Patent classifications
B65D2565/385
Biodegradable Composite Article
The present disclosure is directed to laminated articles, such as containers for food and beverages, that are biodegradable and/or paper recyclable. The articles include a shaped fibrous substrate that is air permeable and formed from plant fibers. A film made from a biodegradable and/or paper recyclable polymer is laminated to the substrate to produce a liquid impermeable barrier. The composite article is capable of being frozen and/or heated using, for instance, a microwave oven without delaminating.
Packing Product, Uses, and Method of Manufacture
A packing product, its use, a machine for production of the packing product, and a method of manufacture, creates a double curl, “B” or modified “B” having elastic, cushioning, form-fitting, and coherent packing properties. The “B” is created from a dimension-controlled strip of preferably, but not necessarily, cohesive paper having a cohesive side and a non-cohesive side, a leading end, and a trailing end. The leading edge is wound into a spiral in a first direction with the cohesive side of the dimension-controlled cohesive paper facing outward, while the trailing edge is wound into a spiral in a second direction that is opposite the first direction, with the cohesive side of the cohesive paper also facing outward. A plurality of “B”s provide a clumped, cohesive mass around a packed item. The machine can produce “B”s of various sizes to accommodate various sized items and/or packaging.
METHOD AND SYSTEM FOR STORING AND/OR TRANSPORTING TEMPERATURE-SENSITIVE MATERIALS
Method and system for maintaining temperature-sensitive materials within a desired temperature range for an extended time. In one embodiment, the system includes an outer box having a rectangular cavity. An insulation unit is snugly but removably positioned in the rectangular cavity. The insulation unit includes a support and a thermal insulation member. The support may be a generally rectangular sleeve with four sides, an open bottom and an open top. The thermal insulation may be a bilayer material wrapped around the four sides of the support to form a spiral structure. The bilayer material may include a first sheet of an expanded slit-sheet packaging material and a second sheet of tissue paper. The system may additionally include a bottom insulation member at the bottom of the support, a top insulation member at the top of the support, and a payload and temperature-control members between the top and bottom insulation member.
RECYCLABLE BALL CAN
The present invention relates to a ball can which can be particularly well recycled.
Recyclable flexible films and bags for packaging flowable materials
The disclosure provides ethylene/α-olefin copolymer based co-extruded, multi-layer films, including barrier films and non-barrier films, and articles of manufacture that include the films, such as flexible bags and containers for flowable materials. The films and articles that include the films have improved flex-crak resistance and toughness. The films and articles that include the films have good barrier properties as the barrier films include a core layer of ethylene-vinyl alcohol (EVOH) copolymer having a high ethylene content. The low amount of EVOH copolymer in the total film that is needed to achieve the flex-crack resistance, toughness, and good barrier properties, further allow for the recycling of the films and articles of manufacture.
PACKAGE SYSTEM FOR ARTICLE
The present disclosure relates to a system comprising at least one primary package accommodating at least one article, and a secondary package accommodating the primary package, wherein the secondary package comprises a second package material having a water vapor transmission rate lower than about 100 g/m.sup.2/day, as measured according to Water Vapor Transmission Rate Test, and a resistance to compression higher than about 150N.
ALUMINUM-FREE CORNET CONE PACKAGE
A recyclable and environmentally friendly cornet cone package which does not contain an aluminum layer and only contains a paper layer.
RECYCLABLE FLEXIBLE FILMS AND BAGS FOR PACKAGING FLOWABLE MATERIALS
The disclosure provides ethylene/α-olefin copolymer based co-extruded, multi-layer films, including barrier films and non-barrier films, and articles of manufacture that include the films, such as flexible bags and containers for flowable materials. The films and articles that include the films have improved flex-crak reisstance and toughness. The films and articles that include the films have good barrier properties as the barrier films include a core layer of ethylene-vinyl alcohol (EVOH) copolymer having a high ethylene content. The low amount of EVOH copolymer in the total film that is needed to achieve the flex-crack resistance, toughness, and good barrier properties, further allow for the recycling of the films and articles of manufacture.
CONTAINER AND CONTAINING BODY
A label is attached to a base material in a container. The container includes patterns formed in a plurality of stages on the base material by laser irradiation. The patterns may include an aggregation of dots formed by the laser irradiation. The container may further include a first information region and a second information region. Information including a numeral, a symbol, or an image is made visible by the patterns in the first information region. The second information region is formed on the label. Information including a numeral, a symbol, or an image is made visible in the second information region.
FORMED ARTICLE AND METHOD OF USE
A formed article includes a rigid film, a liner film, and a cavity. The rigid film includes a thickness and a line of weakness. The rigid film and the liner film are joined to each other. Further, the line of weakness is positioned in the cavity. The formed article is configured to facilitate separation (e.g., peeling) of the rigid film from the liner film.