DISCHARGE CUT-OFF VALVE
20220065241 · 2022-03-03
Inventors
Cpc classification
F04B39/106
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B49/035
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B49/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/1073
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K3/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B49/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A discharge cut-off valve for an air compressor is provided. The discharge cut-off valve includes a hinged leaf valve within the recessed portion of a cylinder head manifold. The hinged leaf valve is rotatably anchored at a first end to a joint pin and is guided at a second end by a guide pin. In the on-load phase, the hinged leaf valve is seated over an unloader vent opening while a discharge vent opening is uncovered. In the off-load phase, the hinged leaf valve is seated over the discharge vent opening while the unloader vent opening is uncovered. As a result, compressed air is prevented from escaping the discharge port of the air compressor during the off-load phase, obviating the need for a down-stream turbo cut-off valve in an air dryer, for example.
Claims
1. A discharge cut-off valve for an air compressor comprising: a cylinder head manifold including a recessed portion, the recessed portion including a discharge vent opening and an unloader vent opening; a hinged leaf valve disposed within the recessed portion of the cylinder head manifold, the hinged leaf valve being rotatably anchored at a first end by a joint pin and being guided at a second end by a guide pin, wherein the hinged leaf valve is moveable between a first position during an on-load phase of the air compressor and a second position during an off-load phase of the air compressor, wherein, in the first position, the hinged leaf valve is seated over the unloader vent opening while the discharge vent opening is uncovered, and wherein, in the second position, the hinged leaf valve is seated over the discharge vent opening while the unloader vent opening is uncovered.
2. The discharge cut-off valve of claim 1 wherein the guide pin is movable along a groove in the recessed portion by actuation of an unloader valve.
3. The discharge cut-off valve of claim 1 wherein the cylinder head manifold includes a bearing face surrounding the recessed portion, the bearing face including a plurality of inlet openings for fluid communication between a suction chamber and a piston chamber.
4. The discharge cut-off valve of claim 3 wherein the recessed portion includes a depth at least equal to a thickness of the hinged leaf valve and is bordered by a sidewall that interconnects the recessed portion and the bearing face.
5. The discharge cut-off valve of claim 1 wherein the hinged leaf valve includes a straight edge portion opposite a rounded edge portion.
6. The discharge cut-off valve of claim 1 wherein the hinged leaf valve is biased in the first position.
7. An apparatus comprising: an air compressor including an inlet port, discharge port, an unloader port; an air dryer coupled to the discharge port of the air compressor, the air dryer including an output port and a control port and lacking a turbo cut-off valve; a supply reservoir coupled to the output port of the air dryer; a governor coupled to the control port of the air dryer and coupled to the unloader port of the air compressor, wherein the air compressor includes a cylinder head manifold including a discharge cut-off valve to selectively prevent the escape of compressed air from the discharge port of the air compressor, the discharge cut-off valve including: a hinged leaf valve being rotatably anchored at a first end to a joint pin and being guided at a second end by a guide pin, the hinged leaf valve being moveable between a first position during an on-load phase and a second position during an off-load phase, wherein, in the first position, the hinged leaf valve is seated over an unloader vent opening while a discharge vent opening is uncovered, and wherein, in the second position, the hinged leaf valve is seated over the discharge vent opening while the unloader vent opening is uncovered, such that the air dryer does not receive compressed air from the discharge port of the air compressor during the off-load phase.
8. The apparatus of claim 7 wherein the unloader vent opening is connected between a piston chamber of the air compressor and a suction chamber of the air compressor.
9. The apparatus of claim 7 wherein the discharge vent opening is connected between a piston chamber of the air compressor and a discharge chamber of the air compressor.
10. The apparatus of claim 7 wherein the guide pin is movable by actuation of an unloader valve in response to a supply pressure at the unloader port of the air compressor.
11. The apparatus of claim 7 wherein the hinged leaf valve is biased in the first position.
12. The apparatus of claim 7 wherein the air compressor includes a cylinder head manifold having a bearing face surrounding the recessed portion, the hinged leaf valve being seated within the recessed portion of the cylinder head manifold.
13. The apparatus of claim 12 wherein the bearing face including a plurality of inlet openings for fluid communication between a suction chamber and a piston chamber.
14. The apparatus of claim 7 wherein the air compressor includes an inlet valve and a discharge valve, the inlet valve and the discharge valves being reed valves and being separate from the hinged leaf valve.
15. A method comprising: providing an air compressor including an inlet port for attachment to a supply of boosted air and a discharge port for attachment to an air dryer lacking a turbo-cut off valve; during an on-load phase of operation, causing the discharge of air from the air compressor discharge port; during an off-load phase of operation, preventing the discharge of air from the air compressor discharge port by actuation of a discharge cut-off valve; wherein the discharge cut-off valve includes a hinged leaf valve that is movable between a first position during the on-load phase and a second position during the off-load phase.
16. The method of claim 15 wherein, in the first position, the hinged leaf valve is seated over at least one unloader vent opening and wherein, in the second position, the hinged leaf valve is seated over a discharge vent opening.
17. The method of claim 16 wherein the unloader vent opening is connected between a piston chamber of the air compressor and a suction chamber of the air compressor.
18. The method of claim 16 wherein the discharge vent opening is connected between a piston chamber of the air compressor and a discharge chamber of the air compressor.
19. The method of claim 15 wherein the hinged leaf valve is rotatably anchored at a first end by a joint pin and is guided at a second end by a guide pin.
20. The method of claim 19 wherein the guide pin is movable along a groove by actuation of an unloader valve.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013]
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF THE CURRENT EMBODIMENT
[0018] The current embodiment includes a discharge cut-off valve to shut off the airflow from the discharge port of an air compressor during the off-load phase of the unloader mechanism. This discharge cut-off valve eliminates the need to have a Turbo Cut-Off Valve (TCOV) down stream, in the air dryer, for boosted air compressor applications or for any compressor, including naturally aspirated compressors, that require a blocked discharge port during the off-load phase.
[0019] Referring to
[0020] As also shown in
[0021] Referring now to
[0022] As also shown in
[0023] Operation of the air compressor 10 includes an on-load phase and an off-load phase. During the on-load phase as shown in
[0024] During the off-load phase as shown in
[0025] As shown in
[0026] The above description is that of current embodiments. Various alterations can be made without departing from the spirit and broader aspects of the invention as defined in the claims, which are to be interpreted in accordance with the principles of patent law including the doctrine of equivalents. This disclosure is presented for illustrative purposes and should not be interpreted as an exhaustive description of all embodiments of the invention or to limit the scope of the claims to the specific elements illustrated or described in connection with these embodiments. The present invention is not limited to only those embodiments that include all of these features or that provide all of the stated benefits, except to the extent otherwise expressly set forth in the issued claims. Any reference to claim elements in the singular, for example, using the articles “a,” “an,” “the” or “said,” is not to be construed as limiting the element to the singular.