IP Library Granted Patent US 9,441,739
Granted Patent B2
US 9,441,739 · App. 14/930,830 · Granted Sep 13, 2016

Mixed media orbital valve

Inventors: Sebastien Weber (Irvine, CA); Tim Birbeck (Torrance, CA); Nguyen Tram (Chino Hills, CA); Razmik B. Boodaghians (Glendale, CA); Kevin Huang (Los Angeles, CA)
Assignee: MAG Aerospace Industries, LLC
F16K3/085E03F1/006F16K3/0209F16K3/0254F16K3/08
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Quick Facts
Patent No.
US 9,441,739
App. No.
14/930,830
Granted
Sep 13, 2016
Kind
B2
Abstract

Embodiments of the invention described herein thus provide improved flush valves that are designed with improved venting features and improved inlet designs. The described venting features and inlet designs, either alone or in combination, can help prevent ingestion of waste into the interior of the valve.

Claims (36)

1. A mixed media orbital valve, comprising:

(a) a valve housing comprising an inlet and an outlet;

(b) a flush plate housed within the valve housing and interposed between the inlet and the outlet, the flush plate having a media bore hole that, when actuated, either rotates (i) into an alignment position with the inlet and the outlet in order to allow passage of media through the media bore hole or (ii) to a nonalignment position with the inlet and the outlet in order to block the media bore hole;

(c) one or more valve seals positioned at a seal interface between the valve housing and the flush plate;

(d) a venting system comprising a first vent positioned such that it remains unimpeded by any actuation of the flush plate, and a second vent positioned adjacent the seal interface of the flush plate and the one or more valve seals, wherein a pressure differential that would otherwise encourage media ingestion is alleviated via the venting system such that vented air is used to further drive flush media from any gap that is created between the one or more valve seals and the flush plate during actuation of the flush plate.

2. A mixed media orbital valve, comprising:

(a) a valve housing comprising an inlet and an outlet;

(b) a flush plate housed within the valve housing and interposed between the inlet and the outlet, the flush plate having a media bore hole that, when actuated, either rotates (i) into an alignment position with the inlet and the outlet in order to allow passage of media through the media bore hole or (ii) to a nonalignment position with the inlet and the outlet in order to block the media bore hole;

(c) one or more valve seals positioned at a seal interface between the valve housing and the flush plate;

(d) a venting system comprising a first vent positioned such that it remains unimpeded by any actuation of the flush plate, and a second vent positioned adjacent the seal interface of the flush plate and the one or more valve seals, wherein the mixed media orbital valve is mounted between two portions of a sewer pipe connecting a waste-receiving toilet bowl and a main waste tank.

3. A mixed media orbital valve, comprising:

(a) a valve housing comprising an inlet and an outlet;

(b) a flush plate housed within the valve housing and interposed between the inlet and the outlet, the flush plate having a media bore hole that, when actuated, either rotates (i) into an alignment position with the inlet and the outlet in order to allow passage of media through the media bore hole or (ii) to a nonalignment position with the inlet and the outlet in order to block the media bore hole;

(c) one or more valve seals positioned at a seal interface between the valve housing and the flush plate;

(d) a venting system comprising a first vent positioned such that it remains unimpeded by any actuation of the flush plate, and a second vent positioned adjacent the seal interface of the flush plate and the one or more valve seals, wherein the valve is mounted on an aircraft vacuum toilet system.

4. A mixed media orbital valve, comprising:

(a) a valve housing comprising an inlet and an outlet;

(b) a flush plate housed within the valve housing and interposed between the inlet and the outlet, the flush plate having a media bore hole that, when actuated, either rotates (i) into an alignment position with the inlet and the outlet in order to allow passage of media through the media bore hole or (ii) to a nonalignment position with the inlet and the outlet in order to block the media bore hole;

(c) one or more valve seals positioned at a seal interface between the valve housing and the flush plate;

(d) a venting system comprising a first vent positioned such that it remains unimpeded by any actuation of the flush plate, and a second vent positioned adjacent the seal interface of the flush plate and the one or more valve seals, wherein the second vent draws in an ambient airstream that counteracts momentum of any media that would otherwise penetrate the seal interface.

5. A mixed media orbital valve, comprising:

(a) a valve housing comprising an inlet and an outlet;

(b) a flush plate housed within the valve housing and interposed between the inlet and the outlet, the flush plate having a media bore hole that, when actuated, either rotates (i) into an alignment position with the inlet and the outlet in order to allow passage of media through the media bore hole or (ii) to a nonalignment position with the inlet and the outlet in order to block the media bore hole;

(c) one or more valve seals positioned at a seal interface between the valve housing and the flush plate;

(d) a venting system comprising a first vent positioned such that it remains unimpeded by any actuation of the flush plate, and a second vent positioned adjacent the seal interface of the flush plate and the one or more valve seals, wherein the second vent provides a pathway between a valve interior and ambient conditions outside the valve.

6. A mixed media orbital valve, comprising:

(a) a valve housing comprising an inlet and an outlet;

(b) a flush plate housed within the valve housing and interposed between the inlet and the outlet, the flush plate having a media bore hole that, when actuated, either rotates (i) into an alignment position with the inlet and the outlet in order to allow passage of media through the media bore hole or (ii) to a nonalignment position with the inlet and the outlet in order to block the media bore hole;

(c) one or more valve seals positioned at a seal interface between the valve housing and the flush plate;

(d) a venting system comprising a first vent positioned such that it remains unimpeded by any actuation of the flush plate, and a second vent positioned adjacent the seal interface of the flush plate and the one or more valve seals, wherein the second vent helps prevent media from entering the valve housing.

7. A mixed media orbital valve, comprising:

(a) a valve housing comprising an inlet and an outlet;

(b) a flush plate housed within the valve housing and interposed between the inlet and the outlet, the flush plate having a media bore hole that, when actuated, either rotates (i) into an alignment position with the inlet and the outlet in order to allow passage of media through the media bore hole or (ii) to a nonalignment position with the inlet and the outlet in order to block the media bore hole;

(c) one or more valve seals positioned at a seal interface between the valve housing and the flush plate;

(d) a vent positioned near the seal interface of the flush plate and the one or more valve seals, such that the vent is positioned closer to a location at which vacuum is configured to be delivered to the valve via the outlet than to an edge of the flush plate.

8. The valve of claim 7 , wherein the vent is positioned adjacent the seal interface of the flush plate and the one or more valve seals.

Assignments (2)
CHANGE OF NAME Recorded Jul 31, 2016
From: MAG AEROSPACE INDUSTRIES, INC.
To: MAG AEROSPACE INDUSTRIES, LLC
Reel/Frame 039515/0527 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 5, 2015
From: WEBER, SEBASTIEN; BIRBECK, TIM; TRAM, NGUYEN; BOODAGHIANS, RAZMIK; HUANG, KEVIN
To: MAG AEROSPACE INDUSTRIES, INC.
Reel/Frame 036973/0237 →
Continuity (2)
Continuation 13833426 · Mar 15, 2013
Related Publication 20160053898A1 · Feb 25, 2016