Abstract:
Disclosed is an encapsulation barrier stack, capable of encapsulating a moisture and/or oxygen sensitive article and comprising a film layer with at least one layer, wherein the film layer comprises: one or more nanoparticle sealing layer(s) arranged to be in contact with surface of the at least one substrate, wherein the substrate is not a barrier layer, wherein the one or more nano-particle sealing layer(s) comprise(s) a plurality of encapsulated nanoparticles, the nanoparticles being reactive in that they are capable of interacting with moisture and/or oxygen to retard the permeation of moisture and/or oxygen.
Abstract:
A process for producing a flexible container is provided and includes: A. providing a rear panel web, a front panel web, a first folded gusset panel web, and a second folded gusset panel web, each panel web having peripheral edges and a bottom face, each bottom face having two opposing tapered edges meeting at a bottom end; B. placing the folded gusset panel webs between the rear panel web and the front panel web, the gusset panel webs opposing each other, the panel webs configured to form a common periphery and the bottom seal area including the bottom end of each panel; C. first sealing the peripheral edges, the tapered edges, and the bottom seal area under a set of heat seal conditions; D. second sealing a portion of the bottom seal area under a second heat seal condition; and E. forming a flexible container.
Abstract:
The present invention provides a heat resistant fat based confection. The heat resistance of the confection may be conferred either via inclusion of a polyol and at least one other thermal structuring component in the fat based confection, or via preparation of a premix comprising the polyol and at least one other component of the confection, or a combination of these. Methods of making the fat based confection, and packaged fat based confections, are also provided.
Abstract:
A packaging product and a method of closing a packaging product are provided. Closing a packaging product may include providing a first member of the packaging product having an aperture therein and providing a bubble rivet extending through the aperture and having an expanded hollow head portion on one side of the aperture with a neck portion of the bubble rivet being provided in the aperture. The hollow head portion of the bubble rivet is breakable to enable withdrawal of the head portion through the aperture thereby non-reversibly opening the packaging product.
Abstract:
A flexible container includes a panel structure of flexible web material, including panels that are adjoined to define a pouch. The pouch has a top opening with a fitment, and is expandable from a collapsed, unfilled condition to an expanded, filled condition. When the pouch is in the filled condition and resting on a flat surface, the panel structure supports the pouch in an upright orientation in which the fitment opening faces upward. The panel structure also provides the pouch with a flat footprint upon which the pouch overlies the flat surface. The flat footprint is defined in part by the pouch and in part by the lower handgrip in a condition folded beneath the pouch.
Abstract:
A flexible container includes a panel structure of flexible web material. The panel structure defines a pouch that has a top opening. A rigid fitment, in the top opening, has a surface section adjoining the pouch. The panel structure defines a handle. The pouch is configured to be carried by the handle in an upright orientation in which the handle projects upward from the pouch at a juncture that is not above the bottom of the pouch-adjoining surface section of the fitment.
Abstract:
A package assembly contains a transaction card coupled to a tamper indicator where the tamper indicator is bonded to the package assembly in a manner that tampering will cause visible damage or deformation to the tamper indicator. The tamper indicator may be an account activation element uniquely correlated with the transaction card.
Abstract:
A package and method for opening the package are disclosed. The method may include applying pressure to at least one tab area of the package. The at least one tab area may include a first tab portion and a second tab portion, the first tab portion and the second tab portion being disposed in a first position substantially sealed from each other. The method may further include breaching a first breachable bubble, the first breachable bubble being formed within the first tab portion, and breaching a second breachable bubble, the second breachable bubble being formed within the second tab portion. Further, the method may include causing the first tab portion and the second tab portion to shift from the first position to a second position in fluid communication with each other.
Abstract:
Provided is a compaction package that includes a flexible film portion and a heat shrink film portion coupled to part of the flexible film portion. The compaction package has a bottom, a sidewall, and an open top that together define a hollow interior space adapted to receive and contain a granular material. In a first configuration prior to exposure to a heat source sufficient to raise the temperature of the compaction package to a certain critical heat shrink temperature, the interior space of the compaction package has a first volume. In a second configuration after exposure to the heat source, the interior space of the compaction package has a second volume that is less than the first volume.
Abstract:
A contact lens package includes a container, a contact lens, and an internal member configured facilitate a restoration of the contact lens to a desired shape when the package is opened by the user.