IP Library › Granted Patent US 10,717,031
Granted Patent B2
US 10,717,031 · App. 15/547,363 · Granted Jul 21, 2020

Barrier vent assembly

Inventors: Jonathan Lauden (Minneapolis, MN); Michael J. Hebert (St. Paul, MN); Daniel Dotzler (Webster, MN); Daniel Little (Minnetonka, MN)
Assignee: Donaldson Company, Inc.
B01D46/003B01D39/1623B01D39/2017B01D39/2024B01D46/2403B01D61/147B01D63/087B01D71/36B01D2239/0216B01D2239/0421B01D2279/35
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Quick Facts
Patent No.
US 10,717,031
App. No.
15/547,363
Granted
Jul 21, 2020
Kind
B2
Abstract

The technology disclosed herein relates to a vent assembly having a vent housing that defines a first airflow pathway, a second airflow pathway, and a third airflow pathway. The first airflow pathway is configured for fluid communication with an interior of an enclosure. The second airflow pathway is configured for fluid communication with the external environment, and the third airflow pathway extends between the first airflow pathway and the second airflow pathway. A membrane is coupled to the vent housing such that the second airflow pathway and the third airflow pathway are in communication through the membrane. Coalescing filter media is disposed within the vent housing such that the third airflow pathway and the first airflow pathway are in communication through the coalescing filter media. The vent assembly defines a spacing region between the coalescing media and the membrane.

Claims (29)

1. A vent assembly comprising:

a vent housing defining:

a first airflow pathway configured for fluid communication with an interior of an enclosure;

a second airflow pathway configured for fluid communication with the environment external to the vent housing; and

a third airflow pathway extending between the first airflow pathway and the second airflow pathway;

a membrane coupled to the vent housing such that the second airflow pathway and the third airflow pathway are in communication through the membrane;

coalescing filter media disposed within the vent housing such that the third airflow pathway and the first airflow pathway are in communication through the coalescing filter media, wherein the coalescing filter media comprises a stack of at least 25 disks of coalescing filter media configured to define an elongate, vertical coalescing region, and wherein the coalescing filter media is oleophobic and each layer of coalescing filter media has a maximum particle filtration efficiency of 10%; and

the vent assembly defining a spacing region between the coalescing media and the membrane.

2. The vent assembly of claim 1 , wherein the coalescing filter media comprises a plurality of layers of synthetic filter media.

3. The vent assembly of claim 2 , wherein the plurality of layers of synthetic filter media comprises at least 50 layers of filter media.

4. The vent assembly of claim 2 , wherein each layer synthetic filter media is substantially unbonded to adjacent layers of synthetic filter media.

5. The vent assembly of claim 2 , wherein the synthetic filter media comprises a secondary layer of coalescing filter media, wherein the secondary layer of coalescing filter media has a particle filtration efficiency of at least 48%.

6. The vent assembly of claim 1 , wherein the coalescing filter media comprises bi-component fibers.

7. The vent assembly of claim 1 , wherein the coalescing filter media lacks a binder material.

8. The vent assembly of claim 1 , wherein the coalescing filter media comprises glass microfibers.

9. The vent assembly of claim 1 , wherein the coalescing filter media has an overall particle filtration efficiency of at least 95%.

10. The vent assembly of claim 1 , further comprising a media spacer between the coalescing filter media and the membrane, wherein the media spacer is configured to prevent contact between the coalescing filter media and the membrane and configured to define a portion of the third airflow pathway.

11. The vent assembly of claim 1 , wherein the media spacer compresses the coalescing filter media within the housing.

12. The vent assembly of claim 1 , wherein the housing defines perimeter openings such that the second airflow pathway extends from the membrane to the external environment through the perimeter openings.

13. The vent assembly of claim 1 , further comprising a cap coupled to the housing, wherein the cap is configured to shield a flow face of the membrane from the environment.

14. A method of making a vent assembly, comprising:

forming a vent housing having a first end and a second end, the vent housing defining an airflow pathway extending from the first end to the second end;

stacking at least 25 disks of coalescing filter media in the airflow pathway within the housing to define an elongate, vertical coalescing region, wherein the coalescing filter media is oleophobic and each layer of coalescing filter media has a maximum particle filtration efficiency of 10%;

inserting a media spacer to contain the plurality of layers of coalescing filter media in the housing; and

coupling a membrane to the vent housing in a spaced relationship from the coalescing filter media.

15. The method of claim 14 , further comprising coupling a cap to the housing to shield a flow face of the membrane from the environment.

16. The method of claim 14 , wherein each layer of stacked coalescing filter media is substantially unbonded to adjacent layers of stacked coalescing filter media.

17. The method of claim 14 , wherein the coalescing filter media lacks a binder material.

18. The method of claim 14 , wherein the coalescing filter media comprises glass microfibers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2020
From: LAUDEN, JONATHAN; HEBERT, MICHAEL J.; DOTZLER, DANIEL J.; LITTLE, DANIEL P.
To: DONALDSON COMPANY, INC.
Reel/Frame 052306/0146 →
Continuity (2)
Provisional Application 62108932 · Jan 28, 2015
Related Publication 20180021713A1 · Jan 25, 2018
Cited By (2)
US 12,194,402 US 12,708,909