HORIZONTALLY EXTENDABLE LADDER
20190383098 ยท 2019-12-19
Inventors
Cpc classification
E06C7/082
FIXED CONSTRUCTIONS
E06C1/3835
FIXED CONSTRUCTIONS
E06C1/22
FIXED CONSTRUCTIONS
E06C1/383
FIXED CONSTRUCTIONS
International classification
E06C1/383
FIXED CONSTRUCTIONS
Abstract
A horizontal extendable ladder is revealed. The horizontally extendable ladder includes at least three rails and a plurality of rungs disposed between the two adjacent rails. The three rails are set vertically while the rungs are equally spaced and arranged horizontally between the two adjacent rails from top to bottom to form at least two ladder frames. Each of two ends of the rung is arranged with a first pivot shaft that is pivotally connected to the rail. Thereby the rungs can be rotated synchronously between the two adjacent rails for horizontal retraction or extension of the ladder. The ladder is used more efficiently.
Claims
1. A horizontally extendable ladder comprising: at least two ladder frames that includes at least three rails having two outer rails and a middle rail set between the two outer rails, and a plurality of rungs disposed between the two adjacent rails; wherein the rungs are equally spaced and arranged horizontally between the two adjacent rails from top to bottom; thereby the ladder frame is formed by the two adjacent rails and the rungs arranged between the two adjacent rails; a first pivot shaft is set on each of two ends of the rung and is pivotally connected to the rail so that the rung is able to be rotated synchronously between the two adjacent rails; wherein the rung of the ladder frame is able to be rotated and folded between the two adjacent rails by the first pivot shafts on the two ends thereof to form a first collapsed state; wherein the two adjacent rails are able to be moved close to each other and held together so as to reduce width and area of the ladder frame when the rung of the ladder frame is in the first collapsed state; wherein the rung of the ladder frame is rotated and extended between the two adjacent rails by the first pivot shafts on the two ends thereof to form an extended state when the two adjacent rails in the first collapsed state are extended horizontally; wherein the two ladder frames are able to be extended synchronously to form the horizontally extendable ladder in an extended state with extended width and area of the two ladder frame; or only one of the ladder frames is opened selectively and fully to form the horizontally extendable ladder in an extended state with width and area of the single ladder frame.
2. The device as claimed in claim 1, wherein a second pivot shaft is disposed on a middle part of the rung of the ladder frame so that the rung is able to be rotated and retracted between the two adjacent rails by the first pivot shafts and the second pivot shaft, and further folded into a second collapsed state.
3. The device as claimed in claim 1, wherein a vertical slot is disposed on each of the two outer rails of the three rails and an opening of the vertical slot is facing the rung between the two rails; the first pivot shaft on each of the two ends of the rung is arranged at a front wall and a rear wall of the vertical slot; wherein the middle rail of the three rails is further provided with two vertical slots that are oppositely oriented and openings of the vertical slots are facing the rungs between the two adjacent rails; the first pivot shaft on each of the two ends of the rung is arranged at a front wall and a rear wall of the vertical slot; wherein the two adjacent rails are able to be moved toward each other and held together and the rungs are able to be mounted in the slots after the rungs being rotated and folded between the two adjacent rails to be in the first collapsed state by synchronous rotation of the first pivot shafts.
4. The device as claimed in claim 2, wherein a vertical slot is disposed on each of the two outer rails of the three rails and an opening of the vertical slot is facing the rung between the two rails; the first pivot shaft on each of the two ends of the rung is arranged at a front wall and a rear wall of the vertical slot; wherein the middle rail of the three rails is further provided with two vertical slots that are oppositely oriented and openings of the vertical slots are facing the rungs between the two adjacent rails; the first pivot shaft on each of the two ends of the rung is arranged at a front wall and a rear wall of the vertical slot; wherein the two adjacent rails are able to be moved toward each other and held together and the rungs are able to be mounted in the slots after the rungs being rotated and folded between the two adjacent rails to be in the second collapsed state by synchronous rotation of the second pivot shafts.
5. The device as claimed in claim 1, wherein the rungs of the two adjacent ladder frames are arranged linearly along the same horizontal line or in parallel.
6. The device as claimed in claim 1, wherein the rung of the ladder frame is an inclined rung having a reverse U-shaped section and composed of a shorter front support, a longer rear support and a ramp that is tilted down, arranged between a top of the front support and a top of the rear support, and used as a stepped surface; the ramp is tilted and a forward tilt angle is formed between the ramp of the rung and the ground when the rails of the ladder frame are vertically set on the ground; the ramp of the rung is parallel to the ground when the rails of the ladder frame are inclined and placed on the ground so that users can step on the rung conveniently.
7. The device as claimed in claim 5, wherein the rung of the ladder frame is an inclined rung having a reverse U-shaped section and composed of a shorter front support, a longer rear support and a ramp that is tilted down, arranged between a top of the front support and a top of the rear support, and used as a stepped surface; the ramp is tilted and a forward tilt angle is formed between the ramp of the rung and the ground when the rails of the ladder frame are vertically set on the ground; the ramp of the rung is parallel to the ground when the rails of the ladder frame are inclined and placed on the ground so that users can step on the rung conveniently.
8. The device as claimed in claim 3, wherein a front pivot hole is formed on the front wall of the vertical slot and a rear pivot hole is set on the rear wall of the vertical slot when the first pivot shaft on each of the two ends of the rung is arranged at the front wall and the rear wall of the vertical slot of the rail; a front end and a rear end of the first pivot shaft are pivotally connected to the front pivot hole an d the rear pivot hole respectively; the front pivot hole is a gourd-shaped hole including an upper hole and a lower hole communicating with the upper hole; the upper hole and the rear pivot hole are at the same horizontal level of the rail so that the front end of the first pivot shaft is able to be moved vertically in the front pivot hole to be located in the upper hole or the lower hole; the rung is able to be rotated and folded synchronously between the two adjacent rails to form the first collapsed state or the second collapsed state when the front end of the first pivot shaft of the rung is located in the upper hole of the front pivot hole and the rear end is located in the corresponding rear pivot hole; the front end of the first pivot shaft of the rung is moved downward from the upper hole of the front pivot hole to the lower hole of the front pivot hole when the rails of the ladder frame are inclined at an angle and set on the ground; thereby a stepped surface of the rung is parallel to the ground, able to be stepped thereon conveniently.
9. The device as claimed in claim 4, wherein a front pivot hole is formed on the front wall of the vertical slot and a rear pivot hole is set on the rear wall of the vertical slot when the first pivot shaft on each of the two ends of the rung is arranged at the front wall and the rear wall of the vertical slot of the rail; a front end and a rear end of the first pivot shaft are pivotally connected to the front pivot hole an d the rear pivot hole respectively; the front pivot hole is a gourd-shaped hole including an upper hole and a lower hole communicating with the upper hole; the upper hole and the rear pivot hole are at the same horizontal level of the rail so that the front end of the first pivot shaft is able to be moved vertically in the front pivot hole to be located in the upper hole or the lower hole; the rung is able to be rotated and folded synchronously between the two adjacent rails to form the first collapsed state or the second collapsed state when the front end of the first pivot shaft of the rung is located in the upper hole of the front pivot hole and the rear end is located in the corresponding rear pivot hole; the front end of the first pivot shaft of the rung is moved downward from the upper hole of the front pivot hole to the lower hole of the front pivot hole when the rails of the ladder frame are inclined at an angle and set on the ground; thereby a stepped surface of the rung is parallel to the ground, able to be stepped thereon conveniently.
10. The device as claimed in claim 8, wherein the rung of the ladder frame having a reverse U-shaped section is composed of a shorter front support, a longer rear support and a stepped surface connected between a top of the front support and a top of the rear support for being stepped thereon; a bevel face is disposed on a front surface of the front support while a bevel face is arranged at a rear surface of the rear support; thereby the front end of the first pivot shaft of the rung is moved downward from the upper hole to the lower hole of the front pivot hole and turned back in the opposite direction smoothly.
11. The device as claimed in claim 9, wherein the rung of the ladder frame having a reverse U-shaped section is composed of a shorter front support, a longer rear support and a stepped surface connected between a top of the front support and a top of the rear support for being stepped thereon; a bevel face is disposed on a front surface of the front support while a bevel face is arranged at a rear surface of the rear support; thereby the front end of the first pivot shaft of the rung is moved downward from the upper hole to the lower hole of the front pivot hole and turned back in the opposite direction smoothly.
12. The device as claimed in claim 1, wherein the rail and the rung are produced by aluminum extrusion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0005] The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein:
[0006]
[0007]
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
DETAILED DESCRIPTION OF THE PREFFERED EMBODIMENT
[0034] A common ladder includes a leaning ladder, an A-shaped ladder, etc. The present invention features on the horizontal extension of the ladder.
[0035] Refer to
[0036] The rung 30 of the respective ladder frame 10 can be rotated and folded between the two adjacent rails 20 by the first pivot shafts 40 of the two ends 31 to become a first collapsed state, as shown in
[0037] While the two adjacent rails 20 in the first collapsed state are extended horizontally, each rung 30 of the respective ladder frame 10 are rotated and extended by the first pivot shafts 40 on the two ends 31 thereof to form an extended state, as shown in
[0038] Moreover, the two ladder frames 10 can be extended synchronously to expand the width (range) of the ladder, as shown in
[0039] Refer from
[0040] Refer to
[0041] Furthermore, the rungs 30 of the two adjacent ladder frames 10 can be arranged linearly along the same horizontal line, as shown in
[0042] Refer to
[0043] Refer to
[0044] Refer to
[0045] The rail 20 and the rung 30 of the present invention can be produced by aluminum extrusion. Thus the ladder features on light weight and high rigidity.
[0046] In summary, the present ladder has the following advantages: [0047] 1. The present ladder includes at least two ladder frames 10. Users can extend the two ladder frames 10 synchronously or only one ladder frame 10 selectively according to their needs. Thus the operational efficiency is improved. [0048] 2. The present ladder includes at least two ladder frames 10 so that the ladder allows at least two users to climb at the same time. Thereby the efficiency of the ladder is increased.
[0049] Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details, and representative devices shown and described herein. Accordingly, various modifications may be made without departing from the spirit or scope of the general inventive concept as defined by the appended claims and their equivalent.