This invention relates to a ladder support and movement assembly. More particularly, this invention relates to an assembly which facilitates easy movement of a heavy ladder and then provides a stable base for the ladder once in use.
Extension ladders are generally comprised of an upper and lower section at least and possibly more. Each section is comprised of a pair generally parallel rails with the usual rungs for stepping on extending between the rails. The upper and lower ladder sections are slidably mounted with respect to each other. The upper ladder section is extendible with respect to the lower ladder section. The upper section can be extended to varying lengths to provide additional height when used, and then retracted and closed for storage when not in use.
While extension ladders provide for versatile use, the ladders can be difficult to maneuver to the location of desired use due to their relatively heavy weight and long length. Movement of the ladder often requires two people or a difficult and awkward process by one person.
Additionally, because of the extended length of the ladders in use, it is often necessary to have a second person stand at the base of the ladder and support or “foot” the ladder for the safety of the person climbing and working on the ladder.
In at least one aspect, the present invention provides a ladder support assembly including a base frame having first and second ends and a pair of pivot supports extending from the base frame which support a rod configured to pivotally support a ladder relative to the base frame. A pivot frame is pivotally mounted to the base frame and is biased away from the base frame. A bracket assembly is pivotally mounted to the pivot frame and includes a pair of bracket plates. Each bracket plate has an inner flange and outer flange with a ladder rail receiving area between the inner and outer flanges. The ladder receiving area is configured such that the bracket plate is slidable relative to a respective ladder rail received therein. A crank assembly includes a spool rotatably supported on the base frame and a cord wound about the spool with a free end of the cord connected to the bracket assembly. Rotation of the spool in a first direction takes up the cord and causes the pivot frame to pivot toward the base frame, thereby raising the ladder toward a raised position. Rotation of the spool in a second, opposite direction causes the cord to be let out and the pivot frame to pivot away from the base frame, thereby lowering the ladder toward a lowered transport position.
The accompanying drawings, which are incorporated herein and constitute part of this specification, illustrate the presently preferred embodiments of the invention, and, together with the general description given above and the detailed description given below, serve to explain the features of the invention. In the drawings:
In the drawings, like numerals indicate like elements throughout. Certain terminology is used herein for convenience only and is not to be taken as a limitation on the present invention. The following describes preferred embodiments of the present invention. However, it should be understood, based on this disclosure, that the invention is not limited by the preferred embodiments described herein.
Referring to
The support assembly 10 is illustrated supporting an extension ladder 12. The illustrated extension ladder 12 includes a lower section 14 and an upper section 16 which are slidably mounted with respect to each other. Each section 14, 16 includes a pair generally parallel rails 17 with the usual rungs 18 for stepping on extending between the rails 17, with at least the bottom rung 18 of the lower section 14 having a passage therethrough. While an extension ladder with two sections is illustrated, the support assembly 10 is usable with ladders having only one section or more than two sections.
The illustrated base frame 20 includes a pair of side rails 22 extending between a pair of cross braces 23, 25 at opposed ends thereof. The cross brace 23 has a tubular configuration such that it can telescopingly receive a corresponding extension tube 32 of a respective outrigger assembly 30. Each extension tube 32 preferably has a plurality of pin receiving holes 33 configured to receive a pin 31 extending through the cross brace 23 such that each outrigger assembly 30 may be adjusted inwardly and outwardly relative to the base frame 20. Each outrigger assembly 30 further comprises an adjustment tube 36 connected to the extension tube 32 via a bracket 34. A support plate 38 is connected to one end adjustment tube 36 such that the vertical position of the support plate 38 relative to the bracket 34 may be adjusted. In the illustrated embodiment, the adjustment tube 36 includes an internal screw controlled by the handle 37 to lower and raise the position of the support plate 38. Other assemblies, for example, pneumatic or hydraulic cylinders, telescoping tubes with pin connections and the like, may be used for the adjustment tube 36. The horizontal and vertical adjustability of the outrigger assemblies 30 allow each support plate 38 to be positioned to provide a stable support for the base frame 20 even on uneven terrain. It is recognized that other aspects of the invention described herein may be carried out with supports for the base frame which provide less or no adjustability and the invention is not limited to the described outrigger assemblies.
A pivot support 26 extends upward from each side rail 22. The pivot supports 26 pivotally support a ladder rod 28 which extends through the open passage of the bottom rung 18 of the lower ladder section 14. The ladder 12 is thereby pivotally mounted with respect to the base frame 20.
The opposite end of the base frame 20 is supported by the wheel assembly 40. The wheel assembly 40 includes an axle 46 which extends through each of the side rails 22 and has a wheel 44 mounted on each end thereof. The wheels 44 are sized such that the base frame 20 is spaced off the ground surface and also has sufficient clearance to pivot about the axle 46 (see
The pivot frame 50 includes a pair of side rails 52, with each side rail 52 pivotally mounted relative to a respective side rail 22 of the base frame 20. In the illustrated embodiment, the axle 46 extends through each pivot frame side rail 52 to provide such pivotal mounting. A cross brace 55 extends between the two side rails 52 proximate the pivotally mounted end. The spring 56 extends between the base frame cross brace 25 and the pivot frame cross brace 55 such that the pivot frame 50 is biased to pivot away from the base frame 20. At the opposite ends of the side rails 52, a pivot rod 54 extends between the rails 52 and pivotally supports a portion of the ladder bracket assembly 60.
The ladder bracket assembly 60 includes a pair of bracket plates 66. Each bracket plate 66 includes an inner flange 67 and an outer flange 68 with a ladder rail receiving area between the inner and outer flanges 67, 68. The ladder receiving area has a width slightly greater than the width W of the ladder rail 17 such that each rail 17 is securely retained, but the bracket plate 66 is slidable relative to the rail. The flanges 67 and 68 are illustrated as fixed, however, one or both flanges 67, 68 may be adjustably mounted on the plate 66 to accommodate rails 17 of different widths.
Each plate 66 has a mounting extension 65 extending therefrom, with each mounting extension 65 connected to a respective cross brace tube 62, 64. The pivot rod 54 extends through the cross brace tubes 62, 64 such that the ladder bracket assembly 60 is pivotally mounted with respect to the pivot frame 50. The cross brace tube 64 is telescopingly received in the cross brace tube 62 such that the tubes 62, 64, and thereby the bracket plates 66, are adjustable toward and away from each other. Such movement allows the bracket plates 66 to be moved apart to position the ladder 12 therebetween and then moved together to secure the rails 17 between the respective flanges 67, 68. Such movement also accommodates ladders of differing widths. Locking bolts 63 or the like extend between the cross brace tubes 62, 64 to lock the tubes 62, 64 relative to one another one the ladder 12 is positioned between the flanges 67, 68.
With the lower portion of the ladder 12 pivotally connected to the base frame 20 by ladder rod 28 and the ladder rails 17 positioned within but slidable relative to the bracket plates 66, a change in the angular relationship between the pivot frame 50 and the base frame 20 causes a corresponding in the angular orientation of the ladder 12 with respect to the base frame 20. The crank assembly 70 extends between the base frame 20 and the ladder bracket 60 to control such angular adjustment.
With particular reference to
Having described the components of the exemplary support assembly 10, various operations thereof will be described with reference to
Turning to
Referring to
These and other advantages of the present invention will be apparent to those skilled in the art from the foregoing specification. Accordingly, it will be recognized by those skilled in the art that changes or modifications may be made to the above-described embodiments without departing from the broad inventive concepts of the invention. It should therefore be understood that this invention is not limited to the particular embodiments described herein, but is intended to include all changes and modifications that are within the scope and spirit of the invention as defined in the claims.
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International Search Report and Written Opinion dated Mar. 15, 2017 for International Patent Application No. PCT/US2016/063979 (9 pages). |
Number | Date | Country | |
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20170167196 A1 | Jun 2017 | US |