Patent classifications
B65B59/02
Dispensing machine for aerosol precursor
A machine for dispensing an aerosol precursor composition for use with aerosol delivery devices. The machine may include a plurality of sources of dispensable, liquid aerosol precursor components. The plurality of sources may differ in the liquid aerosol precursor components being dispensable therefrom. The machine may include a user interface configured to allow a user to select an amount of the liquid aerosol precursor components for dispensing. The machine may also include a dispenser for dispensing the aerosol precursor components in response to the selection made on the user interface.
Dispensing machine for aerosol precursor
A machine for dispensing an aerosol precursor composition for use with aerosol delivery devices. The machine may include a plurality of sources of dispensable, liquid aerosol precursor components. The plurality of sources may differ in the liquid aerosol precursor components being dispensable therefrom. The machine may include a user interface configured to allow a user to select an amount of the liquid aerosol precursor components for dispensing. The machine may also include a dispenser for dispensing the aerosol precursor components in response to the selection made on the user interface.
PACKAGING DEVICE AND METHOD FOR PACKAGING ARTICLES
A packaging device (1) for producing packs each comprising several articles is disclosed. The packaging device (1) comprises at least one horizontal conveying device and at least one manipulator (25, 35). Article groups are moved via the at least one horizontal conveying device into a working area (AP1, AP2) of the at least one manipulator (25, 35). The at least one manipulator (25, 35) is designed to combine respective articles of a respective article group, which are moved into its working area (AP1, AP2) via the at least one horizontal conveying device, and for this purpose can apply at least one packaging material (40) to the respective article group.
Furthermore, the packaging device (1) comprises at least one supporting beam and/or pushing beam provided for rear-side contact with a respective article group, which at least one supporting beam and/or pushing beam provided for rear-side contact with a respective article group is guided along a preferably circulating movement path, which preferably circulating movement path runs through the working area (AP1, AP2) of the at least one manipulator (25, 35).
PACKAGING DEVICE AND METHOD FOR PACKAGING ARTICLES
A packaging device (1) for producing packs each comprising several articles is disclosed. The packaging device (1) comprises at least one horizontal conveying device and at least one manipulator (25, 35). Article groups are moved via the at least one horizontal conveying device into a working area (AP1, AP2) of the at least one manipulator (25, 35). The at least one manipulator (25, 35) is designed to combine respective articles of a respective article group, which are moved into its working area (AP1, AP2) via the at least one horizontal conveying device, and for this purpose can apply at least one packaging material (40) to the respective article group.
Furthermore, the packaging device (1) comprises at least one supporting beam and/or pushing beam provided for rear-side contact with a respective article group, which at least one supporting beam and/or pushing beam provided for rear-side contact with a respective article group is guided along a preferably circulating movement path, which preferably circulating movement path runs through the working area (AP1, AP2) of the at least one manipulator (25, 35).
Right-sized thermoformed cavities for packaging items
An actuator system for fabricating a cavity within thermoplastic material includes a plurality of actuators arranged in an array. When dimensions of an item are determined, the actuator system may be programmed with data regarding such dimensions to fabricate a cavity for the item. A subset of the actuators, and distances by which each of the actuators is to be extended, may be selected based on dimensions of the item, in order to fabricate a cavity within the thermoplastic material that may accommodate the item therein. Additionally, the actuators and the distances may be selected based on intrinsic or extrinsic data regarding the item, and a cavity fabricated within the thermoplastic material may include one or more buffer zones or protective regions that are specifically formed with respect to aspects of the item.
AUTOMATED CONTAINER RESIZING APPARATUS, A SYSTEM INCLUDING THE APPARATUS, AND A METHOD OF RESIZING A CONTAINER
The disclosure provides an automated container resizing apparatus and system, an automated method of resizing a container, and a cutting tool that can be used for the resizing. In one example, the system includes the cutting tool, a controller, a conveyor, and a moveable support that can be a robotic arm. The controller can operate the conveyor to position a container in a cutting zone. The dimensions of the box and product fill height within the container are obtained and translated by the controller into a programmed cutting pattern. The controller then operates the robotic arm to perform the programmed cutting pattern on the box with the cutting tool. The cutting tool can be mounted on the robotic arm that rotates about its axis to cut side walls of the container for resizing.
Container sizing method and system
A carton sizing system that has a frame, a controller, one or more cutters movably mounted to the frame and operatively connected to the controller, one or more markers movably mounted to the frame and operatively connected to the controller. The carton sizing system also has a measuring means that is operatively connected to the controller and configured to determine, in use, the footprint of an open top carton and to determine the height of one or more objects contained within the carton. The controller is configured to position the one or more cutters based on the determined footprint and to cut vertical edges of the carton based on the determined height and also to position the one or more markers based on the determined footprint and height and to score or crease vertical walls of the carton between the vertical edges to at least partially define foldable panels.
Container sizing method and system
A carton sizing system that has a frame, a controller, one or more cutters movably mounted to the frame and operatively connected to the controller, one or more markers movably mounted to the frame and operatively connected to the controller. The carton sizing system also has a measuring means that is operatively connected to the controller and configured to determine, in use, the footprint of an open top carton and to determine the height of one or more objects contained within the carton. The controller is configured to position the one or more cutters based on the determined footprint and to cut vertical edges of the carton based on the determined height and also to position the one or more markers based on the determined footprint and height and to score or crease vertical walls of the carton between the vertical edges to at least partially define foldable panels.
Stacking and packaging device
A device for packaging elongated items such as firewood pieces is described herein. The device includes: an elevated structure having an upper platform for receiving the elongated items from a separate conveyor; a diverter located on or above the platform for changing the direction of movement of the elongated items; and one or more elevator shafts having open bottoms. The elevator shafts are located adjacent to the platform and configured for receiving the elongated items after contact with the diverter and for holding the elongated items on support structures while a stack of elongated items is formed. The release of the stack of elongated items from the elevator shafts occurs via the open bottoms of the elevator shafts.
Stacking and packaging device
A device for packaging elongated items such as firewood pieces is described herein. The device includes: an elevated structure having an upper platform for receiving the elongated items from a separate conveyor; a diverter located on or above the platform for changing the direction of movement of the elongated items; and one or more elevator shafts having open bottoms. The elevator shafts are located adjacent to the platform and configured for receiving the elongated items after contact with the diverter and for holding the elongated items on support structures while a stack of elongated items is formed. The release of the stack of elongated items from the elevator shafts occurs via the open bottoms of the elevator shafts.