IP Library Granted Patent US 8,709,118
Granted Patent B2
US 8,709,118 · App. 13/738,468 · Granted Apr 29, 2014

Fine fiber media layer

Inventors: Hoo Y. Chung (Edina, MN); John R. B. Hall (Burnsville, MN); Mark A. Gogins (Roseville, MN); Douglas G. Crofoot (Burnsville, MN); Thomas M. Weik (Deephaven, MN)
Assignee: Donaldson Company, Inc.
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 8,709,118
App. No.
13/738,468
Granted
Apr 29, 2014
Kind
B2
Abstract

Disclosed are improved polymer materials. Also disclosed are fine fiber materials that can be made from the improved polymeric materials in the form of microfiber and nanofiber structures. The microfiber and nanofiber structures can be used in a variety of useful applications including the formation of filter materials.

Claims (23)

1. A filter construction comprising a filter media, the filter media comprising:

a single filtration substrate layer comprising a cellulosic nonwoven substrate or a synthetic polymer nonwoven substrate, the single filtration substrate layer having a first surface; and

a single fine fiber layer formed on and adhered to the first surface of the filtration substrate layer having a thickness of no greater than 30 microns, the fine fiber layer comprising a random distribution of fibers having a diameter of about 0.05 to 0.5 micron, the fibers comprising a nylon polymer, other than a copolymer formed from a nylon 6 monomer and a nylon 66 monomer and nylon 610 monomer.

2. The filter construction of claim 1 , wherein the fibers are configured such that after exposure of the filter media to air at 140° F. and 100% relative humidity for 16 hours at least 50% of the fiber remains substantially unchanged for filtration.

3. The filter construction of claim 1 , wherein the nylon polymer consists of a diacid and a diamine.

4. The filter construction of claim 1 , wherein the nylon polymer is not crosslinked.

5. The filter construction of claim 1 , wherein the fine fiber layer has a basis weight of about 0.0001 to 2.4 g-m −2 .

6. The filter construction of claim 2 , wherein the filter media is arranged in a cylindrical configuration having a longitudinal axis.

7. The filter construction of claim 2 , wherein the filter media is arranged in a pleated configuration with pleats extending generally longitudinally with respect to the longitudinal axis.

8. The filter construction of claim 6 , wherein the filter media is imbedded in end caps.

9. The filter construction of claim 1 , wherein the filtration substrate layer is a cellulosic nonwoven substrate comprising a course fibrous media including fibers having an average diameter of at least 10 microns.

10. The filter construction of claim 1 , wherein the filtration substrate layer has a thickness of about 25 to 800 microns.

11. A filter construction comprising a filter media, the filter media comprising:

a single filtration substrate layer comprising a cellulosic nonwoven substrate or a synthetic polymer nonwoven substrate, the single filtration substrate layer having a first surface; and

a single fine fiber layer formed on and adhered to the first surface of the filtration substrate layer having a thickness of no greater than 30 microns, the fine fiber layer comprising a random distribution of fibers having a diameter of about 0.05 to 0.5 micron, the fibers comprising a nylon polymer consisting of the polymerization reaction product of a diacid and a diamine.

12. The filter construction of claim 11 , wherein the fibers are configured such that after exposure of the filter media to air at 140° F. and 100% relative humidity for 16 hours at least 50% of the fiber remains substantially unchanged for filtration.

13. The filter construction of claim 11 , wherein the polymerization reaction product is not crosslinked.

14. The filter construction of claim 12 , wherein the fine fiber layer has a basis weight of about 0.0001 to 2.4 g-m −2 .

15. The filter construction of claim 12 , wherein the filter media is arranged in a cylindrical configuration having a longitudinal axis.

16. The filter construction of claim 12 , wherein the filter media is arranged in a pleated configuration with pleats extending generally longitudinally with respect to the longitudinal axis.

17. The filter construction of claim 16 , wherein the filter media is imbedded in end caps.

18. The filter construction of claim 12 , wherein the filtration substrate layer is a cellulosic nonwoven substrate comprising a course fibrous media including fibers having an average diameter of at least 10 microns.

19. The filter construction of claim 18 , wherein the filtration substrate layer has a thickness of about 25 to 800 microns.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2013
From: CHUNG, HOO Y.; HALL, JOHN R.B.; GOGINS, MARK A.; CROFOOT, DOUGLAS G.; WEIK, THOMAS M
To: DONALDSON COMPANY, INC.
Reel/Frame 030382/0690 →
Continuity (10)
Continuation 13611556 · Sep 12, 2012
Continuation 13211637 · Aug 17, 2011
Continuation 12609567 · Oct 30, 2009
Continuation 12008919 · Jan 14, 2008
Continuation 11398788 · Apr 6, 2006
Continuation 10894848 · Jul 19, 2004
Division 10676189 · Sep 30, 2003
Division 09871583 · May 31, 2001
Provisional Application 60230138 · Sep 5, 2000
Related Publication 20130199992A1 · Aug 8, 2013