IP Library Granted Patent US 8,202,340
Granted Patent B2
US 8,202,340 · App. 12/399,281 · Granted Jun 19, 2012

Waved filter media and elements

Assignee: Hollingsworth & Vose Company
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Quick Facts
Patent No.
US 8,202,340
App. No.
12/399,281
Granted
Jun 19, 2012
Kind
B2
Abstract

Various high performance, high efficiency filter media are provided that are cost effective and easy to manufacture. In particular, various filter media are provided having at least one layer with a waved configuration that results in an increased surface area, thereby enhancing various properties of the filter media. The filter media can be used to form a variety of filter elements for use in various applications.

Claims (38)

1. A filter media, comprising:

a fine fiber filtration layer comprising a plurality of waves having peaks and troughs in a waved configuration; and

a coarse support layer that holds the fine fiber filtration layer in the waved configuration and maintains separation of peaks and troughs of adjacent waves of the filtration layer, wherein the coarse support layer is formed from fibers having an average fiber diameter greater than an average fiber diameter of fibers that form the fine fiber filtration layer;

wherein the filter media has an initial DOP alpha value of greater than about 40 (mm H 2 O) −1 ,

wherein the initial DOP alpha value is calculated according to the following formula α=−100 log(C/C 0 )/DP, wherein DP is the pressure drop expressed in units of mm H 2 O.

2. The filter media of claim 1 , wherein the fine fiber filtration layer is electrostatically charged.

3. The filter media of claim 1 , wherein the filter media has an initial pressure drop of less than about 10.0 mm H 2 O.

4. The filter media of claim 1 , wherein the filter media has a DOP alpha value of greater than about 9 at 60 minutes of DOP loading.

5. The filter media of claim 1 , wherein the filter media has an initial DOP penetration of less than about 30% and a penetration at 60 minutes of DOP loading of less than about 65%.

6. The filter media of claim 1 , wherein the filter media has an initial DOP penetration of less than about 90% and a penetration at 60 minutes of DOP loading of less than about 95%.

7. The filter media of claim 1 , wherein the filter media has a pressure drop from NaCl loading of less than 30 mm H 2 O after 60 minutes.

8. The filter media of claim 1 , wherein the amplitude of the peaks and troughs is between about 0.1″ and about 4.0″.

9. The filter media of claim 1 , wherein the amplitude of the peaks and troughs is between about 0.1″ and about 1.0″.

10. The filter media of claim 1 , wherein the filter media has 2 to 6 waves per inch.

11. The filter media of claim 1 , wherein the filter media has about 3 waves per inch.

12. The filter media of claim 1 , wherein the fine fiber filtration layer comprises fibers having an average diameter of about 5 μm or less.

13. The filter media of claim 1 , wherein the fine fiber filtration layer comprises fibers having an average diameter of about 1.5 μm or less.

14. A filter media, comprising:

a fine fiber filtration layer comprising a plurality of waves having peaks and troughs in a waved configuration; and

a coarse support layer that holds the fine fiber filtration layer in the waved configuration and maintains separation of peaks and troughs of adjacent waves of the filtration layer, wherein the coarse support layer is formed from fibers having an average fiber diameter greater than an average fiber diameter of fibers that form the fine fiber filtration layer;

wherein the filter media has a DOP alpha value of greater than about 9 (mm H 2 O) −1 at 60 minutes, wherein the DOP alpha value is calculated according to the following formula α=−100 log(C/C 0 )/DP, wherein DP is the pressure drop expressed in units of mm H 2 O.

15. The filter media of claim 14 , wherein the fine fiber filtration layer is electrostatically charged.

16. A filter media, comprising:

a fine fiber filtration layer comprising a plurality of waves having peaks and troughs in a waved configuration; and

a coarse support layer that holds the fine fiber filtration layer in the waved configuration and maintains separation of peaks and troughs of adjacent waves of the filtration layer, wherein the coarse support layer is formed from fibers having an average fiber diameter greater than an average fiber diameter of fibers that form the fine fiber filtration layer;

wherein the filter media has a pressure drop from NaCl loading of less than 30 mm H 2 O at 60 minutes, wherein NaCL loading is measured using an average particle size of 0.26 micron mass mean diameter onto a 100 cm 2 sample at a flow rate of 76 lpm.

17. The filter media of claim 16 , wherein the fine fiber filtration layer is electrostatically charged.

18. The filter media of claim 16 , wherein the filter media has an initial pressure drop of less than about 10.0 mm H 2 O.

19. The filter media of claim 16 , wherein the filter media has an initial DOP penetration of less than about 90% and a penetration at 60 minutes of DOP loading of less than about 95%.

20. The filter media of claim 16 , wherein the filter media has an initial DOP penetration of less than about 30% and a penetration at 60 minutes of DOP loading of less than about 65%.

21. The filter media of claim 16 , wherein the amplitude of the peaks and troughs is between about 0.1″ and about 4.0″.

22. The filter media of claim 16 , wherein the amplitude of the peaks and troughs is between about 0.1″ and about 1.0″.

23. The filter media of claim 16 , wherein the filter media has 2 to 6 waves per inch.

24. The filter media of claim 16 , wherein the filter media has about 3 waves per inch.

25. The filter media of claim 16 , wherein the fine fiber filtration layer comprises fibers having an average diameter of about 5 μm or less.

26. The filter media of claim 16 , wherein the fine fiber filtration layer comprises fibers having an average diameter of about 1.5 μm or less.

27. A facemask comprising the filter media of claim 16 .

28. A respirator comprising the filter media of claim 16 .

Assignments (2)
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Jan 4, 2022
From: HOLLINGSWORTH & VOSE COMPANY
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 058649/0109 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2010
From: HEALEY, DAVID T.; GAHAN, RICHARD
To: HOLLINGSWORTH & VOSE COMPANY
Reel/Frame 025032/0428 →
Continuity (4)
Continuation In Part 12038049 · Feb 27, 2008
Provisional Application 60892025 · Feb 28, 2007
Provisional Application 60986626 · Nov 9, 2007
Related Publication 20090272084A1 · Nov 5, 2009