B65D25/34

DRAWN/IRONED CAN AND COATED METAL SHEET FOR DRAWN/IRONED CANS

The disclosure relates to a drawn/ironed can having at least an inner surface coating film on a can inner surface side, the inner surface coating film containing a polyester resin and a curing agent, and a stress relaxation ratio of the inner surface coating film after 10 minutes at 1% elongation in a can bottom portion is 50% or higher under a test condition of 100° C., whereby metal exposure due to severe processing such as drawing or ironing and coating film peeling due to heat treatment after molding are effectively prevented.

Methods, apparatus, and chemical compositions for selectively coating fiber-based food containers

Methods and apparatus for vacuum forming and subsequently applying topical coatings fiber-based food containers. The slurry includes one or more of an embedded moisture barrier, vapor barrier, and oil barrier, and the topical coating comprises one or more of a vapor barrier, a moisture barrier, an oil barrier, and an oxygen barrier. For food containers having deep sidewalls, a spray coating system includes a first nozzle for applying a full cone spray pattern to the bottom surface of the container, and a second nozzle for applying a hollow cone spray pattern to the inside surfaces of the side walls.

Methods, apparatus, and chemical compositions for selectively coating fiber-based food containers

Methods and apparatus for vacuum forming and subsequently applying topical coatings fiber-based food containers. The slurry includes one or more of an embedded moisture barrier, vapor barrier, and oil barrier, and the topical coating comprises one or more of a vapor barrier, a moisture barrier, an oil barrier, and an oxygen barrier. For food containers having deep sidewalls, a spray coating system includes a first nozzle for applying a full cone spray pattern to the bottom surface of the container, and a second nozzle for applying a hollow cone spray pattern to the inside surfaces of the side walls.

LAMINATED MOISTURE RESISTANT POULTRY BOX AND PROCESS

A moisture resistant poultry box having a composite structure with a fluted paper medium, a top backing board assembly secured to one side of the fluted medium and a bottom backing board assembly secured to the other side of the fluted medium. The backing board assemblies and the fluted medium are impregnated with a hydrogenated triglyceride, and each backing board assembly has PET film glued thereto covering an outside surface to provide moisture resistant recyclable poultry box so that it has a Cobb value ranging between about 0 to about 1.

THERMOSET UNDERCOATING COMPOSITIONS COMPATIBLE WITH FREE-RADICALLY CURED OVERCOATING FOR METAL SUBSTRATES
20230193048 · 2023-06-22 · ·

A thermoset undercoating composition for a food or beverage container or other packaging container, the thermoset undercoating composition comprising a binder polymer, an adhesion promoting additive comprising an aminoplast resin having at least one reactive group having an ethylenically unsaturated double bond that is reactive under free-radical curing conditions, an optional crosslinker configured to react with the binder polymer upon thermal curing of the thermoset undercoating composition, wherein the optional crosslinker preferably does not include groups that are reactive under free-radical curing conditions, and a liquid carrier.

THERMOSET UNDERCOATING COMPOSITIONS COMPATIBLE WITH FREE-RADICALLY CURED OVERCOATING FOR METAL SUBSTRATES
20230193048 · 2023-06-22 · ·

A thermoset undercoating composition for a food or beverage container or other packaging container, the thermoset undercoating composition comprising a binder polymer, an adhesion promoting additive comprising an aminoplast resin having at least one reactive group having an ethylenically unsaturated double bond that is reactive under free-radical curing conditions, an optional crosslinker configured to react with the binder polymer upon thermal curing of the thermoset undercoating composition, wherein the optional crosslinker preferably does not include groups that are reactive under free-radical curing conditions, and a liquid carrier.

POLYESTER-RESIN-COATED SEAMLESS CAN AND METHOD FOR MANUFACTURING THE SAME

A polyester-resin-coated seamless can including a reduced diameter portion obtained by neck processing within a distance of 0% to 15% from a can body uppermost portion with respect to a total height of the can from the can body uppermost portion to a can bottom of the can. A ratio Im/Iu is 1.0 or more, where Iu (cps/μm) is calculated by dividing a maximum peak intensity in a range satisfying 15°≤2θ≤19° of an outer-surface coating in a maximum reduced diameter portion of the reduced diameter portion by a thickness of the coating at the measurement site, and Im (cps/μm) is calculated by dividing a maximum peak intensity in a range satisfying 15°≤2θ≤19° of outer-surface coating at a measurement site within a distance of 45% to 60% from the can body uppermost portion by a thickness of the outer-surface coating at the measurement site.

System and Method for Applying Aroma Releasing Material to Product Packaging
20170341818 · 2017-11-30 ·

A system for creating a microencapsulate coating composition and the method of adding the scented microencapsulate coating to product packaging. The microencapsulate coating contains scented compounds that are encapsulated to create encapsulated particles. The encapsulant can be either water soluble or hydrophobic depending upon the intended application. The encapsulated particles are mixed with a binding agent, to create a scented microencapsulate coating. The scented microencapsulate coating is applied to packaging in areas that will be touched as the packaging is manipulated. The physical contact ruptures the microencapsulate coating and releases the scented compounds contained therein.

System and Method for Applying Aroma Releasing Material to Product Packaging
20170341818 · 2017-11-30 ·

A system for creating a microencapsulate coating composition and the method of adding the scented microencapsulate coating to product packaging. The microencapsulate coating contains scented compounds that are encapsulated to create encapsulated particles. The encapsulant can be either water soluble or hydrophobic depending upon the intended application. The encapsulated particles are mixed with a binding agent, to create a scented microencapsulate coating. The scented microencapsulate coating is applied to packaging in areas that will be touched as the packaging is manipulated. The physical contact ruptures the microencapsulate coating and releases the scented compounds contained therein.

INJECTION OF SUPPLEMENTS INTO DRINKS
20170341831 · 2017-11-30 ·

Aspects and embodiments injection of supplements into drinks are described. In one embodiment, a cap includes a top of the cap having a button. A container is sealed using a sealing layer between the container and the top. A pushing element is in connection with a bottom surface of the button and further in connection with a top surface of the sealing layer. A breaking mechanism is sealed within the container along with a supplement. The breaking mechanism has breaking bars that extend from a central column that is aligned with the pushing element. When the button is depressed, the breaking mechanism breaks a bottom of the container to release at least some of the supplement.