IP Library Granted Patent US 12,263,071
Granted Patent B2
US 12,263,071 · App. 17/240,736 · Granted Apr 1, 2025

Plant-based absorbent article

Inventors: Emily Monroe (Georges Mills, NH); Amrita Saigal (Cambridge, MA); John Poccia (Monmouth Beach, NJ); James Keighley (Cedarville, MI)
Assignee: KUDOS INNOVATIONS, INC.
A61F13/51121A61F13/15252A61F13/47A61F13/49A61F2013/15959A61F2013/530868
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Quick Facts
Patent No.
US 12,263,071
App. No.
17/240,736
Granted
Apr 1, 2025
Kind
B2
Abstract

An absorbent article that is toxin-free and made from plant-based, biobased, all natural, clean ingredients. In one embodiment, the absorbent article is a diaper made from plant-based resin, comprising: (i) a first layer, wherein the first layer is a cotton top sheet with a wax-based coating deposited on an exterior surface of the first layer (adjacent to the wearer's skin, or “user-facing”); and (ii) a second layer, wherein the second layer is an acquisition/distribution layer (ADL), and wherein the ADL is comprised of two sub-layers of different materials, a first sublayer comprising an apertured film acquisition sub-layer disposed on top of, and laminated to, a second sub-layer comprising a non-woven acquisition layer.

Claims (36)

1. A plant-based absorbent article comprising a plurality of layers, the plurality of layers consisting of:

(i) a first layer having a first user-facing surface and a first non-user-facing surface, wherein the first layer is a top sheet consisting of 100% cotton providing a natural hydrophobic fiber layer adjacent to a user's skin and configured to allow fluid to rapidly pass through;

(ii) a second layer having a second user-facing surface and a second non-user-facing surface, wherein the second user-facing surface is immediately adjacent to and in direct contact with the first non-user-facing surface with no intervening layers, and wherein the second layer is an acquisition/distribution layer (ADL) consisting of two sub-layers of different materials, wherein a first sub-layer is an apertured film acquisition layer and a second sub-layer is a non-woven distribution layer, wherein the first sub-layer is immediately adjacent to and in direct contact with the second sub-layer with no intervening sub-layers, and

wherein the apertured film acquisition layer includes perforations that form funnels configured to provide a circuitous path for fluid flow and oriented to prevent fluid flow back towards the first layer;

(iii) a third layer having a third user-facing surface and a third non-user-facing surface, wherein the third user-facing surface is immediately adjacent to and in direct contact with the second non-user-facing surface with no intervening layers, and wherein the third layer is an absorbent core configured to receive and trap the fluid flowing from the second layer; and

(iv) a fourth layer having a fourth user-facing surface and a fourth non-user-facing surface, wherein the fourth user-facing surface is immediately adjacent to and in direct contact with the third non-user-facing surface with no intervening layers, wherein the fourth layer is a liquid impermeable barrier configured to contain the fluid received and trapped in the absorbent core while allowing air to transfer between the outside environment and the plurality of layers.

2. The absorbent article according to claim 1 , wherein the article is a diaper.

3. The absorbent article according to claim 1 , wherein the cotton top sheet is spunlace cotton.

4. The absorbent article according to claim 1 , further including a wax-based coating deposited on the first user-facing surface.

5. The absorbent article according to claim 4 , wherein the wax-based coating is hydrophobic.

6. The absorbent article according to claim 1 , wherein the apertured film acquisition sub-layer is 95% biobased green polyethylene.

7. The absorbent article according to claim 1 , wherein the non-woven distribution layer is a biodegradable and compostable fluid distribution layer through air bond polylactic acid (PLA).

8. A plant-based absorbent article comprising a plurality of layers, the plurality of layers consisting of:

(1) a first layer having a first user-facing surface and a first non-user-facing surface, wherein the first layer is a top sheet consisting of 100% cotton providing a natural hydrophobic fiber layer adjacent to a user's skin and configured to allow fluid to rapidly pass through;

(ii) a second layer having a second user-facing surface and a second non-user-facing surface, wherein the second user-facing surface is immediately adjacent to and in direct contact with the first non-user-facing surface with no intervening layers, and wherein the second layer is an acquisition/distribution layer (ADL) consisting of two sub-layers of different materials, wherein a first sub-layer is a non-woven distribution layer and a second sub-layer is an apertured film acquisition sub-layer, wherein the first sub-layer is immediately adjacent to and in direct contact with the second sub-layer with no intervening sub-layers, and

wherein the apertured film acquisition sub-layer includes perforations that form funnels configured to provide a circuitous path for fluid flow and oriented to prevent fluid flow back towards the first layer;

(iii) a third layer having a third user-facing surface and a third non-user-facing surface, wherein the third user-facing surface is immediately adjacent to and in direct contact with the second non-user-facing surface with no intervening layers, and wherein the third layer is an absorbent core configured to receive and trap the fluid flowing from the second layer; and

(iv) a fourth layer having a fourth user-facing surface and a fourth non-user-facing surface, wherein the fourth user-facing surface is immediately adjacent to and in direct contact with the third non-user-facing surface with no intervening layers, wherein the fourth layer is a liquid impermeable barrier configured to contain the fluid received and trapped in the absorbent core while allowing air to transfer between the outside environment and the plurality of layers.

9. The absorbent article according to claim 8 , wherein the article is a diaper.

10. The absorbent article according to claim 8 , wherein the cotton top sheet is spunlace cotton.

11. The absorbent article according to claim 8 , further including a wax-based coating deposited on the first user-facing surface.

12. The absorbent article according to claim 11 , wherein the wax-based coating is hydrophobic.

13. The absorbent article according to claim 8 , wherein the apertured film acquisition sub-layer is 95% biobased green polyethylene.

14. The absorbent article according to claim 8 , wherein the non-woven distribution layer is a biodegradable and compostable fluid distribution layer through air bond polylactic acid (PLA).

15. The absorbent article according to claim 1 , wherein the article is one of: an adult incontinence product, a feminine hygiene absorbent pad, a postpartum absorbent product, a pants-style absorbent feminine hygiene product, a disposable changing pad, or a pet absorbent pad.

16. The absorbent article according to claim 1 , wherein the first layer and the second layer are at least 95% plant-based.

17. The absorbent article according to claim 1 , wherein the first layer and the second layer are made from plant-based materials and without the use of petro-chemical derived materials.

18. The absorbent article according to claim 1 , wherein the cotton used in the first layer includes a blend of scoured and hydrogen peroxide bleached cotton.

19. The absorbent article according to claim 1 , wherein the cotton used in the first layer includes unbleached, mechanically cleaned cotton.

20. A plant-based absorbent article comprising a plurality of layers, the plurality of layers consisting of:

(i) a first layer having a first user-facing surface and a first non-user-facing surface, wherein the first layer is a top sheet consisting of 100% cotton providing a natural hydrophobic fiber layer adjacent to a user's skin and configured to allow fluid to rapidly pass through;

(ii) a second layer having a second user-facing surface and a second non-user-facing surface, wherein the second user-facing surface is immediately adjacent to and in direct contact with the first non-user-facing surface with no intervening layers, and wherein the second layer is an acquisition/distribution layer (ADL) consisting of two sub-layers of different materials, wherein a first sub-layer is an apertured film acquisition layer and a second sub-layer is a non-woven distribution layer, wherein the first sub-layer is immediately adjacent to and in direct contact with the second sub-layer with no intervening sub-layers, and

wherein the apertured film acquisition layer includes perforations that form funnels configured to provide a circuitous path for fluid flow and oriented to prevent fluid flow back towards the first layer;

(iii) a third layer having a third user-facing surface and a third non-user-facing surface, wherein the third user-facing surface is immediately adjacent to and in direct contact with the second non-user-facing surface, and wherein the third layer is an absorbent core configured to receive and trap the fluid flowing from the second layer; and

(iv) a fourth layer having a fourth user-facing surface and a fourth non-user-facing surface, wherein the fourth user-facing surface is immediately adjacent to and in direct contact with the third non-user-facing surface with no intervening layers, wherein the fourth layer is a liquid impermeable barrier configured to contain the fluid received and trapped in the absorbent core while allowing air to transfer between the outside environment and the plurality of layers,

wherein each layer of the plurality of layers is at least 95% plant-based and does not include any petro-chemical derived materials.

Assignments (2)
CHANGE OF ADDRESS Recorded Jan 10, 2025
From: KUDOS INNOVATIONS, INC.
To: KUDOS INNOVATIONS, INC.
Reel/Frame 070464/0231 →
CHANGE OF NAME Recorded Dec 26, 2024
From: ZERA, INC.
To: KUDOS INNOVATIONS, INC.
Reel/Frame 069793/0577 →
Continuity (2)
Provisional Application 63015969 · Apr 27, 2020
Related Publication 20210330519A1 · Oct 28, 2021
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