This invention concerns the erection of fencing of the type including multiple strands of barbed wire strung along the top of fencing fabric secured to line posts. Such fencing typically includes tension wires strung between the posts and anchored to starter and termination posts to stabilize the position of line of posts without using horizontal pipes.
Angled or vertical “barb” caps are first installed on the tops of the posts and then an upper tension wire is strung through openings in the caps, the wire tensioned and then attached to each cap. A lower tension wire is also often strung along the posts, tensioned and anchored, and also attached to the posts with conventional attachments.
Thereafter, the fence fabric is unwound along the posts and attached thereto.
Finally, multiple strands of barb wire are strung along the barb caps, tensioned, and attached thereto.
Particularly for large fencing projects, the need for such time consuming multiple passes along the fence line greatly increases the labor required.
It is the object of the present invention to provide an apparatus and method for reducing the time and labor required to erect such barbed wire topped fences.
The above object and other objects which will be understood upon a reading of the following specification and claims are achieved by a motor vehicle mounted wire dispenser arrangement including a plurality of reel mounts supported to rotate about a vertical axis, each reel having an adjustable rotation retarding device resisting rotation thereof to a predetermined extent so that pulling a wire strand therefrom generates a predetermined tension in the wire strand as it is unwound. The multiple strands are routed through pulley sets to be substantially aligned with and extending in the direction to be strung along the fence post caps.
Also mounted on the vehicle is a bar rack extending above a walkway mounted on one side of the vehicle. A number of barb caps are stowed side by side on the bar rack which passes through an opening in each barb cap to slidably hold the same. A tension wire is strung through the barb cap, unwound off a reel on the wire dispenser. A second reel of tension wire may also be included on the wire dispenser arrangement and strung along the line posts as the vehicle traverses the post line.
An installer on the walkway places a barb cap on each successive post, sliding each cap off the rack bar. After traversing the fence section, the tension wires, having been anchored at one end to a start post, are tightened as with a fence jack and secured to a termination post. The tension wires are then connected to each post and barb cap.
In a second pass along the fence line, the multiple barbed wire strands are simultaneously strung to the post caps under a predetermined degree of tension. Wound rolls of barbed wire, (typically three in a number) are installed on respectively rotary roll supports. Each barbed wire strand is pulled off a respectively roll by rotation of the associated support and is routed to a first set of side by side pulleys mounted on the one side of the vehicle for rotation about a substantially horizontal aligned axis. The strands are each passed around a respective pulley in the first set, and extend substantially vertically upwardly to and around a second set of pulleys on an upright member, the second set of pulleys also rotatable about a substantially horizontal axis. From there, the multiple strands are routed around a third set of pulleys mounted on a swing arm pivoted to the top of the upright member. The third set of side by side pulleys are each mounted for rotation about an axis parallel to the other pulleys in the set, each axis normal to the swing arm.
The third set pulleys are inclined to approximately match the inclination of the barb arms such that the strands extend in rough alignment with the direction that the strands are to be strung along the barb caps to be easily simultaneously strung under tension along the barb caps as the vehicle traverses the fence line. The strands are tensioned by the preset established by retarders and the resistance generated by passing through each respective pulley in the respective three pulley sets. An installer on the walkway can secure the barbed wire strands in slots in the barb caps in the conventional manner.
The inclination of the swing arm may be adjustably positioned by a power cylinder to compensate for any sloping grade encountered by the vehicle as it traverses the fence line.
The swing arm can be repositioned to allow the swing arm to swing through a vertical range when the barb caps are vertically oriented.
In the following detailed description, certain specific terminology will be employed for the sake of clarity and a particular embodiment described in accordance with the requirements of 35 USC 112, but it is to be understood that the same is not intended to be limiting and should not be so construed inasmuch as the invention is capable of taking many forms and variations within the scope of the appended claims.
Referring to
A bar rack 18 is mounted extending above and along the walkway 12, cantilevered from its forward end to allow a series of barb caps 20 to be slid one by one onto the rack 18 which is received in a through opening 19 in each cap 20, and slid one by one off the free end thereof.
A wire dispensing arrangement 22 is mounted at the front end of the under framework 13.
A pair of rolls 24A, 24B of tension wire 26 are loaded therefrom. A first strand of kinked tension wire 26A is guided around a series of pulleys, described below in detail, to a guide 28 at an upper level, and thence through the opening 21 in each barb cap 20.
Since the tension wires 26A, 26B are tensioned after being strung, only a loose guiding thereof is necessary in being strung along the fence posts 14.
The vehicle 10 is driven along the line of fence posts 14, stopping or slowly driving past each post 14, and an installer on the walkway platform 12 places a barb cap 20 on the top of each fence post 14.
The upper and lower tension wire 26A, 26B are at the same time loosely strung along the posts 14, the upper wire 26A passing through the openings 21 in the caps 20.
After the fence section to be erected has been traversed in this manner, each of the tension wires 26A, 26B, having previously been anchored to a starting post (not shown), is stretched to a proper tension, as by use of a fence jack, in the well known manner, and secured to an end post (not shown) secured to the line posts 14 and barb caps 20 in a known manner.
A series of three “trailer hitch” type sockets 38A, B, C are welded to the upper cross member 32A, projecting forwardly therefrom (
A series of rotary roll supports 48A, B, C may be removably installed in the hitch sockets 38A, B, C. When the tension wire reels 24A, 24B are installed on the two outer rotary supports 40, a guide pulley 42 is installed in the center hitch support 40 (
Referring to
A top disc 49 is placed on each shaft 44, and tightened down on the wire roll with nuts 47, so that a rotation connection to the respective rotary support 48A–C and retarders 45 is established by rotation of the roll rotary support 48A–C about a substantially vertical axis defined by shafts 44, which may tilted from the vertical to some degree depending on the slope the vehicle 10 is negotiating.
A bolt spring with assembly 51 allows adjustment of the snubbing force (
A series of bolt-nut assemblies 41 project bolt ends up through the support disc 43 and into pocket portions of a wire roll core C on which the barbed wire is wound when purchased from a supplier (
As noted above, the tension wire strands 26A, 26B are not fully tensioned when being strung such that the roll of the retarders 45 is not significant in that context.
The barbed wire strands 46A, 46B, 46C must all be fully tensioned when simultaneously strung as indicated in
In order to fully tension all of the barbed wire strands 46A–C, rotary supports 48A–C are each provided with a separate retarder such that each strand is strung against the resistance of the individual retarder 45. Thus, as the vehicle 10 moves along the fence line, the slightly differing dispensed lengths of the barbed wire strands does not cause one wire to resist movement of the vehicle and the others to become slack. Instead, all of the strands are tensioned independently of the other strands to the same level set by the respective retarder 45.
Three barbed wire rolls are installed on the three rotary roll supports 48A, B, C, an additional rotary support 48B installed on the center hitch socket 38B in this case (
Each rotary roll support 48A–C unspools a respective strand of barbed wire 46A–C from rolls of prewound barbed wires placed on each rotary support 48A–C.
According to the present invention, a series of pulley sets are provided to redirect the unwound barbed wire strands 46A–C to exit in a direction to be roughly aligned with the direction in which they are to be strung when exiting the pulley sets.
The barbed wire strands 46A–C each extend horizontally across the width of the apparatus to the one side of the vehicle to a first set of three pulleys 50 on the one side of the vehicle 10, each pulley 50 supported between a pair of arms 52 pivoted to a fixed bracket 54. Pairs of tension springs 56 are connected to each pair of arms 52 and to a fixed rod 53 to hold the arms 52 in position abutting a fixed plate 58 of the bracket 53. This provides an emergency overload release if the barbed wire strands 46A–C are snagged to be suddenly overloaded to allow a driver time to stop before breaking any of the wire strands.
The pulleys 50 of the first set are arranged side by side and are rotatable about an aligned substantially horizontal axis with a respective barbed wire strand 46A–C passed around a respective one of the pulleys 50 and then upwardly to a second set of pulleys 58 mounted side by side above the first set on a rod 60, to also all be rotatable about a substantially horizontal coaxial axis. The rod 60 projects from an adjustable height member 62 telescoped into a fixed upright tube member 64. A locking bar 66 slidable in a square tube 68 allows height adjustment of the member 62 by being located in a selected one of a series of holes (not shown) in the members 62. A curved rod 70 welded to the bar 66 provides a convenient handle and a guide for one of the tension wires 26B (
An angled support arm 72 is pivoted on the upper end of the member 62, held in a particular pivoted position by a hydraulic cylinder 74 having an output rod 76 connected to an extension arm 78, the cylinder body 75 pinned to a pair of anchor members 77 fixed to upper member 62.
A third set of pulleys 80 are mounted on the support arm 72 to be rotatable about axes parallel to each other and normal to the arm 72. The angled shape of arm 72 locates the pulleys 80 to be approximately aligned with the second set of pulleys 58. The strands 46A–C exit the third set of pulleys in approximate alignment with the direction they are strung, so that the vehicle motion creates proper tensioning thereof.
The angled support arm 72 can be moved through a range of positions as shown in
If the barb caps 20 are of a type which extend vertically, the arm 78 may be reconnected to the arm 72 to allow a more vertically oriented range of adjusted positions as shown in
A strand retainer rod 82 is affixed alongside the most outboard of the pulleys 50 to keep the wire strands 46A–C from jumping off that pulley. The close spacing of the other pulleys 50 accomplishes the same end.
Pulling a strand of barb wire 46A, B, C of each roll causes rotation of each rotary support 40 and retarder 45 to develop a predetermined tension in the strands 46A–C which is at the level desired in the strands when strung on the barb caps 20.
Thus, the three barbed wire strands 46A–C can be strung simultaneously as shown in
The independent routing of the barbed wire strands 46A–C through the three sets of three pulleys 50, 58, 80 and a respective one of three retarders 45 allows individual tensioning of each strand 46A–C even through simultaneously strung along the barb caps 20 by the vehicle motion.
Thus, fewer passes along the fence line required, and these fewer passes are quicker, so that considerable time and labor savings are realized, particularly for large sections of fencing.
It is noted that the elevated platform may be eliminated for lower fences.
This application claims the benefit of U.S. provisional Ser. No. 60/474,639, filed May 29, 2003.
Number | Name | Date | Kind |
---|---|---|---|
3749368 | Miller | Jul 1973 | A |
3934655 | Whistle | Jan 1976 | A |
5662313 | Forrester | Sep 1997 | A |
6065714 | Fondacaro | May 2000 | A |
6302156 | Lardet et al. | Oct 2001 | B1 |
Number | Date | Country | |
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60474639 | May 2003 | US |