Not applicable.
Not applicable.
Not applicable.
1. Field of the Invention
The present invention generally relates to ladder safety devices, more particularly, the present invention relates to a ladder stabilization device used for holding a ladder, such as a conventional extension ladder or straight ladder, in a stable condition on the support surface adjacent to a fixed structure. The present invention acts to resist both sliding and pivoting movements of the ladder and maintains the base of the ladder in a preset position relative to the fixed structure.
2. Background Art
Ladders come in various sizes and configurations for both indoor and outdoor use. By way of example, some typical ladders are configured as collapsible A-frame structures that tend to be self-supporting. Others ladders are configured for leaning against a fixed structure, such as an exterior wall of a building.
Carpenters, house painters, and other workmen whose trades require the use of such ladders are well aware of the hazards created when a ladder must be leaned against a wall or other similar surface for stability. Often, the angle at which a ladder must be erected is determined by limitations of available space or by the workman's need to stand near the top of the ladder rather than any considerations of stability or safety. In such situations, the ladder becomes less stable as the workman mounts higher on the rungs. In the course of using paint brushes, tools or other devices, a workman may shift his weight enough to cause the base of the ladder to break contact with the ground or slide along the ground, allowing the ladder to slip and fall. Serious injury often accompanies such accidents, not only from striking the ground, but from being struck by tools or materials as they fall from the ladder.
No universally satisfactory solution to ladder stability has been provided in the prior art. Ladders are used for many purposes on a wide variety of work surfaces, and any stabilizing means that is adequate for one set of conditions may often be unsuited for others. As an example, spikes driven into the ground at the base of the ladder are useful when working outdoors but would do considerable damage if used indoors on a hardwood floor. Such spikes also cannot be used when working on asphalt or concrete surfaces.
Regardless of the configuration, the stability of a ladder is an important consideration. In this regard, it is always recommended that in addition to the worker on the ladder, an additional worker be located at the base of the ladder in order to stabilize the ladder. Unfortunately, many workers operate independently and oftentimes scale and work atop ladders without having another worker support the ladder from below. The present invention obviates the need for an additional worker at the base of the ladder by providing a ladder stabilization device that may either remain mounted on or be quickly and easily attached to a lower rung of the ladder to be used. The invention effectively stabilizes the ladder during use by preventing twisting, pivoting, and shifting or sliding of the base of the ladder.
Past attempts at ladder stabilization have often involved apparatuses which, when installed, extended some distance in front of the ladder. Passersby, whose attention might be attracted by the workman at the top of the ladder, ran the risk of stumbling over such apparatus in front of the ladder which in turn, could cause the ladder to fall. Examples of such prior art include U.S. Pat. No. 2,523,535 to Little, describing an adjustable ladder anchor. The adjustable ladder anchor includes an extendable pole or tube attached to the base of a ladder. The ladder anchor includes a length of pipe and a stake for driving into a ground surface in front of the ladder base for holding the ladder in place. In U.S. Pat. No. 4,576,250 to Marish, a ladder stop with two projecting arm members and a pointed vertical member are disclosed. The two projecting arms cover one of the feet of the ladder base and the pointed vertical member is driven into the ground. In U.S. Pat. No. 4,941,547 to Livick, safety featured ladder scaffolding is illustrated comprising a flat rectangular plate and a safety stake. U-bolts attach the stake assembly to a rung of the ladder and the safety stake may be driven through a hole in the rectangular plate and into the ground in front of the ladder. In U.S. Pat. No. 7,445,086 to Sizemore, a ladder lock is disclosed having a telescoping pole and a base. The pole is attached to the bottom portion of the ladder and the base is secured against a wall or base board in front of the ladder.
Additional prior art may include U.S. Pat. No. 5,890,560 to Sloop describing a ladder stabilization device that attaches a rung of the ladder to the fixed structure upon which the ladder is leaning. In U.S. Pat. No. 6,089,350 to Hankins, a ladder safety anchor device is disclosed having a U-shaped wedge surface penetrating member that may limit the surfaces on which such a device may be used. Similarly, both U.S. Pat. No. 6,955,243 to Huff and U.S. Pat. Appl. No. 2007/0289812 to Feemster et al. comprise a pair of spike members that would limit and restrict the application of their respective devices to only more compliant support surfaces and terrains.
Many innovative devices focus on anchoring the bottom end of an inclined ladder to the surface directly at the base of the ladder, or a point in the surface opposite the object or fixed structure against which the ladder is placed. Many times there are situations where these devices cannot function as intended, such as where the base of the ladder rests on a relatively impervious surface, such as concrete, blacktop or paving stone. Thus, there remains an unmet need for a ladder anchor device that can maintain the base of an inclined ladder in a stable position on these as well as a variety of other surfaces.
It is an aspect of the present invention to provide a simple, easy to use ladder stabilization device that is universally adaptable to different terrains, surfaces, and working conditions.
A further aspect of the present invention is to design such a ladder stabilization device to be easily and inexpensively installed on or removed from any standard ladder without requiring special tools or skills.
A still further aspect of the present invention is to provide a lightweight and non-cumbersome ladder stabilization device that may be easily carried on a ladder or otherwise moved about a job site.
Yet further another aspect of the present invention may provide a ladder stabilization device comprising no moving parts and/or welded joints that eliminate potential points of failure or structural weaknesses as seen in device of the prior art.
A yet still further aspect of the present invention may provide a ladder stabilization device that may easily and quickly be added or removed from a conventional ladder without the user voiding the warranty of the ladder as is common with prior art devices requiring structural alterations to the ladder for device attachment and use.
None of the above mentioned prior art patents specifically disclose the unique features, structure, and function of the presently disclosed ladder stabilization device for holding the base of a ladder, or other securable object, in place.
In accordance with one embodiment, a ladder stabilization device for holding a ladder in place on a support surface, the ladder stabilization device comprising a first retaining member for providing a first point of attachment with a lower rung of the ladder, a second retaining member for providing a second point of attachment with the lower rung of the ladder, a first frame arm having a first end and a second end, wherein the first end of the first frame arm is coupled to the first retaining member, a second frame arm having a first end and a second end, wherein the first end of the second frame arm is coupled to the second retaining member, and an anchor element coupled to both the second end of the first arm member and the second end of the second arm member, wherein the anchor element provides for removably securing the ladder stabilization device to the support surface.
In accordance with another embodiment of the present invention, a method of using a ladder stabilization device to hold a ladder in place on a support surface, the method comprising the steps of providing the ladder stabilization device in a retracted configuration on the ladder, the ladder stabilization device comprising a first retaining member for providing a first point of attachment with a lower rung of the ladder, a second retaining member for providing a second point of attachment with the lower rung of the ladder, a first frame arm having a first end and a second end, wherein the first end of the first frame arm is coupled to the first retaining member, a second frame arm having a first end and a second end, wherein the first end of the second frame arm is coupled to the second retaining member, an anchor element coupled to both the second end of the first arm member and the second end of the second arm member, wherein the anchor element provides for removably securing the ladder stabilization device to the support surface, and a storage fastener in communication with the anchor element for maintaining the ladder stabilization device in the retracted configuration when the storage fastener is releasably attached to an upper rung of the ladder and a deployed configuration when the retention member is released from the upper rung of the ladder, wherein the retracted configuration comprises the ladder stabilization device being retained in a position parallel to the plane of the ladder and the deployed configuration comprises the anchor element in communication with the support surface and the ladder stabilization device forms an acute angle with the ladder; releasing the storage fastener from the upper rung of the ladder; moving the ladder stabilization device from the retracted configuration to the deployed configuration wherein the anchor element is in communication with the support surface; passing a piercing element through the anchor element of the ladder stabilization device; and advancing the piercing element into the support surface.
A better understanding of the present invention will be realized from the detailed description that follows, taken in conjunction with the accompanying drawings, in which:
Although the following detailed description contains many specifics for the purposes of illustration, anyone of ordinary skill in the art will appreciate that many variations and alterations to the following details are within the scope of the invention. Accordingly, the following preferred embodiments of the invention are set forth without any loss of generality to, and without imposing limitations upon, the claimed invention.
The present invention provides a lightweight and easy to use device that improves safety when an individual is using a ladder. One end of the device attaches to a lower rung of the ladder and the other end of the device is secured into the support surface behind the ladder. The present inventive device prevents the base of the ladder from slipping, skidding, or otherwise moving on the support surface while the ladder is in use. The present invention also eliminates the need of a having second individual stand on or otherwise support the base of the ladder while another user climbs upon and uses the ladder. The ladder stabilization device of the present invention may also remain secured to the ladder in a retracted position so that the device will remain attached to the ladder in a low profile state as needed and may then easily be redeployed whenever the ladder is used again. The present invention is lightweight and non-cumbersome allowing for an easy combination with conventional ladders. By being removably attachable to a lower rung of a ladder the device of the present invention does not require material alterations to the conventional ladder which may void the ladder's factory warranty as is required by many prior art devices.
One embodiment of the ladder stabilization device 100 of the present invention is illustrated in
The ladder stabilization device 100 of the present invention may be composed of a variety of materials including but not limited to metal, plastic, wood, laminates, and the like, and any combinations thereof. In a preferred embodiment, the ladder stabilization device 100 may be composed from one unitary piece of material that may be bent, molded, or otherwise shaped to comprise the structural elements of the present invention. Such an embodiment comprising a unitary construction would eliminate moving parts, simplify the manufacturing process, and improve reliability of the device due to minimization of multiple points of potential failure found in other devices and systems within the prior art.
In a preferred embodiment, as shown in
As shown in
As shown in
Before climbing on a ladder 200 modified with the present invention, an individual may engage a piercing element 40 with the anchor element 30 of the device 100 after the device 100 has been disposed in a deployed configuration (see
In use, the ladder stabilization device 100 of the present invention must first be incorporated onto a conventional ladder 200. The first and second retaining members 10,15 may be attached by encircling a lower rung 201 of a ladder 200. In a preferred embodiment, the first and second retaining members 10,15 comprise respective hook elements and encircle the lowest rung 201 on a conventional ladder 200. The first and second retaining member 10,15 provide a pivotal or rotatable connection point between the ladder stabilization device 100 and the lowest rung 201 of the ladder 200. As shown in
When a ladder 200 modified with the present invention is used by an individual, the ladder stabilization device 100 may both improve safety and eliminate the need or desire for having a second person stand on or otherwise stabilize the base of the ladder 200. When the ladder 200 is positioned against the desired fixed structure such as a wall, a pole, a tree, or the like, the base of the ladder 200 may be secured by moving the ladder stabilization device 100 from a retracted configuration (
The first and second points of attachment for the first and second retaining member 10,15 may comprise several embodiments. Embodiments incorporating loops, straps, hook and loop fasteners, and the like may not show any significant difference if the device 100 is “flipped over” or rotated 180 degrees about the central axis of the device 100 on the lower rung 201 of the ladder 200 due to the symmetry of the first and second points of attachment resulting from the encircling points of attachment. However, preferred embodiments such as those comprising hook elements may embody both an over hook configuration and an under hook configuration. As shown in
Additionally, while preferred embodiments secure the anchor element 30 of the present invention to the support surface 300 behind the ladder 200 (as shown in
As will be appreciated from the design, the ladder stabilizing device of the present invention maintains the base of the ladder in place at the same distance from the wall, etc., from which it is deployed. This ensures that the base of the ladder will not slip or slide away from its initial chosen position and a worker can safely ascend the ladder, knowing it will remain stable.
It should be emphasized that many variations and modifications may be made to the above-described embodiments. By way of example, although the embodiments described herein incorporate the use of straight ladders, various other types of ladders, such as A-frame ladders could be used. All such modifications and variations are intended to be included herein within the scope of this disclosure and protected by the following claims and their legal equivalents, and not by the specific examples given.
Number | Name | Date | Kind |
---|---|---|---|
356661 | Pfaff | Jan 1887 | A |
580874 | Wilkins | Dec 1894 | A |
797161 | West | Aug 1905 | A |
1427889 | Wittmann | Sep 1922 | A |
1676197 | Marrinan | Jul 1928 | A |
1710026 | McCormick | Apr 1929 | A |
1982572 | Colglazier et al. | Nov 1934 | A |
2523535 | Little | Sep 1950 | A |
2565956 | Duhamel | Aug 1951 | A |
2574286 | Rein | Nov 1951 | A |
2700242 | Porth | Jan 1955 | A |
2940204 | Mehnert | Jun 1960 | A |
2993561 | Watson | Jul 1961 | A |
3284945 | Kurtis | Nov 1966 | A |
3834060 | Wagenknecht | Sep 1974 | A |
4007807 | Pogwizd | Feb 1977 | A |
4576250 | Marish | Mar 1986 | A |
4941547 | Livick | Jul 1990 | A |
5337856 | Fillers | Aug 1994 | A |
5400516 | Kellenberger | Mar 1995 | A |
5890560 | Sloop | Apr 1999 | A |
5918699 | Summers | Jul 1999 | A |
6032402 | Jilling et al. | Mar 2000 | A |
6089350 | Hankins | Jul 2000 | A |
6189257 | Ulrich | Feb 2001 | B1 |
D440275 | Rosenberg | Apr 2001 | S |
6219956 | Hurt | Apr 2001 | B1 |
6955243 | Huff | Oct 2005 | B1 |
7437854 | O'Reilly | Oct 2008 | B1 |
7445086 | Sizemore | Nov 2008 | B1 |
7469497 | Hergott | Dec 2008 | B2 |
7743886 | Feemster et al. | Jun 2010 | B2 |
20070289812 | Feemster et al. | Dec 2007 | A1 |
20100051384 | Currie | Mar 2010 | A1 |
20110290587 | Blazin et al. | Dec 2011 | A1 |
Entry |
---|
Health and Safety Executive, The use of ladders and stepladders an employer's guide, HSE Books, Caerphilly Business Park, Caerphilly CF83 3GG, UK. |
Number | Date | Country | |
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20110114418 A1 | May 2011 | US |