IP Library › Granted Patent US 12,575,980
Granted Patent B2
US 12,575,980 · App. 18/811,116 · Granted Mar 17, 2026

Laminate webs and absorbent articles having the same

Inventors: Pietro Cecchetto (Fairfield, OH); Linda Ann Sauer (Beijing, CN); Shihuang Li (Xiamen, CN)
Assignee: The Procter & Gamble Company
A61F13/51104A61F13/51108A61F13/5116A61F13/512A61F13/5123B32B3/266B32B3/28B32B3/30B32B5/022B32B27/02B32B27/12B32B37/153A61F13/15707A61F2013/15715A61F13/15731A61F2013/51078A61F2013/51165A61F13/5121A61F13/5125A61F2013/5127B32B27/32B32B2037/0092B32B2038/047B32B38/06B32B2262/0253B32B2307/726B32B2555/02Y10T428/24281Y10T428/24289Y10T428/24322Y10T428/24331Y10T428/24612Y10T428/24628Y10T442/674
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Quick Facts
Patent No.
US 12,575,980
App. No.
18/811,116
Granted
Mar 17, 2026
Kind
B2
Abstract

A laminate web having a polymer film layer and a nonwoven layer is disclosed. The polymer film layer makes up a first side of the laminate web and the nonwoven layer makes up a second side of the laminate web. The laminate web has a plurality of first elements extending from the polymer film. The web also has a plurality of second elements such as recesses, protrusions, apertures, embossing and combinations thereof.

Claims (30)

1 . An absorbent article, comprising:

a liquid permeable topsheet, a liquid impermeable backsheet, and an absorbent core disposed between the topsheet and the backsheet, wherein the topsheet comprises a laminate web comprising a first layer comprising a polymer film and a second layer comprising a nonwoven web, wherein the polymer film and nonwoven web have been joined to form a precursor laminate, the precursor laminate having a first side defined by the polymer film, and an opposing second side defined by the nonwoven,

wherein the first layer has a pattern of relatively smaller apertures formed therethrough and comprises at least about 95 discrete apertures per square centimeter, wherein the apertures have a diameter of less than about 500 microns, wherein the laminate has a pattern of relatively larger protrusions formed therein, wherein each of the first layer and the second layer form the larger protrusions, wherein the relatively larger protrusions being of a size sufficient for a plurality of the relatively smaller apertures to be present within each of a plurality of the protrusions, wherein each large protrusion defines a void area interiorly, wherein each of the larger protrusions has a base, wherein the base and the first side are coplanar, wherein each of the larger protrusions comprises a plateau and a sidewall extending from the plateau to the base, wherein the base is wider than the plateau, wherein the first layer is stretched to form the larger protrusions such that portion of the first layer forming the larger protrusion has a reduced thickness as compared to the base, and wherein the plateau comprises at least one of the apertures that is larger than each of the other apertures of the first layer;

wherein the first layer is an outermost layer of the absorbent article facing the skin of the wearer;

wherein the pattern of relatively smaller apertures and the pattern of relatively larger protrusions extends throughout the liquid permeable topsheet;

wherein the nonwoven web comprises a carded nonwoven.

2 . The absorbent article of claim 1 , wherein the polymer film and the nonwoven web have been joined to form the precursor laminate while the film was in a softened state thereby to bond to the nonwoven.

3 . An absorbent article, comprising:

a liquid permeable topsheet, a liquid impermeable backsheet, and an absorbent core disposed between the topsheet and the backsheet, wherein the topsheet comprises a laminate web comprising a first layer comprising a polymer film and a second layer comprising a nonwoven web, wherein the polymer film and nonwoven web have been joined to form a precursor laminate, the precursor laminate having a first side defined by the polymer film, and an opposing second side defined by the nonwoven,

wherein the first layer has a pattern of relatively smaller apertures formed therethrough and comprises at least about 95 discrete apertures per square centimeter, wherein the apertures have a diameter of less than about 500 microns, wherein the laminate has a pattern of relatively larger recesses formed therein, wherein each of the first layer and the second layer form the larger recesses, wherein the relatively larger recesses being of a size sufficient for a plurality of the relatively smaller apertures to be present within each of a plurality of the recesses, wherein each large protrusion defines a void area interiorly, wherein each of the larger recesses has a base, wherein the base and the first side are coplanar, wherein each of the larger recesses comprises a plateau and a sidewall extending from the plateau to the base, wherein the base is wider than the plateau, wherein the first layer is stretched to form the larger recesses such that portion of the first layer forming the larger protrusion has a reduced thickness as compared to the base, and wherein the plateau comprises at least one of the apertures that is at least 1.5 times larger than each of the other apertures of the first layer;

wherein the first layer is an outermost layer of the absorbent article facing the skin of the wearer;

wherein the pattern of relatively smaller apertures and the pattern of relatively larger recesses extends throughout the liquid permeable topsheet;

wherein the nonwoven web comprises a carded nonwoven.

4 . The absorbent article of claim 1 , wherein the nonwoven web is either thermally bonded or air through bonded.

5 . The absorbent article of claim 1 , wherein the nonwoven web is a carded air through bonded nonwoven formed of polymer fibers having a fiber thickness of no less than 5 denier.

6 . The absorbent article of claim 1 , wherein the nonwoven web is a carded air through bonded nonwoven formed of polymer fibers having a fiber thickness of no less than 5 denier.

7 . The absorbent article of claim 1 , wherein the nonwoven web is a carded air through bonded nonwoven web comprising 6 denier fibers.

8 . The absorbent article of claim 1 , wherein the first layer has a basis weight of about 18 gsm or less.

9 . The absorbent article of claim 1 , wherein the nonwoven layer has a basis weight of about 30 gsm or less.

10 . The absorbent article of claim 1 , wherein the density of the protrusions is from about 20 to about 40 second elements/cm 2 laminate web.

11 . The absorbent article of claim 1 , wherein the apertures have an area of between about 0.01 mm 2 and about 0.78 mm 2 .

12 . The absorbent article of claim 1 , wherein the nonwoven web comprises a median distance between two adjacent fibers in a z-direction of above about 55 μm.

13 . The absorbent article of claim 1 , wherein the nonwoven web comprises a median distance between two adjacent fibers in a z-direction in a range of about 60 μm to about 200 μm.

14 . The absorbent article of claim 3 , wherein the nonwoven web comprises bicomponent fibers.

15 . The absorbent article of claim 3 , wherein the nonwoven web comprises bicomponent fibers.

16 . The absorbent article of claim 3 , wherein the nonwoven web is a carded air through bonded nonwoven formed of polymer fibers having a fiber thickness of no less than 5 denier.

17 . The absorbent article of claim 3 , wherein the nonwoven web is a carded air through bonded nonwoven formed of polymer fibers having a fiber thickness of no less than 5 denier.

18 . The absorbent article of claim 3 , wherein the nonwoven web is a carded air through bonded nonwoven web comprising 6 denier fibers.

19 . The absorbent article of claim 3 , wherein the first layer has a basis weight of about 18 gsm or less.

20 . The absorbent article of claim 3 , wherein the nonwoven layer has a basis weight of about 30 gsm or less.

Priority Claims (4)
WO PCT/CN2017/089550 · Jun 22, 2017 · international
WO PCT/CN2017/089553 · Jun 22, 2017 · international
WO PCT/CN2017/089554 · Jun 22, 2017 · international
WO PCT/CN2017/117407 · Dec 20, 2017 · international
Continuity (3)
Continuation 17030587 · Sep 24, 2020
Continuation 16015234 · Jun 22, 2018
Related Publication 20240407957A1 · Dec 12, 2024
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