IP Library › Granted Patent US 7,968,176
Granted Patent B2
US 7,968,176 · App. 11/822,110 · Granted Jun 28, 2011

Air filter material

Assignee: Dynic Corporation
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Quick Facts
Patent No.
US 7,968,176
App. No.
11/822,110
Granted
Jun 28, 2011
Kind
B2
Abstract

An air filter material includes a laminate of an air inlet layer and an air outlet layer, and has a mean flow pore size of 20 μm to 40 μm, a minimum pore size of 2.4 μm to 3.8 μm, and a maximum pore size of 80 μm or less. The air inlet layer is a needle punched nonwoven fabric layer having an areal fiber weight of 55 g/m 2 to 100 g/m 2 . The air outlet layer is a laminated spunlace nonwoven fabric made by laminating at least two or more spunlace nonwoven fabric layers having an areal fiber weight of 20 g/m 2 to 60 g/m 2 , a mean flow pore size of 50 μm to 90 μm, a minimum pore size of 3.0 μm to 10.0 μm, and a maximum pore size of 180 μm or less.

Claims (19)

1. An air filter material for an air cleaner for an automobile engine, the air filter material comprising:

a laminate of an air inlet layer and an air outlet layer, having a mean flow pore size of 20 μm to 40 μm, a minimum pore size of 2.4 μm to 3.8 μm, and a maximum pore size of 80 μm or less,

wherein:

the air inlet layer is a needle punched nonwoven fabric layer having an areal fiber weight of 65 g/m 2 to 90 g/m 2 ,

the air outlet layer is a laminated spunlace nonwoven fabric formed by laminating at least two or more spunlace nonwoven fabric layers having an areal fiber weight of 30 g/m 2 to 40 g/m 2 , a mean flow pore size of 50 μm to 75 μm, a minimum pore size of 4.0 μm to 8.0 μm, and a maximum pore size of 150 μm or less, and

the air filter material has a thickness of 1.5 mm to 1.9 mm.

2. The air filter material according to claim 1 , further comprising a cotton layer having an areal fiber weight of 20 g/m 2 to 60 g/m 2 , the cotton layer being interposed between the air outlet layer and the air inlet layer, or between any two of the spunlace layers that constitute the air outlet layer.

3. The air filter material according to claim 2 , wherein the cotton layer has an areal fiber weight of 30 g/m 2 to 40 g/m 2 , a mean flow pore size of 50 μm to 80 μm, a minimum pore size of 4 μm to 8 μm, and a maximum pore size of 150 μm or less.

4. The air filter material according to claim 1 , further comprising viscous oil applied to a surface of an air inlet side of the air filter material.

5. The air filter material according to claim 1 , wherein the air outlet layer and the air inlet layer are laminated in direct contact with each other.

6. The air filter material according to claim 1 , containing a binder resin in an amount of 15 g/m 2 to 60 g/m 2 .

7. The air filter material according to claim 6 , containing the binder resin in an amount of 20 g/m 2 to 50 g/m 2 .

8. The air filter material according to claim 1 , the air outlet layer being a laminated spunlace nonwoven fabric formed by laminating at least three or more spunlace nonwoven layers.

9. An air filter material for an air cleaner for an automobile engine, the air filter material comprising:

a laminate of an air inlet layer and an air outlet layer, having a mean flow pore size of 20 μm to 40 μm, a minimum pore size of 2.4 μm to 3.8 μm, and a maximum pore size of 80 μm or less,

wherein:

the air inlet layer is a needle punched nonwoven fabric layer having an areal fiber weight of 65 g/m 2 to 90 g/m 2 ,

the air outlet layer is a laminated spunlace nonwoven fabric formed by laminating at least two or more spunlace nonwoven fabric layers having an areal fiber weight of 30 g/m 2 to 40 g/m 2 , a mean flow pore size of 50 μm to 75 μm, a minimum pore size of 4.0 μm to 8.0 μm, and a maximum pore size of 150 μm or less, fibers making up the at least two or more spunlace nonwoven fabric layers having a diameter of 0.6 dT to 1.6 dT, and

the air filter material has a thickness of 1.5 mm to 1.9 mm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2007
From: UMEZU, NORIO; MIZUI, KAZUMASA
To: DYNIC CORPORATION
Reel/Frame 019542/0355 →
Continuity (1)
Related Publication 20080070022A1 · Mar 20, 2008