IP Library Granted Patent US 11,492,575
Granted Patent B2
US 11,492,575 · App. 16/832,310 · Granted Nov 8, 2022

Water-soluble unit dose article comprising a water-soluble film comprising a water soluble polyvinyl alcohol polymer

Inventors: Luca Vitiello (Brussels, BE); Florence Catherine Courchay (Brussels, BE); Robby Renilde Francois Keuleers (Lippelo, BE); Miguel Brandt Sanz (Tervuren, BE); Regine Labeque (Neder over Heembeek, BE)
Assignee: The Procter & Gamble Company
C11D17/045B32B3/26B32B27/306B32B2307/31B32B2307/7166B32B2439/40
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Quick Facts
Patent No.
US 11,492,575
App. No.
16/832,310
Granted
Nov 8, 2022
Kind
B2
Abstract

Multicompartment water-soluble unit dose articles and methods of making them.

Claims (35)

1. A multicompartment water-soluble unit dose article comprising at least a first water-soluble film, a second water-soluble film, a third water-soluble film, and a fourth water-soluble film,

wherein the first water-soluble film, the second water-soluble film, the third water-soluble film, the fourth water-soluble film, or a mixture thereof, comprises a water-soluble polyvinyl alcohol polymer,

wherein the water-soluble polyvinyl alcohol polymer is a polyvinyl alcohol homopolymer, and wherein the polyvinyl alcohol homopolymer comprises a vinyl alcohol monomer unit and a vinyl acetate monomer unit,

wherein the water-soluble polyvinyl alcohol polymer does not comprise a polyvinyl alcohol copolymer,

wherein the polyvinyl alcohol copolymer is defined as having a distribution of vinyl alcohol monomer units, optional vinyl acetate monomer units depending on the degree of hydrolysis, and at least one other type of monomeric repeating unit,

wherein the at least one other type of monomeric repeating unit of the polyvinyl alcohol copolymer is an anionic, cationic, or nonionic monomer unit, and

wherein the multicompartment water-soluble unit dose article comprises at least one seal region in which the first water-soluble film, the second water-soluble film, the third water-soluble film and the fourth water-soluble films are sealed together, and

wherein the water-soluble films define at least two internal compartments in superposed position and the two internal compartments are separated from one another by at least two water-soluble films.

2. The water-soluble unit dose article according to claim 1 , wherein the polyvinyl alcohol polymer has an average viscosity (μ 1 ) in a range of between about 4 mPa·s and about 30 mPa·s, measured as an about 4% polyvinyl alcohol polymer solution in demineralized water at about 20° C.

3. The water-soluble unit dose article according to claim 1 , wherein the polyvinyl alcohol polymer has an average degree of hydrolysis in a range of between about 75% and about 99%.

4. The water-soluble unit dose article according to claim 1 , wherein the total amount of any polyvinyl alcohol polymer present in any individual film is between about 30% and about 95% by weight of that individual film.

5. The water-soluble unit dose article according to claim 1 , wherein the first water-soluble film, the second water-soluble film, the third water-soluble film, and the fourth water-soluble film each comprise polyvinyl alcohol polymers that are the same as one another.

6. The water-soluble unit dose article according to claim 1 , wherein the first water-soluble film and the second water-soluble film are configured to form at least one internal compartment, and

wherein the third water-soluble film and fourth water-soluble film are configured to form at least one internal compartment, and

wherein the at least one internal compartment formed by the third water-soluble and fourth water-soluble film is superposed onto the at least one compartment formed by the first water-soluble film and the second water-soluble film, and wherein the second water-soluble film and the third water-soluble film are in direct contact with one another.

7. The water-soluble unit dose article according to claim 1 , wherein the water-soluble unit dose article comprises at least three internal compartments.

8. The water-soluble unit dose article according to claim 1 , wherein the third water-soluble film and the fourth water-soluble film are configured to form at least two internal compartments arranged in a side-by-side configuration.

9. The water-soluble unit dose article according to claim 1 , wherein the first water-soluble film and the second water-soluble film are configured to form at least two internal compartments arranged in a side-by-side configuration.

10. The water-soluble unit dose article according to claim 1 , wherein the films are sealed together via solvent sealing, heat sealing, or a mixture thereof.

11. The water-soluble unit dose article according to claim 10 , wherein the films are sealed together via solvent sealing,

wherein the solvent sealing comprises a solvent, wherein the solvent comprises water.

12. The water-soluble unit dose article according to claim 1 , wherein the seal region comprises a flange region, and wherein the first water-soluble film, the second water-soluble film, the third water-soluble film, and the fourth water-soluble films are at least partially sealed together in the flange region.

13. The water-soluble unit dose article according to claim 1 , wherein the first water-soluble film, the second water-soluble film, the third water-soluble film, the fourth water-soluble film, or a mixture thereof comprises an aversive agent.

14. The water-soluble unit dose article according to claim 1 , wherein at least one internal compartment comprises a treatment composition selected from a laundry treatment composition, dishwashing composition, hard surface treatment composition, or a mixture thereof.

15. A process for making a water-soluble unit dose article according to claim 1 comprising the steps of:

a. deforming the first water-soluble film into a cavity to make at least one open compartment;

b. filling the at least one open compartment from step a with a treatment composition;

c. closing the at least one open compartment from step b with the second water-soluble film;

d. sealing the first water-soluble film and the second water-soluble film together to make an at least first closed intermediate article;

e. deforming the fourth water-soluble film into a cavity to create at least one open compartment;

f. filling the at least one open compartment from step e with a treatment composition;

g. closing the at least one open compartment from step f with the third water-soluble film;

h. sealing the third water-soluble film and the fourth water-soluble film together to form at least a second closed intermediate article;

i. bringing the first closed intermediate article and the second closed intermediate article into contact with one another such that the second water-soluble film and the third water-soluble film are brought into contact with one another;

j. creating at least a partial seal between the second water-soluble film and third water-soluble film to create the water-soluble unit dose article.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2020
From: VITIELLO, LUCA; KEULEERS, ROBBY RENILDE FRANCOIS; BRANDT SANZ, MIGUEL; COURCHAY, FLORENCE CATHERINE; LABEQUE, REGINE
To: THE PROCTER AND GAMBLE COMPANY
Reel/Frame 052520/0199 →
Priority Claims (1)
EP 19166632 · Apr 1, 2019 · regional
Continuity (1)
Related Publication 20200308515A1 · Oct 1, 2020