IP Library Granted Patent US 7,998,885
Granted Patent B2
US 7,998,885 · App. 12/215,767 · Granted Aug 16, 2011

Fine-fiber nonwoven-supported coating structure

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Quick Facts
Patent No.
US 7,998,885
App. No.
12/215,767
Granted
Aug 16, 2011
Kind
B2
Abstract

This invention relates to a liquid penetration-resistant water-vapor-permeable multi-layer composite material and process for making the same comprising a porous nanofiber web of polymeric fibers, wherein the polymeric fibers of the nanofiber web have a diameter of less than 1000 nanometers and wherein the nanofiber web has a basis weight of 5 to 40 grams per square meter and a surface roughness (ΔRMS) of 5 to 15 micrometers and where, the porous nanofiber web is coated on a surface with a layer of water-vapor-permeable, hydrophilic, monolithic, water transport material.

Claims (20)

1. A liquid-penetration-resistant water-vapor-permeable multi-layer composite material consisting of;

a porous nanofiber web of polymeric fibers, wherein the polymeric fibers of the nanofiber web have a diameter of less than 1000 nanometers and wherein the nanofiber web has a basis weight of 5 to 40 grams per square meter and a surface roughness (ΔRMS) of 1 to 15 micrometers, wherein, the porous nanofiber web has an upper surface and a lower surface, and a water-vapor-permeable, hydrophilic, monolithic, water transport layer, and wherein, said porous nanofiber web is coated on said upper surface with a 5 to 15 micrometers layer of said water-vapor-permeable, hydrophilic, monolithic, water transport layer.

2. The liquid-penetration-resistant water-vapor-permeable multi-layer composite material according to claim 1 , wherein said composite material has a hydrostatic head of at least 3 meters and a moisture vapor transmission rating (MVTR) of at least 500 g/m 2 /24 hours per test method ASTM E-96B.

3. The liquid-penetration-resistant water-vapor-permeable multi-layer composite material according to claim 1 , wherein said nanofiber web has a basis weight of 10-20 grams per square meter.

4. The nanofiber web according to claim 1 , wherein said nanofiber web is composed of nylon.

5. The liquid-penetration-resistant water-vapor-permeable multi-layer composite material of claim 1 , characterized in that both the nanofiber web and the water-vapor-permeable, hydrophilic, monolithic, water transport layer are composed of nylon.

6. The liquid-penetration-resistant water-vapor-permeable multi-layer composite material of claim 1 , where the composite material has a hydrostatic head of at least 10 meters.

7. The liquid-penetration-resistant water-vapor-permeable multi-layer composite material of claim 1 , wherein said composite material has a moisture vapor transmission rating (MTRV) is greater than or equal to 750 g/m 2 /24 hours.

8. The liquid-penetration-resistant water-vapor-permeable multi-layer composite material of claim 1 , characterized in that the water-vapor-permeable, hydrophilic, monolithic, water transport layer is polymerized and bonded to said upper surface of said porous nanofiber web.

9. The liquid-penetration-resistant water-vapor-permeable multi-layer composite material of claim 1 , characterized in that the water-vapor-permeable, hydrophilic, monolithic, water transport layer is an air-impermeable, water-vapor-permeable, hydrophilic, polymeric film.

10. The liquid-penetration-resistant water-vapor-permeable multi-layer composite material of claim 1 , characterized in that the water-vapor-permeable, hydrophilic, monolithic, water transport layer is an air-impermeable, water-vapor-permeable, hydrophilic, polymer precursor composition.

11. The liquid-penetration-resistant water-vapor-permeable multi-layer composite material according to claim 1 , wherein said nanofiber web is coated with said water-vapor-permeable, hydrophilic, monolithic, water transport layer on both said upper and said lower surface.

12. A method of forming a liquid-penetration-resistant water-vapor-permeable multi-layer composite material, comprising the steps of;

forming a layer of porous nanofiber web of polymeric fibers, wherein the polymeric fibers of the nanofiber web have a diameter of less than 1000 nanometers and wherein the nanofiber web has a basis weight of 5 to 40 grams per square meter and, where the porous nanofiber web has a surface roughness (ΔRMS) of 5 to 15 micrometers, and where said porous nanofiber web has an upper surface and a lower surface, and forming a water-vapor-permeable, hydrophilic, monolithic, water transport layer, and applying said water-vapor-permeable, hydrophilic, monolithic, water transport layer to the upper surface of said nanofiber web.

13. The method of claim 12 , wherein said composite material has a hydrostatic head of at least 3 meters and a moisture vapor transmission rating (MVTR) of at least 500 g/m 2 /24 hours per test method ASTM E-96B.

14. The method of claim 12 , wherein the water transport layer is polymerized and cured to said upper surface of the porous nanofiber web.

15. The method of claim 12 , wherein said water transport layer is a polyisocyanate functional urethane polymer.

16. A flexible layered article, comprising;

a porous nanofiber web of polymeric fibers, wherein the polymeric fibers of the nanofiber web have a diameter of less than 1000 nanometers and wherein the nanofiber web has a basis weight of 5 to 40 grams per square meter and a surface roughness (RMS) of 5 to 15 micrometers, and wherein, the porous nanofiber web has an upper surface and a lower surface, and a water-vapor-permeable, hydrophilic, monolithic, water transport layer, and wherein, said porous nanofiber web is coated on a portion of said upper surface with a 5 to 15 micrometers layer of said water-vapor-permeable, hydrophilic, monolithic, water transport layer.

17. The flexible layered article according to claim 16 , wherein said flexible layered article is selected from the group consisting of coats, ponchos, shirts, blouses, vests, sweaters, undergarments, sweatshirts, jackets, coats, scarves, head bands, ear muffs, ear and/or neck warmers, handkerchiefs, hats, caps, gloves, neckties, masks, mufflers, dresses, socks, pants, purses, tents, tarpaulins, ground cloths, sleeping bags, sleeping bag covers, luggage, sail-cloth and rope storage lockers, carpeting, furniture, car-seats, backpacks and coveralls.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2019
From: E. I. DU PONT DE NEMOURS AND COMPANY
To: DUPONT SAFETY & CONSTRUCTION, INC.
Reel/Frame 051180/0648 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2008
From: CONLEY, JILL A; PALMER, GEORGE BRUCE, IV
To: E. I. DU PONT DE NEMOURS AND COMPANY
Reel/Frame 021808/0695 →