INTEGRATED MANIFOLD SYSTEM
20210387025 ยท 2021-12-16
Inventors
Cpc classification
F17C2205/0332
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2223/036
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2223/0123
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2221/031
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2201/058
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/0146
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2201/0109
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C13/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2221/011
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2270/0754
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2201/056
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2270/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An integrated manifold system is disclosed that combines in a single, compact, unitary assembly a one-piece, machined manifold for connecting air supply cylinders with a first stage regulator and recharge port. The manifold body has at least one bottle port configured to removably receive a bottle of pressurized air, a first stage regulator chamber, a quick disconnect fitting port, an air channel in fluid communication with the at least one bottle port and the first stage regulator chamber, and an outlet channel in fluid communication with the first stage regulator chamber.
Claims
1. An air supply system comprising: a one-piece manifold body having: at least one bottle port configured to removably receive a bottle of pressurized air; a first stage regulator chamber configured to receive a first stage regulator and to position said first stage regulator so that said first stage regulator extends horizontally through said first stage regulator chamber from a front side of said manifold body to a back side of said manifold body opposite said front side; a quick disconnect fitting port; an air channel in fluid communication with said at least one bottle port and said first stage regulator chamber; and an outlet channel in fluid communication with said first stage regulator chamber.
2. The air supply system of claim 1, further comprising a first stage regulator operatively engaging said first stage regulator chamber.
3. The air supply system of claim 2, wherein said first stage regulator extends through said first stage regulator chamber from a front side of said manifold body to a back side of said manifold body opposite said front side.
4. The air supply system of claim 1, further comprising a mask hose quick disconnect in fluid communication with said outlet channel and configured to removably receive an air hose.
5. The air supply system of claim 1, further comprising an on/off valve operatively engaging said air channel to regulate air flow between said at least one bottle port and said first stage regulator chamber.
6. The air supply system of claim 5, wherein a manually operable hand wheel of said on/off valve extends outward from said one-piece manifold body from a bottom side of said one-piece manifold body.
7. The air supply system of claim 6, wherein said on/off valve extends angularly outward from said one-piece manifold body at a non-vertical angle.
8. The air supply system of claim 5, further comprising a quick disconnect fitting removably mounted in said quick disconnect fitting port and configured for connection to an air supply.
9. The air supply system of claim 8, said quick disconnect fitting port defining an open head space between a distal end of said quick disconnect fitting and an internal wall of said quick disconnect fitting port, and said quick disconnect fitting port further comprising an air outlet in fluid communication with an air inlet of said first stage regulator chamber.
10. The air supply system of claim 9, further comprising an air inlet in said quick disconnect fitting port positioned to allow airflow between said head space and said on/off valve.
11. The air supply system of claim 9, further comprising an auxiliary gauge port extending from said head space and defining an opening through a top surface of said one-piece manifold body, wherein said opening through the top surface of said one-piece manifold body is configured to removably receive an auxiliary data gauge.
12. The air supply system of claim 8, wherein said quick disconnect fitting extends upward from a top surface of said one-piece manifold body and toward a back side of said one-piece manifold body.
13. The air supply system of claim 1, further comprising a high pressure relief valve in fluid communication with said air channel.
14. The air supply system of claim 13, wherein said high pressure relief valve extends vertically downward in a bottom surface of said one-piece manifold body.
15. An air supply system, comprising: a one-piece manifold body having: at least one bottle port configured to removably receive a bottle of pressurized air; a first stage regulator chamber configured to receive a first stage regulator and to position said first stage regulator so that said first stage regulator extends horizontally through said first stage regulator chamber from a front side of said manifold body to a back side of said manifold body opposite said front side; a quick disconnect fitting port; an air channel in fluid communication with said at least one bottle port and said first stage regulator chamber; and an outlet channel in fluid communication with said first stage regulator chamber; a first stage regulator operatively engaging said first stage regulator chamber; a mask hose quick disconnect in fluid communication with said outlet channel and configured to removably receive an air hose; and an on/off valve operatively engaging said air channel to regulate air flow between said at least one bottle port and said first stage regulator.
16. The air supply system of claim 15, wherein said first stage regulator extends through said first stage regulator chamber from a front side of said manifold body to a back side of said manifold body opposite said front side.
17. The air supply system of claim 15, wherein said on/off valve extends outward from said one-piece manifold body from a bottom side of said one-piece manifold body.
18. The air supply system of claim 17, wherein said on/off valve extends angularly outward from said one-piece manifold body at a non-vertical angle.
19. The air supply system of claim 15, further comprising a quick disconnect fitting removably mounted in said quick disconnect fitting port and configured for connection to an air supply.
20. The air supply system of claim 19, said quick disconnect fitting port further defining an open head space between a distal end of said quick disconnect fitting and an internal wall of said quick disconnect fitting port, and said quick disconnect fitting port further comprising an air outlet in fluid communication with an air inlet of said first stage regulator chamber.
21. The air supply system of claim 20, further comprising an air inlet in said quick disconnect fitting port positioned to allow airflow between said head space and said on/off valve.
22. The air supply system of claim 20, further comprising an auxiliary gauge port extending from said head space and defining an opening through a top surface of said one-piece manifold body, wherein said opening through the top surface of said one-piece manifold body is configured to removably receive an auxiliary data gauge.
23. The air supply system of claim 19, wherein said quick disconnect fitting extends upward from a top surface of said one-piece manifold body and toward a back side of said one-piece manifold body.
24. The air supply system of claim 15, further comprising a high pressure relief valve in fluid communication with said air channel.
25. The air supply system of claim 24, wherein said high pressure relief valve extends vertically downward in a bottom surface of said one-piece manifold body.
26. The air supply system of claim 1, wherein said air channel extends horizontally through said manifold body at a normal angle to said first stage regulator chamber, and wherein said at least one bottle port extends vertically away from said air channel.
27. The air supply system of claim 15, wherein said air channel extends horizontally through said manifold body at a normal angle to said first stage regulator chamber, and wherein said at least one bottle port extends vertically away from said air channel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007] The accompanying drawings, which are included to provide further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the present invention and together with the below description, serve to explain the principles of the invention.
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0021] The invention summarized above may be better understood by referring to the following description, claims, and accompanying drawings. This description of an embodiment, set out below to enable one to practice an implementation of the invention, is not intended to limit the preferred embodiment, but to serve as a particular example thereof. Those skilled in the art should appreciate that they may readily use the conception and specific embodiments disclosed as a basis for modifying or designing other methods and systems for carrying out the same purposes of the present invention. Those skilled in the art should also realize that such equivalent assemblies do not depart from the spirit and scope of the invention in its broadest form.
[0022]
[0023] Such prior art assemblies have disadvantages for the operator, particularly when working in high-stress environments, as well as for the manufacturer or supplier of such systems. The various adapters necessary for attachment of the first stage regulator 20, the high pressure relief valve 16, and the recharge port 30 all create potential points of failure, and overall add weight to the system that the operator must carry. Moreover, such varied components add unnecessary complexity to the system which increases costs in materials and manufacturing.
[0024]
[0025] With continued reference to
[0026] As mentioned above, and with particular reference to
[0027] Thus, when on/off valve 170 is opened, full bottle pressure is introduced from bottle ports 112 into air channel 113, to head space 117a, through inlet 115a into quick disconnect fitting port 15, and from disconnect fitting port 15 through high pressure feed port 121 into first stage regulator 120.
[0028] With continued reference to
[0029] Preferably blanking plugs 101 are removably positioned in manifold body 110 at opposite ends of high pressure air channel 113 which, when fully installed, seal air channel 113. Such blanking plugs 101 may provide access to air channel 113, thus allowing additional components (sensors, etc.) to be added to manifold system 100.
[0030] With continued reference to
[0031] Quick disconnect 140 includes a fitting 141 configured to receive a quick connect adapter from a hose that may supply high pressure air to manifold system 100, and includes a check valve (not shown) of standard configuration to allow airflow into quick disconnect fitting port while preventing air from escaping in the opposite direction. Quick disconnect 140 is sized such that when it is positioned in quick disconnect fitting port 115, the base 142 of quick disconnect 140 is spaced apart from an inner wall of disconnect fitting port 115 so as to define a head space 115b, which as explained above receives high pressure air through inlet 115a (
[0032] Optionally and if desired for certain operations, an adapter (not shown) may alternatively be provided having a bottom portion configured identical to the bottom portion of quick disconnect 140 for removable fitment within quick disconnect fitting port 115, which adapter may then connect, such as by way of a hose, to a remote quick disconnect fitting 140 (such as where a refilling air supply is positioned remotely from an operator that is using the improved manifold system 100).
[0033] Still further, and as best viewed in
[0034] As explained above, and with particular reference to
[0035] As shown in
[0036] As mentioned above, manifold system 100 includes low pressure hose attachment 180 removably attached to outlet channel 118 in manifold body 110 and configured for attachment to a hose to deliver breathable air from the low pressure outlet side of first stage regulator 120 to, by way of non-limiting example, a second stage regulator on an operator's mask. Low pressure hose attachment 180 is positioned to one side of male quick disconnect 140. A quick disconnect fitting of standard configuration may be included on low pressure hose attachment 180, allowing quick connect and quick disconnect of a supply hose (not shown) that, in turn, ultimately delivers breathable air to the operator through, by way of non-limiting example, a respirator mask.
[0037] Similarly, low pressure relief valve 190 is configured to allow excess pressure in the low pressure outlet side of first stage regulator 120 to automatically be bled from the low pressure side of first stage regulator 120. Low pressure relief valve 190 is attached to relief valve channel 119 in manifold body 110, which relief valve channel 119 is in fluid communication with the low pressure outlet side of first stage regulator 120. Low pressure relief valve 190 is positioned to a second side of male quick disconnect 140 opposite low pressure hose attachment 180.
[0038] The combination disclosed herein of a single, compact, unitary assembly of a manifold body for connecting air supply bottles with a first stage regulator is a significant improvement over previously known systems, as it reduces potential points of failure in the system, reduces overall weight of the system, and eases the burden on the operator by not requiring them to carry and keep track of multiple, separate components for these features. Further beneficial features of the manifold system described herein likewise include the addition of a male quick disconnect 140 enabling cylinder recharge and alternative air supply to that provided by the bottles, an on/off valve 170, and pressure safety devices again all in a single, compact assembly. Previously known systems have typically required separate assemblies with various flow lines among them to achieve these varied functions of a respirator system, and such dispersed components have added size and weight to those systems that make it difficult for the user to operate, particularly in stressful environments. Those skilled in the art will appreciate that a system configured in accordance with the invention will significantly reduce the stress experienced by an operator in a dangerous environment, while ensuring that they have ready and continuous access to a reliable breathable air delivery system.
[0039] Having now fully set forth the preferred embodiments and certain modifications of the concept underlying the present invention, various other embodiments as well as certain variations and modifications of the embodiments herein shown and described will obviously occur to those skilled in the art upon becoming familiar with said underlying concept. By way of non-limiting example, and with reference to