NOVEL FENCE ASSEMBLY
The invention is a fence system having a base, said base having a receiving cavity formed for receiving a connecting leg, a vertical connector plate system formed with a rotational connecting leg configured to connect with said receiving cavity, a rail configured to secure into said a vertical connector plate system, whereby said system, in an assembled configuration provides said vertical connector plate system in a substantially perpendicular to said base, said system including a storage configuration and an assembled configuration whereby movement between each configuration is rotational about pivots incorporated with said vertical connector plates.
The present invention relates to movable assembled fence systems.
SUMMARY OF THE INVENTIONIn one embodiment, each panel of this fencing system is 24′ long with 5 horizontal rails and 2 vertical end rails (square tubing). There are 3 vertical (flat bar) uprights per panel at the 6′, 12′ and 15′ positions. The panels are supported by 2 legs that are detachable and can be removed and re-attached at 90 degrees from the original position in order to align with the fence rails for transport. Each panel has 2 hooks on the top rail to attach chains for raising & lowering the panel into position with a forklift or backhoe. Each panel has a locking mechanism on the 3rd rail to allow the panel to stand up or collapse. This mechanism allows the collapsed fence to be locked with a pin (see video)
Landowners with oil leases are always very concerned about the impact of oil services on their livestock. For this reason, well sites must be fenced off from livestock. Drilling holes for fence posts is costly and time-consuming. When the fences are removed, the holes left by the fence posts can seriously injure livestock.
Cattle are known to lean against fences, so the system must be strong and rigid enough to not sustain damage when this occurs. The bracing, construction and steel used in this system will create a system strong enough to withstand cattle leaning against it.
This system allows for fencing to be erected and removed without the need for fencepost holes, and is much more cost effective than building and removing traditional fencing, as would be required when the need for temporary fencing occurs. The inventor plans to offer a turnkey service, including cartage, erection and removal of this system. Up to a half-mile of fencing can be carried on a 40′ flat deck trailer.
This system can be used anywhere portable fencing is required, providing a very strong, easily erected steel fence without the need for drilling posts and manually building a fence.
In one embodiment, the invention is a fence system comprising:
a base, said base having a receiving cavity formed for receiving a connecting leg;
a vertical connector plate system formed with a rotational connecting leg configured to connect with said receiving cavity;
a rail configured to secure into said a vertical connector plate system; whereby said system, in an assembled configuration provides said vertical connector plate system in a substantially perpendicular to said base; said system including a storage configuration and an assembled configuration whereby movement between each configuration is rotational about pivots incorporated with said vertical connector plates.
The base, in one embodiment, is positioned substantially perpendicular to the vertical plane encompassing said rail.
The system is configured to impart a returnable deformable perpendicular offset in response to force imparted from either side of said system.
In one embodiment, the system is configured to impart a returnable deformable perpendicular offset of 0.1-70 degrees relative to initial perpendicular position in response to force imparted from either side of said system. That is to say, a substantially vertical fence can be offset up to 70 degrees from perpendicular in the direction of the ground and, upon removal of force causing the offset, the fence will return to a substantially vertical position. Only the portion or portions subject to force will offset, along with adjacent portions.
The system is configured to impart a returnable deformable perpendicular offset in response to force imparted from either side of said system and further wherein said base remains in a substantially unmoved position when said system is subject to force applied from either side.
The system has an assembled arrangement and an unassembled stacked arrangement for transport of said system.
The present invention includes a fence system 10 having a plurality of horizontal rails 12, a top horizontal rail 12a, and a bottom rail 14. Each of horizontal rail 12, 12a, and bottom rail 14 are connected to vertical connector plate system 16. Fence system 10 further includes a plurality of positioning brackets 18 that are included with an uppermost top rail 12a as demonstrated in
In one embodiment, a base rail 20 is constructed and arranged to receive stabilizing leg assembly 34 whereby stabilizing leg assembly 34 having leg connector 35 formed on one end interacts with a cavity formed within base rail 20.
Horizontal rail 12a is optionally formed with positioning bracket 18 associated therewith. Positioning bracket 18 can be integral and unitary with horizontal rail 12a, welded or otherwise attached to horizontal rail 12a, or otherwise bolted or removably attached to horizontal rail 12a. As generally understood horizontal rail 12 is a fixed in position between a cavity 16c formed on the interior of connector plate system 16 by front plate 16a, back plate 16b, as best seen in
As demonstrated in
In one embodiment, the present invention encompasses an unassembled configuration 30 best demonstrated in
In one embodiment, system 10 includes an assembled configuration as demonstrated in
The improved configuration of assembly 10 provides for a fence that is deformable from a perpendicular orientation. That is to say, in a rest position each vertical connector plate assembly 16 is substantially perpendicular to base rail 20. When pressure is applied from either side of fence assembly 10, the fence is configured to bend and offset from the perpendicular configuration in response to apply pressure. For example, if a person driving a vehicle were to push against fence assembly 10, the assembly would move in response to the applied pressure however, when the applied pressure is released, for example when the vehicle is no longer contacting fence assembly 10, the entire assembly reef turns to a substantially perpendicular configuration. This is accomplished without use of any types of spring mechanism and solely by the ability of each vertical connector plate assembly 16 able to move within a secured socket by virtue of rotational motion of leg connector 35. The plurality of vertical connector plate 16 arranged along a section of fence each act to urge and maintain the substantial perpendicular orientation. When one section is offset from perpendicular orientation, assembly 10 as a whole urges the offset vertical connector plate systems 16 such that once pressure is released a substantially perpendicular orientation is resumed. As shown in
This is applicable in many situations including, but not limited to, farm animals and livestock that brush up against fences and exert pressure that often damage conventional fence systems. The system of the present invention provides for a fence system that reacts to these various pressures and returns to a desired perpendicular orientation.
While the invention has been described in its preferred form or embodiment with some degree of particularity, it is understood that this description has been given only by way of example and that numerous changes in the details of construction, fabrication, and use, including the combination and arrangement of parts, may be made without departing from the spirit and scope of the invention.
Claims
1. A fence system comprising:
- a base, said base having a receiving cavity formed for receiving a connecting leg;
- a vertical connector plate system formed with a rotational connecting leg configured to connect with said receiving cavity;
- a rail configured to secure into said a vertical connector plate system; whereby said system, in an assembled configuration provides said vertical connector plate system in a substantially perpendicular to said base; said system including a storage configuration and an assembled configuration whereby movement between each configuration is rotational about pivots incorporated with said vertical connector plates.
2. The system of claim 1 wherein said base is positioned substantially perpendicular to the vertical plane encompassing said rail.
3. The system of claim 1 wherein said system is configured to impart a returnable deformable perpendicular offset in response to force imparted from either side of said system.
4. The system of claim 1, The system of claim 1 wherein said system is configured to impart a returnable deformable perpendicular offset of 0.1-70 degrees relative to initial perpendicular position in response to force imparted from either side of said system.
5. The system of claim 1 wherein said system is configured to impart a returnable deformable perpendicular offset in response to force imparted from either side of said system and further wherein said base remains in a substantially unmoved position when said system is subject to force applied from either side.
6. The system of claim 1 including an unassembled stacked arrangement for transport of said system.
Type: Application
Filed: Sep 10, 2014
Publication Date: Mar 10, 2016
Inventor: Warren Peck (Warburg)
Application Number: 14/482,953