IP Library Patent Application 12971539
Patent Application
App. No. 12/971,539

FINE FIBER FILTER MEDIA AND PROCESSES

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Patent No.
US None
App. No.
12/971,539
Abstract

Fine fiber products including fiber webs, as well as related assemblies, systems and methods, are described. In some embodiments, fiber webs described herein may include fine fibers and relatively low amounts of degraded polymer formed during a fiber extrusion process. The fiber webs may be used for filter media applications.

Claims (48)

1 . A fiber web comprising:

a plurality of meltblown fibers formed of a polymeric material and having an average fiber diameter between about 0.1 microns and about 1.5 microns, wherein the fiber web has:

an air permeability between about 10 CFM and about 1800 CFM;

a surface area between about 0.1 m 2 /g and about 6.0 m 2 /g;

a basis weight between about 1.0 g/m 2 and about 100 g/m 2 ;

a thickness between about 0.0005 inches and about 0.04 inches; and

wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 1.6 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

2 . The fiber web of claim 1 , wherein the fiber web has a surface area between about 1.7 m 2 /g and about 6.0 m 2 /g.

3 . The fiber web of claim 1 , wherein the fiber web has a mean pore size between about 5 microns and about 15 microns.

4 . The fiber web of claim 1 , wherein the fiber web has a basis weight between about 3.0 g/m 2 and about 30 g/m 2 .

5 . The fiber web of claim 1 , wherein the fiber web has a consistency of basis weight across the fiber web of about 3.0 standard deviations or less.

6 . The fiber web of claim 1 , wherein the fiber web has a thickness between about 0.002 inches and about 0.010 inches.

7 . The fiber web of claim 1 , wherein the fiber web has a consistency of thickness across the fiber web of about 3.0 standard deviations or less.

8 . The fiber web of claim 1 , wherein the fiber web has an air permeability between about 40 CFM and about 750 CFM.

9 . The fiber web of claim 1 , wherein the fiber web has an air permeability between about 10 CFM and about 50 CFM.

10 . The fiber web of claim 1 , wherein the fiber web has an airflow resistance between about 0.3 mm H 2 O and about 3.5 mm H 2 O.

11 . The fiber web of claim 1 , wherein the fiber web has a NaCl filtration efficiency between about 50% and about 99.97%.

12 . The fiber web of claim 1 , wherein the a plurality of meltblown fibers have an average fiber diameter between about 0.1 microns and about 1.0 microns.

13 . The fiber web of claim 1 , wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 1.0 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

14 . The fiber web of claim 1 , wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 0.7 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

15 . The fiber web of claim 1 , wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 0.5 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

16 . The fiber web of claim 1 , wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 0.3 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

17 . The fiber web of claim 1 , wherein the fiber web comprises a fatty acid amide additive.

18 . A filter element comprising the fiber web of claim 1 .

19 . A fiber web comprising:

a plurality of meltblown fibers formed of a polymeric material and having an average fiber diameter between about 0.1 microns and about 0.6 microns, wherein the fiber web has:

an air permeability between about 10 CFM and about 1800 CFM;

a surface area between about 0.1 m 2 /g and about 6.0 m 2 /g;

a basis weight between about 1.0 g/m 2 and about 100 g/m 2 ;

a thickness between about 0.0005 inches and about 0.04 inches; and

wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 5 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

20 . The fiber web of claim 19 , wherein the fiber web has a surface area between about 1.7 m 2 /g and about 6.0 m 2 /g.

21 . The fiber web of claim 19 , wherein the fiber web has a mean pore size between about 5 microns and about 15 microns.

22 . The fiber web of claim 19 , wherein the fiber web has a basis weight between about 3.0 g/m 2 and about 30 g/m 2 .

23 . The fiber web of claim 19 , wherein the fiber web has a consistency of basis weight across the fiber web of about 3.0 standard deviations or less.

24 . The fiber web of claim 19 , wherein the fiber web has a thickness between about 0.002 inches and about 0.010 inches.

25 . The fiber web of claim 19 , wherein the fiber web has a consistency of thickness across the fiber web of about 3.0 standard deviations or less.

26 . The fiber web of claim 19 , wherein the fiber web has an air permeability between about 40 CFM and about 750 CFM.

27 . The fiber web of claim 19 , wherein the fiber web has an air permeability between about 10 CFM and about 50 CFM.

28 . The fiber web of claim 19 , wherein the fiber web has an airflow resistance between about 0.3 mm H 2 O and about 3.5 mm H 2 O.

29 . The fiber web of claim 19 , wherein the fiber web has a NaCl filtration efficiency between about 50% to about 99.97%.

30 . The fiber web of claim 19 , wherein the plurality of meltblown fibers have an average fiber diameter between about 0.1 microns and about 0.5 microns.

31 . The fiber web of claim 19 , wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 3.0 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

32 . The fiber web of claim 19 , wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 2.0 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

33 . The fiber web of claim 19 , wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 1.0 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

34 . The fiber web of claim 19 , wherein the fiber web has a surface density of particles formed of the polymeric material of less than about 0.5 particles/in 2 , wherein each of the particles has a largest cross-sectional dimension of about 1.0 mm or greater.

35 . The fiber web of claim 19 , wherein the fiber web comprises a fatty acid amide additive.

36 . A filter element comprising the fiber web of claim 19 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2013
From: WERTZ, JOHN A.
To: HOLLINGSWORTH & VOSE COMPANY
Reel/Frame 029847/0791 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2011
From: COX, STEPHEN T.; FREEMAN, WILLIAM S.
To: HOLLINGSWORTH & VOSE COMPANY
Reel/Frame 026097/0061 →