Barrier Fabrics with Desirable Air Permeability
A barrier fabric suitable as a backsheet for an underpad configured for a low air loss bed, in which the barrier fabric comprises a first nonwoven fabric including outermost spunbond layers and two or more fine-fiber containing nonwoven layers. Each of the nonwoven layers being treated with a non-fluorinated barrier coating (NFBC).
1 . A barrier fabric, comprising: a first nonwoven fabric comprising—
(i) a first outermost spunbond layer including a first plurality of continuous spunbond fibers;
(ii) a second outermost spunbond layer including a second plurality of continuous spunbond fibers;
(iii) a plurality of inner fine fiber-containing nonwoven layers including a first fine fiber-containing layer including a first plurality of fine fibers and a second fine fiber-containing layer including a second plurality of fine fibers, wherein the plurality of inner fine fiber-containing nonwoven layers are located directly or indirectly between the first outermost spunbond layer and the second outermost spunbond layer; and
(iv) a non-fluorinated barrier coating (NFBC) located on each of the first outermost spunbond layer, the second outermost spunbond layer, the first fine fiber-containing layer, and the second fine fiber-containing layer.
2 . The fabric of claim 1 , wherein the NFBC comprises an alcohol repellant comprising an acrylic-functional polymer including an alkyl silane methacrylate group.
3 . The fabric of claim 2 , wherein the acrylic-functional polymer is cationic.
4 . The fabric of claim 1 , wherein the NFBC comprises an alcohol repellant comprising a cured siliconized coating comprising a network of radiation cured silicones.
5 . The fabric of claim 4 , wherein the network of radiation cured silicones comprises the reaction product of one or more silicone acrylate oligomers or polymers or one or more epoxy silicone oligomers or polymers.
6 . The fabric of claim 1 , wherein the first nonwoven fabric comprises a basis weight and an alcohol repellant that comprises from about 0.1 to about 20% by weight of the basis weight on a dry basis.
7 . The fabric of claim 2 , wherein the NFBC comprises a binder, wherein the binder comprises an anionic binder, a cationic binder, non-ionic binder, an amphoteric binder, or any combinations thereof.
8 . The fabric of claim 7 , wherein the binder comprises a crosslinked binder.
9 . The fabric of claim 7 , wherein the first nonwoven fabric comprises a basis weight and the binder comprises from about 0.1 to about 10% by weight of the basis weight on a dry basis.
10 . The fabric of claim 2 , wherein the NFBC comprises a wetting agent, and the first nonwoven fabric comprises a basis weight and the wetting agent comprises from about 0.1 to about 5% by weight of the basis weight on a dry basis.
11 . The fabric of claim 2 , wherein the NFBC comprises a first ratio between the alcohol repellant and a binder on a dry basis (alcohol repellant:binder) from about 1:1 to about 20:1.
12 . The fabric of claim 2 , wherein the NFBC comprises a second ratio between the alcohol repellant and a wetting agent on a dry basis (alcohol repellant:wetting agent) from about 1:1 to about 20:1.
13 . The fabric of claim 1 , wherein the first plurality of fine fibers, the second plurality of fine fibers, or both independently from each other have an average diameter from about 0.2 to about 8 microns.
14 . The fabric of claim 1 , wherein the first nonwoven fabric comprises one of the following structures:
(Structure 1) S 1 a -M b -S 2 c ;
(Structure 2) S 1 a -N d -S 2 c ;
(Structure 3) S 1 a -M b -N d -S 2 c ;
(Structure 4) S 1 a -N d -M b -N d -S 2 c
(Structure 5) S 1 a -M b -N d -M b -S 2 c ; or any combinations thereof;
wherein
‘M’ comprises a meltblown layer or a melt-fibrillated layer;
‘N’ comprises a sub-micron fiber-containing layer, such as electrospun fibers;
‘S 1 ’ comprises a first spunbond layer;
‘S 2 ’ comprises a second spunbond layer;
‘a’ represents the number of layers and is independently selected from 1, 2, 3, 4, and 5;
‘b’ represents the number of layers is independently selected from 1, 2, 3, 4, 5, 6, 7, and 8;
‘c’ represents the number of layers is independently selected from 1, 2, 3, 4, and 5; and
‘d’ represents the number of layers is independently selected from 1, 2, 3, 4, 5, 6, 7, and 8;
‘e’ represents the number of layers is independently selected from 1, 2, 3, 4, and 5.
15 . The fabric of claim 14 , wherein the first nonwoven fabric has a structure according to Structure 1, and wherein ‘a’ is 1 or 2, ‘b’ is 3, 4, or 5, and ‘c’ is 1 or 2.
16 . The fabric of claim 1 , wherein the first nonwoven fabric has a hydrohead from about 30 mbar, an air permeability of 5 CFM or greater according to IST 70.1, or both.
17 . An underpad for a low air loss bed, comprising:
(i) a backsheet comprising a barrier fabric according to claim 1 ;
(ii) a liquid permeable topsheet; and
(iii) an absorbent core located between the backsheet and the liquid permeable topsheet.
18 . The underpad of claim 17 , wherein the backsheet is devoid of a film.
19 . A method of forming a barrier fabric, comprising:
(i) providing or forming a first outermost spunbond layer including a first plurality of continuous spunbond fibers;
(ii) providing or forming a second outermost spunbond layer including a second plurality of continuous spunbond fibers;
(iii) providing or forming a plurality of inner fine fiber-containing nonwoven layers including a first fine fiber-containing layer including a first plurality of fine fibers and a second fine fiber-containing layer including a second plurality of fine fibers,
(iv) positioning the plurality of inner fine fiber-containing nonwoven layers directly or indirectly between the first outermost spunbond layer and the second outermost spunbond layer;
(v) topically applying a non-fluorinated barrier coating (NFBC) composition on each of the first outermost spunbond layer, the second outermost spunbond layer, the first fine fiber-containing layer, and the second fine fiber-containing layer.
20 . The method of claim 19 , wherein (i) each of the first outermost spunbond layer, the second outermost spunbond layer, the first fine fiber-containing layer, and the second fine fiber-containing layer are individually subjected to the step of topically applying the NFBC or (ii) each of the first outermost spunbond layer, the second outermost spunbond layer, the first fine fiber-containing layer, and the second fine fiber-containing layer define an intermediate material, and the intermediate material is subjected to the step of topically applying the NFBC.