The present invention relates to a security seal of the type that comprises a locking body and a thread having a first end attached to the body and a second free end, the body having an entry opening for inserting the second end of the thread and further, in its interior, locking means that allow the passage of the second end of the thread in the direction of insertion and prevent it from being pulled out in the opposite direction.
There are many prior art security seals of this type. Some have a low level of security because the locking means are quite easily accessible from the outside, while others, of a high security level, suffer from expensive design and/or material used in their manufacture. Although some of them are of good quality and a high level of security, they are composed of several parts, including springs, balls and the like, which, in addition to the high cost of the starting materials, involve intensive labor or complex machinery for assembly. Examples of seals of this type can be found in U.S. Pat. Nos. 5,222,776 and 6,345,847 B1.
The present invention aims at providing a security seal of the type mentioned above, which is easy to manufacture at a reduced cost and without impairing the degree of security provided by the product.
According to the present invention, in a security seal of the above-defined type, the locking means comprise:
In the presently preferred embodiment of this invention, the seal body comprises a first bottom part, a cover part and an intermediate part forming a peripheral side wall of the body, which is closed on one side of the bottom part and on the other side by the cover part. One of the bottom part and cover part has a pair of protrusions having the first and second fixed surfaces facing each other, while the intermediate part is formed with the opening of for the thread, and further having the wedging elements joined to it for flexible connections with spring action, so that, when the intermediate part is closed by the bottom and cover parts, the two wedging elements are received with their respective guiding surfaces resting on the respective fixed surfaces of the protrusions and with their thread-locking surfaces facing each other, thus defining the passage for the thread. The three parts are definitively joined to each other, thus preventing disassembly without leaving tampering signs.
In one of the preferred embodiments, the thread is a separate element, usually made of wire, the first end of the thread passing through a second opening into said body and is anchored there. In this case, at the proximity of its first end, the thread passes through a winding path that prevents it from being withdrawn.
In another preferred embodiment, the thread is made of the same plastic material of the body, preferably polycarbonate, being injection molded together with the body.
These and other characteristics of the invention will be better understood from the detailed description hereinafter, given by way of example, with reference to the attached drawings.
The body 1 is made from plastic material, preferably polycarbonate, and in one of the preferred embodiments the thread 2 is made from the same material, having been injection molded simultaneously with the body. In one preferred embodiment, however, the thread 2 is made of wire, and may also be a wire composed of a central thread with another thinner thread helically wound around it in order to improve the locking of the thread against wedges 6. In this case or even when another type of thread (nylon, polycarbonate, etc.) is used as a separate part, the first end 3 of the thread enters into another opening 8 in body 1, adjacent opening 5, and passes along a sinuous path inside the body to be anchored there (see
Considering now
The top surface of the bottom part 9, in turn, is provided with a protrusion 15, which is of less height than that of protrusions 13 and is in the form of a longitudinal rib.
Both the bottom part 9 and the cover part 11 are provided with four mounting pins 16 for its initial mounting on the intermediate part 10.
The intermediate part 10 comprises an external peripheral wall 17 of body 1, the internal periphery of which corresponds to the external periphery of bottom part 9, so that the latter can be fitted to the intermediate part 10 at the time of assembling the seal. The intermediate part 10 further comprises an intermediate platform 18 provided with four mounting bores 19 (only two of them are visible in
Each locking wedge 6 has an external wedge surface 21 that, hen the bottom part 9 is fitted to the intermediate part 10, rests against the respective guide surface 14 and can slide along the latter. Thus, the wedge surfaces 21 in the assembled embodiment diverge from each other according to the second divergence angle defined by guide surfaces 14. The other side of each wedge 6 comprises a substantially flat locking surface 22, so that, in the assembled condition of the seal, the two surfaces 22 will also be parallel to each other and separated only by rib 15 on bottom part 9. At their ends adjacent the opening 5 for the thread, surfaces 22 diverge so as to define an opening 22′ between the wedges 6 for the thread or wire 2. The spring connections or portions 20 urge the wedges 6 to the right in
The intermediate platform 18 of the intermediate part is further formed with a small groove 23 aligned with slot 8, a pair of lateral protrusions 24 at the end of groove 23, a through bore 25 having the diameter of the thread 2 (
The cover part 11, with bottom part 9, is sized to be fitted to the intermediate part 10 above platform 19. It is formed with three protrusions 5′, 7′ and 81 which, when mounting body 1, partially close the respective slots in the peripheral wall 17 of the intermediate part 10, in order to define openings 5, 7, and 8 which correspond substantially to the diameter of wire 2. The cover part 11 has four cutouts 28 for receiving four corresponding claws 29 on the outer cover part 12.
In order to assemble the seal, wire 2 is first anchored to intermediate part 10, as described above, and the bottom part 9 and cover part 11 are then fitted to the intermediate part with the mounting pins 16 inserted in their respective mounting bores 19. Once mounted, the assembly is subjected to an ultra-sound welding operation, which makes it into a single piece, which cannot be disassembled without damage or signs of tampering.
The outer cover part 12 is an optional part, preferably transparent, which is fitted to the seal after the latter has been assembled, serving to permit insertion of a label, quality seal or the like on the top surface of cover part 11.
The use of the seal is schematically illustrated in
This effect becomes even more apparent in a presently preferred embodiment, illustrated in
The seal described above and illustrated in the drawings exhibits a high degree of security, coupled with low production and assembly costs. The bottom part 9, intermediate part 10 and cover part 11 may be molded in a single plastic injection operation, the cover part 12 being a separate part. The assembly operation involves putting in the wire, followed by simply fitting the three parts together and then welding by ultra-sound.
It will be understood that the seals illustrated and described herein are only intended to exemplify the invention, various modifications being possible without departing from the spirit and scope of the present invention. For instance, it would not be essential for the wire of thread to pass right through to the other side of the seal body, it being sufficient for its end to remain within the body. It is not essential that there are two wedges, the same effect being possible with a single wedge. The protrusions 13, which form the fixed surfaces 14 and serve as guides for the movable wedges could be formed on the top surface of the bottom part 11, instead of the bottom surface of the cover part 11, without changing the functionality of the seal. Equally, the rib 15 may be both on the bottom part 9, as illustrated in the drawings, and on the cover part 11.
In addition, the manner of anchoring the end 3 of the wire could be different. As already said, the thread may be made from the same material as the seal body, being integral with the latter, thus facilitating the manufacture and assembling operation even further. There are other ways of joining the body parts, including electronic welding or even with some special glues.
In other words, the scope of the invention should not be affected by these and other variations that might occur to a person skilled in the art.
Number | Date | Country | Kind |
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PI0403815-0 | Sep 2004 | BR | national |