressure chamber, in order to close the expanded und filled plastic containers.
Glass Container Having an Inkjet Printed Image and a Method for the Manufacturing Thereof
The present invention is directed to a glass container having an outer glass surface with an inkjet printed image provided on said surface, characterized in that a CEC with a thickness between 0 to 20 nm is present between the outer glass surface and the inkjet printed image. Such glass container is preferably a one-way beverage bottle. In addition, the present invention is directed to a method of inkjet printing an image on a glass container comprising the steps of: a) manufacturing a glass container having a CEC layer; b) removing at least part of the CEC layer to a level wherein the remaining CEC layer has a thickness of 0 to 20 nm; c) inkjet printing an image on the glass container
Glass Container Having an Inkjet Printed Image and a Method for the Manufacturing Thereof
The present invention is directed to a glass container having an outer glass surface with an inkjet printed image provided on said surface, characterized in that a CEC with a thickness between 0 to 20 nm is present between the outer glass surface and the inkjet printed image. Such glass container is preferably a one-way beverage bottle. In addition, the present invention is directed to a method of inkjet printing an image on a glass container comprising the steps of: a) manufacturing a glass container having a CEC layer; b) removing at least part of the CEC layer to a level wherein the remaining CEC layer has a thickness of 0 to 20 nm; c) inkjet printing an image on the glass container
BAG PROCESSING SYSTEM
A bag processing system includes: a conveyance mechanism which includes: a plurality of support devices being able to support and release bags; and a conveyance drive device moving the plurality of support devices intermittently; a liquid introduction device which introduces a liquid into the bags supported by the plurality of support devices; and a conveyance control device which controls the conveyance drive device, wherein: the conveyance drive device moves the plurality of support devices in such a manner that the plurality of support devices exhibit same acceleration-deceleration behavior between each other, and the conveyance control device controls the conveyance drive device to accelerate or decelerate the plurality of support devices in such a manner that shaking of the liquid in the bags is reduced.
BAG HOLDER FOR FREEZING, THAWING, AND SHIPPING
A bag holder for supporting a bioprocess bag during freezing includes a cover, a bottom, a frame, and at least one bag support. The cover, the bottom, and the frame form an enclosed space. The at least one bag support is disposed in the space. The cover and the bottom are made of metal. The frame has a first side, a second side, a front end, and a back end. Each of the cover and the bottom has a first bendable tab and a second bendable tab configured to bend over the front end from a longitudinal direction to a thickness direction, and a first arm and a second arm extending in the thickness direction and then in the longitudinal direction. Each of the first side and the second side includes at least one recessed portion extending in the longitudinal direction.