Patent classifications
B65B57/00
TAMPER EVIDENT PACKAGING AND METHODS OF MANUFACTURING THE SAME UTILIZING A NON-CONTACT SEALING DEVICE
A system for manufacturing tamper evident packaging, for example a bag with a tamper evident seal, includes a noncontact sealing device, a manufacturing conveyor, and in some implementations, a tensioning device and a closure device. The manufacturing conveyor conveys the bag to opposing pairs of in-feed belts of the non-contact sealing device, wherein the belts hold opposing sides of the bag together and a laser with an outlet positioned between a first pair of the belts spot welds the bag along a specified line to fuse the opposing sides of the bag together proximate an opening of the bag. In implementations including the tensioning device and the closure device, the tensioning device draws the opposing sides of the bag together prior to the bag entering the noncontact sealing device, and the closure device applies a removably coupleable closure to the bag after the bag exits the non-contact sealing device.
Intelligent Vacuum Packaging Apparatus and Method
A vacuum packing apparatus includes a box, a lid, a solenoid, a vacuum pump, a pressure gauge, a time relay, a thermal sealer and a controller. The box includes a chamber. The lid is connected to the box. The thermal sealer is located in the chamber. The controller is electrically connected to the vacuum pump, the solenoid, the thermal sealer and the time relay. The panel is electrically connected to the controller.
Intelligent Vacuum Packaging Apparatus and Method
A vacuum packing apparatus includes a box, a lid, a solenoid, a vacuum pump, a pressure gauge, a time relay, a thermal sealer and a controller. The box includes a chamber. The lid is connected to the box. The thermal sealer is located in the chamber. The controller is electrically connected to the vacuum pump, the solenoid, the thermal sealer and the time relay. The panel is electrically connected to the controller.
QUALITY DEFECT MARKING SYSTEMS AND METHODS IN PACKAGING PRODUCT MANUFACTURING
Systems and methods for detecting and marking quality defects on individual packaging products being processed through converting machines at high speeds are provided. An example system comprises a controller in communication with a first and second sensor as well as a first and second marker. The first and second sensors sense data corresponding to a first type and second type, respectively, of potential defects in the manufacture of the packaging product, enabling detection of a first- and second-type defect. The controller may be configured to trigger a first marker to mark the individual packaging product with a first mark for the first-type defect; and to trigger a second marker to mark the packaging product with a second mark for the second-type defect. Thus, the type of defects detected on an individual packaging product may be readily indicated on the individual packaging product itself
Systems for recognizing containers to be filled with and/or emptied of given types of products
The present invention relates to a recognition system for recognizing containers to be filled with a given type of product, wherein the containers are equipped with a device for closing and opening the mouth through which the product to be introduced into the container is designed to pass. The closing and opening device is equipped with NFC electronic identification means. A corresponding reading and writing device for reading and writing said NFC electronic identification means is provided in the station for filling of the container and, in view of accommodating the container and the device for closing and opening its mouth, such station is conformed with at least the area configured to receive the device for closing and opening the mouth having a three-dimensional shape that mates the three-dimensional shape that the closing and opening device assumes when it is open to allow the container to be filled and/or emptied through the mouth.
TONGUE FOLDING ASSEMBLY, BOX SEALING DEVICE, PACKING MACHINE AND COMPUTER READABLE MEDIUM
The application provides a tongue folding assembly, a box sealing device, a packaging machine and a computer-readable medium for bending a main cover of a packaging box to form a insertion tongue, including a first base plate with a first inclined surface, a second base plate capable of bending the main cover to a first preset position in the direction of the first inclined surface, and a pressing piece capable of pressing the main cover onto the first inclined surface. When the folding tongue assembly is used to bend the insertion tongue, the bending degree of the insertion tongue can be controlled, and the bending degree can be adjusted.
TONGUE FOLDING ASSEMBLY, BOX SEALING DEVICE, PACKING MACHINE AND COMPUTER READABLE MEDIUM
The application provides a tongue folding assembly, a box sealing device, a packaging machine and a computer-readable medium for bending a main cover of a packaging box to form a insertion tongue, including a first base plate with a first inclined surface, a second base plate capable of bending the main cover to a first preset position in the direction of the first inclined surface, and a pressing piece capable of pressing the main cover onto the first inclined surface. When the folding tongue assembly is used to bend the insertion tongue, the bending degree of the insertion tongue can be controlled, and the bending degree can be adjusted.
APPARATUS AND METHOD FOR THE AUTOMATED MANAGEMENT OF A PROCESSING CHAMBER WITH A CONTROLLED ATMOSPHERE
An apparatus and a method for the automated management of the assembly of a machine for processing and/or packaging pharmaceutical products inside an insulated processing chamber, with controlled atmosphere and delimited by walls, at least one of which is provided with at least one access aperture which can be selectively closed by a primary closing unit. The apparatus includes a transport container able to contain one or more assemblable elements which are introduced into or removed from the processing chamber, and which is associated with the access aperture from the outside of the chamber provided with a secondary closing unit able to cooperate with the primary closing unit so that they can be opened to put the inside of the transport container in communication with the inside of the chamber. The apparatus also includes a handling device and a work tool configured to alternately grip or release the assemblable elements.
APPARATUS AND METHOD FOR THE AUTOMATED MANAGEMENT OF A PROCESSING CHAMBER WITH A CONTROLLED ATMOSPHERE
An apparatus and a method for the automated management of the assembly of a machine for processing and/or packaging pharmaceutical products inside an insulated processing chamber, with controlled atmosphere and delimited by walls, at least one of which is provided with at least one access aperture which can be selectively closed by a primary closing unit. The apparatus includes a transport container able to contain one or more assemblable elements which are introduced into or removed from the processing chamber, and which is associated with the access aperture from the outside of the chamber provided with a secondary closing unit able to cooperate with the primary closing unit so that they can be opened to put the inside of the transport container in communication with the inside of the chamber. The apparatus also includes a handling device and a work tool configured to alternately grip or release the assemblable elements.
Method for testing the function of a tubular bag machine
A method for testing a tubular bag machine, the tubular bag machine having multiple electronic drive units controlled independently by a drive control system for driving functional elements of the packing machine in a cycle time-synchronous manner during predefined motion sequences, one drive unit being a transverse sealing unit comprising a motor and two transverse sealing jaws for transversely sealing a film tube, the drive torque being measured using a drive controller, and the position of the drive motor measured using a position sensor, by removing the film tube from the sealing zone between the transverse sealing jaws, closing the jaws according to a predefined target torque stored in the drive control system; measuring the actual position of the drive motor at the target torque; and comparing the measured actual position to a target position stored in the drive control system and associated with the predefined target torque.