1. Field of the Invention
The present disclosure relates to fire extinguishers, and more particularly to safety mechanisms for reducing the risk of unsafe discharge or fire extinguishers.
2. Description of Related Art
Various fire extinguishers contain highly pressurized gas within a pressure vessel. When properly installed, for example, in a vehicle, the pressurized gas can be discharged to mitigate fires, explosions, or the like. Untimely discharge of the pressurized gas, e.g., when the pressure vessel is not properly secured to a firm structure, can cause the pressure vessel to be propelled in an erratic motion. Safety mechanism can be used to prevent unwanted discharge of the pressurized gas.
The conventional techniques have been considered satisfactory for their intended purpose. However, there is an ever present need for improved safety mechanisms. This disclosure provides a solution for this problem.
A safety system for a pressure vessel includes a poppet housing with a poppet slidingly mounted therein. The poppet is configured to open a flow path through the poppet housing in a first poppet position, and to open a flow path through the poppet housing in a second poppet position. A safety pin is slidingly mounted in the poppet housing. The safety pin is configured to block movement of the poppet in an extended position, and to allow full movement of the poppet in a retracted position. An actuation lever is operatively connected to actuate the safety pin between the extended and retracted positions. A bracket is operatively connected to the poppet housing and is configured for mounting to a support structure. The bracket includes a safety mechanism configured to force the actuation lever to maintain the safety pin in the extended position with the bracket mounted to a support structure, and to release the actuation lever to allow the safety pin to move to the retracted position with the bracket mounted to a support structure.
The safety mechanism can include a yoke slidingly engaged to the bracket for movement between a first position forcing the actuation lever to maintain the safety pin in the extended position, and a second position to allow the safety pin to move to the retracted position. The safety mechanism can include one or more positioning pins mounted to the yoke and extending through the bracket for moving the yoke to the first position with the bracket mounted to a support structure. The yoke can include a collar configured to seat a neck of a pressure vessel therein. The collar can include fingers biased inward to squeeze the neck of a pressure vessel in the collar. The yoke can include at least one biasing member configured to bias the yoke to the first position forcing the actuation lever to maintain the safety pin in the extended position. The yoke can be mounted within the bracket by two bracket pins passing through respective slots through the yoke.
A pressure vessel can be mounted to the poppet housing so that the poppet regulates flow from the pressure vessel. The safety pin can be mounted to the poppet housing within a bushing. A biasing member can bias the safety pin against the poppet housing towards the extended position. A switch can be operatively connected to the poppet housing to selectively open and close an electrical circuit based on whether the safety pin is in the extended position or the retracted position.
A method of operating safety mechanism includes extending a safety pin to block a poppet from opening a flow path from a pressure vessel in the event of the pressure vessel being unmounted from a bracket or in the event of the bracket being unmounted from a support structure. The method includes retracting the safety pin to allow free movement of the poppet for opening the flow path only in the event of the pressure vessel being mounted to the bracket and the bracket being mounted to a support structure.
Mounting the bracket to a support structure can include mounting the bracket to a vehicle. Mounting the bracket to a support structure can include depressing a positioning pin while mounting the bracket to the support structure to retract the safety pin. The method can include discharging the pressure vessel slowly through an audible leak path past the poppet with the safety pin extended.
These and other features of the systems and methods of the subject disclosure will become more readily apparent to those skilled in the art from the following detailed description of the preferred embodiments taken in conjunction with the drawings.
So that those skilled in the art to which the subject disclosure appertains will readily understand how to make and use the devices and methods of the subject disclosure without undue experimentation, preferred embodiments thereof will be described in detail herein below with reference to certain figures, wherein:
Reference will now be made to the drawings wherein like reference numerals identify similar structural features or aspects of the subject disclosure. For purposes of explanation and illustration, and not limitation, a partial view of an exemplary embodiment of a safety system in accordance with the disclosure is shown in
Safety system 100 for a pressure vessel 102 includes a poppet housing 104 with a poppet 106 slidingly mounted therein. The poppet 106 is configured to close a flow path 108 from the pressure vessel 102 through the poppet housing 104 in a first poppet position, as shown in
A safety pin 110 is slidingly mounted in the poppet housing 104, e.g., within a bushing 112. The safety pin 110 is configured to block movement of the poppet 106 in an extended position, shown in
A bracket 120 is operatively connected to the poppet housing 104 and is configured for mounting the pressure vessel 102 and the poppet housing 104 to a support structure 122, such as an internal structural member of a vehicle or building where system 100 is deployed for use. The bracket 120 includes the safety mechanism 124 configured to force the actuation lever 114 to maintain the safety pin 110 in the extended position when the bracket 120 is not mounted to the support structure 122 as shown in
The safety mechanism 124 includes a yoke 126 slidingly engaged to the bracket 120 for movement between a first position forcing the actuation lever 114 to maintain the safety pin 110 in the extended position as shown in
With reference now to
A method of operating a safety mechanism, e.g., safety mechanism 124, includes extending a safety pin, e.g., safety pin 110, to block a poppet, e.g., poppet 106, from opening a flow path, e.g., flow path 108, from a pressure vessel, e.g., pressure vessel 102, in the event of the pressure vessel being unmounted from a bracket, e.g., bracket 120, or in the event of the bracket being unmounted from a support structure, e.g., support structure 122. The method includes retracting the safety pin to allow free movement of the poppet for opening the flow path only in the event of the pressure vessel being mounted to the bracket and the bracket being mounted to a support structure.
Mounting the bracket to a support structure can include mounting the bracket to a vehicle or building. Mounting the bracket to a support structure can include depressing a positioning pin, e.g., positioning pin 128, while mounting the bracket to the support structure to retract the safety pin. The method can include discharging the pressure vessel slowly through an audible leak path past the poppet with the safety pin extended. While shown and described in the exemplary context of fire extinguishers, those skilled in the art will readily appreciate that systems and methods as disclosed herein can readily be applied to any suitable pressure vessel without departing from the scope of this disclosure.
The methods and systems of the present disclosure, as described above and shown in the drawings, provide for safety systems and methods with superior properties including prevention of unwanted discharge of a pressurized vessel, such as a high-pressure fire extinguisher tank, even if the mounting bracket thereof is removed from a support structure with the pressure vessel still mounted in the mounting bracket. While the apparatus and methods of the subject disclosure have been shown and described with reference to preferred embodiments, those skilled in the art will readily appreciate that changes and/or modifications may be made thereto without departing from the scope of the subject disclosure.
Number | Name | Date | Kind |
---|---|---|---|
2017319 | McMullen | Oct 1935 | A |
2910262 | Haessler | Oct 1959 | A |
4363424 | Holben et al. | Dec 1982 | A |
8499845 | Luders et al. | Aug 2013 | B2 |
20120073839 | Thomas, III | Mar 2012 | A1 |
20130025705 | Robinson | Jan 2013 | A1 |
20150041158 | Stumm et al. | Feb 2015 | A1 |
Number | Date | Country |
---|---|---|
204141032 | Feb 2015 | CN |
Entry |
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European Extended Search Report, of the European Patent Office, dated Feb. 9, 2018, issued in corresponding European Patent Application No. 17191945.9. |
Number | Date | Country | |
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20180078803 A1 | Mar 2018 | US |