The invention generally relates to utility valve boxes, and more particularly to a device for enhancing the security of utility valve boxes that include an inwardly directed ring.
It is customary in many parts of the world to lay and bury pipes, such as water, gas and sewer pipelines, underground in the formation of, respectively, water, gas, and sewer systems. These underground pipelines sometimes require periodic isolation from the system, and hence are generally equipped with isolation valves. Utility valve boxes are installed in conjunction with the isolation valves to allow access to the valves. Examples of known valve boxes include U.S. Pat. Nos. 6,036,401 and 5,803,125.
There are currently a myriad of different designs of utility valve boxes. With reference to
It is generally desired, however, to restrict the access to isolation valves to only those personnel authorized to perform functions in regard to those valves. Thus, it is desired that the utility valve boxes be secured to prevent unauthorized access. Several conventional lockout systems are known, such as, for example, U.S. Pat. Nos. 6,131,604 and 5,234,029. A disadvantage of the known lockout systems is that none of them is adapted to restrict access to utility valve boxes having an inwardly directed ring, such as the valve box 10.
The invention provides a utility valve box that includes a body member having an interior space and an inwardly projecting ring in the interior space. The ring has a first diameter. The utility valve box further includes a locking device having a second diameter greater than the first diameter to suppress removal of said locking device from said body member.
The invention also provides an underground pipeline system that includes one or more underground pipelines, at least one of which having at least one valve, and a utility valve box configured to allow access from the surface to the at least one valve. The utility valve box includes a body member having a ring extending inwardly into an interior space. The ring has a first diameter. The utility valve box further includes a locking device having a second diameter greater than the first diameter to suppress access to the at least one valve.
The invention further provides a method for securing access to an underground valve by way of a utility valve box having an interior space into which an inwardly directed ring having a first diameter extends. The method includes providing a locking device comprising a tube with a shackle, a plate with an opening, and a lock, installing the tube within the interior space, positioning the plate on a first end of the tube with the shackle extending through an opening in the plate, and locking the tube to the plate with the lock. The plate has a second diameter which is no less than the first diameter of the ring.
These and other advantages and features of the invention will be more readily understood from the following detailed description of the invention that is provided in connection with the accompanying drawings.
With specific reference to
Access to the interior space 14, and thus the valve 52 of the pipeline 50, is secured with a lockout device 20. The lockout device 20 includes a thin-walled tube 22, a plate 28 and a lock 34. The tube 22 includes a tube body 24 that extends between a first closed end 25 (
The plate 28 includes a first surface 29 and an opposing surface which rests on the first surface 25 of the tube 22. The plate 28 further includes an opening 30 configured to receive the shackle 26. The plate 28 as illustrated extends a diameter D2 between a pair of arcuate surfaces. The diameter D2 is greater than the diameter D1. Further, the tube 22 is configured to fit snugly within the conduit 12 to prevent one from angling the tube 22 to attempt to remove the lockout device 20 without removing the lock 34.
Next will be described a method for securing access to the valve 52 of the pipeline 50 through the interior space 14 of the body member 11. The tube 22 is positioned within the interior space 14 such that its open end 23 rests upon the pipeline 50 (FIG. 5). A tether 32 is attached to the shackle 26 to aid in removing the tube 22 from the interior space 14 of the body member 11. Preferably, the retaining line 32 is threaded through the opening 30 of the plate 28. The plate 28 is then positioned on the closed end 25 of the tube 22 so that the shackle 26 fits within the opening 30 of the plate 28. Then, the lock 34 is secured to the shackle 26, thereby retaining the tube 22 with the plate 28 (FIG. 5). The tether 32 can be placed in the interior space 14 of the body member 11 and the covering 13 can then be placed on the valve box 100.
While the invention has been described in detail in connection with exemplary embodiments known at the time, it should be readily understood that the invention is not limited to such disclosed embodiments. Rather, the invention can be modified to incorporate any number of variations, alterations, substitutions or equivalent arrangements not heretofore described, but which are commensurate with the spirit and scope of the invention. Accordingly, the invention is not to be seen as limited by the foregoing description, but is only limited by the scope of the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
950270 | Andrews | Feb 1910 | A |
1349610 | Gibney | Aug 1920 | A |
2176399 | Garrett | Oct 1939 | A |
2335899 | Arvintz | Dec 1943 | A |
3220433 | Steil | Nov 1965 | A |
3797286 | Saporito | Mar 1974 | A |
4513773 | Hardiman, Jr. | Apr 1985 | A |
5234029 | Thomas et al. | Aug 1993 | A |
5803124 | Newton et al. | Sep 1998 | A |
5871030 | Agbay | Feb 1999 | A |
6009897 | Hill et al. | Jan 2000 | A |
6036401 | Morina et al. | Mar 2000 | A |
6131604 | Harriss | Oct 2000 | A |
Number | Date | Country | |
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20040226610 A1 | Nov 2004 | US |