The invention relates, in general, to fluids stored in tanks and, in particular, to a device for notification of tampering, and prevention of particulate contamination of fluid stored in tanks.
Industrial fluid is commonly stored in cylinders and tanks and is supplied to fluid distribution systems used in various industries through connections to the cylinders. Fluid distribution systems include devices to regulate or distribute gas, and pipe or tubing connecting the devices in the distribution system. The fluid cylinders typically have, or are connected to, a valve connectable to the distribution system for transfer of fluid from the cylinder to the fluid distribution system.
The valve fitting(s) used to connect the cylinder to the distribution system is often susceptible to particulate contamination as contaminants may find their way into the fitting. Thus, when a connection is made between the fluid distribution system and the fitting, particles in the fitting likely enter into the distribution system as a connection is made. This may jeopardize the integrity of the fluid being distributed and may have devastating consequences in the industry.
Plugs, known in the art, are used to plug up or cap the fitting before a connection is made to the fluid distribution system such that at least some particles are prevented from collecting in the fittings. Therefore, it is less likely that contamination of the fluid will occur upon connection of the tank with the fluid distribution system. However, the size of a fitting connected to each cylinder may vary. Therefore, multiple sizes of plugs are required to properly plug up or cap the different sized fittings. Further, fittings include threads for connection to the fluid distribution systems. In some fittings the threads are located on an outside surface, while in other fittings the threads are located on an inside surface of the fitting.
Therefore, it is an object of the present invention to provide a protection mechanism that will protect several different sizes and types of fittings.
In many situations, the fluids stored within the cylinder are utilized in medical and food and beverage applications. Contamination of fluids used in these situations may have negative health and safety implications. Therefore, it is important to be able to determine whether a party had access to the valve fitting connected to the tank and was thus presented with an opportunity to dispense fluid from the cylinder or, to perhaps even tamper with the fluid within the cylinder or the valve. Further, it is important to be able to determine or to be notified of whether an opportunity for particulate contamination of the fitting arose.
Therefore, it is an object of the present invention to provide a notification device.
These and other objectives have been achieved by a protection and tamper notification device having a fitting block, such as a tapered cylinder with a base, receivable by or capable of receiving a valve fitting, attached to and disposed between a first strap and a second strap. The straps are bendable about the valve which is connectable to a fluid tank and are fastenable to each other upon enclosing the valve. In order to access the valve fitting, the enclosure must be broken or otherwise compromised. The compromised enclosure provides notification that the valve was made accessible and that the fluid within the tank and/or the fitting may have been accessed or tampered with or that the fitting may have been exposed to contaminants. In one embodiment, the blocking means may include a plug of the prior art.
In one embodiment, the first strap includes a ring through which a burst disk of a valve in insertable. When the device enclosing the valve has been compromised so that the blocking means may be removed from the fitting, the device likely remains on the valve because the burst disk remains inserted within the ring of the first strap, and provides notification that the valve was made accessible or exposed and that the fluid within the tank and/or the fitting may have been accessed or tampered with. Notification of fitting exposure or of access or attempted access to a fitting, such as a valve fitting connected to a fluid tank, is desired to prevent negative health or safety implications that may result from contamination or tampering.
The tapered cylinder with a base is used as a means for preventing particulate contamination of a fitting, on its own, and in conjunction with the protection and tamper notification device described above. The tapered cylinder includes securing means on an outer surface and on an inner surface. In one example, the securing means are threads. The tapered cylinder has threads on the outside, so it may be threaded into a valve fitting having threads on the inside. The valve fitting acts as a receiver of the tapered cylinder. Further, because the tapered cylinder has threads on the inside, it may act as a receiver. The tapered cylinder may be threaded about the valve fitting having threads on the outside.
In another example, the tapered cylinder includes tangs on an outer and on an inner surface as securing means. The tapered cylinder with tangs on the outside may be pushed into a valve fitting. The tangs of the cap act as a receiver of the thread of the valve fitting, similar to how the tangs of a milk cap receive a thread of a milk bottle. The tapered cylinder with tangs on the inside may be pushed over a valve fitting, the tangs on the inner surface receiving the thread of the valve fitting.
Additionally, the tapered surface/sides of the cylinder allow fittings of various sizes to be threadably received by the tapered cylinder and allow the cylinder to be threaded into fittings of various sizes. This is an improvement over plugs of the prior art, where various sized plugs were required to plug fittings of various sizes. It can be said that the tapered cylinder acts a universal blocking means for fittings. A variety of different sizes of tapered cylinders may be used in the present invention.
a is a top view of the protection and tamper notification device of
b is a side view of the protection and tamper notification device of
c is a bottom view of the protection and tamper notification device of
d is a partial side view of the protection and tamper notification device of
e is a side view of a tapered cylinder shown in the protection and tamper notification device of
With reference to
Referring to
Upon attempts to remove the tongue 36, in a direction indicated by arrow B, saw edges 37 of the tongue 36 contact and press against various protrusions 62 of the tongue receiver 38. Therefore removal of the tongue is prevented. Another strap locking or fastening mechanism besides the tongue and tongue receiver may be used.
Before access to the fitting is provided so that the fitting may be made available for connection and fluid communication with the fluid distribution system, the tapered cylinder 20 must be removed from the fitting. In order to remove the tapered cylinder 20 from the fitting, the tamper protection and notification apparatus 32 must somehow be removed. A party is prevented from removing the tongue 36 from the tongue receiver 38 without breaking, cutting, or otherwise compromising the strap 34 or other portions of the device 32. The apparatus 32 is secured tightly about the valve 48 therefore may not be lifted and removed. Also, the locking mechanism is intended to prevent a user from removing the tamper notification apparatus 32, including the tapered cylinder 20, by way of unlocking the lock, without compromising the device. Therefore, the protection and tamper notification apparatus 32 would typically be removed by cutting through the tamper notification apparatus 32. It may be cut by pulling down on the tab 56 at the perforations 58 thus breaking the strap 34a and allowing for removal of the tapered cylinder 20. It may be compromised with other methods. Once the tamper notification apparatus is compromised, a party will be made aware that the fitting 26 or 28 was made available for connection with the fluid distribution system, and thus will be put on notice that fluid from the cylinder may have actually or potentially been dispensed or otherwise tampered with or that the valve itself, including the fitting, may have been tampered with and at the very least exposed to particles.
The compromised device 32 may serve as proof that the valve 48 and/or the fluid within the fluid cylinder was made accessible and possibly tampered with.
Further, where the device 32 includes the ring 61 through which burst disk 63 is inserted, the device will typically remain on the valve 48, serving as evidence that the device was compromised and that the valve 48 and/or the fluid within the fluid cylinder was made accessible and possibly tampered with.
Referring to
Further, because the tapered cylinder 20 has threads or tangs on the inside, the tapered cylinder may act as a receiver, and the tapered cylinder may be threaded about a fitting 28 (
Additionally, the tapered sides 30 of the tapered cylinder 20 allow fittings of various sizes to be threaded into or to receive the tapered cylinder 20. For example, if the fitting is of the type having threads or tangs on the outside (fitting 28,
Conversely, if the fitting is of a type having threads or tangs on the inside (fitting 26,
Cylinder 20 surfaces, including the base 22, prevent at least some particles, such as dust, from entering the fitting 26 or 28, thus protecting the fitting. With reference to
This application claims priority from U.S. provisional application no. 60/456,895, filed Mar. 21, 2003.
Number | Name | Date | Kind |
---|---|---|---|
1158631 | Caldwell | Nov 1915 | A |
1473751 | Walker | Nov 1923 | A |
1796398 | Richardson | Mar 1931 | A |
2177359 | Baker | Oct 1939 | A |
2179886 | Baker | Nov 1939 | A |
2613462 | Johnson | Oct 1952 | A |
2703546 | Allen | Mar 1955 | A |
2727526 | Nickle | Dec 1955 | A |
3009483 | Salustri | Nov 1961 | A |
3406708 | Maydock | Oct 1968 | A |
3678717 | Eaton | Jul 1972 | A |
3696964 | Deakin | Oct 1972 | A |
3831300 | Berkhouse | Aug 1974 | A |
4266813 | Oliver | May 1981 | A |
4380247 | Douglas | Apr 1983 | A |
4458923 | Burroughs | Jul 1984 | A |
4640031 | Hoek et al. | Feb 1987 | A |
4827643 | Hearst et al. | May 1989 | A |
4834137 | Kawaguchi et al. | May 1989 | A |
4899781 | Monroe | Feb 1990 | A |
5121859 | Stull | Jun 1992 | A |
5152313 | Chapman, Jr. | Oct 1992 | A |
5152314 | Yandle, III | Oct 1992 | A |
5160065 | Libes et al. | Nov 1992 | A |
5238141 | Callegari et al. | Aug 1993 | A |
5295601 | Bostelman | Mar 1994 | A |
5297697 | Boring | Mar 1994 | A |
5386924 | Flinta et al. | Feb 1995 | A |
5417349 | Stull | May 1995 | A |
5555655 | Yager et al. | Sep 1996 | A |
5664597 | Miskiewicz | Sep 1997 | A |
6000419 | Bernhard | Dec 1999 | A |
6003714 | Buermann | Dec 1999 | A |
6247491 | Petryna | Jun 2001 | B1 |
6415946 | Carlo et al. | Jul 2002 | B2 |
6463953 | Cuzzo et al. | Oct 2002 | B1 |
6691732 | Fleury et al. | Feb 2004 | B2 |
6783031 | Robbins et al. | Aug 2004 | B2 |
20020100520 | Olsen et al. | Aug 2002 | A1 |
Number | Date | Country | |
---|---|---|---|
20040244836 A1 | Dec 2004 | US |
Number | Date | Country | |
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60456895 | Mar 2003 | US |