SAFETY LADDER
20180187486 ยท 2018-07-05
Inventors
Cpc classification
E06C7/486
FIXED CONSTRUCTIONS
E06C7/06
FIXED CONSTRUCTIONS
E06C1/345
FIXED CONSTRUCTIONS
E06C7/188
FIXED CONSTRUCTIONS
International classification
E06C1/34
FIXED CONSTRUCTIONS
E06C7/06
FIXED CONSTRUCTIONS
Abstract
A safety ladder for accessing the rooftop of a building structure is disclosed. In a version, the safety ladder comprises a first and second side rail extending between a lower free end and an upper free end; a plurality of horizontal rungs vertically disposed between the side rails; and a hinged roof portion operably positioned between the first and second side rails near the upper free end terminating at a top end, wherein the hinged roof portion rotates about a hinge axis between a default position and a forward rooftop position.
Claims
1. A safety ladder for accessing the rooftop of a building structure, comprising: a) a first and second side rail extending between a lower free end and an upper free end; b) a plurality of horizontal rungs vertically disposed between the side rails; and c) a hinged roof portion operably positioned between the first and second side rails near the upper free end terminating at a top end, wherein the hinged roof portion rotates about a hinge axis between a default position and a forward rooftop position.
2. The safety ladder of claim 1, wherein the hinged roof portion at the hinged axis is slidable within a longitudinal path along the first and second side rail, wherein the safety ladder further comprises a locking means operably configured to lock the position of the hinged axis along the path in order to position the hinged roof portion at an angle which is flush with the pitch of the rooftop.
3. The safety ladder of claim 2, wherein the top end of the hinged roof portion terminates with a horizontal roof stop, wherein the roof stop provides a catch for objects on the rooftop.
4. The safety ladder of claim 3, wherein the horizontal roof stop having a width greater than the width between the first and second rail, wherein the roof stop provides an exterior surface that is perpendicular to the surface of the rooftop while the hinged roof portion is engaged in the forward rooftop position, thereby providing a catch for objects on the rooftop.
5. The safety ladder of claim 2, further comprising opposing first and second length adjustable tethers, each tether comprising: a) a line retractor connected to the side rail; b) a line operably connected to the retractor, wherein the line retracts and extends the operably length of the line; c) a means of connecting the line end with a nearby object; and d) a means for locking an operable extended length of line of the length adjustable tether.
6. The safety ladder of claim 1, wherein the top end of the hinged roof portion terminates with a horizontal roof stop, wherein the roof stop provides a catch for objects on the rooftop.
7. The safety ladder of claim 6, wherein the roof stop operably configured to be attachably removable with the hinged roof portion.
8. The safety ladder of claim 1, wherein the hinged roof portion has a pair of parallel side rails forming a frame having a plurality of rungs horizontally disposed therein.
9. The safety ladder of claim 1, further comprising opposing first and second length adjustable tethers, each tether comprising: a) a line retractor connected to a side rail; b) a line operably connected to the retractor, wherein the line retracts and extends the operably length of the line; c) a means of connecting the line end with a nearby object; and d) a means for locking an operable extended length of line of the length adjustable tether.
10. The safety ladder of claim 9, wherein the means for connecting is a metal loop having a spring loaded gate.
11. The safety ladder of claim 1, further providing a step ladder hinge bisecting the length of the ladder into two sections, wherein the safety ladder can be positioned into a step ladder configuration.
12. The safety ladder of claim 1, wherein the first and second side rail near the lower free end diverge apart adapted to be positioned on the ground.
13. The safety ladder of claim 1, wherein the first and second side rail diverge near the upper free end, each terminating at a hand support end at the upper free end.
14. A safety ladder system for accessing the rooftop of a building structure, comprising: a) a first and second side rail extending between a lower free end and an upper free end, the first and second side rail diverge near the upper free end, each terminating at a hand support end; b) a plurality of horizontal rungs vertically disposed between the side rails; and c) a hinged roof portion operably positioned between the first and second side rails near the upper free end terminating at a top end, wherein the hinged roof portion rotates about a hinge axis between a default position and a forward rooftop position, the hinged axis is slidable within a longitudinal path along the first and second side rail, wherein the safety ladder further comprises a locking means operably configured to lock the position of the hinged axis along the path in order to position the hinged roof portion at an angle which is flush with the pitch of the roof.
15. The safety ladder of claim 14, wherein the top end of the hinged roof portion terminates with a horizontal roof stop having a padding, wherein the roof stop provides a catch for objects on the rooftop.
16. The safety ladder of claim 15, wherein the roof stop is operably configured to be attachably removable with the top end of the hinged roof portion.
17. The safety ladder of claim 14, further comprising opposing first and second length adjustable tethers, each tether comprising: a) a line retractor hingedly connected to a side rail; b) a line operably connected to the retractor, wherein the line retracts and extends the operably length of the line; c) a means of connecting the line end with a nearby object; and d) a means for locking an operable extended length of line of the length adjustable tether.
18. A safety ladder system for accessing the rooftop of a building structure, comprising: a) a first and second side rail extending between a lower free end and an upper free end, the first and second side rail diverge near the upper free end, each terminating at a hand support end; b) a plurality of horizontal rungs vertically disposed between the side rails; c) a hinged roof portion operably positioned between the first and second side rails near the upper free end terminating at a top end, wherein the hinged roof portion rotates about a hinge axis between a default position and a detached, forward position, the hinged axis is slidable within a longitudinal path along the first and second side rail, wherein the safety ladder further comprises a locking means operably configured to lock the position of the hinged axis along the path in order to position the hinged roof portion at an angle which is flush with the pitch of the roof, wherein the top end of the hinged roof portion terminates with a horizontal roof stop having a width greater than the width between the first and second rail, wherein the roof stop provides an exterior surface that is perpendicular to the surface of the rooftop while the hinged roof portion is engaged in the forward rooftop position, thereby providing a catch for objects on the rooftop; and d) opposing first and second length adjustable tethers, each tether comprising: i) a line retractor hingedly connected to the exterior side of a side rail; ii) a line operably connected to the retractor, wherein the line retracts and extends the operably length of the line; iii) a means of connecting the line end with a nearby object; and iv) a means for locking an operable extended length of line of the length adjustable tether.
19. The safety ladder of claim 17, wherein the roof stop is operably configured to be attachably removable with the top end of the hinged roof portion at the user's discretion.
20. The safety ladder of claim 17, further providing a step ladder hinge bisecting the length of the ladder into two sections, wherein the safety ladder can be positioned into a step ladder configuration.
Description
BREIF DESCRIPTION OF THE DRAWINGS
[0017] These and other features, aspects, and advantages of the present invention will become better understood with regard to the following description and accompanying figures where:
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DETAILED DESCRIPTION
[0037] Referring now to the figures wherein the showings are for purposes of illustrating a preferred version of the invention only and not for purposes of limiting the same, the present invention is a unique safety ladder which provides safe, secure, and stable passage to and from a rooftop structure.
[0038] In the following description, for purposes of explanation and not limitation, specific details are set forth such as particular architectures, interfaces, techniques, etc. in order to provide a thorough understanding of the present invention. However, it will be apparent to those skilled in the art that the present invention may be practiced in other versions that depart from these specific details. In other instances, detailed descriptions of well-known devices, circuits, and methods are omitted so as not to obscure the description of the present invention with unnecessary detail.
[0039] Moreover, the description is not to be taken in the limiting sense, but is made merely for the purpose illustrating the general principles of the invention, since the scope of the invention is best defined by the appended claims. Various inventive features are described below that can each be used independently of one another or in combination with other features.
[0040] Unless otherwise defined, all technical terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the invention belongs. As used in the specification and the appended claims, the singular forms a, an, and the include plural references unless the context clearly dictates otherwise. Any reference to or herein is intended to encompass and/or unless otherwise stated.
[0041] With reference to the figures, particularly
[0042] In the illustrated version, the version 10 has an upper free end portion 16 and a lower free end portion 18. The lower free end portion 18 has opposing side rails 12 which diverge towards the ground 84providing a broader base foot print with the ground 84 providing increased lateral support of the safety ladder 10.
[0043] With reference to the figures, particularly
[0044] In the illustrated version, the upper end portion 16 side rails 12 do not contain rungs therebetween providing a gap 26. Between the gap 26 extends upward a hinged roof portion 28 having a top end 34 and a bottom end 36. The hinged roof portion 28 is operably connected to the adjacent upper extending side rails 12 near the bottom end 36 providing a path of motion between an attached, default position and a detached, forward rooftop positionrotating about the hinge axis X between each position.
[0045] Optionally, in an alternative version as best illustrated by
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[0047] In the illustrated version, the hinged roof portion 28 comprises opposing side rails 30 connected by a plurality of rungs 32 forming a framed rectangle configuration. As depicted by the illustrated version, the top end 34 may further comprise a horizontally positioned roof stop 36 having a greater width than the safety ladder 10. The roof stop 36 has an exterior surface 38 that is positioned perpendicular to the surface of the adjacent rooftop 82 while the hinged roof portion 28 is extended forward in the detached position. The exterior surface 38 is designed to provide a stopping surface utilize to support objects and persons as they navigate the rooftop 82. In a version of the invention as best illustrated by
[0048] In the illustrated version, the hinged roof portion 28 further comprises a layer of a padding 29 which is positioned on the exterior face 38 thereof. While in the detached position, the padding 29 is configured to further grip the rooftop surface 83 and to prevent slippage. The padding 29 can be a foam/rubber padding or other padding known to provide a cushion barrier having gripping qualities. Moreover, near the hinge axis X and channel 40, a hinge barrier 33 may be provided which is positioned to provide a softened barrier between the safety ladder 10 and the edge or eve 86 of the rooftop structure 82, further providing stability to the safety ladder 10 while reducing the chance of damaging the eve 86 or other structure. The hinge barrier 33 can be a padding made of foam rubber similar to the padding 29 material.
[0049] In a version of the invention and as best illustrated by
[0050] As best illustrated in
[0051] Moreover, each line retractor 64 includes a means for locking 74 an operably extended length of line 62. The means for locking 74 can be any device which locks the desired line 62 length by preventing the line retractor 64 from retracting or extending the line 62. In the version, the lock 74 is a switch that is turned which seizes the reel into a locked position.
[0052] As best illustrated by
[0053] Referring to
[0054] Now referring to all the figures, the operation of the safety ladder system 10 will be described in more detail. Firstly, the safety ladder 10 is unfolded at mid-length at hinge 46. The ladder is locked at the hinge 46 in order to provide a single vertical length of the safety ladder 10. The safety ladder 10 is positioned adjacent to the building structure 80 and the rooftop structure 82placing the lower free end portion 18 on the ground and the upper free end portion 16 leaning against the rooftop structure 82 eve 86. The bubble level 76 is utilized to ascertain a safe angled position and leveling of the rungs 14 at approximately 75 degrees.
[0055] Once the safety ladder 10 is properly positioned against the building structure 80, the user ascends as is known via the plurality of horizontal rungs 14. Once the user has reached near the upper free end portion 16, the user unlocks the hinged roof portion 28 located between the upward extending rails 12 by disengaging the pin 42 and rotating forward about the hinge axis X until the hinged roof portion 28 becomes in contact with the rooftop surface 83 in the forward, detached position. It may become apparent that the hinged roof portion 28 does not lay flush with the rooftop surface 83. At this point, the user can adjust the height of the hinged axis X by the sliding the hinge axis X upwards or downwards along the guide channel 40. Once the proper angle has been obtained, the user can lock the hinged axis X height into place by the pin 42 and locking 44. Thereafter, if the version further comprises a pair of opposing tether lines 62a, 62b, the user can extend each line attaching the distal ends 68 to each correlating lateral side via the metal loop 70 with spring loaded gate 72 which provides increased lateral support of the safety ladder system 10.
[0056] Thereafter, the safety ladder system 10 is now in the proper position for continuous use. As best illustrated by
[0057] The safety ladder system 10 can be made in any manner and of any material chosen with sound engineering judgment. Preferably, materials will be strong, lightweight, long lasting, economic, and ergonomic.
[0058] The invention does not require that all the advantageous features and all the advantages need to be incorporated into every version of the invention.
[0059] Although preferred embodiments of the invention have been described in considerable detail, other versions and embodiments of the invention are certainly possible. Therefore, the present invention should not be limited to the described embodiments herein.
[0060] All features disclosed in this specification including any claims, abstract, and drawings may be replaced by alternative features serving the same, equivalent or similar purpose unless expressly stated otherwise.