Auxiliary step platform for ladder
12116842 ยท 2024-10-15
Assignee
Inventors
Cpc classification
International classification
Abstract
An auxiliary platform for a ladder step. The auxiliary platform may include a substantially rectangular and horizontally oriented platform with a platform front negative edge and a platform rear edge hem. The auxiliary platform may further include a substantially flat front surface with a front surface flanged rearward-extending edge, the front surface flanged from the platform front negative edge. Additionally, the auxiliary platform a bracing surface flanged from and extended downward from the platform rear edge hem and oriented substantially parallel to the front surface, and a biasing member removably connected to the bracing surface. When the platform is placed on the ladder step and the biasing member biased against the ladder step and the bracing surface to secure the auxiliary platform to the ladder step.
Claims
1. An auxiliary platform for a ladder step comprising: a substantially rectangular and horizontally oriented platform with a platform front negative edge and a platform rear edge hem, wherein the platform rear edge hem extends horizontally parallel to the horizontally oriented platform; a substantially flat front surface with a front surface flanged rearward-extending edge, the front surface flanged from the platform front negative edge, wherein the front surface is outwardly angled relative to the horizontally oriented platform and the front surface flanged rearward-extending edge extends substantially rearwardly parallel to the horizontally oriented platform; a bracing surface flanged from and extended downward from the platform rear edge hem and oriented substantially parallel to the front surface, wherein the bracing surface is located between the platform front negative edge and the platform rear edge hem; and a biasing member removably connected to the bracing surface, wherein the biasing member extends through the bracing surface at an upwardly extending angle toward the horizontally oriented platform; wherein the horizontally oriented platform is placed on the ladder step with a bottom surface of the horizontally oriented platform in contact with a top surface of the ladder step and a back surface of the front surface being flush against a front surface of the ladder step, and the bracing surface is at a distance from the back surface of the front surface that is no greater than the additive width of the ladder step and a longest length of the biasing member, the biasing member biased against the ladder step and the bracing surface to secure the auxiliary platform to the ladder step, and wherein the front surface flanged rearward-extending edge inhibits the auxiliary platform from accidental removal from the ladder step.
2. The auxiliary platform of claim 1, wherein the horizontally oriented platform is larger than the ladder step the auxiliary platform is coupled to.
3. The auxiliary platform of claim 1, further comprising a non-slip member coupled to a top surface of the horizontally oriented platform.
4. An auxiliary platform for a ladder step comprising: a substantially rectangular and horizontally oriented platform with a platform front negative edge and a platform rear edge hem, wherein the platform rear edge hem extends horizontally parallel to the horizontally oriented platform, wherein the horizontally oriented platform is larger than the ladder step the auxiliary platform is coupled to; a substantially flat front surface with a front surface flanged rearward-extending edge, the front surface flanged from the platform front negative edge, wherein the front surface is outwardly angled relative to the horizontally oriented platform and the front surface flanged rearward-extending edge extends substantially rearwardly parallel to the horizontally oriented platform; a bracing surface flanged from and extended downward from the platform rear edge hem and oriented substantially parallel to the front surface, wherein the bracing surface is located between the platform front negative edge and the platform rear edge hem; a biasing member removably connected to the bracing surface, wherein the biasing member extends through the bracing surface at an upwardly extending angle toward the horizontally oriented platform; and a non-slip member coupled to a top surface of the horizontally oriented platform; wherein the horizontally oriented platform is placed on the ladder step with a bottom surface of the horizontally oriented platform in contact with a top surface of the ladder step and a back surface of the front surface being flush against a front surface of the ladder step, and the bracing surface is at a distance from the back surface of the front surface that is no greater than the additive width of the ladder step and a longest length of the biasing member, the biasing member biased against the ladder step and the bracing surface to secure the auxiliary platform to the ladder step, and wherein the front surface flanged rearward-extending edge inhibits the auxiliary platform from accidental removal from the ladder step.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A more complete understanding of the present invention may be derived by referring to the detailed description and claims when considered in connection with the Figures, wherein like reference numbers refer to similar items throughout the Figures, and:
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DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION
(18) As discussed above, embodiments of the present invention relate to an auxiliary step platform for a ladder.
(19) As shown in
(20) The front surface 26 extends substantially downward, or is flanged, from the platform front negative edge and sized and dimensioned to sit flush against the front surface of the ladder step.
(21) Accordingly, the components defining any auxiliary step platform 10 may be formed of any of many different types of materials or combinations thereof that can readily be formed into shaped objects provided that the components selected are consistent with the intended operation of an auxiliary step platform 10. For example, the components may be formed of: rubbers (synthetic and/or natural) and/or other like materials; glasses (such as fiberglass) carbon-fiber, aramid-fiber, any combination thereof, and/or other like materials; polymers such as thermoplastics (such as ABS, Fluoropolymers, Polyacetal, Polyamide; Polycarbonate, Polyethylene, Polysulfone, and/or the like), thermosets (such as Epoxy, Phenolic Resin, Polyimide, Polyurethane, Silicone, and/or the like), any combination thereof, and/or other like materials; composites and/or other like materials; metals, such as zinc, magnesium, titanium, copper, iron, steel, carbon steel, alloy steel, tool steel, stainless steel, aluminum, any combination thereof, and/or other like materials; alloys, such as aluminum alloy, titanium alloy, magnesium alloy, copper alloy, any combination thereof, and/or other like materials; any other suitable material; and/or any combination thereof.
(22) Furthermore, the components defining any auxiliary step platform 10 may be purchased pre-manufactured or manufactured separately and then assembled together. However, any or all of the components may be manufactured simultaneously and integrally joined with one another. Manufacture of these components separately or simultaneously may involve extrusion, pultrusion, vacuum forming, injection molding, blow molding, resin transfer molding, casting, forging, cold rolling, milling, drilling, reaming, turning, grinding, stamping, cutting, bending, welding, soldering, hardening, riveting, punching, plating, and/or the like. If any of the components are manufactured separately, they may then be coupled with one another in any manner, such as with adhesive (e.g. ?), a weld, a fastener (e.g. a bolt, a nut, a screw, a nail, a rivet, a pin, and/or the like), wiring, any combination thereof, and/or the like for example, depending on, among other considerations, the particular material forming the components. Other possible steps might include sand blasting, polishing, powder coating, zinc plating, anodizing, hard anodizing, and/or painting the components for example.
(23) The embodiments and examples set forth herein were presented in order to best explain the present invention and its practical application and to thereby enable those of ordinary skill in the art to make and use the invention. However, those of ordinary skill in the art will recognize that the foregoing description and examples have been presented for the purposes of illustration and example only. The description as set forth is not intended to be exhaustive or to limit the invention to the precise form disclosed. Many modifications and variations are possible in light of the teachings above without departing from the spirit and scope of the forthcoming claims.