IP Library Granted Patent US 8,206,481
Granted Patent B2
US 8,206,481 · App. 12/394,320 · Granted Jun 26, 2012

HEPA (H-10) performance synthetic nonwoven and nanofiber composite filter media

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,206,481
App. No.
12/394,320
Granted
Jun 26, 2012
Kind
B2
Abstract

A composite filter media structure and an associated method of making are provided. The structure includes a base substrate that includes a nonwoven fabric substrate formed from a plurality of bicomponent synthetic fibers using a spunbond process. The composite filter media structure includes a nanofiber layer deposited on one side of the base substrate by an electro-blown spinning process. In one aspect, the base substrate and the nanofiber layer are configured to provide at least an 85% filtration efficiency measured in accordance with an ASHRAE 52.2-1999 test method. In another aspect, the nanofiber layer has a basis weight of about 2.0 g/m 2 to about 3.0 g/m 2 .

Claims (19)

1. A composite filter media structure including:

a base substrate including a nonwoven fabric substrate formed from a plurality of bicomponent synthetic fibers using a spunbond process;

a nanofiber layer deposited on one side of the base substrate by an electro-blown spinning process; and

the base substrate and the nanofiber layer configured to provide at least an 85% filtration efficiency measured in accordance with an ASHRAE 52.2-1999 test method;

wherein the nonwoven fabric substrate has a basis weight of about 150 g/m 2 to about 260 g/m 2 ; and

the composite filter media structure provides the at least 85% fractional efficiency at pressure drops between approximately 4.4 mmH2O and approximately 6.0 mmH2O.

2. A composite filter media structure according to claim 1 , wherein the nanofiber layer has a basis weight of about 2.0 g/m 2 to about 3.0 g/m 2 .

3. A composite filter media structure according to claim 1 , wherein a thickness of the nanofiber layer is approximately 10 microns.

4. A composite filter media structure according to claim 1 , wherein the composite filter media structure captures penetrating particle sizes of about 0.3 to about 0.5 microns.

5. A composite filter media structure according to claim 1 , wherein the composite filter media structure further including a plurality of corrugations.

6. A method of making a composite filter media, the method including:

forming a nonwoven fabric substrate formed from a plurality of bicomponent synthetic fibers using a spunbond process; and

applying a nanofiber layer by electro-blown spinning a polymer solution to form a plurality of nanofibers on at least one side of the nonwoven fabric to form the composite filter media such that the composite filter media has a filtration efficiency of at least about 85%;

wherein the step of forming the nonwoven fabric substrate includes forming the nonwoven fabric substrate to have a basis weight of about 150 g/m 2 to about 260 g/m 2 ; and

the composite filter media structure provides the at least 85% fractional efficiency at pressure drops between approximately 4.4 mmH2O and approximately 6.0 mmH2O.

7. A method in accordance with claim 6 wherein the step of applying the nanofiber layer includes applying the nanofiber layer to have a basis weight of about 2.0 g/m 2 to about 3.0 g/m 2 .

8. A method in accordance with claim 6 wherein the step of applying the nanofiber layer includes applying the nanofiber layer to have a thickness of approximately 10 microns.

9. A method in accordance with claim 6 wherein the composite filter media structure captures the most penetrating particle sizes of about 0.3 to about 0.5 microns.

10. A method in accordance with claim 6 , further including the step of corrugating the composite filter media structure.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2014
From: GENERAL ELECTRIC COMPANY; BHA GROUP, INC.; ALTAIR FILTER TECHNOLOGY LIMITED
To: BHA ALTAIR, LLC
Reel/Frame 031911/0797 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2009
From: SMITHIES, ALAN; DEVINE, ROBERT HENRY, II; CLEMENTS, JACK T.
To: BHA GROUP, INC.
Reel/Frame 022475/0785 →