The present invention generally relates to a valve assembly, and more specifically to a valve assembly with a lock.
Valves are used to control air, gases or other fluids in various types of apparatus and vehicles, such as aircraft. For example, valves can be used to control the supply of bleed air on aircraft by opening, closing, or partially obstructing various passageways, among various other valve uses. There are many different types of valves used in aircraft, other vehicles, and other apparatus, such as butterfly valves, ball valves, and check valves, among others.
By way of example only, a particular type of butterfly valve has a valve element positioned in the center of a flow passage, with a shaft connected thereto. The valve element is movable to an open position through movement of the shaft such that the valve element is parallel to the flow of air or other fluid, thereby allowing the flow of fluid through the valve passage. Conversely, the valve element is movable to a closed position through movement of the shaft such that the valve element is perpendicular to the flow of fluid, thereby restricting the flow of fluid through the valve passage. The shaft and the valve element can be movable in this manner through a spring force, pneumatic means, or some other means.
In some instances, it may be desirable to include a manual mechanism for locking or unlocking the valve, for example in the highly unlikely event that some valve part may not function properly. It is also desirable for users, such as aircraft crew members, or operators of other vehicles or apparatus, to be able to lock or unlock the valve with a single hand, and/or where visibility may be impaired.
Accordingly, there is a need for an assembly for locking or unlocking a valve, and for operators to be able to lock or unlock the valve with a single hand, and/or where visibility may be impaired. The present invention addresses one or more of these needs.
An apparatus is provided for an assembly for a valve. In one embodiment, and by way of example only, the assembly is a valve assembly comprising a valve body, a valve element, an actuator housing, an actuator, an unlocked storage opening, a locked storage opening, and a lock. The valve body has an inlet port, an outlet port, and a flow passage therebetween. The valve element is movably disposed within the valve body flow passage. The actuator is disposed within the actuator housing, coupled to the valve element, and operable to move the valve. The unlocked storage opening and the locked storage opening are formed in the actuator housing. The lock is selectively insertable into, and movable between, the unlocked storage opening and the locked storage opening. When the lock is in the unlocked storage opening, the lock does not engage the actuator, and valve movement is thereby allowed. When the lock is in the locked storage opening, the lock engages at least a portion of the actuator, and valve movement is thereby at least inhibited.
In another embodiment, and by way of example only, the assembly is an actuator assembly comprising an actuator housing, an actuator, an unlocked storage opening, a locked storage opening, and a lock. The actuator is disposed within the actuator housing, and is configured to couple to a valve element. The unlocked storage opening and the locked storage opening are formed in the actuator housing. The lock is selectively insertable into, and movable between, the unlocked storage opening and the locked storage opening. When the lock is in the unlocked storage opening, the lock does not engage the actuator. When the lock is in the locked storage opening, the lock engages at least a portion of the actuator.
In yet another embodiment, and by way of example only, the assembly is an actuator housing comprising a main body, an unlocked storage opening, a locked storage opening, and a lock pin. The main body is configured to house an actuator. The unlocked storage opening and the locked storage opening are formed in the main body. The lock pin is selectively insertable into, and movable between, the unlocked storage opening and the locked storage opening. When the lock pin is in the unlocked storage opening, the lock pin does not engage the actuator. When the lock pin is in the locked storage opening, the lock pin engages at least a portion of the actuator.
The present invention will hereinafter be described in conjunction with the following drawing figures, wherein like numerals denote like elements, and
The following detailed description of the invention is merely exemplary in nature and is not intended to limit the invention or the application and uses of the invention. Furthermore, there is no intention to be bound by any theory presented in the preceding background of the invention or the following detailed description of the invention.
Referring now to
Returning now to
Returning again to
The unlocked and locked storage openings 20, 22 preferably include threads 36 on at least a portion of the respective inner surfaces. These threads 36 are configured to mate with like threads 36 that are formed on a portion of the outer surface of the lock 24 (as described below). In addition, the locked storage opening 22 preferably includes a helical insert 38, as shown in
The shape and size of the unlocked and locked storage openings 20, 22 are preferably configured to allow a close fit with the lock 24 when disposed therein, to make it easy to insert and move the lock 24 therebetween, and to help avoid unwanted vibration or movement of the lock 24. For example, in the depicted embodiment of a cylindrical lock pin 24 with a specific diameter (as described below), the unlocked and locked storage openings 20, 22 preferably each include at least a first wall 39, shaped at least in part to hold a cylindrical pin, an inner diameter preferably slightly larger than the diameter of the lock 24. In a most preferred embodiment depicted in
The lock 24, as mentioned above, is selectively insertable into, and movable between, the unlocked storage opening 20 and the locked storage opening 22, and preferably has threads 36 configured to mate with the threads 36 formed in the unlocked and locked storage openings 20, 22. The lock 24 is preferably made of a high grade steel, such as Inconel 718.
In the depicted embodiments, the lock 24 is in the shape of a cylindrical pin, with a diameter that forms a tight fit inside the unlocked and locked storage openings 20, 22. As shown in
It will be appreciated that the lock 24 may not have a head 42 in certain embodiments, or may have a head 42 of a different shape, and/or that the lock 24 may otherwise have a different shape, size, or configuration, and/or be made of one or more different materials. However, regardless of its particular shape, size, or configuration, or the material from which it is made, the lock 24 is configured to engage at least a portion of the actuator 18 when the lock 24 is in the locked storage opening 22 (as depicted in
Turning now to
The operation and use of the lock 24 is as follows, assuming that the lock 24 is initially in the unlocked storage opening 20, as depicted in
Conversely, the valve assembly 10 can be unlocked as follows. A torque can be applied to the head 42 of the lock 24, to thereby un-mate the threads 36 on the lock 24 with the threads 36 formed in the locked storage opening 22. The lock 24 can then be manually moved out of the locked storage opening 22 and into the unlocked storage opening 20, for example using similar methods as those described above. The threads 36 on the lock 24 are then mated with the threads 36 formed in the unlocked storage opening 20. Accordingly, the valve assembly 10 is thus unlocked, thereby allowing the actuator 18 to move the valve element 14 between the open, closed, and/or intermediate positions.
It will be appreciated that the configuration of the valve assembly 10, and the various components thereof, can take any one of a number of different configurations. Regardless of the particular configuration, the valve assembly 10 allows the operator to lock and unlock the valve assembly 10, and thereby control movement of the valve element 14, easily with a single hand. More specifically, the configuration allows for such locking and unlocking in cases when only one hand is available, and/or when the valve assembly 10 is installed in an engine, for example onboard an airplane, and/or when visibility may be limited. Moreover, due to the self-locking mechanism of the lock 24, using the helical insert 38 of the locked storage opening 22, a user can manually accomplish the locking and unlocking process with the lock 24 without the need for screws, padlocks, or other components, thereby further simplifying the process.
While at least one exemplary embodiment has been presented in the foregoing detailed description of the invention, it should be appreciated that a vast number of variations exist. It should also be appreciated that the exemplary embodiment or exemplary embodiments are only examples, and are not intended to limit the scope, applicability, or configuration of the invention in any way. Rather, the foregoing detailed description will provide those skilled in the art with a convenient road map for implementing an exemplary embodiment of the invention, it being understood that various changes may be made in the function and arrangement of elements described in an exemplary embodiment without departing from the scope of the invention as set forth in the appended claims and their legal equivalents.
Number | Name | Date | Kind |
---|---|---|---|
3743239 | Heckrotte, Sr. et al. | Jul 1973 | A |
4458510 | Nielsen | Jul 1984 | A |
4971289 | Pietras | Nov 1990 | A |
5046523 | Horhota | Sep 1991 | A |
5116018 | Friemoth et al. | May 1992 | A |
5190263 | Roberts | Mar 1993 | A |
5329959 | Owen et al. | Jul 1994 | A |
5370148 | Shafer | Dec 1994 | A |
6196268 | Steiner et al. | Mar 2001 | B1 |
6205826 | Neeley | Mar 2001 | B1 |
6273125 | Blenkush et al. | Aug 2001 | B1 |
6361017 | Nimberger et al. | Mar 2002 | B1 |
6398184 | Sowada et al. | Jun 2002 | B1 |
6604391 | Vellette et al. | Aug 2003 | B2 |
6640688 | Harper | Nov 2003 | B1 |
6691737 | Muller et al. | Feb 2004 | B2 |
6896239 | Brenes | May 2005 | B1 |
6935610 | DeBruyne | Aug 2005 | B1 |
7219685 | Espinoza | May 2007 | B1 |
20020047101 | Buchwald | Apr 2002 | A1 |
Number | Date | Country |
---|---|---|
2638218 | Apr 1990 | FR |
0050793 | Aug 2000 | WO |
02079680 | Oct 2002 | WO |
Number | Date | Country | |
---|---|---|---|
20080001109 A1 | Jan 2008 | US |