Abstract:
A container sleeve includes a sheet of material that defines a first edge member and a second edge member. The container sleeve defines an upper cross member with a first end connected to the first edge member and a second end connected to the second edge member, and a lower cross member with a first end connected to the first edge member and a second end connected to the second edge member. The container sleeve further defines a center cross member positioned between the upper cross member and the lower cross member. The center cross member includes a first end connected to the first edge member and a second end connected to the second edge member. A center region of the cross member is configured to be positioned away from a center region of the upper cross member and a center region of the lower cross member to enable the insertion of a container into an opening defined between the upper cross member, the lower cross member, and the center cross member.
Abstract:
A carrier has a bottom, a plurality of side panels connected to the bottom, and a handle panel. The handle panel is connected to one of the side panels or the bottom. The handle panel includes a fold line, a first aperture, a second aperture, a first perforated line in continuation of the first aperture and the second aperture, and a second perforated line defining a finger opening in the handle panel. Pressure applied on the first perforated line tears apart material to produce a third aperture in continuation of the first aperture and the second aperture. Pressure applied inside the second perforated line dislocates material to produce the finger opening. When the third aperture is open in continuation of the first aperture and the second aperture, the handle panel folds along the fold line over a container to facilitate penetration of a handle of the container through the first aperture, the second aperture, and the third aperture.
Abstract:
An adjustable sleeve is disclosed that employs a pivot region which allows rotation of the first end of the sleeve relative to the second end of the sleeve. Rotation about the pivot region allows the sleeve size to adapt to many different sizes and tapers of containers. Rotation results in increasing a diameter of the top of the sleeve and decreasing a diameter of the bottom of the sleeve, and vice versa.
Abstract:
A sleeve is disclosed having a unique arch-like shape that facilitates manufacturing material efficiency and therefore reduces material costs and environmental waste. A blank for a sleeve and a method of making a sleeve are also disclosed. The sleeve, when unassembled and laid flat, is a blank with top and bottom edges. The top and bottom edges have an arch-like formation created by peaks and troughs.
Abstract:
A sleeve is disclosed having a unique wave-like shape that facilitates manufacturing material efficiency and therefore reduces material costs and environmental waste. A blank for a sleeve and a method of making a sleeve are also disclosed. The sleeve, when unassembled and laid flat, has a top and bottom edge. The top and bottom edges have a wave-like formation created by peaks and troughs.
Abstract:
A filling device is disclosed for allowing substances to fill a beverage container. The filling device may direct a flow of liquid into a container. The filling device may have a bowl with a round and a flat portion, a neck, a wall dividing the bowl into sections, and a plurality of fingers at the terminal end of the neck. One section of the filling device may allow the substance to fill the beverage container while the other section allows air to escape.
Abstract:
An automated machine for and the method of fabricating containers made from a cardboard paperboard or corrugated paperboard blank having an inner liquid holding bag secured to the inner surface of the paperboard box. The liquid holding bag includes a spout that extends through a spout opening formed in the paperboard blank. During the fabrication process the spout is utilized to precisionally locate the liquid holding bag so that when the panel of the blank with the spout opening is folded down over the spout, the spout will be properly aligned with the spout opening thus facilitating the automatic assembly of the container. In this automatic assembly process the liquid holding bag is secured to the inner surface of the container at multiple locations such that when the container is opened into its three dimensional use configuration a passage is opened for filling the bag through the spout.
Abstract:
A machine and method for producing beverage container holders of consistently high quality at high production rates and at an economical cost is disclosed herein. Beverage container holders (500) can be produced on the machine using the method disclosed herein at a rate of 50,000 beverage container holders per hour. The initial step of introducing the blanks 810) into the machine's conveying mechanism assures that the blanks are properly aligned and have a predetermined spacing there between, which avoids jamming of the machine and the resulting work stoppage (FIG. 2). The process includes steps for pre-breaking or pre-folding the flaps (FIG. 5) which enable the final folding of the flaps to be performed with the necessary reliability and speed. All except the final step of the manufacturing process are performed while the blanks are being conveyed at a constant high rate along the length of the machine.
Abstract:
A carrier has a bottom, a plurality of side panels connected to the bottom, and a handle panel. The handle panel is connected to one of the side panels or the bottom and includes a first slot being angled relative to a plane formed by the bottom, and a second slot being angled relative to the plane formed by the bottom and being angled relative to the first slot. The handle panel folds over a container to accommodate the shape of the container and to facilitate penetration of a handle of the container through the first slot. The handle panel folds over the container to accommodate the shape of the container and to facilitate penetration of the handle of the container through the second slot.
Abstract:
A unitary blank is configured to be assembled into a portable carrier. The unitary blank includes a bottom panel, a plurality of side panels connected with the bottom panel, and a top panel connected with one of the side panels. The unitary blank also includes a carrier divider panel connected with one of the side panels. The carrier divider panel includes perforations such that the carrier divider panel is detachable from the side panel and configured to be inserted into an interior of the portable carrier formed by the bottom panel, the plurality of side panels, and the top panel.