IP Library Granted Patent US 9,579,595
Granted Patent B2
US 9,579,595 · App. 12/211,444 · Granted Feb 28, 2017

Transmission oil filter comprising a melt blown layer at the downstream side

Inventors: Claudia Hüppchen (Stuttgart, DE); Harald Banzhaf (Stuttgart, DE); Gunnar-Marcel Klein (Velbert-Langenberg, DE); Thorsten Schmid (Stuttgart, DE)
Assignee: MANN+HUMMEL GMBH
B01D39/2003B01D39/1623B01D27/14B01D29/03B01D2239/0668
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Quick Facts
Patent No.
US 9,579,595
App. No.
12/211,444
Granted
Feb 28, 2017
Kind
B2
Abstract

A transmission oil filter has a filtration layer of fiberglass medium and, downstream of the filtration layer, a melt blown layer applied to the filtration layer for preventing or reducing introduction of fiberglass into the liquid to be filtered. The filtration layer of fiber glass medium has two faces and a spunbond layer is attached for improved handling of the filtration layer of fiberglass medium to at least one of the two faces.

Claims (49)

1. A transmission oil filter comprising

a filtration layer of fiberglass medium having at least 90 percent by weight of fiberglass, wherein said filtration layer has a fiber diameter of 1 micrometer to 8 micrometers, a layer thickness of 0.3 mm to 1.0 mm, and a fabric weight of 40 to 110 GSM, and

downstream of said filtration layer, a melt blown layer is arranged directly onto a downstream face of said fiberglass filtration layer,

wherein said melt blown layer is not a filtration layer, said melt blown layer having at least 90 percent by weight polyester fibers of a diameter of 1 micrometer to 30 micrometers, a layer thickness of 0.2 mm to 0.7 mm, and a fabric weight of 20 GSM to 60 GSM,

wherein the melt blown layer has a lower median fabric weight, and a lower median layer thickness than the filtration fiberglass layer, whereby the meltblown layer does not have a filtration effect relative to the filtration fiberglass layer, said melt blown layer serves only for retaining fiberglass or fiberglass medium pieces from the filtration layer in the oil filter, preventing or reducing introduction of fiberglass into a liquid to be filtered.

2. The transmission oil filter according to claim 1 , wherein

said fiberglass filtration layer is a fiberglass layer without pulp fibers.

3. The transmission oil filter according to claim 2 , wherein

said filtration layer of fiberglass medium has two faces and

wherein a spunbond nonwoven layer is attached onto an upstream face of said fiberglass filtration layer for improved handling of said filtration layer.

4. The transmission oil filter according to claim 3 , wherein

said spunbond layer has a thickness of 0.05 mm to 0.2 mm and a fabric weight of 10 grams per square meter to 50 grams per square meter.

5. The transmission oil filter according to claim 2 , wherein

said fiberglass medium has a fiber diameter between 1 micrometer and 8 micrometers and a fiber length between 100 micrometer and 1,000 micrometers.

6. The transmission oil filter according to claim 2 , wherein

said melt blown layer is laminated onto said filtration layer of fiberglass medium.

7. The transmission oil filter according to claim 2 , wherein

said melt blown layer is directly applied by melt blowing onto said filtration layer of fiberglass medium.

8. The transmission oil filter according to claim 1 , wherein

the melt blown layer has a larger median fiber diameter than the median fiber diameter of the filtration fiberglass layer, whereby the meltblown layer does not have a filtration effect relative to the filtration fiberglass layer,

wherein said melt blown layer serves only for retaining fiberglass or fiberglass medium pieces from the filtration layer in the oil filter, for preventing or reducing introduction of fiberglass into the liquid to be filtered.

9. The transmission oil filter according to claim 8 , wherein

the median fiber diameter of the melt blown layer is at least twice the median fiber diameter of the filtration fiberglass layer,

whereby the meltblown layer does not have a filtration effect relative to the filtration fiberglass layer,

wherein said melt blown layer serves only for retaining fiberglass or fiberglass medium pieces from the filtration layer in the oil filter, for preventing or reducing introduction of fiberglass into the liquid to be filtered.

10. The transmission oil filter according to claim 9 , wherein

the median fiber diameter of the melt blown layer is approximately triple the median fiber diameter of the filtration fiberglass layer.

11. A transmission oil filter comprising

a filtration layer of fiberglass medium having at least 90 percent by weight of fiberglass, wherein said filtration layer has a fiber diameter of 1 micrometer to 8 micrometers, a layer thickness of 0.3 mm to 1.0 mm, and a fabric weight of 40 to 110 GSM, and

a spunbond nonwoven layer arranged at and attached onto an upstream face of the fiberglass filtration layer for improved handling of the filtration layer;

a second spunbond nonwoven layer arranged at and attached onto a downstream face of the fiberglass filtration layer for improved handling of the filtration layer;

a melt blown layer is arranged at and attached onto a downstream face of the second spunbond nonwoven layer;

wherein said melt blown layer is not a filtration layer, said melt blown layer having at least 90 percent by weight polyester fibers of a diameter of 1 micrometer to 30 micrometers, a layer thickness of 0.2 mm to 0.7 mm, and a fabric weight of 20 GSM to 60 GSM,

wherein the melt blown layer has a lower median fabric weight, and a lower median layer thickness than the filtration fiberglass layer, whereby the meltblown layer does not have a filtration effect relative to the filtration fiberglass layer, said melt blown layer serves only for retaining fiberglass or fiberglass medium pieces from the filtration layer in the oil filter, preventing or reducing introduction of fiberglass into a liquid to be filtered.

12. The transmission oil filter according to claim 11 , wherein

said melt blown layer is laminated onto said second spunbond layer.

13. The transmission oil filter according to claim 11 , wherein

said melt blown layer is directly applied by melt blowing onto said second spunbond layer.

14. The transmission oil filter according to claim 11 , wherein

said spunbond nonwoven layers each have a thickness of 0.05 mm to 0.2 mm and a fabric weight of 10 grams per square meter to 50 grams per square meter.

15. The transmission oil filter according to claim 11 , wherein

the melt blown layer has a larger median fiber diameter than the median fiber diameter of the filtration fiberglass layer, whereby the meltblown layer does not have a filtration effect relative to the filtration fiberglass layer,

wherein said melt blown layer serves only for retaining fiberglass or fiberglass medium pieces from the filtration layer in the oil filter, for preventing or reducing introduction of fiberglass into the liquid to be filtered.

16. The transmission oil filter according to claim 15 , wherein

the median fiber diameter of the melt blown layer is at least twice the median fiber diameter of the filtration fiberglass layer,

whereby the meltblown layer does not have a filtration effect relative to the filtration fiberglass layer,

wherein said melt blown layer serves only for retaining fiberglass or fiberglass medium pieces from the filtration layer in the oil filter, for preventing or reducing introduction of fiberglass into the liquid to be filtered.

17. The transmission oil filter according to claim 16 , wherein

the median fiber diameter of the melt blown layer is approximately triple the median fiber diameter of the filtration fiberglass layer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2009
From: BANZHAF, HARALD; HUEPPCHEN, CLAUDIA; KLEIN, GUNNAR-MARCEL; SCHMID, THORSTEN
To: MANN+HUMMEL GMBH
Reel/Frame 022341/0280 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2009
From: KLEIN, GUNNAR-MARCEL; BANZHAF, HARALD
To: MANN+HUMMEL GMBH
Reel/Frame 022140/0720 →
Priority Claims (1)
DE 20 2007 013 215 U · Sep 19, 2007 · national
Continuity (1)
Related Publication 20090120868A1 · May 14, 2009