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 method for manufacturing a multilayer sheet material includes, at some point during passage of the sheet material through a machine system, heating the multilayer sheet material with a microwave heater to expand a heat-expandable adhesive or coating applied to or within the multilayer sheet material. Various types of multilayer substrates may be created depending on the steps used and the application of the heat-expandable adhesive or coating. Additionally, a monolayer sheet may be coated with a pattern of heat-expandable coating before passage of the monolayer sheet through the machine system that heats the monolayer sheet to expand the heat-expandable coating applied to the monolayer sheet. The microwave heater used by the machine system may be a planar type and have a plurality of microwave guides surrounding a space through which the sheet material(s) pass. The microwave heater may be operable at multiple frequencies.
Abstract:
A beverage container includes right, left, front, and rear sidewalls that define a closed space there between. The right sidewall defines an opening. The beverage container also includes a bag for storing fluids that is positioned within the closed space. The bag includes a spout for dispensing the fluids. At least a portion of the spout extends through the opening in the right sidewall. The beverage container includes first and second lid members that extend from respective top edges of the front sidewall and the rear sidewall, respectively. The first and second lid members cover the bag when in a closed configuration. In the closed configuration, a side edge of at least one of the lid members is positioned behind at least a portion of the spout and is configured to prevent the spout from falling into the closed space.
Abstract:
A container and a sleeve for a container are disclosed that employ unique air channels to divert heat from a hot beverage via hot air escaping upward and downward. The surface of the container and sleeve include raised images, depressed images, or a combination of both which are generally aligned in substantially vertical columns. The space between the columns defines the air channels. The air channels are substantially uninterrupted and facilitate the upward and downward escape of hot air. The images are applied, such as by embossing and/or debossing, which facilitates manufacturing material efficiency and therefore reduces material costs and environmental waste. A blank for a container or sleeve and a method of making a sleeve are also disclosed.
Abstract:
A carrier is formed of foldable sheet material, the carrier being usable with a container. The container has a top, a bottom and sides, the top having a handle, and at least one of the sides having a mouth for emptying contents from the container. The carrier includes a bottom, side panels adjoined and connected to the bottom, and a handle panel formed with at least one of the side panels. The handle panel includes a first aperture for fitting over the handle on the top of the container such that at least a portion of one of the side panels of the carrier rests against a side of the container directly opposite to the mouth.