IP Library Granted Patent US 9,056,268
Granted Patent B2
US 9,056,268 · App. 13/027,119 · Granted Jun 16, 2015

Liquid filtration media, filter elements and methods

Inventors: Derek O. Jones (Andover, MN); Keh B. Dema (Plymouth, MN); Stephen M. Larsen (Inver Grove Heights, MN); Mike J. Madsen (Chaska, MN); Andrew J. Dallas (Lakeville, MN); Yehya A. Elsayed (St. Paul, MN); Chuanfang Yang (Eden Prairie, MN)
Assignee: Donaldson Company, Inc.
B01D39/2024B01D2201/18
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Quick Facts
Patent No.
US 9,056,268
App. No.
13/027,119
Granted
Jun 16, 2015
Kind
B2
Abstract

A filter and filter media configured and arranged for placement in a fuel stream is disclosed. The filter and filter media allow for filtering of liquid fuels, such as diesel fuel. In certain embodiments the filter media includes a media fiber (such as glass) and a binder fiber (such as bicomponent) that combine to create a media structure having low solidity and relatively low compressibility, and which contain a pore structure that avoids premature fouling of the filter by fuel degradation products.

Claims (25)

1. A filter for filtering liquid fuels comprising:

filter media configured and arranged for placement in a liquid stream, the filter media comprising an upstream media layer and a downstream media layer, the upstream and downstream media layers being distinct from one another, wherein:

a) the upstream layer containing media fiber having an average diameter of less than 15 microns and a binder fiber having an average diameter greater than the media fiber; and

b) the downstream layer containing media fiber having an average diameter different than the average diameter of the media fiber in the upstream layer;

wherein the mode pore size of the upstream layer is at least 20 percent greater than the mode pore size of the downstream layer; and

wherein the mean flow pore size of the media in the upstream portion is less than 90 percent of the mean pore flow size of the media in the downstream layer

wherein the filter is configured so that upon exposure to a fuel stream containing fuel degradation products, the fuel degradation products are primarily retained in the upstream media layer and wherein upon exposure to a fuel stream containing particulate contaminants, the particulate contaminants are primarily retained in the downstream media layer.

2. The filter for filtering liquid fuels of claim 1 , wherein the media fiber of the upstream layer comprises glass fiber and the media fiber of the downstream layer comprises cellulose.

3. The filter for filtering liquid fuels of claim 1 , wherein the mode pore size of the upstream layer is at least 40 percent greater than the mode pore size of the downstream layer.

4. The filter for filtering liquid fuels of claim 1 , wherein the mean flow pore size of the upstream layer is less than 75 percent of the mean pore flow size of the downstream layer.

5. The filter for filtering liquid fuels of claim 1 , wherein the mode pore size of the upstream layer is at least 150 percent larger than the mode pore size of the downstream layer.

6. The filter of claim 1 , wherein the upstream layer has a pore size distribution geometric standard deviation of greater than 2.5.

7. The filter of claim 1 , wherein the upstream media layer has a mean flow pore size less than 10 microns.

8. The filter of claim 1 , wherein the upstream media layer has a mode pore size greater than 15 microns.

9. The filter of claim 1 , wherein the media fiber in the upstream media layer comprises glass fiber.

10. The filter of claim 1 , wherein the media fiber in the downstream media layer comprises cellulose fiber.

11. A filter comprising:

filter media comprising an upstream media layer and a downstream media layer, wherein:

a) the upstream media layer has a pore size distribution geometric standard deviation of greater than 2.5 and comprises media fiber having an average diameter of less than 15 microns;

b) the downstream layer contains media fiber having an average diameter different than the average diameter of the media fiber in the upstream layer;

wherein the mode pore size of the upstream layer is at least 40 percent greater than the mode pore size of the downstream layer; and

wherein the mean flow pore size of the media in the upstream layer is less than 90 percent of the mean pore flow size of the media in the downstream layer;

wherein the filter is configured so that upon exposure to a fuel stream containing fuel degradation products, the fuel degradation products are primarily retained in the upstream media layer and wherein upon exposure to a fuel stream containing particulate contaminants, the particulate contaminants are primarily retained in the downstream media layer.

12. The filter of claim 11 , wherein the upstream media layer has a mean flow pore size less than 10 microns.

13. The filter of claim 11 , wherein the upstream media layer has a mode pore size greater than 15 microns.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2011
From: JONES, DEREK O.; DEMA, KEH B.; LARSEN, STEPHEN M.; MADSEN, MIKE J.; DALLAS, ANDREW J.; ELSAYED, YEHYA A.; YANG, CHUANFANG
To: DONALDSON COMPANY, INC.
Reel/Frame 026385/0378 →
Continuity (2)
Provisional Application 61304232 · Feb 12, 2010
Related Publication 20110198280A1 · Aug 18, 2011