The present invention relates generally to the field of security seals, and more specifically to a security seal that discourages tampering therewith by being configured in a manner such that any tampering therewith will be evident upon visual inspection of the security seal.
Security seals are commonly used to secure closure of utility meters, postal boxes, or other receptacles or devices where it is desired to prevent tampering therewith. Such seals may include a plastic body with a pair of apertures opening at one end of the body and a shackle formed of a piece of U-shaped wire having legs with reversibly bent end portions. When the seal is put into use, the shackle legs are first threaded through a structure to be secured, such as a retaining ring fitted around a cover for an electric meter. The shackle legs are then inserted into the body apertures whereby the reversibly bent end portions engage some form of inner structure of the body for permanent retention. A lateral pulling force on the shackle only forces the reversibly bent end portions into stronger engagement with the body. Thus, the shackle must be severed or otherwise broken, or the seal body must be damaged to open the seal.
In addition to the usual locking mechanisms, security seals typically include some form of tamper-indicating structure. Generally, tamper-indicating structures are designed such that any significant attempts to defeat or tamper with the seal will normally result in altering the seal in such a manner that the attempt will be readily detectable. For example, if any attempt to tamper with the seal is made, portions of the seal may be permanently damaged. Such damage in the seal is typically readily apparent, thereby indicating evidence of tampering.
Although such devices have served the purpose, they have not provided entirely satisfactory results, because some efforts to defeat such structures by picking have proved successful. One such method of picking involves inserting a picking tool into the seal body through openings or spaces where the shackle legs enter the seal body and deforming or cutting the shackle legs to an extent that the legs can be freely withdrawn from the sealed body, reformed, and later replaced in the seal body. Such tools also can be used to deform or cut parts of the seal body securing the shackle
Other tampering methods may include dissolving the shackle wire with acid, removing the security seal to tamper with the previously sealed meter, receptacle or device, and replacing the security seal using a replacement shackle.
Embodiments of a security seal according to the present disclosure provide improved security by discouraging tampering therewith by being configured in a manner such that any tampering therewith will be evident upon visual inspection of the security seal.
Embodiments of a security seal that provides improved security by discouraging tampering therewith by being configured in a manner such that any tampering therewith will be evident upon visual inspection of the security seal are disclosed herein.
The security seal generally includes a female outer body, a male locking insert configured to be engaged with the female outer body, and a shackle retained between the female outer body and the male locking insert. Once the male locking insert is engaged with the female outer body, they cannot be disengaged without showing evidence of the disengagement. The evidence of the disengagement can be in the form of damage to any component of the security seal, in the form of mismatching of marked components of the security seal, or in any other suitable form showing evidence of the disengagement.
These and other features, aspects, and advantages of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings where:
It should be noted that the drawing figures are not necessarily drawn to scale, but instead are drawn to provide a better understanding of the components thereof, and are not intended to be limiting in scope, but rather to provide exemplary illustrations. It should further be noted that the figures illustrate exemplary embodiments of a security seal and the components thereof, and in no way limit the structures or configurations of a security seal and components thereof according to the present disclosure.
An embodiment of a security seal 100 according to the present disclosure is shown in
As best seen in
As best seen in
As can be seen in
As shown in
Referring to
As mentioned above, the outer body 102 includes a profiled opening 106, as best seen in
As shown in
As is also shown best in
As shown in
The structure of the locking insert 120 is further shown in
In particular, a first shackle hook receiver 128 and a shackle leg offset portion retainer 130 are positioned along a first side of the insert plug body 122 and are formed as projecting portions from the insert plug body rear wall 124. The first shackle hook receiver 128 and the shackle leg offset portion retainer 130 cooperate with a first shackle hook 156 and an offset portion 154 of a first shackle leg 152 to allow the shackle 150 to be engaged with the locking insert 120.
The male insert plug body 122 also includes a second shackle hook receiver 132, an insert bulkhead or wall 134 located just below and aligned with the receiver 132, and locking fingers 136 formed along a second side of the insert plug body 122 and formed as projecting portions from the insert plug body rear wall 124. The second shackle hook receiver 132 cooperates with a second shackle hook 160 of a second shackle leg 158 to allow the shackle 150 to be engaged with the locking insert 120.
The male insert plug body 122 also includes a guide slot 126 formed from projections extending from the insert plug body rear wall 124. The guide slot 126 extends from the distal or lower end of the insert plug body 122 towards the upper portion or insert cover 138 of the insert plug body 122. The insert plug body rear wall 124 is slightly offset from the center of the male insert plug body 122, such that the male insert plug body 122 can only be inserted into the cavity 108 of the outer body 102 if the guide slot 126 is aligned with the guide projection 112. In this manner, the locking insert 120 can only be inserted into the cavity 108 of the outer body 102 in one way, with the guide slot 126 aligned with the guide projection 112. If the male insert plug body 122 is rotated 180 degrees, the insert plug body rear wall 124 will contact the guide projection 112 to prevent the insertion of the insert plug body 122 into the cavity 108 of the outer body 102. The projection 112 and guide slot 126 extend between the position of the shackle legs 152, 158 when the locking insert and shackle legs are inserted in the cavity 108.
As shown in
The upper portion of the locking insert 120 is formed into a profiled insert cover 138 that is complementary shaped to the profiled opening 106 of the outer body 102. The profiled insert cover 138 can include gradually curved surfaces that mate with the curved surfaces of the profiled opening 106 so that the locking insert 120 seats within the cavity 108 of the outer body 102, like a drawer. The locking insert 120 thus is received in a flush manner within the cavity 108 of the outer body 102.
The profiled insert cover 138 includes shackle leg clearances 140 that allow the first and second shackle legs 152, 158 to be assembled with and to pass through the insert cover 138 into the insert plug body 122 along the insert plug body rear wall 124. As shown in
Additionally, if someone attempts to remove the second shackle leg 158, for example with acid, the insert bulkhead 134 prevents the insertion of a tool into the cavity 108 of the outer body 102 to manipulate the locking fingers 136. Thus, even if the shackle 150 is removed, the locking insert 120 cannot be removed from the cavity 108 of the outer body 102 without causing damage to either the locking insert 120 or the outer body 102.
As shown in the Figures, and in particular
As already mentioned above, the first and second shackle legs 152, 158 each have respective first and second shackle hooks 156, 160 formed at the distal ends thereof. The first and second shackle legs 152, 158, or at least one of the shackle legs, also each have pre-weakened zones 162 formed therein.
As shown in
Turning back to
When it is desired to further assemble the security seal 100, as shown in
Once the shackle has been secured to the device, the second shackle hook 160 can again be secured within the second shackle hook receiver 132, and the locking insert 120 fully inserted into the cavity 108 of the outer body 102 until both locking fingers 136 have passed over and abut the locking abutments 114, as shown in
As previously discussed, once the locking insert 120 is fully inserted into the cavity 108 of the outer body 102, the locking fingers 136 and locking abutments 114 cooperate to prevent the removal of the locking insert 120 from the cavity 108, without causing damage to the security seal 100.
Further, since there are no gaps, other than the necessary clearance/tolerance gaps, between the shackle legs 152, 158 and the outer body 102 and the locking insert 120, a tool cannot be used to remove the shackle 150 without causing damage to the security seal 100.
Even further still, even if the shackle 150 is removed, the insert bulkhead 134 prevents the locking insert 120 from being removed from the cavity 108 of the outer body 102 without causing damage to either the locking insert 120 or the outer body 102.
Still further, even if the locking insert 120 is removed from the cavity 108 of the outer body 102, without causing damage to the outer body, there will inherently be damage to the locking insert 120. However, the matching indicia or identification numbers 116, 142 on the outer body 102 and the locking insert 120 prevent the simple replacement of the damaged locking insert 120 with a new locking insert.
Even further still, the pre-weakened zones 162 in the shackle legs 152, 158 will show evidence of tampering via breakage or permanent deformation if the shackle 150 is bent. In other words, the shackle 150 cannot first be bent from the original configuration and then be bent back into the original configuration, since pre-weakened zones 162 in the shackle legs 152, 158 will show evidence of tampering via breakage or permanent deformation thereof.
Another embodiment of a security seal 200 in accordance with the present disclosure is shown in
In particular, like security seal 100, the security seal 200 generally includes three components, an outer body 202, a locking insert 220, and a shackle 250, which may have any desired shape, but is shown having a generally rectangular U-shape. The security seal 200 can include all of the security features discussed above, including transparent components and unique identification number or indicia. Further, the assembly of the security seal 200, including the internal components formed on the locking insert 220 and the internal features of the outer body 202, such as guide slots, locking fingers, guide projections, and locking abutments, are the same as discussed above with respect to the security seal 100, and these features are not further discussed here.
Like the security seal 100, the outer body 202 of the security seal 200 includes a base 204, and a profiled opening 206 leading into a cavity 208, which generally forms a female portion of the security seal 200. As with security seal 100, a guide projection and locking abutments can be formed within the cavity 208.
As best seen in
As seen in
As can be seen in
As best seen in
Located beneath the mating surface 230 is a profiled portion 232 that is complementary shaped to the profiled opening 206 leading into the cavity 208 of the outer body 202. The profiled portion 232 may include a separation edge 234 formed between the profiled portion 232 and the mating surface 230, which edge may be generally perpendicularly oriented with respect to the mating surface 230. In the drawings, this separation edge 234 is shown in an exaggerated size in order to better illustrate the edge 234. The edge 234 may also be generally sloped, as opposed to perpendicularly oriented, in order to provide a cleaner transition between the mating surface 230 and the profiled portion 232, or in an alternative configuration, there may be no separation edge provided between the mating surface 230 and the profiled portion 232, such that the profiled portion 232 is generally contiguously formed extending from the mating surface 230.
As can be seen in
With this configuration of the embodiment of the security seal 200 shown in
Thus, and in particular in view of the internal configuration of the security seal 200, as described above in detail with respect to the security seal 100, even if a tool were inserted between the locking insert 220 and the outer body 202 of the security seal 200, the two pieces cannot be separated from each other without damage to one or both pieces, which damage will be visually detectable. Similarly, if acid is used to dissolve the shackle legs 252, 258, a new shackle cannot be inserted without disassembling the locking insert 220 from the outer body 202 of the security seal 200, which as previously discussed, will damage one or both of the locking insert 220 and the outer body 202.
Therefore, it can be seen that the embodiments of the security seals 100, 200 described herein provide improved security seals to prevent tampering.
It will be recognized that the security seals described herein are appropriately sized so as to be manipulated by hand, and may even be manipulated using a single hand. However, it is understood that the size of the disclosed embodiments and the components thereof can be adjusted within the scope of the present disclosure.
It is also understood that the locations of various structural features may be altered from the positions as illustrated herein. In particular, the position of the guide groove and guide slot can be alternated.
Of course, it is to be understood that not necessarily all objects or advantages may be achieved in accordance with any particular embodiment of the invention. Thus, for example, those skilled in the art will recognize that the invention may be embodied or carried out in a manner that achieves or optimizes one advantage or group of advantages as taught herein without necessarily achieving other objects or advantages as may be taught or suggested herein.
The skilled artisan will recognize the interchangeability of various disclosed features from the disclosed embodiments and variations. In addition to any variations described herein, other known equivalents for each feature can be mixed and matched by one of ordinary skill in this art to construct a security seal in accordance with principles of the present invention.
Although this invention has been disclosed in the context of exemplary embodiments and examples, it therefore will be understood by those skilled in the art that the present invention extends beyond the specifically disclosed embodiments to other alternative embodiments and/or uses of the invention and obvious modifications and equivalents thereof. Thus, it is intended that the scope of the present invention herein disclosed should not be limited by the particular disclosed embodiments described above.
This application claims the benefit of U.S. Provisional Application No. 61/219,548, filed Jun. 23, 2009.
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