Patent classifications
B65D75/40
ORAL POUCH PRODUCT HAVING SOFT EDGE AND METHOD OF MAKING
An oral pouch product having a soft edge includes an inner filling material enclosed inwardly of at least one seam between opposed layers of porous pouch wrapper. The at least one seam is separated from the periphery of the porous pouch wrapper by an unbonded area of the opposed layers so as to form a soft edge of the pouch wrapper.
ORAL POUCH PRODUCT HAVING SOFT EDGE AND METHOD OF MAKING
An oral pouch product having a soft edge includes an inner filling material enclosed inwardly of at least one seam between opposed layers of porous pouch wrapper. The at least one seam is separated from the periphery of the porous pouch wrapper by an unbonded area of the opposed layers so as to form a soft edge of the pouch wrapper.
PACKAGING FOR SLICES OF FOOD PRODUCTS
The invention relates to a packaging for slices of food products, comprising at least two long laminar bodies which are connected and arranged one on top of the other, each of the laminar bodies having at least one transverse folding line, the two folding lines being mutually coincident, said folding lines dividing the laminar bodies in respective folding portions on both sides of a folding line, such that in a folded condition, the folding portions are arranged one on top of the other, folded in a zigzag shape, at least one storage space between the two laminar bodies being defined in each folding portion, said storage space being used to receive at least one slice of a food product, and also at least one folding portion comprises a hermetic container.
PACKAGING FOR SLICES OF FOOD PRODUCTS
The invention relates to a packaging for slices of food products, comprising at least two long laminar bodies which are connected and arranged one on top of the other, each of the laminar bodies having at least one transverse folding line, the two folding lines being mutually coincident, said folding lines dividing the laminar bodies in respective folding portions on both sides of a folding line, such that in a folded condition, the folding portions are arranged one on top of the other, folded in a zigzag shape, at least one storage space between the two laminar bodies being defined in each folding portion, said storage space being used to receive at least one slice of a food product, and also at least one folding portion comprises a hermetic container.
Oral pouch product having soft edge and method of making
An oral pouch product having a soft edge includes an inner filling material enclosed inwardly of at least one seam between opposed layers of porous pouch wrapper. The at least one seam is separated from the periphery of the porous pouch wrapper by an unbonded area of the opposed layers so as to form a soft edge of the pouch wrapper.
Oral pouch product having soft edge and method of making
An oral pouch product having a soft edge includes an inner filling material enclosed inwardly of at least one seam between opposed layers of porous pouch wrapper. The at least one seam is separated from the periphery of the porous pouch wrapper by an unbonded area of the opposed layers so as to form a soft edge of the pouch wrapper.
Plasticizer Blend for Chlorine Stability of Water-Soluble Films
Disclosed herein are water-soluble films comprising a mixture of a water-soluble polyvinyl alcohol copolymer including an anionic monomer having a pendant carboxyl group, and a plasticizer blend comprising a first plasticizer comprising sorbitol and a secondary plasticizer selected from the group consisting of glycerol, trimethylolpropane, diglycerol, glycerol propylene oxide polymers, glycerol diacetate, 2-methyl-1,3-propanediol and a combination thereof, wherein (i) when the total plasticizer in the film is less than 12 PHR, then the plasticizer blend comprises sorbitol, glycerol, and at least one additional secondary plasticizer; (ii) when the total plasticizer in the film is at least 12 PHR and less than 20 PHR, then the plasticizer blend comprises sorbitol, glycerol, and at least one additional secondary plasticizer selected from diglycerol, trimethylolpropane and a combination thereof; and (iii) when the total plasticizer in the film is 20 PHR or greater, then sorbitol comprises at least of the total plasticizer.
Plasticizer Blend for Chlorine Stability of Water-Soluble Films
Disclosed herein are water-soluble films comprising a mixture of a water-soluble polyvinyl alcohol copolymer including an anionic monomer having a pendant carboxyl group, and a plasticizer blend comprising a first plasticizer comprising sorbitol and a secondary plasticizer selected from the group consisting of glycerol, trimethylolpropane, diglycerol, glycerol propylene oxide polymers, glycerol diacetate, 2-methyl-1,3-propanediol and a combination thereof, wherein (i) when the total plasticizer in the film is less than 12 PHR, then the plasticizer blend comprises sorbitol, glycerol, and at least one additional secondary plasticizer; (ii) when the total plasticizer in the film is at least 12 PHR and less than 20 PHR, then the plasticizer blend comprises sorbitol, glycerol, and at least one additional secondary plasticizer selected from diglycerol, trimethylolpropane and a combination thereof; and (iii) when the total plasticizer in the film is 20 PHR or greater, then sorbitol comprises at least of the total plasticizer.
MULTILAYER STRUCTURE, METHOD FOR PRODUCING SAME, PACKAGING MATERIAL AND PRODUCT INCLUDING SAME, AND PROTECTIVE SHEET FOR ELECTRONIC DEVICE
The present invention relates to a multilayer structure including a base (X) and a layer (Y) stacked on the base (X). The layer (Y) contains a reaction product (D) of an aluminum-containing compound (A) and a phosphorus compound (B), and the reaction product (D) has an average particle diameter of 5 to 70 nm.
MULTILAYER STRUCTURE, METHOD FOR PRODUCING SAME, PACKAGING MATERIAL AND PRODUCT INCLUDING SAME, AND PROTECTIVE SHEET FOR ELECTRONIC DEVICE
The present invention relates to a multilayer structure including a base (X) and a layer (Y) stacked on the base (X). The layer (Y) contains a reaction product (D) of an aluminum-containing compound (A) and a phosphorus compound (B), and the reaction product (D) has an average particle diameter of 5 to 70 nm.