This application is a U.S. National phase application of International Application No. PCT/IB2020/055259 filed Jun. 4, 2020, which claims priority to Application No. ZA 2019/03565 filed Jun. 4, 2019, the entire contents of both of which are incorporated by reference herein.
This invention relates to a grid structure for use in a protective barrier.
The incorporation of high density mesh panels in a fence leads to the establishment of an effective security barrier. Nonetheless certain applications require the security level to be enhanced. To meet this challenge a respective grid structure which is made from substantially more robust components than those included in the mesh panels can be installed adjacent each panel.
One type of grid structure which is employed includes a first plurality of parallel and spaced apart members which extend in a first direction and a second plurality of spaced apart and parallel members which extend in a second direction which is at a right angle to the first direction. The two sets of members are then welded to one another at respective points of contact and in this way a rigid assembly is fabricated. Although the end result has a significant security level the fabrication technique which is used in its manufacture calls for a substantial amount of welding. The welding is labour intensive and time consuming and, moreover, expensive.
A need exists for a grid structure which can be made in a more efficient manner.
The invention provides a security grid structure comprising a first elongate channel section which includes a first base and first and second opposed side walls, wherein the first side wall is formed with a plurality of spaced apart first apertures, a second elongate channel section which is spaced from and parallel to the first elongate channel section, the second elongate channel section including a second base and third and fourth opposed side walls, wherein each of the third and fourth side walls is formed with a plurality of spaced apart second apertures and wherein the second apertures in the third side wall are in register with respective second apertures in the fourth side wall, a plurality of elongate members which are parallel to and spaced apart from one another, each elongate member respectively including a first end and an opposed second end, wherein a portion of the elongate member at the first end extends through a respective first aperture in the first side wall of the first elongate channel section, and wherein the elongate member extends through a respective pair of registering second apertures in the second channel section and a part of the elongate member is positioned between opposing surfaces of the third and fourth side walls, and at least one elongate element which is positioned between the first and second elongate channel sections and which extends transversely to, and which is secured to, the elongate members.
The security grid structure may include at least two of the elongate elements referred to. Each elongate element may take on any suitable form but conveniently is a length of flat bar.
Each elongate element may be formed with a plurality of spaced apart holes, prior to inclusion of the elongate element in the security grid. The elongate element may then be positioned so that each hole in the elongate element is in register with a respective elongate member. This technique facilitates the securing of the elongate element to each elongate member in that, conveniently, the hole provides a means whereby the elongate element can be welded, e.g. puddle-welded, to the elongate member.
Each elongate member may have any appropriate cross section. In a preferred embodiment each elongate member is tubular and is square or rectangular in cross section.
To enhance the deterrent effect of each tubular member it may contain or be filled with attack-resistant material. In a preferred form of the invention each tubular member is filled with an ultrahard material. The ultrahard material may include a ceramic or similar composition. Preferably the ultrahard material is preformed, under factory conditions, into elongate, slender briquettes, each of a suitable length, which are then pushed into the interiors of the elongate members. A respective end cap may be engaged with the second end of each elongate member to ensure that the ultrahard briquettes are retained inside the elongate member.
The security grid structure may be one of a number of similar grid structures which are positioned side-by-side and which are interconnected to form a combined grid of an increased width. The combined grid may be positioned alongside a high density mesh panel in the construction of a security barrier.
The invention is further described by way of example with reference to the accompanying drawings in which:
The grid structure 10 includes a first upper elongate channel section 12 which has a base 14 and opposed first and second side walls 16 and 18 respectively—see
A second elongate channel section 26 is spaced from and is parallel to the first channel section 12 and is located at a lower end of the grid structure 10. The channel section 26 (see
The grid structure 10 includes a plurality of spaced apart and parallel vertically extending elongate members 40 each of which is tubular in cross section and, preferably, of square cross section, with a first upper end 42 and a second lower end 44. The upper end 42 of each elongate member extends through a respective aperture 20 in the first side wall 16 of the upper elongate channel section 12 and preferably abuts an opposing inner surface 46 of the second side wall 18—refer again to
Two lengths 50 and 52 respectively of flat bar, which are spaced apart from one another and which are parallel to each other and to the first elongate channel section 12 and the second elongate channel section 26, extend across the elongate members 40. As is shown in an insert drawing to
To retain the channel sections 12 and 26 in position the sections are lightly welded, e.g. tack-welded, to a number of the elongate members 40.
To enhance the resistance to attack of each elongate member 40 use is made of a number of briquettes 64 (
The grid structure 10 is heavy even though it has a relatively narrow width 70. An inspection of
The resulting composite structure, shown in
At an upper end, an angle iron length 130 covers an upper edge 132 of the mesh panel 108 and an adjacent upper surface of the upper channel section 12, and secures these components together.
The barrier panel 90 shown in
Through the use of the construction technique described the grid structure 10 is fabricated using about 14 tack-welds and 14 puddle-welds (excluding the welds for the reinforcing brackets). This is to be compared with a total of at least 112 welds which are required using a conventional construction technique as described hereinbefore.
Prior to erection the grid structure is coated completely with a liquid polymer which is then allowed to set. The polymer hardens and ensures that the grid structure is bonded together and is rattle-proof. The polymer also provides resistance to corrosion.
Number | Date | Country | Kind |
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2019/03565 | Jun 2019 | ZA | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2020/055259 | 6/4/2020 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2020/245753 | 12/10/2020 | WO | A |
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Entry |
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International Search Report and Written Opinion for Application No. PCT/IB2020/055259 dated Sep. 28, 2020 (10 pages). |
Number | Date | Country | |
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20220316232 A1 | Oct 2022 | US |