US20180297765A1 - Damage indicating packaging - Google Patents

Damage indicating packaging Download PDF

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Publication number
US20180297765A1
US20180297765A1 US16/018,428 US201816018428A US2018297765A1 US 20180297765 A1 US20180297765 A1 US 20180297765A1 US 201816018428 A US201816018428 A US 201816018428A US 2018297765 A1 US2018297765 A1 US 2018297765A1
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US
United States
Prior art keywords
layer
damage indicating
product
pocket
packaging
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US16/018,428
Inventor
L. Kris Gaines
Veonous Martin Jacques
Auguste Jacques
David A. Gaines
Crystal G. Morrison
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Baby Blue Brand Corp
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Baby Blue Brand Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US14/272,156 external-priority patent/US20140332419A1/en
Application filed by Baby Blue Brand Corp filed Critical Baby Blue Brand Corp
Priority to US16/018,428 priority Critical patent/US20180297765A1/en
Priority to US16/042,416 priority patent/US11542080B2/en
Publication of US20180297765A1 publication Critical patent/US20180297765A1/en
Abandoned legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D79/00Kinds or details of packages, not otherwise provided for
    • B65D79/02Arrangements or devices for indicating incorrect storage or transport
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F6/00Contraceptive devices; Pessaries; Applicators therefor
    • A61F6/005Packages or dispensers for contraceptive devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D75/00Packages comprising articles or materials partially or wholly enclosed in strips, sheets, blanks, tubes, or webs of flexible sheet material, e.g. in folded wrappers
    • B65D75/04Articles or materials wholly enclosed in single sheets or wrapper blanks
    • B65D2101/0084
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D2401/00Tamper-indicating means
    • B65D2401/55Tamper-indicating means based on a change or a contrast in colour

Definitions

  • the present invention relates to damage indicating packaging for condoms and other articles such as food products and pharmaceuticals.
  • An embodiment of the invention provides a damage indicating material such as a reactive or responsive species in a formulation that can be incorporated into a variety of substrates.
  • the damage indicating material may change color when exposed to oxygen, excessive heat and/or excessive pressure.
  • the damage indicating material may include an anti-counterfeiting taggant material.
  • One method of incorporating the reactive/responsive material can involve printing a damage indicating ink or coating on a substrate.
  • One embodiment of the invention involves printing a reactive/responsive ink formulation on plastic films used for vacuum packaging. In one package style of this embodiment, the printed vacuum packaging is used as a vacuum sealed overwrap around an already-packaged product. Exemplary products include packaged condoms, food and pharmaceuticals.
  • An aspect of the present invention is to provide a damage indicating package comprising a first packaging layer and a second packaging layer attached to the first packaging layer thereby forming a product pocket having an interior volume between the first packaging layer and the second packaging layer structured and arranged to receive a product
  • the first packaging layer comprises an inner wrapper layer comprising a film having an interior surface exposed to the interior volume of the product pocket, an outer layer comprising a film at least partially covering the inner wrapper layer and the interior volume of the product pocket and forming a damage indicating material pocket between an exterior surface of the inner wrapper layer and an interior surface of the outer layer, wherein the damage indicating material pocket is evacuated or at least partially filled with an inert gas, a damage indicating material in the damage indicating material pocket between the exterior surface of the inner wrapper layer and the interior surface of the outer wrapper layer, and a taggant material between the inner wrapper layer and the outer wrapper layer.
  • Another aspect of the present invention is to provide a packaged product comprising a first packaging layer and a second packaging layer attached to the first packaging layer thereby forming a product pocket having an interior volume between the first packaging layer and the second packaging layer containing the product with the packaged product contained within the product pocket
  • the first packaging layer comprises an inner wrapper layer comprising a film having an interior surface exposed to the interior volume of the product pocket, an outer layer comprising a film at least partially covering the inner wrapper layer and the interior volume of the product pocket and forming a damage indicating material pocket between an exterior surface of the inner wrapper layer and an interior surface of the outer layer
  • the damage indicating material pocket is evacuated or at least partially filled with an inert gas, a damage indicating material in the damage indicating material pocket between the exterior surface of the inner wrapper layer and the interior surface of the outer wrapper layer and a taggant material between the inner wrapper layer and the outer wrapper layer, and a taggant material between the inner wrapper layer and the outer wrapper layer.
  • FIG. 1 is a partially schematic front view of a sealed condom package with a substantially transparent company logo and universally recognized symbol in accordance with an embodiment of the invention.
  • FIG. 2 is a partially schematic back view of the sealed condom package of FIG. 1 showing a substantially transparent universal throwaway symbol in accordance with an embodiment of the invention.
  • FIG. 3 is a partially schematic front view of a condom package once exposed to oxygen with tamper evident coloring displaying a universally recognized symbol as a result of color bloom of a damage indicating material in accordance with an embodiment of the present invention.
  • FIG. 4 is a partially schematic back view of the condom package of FIG. 3 once exposed to oxygen with tamper evident coloring displaying a universally recognized symbol or customized symbol as a result of the color bloom of the damage indicating material in accordance with an embodiment of the present invention.
  • FIG. 5 is the flow diagram illustrating a method of making a damage indicating condom package in accordance with an embodiment of the invention.
  • FIG. 6 is a partially schematic side sectional view showing a portion of a condom packaging material in accordance with an embodiment of the present invention.
  • FIG. 7 is a partially schematic side sectional view showing a portion of a condom packaging material in accordance with another embodiment of the present invention.
  • FIGS. 8-11 illustrate results from the examples below.
  • FIGS. 12 and 13 illustrate damage indicating ink printing styles in accordance with embodiments of the invention.
  • An embodiment of the present invention provides active and intelligent product packaging including information printed thereon that allows anyone seeing it to know that the packaging has been compromised and to discard the product if damaged.
  • a damage indicating material may be utilized that causes the packaging to change color when exposed to oxygen, extreme heat and/or excessive pressure such as compression or tension.
  • the damage-indicating packaging gives the user clear indication that the product contained therein has been compromised and can be immediately discarded.
  • packaging for condoms is primarily described herein, the present invention may be used with other products to be packaged, and for other applications.
  • Non-limiting examples include foods and beverages, pharmaceutical products and packaging (packaging, including modified atmosphere packaging, additives, coatings), life sciences (lab supplies, including bioreactors and cell cultivating flasks, medical devices, diagnostics and equipment, surgical supplies and equipment, fertility supplies and equipment, imaging oxygen distributions in biomedicine, microbiology, and imaging intra and extra-cellular oxygen distribution in biological systems), military and defense supplies and equipment, weapons, security and authentication (steganography, anti-counterfeiting, anti-piracy, microprinting, document stamps or seals, currency, stamps, security tags and seals), documents, evidence, commercial products (electronic devices such as cell phones, tablets and computers, utensils, tattoo supplies and shipping containers), high end (luxury goods, artwork, archival protection), detectors/sensors (variable oxygen content detectors, enzymatic sensors, oxygen distribution sensors), advanced packaging (biodegradeable packaging
  • the damage indicating packaging may be provided as an overwrap for a previously packaged product, such as an overwrap for pre-packaged food or pharmaceutical products.
  • a previously packaged product such as an overwrap for pre-packaged food or pharmaceutical products.
  • pharmaceutical pills, tablets, capsules, liquids, etc. that are packaged in bottles, blister wraps and the like may be overwrapped with the damage indicating packaging.
  • the food, pharmaceutical or other product may be directly wrapped with the damage indicating packaging.
  • the information may be printed on a front and/or back layer of the packaging.
  • the information may include any one or more of manufacturing information, artwork, text, logos, slogans, insignia, instructions or the like.
  • An embodiment of the invention also provides a process for manufacturing damage-indicating packaging with a film layer of plastic, foil, paper or the like having a damage indicating material applied thereto.
  • the packaging film layer and damage indicating material may be exposed to electromagnetic radiation, which renders the damage indicating material substantially colorless.
  • the damage indicating material may be added to a layer of the packaging prior to the product being inserted and the packaging being sealed.
  • a sealing unit may seal the package layers together around each product and dispense the packaged products either individually or in strips. The sealing unit may also print manufacturing information on the sealed packages.
  • the combination comprises a package shown generally at 110 , and a rolled condom shown generally at 120 .
  • the package comprises a front wrapper panel or layer 130 and a back wrapper panel or layer 140 .
  • the front 130 and back 140 wrapper layers are sealed to one another around their respective edges. Labeling is shown generally at 150 .
  • Package instructions are shown generally at 199 . In the embodiment shown, the instructions 199 state “Contains tamper evident technology. If indicator on wrapper changes to dark blue color please discard product”.
  • a front outer layer 210 covers the front wrapper layer 130 .
  • a damage indicating material is applied on the front outer layer 210 .
  • a back outer layer 220 covers the back wrapper layer 140 , and a damage indicating material is applied on the back outer layer 220 .
  • a damage indicating material that includes a reactive dye such as methylene blue, alternative oxygen sensitive reactive dye, or alternative damage indicating material on package interiors, and processed to convert them to a colorless or different colored form.
  • a reactive dye such as methylene blue, alternative oxygen sensitive reactive dye, or alternative damage indicating material on package interiors
  • the reactive damage indicating material is subsequently activated by exposure to oxygen, extreme heat, or excessive pressure, such as compression or tension, it changes in appearance.
  • the reactive damage indicating material changes color when exposed to oxygen.
  • the color change should be sufficiently stable such that the color is visible for a sufficiently long time period.
  • the long-term stability may be for periods of days, weeks, months or years.
  • FIGS. 3 and 4 schematically illustrate the condom package 100 in a damage-indicating state in which the condom wrapper has been torn.
  • the universal symbols 390 , 400 and company logo 380 are re-oxidized and change color (in the case of methylene blue) due to exposure to oxygen, or bloom with color due to extreme heat, excessive pressure, compression or tension. Re-oxidation is indicated with a color bloom of the universal symbols 390 , 400 and company logo 380 .
  • the rolled condom 120 as shown in FIGS. 1-4 has an open end 160 and a closed end 170 .
  • the precise details of the condom 120 are not relevant to the present invention, e.g., the condom may be pre-lubricated or not, may have a tip for collection of ejaculate, etc.
  • FIG. 5 is a flow diagram illustrating a method of making a damage evident condom package in accordance with an embodiment of the present invention.
  • a damage indicating material such as methylene blue, any suitable alternative oxygen-sensitive reactive dyes, or responsive, color-changing material combination.
  • the material may be applied by any suitable means such as spraying, brushing, screen printing, ink jet printing or the like. Methylene blue dye may be used in the printing process.
  • Other responsive materials may be thiazines, thionines, oxazines, azines, triphenylmethane, indophenol, indigo, thioindigo, pyridinium viologens, and quinone-based species.
  • Additional responsive materials may be non-toxic phosphorous pigmentation, or any alternative oxygen sensitive reactive dyes or any dyes that change color when exposed to oxygen, extreme heat, or excessive pressure, compression or tension.
  • the responsive, damage indicating material may comprise more than one type of reactive dye.
  • the printer may be of conventional construction and operation and sprays dye onto the packaging.
  • the manufacturing information is provided by a processor (not shown), the operation of which is not germane to this invention, and which also controls printing by the sealing unit.
  • step 520 another layer, which may also have damage indicating material applied thereto, is sealed or otherwise attached to the layer formed in step 510 , e.g., to thereby form a pocket.
  • a condom is inserted into the condom package or pocket.
  • the condom may optionally be pre-wrapped in any suitable type of wrapper prior to insertion into the pocket.
  • a company logo and/or universal symbols may be printed on one or more of the layers of packaging.
  • a sealing unit seals the package layers together around each condom 120 and dispenses the condoms either individually or in strips.
  • the sealed condom package is exposed to electromagnetic radiation, such as ultraviolet radiation or any other radiation of suitable wavelength, e.g., to render the damage indicating material substantially colorless.
  • electromagnetic radiation such as ultraviolet radiation or any other radiation of suitable wavelength, e.g., to render the damage indicating material substantially colorless.
  • step 560 the chemical compound is exposed to oxygen to change the color of the damage indicating material by oxidation or another type of chemical reaction that changes the reactive dye from colorless to colored or from one color to another upon tampering, extreme heat, excessive pressure, compression, tension or any other breach of the condom wrapper such as a tear, pin-prick, or intentionally opening condom packaging.
  • Printing between the layers of packaging prevents the dye from coming into contact with the condom. Is thus not possible for a user to experience any reaction due to contact with the dye.
  • FIGS. 6 and 7 are partially schematic side sectional views illustrating various condom packaging layers in accordance with embodiments of the present invention.
  • an outer layer 610 is provided with a layer of damage indicating material 615 applied thereto.
  • An inner condom wrapper layer 630 is located adjacent to the outer layer 610 and damage indicating material 615 .
  • the inner wrapper layer 630 may not be adhered to the layer of damage indicating material 615 , as shown by the gap 640 in FIG. 6 .
  • the gap 640 is shown as a physical spacing between the layers 630 and 615 in FIG. 6 , it should be recognized that the gap may be closed such that the layers 630 and 615 contact each other.
  • the layer of damage indicating material 615 would typically contact the underlying inner wrapper layer 630 .
  • the pressure of the gas may result in the formation of a physical gap 640 , as shown in FIG. 6 .
  • FIG. 7 is similar to the embodiment of FIG. 6 , except the layer of damage indicating material 615 is applied to the outer surface of the inner wrapper layer 630 rather than the inner surface of the outer layer 610 .
  • the various inner condom wrapper layers and outer layers may be made of any suitable materials such as polymeric films, foils, paper and the like.
  • polymeric layers include cellulosic materials, vinyl polymers such as polyvinyl alcohol and polyacrylates, polyolefins such as polyethylene, polyethylene terephthalate (PET), ethylene vinyl acetate copolymers, polyethylene, nylon (polyamide) and the like.
  • the inner wrapper layers and outer layers may be made of the same or different materials.
  • the inner wrapper layers may comprise foil coated with any of the aforementioned polymers, or such polymers alone.
  • the outer layers may comprise polyethylene or the like, which may optionally be coextruded with nylon or the like.
  • a condom or other product is disposed in an inner wrapper, an outer wrapper surrounds the inner wrapper, and a layer of damage indicating material is applied to the inner surface of the outer wrapper.
  • the outer surface of the inner wrapper may have the damage indicating material applied thereto.
  • the space between the inner and outer wrappers may be evacuated by any suitable type of vacuum source in order to remove gasses including oxygen from the space between the wrappers.
  • the inner space may be at least partially filled with an inert or non-reactive gas such as nitrogen or the like that does not cause the damage indicating material to react and change colors.
  • dual-wrapper arrangements as described above may be made by providing a pre-packaged condom or other product in the inner wrapper, followed by applying the outer wrapper around the inner wrapper.
  • the outer wrapper may be provided as a pre-formed pocket in which the inner wrapper containing the product is inserted, followed by sealing of the open end of the outer wrapper.
  • the space between the inner and outer wrappers may be evacuated and/or filled with a non-reactive gas.
  • separate sheets of outer wrapper material may be placed on opposite sides of the inner wrapper containing the product, following by sealing of the peripheral edges of the outer wrapper layers together to thereby seal the inner wrapper and product within the outer wrapper.
  • the space between the inner and outer wrappers may be evacuated and/or filled with a non-reactive gas during the sealing operation.
  • Such operations in which the product is first sealed in the inner wrapper followed by sealing an outer wrapper around the inner wrapper, may be conducted contemporaneously with each other, e.g., the inner and outer wrappers may be applied in the same manufacturing operation.
  • pre-packaged products may be modified by applying the outer wrapper at a different time or location, e.g., at a different facility from the original product manufacturing location.
  • a single product wrapper is provided with multiple laminated layers in which at least one of the layers contains the damage indicating material.
  • a layer of damage indicating material may be sandwiched between inner and outer polymeric layers to provide a composite wrapper structure with damage indicating capabilities.
  • a layer of damage indicating material may be applied on the inner surface of the single product wrapper.
  • the damage indicating material layer would be exposed to the product, and the damage indicating material must be non-reactive with the material of the product or any other liquids or gasses contained within the wrapper, and the damage indicating layer must not damage the product or vice versa.
  • the damage indicating material may comprise an absorption-based species that produces a visible color change caused by chromogenic chemistry that involves oxidation by molecular oxygen. Examples include methylene blue, resorufin, resazurin, thiazine, thionines, oxazine, azine, triphenylmethane, indophenol, indigo, thioindigo, pyridinium viologen, and quinone-based species.
  • the damage indicating material may also comprise luminescence-based species such as polycyclic aromatic hydrocarbons, polypyridyl complexes, metalloporphyrins, including platinum and palladium complexes, cyclometallated complexes, and other luminescent metal complexes such as lead, aluminum, copper, gold, europium, terbium, molybdenum, and the like.
  • luminescence-based species such as polycyclic aromatic hydrocarbons, polypyridyl complexes, metalloporphyrins, including platinum and palladium complexes, cyclometallated complexes, and other luminescent metal complexes such as lead, aluminum, copper, gold, europium, terbium, molybdenum, and the like.
  • Other damage indicating material species include fullerenes, fluorescent polymers, and modified polymeric materials containing absorption-based or luminescence-based species described above. Additional responsive materials may be non-toxic phosphorous pigmentation, or any alternative oxygen sensitive reactive dyes
  • the reactive/responsive species can be incorporated into a variety of formulations including inks, gels, plastics, composites and the like.
  • Ink formulations include resin/binder variations such as gelatin, cellulosics such as hydroxyethylcellulose (HEC), ethyl cellulose, cellulose acetate, polyvinylalcohol (PVA), polyvinylpyrolidone (PVP), polyamides, polyurethanes, polyethylene oxide (PEO), poly acrylates such as polymethyl methacrylate (PMMA), polymethacrylate, and polystyrene or modified polystyrenes.
  • resin/binder variations such as gelatin, cellulosics such as hydroxyethylcellulose (HEC), ethyl cellulose, cellulose acetate, polyvinylalcohol (PVA), polyvinylpyrolidone (PVP), polyamides, polyurethanes, polyethylene oxide (PEO), poly acrylates such as polymethyl
  • the ink formulations may include inks typically used on plastic films and vacuum packaging films, or for pad printing, flexo printing, gravure printing, dot matrix style printing, steganography printing, and the like.
  • Semiconductor variations include oxides of titanium, tin, tungsten, zinc and/or mixtures thereof.
  • Semiconductor size variations include submicron diameter, sub 50 nm diameter, and sub 10 nm diameter.
  • Sacrificial electron donor variations may be a mild reducing agent, amine such as sodium salt of ethylenediaminetetraacetic acid (NaEDTA) or triethanolamine (TEOA), saccharide such as glucose or fructose, antioxidant such as ascorbic acid or citric acid, or other easily oxidizable species such as glycerin or oxidizable polymer such as polyvinylalcohol (PVA).
  • Additive variations include solubility modifiers such as surfactants, permeability modifiers such as silicones, and modifiers for oxygen transmissibility rate (OTR) or water vapor transmissibility rate (WVTR). Examples of additives include moisture absorbers, oxygen scavengers, microwave susceptors and antimicrobials.
  • anti-counterfeiting taggant materials may be added to the formulations in order to authenticate the product in order to protect against counterfeiting.
  • Known types of taggants may be added to the damage indicating material.
  • taggant particles or compositions may be added to coatings, inks and adhesives, or embedded in packaging layers and/or labels.
  • Types of anti-counterfeiting taggant materials include infrared (IR) responsive particles and inks, ultraviolet (UV) responsive particles and inks, secure pigments, metachromic materials, color-shift materials, thermochromic materials, and the like.
  • taggants A non-limiting example of commercially available taggants that may be added to, or used in association with, the damage indicating materials of the present invention is a particulate taggant material sold under the designation Microtaggant by Microtrace, LLC. Other types of commercially available taggant materials include SunGuard inks sold by Sun Chemical Corporation. When taggant particles or compositions are added to the present damage indicating coatings, they may typically be present in amounts ranging from a minimal detectable trace amount up to 5 or 10 weight percent of the coating, or more. For example, taggants may comprise from 0.001 to 5 weight percent, or from 0.01 to 2 weight percent, or from 0.1 to 1 weight percent of the material.
  • substrate types include glass, plastic, organic composites (binder such as cellulose, polymers, etc.), inorganic composites (binder such a zeolite, silica gel, etc.), and nanocomposites.
  • organic composites binder such as cellulose, polymers, etc.
  • inorganic composites binder such as zeolite, silica gel, etc.
  • nanocomposites include multi-layer plastic films, filled reinforced plastic composites, and filled non-reinforcing plastic composites.
  • the damage indicating material may be printed or applied to a packaging substrate by any suitable means such as spraying, screen printing, brushing, immersion, ink jet printing, or the like.
  • Various printing variations may be used for the damage indicating inks, such as variable coating thicknesses, and variable coating line widths.
  • a micro dot or dot matrix style to increase surface area of ink within overall mark is illustrated in FIG. 12 .
  • a cross hatch style to increase surface area of ink within overall mark is illustrated in FIG. 13 .
  • the packaging in its completed form may have a company logo displayed clear on one side and a clear icon of a trashcan on the reverse side. If opened for intended use or accidentally or intentionally pricked exposing the product inside, exposed to extreme heat, or excessive compression or tension, the coloring of the packaging will change, highlighting the company logo with universal “NO” symbols emblazoned over it, including, but not limited to the symbols for “Do not Enter”, “Prohibited”, an “X”, a circle, square, triangle with a backslash or line going through it, horizontally, vertically, or diagonally, a stop sign, a hand, trash can or customized symbol. On the reverse side a trash can icon or alternative customized symbol(s) will also color change indicating that the packaging and the product contained within should be thrown away.
  • anti-counterfeiting indicia may be printed or otherwise applied to the packaging and/or labels applied to the packaging.
  • the disclosed embodiments are illustrative, not restrictive. While specific configurations including a packaged condom have been described, it is understood that the present invention can be applied to a wide variety of other packaging for other types of products including paper, foils, or plastics, as well as any combination thereof, such as foil-lined paper, plastic-lined paper or a wax-lined paper.
  • the package may take a variety of forms such as rectangular, oval, etc., or can be male or female condom packaging, or packaging for other types of products.
  • the package may be provided with a separation structure, such as an edge tear area, a zipper-locked edge area, or an openable, adhesively sealed edge area.
  • Alternative embodiments include transparent or translucent plastic lids, transparent or translucent plastic containers. Plastics can be LDPE, HDPE, PP, or a combination of plastics including, but not limited to polycarbonates, or acrylics.
  • Package style embodiments include vacuum-sealed overwrap, vacuum-sealed overwrap with interior printed surface, vacuum-sealed overwrap with printed coupon between item and interior overwrap surface, vacuum-sealed overwrap containing multi-layer plastic with oxygen-indicating ink added as an internal layer, and vacuum-sealed overwrap containing multi-layer plastic with oxygen-indicating ink compounded into plastic material comprising at least one layer of the multi-layer film.
  • a damage indicating material was made as follows. Ten grams of 5% aqueous solution of hydroxyethylcellulose (HEC) and 2.5 grams of 5% aqueous dispersion of titanium dioxide (TiO 2 ) were added to a 20 mL amber glass scintillation vial. The mixture was sonicated for approximately 30 minutes in a warm ultrasonic bath. After dispersing the TiO 2 , 0.5 grams of 5% aqueous solution of methylene blue (MB) was added to the mixture. The mixture was sonicated or magnetically stirred for 10-15 minutes to disperse the MB in the aqueous mixture. After dispersing the MB into the mixture, 0.15 g oftriethanolamine (TEOA) were added using a plastic or glass pipet. The final formulation was sonicated for approximately 30 minutes in a warm ultrasonic bath prior to substrate application.
  • HEC hydroxyethylcellulose
  • TiO 2 titanium dioxide
  • the formulation was applied as a thin layer of glass or plastic film substrate and was allowed to dry. Standard laboratory glass microscope slides and 3 mil thick co-extruded polyethylene-nylon vacuum packaging film were used as substrates for coating.
  • the plastic film was also used as an overwrap to seal the coated glass slides or plastic film prior to activation and deactivation.
  • the formulation was typically applied by painting a thin film on the substrate with a paint brush. Uniform film casting can also be accomplished using a spin coater or K bar techniques.
  • the coated substrates were allowed to dry within a dark oven set at 50° C. for 16 hours.
  • the resultant blue layer had a dry-film thickness of approximately 2 mils or less with variations in thickness dependent on the exact formulation.
  • the dried, blue films of damage indicating material were vacuum sealed within a plastic film overwrap. Following evacuation and thermal sealing, the material was “activated” under a UV lamp to convert the blue MB form to a white leuco MB form. Upon such UV exposure, the layer changed from substantially blue to off-white or light gray. After activation, the layer was exposed to air by puncturing or cutting open the vacuum overwrap, resulting in a change back to the blue color. After the color transformation, the layer retained a significant degree of its blue color for over several weeks.
  • Example 2 through 8 used commercial ink formulations for flexo and gravure printing by Siegwerks (Ink 4 and Ink 6).
  • Ink 6 was also modified for this work to give Ink 6A with no water, ink 6B with no water or titanium dioxide, ink 6C with no water and nano titanium oxide and ink 6D with no water and additives to increase oxygen permeability.
  • the six different starting ink formulations are Ink 4, 6, 6A, 6B, 6C and 6D. Modifications to the starting ink formulations yield reactive/responsive, damage indicating materials.
  • TEOA sacrificial electron donor
  • the substrate Prior to printing, the substrate was dried to remove any residual moisture.
  • the substrate was a 75 micron thick, 2 layer co-extruded film composed of nylon and polyethylene.
  • a small amount of the reactive/responsive ink formulation was applied to the dried substrate.
  • a K-Bar (#0, #2 or #6) was used to achieve a uniform film thickness.
  • the ink was drawn down with the K-Bar using steady, constant pressure and speed.
  • the printed substrate was dried in a 50 degree Celsius oven until the ink set (1 hour to 24 hours).
  • the dried printed substrate was evacuated and heat sealed using a commercial vacuum sealer. In one package style of this embodiment, the dried printed substrate is used as a vacuum sealed overwrap around an already-packaged product such as a packaged condom.
  • the reactive/responsive ink formulation on the dried, printed and vacuum-sealed substrate was activated with UV light.
  • the UV lamp was allowed to warm up for at least 1 hour so that the UV intensity was stable and consistent.
  • the ink was UV activated by exposing the printed and sealed substrate at a set distance (3 inches) and intensity ( ⁇ 10 mW/cm2 with 1 hour warm up) to achieve a stable color change.
  • the MB changes from blue to the colorless leuco form.
  • the layer was exposed to air by puncturing or cutting open the vacuum-sealed overwrap. Color change was monitored over the course of approximately 20 minutes. The color started to change with the first minute after exposure.
  • MB methylene blue
  • TEOA triethanolamine
  • the substrate Prior to printing, the substrate was dried to remove any residual moisture.
  • the substrate was a 75 micron thick, 2 layer co-extruded film composed of nylon and polyethylene.
  • a small amount of the reactive/responsive ink formulation was applied to the dried substrate.
  • a K-Bar (#0, #2 or #6) was used to achieve a uniform film thickness.
  • the ink was drawn down with the K-Bar using steady, constant pressure and speed.
  • the printed substrate was dried in a 50 degree Celsius oven until the ink set (1 hour to 24 hours).
  • the dried printed substrate was evacuated and heat sealed using a commercial vacuum sealer. In one package style of this embodiment, the dried printed substrate is used as a vacuum sealed overwrap around an already-packaged product such as a packaged condom.
  • the damage indicating material was activated on the dried, printed and vacuum-sealed substrate with UV light.
  • the UV lamp was allowed to warm up for at least 1 hour so that the UV intensity was stable and consistent.
  • the ink was UV activated by exposing the printed and sealed substrate at a set distance (3 inches) and intensity ( ⁇ 10 mW/cm2 with 1 hour warm up) to achieve a stable color change.
  • the MB changes from blue to the colorless leuco form.
  • the layer was exposed to air by puncturing or cutting open the vacuum-sealed overwrap. Color change was monitored over the course of approximately 20 minutes. The color started to change with the first minute after exposure.
  • Reactive/responsive, damage indicating materials were made using Ink 6 with methylene blue (MB) as the reactive/responsive species and glycerol as the sacrificial electron donor as set forth in Table 2. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • MB methylene blue
  • glycerol glycerol
  • Reactive/responsive, damage indicating materials were made using Ink 6 with resorufin (RR) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 3. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • Reactive/responsive, damage indicating materials were made using Ink 4 with resorufin (RR) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 4. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • Reactive/responsive, damage indicating materials were made using Ink 6A, 6C and 6D with methylene blue (MB) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 5. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • Reactive/responsive, damage indicating materials were made using Ink 6A and 6D with resorufin (RR) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 6. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • Reactive/responsive, damage indicating materials were made using Ink 6C with resorufin (RR) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 7. Response was modulated with dilute acetic acid and dilute ammonium hydroxide. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • FIGS. 8-11 illustrate results from the examples above.
  • FIG. 8 UV activation of Ink 6C with MB and H/I modifications.
  • FIG. 9 Air exposure of UV activated Ink 6C with MB and H/I modifications
  • FIG. 10 UV activation and air exposure (after 2 mins) of Ink 4 with RR and H/I modifications
  • FIG. 11 UV activation and air exposure (after 15 mins) of Ink 4 with RR and H/I modifications

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Abstract

Damage indicating packaging is disclosed. A damage indicating material may be applied between inner and outer wrapper layers. When the damage indicating material is exposed to oxygen, excessive heat and/or excessive pressure, the material changes in appearance to thereby alert the user that the package may be compromised. The damage indicating material may include an anti-counterfeiting taggant material. Active and intelligent tamper-evident packaging is thus provided.

Description

    CROSS-REFERENCE TO RELATED APPLICATIONS
  • This application is a continuation of U.S. patent application Ser. No. 14/939,989 filed Nov. 12, 2015, which is a continuation-in-part of U.S. patent application Ser. No. 14/272,156 filed May 7, 2014, now abandoned, which claims priority from U.S. Provisional Patent Application Ser. No. 61/820,315 filed May 7, 2013 and U.S. Provisional Patent Application Ser. No. 61/971,187 filed Mar. 27, 2014. The Ser. No. 14/939,389 application also claims the benefit of U.S. Provisional Patent Application Ser. No. 62/078,819 filed Nov. 12, 2014. All of these applications are incorporated herein by reference.
  • FIELD OF THE INVENTION
  • The present invention relates to damage indicating packaging for condoms and other articles such as food products and pharmaceuticals.
  • BACKGROUND INFORMATION
  • Conventional condom packaging provides an expiration date, but no obvious evidence of tampering. Air bubbles have been used in condom packaging as an indication of whether the packaging has been compromised. However, a need exists for an easy and reliable indication that condom packages have been compromised. In addition, a need exists for other types of damage indicating packaging for food products, pharmaceuticals and the like.
  • SUMMARY OF THE INVENTION
  • An embodiment of the invention provides a damage indicating material such as a reactive or responsive species in a formulation that can be incorporated into a variety of substrates. The damage indicating material may change color when exposed to oxygen, excessive heat and/or excessive pressure. The damage indicating material may include an anti-counterfeiting taggant material. One method of incorporating the reactive/responsive material can involve printing a damage indicating ink or coating on a substrate. One embodiment of the invention involves printing a reactive/responsive ink formulation on plastic films used for vacuum packaging. In one package style of this embodiment, the printed vacuum packaging is used as a vacuum sealed overwrap around an already-packaged product. Exemplary products include packaged condoms, food and pharmaceuticals.
  • An aspect of the present invention is to provide a damage indicating package comprising a first packaging layer and a second packaging layer attached to the first packaging layer thereby forming a product pocket having an interior volume between the first packaging layer and the second packaging layer structured and arranged to receive a product, wherein the first packaging layer comprises an inner wrapper layer comprising a film having an interior surface exposed to the interior volume of the product pocket, an outer layer comprising a film at least partially covering the inner wrapper layer and the interior volume of the product pocket and forming a damage indicating material pocket between an exterior surface of the inner wrapper layer and an interior surface of the outer layer, wherein the damage indicating material pocket is evacuated or at least partially filled with an inert gas, a damage indicating material in the damage indicating material pocket between the exterior surface of the inner wrapper layer and the interior surface of the outer wrapper layer, and a taggant material between the inner wrapper layer and the outer wrapper layer.
  • Another aspect of the present invention is to provide a packaged product comprising a first packaging layer and a second packaging layer attached to the first packaging layer thereby forming a product pocket having an interior volume between the first packaging layer and the second packaging layer containing the product with the packaged product contained within the product pocket, wherein the first packaging layer comprises an inner wrapper layer comprising a film having an interior surface exposed to the interior volume of the product pocket, an outer layer comprising a film at least partially covering the inner wrapper layer and the interior volume of the product pocket and forming a damage indicating material pocket between an exterior surface of the inner wrapper layer and an interior surface of the outer layer, wherein the damage indicating material pocket is evacuated or at least partially filled with an inert gas, a damage indicating material in the damage indicating material pocket between the exterior surface of the inner wrapper layer and the interior surface of the outer wrapper layer and a taggant material between the inner wrapper layer and the outer wrapper layer, and a taggant material between the inner wrapper layer and the outer wrapper layer.
  • These and other aspects of the present invention will be more apparent from the following description.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • FIG. 1 is a partially schematic front view of a sealed condom package with a substantially transparent company logo and universally recognized symbol in accordance with an embodiment of the invention.
  • FIG. 2 is a partially schematic back view of the sealed condom package of FIG. 1 showing a substantially transparent universal throwaway symbol in accordance with an embodiment of the invention.
  • FIG. 3 is a partially schematic front view of a condom package once exposed to oxygen with tamper evident coloring displaying a universally recognized symbol as a result of color bloom of a damage indicating material in accordance with an embodiment of the present invention.
  • FIG. 4 is a partially schematic back view of the condom package of FIG. 3 once exposed to oxygen with tamper evident coloring displaying a universally recognized symbol or customized symbol as a result of the color bloom of the damage indicating material in accordance with an embodiment of the present invention.
  • FIG. 5 is the flow diagram illustrating a method of making a damage indicating condom package in accordance with an embodiment of the invention.
  • FIG. 6 is a partially schematic side sectional view showing a portion of a condom packaging material in accordance with an embodiment of the present invention.
  • FIG. 7 is a partially schematic side sectional view showing a portion of a condom packaging material in accordance with another embodiment of the present invention.
  • FIGS. 8-11 illustrate results from the examples below.
  • FIGS. 12 and 13 illustrate damage indicating ink printing styles in accordance with embodiments of the invention.
  • DETAILED DESCRIPTION
  • The following is a detailed description of exemplary embodiments to illustrate the principles of the invention. The embodiments are provided to illustrate aspects of the invention, but the invention is not limited to any embodiment. The scope of the invention encompasses numerous alternatives, modifications and equivalents. Numerous specific details are set forth in the following description in order to provide a thorough understanding of the invention. However, the invention may be practiced according to the claims without some or all of these specific details. For the purpose of clarity, technical material that is known in the technical fields related to the invention has not been described in detail so that the invention is not unnecessarily obscured.
  • An embodiment of the present invention provides active and intelligent product packaging including information printed thereon that allows anyone seeing it to know that the packaging has been compromised and to discard the product if damaged. A damage indicating material may be utilized that causes the packaging to change color when exposed to oxygen, extreme heat and/or excessive pressure such as compression or tension. The damage-indicating packaging gives the user clear indication that the product contained therein has been compromised and can be immediately discarded.
  • Although packaging for condoms is primarily described herein, the present invention may be used with other products to be packaged, and for other applications. Non-limiting examples include foods and beverages, pharmaceutical products and packaging (packaging, including modified atmosphere packaging, additives, coatings), life sciences (lab supplies, including bioreactors and cell cultivating flasks, medical devices, diagnostics and equipment, surgical supplies and equipment, fertility supplies and equipment, imaging oxygen distributions in biomedicine, microbiology, and imaging intra and extra-cellular oxygen distribution in biological systems), military and defense supplies and equipment, weapons, security and authentication (steganography, anti-counterfeiting, anti-piracy, microprinting, document stamps or seals, currency, stamps, security tags and seals), documents, evidence, commercial products (electronic devices such as cell phones, tablets and computers, utensils, tattoo supplies and shipping containers), high end (luxury goods, artwork, archival protection), detectors/sensors (variable oxygen content detectors, enzymatic sensors, oxygen distribution sensors), advanced packaging (biodegradeable packaging, Braille-based packaging) and other advance materials (reactive and responsive materials).
  • In certain embodiments, the damage indicating packaging may be provided as an overwrap for a previously packaged product, such as an overwrap for pre-packaged food or pharmaceutical products. For example, pharmaceutical pills, tablets, capsules, liquids, etc. that are packaged in bottles, blister wraps and the like may be overwrapped with the damage indicating packaging. In other embodiments, the food, pharmaceutical or other product may be directly wrapped with the damage indicating packaging.
  • Further features of the invention provide for the information to be printed on a front and/or back layer of the packaging. The information may include any one or more of manufacturing information, artwork, text, logos, slogans, insignia, instructions or the like.
  • An embodiment of the invention also provides a process for manufacturing damage-indicating packaging with a film layer of plastic, foil, paper or the like having a damage indicating material applied thereto. The packaging film layer and damage indicating material may be exposed to electromagnetic radiation, which renders the damage indicating material substantially colorless. In certain embodiments, the damage indicating material may be added to a layer of the packaging prior to the product being inserted and the packaging being sealed. A sealing unit may seal the package layers together around each product and dispense the packaged products either individually or in strips. The sealing unit may also print manufacturing information on the sealed packages.
  • Referring now to an embodiment of the invention in more detail, in FIGS. 1 and 2, the combination of a condom and a package therefor is schematically shown at 100. The combination comprises a package shown generally at 110, and a rolled condom shown generally at 120. The package comprises a front wrapper panel or layer 130 and a back wrapper panel or layer 140. The front 130 and back 140 wrapper layers are sealed to one another around their respective edges. Labeling is shown generally at 150. Package instructions are shown generally at 199. In the embodiment shown, the instructions 199 state “Contains tamper evident technology. If indicator on wrapper changes to dark blue color please discard product”. As shown in FIG. 1, a front outer layer 210 covers the front wrapper layer 130. A damage indicating material is applied on the front outer layer 210. As shown in FIG. 2, a back outer layer 220 covers the back wrapper layer 140, and a damage indicating material is applied on the back outer layer 220.
  • Still referring to FIGS. 1 and 2, universal symbols 190, 200 and a company logo 180 are printed on the package with a damage indicating material that includes a reactive dye such as methylene blue, alternative oxygen sensitive reactive dye, or alternative damage indicating material on package interiors, and processed to convert them to a colorless or different colored form. When the reactive damage indicating material is subsequently activated by exposure to oxygen, extreme heat, or excessive pressure, such as compression or tension, it changes in appearance. For example, the reactive damage indicating material changes color when exposed to oxygen. The color change should be sufficiently stable such that the color is visible for a sufficiently long time period. In certain embodiments, the long-term stability may be for periods of days, weeks, months or years.
  • FIGS. 3 and 4 schematically illustrate the condom package 100 in a damage-indicating state in which the condom wrapper has been torn. The universal symbols 390, 400 and company logo 380 are re-oxidized and change color (in the case of methylene blue) due to exposure to oxygen, or bloom with color due to extreme heat, excessive pressure, compression or tension. Re-oxidation is indicated with a color bloom of the universal symbols 390, 400 and company logo 380.
  • It will be understood that the rolled condom 120 as shown in FIGS. 1-4 has an open end 160 and a closed end 170. However, the precise details of the condom 120 are not relevant to the present invention, e.g., the condom may be pre-lubricated or not, may have a tip for collection of ejaculate, etc.
  • FIG. 5 is a flow diagram illustrating a method of making a damage evident condom package in accordance with an embodiment of the present invention. In step 510, the interior wall of a condom packaging layer is coated with a damage indicating material such as methylene blue, any suitable alternative oxygen-sensitive reactive dyes, or responsive, color-changing material combination. The material may be applied by any suitable means such as spraying, brushing, screen printing, ink jet printing or the like. Methylene blue dye may be used in the printing process. Other responsive materials may be thiazines, thionines, oxazines, azines, triphenylmethane, indophenol, indigo, thioindigo, pyridinium viologens, and quinone-based species. Additional responsive materials may be non-toxic phosphorous pigmentation, or any alternative oxygen sensitive reactive dyes or any dyes that change color when exposed to oxygen, extreme heat, or excessive pressure, compression or tension. The responsive, damage indicating material may comprise more than one type of reactive dye. There will be associative processes to prepare the oxygen sensitive reactive dyes to reduce it to a colorless form. The printer may be of conventional construction and operation and sprays dye onto the packaging. The manufacturing information is provided by a processor (not shown), the operation of which is not germane to this invention, and which also controls printing by the sealing unit.
  • In step 520, another layer, which may also have damage indicating material applied thereto, is sealed or otherwise attached to the layer formed in step 510, e.g., to thereby form a pocket.
  • In step 530, a condom is inserted into the condom package or pocket. The condom may optionally be pre-wrapped in any suitable type of wrapper prior to insertion into the pocket. A company logo and/or universal symbols may be printed on one or more of the layers of packaging.
  • In step 540, a sealing unit seals the package layers together around each condom 120 and dispenses the condoms either individually or in strips.
  • In step 550, the sealed condom package is exposed to electromagnetic radiation, such as ultraviolet radiation or any other radiation of suitable wavelength, e.g., to render the damage indicating material substantially colorless.
  • In step 560, the chemical compound is exposed to oxygen to change the color of the damage indicating material by oxidation or another type of chemical reaction that changes the reactive dye from colorless to colored or from one color to another upon tampering, extreme heat, excessive pressure, compression, tension or any other breach of the condom wrapper such as a tear, pin-prick, or intentionally opening condom packaging. Printing between the layers of packaging prevents the dye from coming into contact with the condom. Is thus not possible for a user to experience any reaction due to contact with the dye.
  • FIGS. 6 and 7 are partially schematic side sectional views illustrating various condom packaging layers in accordance with embodiments of the present invention. In FIG. 6, an outer layer 610 is provided with a layer of damage indicating material 615 applied thereto. An inner condom wrapper layer 630 is located adjacent to the outer layer 610 and damage indicating material 615. In certain embodiments, the inner wrapper layer 630 may not be adhered to the layer of damage indicating material 615, as shown by the gap 640 in FIG. 6. Although the gap 640 is shown as a physical spacing between the layers 630 and 615 in FIG. 6, it should be recognized that the gap may be closed such that the layers 630 and 615 contact each other. For example, when the space between the outer layer 610 and inner wrapper layer 630 is evacuated, the layer of damage indicating material 615 would typically contact the underlying inner wrapper layer 630. Alternatively, when the space between the outer layer 610 and inner wrapper layer 630 is filled with an inert or non-reactive gas, the pressure of the gas may result in the formation of a physical gap 640, as shown in FIG. 6.
  • The embodiment shown in FIG. 7 is similar to the embodiment of FIG. 6, except the layer of damage indicating material 615 is applied to the outer surface of the inner wrapper layer 630 rather than the inner surface of the outer layer 610.
  • In accordance with embodiments of the present invention, the various inner condom wrapper layers and outer layers may be made of any suitable materials such as polymeric films, foils, paper and the like. Some examples of polymeric layers include cellulosic materials, vinyl polymers such as polyvinyl alcohol and polyacrylates, polyolefins such as polyethylene, polyethylene terephthalate (PET), ethylene vinyl acetate copolymers, polyethylene, nylon (polyamide) and the like. The inner wrapper layers and outer layers may be made of the same or different materials. In certain embodiments, the inner wrapper layers may comprise foil coated with any of the aforementioned polymers, or such polymers alone. In certain embodiments, the outer layers may comprise polyethylene or the like, which may optionally be coextruded with nylon or the like.
  • In an embodiment of the invention, a condom or other product is disposed in an inner wrapper, an outer wrapper surrounds the inner wrapper, and a layer of damage indicating material is applied to the inner surface of the outer wrapper. Alternatively, as described above, the outer surface of the inner wrapper may have the damage indicating material applied thereto. In both of these embodiments, the space between the inner and outer wrappers may be evacuated by any suitable type of vacuum source in order to remove gasses including oxygen from the space between the wrappers. In this embodiment, when the outer wrapper is punctured, torn or otherwise breached, air will fill the previously evacuated space between the inner and outer wrappers, thereby coming into contact with the relatively large surface areas of the wrappers, i.e., the outer surface of the inner wrapper will be exposed to air and the inner surface of the outer wrapper will be exposed to air. The presence of the damage indicating material on the inner surface of the outer wrapper and/or on the outer surface of the inner wrapper will thereby provide an indication that the outer wrapper has been punctured, torn or otherwise breached and that air has entered the space between the wrappers. As an alternative to evacuating the space between the inner and outer wrappers, the inner space may be at least partially filled with an inert or non-reactive gas such as nitrogen or the like that does not cause the damage indicating material to react and change colors.
  • In accordance with an embodiment of the present invention, dual-wrapper arrangements as described above may be made by providing a pre-packaged condom or other product in the inner wrapper, followed by applying the outer wrapper around the inner wrapper. For example, the outer wrapper may be provided as a pre-formed pocket in which the inner wrapper containing the product is inserted, followed by sealing of the open end of the outer wrapper. As discussed above, before, during or after the sealing operation, the space between the inner and outer wrappers may be evacuated and/or filled with a non-reactive gas. As another example, separate sheets of outer wrapper material may be placed on opposite sides of the inner wrapper containing the product, following by sealing of the peripheral edges of the outer wrapper layers together to thereby seal the inner wrapper and product within the outer wrapper. Again, the space between the inner and outer wrappers may be evacuated and/or filled with a non-reactive gas during the sealing operation. Such operations, in which the product is first sealed in the inner wrapper followed by sealing an outer wrapper around the inner wrapper, may be conducted contemporaneously with each other, e.g., the inner and outer wrappers may be applied in the same manufacturing operation. Alternatively, pre-packaged products may be modified by applying the outer wrapper at a different time or location, e.g., at a different facility from the original product manufacturing location.
  • In accordance with another embodiment of the present invention, a single product wrapper is provided with multiple laminated layers in which at least one of the layers contains the damage indicating material. For example, a layer of damage indicating material may be sandwiched between inner and outer polymeric layers to provide a composite wrapper structure with damage indicating capabilities. As another example, a layer of damage indicating material may be applied on the inner surface of the single product wrapper. In this embodiment, the damage indicating material layer would be exposed to the product, and the damage indicating material must be non-reactive with the material of the product or any other liquids or gasses contained within the wrapper, and the damage indicating layer must not damage the product or vice versa.
  • The damage indicating material may comprise an absorption-based species that produces a visible color change caused by chromogenic chemistry that involves oxidation by molecular oxygen. Examples include methylene blue, resorufin, resazurin, thiazine, thionines, oxazine, azine, triphenylmethane, indophenol, indigo, thioindigo, pyridinium viologen, and quinone-based species. The damage indicating material may also comprise luminescence-based species such as polycyclic aromatic hydrocarbons, polypyridyl complexes, metalloporphyrins, including platinum and palladium complexes, cyclometallated complexes, and other luminescent metal complexes such as lead, aluminum, copper, gold, europium, terbium, molybdenum, and the like. Other damage indicating material species include fullerenes, fluorescent polymers, and modified polymeric materials containing absorption-based or luminescence-based species described above. Additional responsive materials may be non-toxic phosphorous pigmentation, or any alternative oxygen sensitive reactive dyes or any dyes that change color when exposed to oxygen, extreme heat, or excessive pressure, compression or tension.
  • The reactive/responsive species can be incorporated into a variety of formulations including inks, gels, plastics, composites and the like. Ink formulations include resin/binder variations such as gelatin, cellulosics such as hydroxyethylcellulose (HEC), ethyl cellulose, cellulose acetate, polyvinylalcohol (PVA), polyvinylpyrolidone (PVP), polyamides, polyurethanes, polyethylene oxide (PEO), poly acrylates such as polymethyl methacrylate (PMMA), polymethacrylate, and polystyrene or modified polystyrenes. The ink formulations may include inks typically used on plastic films and vacuum packaging films, or for pad printing, flexo printing, gravure printing, dot matrix style printing, steganography printing, and the like. Semiconductor variations include oxides of titanium, tin, tungsten, zinc and/or mixtures thereof. Semiconductor size variations include submicron diameter, sub 50 nm diameter, and sub 10 nm diameter. Sacrificial electron donor variations may be a mild reducing agent, amine such as sodium salt of ethylenediaminetetraacetic acid (NaEDTA) or triethanolamine (TEOA), saccharide such as glucose or fructose, antioxidant such as ascorbic acid or citric acid, or other easily oxidizable species such as glycerin or oxidizable polymer such as polyvinylalcohol (PVA). Additive variations include solubility modifiers such as surfactants, permeability modifiers such as silicones, and modifiers for oxygen transmissibility rate (OTR) or water vapor transmissibility rate (WVTR). Examples of additives include moisture absorbers, oxygen scavengers, microwave susceptors and antimicrobials.
  • In certain embodiments, anti-counterfeiting taggant materials may be added to the formulations in order to authenticate the product in order to protect against counterfeiting. Known types of taggants may be added to the damage indicating material. For example, taggant particles or compositions may be added to coatings, inks and adhesives, or embedded in packaging layers and/or labels. Types of anti-counterfeiting taggant materials include infrared (IR) responsive particles and inks, ultraviolet (UV) responsive particles and inks, secure pigments, metachromic materials, color-shift materials, thermochromic materials, and the like. A non-limiting example of commercially available taggants that may be added to, or used in association with, the damage indicating materials of the present invention is a particulate taggant material sold under the designation Microtaggant by Microtrace, LLC. Other types of commercially available taggant materials include SunGuard inks sold by Sun Chemical Corporation. When taggant particles or compositions are added to the present damage indicating coatings, they may typically be present in amounts ranging from a minimal detectable trace amount up to 5 or 10 weight percent of the coating, or more. For example, taggants may comprise from 0.001 to 5 weight percent, or from 0.01 to 2 weight percent, or from 0.1 to 1 weight percent of the material.
  • Other embodiments of substrate types include glass, plastic, organic composites (binder such as cellulose, polymers, etc.), inorganic composites (binder such a zeolite, silica gel, etc.), and nanocomposites. Other embodiments of formulations include multi-layer plastic films, filled reinforced plastic composites, and filled non-reinforcing plastic composites.
  • The damage indicating material may be printed or applied to a packaging substrate by any suitable means such as spraying, screen printing, brushing, immersion, ink jet printing, or the like. Various printing variations may be used for the damage indicating inks, such as variable coating thicknesses, and variable coating line widths. A micro dot or dot matrix style to increase surface area of ink within overall mark is illustrated in FIG. 12. A cross hatch style to increase surface area of ink within overall mark is illustrated in FIG. 13.
  • The packaging in its completed form may have a company logo displayed clear on one side and a clear icon of a trashcan on the reverse side. If opened for intended use or accidentally or intentionally pricked exposing the product inside, exposed to extreme heat, or excessive compression or tension, the coloring of the packaging will change, highlighting the company logo with universal “NO” symbols emblazoned over it, including, but not limited to the symbols for “Do not Enter”, “Prohibited”, an “X”, a circle, square, triangle with a backslash or line going through it, horizontally, vertically, or diagonally, a stop sign, a hand, trash can or customized symbol. On the reverse side a trash can icon or alternative customized symbol(s) will also color change indicating that the packaging and the product contained within should be thrown away. In certain embodiments, anti-counterfeiting indicia may be printed or otherwise applied to the packaging and/or labels applied to the packaging.
  • The disclosed embodiments are illustrative, not restrictive. While specific configurations including a packaged condom have been described, it is understood that the present invention can be applied to a wide variety of other packaging for other types of products including paper, foils, or plastics, as well as any combination thereof, such as foil-lined paper, plastic-lined paper or a wax-lined paper. The package may take a variety of forms such as rectangular, oval, etc., or can be male or female condom packaging, or packaging for other types of products. The package may be provided with a separation structure, such as an edge tear area, a zipper-locked edge area, or an openable, adhesively sealed edge area. There are many alternative ways of implementing the invention. Alternative embodiments include transparent or translucent plastic lids, transparent or translucent plastic containers. Plastics can be LDPE, HDPE, PP, or a combination of plastics including, but not limited to polycarbonates, or acrylics.
  • Package style embodiments include vacuum-sealed overwrap, vacuum-sealed overwrap with interior printed surface, vacuum-sealed overwrap with printed coupon between item and interior overwrap surface, vacuum-sealed overwrap containing multi-layer plastic with oxygen-indicating ink added as an internal layer, and vacuum-sealed overwrap containing multi-layer plastic with oxygen-indicating ink compounded into plastic material comprising at least one layer of the multi-layer film.
  • The following examples are intended to illustrate various aspects of the present invention, and are not intended to limit the scope of the invention.
  • Example 1
  • A damage indicating material was made as follows. Ten grams of 5% aqueous solution of hydroxyethylcellulose (HEC) and 2.5 grams of 5% aqueous dispersion of titanium dioxide (TiO2) were added to a 20 mL amber glass scintillation vial. The mixture was sonicated for approximately 30 minutes in a warm ultrasonic bath. After dispersing the TiO2, 0.5 grams of 5% aqueous solution of methylene blue (MB) was added to the mixture. The mixture was sonicated or magnetically stirred for 10-15 minutes to disperse the MB in the aqueous mixture. After dispersing the MB into the mixture, 0.15 g oftriethanolamine (TEOA) were added using a plastic or glass pipet. The final formulation was sonicated for approximately 30 minutes in a warm ultrasonic bath prior to substrate application.
  • The formulation was applied as a thin layer of glass or plastic film substrate and was allowed to dry. Standard laboratory glass microscope slides and 3 mil thick co-extruded polyethylene-nylon vacuum packaging film were used as substrates for coating. The plastic film was also used as an overwrap to seal the coated glass slides or plastic film prior to activation and deactivation. The formulation was typically applied by painting a thin film on the substrate with a paint brush. Uniform film casting can also be accomplished using a spin coater or K bar techniques. The coated substrates were allowed to dry within a dark oven set at 50° C. for 16 hours. The resultant blue layer had a dry-film thickness of approximately 2 mils or less with variations in thickness dependent on the exact formulation. The dried, blue films of damage indicating material were vacuum sealed within a plastic film overwrap. Following evacuation and thermal sealing, the material was “activated” under a UV lamp to convert the blue MB form to a white leuco MB form. Upon such UV exposure, the layer changed from substantially blue to off-white or light gray. After activation, the layer was exposed to air by puncturing or cutting open the vacuum overwrap, resulting in a change back to the blue color. After the color transformation, the layer retained a significant degree of its blue color for over several weeks.
  • The formulations in Examples 2 through 8 used commercial ink formulations for flexo and gravure printing by Siegwerks (Ink 4 and Ink 6). Ink 6 was also modified for this work to give Ink 6A with no water, ink 6B with no water or titanium dioxide, ink 6C with no water and nano titanium oxide and ink 6D with no water and additives to increase oxygen permeability. Thus, the six different starting ink formulations are Ink 4, 6, 6A, 6B, 6C and 6D. Modifications to the starting ink formulations yield reactive/responsive, damage indicating materials. The Reactive/responsive, damage indicating materials are labeled as Ink X-Y where X=4, 6A, 6B, 6C, 6D and Y=A through J.
  • A reactive/responsive ink formulation was made as follows. Two grams of well mixed ink formulation (Ink 4, 6A, 6B, 6C or 6D) were added to a 20 mL amber glass scintillation vial. Then 0.01-0.02 grams of the reactive/responsive species (methylene blue=MB) was weighed into the vial. Finally 0.10-0.80 grams of a sacrificial electron donor (TEOA) was weighed into the vial. A magnetic stir bar was added to the vial and the mixture was stirred and/or ultrasonicated until the dye was well dissolved or dispersed (half hour to 24 hours).
  • Prior to printing, the substrate was dried to remove any residual moisture. The substrate was a 75 micron thick, 2 layer co-extruded film composed of nylon and polyethylene. A small amount of the reactive/responsive ink formulation was applied to the dried substrate. A K-Bar (#0, #2 or #6) was used to achieve a uniform film thickness. The ink was drawn down with the K-Bar using steady, constant pressure and speed. The printed substrate was dried in a 50 degree Celsius oven until the ink set (1 hour to 24 hours). The dried printed substrate was evacuated and heat sealed using a commercial vacuum sealer. In one package style of this embodiment, the dried printed substrate is used as a vacuum sealed overwrap around an already-packaged product such as a packaged condom.
  • The reactive/responsive ink formulation on the dried, printed and vacuum-sealed substrate was activated with UV light. The UV lamp was allowed to warm up for at least 1 hour so that the UV intensity was stable and consistent. The ink was UV activated by exposing the printed and sealed substrate at a set distance (3 inches) and intensity (˜10 mW/cm2 with 1 hour warm up) to achieve a stable color change. The MB changes from blue to the colorless leuco form. After activation, the layer was exposed to air by puncturing or cutting open the vacuum-sealed overwrap. Color change was monitored over the course of approximately 20 minutes. The color started to change with the first minute after exposure.
  • Example 2
  • Reactive/responsive, damage indicating materials were made using Ink 6 with methylene blue (MB) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 1. Quantities are in grams. The damage indicating material was made as follows. Two grams of well mixed Ink 6 were added to a 20 mL amber glass scintillation vial. Then 0.01-0.02 grams of the reactive/responsive species (methylene blue=MB) was weighed into the vial. Finally 0.10-0.80 grams of a sacrificial electron donor (TEOA) was weighed into the vial. A magnetic stir bar was added to the vial and the mixture was stirred and/or ultrasonicated until the dye was well dissolved or dispersed (half hour to 24 hours).
  • Prior to printing, the substrate was dried to remove any residual moisture. The substrate was a 75 micron thick, 2 layer co-extruded film composed of nylon and polyethylene. A small amount of the reactive/responsive ink formulation was applied to the dried substrate. A K-Bar (#0, #2 or #6) was used to achieve a uniform film thickness. The ink was drawn down with the K-Bar using steady, constant pressure and speed. The printed substrate was dried in a 50 degree Celsius oven until the ink set (1 hour to 24 hours). The dried printed substrate was evacuated and heat sealed using a commercial vacuum sealer. In one package style of this embodiment, the dried printed substrate is used as a vacuum sealed overwrap around an already-packaged product such as a packaged condom.
  • The damage indicating material was activated on the dried, printed and vacuum-sealed substrate with UV light. The UV lamp was allowed to warm up for at least 1 hour so that the UV intensity was stable and consistent. The ink was UV activated by exposing the printed and sealed substrate at a set distance (3 inches) and intensity (˜10 mW/cm2 with 1 hour warm up) to achieve a stable color change. The MB changes from blue to the colorless leuco form. After activation, the layer was exposed to air by puncturing or cutting open the vacuum-sealed overwrap. Color change was monitored over the course of approximately 20 minutes. The color started to change with the first minute after exposure.
  • TABLE 1
    moles
    SED/
    moles moles
    SED/ MB
    Ink moles moles per
    Formulation 6 MB moles MB TEOA TEOA MB g ink
    A
    2 0.1 0.0002675 0 0 0 0
    B 2 0.1 0.0002675 0.1 0.00067 2.5 1.3
    C 2 0.02 0.0000535 0.2 0.001341 25.1 12.5
    D 2 0.02 0.0000535 0.4 0.002681 50.1 25.1
    H 2 0.01 0.0000267 0.2 0.001341 50.1 25.1
    I 2 0.01 0.0000267 0.4 0.002681 100.2 50.1
    J 2 0.01 0.0000267 0.8 0.005362 200.5 100.2
  • Example 3
  • Reactive/responsive, damage indicating materials were made using Ink 6 with methylene blue (MB) as the reactive/responsive species and glycerol as the sacrificial electron donor as set forth in Table 2. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • TABLE 2
    moles
    SED/
    moles moles
    SED/ MB
    Ink moles moles per
    Formulation 6 MB moles MB glycerol glycerol MB g ink
    E
    1 0.1 0.0002675 0.062 0.000673 2.5 2.5
    F 1 0.01 0.0000267 0.062 0.000673 25.2 25.2
    G 1 0.01 0.0000267 0.124 0.001347 50.3 50.3
  • Example 4
  • Reactive/responsive, damage indicating materials were made using Ink 6 with resorufin (RR) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 3. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • TABLE 3
    moles
    moles SED/
    SED/ moles
    Ink moles moles RR per
    Formulation 6 RR moles RR TEOA TEOA RR g ink
    H
    2 0.006 0.0000267 0.2 0.001341 50.1 25.1
    H2 2 0.011 0.0000535 0.2 0.001341 25.1 12.5
    I 2 0.006 0.0000267 0.4 0.002681 100.2 50.1
  • Example 5
  • Reactive/responsive, damage indicating materials were made using Ink 4 with resorufin (RR) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 4. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • TABLE 4
    moles
    moles SED/
    SED/ moles
    Ink moles moles RR per
    Formulation 4 RR moles RR TEOA TEOA RR g ink
    H
    2 0.006 0.0000267 0.2 0.001341 50.1 25.1
    H2 2 0.766 0.0000535 0.2 0.001341 25.1 12.5
    I 2 0.006 0.0000267 0.4 0.002681 100.2 50.1
  • Example 6
  • Reactive/responsive, damage indicating materials were made using Ink 6A, 6C and 6D with methylene blue (MB) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 5. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • TABLE 5
    moles
    SED/
    moles moles
    SED/ MB
    moles moles per
    Formulation MB moles MB TEOA TEOA MB g ink
    Ink
    6A
    H
    2 0.01 0.0000267 0.2 0.001341 50.1 25.1
    I 2 0.01 0.0000267 0.4 0.002681 100.2 50.1
    Ink
    6C
    H
    2 0.01 0.0000267 0.2 0.001341 50.1 25.1
    I 2 0.01 0.0000267 0.4 0.002681 100.2 50.1
    Ink
    6D
    H
    2 0.01 0.0000267 0.2 0.001341 50.1 25.1
    I 2 0.01 0.0000267 0.4 0.002681 100.2 50.1
  • Example 7
  • Reactive/responsive, damage indicating materials were made using Ink 6A and 6D with resorufin (RR) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 6. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • TABLE 6
    moles
    moles SED/
    SED/ moles
    moles moles RR per
    Formulation RR moles RR TEOA TEOA RR g ink
    Ink
    6A
    H
    2 0.006 0.0000267 0.2 0.001341 50.1 25.1
    Ink
    6D
    H
    2 0.006 0.0000267 0.2 0.001341 50.1 25.1
  • Example 8
  • Reactive/responsive, damage indicating materials were made using Ink 6C with resorufin (RR) as the reactive/responsive species and triethanolamine (TEOA) as the sacrificial electron donor as set forth in Table 7. Response was modulated with dilute acetic acid and dilute ammonium hydroxide. Quantities are in grams. The damage indicating material was made as described in Example 2.
  • TABLE 7
    moles
    moles SED/
    SED/ moles
    Ink moles moles RR per
    Formulation 6C RR moles RR TEOA TEOA RR g ink
    H
    2 0.006 0.0000267 0.2 0.001341 50.1 25.1
  • FIGS. 8-11 illustrate results from the examples above.
  • FIG. 8: UV activation of Ink 6C with MB and H/I modifications.
  • FIG. 9: Air exposure of UV activated Ink 6C with MB and H/I modifications
  • FIG. 10: UV activation and air exposure (after 2 mins) of Ink 4 with RR and H/I modifications
  • FIG. 11: UV activation and air exposure (after 15 mins) of Ink 4 with RR and H/I modifications
  • Whereas particular embodiments of this invention have been described above for purposes of illustration, it will be evident to those skilled in the art that numerous variations of the details of the present invention may be made without departing from the invention as defined in the appended claims.

Claims (20)

What is claimed is:
1. A damage indicating package comprising a first packaging layer and a second packaging layer attached to the first packaging layer thereby forming a product pocket having an interior volume between the first packaging layer and the second packaging layer structured and arranged to receive a product, wherein the first packaging layer comprises:
an inner wrapper layer comprising a film having an interior surface exposed to the interior volume of the product pocket;
an outer layer comprising a film at least partially covering the inner wrapper layer and the interior volume of the product pocket and forming a damage indicating material pocket between an exterior surface of the inner wrapper layer and an interior surface of the outer layer, wherein the damage indicating material pocket is evacuated or at least partially filled with an inert gas;
a damage indicating material in the damage indicating material pocket between the exterior surface of the inner wrapper layer and the interior surface of the outer wrapper layer; and
a taggant material attached to the first packaging layer.
2. The damage indicating package of claim 1, wherein the product is a condom, a food product or a pharmaceutical product.
3. The damage indicating package of claim 1, wherein the damage indicating material changes color when exposed to oxygen and comprises methylene blue.
4. The damage indicating package of claim 1, wherein the damage indicating material or taggant material is applied to the interior surface of the outer layer.
5. The damage indicating package of claim 1, wherein the damage indicating material or taggant material is applied to the exterior surface of the inner wrapper layer.
6. The damage indicating package of claim 1, wherein the outer layer is coextensive with the inner wrapper layer.
7. The damage indicating package of claim 1, wherein the damage indicating material is applied to the inner wrapper layer or the outer layer in the form of indicia.
8. The damage indicating package of claim 1, wherein the taggant material is provided in a coating, ink or adhesive.
9. The damage indicating package of claim 1, wherein the taggant material is in the form of particles.
10. The damage indicating package of claim 1, wherein the taggant material is embedded in the first packaging layer.
11. The damage indicating package of claim 1, wherein the taggant material comprises infrared responsive particles, infrared responsive ink, ultraviolet responsive particles, ultraviolet responsive ink, pigment, metachromic material, color-shifting material, thermochanging material or a combination thereof.
12. The damage indicating package of claim 1, wherein the second packaging layer comprises:
an inner wrapper layer comprising a film having an interior surface exposed to the interior volume of the product pocket;
an outer layer comprising a film at least partially covering the inner wrapper layer and the interior volume of the product pocket and forming a damage indicating material pocket between an exterior surface of the inner wrapper layer and an interior surface of the outer layer, wherein the damage indicating material pocket is evacuated or at least partially filled with an inert gas;
a damage indicating material in the damage indicating material pocket between the exterior surface of the inner wrapper layer and the interior surface of the outer wrapper layer; and
a taggant material attached to the first packaging layer.
13. A packaged product comprising a first packaging layer and a second packaging layer attached to the first packaging layer thereby forming a product pocket having an interior volume between the first packaging layer and the second packaging layer containing the product with the packaged product contained within the product pocket, wherein the first packaging layer comprises:
an inner wrapper layer comprising a film having an interior surface exposed to the interior volume of the product pocket;
an outer layer comprising a film at least partially covering the inner wrapper layer and the interior volume of the product pocket and forming a damage indicating material pocket between an exterior surface of the inner wrapper layer and an interior surface of the outer layer, wherein the damage indicating material pocket is evacuated or at least partially filled with an inert gas;
a damage indicating material in the damage indicating material pocket between the exterior surface of the inner wrapper layer and the interior surface of the outer wrapper layer and a taggant material between the inner wrapper layer and the outer wrapper layer; and
a taggant material attached to the first packaging layer.
14. The packaged product of claim 13, wherein the product is a condom, a food product or a pharmaceutical product.
15. The packaged product of claim 13, wherein the damage indicating material or taggant material is applied to either the interior surface of the outer layer or to the exterior surface of the inner wrapper layer.
16. The packaged product of claim 13, wherein the taggant material is provided in a coating, ink or adhesive.
17. The packaged product of claim 13, wherein the taggant material is in the form of particles.
18. The packaged product of claim 13, wherein the taggant material is embedded in the first packaging layer.
19. The packaged product of claim 13, wherein the taggant material comprises infrared responsive particles, infrared responsive ink, ultraviolet responsive particles, ultraviolet responsive ink, pigment, metachromic material, color-shifting material, thermochanging material or a combination thereof.
20. The packaged product of claim 13, wherein the second packaging layer comprises:
an inner wrapper layer comprising a film having an interior surface exposed to the interior volume of the product pocket;
an outer layer comprising a film at least partially covering the inner wrapper layer and the interior volume of the product pocket and forming a damage indicating material pocket between an exterior surface of the inner wrapper layer and an interior surface of the outer layer, wherein the damage indicating material pocket is evacuated or at least partially filled with an inert gas;
a damage indicating material in the damage indicating material pocket between the exterior surface of the inner wrapper layer and the interior surface of the outer wrapper layer; and
a taggant material attached to the first packaging layer.
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US201462078819P 2014-11-12 2014-11-12
US14/939,989 US10029841B2 (en) 2013-05-07 2015-11-12 Damage indicating packaging
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Families Citing this family (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11542080B2 (en) * 2013-05-07 2023-01-03 BBB Holding Company Track and trace packaging and systems
CA3047134A1 (en) * 2016-12-30 2018-07-05 Nuscale Power, Llc Combined shipping protection and impingement detection wrap
JP6943054B2 (en) * 2017-07-24 2021-09-29 大日本印刷株式会社 Liquid storage bags and articles
US10273054B2 (en) * 2017-08-18 2019-04-30 Sky 2000 Int'l Co., Ltd. Color-changing container with two-dimensional and/or three-dimensional pattern
CN107944452B (en) * 2017-12-12 2021-07-23 信翼博达科技(深圳)有限公司 Character recognition method for circular seal
CN111819138B (en) * 2018-03-05 2022-11-01 鹤卷京彦 Packaging member and packaging body
EP3826938A4 (en) * 2018-07-23 2022-04-06 Baby Blue Brand Corp. Track and trace packaging and systems
US10918514B2 (en) 2018-08-12 2021-02-16 Eric Vélez Justiniano Tamper evident packaging
CN219524870U (en) * 2019-09-19 2023-08-15 维亚切拉夫·奥列戈维奇·布比伦科 Independent package of condom
US20220032288A1 (en) 2020-07-29 2022-02-03 Smart Ink Technology Corp. Viral and biochemical early detection test kits
USD999067S1 (en) 2021-03-10 2023-09-19 Church & Dwight Co., Inc. Peelable package
WO2023049426A1 (en) * 2021-09-27 2023-03-30 Becton, Dickinson And Company System and method for vascular access management
WO2023172790A1 (en) * 2022-03-10 2023-09-14 Sterintact LLC Surgical instrument wrap utilizing diffusible fluorescent layer

Citations (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4295566A (en) * 1980-05-07 1981-10-20 Becton, Dickinson And Company Air-evacuated package with vacuum integrity indicator means
US4390452A (en) * 1979-08-20 1983-06-28 Minnesota Mining & Manufacturing Company Microparticles with visual identifying means
US4760919A (en) * 1987-07-30 1988-08-02 Minnesota Mining And Manufacturing Company Tamper-indicating package
US4986429A (en) * 1989-06-12 1991-01-22 Singleton Jr Robert Color indicating tamper-proof seal
US5137208A (en) * 1990-06-29 1992-08-11 Tsl Incorporated Tamper evident package
US5581978A (en) * 1992-02-12 1996-12-10 Continental White Cap, Inc. Tamper evident closure
US5617812A (en) * 1993-05-18 1997-04-08 Sealed Air (Nz) Limited Tamper evident system
US6149203A (en) * 1995-07-26 2000-11-21 Lifescan, Inc. Tamper-evident closure seal
US6309690B1 (en) * 1999-04-01 2001-10-30 Microtrace, Inc. System for retrospective identification and method of marking articles for retrospective identification
US20040112785A1 (en) * 2002-12-12 2004-06-17 Joseph Wittemer Packaging bag
US20050116465A1 (en) * 2003-10-07 2005-06-02 Muscat Robert G. Packaging with embedded security measures
US20050189255A1 (en) * 2004-02-27 2005-09-01 Safian John W. Plastic packaging having embedded micro-particle taggants
US20050279236A1 (en) * 2004-06-18 2005-12-22 Mark Jennings Method of anti-counterfeit, printing, fabricating and the production of both security & non-security items including items that show the passing of time by sustained reaction
US20060014045A1 (en) * 2004-07-19 2006-01-19 Einhorn Richard A Security taggants in adhesive plastic film laminate for pharmaceutical packaging
US20070085335A1 (en) * 2005-09-26 2007-04-19 Lampe Scott A Method of incorporating taggants into a packaging blank
US20100147724A1 (en) * 2008-12-12 2010-06-17 Ujjaini Mitra-Shah Tamper indicator for reclosable packages
US20120165336A1 (en) * 2010-12-22 2012-06-28 Purdue Pharma L.P. Color Change Time Indicator for Packaging System
US20120306189A1 (en) * 2010-02-19 2012-12-06 Innovia Films Sarl Article tracking method
US20150255009A1 (en) * 2014-03-04 2015-09-10 Avery Dennison Corporation Tamper Evident Labels
US20160180747A1 (en) * 2014-12-23 2016-06-23 Upm Raflatac Oy Sealing Label

Family Cites Families (67)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1818726A (en) * 1928-12-11 1931-08-11 Falulah Paper Company Paper
US2998306A (en) * 1960-04-15 1961-08-29 Aseptic Thermo Indicator Compa Telltale for ethylene oxide sterilization
US3221428A (en) * 1963-03-19 1965-12-07 Robert M Fischler Transparent encasement for documents and the like
US3633216A (en) * 1970-12-11 1972-01-11 George J Schonholtz Surgical glove
US3899295A (en) * 1973-11-23 1975-08-12 Bio Medical Sciences Inc Integrity indicator
US4516679A (en) * 1982-11-04 1985-05-14 Simpson Carolyn N Tamper-proof wrap
US4526752A (en) * 1982-12-16 1985-07-02 Daniel Perlman Oxygen indicator for packaging
US4905851A (en) * 1983-02-18 1990-03-06 Tri-Tech Systems International, Inc. Tamper evident closures and packages with color changing means and separable portions of the closures and method of forming the same
US4505399A (en) * 1984-06-21 1985-03-19 Weiner Robert C Tamper-indicating device and method
US4919966A (en) * 1987-07-17 1990-04-24 Shlenker Robin R T Covering such as a glove, condom or sheath for inhibiting the spread of contagious diseases and methods of making and using the same
US5679399A (en) * 1987-07-17 1997-10-21 Bio Barrier, Inc. Method of forming a membrane, especially a latex or polymer membrane, including multiple discrete layers
US5549924A (en) * 1987-07-17 1996-08-27 Robin Renee Thill Shlenker Method of forming a membrane, especially a latex or polymer membrane, including a deactivating barrier and indicating layer
FR2619503A1 (en) * 1987-08-20 1989-02-24 Hutchinson APPLICATION OF MICROCAPSULES TO THE MANUFACTURE OF A PROPHYLACTIC DEVICE IN ELASTOMERIC MATERIAL, SUCH AS A PRESERVATIVE OR ANALOGUE, AND METHOD OF MANUFACTURING THE SAME
US4843014A (en) * 1987-12-02 1989-06-27 Cukier Daniel S Apparel having a breach indicator
US4910803A (en) * 1987-12-02 1990-03-27 Cukier Daniel S Apparel having a breach indicator
US4877143A (en) * 1988-06-16 1989-10-31 Travisano Frank P Tamper evident indicating means
US5524294A (en) * 1988-09-19 1996-06-11 Richardson; Margaret P. Tamper- or damage-indicating members
US6175962B1 (en) * 1988-10-17 2001-01-23 Gary Karlin Michelson Surgical glove
EP0375602B1 (en) * 1988-12-23 1994-05-18 Arysearch Arylan Ag Imprinted products incorporating a latent deferred image, applicable against counterfeiting or for other purposes, as tamperproof active seals and the like, and the process for obtaining said products
US4931327A (en) * 1989-06-14 1990-06-05 Mobil Oil Corporation White opaque opp film for tamper evident package
GB8922049D0 (en) * 1989-09-29 1989-11-15 Medical Instrumentation Consul Carbon dioxide monitor
US5719828A (en) * 1990-01-04 1998-02-17 Temtec, Inc. Patterned indicators
US5005695A (en) * 1990-03-15 1991-04-09 Tennefos David A Condom caddy package
US5062928A (en) * 1990-04-17 1991-11-05 Alcan International Limited Process for producing color change devices incorporating latent indicia and the resulting devices
US5650329A (en) * 1990-08-23 1997-07-22 Awc. Inc. Acid indicators
US5234732A (en) * 1991-03-18 1993-08-10 Philip Morris Inc. Tamper-indicating wrappers
GB9200431D0 (en) * 1992-01-09 1992-02-26 Abbey Biosystems Ltd Carbon dioxide detector
US5411034A (en) * 1994-08-12 1995-05-02 Beck; R. Bruce Air sensitive rupture indicating condom
GB9426053D0 (en) * 1994-12-19 1995-02-22 Trigon Ind Ltd A carbon dioxide sensitive material
US6048098A (en) * 1995-06-06 2000-04-11 Uniflex, Inc. Tamper-resistant envelope
US5839592A (en) * 1995-06-09 1998-11-24 Anchor Hocking Packaging Co. Plastic closure
US5620256A (en) * 1995-08-22 1997-04-15 Makrauer; George A. Tamper evident security bag
US5882116A (en) * 1996-04-25 1999-03-16 Backus; Alan Tamper indication device
GB2339784A (en) * 1998-07-21 2000-02-09 Courtaulds Chemicals Plastics film; identifying goods
US6767509B1 (en) * 1999-06-16 2004-07-27 Kimberly-Clark Worldwide, Inc. Self-sterilizing packaging
US6264033B1 (en) * 1999-07-09 2001-07-24 Sealed Air Corporation Article with improved tamper evidence
GB0001060D0 (en) * 2000-01-17 2000-03-08 Scient Generics Ltd Improvements to anti-counterfeit labels
GB0121444D0 (en) * 2001-09-05 2001-10-24 Univ Strathclyde Sensor
US7294379B2 (en) * 2002-03-07 2007-11-13 Avery Dennison Corporation Color changing device for time indicating label and methods of making and using the same
US20050036716A1 (en) * 2003-08-11 2005-02-17 Ampac Plastics Llc Tamper indicating security bag
US20050258129A1 (en) * 2004-05-21 2005-11-24 Peter Model Tamper-proof closure/seal for containers, particularly wine bottles
US20060026737A1 (en) * 2004-08-07 2006-02-09 Chen Fung B Multilayered gloves having enhanced barrier protection
US6929118B1 (en) * 2004-08-24 2005-08-16 Flip Easy Inc. Prophylactic wrapper
US7350687B2 (en) * 2004-11-23 2008-04-01 Pitney Bowes Inc. Tamper resistant envelope
US7405186B2 (en) * 2005-03-25 2008-07-29 Chemsil Silicones, Inc. Lubricant compositions, condom products and methods of making same
US20060234014A1 (en) * 2005-04-14 2006-10-19 Liu Yaoqi J Patterned adhesives for tamper evident feature
US9134285B2 (en) * 2006-11-30 2015-09-15 Sensor International, Llc Apparatus with timed color change indication
US20090041083A1 (en) * 2007-08-06 2009-02-12 Mcparland Beverly Temperature sensitive, color changing pharmaceutical bottle cap
US8646451B2 (en) * 2007-11-06 2014-02-11 William Thomas Mistler Condom
US8158230B2 (en) * 2007-11-06 2012-04-17 Mitsubishi Polyester Film, Inc. Tamper evident composite film
CA2718326A1 (en) * 2008-04-04 2009-10-08 Pliant Corporation Films and methods for making tampering events evident
US20110268371A1 (en) * 2008-11-14 2011-11-03 Boaz Kristal Method for configurationally heat soldering plastic packaging and tamper evident plastic packagings
DE102009004475A1 (en) * 2009-01-13 2010-07-15 Anton Debatin GmbH Werk für werbende Verpackung security pocket
US20100278454A1 (en) * 2009-04-29 2010-11-04 Sonoco Development, Inc. Tamper-evident laminate structure
GB0910464D0 (en) * 2009-06-17 2009-07-29 Insigniapack Ltd Indicator, application thereof and related products
GB0918212D0 (en) * 2009-10-16 2009-12-02 Univ Strathclyde Intelligent pigments and plastics
LU91622B1 (en) * 2009-11-13 2011-05-16 Xavier De Waleffe Condom packaging
GB201007980D0 (en) * 2010-05-13 2010-06-30 Univ Strathclyde CO2 indicator
US20110287553A1 (en) * 2010-05-20 2011-11-24 Ansell Limited Breach or contamination indicating article having microcapsules
GB2488507B (en) * 2010-10-20 2014-06-04 Britton Decoflex Ltd Tamper indicating security bag
US20130062226A1 (en) * 2011-09-12 2013-03-14 Line One Laboratories Inc. (USA) Dispensing system
US9554968B2 (en) * 2013-03-11 2017-01-31 Sio2 Medical Products, Inc. Trilayer coated pharmaceutical packaging
US8663998B2 (en) * 2011-12-09 2014-03-04 Gregory L. Heacock Color changeable dyes for indicating exposure, methods of making and using such dyes, and apparatuses incorporating such dyes
US9626882B2 (en) * 2012-10-26 2017-04-18 Doug Dodrill Color-changing sealant
EP2969566A4 (en) * 2013-03-12 2016-11-23 Ansell Ltd Breach or contamination indicating article
US20140262898A1 (en) * 2013-03-15 2014-09-18 Owens-Brockway Glass Container Inc. Package or Product Having A Use Indicator
US9650194B2 (en) * 2014-12-02 2017-05-16 Hfm Packaging, Ltd. Resealable label flap with tamper evident structure

Patent Citations (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4390452A (en) * 1979-08-20 1983-06-28 Minnesota Mining & Manufacturing Company Microparticles with visual identifying means
US4295566A (en) * 1980-05-07 1981-10-20 Becton, Dickinson And Company Air-evacuated package with vacuum integrity indicator means
US4760919A (en) * 1987-07-30 1988-08-02 Minnesota Mining And Manufacturing Company Tamper-indicating package
US4986429A (en) * 1989-06-12 1991-01-22 Singleton Jr Robert Color indicating tamper-proof seal
US5137208A (en) * 1990-06-29 1992-08-11 Tsl Incorporated Tamper evident package
US5581978A (en) * 1992-02-12 1996-12-10 Continental White Cap, Inc. Tamper evident closure
US5617812A (en) * 1993-05-18 1997-04-08 Sealed Air (Nz) Limited Tamper evident system
US6149203A (en) * 1995-07-26 2000-11-21 Lifescan, Inc. Tamper-evident closure seal
US6309690B1 (en) * 1999-04-01 2001-10-30 Microtrace, Inc. System for retrospective identification and method of marking articles for retrospective identification
US20040112785A1 (en) * 2002-12-12 2004-06-17 Joseph Wittemer Packaging bag
US20050116465A1 (en) * 2003-10-07 2005-06-02 Muscat Robert G. Packaging with embedded security measures
US20050189255A1 (en) * 2004-02-27 2005-09-01 Safian John W. Plastic packaging having embedded micro-particle taggants
US20050279236A1 (en) * 2004-06-18 2005-12-22 Mark Jennings Method of anti-counterfeit, printing, fabricating and the production of both security & non-security items including items that show the passing of time by sustained reaction
US20060014045A1 (en) * 2004-07-19 2006-01-19 Einhorn Richard A Security taggants in adhesive plastic film laminate for pharmaceutical packaging
US20070085335A1 (en) * 2005-09-26 2007-04-19 Lampe Scott A Method of incorporating taggants into a packaging blank
US20100147724A1 (en) * 2008-12-12 2010-06-17 Ujjaini Mitra-Shah Tamper indicator for reclosable packages
US20120306189A1 (en) * 2010-02-19 2012-12-06 Innovia Films Sarl Article tracking method
US20120165336A1 (en) * 2010-12-22 2012-06-28 Purdue Pharma L.P. Color Change Time Indicator for Packaging System
US20150255009A1 (en) * 2014-03-04 2015-09-10 Avery Dennison Corporation Tamper Evident Labels
US20160180747A1 (en) * 2014-12-23 2016-06-23 Upm Raflatac Oy Sealing Label

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