JP2004257051A - Leg length changeable ladders - Google Patents

Leg length changeable ladders Download PDF

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Publication number
JP2004257051A
JP2004257051A JP2003047106A JP2003047106A JP2004257051A JP 2004257051 A JP2004257051 A JP 2004257051A JP 2003047106 A JP2003047106 A JP 2003047106A JP 2003047106 A JP2003047106 A JP 2003047106A JP 2004257051 A JP2004257051 A JP 2004257051A
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JP
Japan
Prior art keywords
vertical frames
ladders
ladder
leg
lowermost
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2003047106A
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Japanese (ja)
Inventor
Kenji Okuma
健二 大熊
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Individual
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Individual
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Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to JP2003047106A priority Critical patent/JP2004257051A/en
Publication of JP2004257051A publication Critical patent/JP2004257051A/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide leg length changeable ladders for easily, quickly and steplessly performing expansion operation of a leg part of vertical frames with a simple configuration having no obstacle overhanging outside the vertical frames. <P>SOLUTION: Hollow auxiliary legs 8 and 8a having respectively the proper length are slidably inserted into or installed on a lower end part of both vertical frames 2 and 2a of a ladder constituting part 1 formed by arranging footrest sash bars 3 at a proper interval between the two hollow vertical frames 2 and 2a. The footrest sash bar 3 of the lowest stage and both vertical frames 2 and 2a are communicated. Moving means 4 and 4a for simultaneously sliding the two auxiliary legs 8 and 8a in the opposite direction are arranged over the lower end of both vertical frames 2 and 2a from the footrest sash bar 3 of the lowest stage. The moving means 4 and 4a are characterized by having lock mechanism 6 and 7 for holding the two auxiliary legs 8 and 8a in a desired position. <P>COPYRIGHT: (C)2004,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明は、脚長が変更可能な梯子類に関し、より詳細には、接地面が傾斜地や段部等の平坦でない場所において立て掛けて使用するのに好適な、脚長が変更可能な梯子、脚立等の梯子類に関する。
【0002】
【従来の技術】
建物等に立て掛けて昇降するのに使用する梯子は、基本的に、左右2本の縦枠の間に、任意間隔に足掛桟を多段に設けて構成され、縦枠の下端を、地面上や床上等に置いて立て掛けて使用する。
【0003】
このような梯子は、平坦な接地面上に立て掛けて使用することを前提としたもので、縦枠は左右等長となっている。従って、接地面が傾斜したり凸凹があったりする場合は、梯子は傾いて不安定となり、立て掛け不能となることもある。脚立についても同様のことが言える。
【0004】
このように接地面が平坦でない場合には、長さが不足する方の縦枠の下に、適当な台物を置いてその上に当該縦枠を載せることが考えられるが、足元が不安定になって危険が伴なう。そこで、縦枠の一方又は双方の脚部外側部に補助脚を取り付けることが考えられている(例えば、特開平7−189184号公報、同9−328981号公報、実開平5−24899号公報)。
【0005】
上記従来の補助脚付き梯子の場合は、外側に張り出す補助脚が邪魔になるだけでなく、長さ調整のために、ネジを緩めたり締めたりして補助脚をずらし動かす作業が必要となり、その作業は煩わしくて手間がかかり、しかもその長さ調整は、ネジ穴間隔による段階的なものであって、無段階による微調整は行なうことができない。
【0006】
【発明が解決しようとする課題】
上述したように、従来の補助脚付き梯子の場合には種々の欠点があったので、本発明はそのような欠点のない、即ち、縦枠の外側に張り出す邪魔物のない簡易な構成で、縦枠の脚部の伸縮操作を容易且つ迅速に、しかも無段階に行なうことができる、脚長が変更可能な梯子類を提供することを課題とする。
【0007】
【課題を解決するための手段】
上記課題を解決するための本発明に係る脚長が変更可能な梯子類は、2本の中空縦枠間に適宜間隔置きに足掛桟を配して成る梯子構成部の前記両縦枠の下端部に、それぞれ適宜長さの中空補助脚をスライド可能に内挿又は被装し、最下段の前記足掛桟と前記両縦枠とを連通させ、前記最下段の足掛桟から前記両縦枠の下端部にかけて、前記2本の補助脚を、同時に反対方向にスライドさせる移動手段を配設して成り、前記移動手段は、前記2本の補助脚を所望位置に保持するためのロック機構を備えたことを特徴とする。
【0008】
前記移動手段は、前記各縦枠に嵌装されてピストンロッドが前記補助脚に固定される油圧シリンダーと、前記最下段の足掛桟を介して前記2つの油圧シリンダーを結ぶオイルパイプと、前記最下段の足掛桟の中途に配設されて前記オイルパイプの開閉を行なうバルブとで構成することができる。
【0009】
また、前記移動手段は、前記最下段の足掛桟の上側において、前記各縦枠の内側面に形成されるスリットと、前記各縦枠内に挿入される前記補助脚の上端部に突設されて前記スリットから露出する固定部と、前記最下段の足掛桟の両側に設置される滑車等の掛回し手段と、前記2つの掛回し手段を介して端部がそれぞれ前記固定部に固定されるワイヤー等の索手段と、前記最下段の足掛桟の中途に配設されて前記ワイヤー類を解放又はロックするロック機構とで構成することもできる。その場合は、通例、前記縦枠内に、前記補助脚に常時引上力を付与するスプリングを張架する。
【0010】
前記梯子構成部は、予め梯子本体に組み込まれたものである場合と、既存の梯子本体に後から組み付けられるものである場合とがある。
【0011】
【発明の実施の形態】
以下、本発明の好適な実施の形態について、添付図面を参照して詳細に説明する。まず、図1及び図2に示される本発明に係る梯子類の第1の実施形態について説明するに、図中1は梯子構成部で、平行な2本の中空の縦枠2、2aと、縦枠2、2aの間に、適宜間隔置きに配設される足掛桟3とから成る。少なくとも、最下段の足掛桟3は、縦枠2、2aと連通状態に構成される。
【0012】
縦枠2、2aの下端部内に、油圧シリンダー4、4aが設置され、各油圧シリンダー4、4aに対して作動油の出入を行なうためのオイルパイプ5が、足掛桟3内に通され、その端部が、それぞれ油圧シリンダー4、4aに接続される。6はオイルパイプ5の流路を開閉するバルブで、そのコック7が足掛桟3外に出され、外部から開閉操作可能にされる。
【0013】
8、8aは補助脚で、この実施形態の場合は、補助脚8、8aは、縦枠2、2aの下端部に、スライド可能に内挿し、あるいは、被装する(図示した例は前者)。補助脚8、8a内には固定板9が設置され、そこに、油圧シリンダー4、4aのピストンロッド10、10aの先端が固定される。
【0014】
上記構成においては、バルブ6を開くことにより、両シリンダー4、4a間において、オイルパイプ5を介しての作動油の往来が可能となる。従って、傾斜地等においての使用時に、バルブ6を開いた状態で一方の補助脚8を引いたり押したりすれば、他方の補助脚8aは、作動油の作用で補助脚8と逆の方向に移動する。
【0015】
かくして、補助脚8、8aの出没量、換言すれば、縦枠2、2aの脚長を、接地面の傾斜状態に合わせて無段階に自由に設定調整し、使用時に梯子を垂直状態に保持することが可能となる。そして、調整後、バルブ6を閉めれば、油圧シリンダー4、4a間における作動油の往来が断たれるため、補助脚8、8aはその位置に固定される。
【0016】
次いで、図3及び図4に示す第2の実施形態について説明する。この実施形態においては、最下段の足掛桟3とその上の足掛桟3aとの間の縦枠2、2aの内側面にスリット11、11aが形成される。そして、縦枠2、2a内に嵌挿される補助脚8、8aの上端部に、スリット11、11aから突出し、スリット11、11aに沿って摺動する固定部12、12aが突設される。
【0017】
固定部12、12aには、それぞれ足掛桟3内に挿通されるワイヤー13、チェーン等の索手段の端部が固定される。ワイヤー13は、足掛桟3の両端に、少なくとも下部を足掛桟3内に没した状態にて設置される滑車14、14a、スプロケット等の掛回し手段に掛け回す。
【0018】
足掛桟3の中間部に、ワイヤー13をロックするロック手段15が設置される。ロック手段15は、例えば、足掛桟3の外部に配置されるコック16を締めることにより、ワイヤー13を強圧してその移動を阻止可能にすると共に、コック16を緩めることにより、ワイヤー13を解放してその移動を許容する構成とする。
【0019】
好ましくは、縦枠2、2a内にスプリング取付板17、17aを設置し、それに、下端を補助脚8、8aに固定したスプリング18、18aの上端を固定する。スプリング18、18aは、常時補助脚8、8aを引上げるように作用させる。
【0020】
この第2の実施形態においては、ロック手段15を解放することによってワイヤー13の移動が可能となる。従って、傾斜地等においての使用時に、その解放状態で一方の補助脚8を押し込めば、他方の補助脚8aは、ワイヤー13に引かれて補助脚8と逆の方向に移動する。
【0021】
スプリング18、18aを配架したときは、補助脚8、8aは常時引上げられた状態となるので安定し、また、一方の補助脚8を押し込むだけでなく、引くことによっても他方の補助脚8aを移動させることが可能となる。
【0022】
かくして、補助脚8、8aの出没量、換言すれば、縦枠2、2aの脚長を、接地面の傾斜状態に合わせて無段階に自由に設定調整することが可能となる。そして、調整後ロック手段15を締めれば、ワイヤー13がロックされて移動しなくなるので、補助脚8、8aはその位置に固定される。なお、使用時には、ワイヤー13は必らずしもロックしなくてもよい。
【0023】
上記いずれかの構成の補助脚8、8aを備えた梯子構成部1は、通例、梯子本体に予め組み込まれるが、それを独立した構成とし、上下から縦枠を嵌入する筒状継手、その他適宜の継手手段を介して既存の梯子本体に組み付けることとすることもできる。
【0024】
【発明の効果】
本発明は上述した通りであって、縦枠の外側に張り出す邪魔物のない簡易な構成で、縦枠の脚部の伸縮操作を容易且つ迅速に、しかも無段階に行なうことができる脚長が変更可能な梯子類を提供し得る効果がある。
【図面の簡単な説明】
【図1】本発明に係る梯子の第1の実施形態を示す要部部分断面正面図である。
【図2】図1に示す梯子の使用例を示す要部部分断面正面図である。
【図3】本発明に係る梯子の第2の実施形態を示す要部部分断面正面図である。
【図4】本発明に係る梯子の第2の実施形態を示す要部部分断面側面図である。
【符号の説明】
1 梯子構成部
2 縦枠
2a 縦枠
3 足掛桟
3a 足掛桟
4 油圧シリンダー
4a 油圧シリンダー
5 オイルパイプ
6 バルブ
7 コック
8 補強脚
8a 補強脚
9 固定板
9a 固定板
10 ピストンロッド
10a ピストンロッド
11 スリット
11a スリット
12 固定部
12a 固定部
13 ワイヤー
14 滑車
14a 滑車
15 ロック手段
16 コック
17 スプリング取付板
17a スプリング取付板
18 スプリング
18a スプリング
[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention relates to ladders having variable leg lengths, and more particularly, to ladders with variable leg lengths, stepladders, etc., which are suitable for use by leaning on uneven surfaces such as slopes and steps. Related to ladders.
[0002]
[Prior art]
A ladder used to lean against a building or the like is basically constructed by providing multiple steps of footrests at arbitrary intervals between two left and right vertical frames, and the lower end of the vertical frame is placed on the ground. Or put it on the floor and lean on it.
[0003]
Such a ladder is intended to be used by leaning on a flat contact surface, and the vertical frame has the same length on the left and right. Therefore, when the ground contact surface is inclined or has irregularities, the ladder may be inclined and become unstable, and may not be able to lean against the ladder. The same is true for stepladders.
[0004]
When the ground contact surface is not flat as described above, it is conceivable that an appropriate platform is placed under the vertical frame having a shorter length and the vertical frame is placed thereon, but the feet are unstable. Become dangerous. Therefore, it has been considered to attach auxiliary legs to one or both leg outer portions of the vertical frame (for example, JP-A-7-189184, JP-A-9-328981, and JP-A-5-248899). .
[0005]
In the case of the above-mentioned conventional ladder with auxiliary legs, not only the auxiliary legs that protrude outward become an obstacle, but also to adjust the length, it is necessary to loosen or tighten the screws and move the auxiliary legs to move them. The work is cumbersome and time-consuming, and the length adjustment is stepwise based on the screw hole interval, and fine adjustment cannot be performed steplessly.
[0006]
[Problems to be solved by the invention]
As described above, in the case of the conventional ladder with auxiliary legs, there are various disadvantages. Therefore, the present invention does not have such disadvantages, that is, has a simple configuration without obstructions protruding outside the vertical frame. It is another object of the present invention to provide a ladder capable of changing a leg length, which can easily and quickly perform a stepless expansion and contraction operation of a leg portion of a vertical frame.
[0007]
[Means for Solving the Problems]
According to the present invention, there is provided a ladder having a variable leg length according to the present invention, wherein the lower ends of the two vertical frames of the ladder component are formed by arranging a footing bar between two hollow vertical frames at appropriate intervals. The hollow auxiliary legs each having an appropriate length are slidably inserted or covered in the portion, and the lowermost footrest bar and the two vertical frames are communicated with each other. A moving means for simultaneously sliding the two auxiliary legs in opposite directions over the lower end of the frame is provided, and the moving means includes a locking mechanism for holding the two auxiliary legs at desired positions. It is characterized by having.
[0008]
A hydraulic cylinder fitted to each of the vertical frames and having a piston rod fixed to the auxiliary leg; an oil pipe connecting the two hydraulic cylinders through the lowermost foot rail; A valve may be provided in the middle of the lowermost footrest bar to open and close the oil pipe.
[0009]
The moving means may include a slit formed on an inner surface of each of the vertical frames above the lowermost footrest bar, and a projecting portion provided at an upper end of the auxiliary leg inserted into each of the vertical frames. And a fixing portion exposed from the slit, hooking means such as pulleys installed on both sides of the lowermost foot rail, and ends fixed to the fixing portion via the two hooking means, respectively. And a lock mechanism that is disposed in the middle of the lowest footrest bar and releases or locks the wires. In such a case, a spring that constantly applies a pulling force to the auxiliary leg is stretched in the vertical frame.
[0010]
The ladder component may be built in the ladder main body in advance, or may be built in the existing ladder main body later.
[0011]
BEST MODE FOR CARRYING OUT THE INVENTION
Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. First, a first embodiment of the ladders according to the present invention shown in FIGS. 1 and 2 will be described. In the figure, reference numeral 1 denotes a ladder component, and two parallel hollow vertical frames 2, 2a; A foot bar 3 is disposed between the vertical frames 2 and 2a at appropriate intervals. At least, the lowermost leg bar 3 is configured to communicate with the vertical frames 2 and 2a.
[0012]
Hydraulic cylinders 4 and 4a are installed in the lower ends of the vertical frames 2 and 2a, and an oil pipe 5 through which hydraulic oil flows in and out of the hydraulic cylinders 4 and 4a is passed through the footrest bar 3, Its ends are connected to the hydraulic cylinders 4, 4a, respectively. Reference numeral 6 denotes a valve for opening and closing the flow path of the oil pipe 5, and a cock 7 of the valve 6 is put out of the footrest bar 3 and can be opened and closed from the outside.
[0013]
Reference numerals 8 and 8a denote auxiliary legs. In the case of this embodiment, the auxiliary legs 8 and 8a are slidably inserted or mounted at the lower ends of the vertical frames 2 and 2a (the former is the illustrated example). . A fixing plate 9 is installed in the auxiliary legs 8, 8a, and the tips of the piston rods 10, 10a of the hydraulic cylinders 4, 4a are fixed thereto.
[0014]
In the above configuration, opening and closing the valve 6 allows the hydraulic oil to flow between the cylinders 4 and 4a via the oil pipe 5. Therefore, when the auxiliary leg 8 is pulled or pushed while the valve 6 is open at the time of use on an inclined ground or the like, the other auxiliary leg 8a moves in the opposite direction to the auxiliary leg 8 by the action of the hydraulic oil. I do.
[0015]
Thus, the amount of protrusion of the auxiliary legs 8, 8a, in other words, the leg lengths of the vertical frames 2, 2a can be freely set and adjusted steplessly in accordance with the inclined state of the ground contact surface, and the ladder is held in a vertical state during use. It becomes possible. Then, if the valve 6 is closed after the adjustment, the flow of the hydraulic oil between the hydraulic cylinders 4 and 4a is cut off, so that the auxiliary legs 8, 8a are fixed at that position.
[0016]
Next, a second embodiment shown in FIGS. 3 and 4 will be described. In this embodiment, slits 11 and 11a are formed on the inner surfaces of the vertical frames 2 and 2a between the lowermost footrest bar 3 and the footrest bar 3a thereon. Then, fixing portions 12, 12a projecting from the slits 11, 11a and sliding along the slits 11, 11a protrude from upper ends of the auxiliary legs 8, 8a inserted into the vertical frames 2, 2a.
[0017]
To the fixing portions 12 and 12a, ends of a cable 13 such as a wire 13 and a chain inserted into the footrest bar 3 are fixed. The wire 13 is wrapped around both ends of the foothold bar 3 with hooking means such as pulleys 14 and 14a, sprockets, and the like, which are installed with at least the lower part of the wire 13 submerged in the footrest bar 3.
[0018]
Locking means 15 for locking the wire 13 is provided at an intermediate portion of the foot bar 3. The lock means 15 releases the wire 13 by, for example, tightening the cock 16 arranged outside the footrest bar 3 to thereby strongly press the wire 13 to prevent its movement and loosening the cock 16. To allow the movement.
[0019]
Preferably, spring mounting plates 17, 17a are installed in the vertical frames 2, 2a, and the upper ends of the springs 18, 18a whose lower ends are fixed to the auxiliary legs 8, 8a are fixed thereto. The springs 18, 18a always act to pull up the auxiliary legs 8, 8a.
[0020]
In the second embodiment, the wire 13 can be moved by releasing the lock means 15. Therefore, when one auxiliary leg 8 is pushed in the released state when used on a slope or the like, the other auxiliary leg 8a is pulled by the wire 13 and moves in the opposite direction to the auxiliary leg 8.
[0021]
When the springs 18 and 18a are mounted, the auxiliary legs 8 and 8a are always pulled up, so that they are stable, and the auxiliary legs 8a are not only pushed in but also pulled by pulling the other auxiliary legs 8a. Can be moved.
[0022]
Thus, it is possible to freely set and adjust the length of the auxiliary legs 8, 8a, in other words, the leg lengths of the vertical frames 2, 2a steplessly in accordance with the inclined state of the ground contact surface. When the locking means 15 is tightened after the adjustment, the wire 13 is locked and does not move, so that the auxiliary legs 8, 8a are fixed at that position. In use, the wire 13 does not necessarily have to be locked.
[0023]
The ladder component 1 provided with the auxiliary legs 8 and 8a having any one of the above-described configurations is usually incorporated in the ladder main body in advance. However, the ladder component 1 has an independent configuration, a tubular joint into which a vertical frame is inserted from above and below, and other appropriate components. Can be assembled to the existing ladder main body via the joint means of (1).
[0024]
【The invention's effect】
The present invention is as described above, and has a simple structure with no obstacles protruding to the outside of the vertical frame, and a leg length capable of easily and quickly performing the expansion and contraction operation of the leg portion of the vertical frame, and in a stepless manner. There is an effect that a changeable ladder can be provided.
[Brief description of the drawings]
FIG. 1 is a partial cross-sectional front view showing a main part of a first embodiment of a ladder according to the present invention.
FIG. 2 is a partial cross-sectional front view of a main part showing an example of use of the ladder shown in FIG.
FIG. 3 is a partial sectional front view of a main part of a ladder according to a second embodiment of the present invention.
FIG. 4 is a partial cross-sectional side view showing a main part of a second embodiment of the ladder according to the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Ladder constituent part 2 Vertical frame 2a Vertical frame 3 Foot rail 3a Foot rail 4 Hydraulic cylinder 4a Hydraulic cylinder 5 Oil pipe 6 Valve 7 Cock 8 Reinforcement leg 8a Reinforcement leg 9 Fixing plate 9a Fixing plate 10 Piston rod 10a Piston rod 11 Slit 11a Slit 12 Fixed part 12a Fixed part 13 Wire 14 Pulley 14a Pulley 15 Locking means 16 Cock 17 Spring mounting plate 17a Spring mounting plate 18 Spring 18a Spring

Claims (6)

2本の中空縦枠間に適宜間隔置きに足掛桟を配して成る梯子構成部の前記両縦枠の下端部に、それぞれ適宜長さの中空補助脚をスライド可能に内挿又は被装し、最下段の前記足掛桟と前記両縦枠とを連通させ、前記最下段の足掛桟から前記両縦枠の下端部にかけて、前記2本の補助脚を、同時に反対方向にスライドさせる移動手段を配設して成り、前記移動手段は、前記2本の補助脚を所望位置に保持するためのロック機構を備えたことを特徴とする脚長が変更可能な梯子類。A hollow auxiliary leg of an appropriate length is slidably inserted or slidably inserted at the lower end of each of the vertical frames of the ladder constituting portion having footrest bars arranged at appropriate intervals between the two hollow vertical frames. Then, the lowermost footrest bar and the two vertical frames are communicated with each other, and the two auxiliary legs are simultaneously slid in opposite directions from the lowermost footrest bar to the lower end portions of the two vertical frames. A ladder having a variable leg length, characterized by comprising a moving means, wherein the moving means includes a lock mechanism for holding the two auxiliary legs at desired positions. 前記移動手段は、前記各縦枠に嵌装されてピストンロッドが前記補助脚に固定される油圧シリンダーと、前記最下段の足掛桟を介して前記2つの油圧シリンダーを結ぶオイルパイプと、前記最下段の足掛桟の中途に配設されて前記オイルパイプの開閉を行なうバルブとで構成される請求項1に記載の脚長が変更可能な梯子類。A hydraulic cylinder fitted to each of the vertical frames and having a piston rod fixed to the auxiliary leg; an oil pipe connecting the two hydraulic cylinders via the lowermost foot rail; 2. The ladders of claim 1, wherein the ladders are provided with a valve disposed in the middle of the lowermost footrest bar to open and close the oil pipe. 前記移動手段は、前記最下段の足掛桟の上側において、前記各縦枠の内側面に形成されるスリットと、前記各縦枠内に挿入される前記補助脚の上端部に突設されて前記スリットから露出する固定部と、前記最下段の足掛桟の両側に設置される滑車等の掛回し手段と、前記2つの掛回し手段を介して端部がそれぞれ前記固定部に固定されるワイヤー等の索手段と、前記最下段の足掛桟の中途に配設されて前記ワイヤー類を解放又はロックするロック機構とで構成される請求項1に記載の脚長が変更可能な梯子類。The moving means is provided on the upper side of the lowermost footrest bar, and is provided with a slit formed on an inner surface of each of the vertical frames and an upper end of the auxiliary leg inserted into each of the vertical frames. A fixing portion exposed from the slit, hooking means such as pulleys installed on both sides of the lowermost foot rail, and ends are fixed to the fixing portion via the two hooking means, respectively. 2. The ladders according to claim 1, wherein the ladders include a cable means such as a wire and a lock mechanism which is disposed in the middle of the lowermost footrest bar and releases or locks the wires. 前記縦枠内に、前記補助脚に常時引上力を付与するスプリングを張架した請求項3に記載の脚長が変更可能な梯子類。The ladders of which leg length is changeable according to claim 3, wherein a spring that constantly applies a pulling force to the auxiliary leg is stretched in the vertical frame. 前記梯子構成部は、予め梯子本体に組み込まれたものである請求項1乃至4のいずれかに記載の脚長が変更可能な梯子類。The ladders having variable leg length according to any one of claims 1 to 4, wherein the ladder component is previously incorporated in the ladder main body. 前記梯子構成部は、既存の梯子本体に後から組み付けられるものである請求項1乃至4のいずれかに記載の脚長が変更可能な梯子類。The ladders having variable leg lengths according to any one of claims 1 to 4, wherein the ladder component is to be later assembled to an existing ladder main body.
JP2003047106A 2003-02-25 2003-02-25 Leg length changeable ladders Pending JP2004257051A (en)

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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010524700A (en) * 2007-04-27 2010-07-22 エス・エム・エス・ジーマーク・アクチエンゲゼルシャフト Cutting device
KR101036946B1 (en) 2010-04-22 2011-05-25 주식회사 한라엠에스 Shock-absorbing ladder
AT504743B1 (en) * 2008-04-24 2011-09-15 Weitenthaler Rudolf HYDRAULICALLY EXITABLE SUPPORT
JP2012523513A (en) * 2009-04-14 2012-10-04 アイ2ゼット・アンパルトセルスカブ Leg leveling
US8606488B2 (en) 2004-12-23 2013-12-10 Robert Bosch Gmbh Method for operating a hybrid motor vehicle
JP2015057525A (en) * 2013-09-14 2015-03-26 利宏 棚田 Height adjustment stepladder using automatic ground contact adjustment-type telescopic leg
CN106150331A (en) * 2016-07-13 2016-11-23 国网福建省电力有限公司 Self-balancing hydraulic ladder
CN110863770A (en) * 2019-11-21 2020-03-06 国网辽宁省电力有限公司营口供电公司 Self-balancing electric power insulation ladder stand
CN111706248A (en) * 2020-06-24 2020-09-25 张伟 Ladder
DE102020001940A1 (en) 2020-03-26 2021-09-30 Klaus-Peter Laube Self-regulating stand for ladders and scaffolding stands

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8606488B2 (en) 2004-12-23 2013-12-10 Robert Bosch Gmbh Method for operating a hybrid motor vehicle
JP2010524700A (en) * 2007-04-27 2010-07-22 エス・エム・エス・ジーマーク・アクチエンゲゼルシャフト Cutting device
AT504743B1 (en) * 2008-04-24 2011-09-15 Weitenthaler Rudolf HYDRAULICALLY EXITABLE SUPPORT
JP2012523513A (en) * 2009-04-14 2012-10-04 アイ2ゼット・アンパルトセルスカブ Leg leveling
US8627927B2 (en) 2009-04-14 2014-01-14 Eye2Z Aps Leg levelling
KR101036946B1 (en) 2010-04-22 2011-05-25 주식회사 한라엠에스 Shock-absorbing ladder
JP2015057525A (en) * 2013-09-14 2015-03-26 利宏 棚田 Height adjustment stepladder using automatic ground contact adjustment-type telescopic leg
CN106150331A (en) * 2016-07-13 2016-11-23 国网福建省电力有限公司 Self-balancing hydraulic ladder
CN110863770A (en) * 2019-11-21 2020-03-06 国网辽宁省电力有限公司营口供电公司 Self-balancing electric power insulation ladder stand
DE102020001940A1 (en) 2020-03-26 2021-09-30 Klaus-Peter Laube Self-regulating stand for ladders and scaffolding stands
CN111706248A (en) * 2020-06-24 2020-09-25 张伟 Ladder
CN111706248B (en) * 2020-06-24 2022-05-06 张伟 Ladder

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