JP2004142929A - Traveling vehicle stopping device in stair lifting apparatus - Google Patents

Traveling vehicle stopping device in stair lifting apparatus Download PDF

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Publication number
JP2004142929A
JP2004142929A JP2002312680A JP2002312680A JP2004142929A JP 2004142929 A JP2004142929 A JP 2004142929A JP 2002312680 A JP2002312680 A JP 2002312680A JP 2002312680 A JP2002312680 A JP 2002312680A JP 2004142929 A JP2004142929 A JP 2004142929A
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JP
Japan
Prior art keywords
traveling vehicle
traveling
brake
arm
regulating
Prior art date
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Pending
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JP2002312680A
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Japanese (ja)
Inventor
Kenichi Yamamoto
山本 憲一
Toshio Kato
加藤 敏夫
Hisatada Tazawa
田澤 央匡
Masaru Omi
大見 勝
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nippon Sharyo Ltd
Kito KK
Kito Corp
Original Assignee
Nippon Sharyo Ltd
Kito KK
Kito Corp
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Priority to JP2002312680A priority Critical patent/JP2004142929A/en
Publication of JP2004142929A publication Critical patent/JP2004142929A/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a traveling vehicle having a function for preventing the drop of a platform due to wire breakage or the like during the movement of the traveling vehicle on a sloped portion without causing a problem with the movement of the traveling vehicle on a horizontal portion in a stair lifting apparatus in which the traveling vehicle running along rails is installed in a stair room of a multi-storied building. <P>SOLUTION: This traveling vehicle stopping device comprises a towing force detection means 27 operated by detecting the lowering of a towing force due to the breakage of a running drive means and a brake means 23 operable interlockingly with a towing force detection means 27 and operating interlockingly with a tilt detection means 35 operated by detecting the tilt running of the running vehicle 4. The lowering of the towing force is detected, the tilt running is detected by the tilt detection means 25, the operating limitation of the brake means is released by the towing force detection means 27, and the traveling vehicle is stopped by the brake means 23 when these both means are operated. <P>COPYRIGHT: (C)2004,JPO

Description

【0001】
【発明の属する技術分野】
この発明は、複数階の建物の階段室に設けられ、主として人を昇降させるのに使用される階段昇降装置に関する。さらに詳しくは、水平部、傾斜部を連続的に移動する階段昇降装置において、水平部移動に支障を与えず、傾斜部移動時にワイヤ切断や緩みが発生した場合に、走行台車を停止する機能を備えた階段昇降装置に関する。
【0002】
【従来の技術】
従来、この種の階段昇降装置として、階段上に沿って設けられたレールと、レール上を走行可能に設けられた椅子式搭乗台と、レールと搭乗台の駆動機構を備えたものが公知である。
【0003】
しかし、これら椅子式の昇降装置は、階段上にレールが直に設置されることから、階段の有効幅寸法を狭めることになり、通常の階段利用者にとってレールや椅子が邪魔になり、また安全面からみても必ずしも十分なものではなかった。そのため、階段有効幅を狭めることなく、また、階段利用者に邪魔になることの少い吊り下げ式の階段昇降装置が開発されてきている。
【0004】
例えば、図8に示すように、階段101の上方に配置され、傾斜レール部分102aを有するレール102と、レール102に沿って走行する走行台車103と、走行台車103から下方に吊り下げた搭乗具104と、走行台車103を走行駆動させる電動モータである走行駆動装置105と、搭乗具104を上下昇降させる昇降駆動装置とを備え、この電動モータに対して減速機等を介して駆動連結されたピニオンが、レール102に配設されるラックに咬合するよう構成されている。この階段昇降装置では、レール102が階段101から離れた階段通路の天井寄り位置に配設されるので、階段有効幅を狭めることが少く、階段利用者にとって邪魔になり難いものである。
【0005】
ところが、前記階段昇降装置は、例えば、2階建ての建物において1階と2階との間で、直線走行部と傾斜走行部はあるものの、平面的には直線走行させるだけのものであり、3階以上の建物の各階間で連続走行させることはできず、前記階段昇降装置を3階建て以上の建物の階段に設置して搭乗台104を連続昇降させることはできなかった。
【0006】
又、図9に示すように、階段室110には、複数の踊場111,112と複数の階段113を含み、垂直方向に三次元的にジグザグに連なる階段通路114が設けられ、二つの踊場111,112の間の階段113は、各踊場111,112を境に傾斜方向を逆にするかたちで配置されている。このため、階段室110に前記吊り下げ式の階段昇降装置を設けて3階以上の各階の間で人を昇降させるためには、1階の踊場111と2階の踊場111との間、2階の踊場111と3階の踊場111との間のように、上下踊場111,112の間毎にそれぞれ異なる階段昇降装置を設けなければならず、複数台の階段昇降装置が必要になる。これら装置を使用する人も、各踊場111毎に階段昇降装置を乗り換えなければならない。(例えば、特許文献1参照)。
【0007】
これら従来の階段昇降装置の課題を解決するため、複数階の建物の階段室内において垂直方向にジグザグに連なる階段通路の内側天井付近に沿って、階段通路のコーナではU字形に曲がるレールと、レール上を走行可能に設けられた走行台車と、走行台車から吊り下げられた搭乗台と、走行台車を駆動させるために走行駆動手段とを備えた階段昇降装置が特願2001−041230号によって提案されているが、走行台車は、コーナー部のU字形レール上の走行に支障が無く、傾斜レール走行時に牽引力低下を検知して走行台車を停止する停止装置の提案はされていなかった。
【0008】
【特許文献1】
特開平11−115752号公報(第4〜8頁・第1図)
【0009】
【発明が解決しようとする課題】
本発明は、上記した複数階の建物の階段室と、階段室を垂直方向にジグザグに連なる階段通路に沿って連続的に設けられたレールに沿って走行する階段昇降装置において、走行台車のU時形の水平部レール移動時には作動せず、傾斜部移動時におけるワイヤ切断等による牽引力低下時に走行台車を停止する走行台車の停止装置を提供することを目的とするもので、上記特願2001−041230号において提案される、階段室と、階段室を垂直方向にジグザグに連なる階段通路に沿って連続的に設けられ、前記階段通路のコーナではU字形に曲がるレールと、前記レール上を走行可能に設けられた走行台車と、前記走行台車から吊り下げられた搭乗台と、前記走行台車を駆動させるために走行駆動手段とを備えた階段昇降装置において、傾斜部走行時において牽引手段の牽引力が低下した場合に、走行台車の駆動を停止する停止装置を提供するものである。
【0010】
【課題を解決するための手段】
本発明は、上記課題を解決するもので、複数階の建物の階段室と階段室を連絡する階段通路に沿って連続的に設けられた案内レールと、前記案内レールに牽引手段により走行可能に設けられた走行台車と、前記走行台車に吊設される搭乗台と、牽引手段を駆動する走行駆動手段を備えた階段昇降装置において、走行駆動手段の切断等による牽引力低下を検知して作動する牽引力検知手段と、該牽引力検知手段に連動して作動可能で、かつ、走行台車の傾斜走行を検知して作動する傾斜検知手段に連動して作動するブレーキ手段を有し、牽引力検知手段と、傾斜検知手段の両手段の作動により、ブレーキ手段の作動規制を解除し、ブレーキ手段が、走行台車を停止することを特徴とする階段昇降装置における走行台車の停止装置を提供する。
【0011】
従来装置において、万が一ワイヤが切断した場合は、ワイヤ駆動部付近に設けられたワイヤロープ緩み検出装置で、切断によるワイヤロープの張力低下を検出し、駆動モータを停止させるため、走行台車が下層階を走行中の場合や、ワイヤの切断箇所によっては、ワイヤロープ緩み検出装置がワイヤーロープの張力低下を検出するまでに時間を要したが、本発明によると、ワイヤーロープの張力低下を即座に検知し、走行台車を停止することができる作用を有する。
【0012】
さらに、実施の形態として、ブレーキ手段は、上端部に、常時は牽引力検知手段に設けた規制面と係合し、作動が規制され、牽引力低下時には、規制面との係合を離脱し、規制が解除される係合面と、規制解除時に、走行車輪とレール間に挿入されるブレーキ板を有し、下端部に、傾斜検知手段に設けた規制溝と係脱可能で、傾斜走行時に、規制溝から離脱して作動規制が解除される係合軸とを有し、バネによりブレーキ板作動方向に常時弾性付勢されるブレーキ作動アームである。
【0013】
また、牽引力検知手段は、上端に、牽引ワイヤと連結する連結軸を回動可能に枢設する連結金具が固設され、下端に、ブレーキ手段の係合面と係合する規制面を有する規制アームである。
【0014】
また、傾斜検知手段は、基部が搭乗台連結金具に連結され、ブレーキ作動アームの係合軸と係合し、ブレーキ作動アームの回動を規制する規制溝を有し、搭乗台と一体的に回動して、傾斜時にブレーキ作動アームの係合軸が係合溝から離脱し、係合軸の規制を解除する規制部材である。
【0015】
また、ブレーキ作動アームのブレーキ板は、傾斜面を有しており、容易にブレーキ板を走行車輪とレール間に挿入することができ、走行台車の走行を確実に停止することができる作用を有する。
【0016】
さらに、他の実施の形態として、規制溝は、略V字状溝で、その一辺はブレーキ作動アーム方向に向かって上向きの円弧状保持面を延設するものであり、規制溝に係合軸が係合する場合の係合軸の係合をスムーズに行う作用を有する。
【0017】
さらに、走行台車は、ブレーキ作動アームにより押圧されるプランジャを備えたリミットスイッチを有し、ブレーキ作動アーム作動により、リミットスイッチが動作し、走行駆動手段を停止するものであり、走行台車の走行停止動作と同期して走行駆動モータを停止するため、安全性を向上することができる作用を有する。
【0018】
さらに、走行台車は、走行台車の牽引動作時における連結軸の上方向への移動を規制する規制板を備えたものであり、ワイヤロープの局部的な磨耗を減少することができる作用を有する。
【0019】
以下、本発明の実施の形態について図面参照して説明する。
【0020】
【発明の実施の形態】
図1は本発明の一実施の形態である階段昇降装置を示す概要図、図2は走行台車と搭乗台の連結状態を示す概要図、図3は走行台車を示す拡大正面図、図4は図3の右側面図、図5は傾斜走行時において牽引力が低下した場合の走行台車の状態を示す拡大正面図、図6は規制板の動作を示す正面図、図7は規制板の動作を示す平面図である。
【0021】
図1において、階段昇降装置は、階段室1の階段通路2に沿って設けられたレール3と、そのレール3上を走行可能に設けられた走行台車4と、走行台車4から吊り下げられた搭乗台5と、走行台車4を駆動させるワイヤ等の走行駆動手段とを備える。
【0022】
階段室1の階段通路2は、複数の踊場6,7と複数組の階段8を含み、垂直方向へ三次元的にジグザグに連なる。二つの踊場6,7の間に設けた1組の階段8は、各踊場6,7を境に傾斜方向を逆にするかたちで配置される。一方の踊場6は、1階〜5階の階踊場であり、他方の踊場7は、二つの階踊場6の中間に位置する中踊場である。各階踊場6には、各部屋に割り当てられたドア9が設けられる。レール3は、この階段通路2の内側の天井11付近に沿って連続的に配設される。この実施の形態では、階段通路2の内側に、1階から5階まで垂直に延びる仕切壁10が設けられる。レール3は、この仕切壁10の上方で天井11寄りに沿って配置され、仕切壁10又は天井11に対して複数箇所で固定される。階段通路2のコーナでは、レール3が三次元的にU字形に曲げられ設けられる。レール3の下方には、同じく仕切壁10に沿ってレール3と平行に、丁度人の腰程度の高さに補助レール13が設けられる。
【0023】
走行駆動手段は、レール3に沿ってコーナ部に複数設けられたシーブ14と、各シーブ14を経由してレール3に沿って平行に張り巡らされたワイヤ15と、ワイヤ15を各シーブ14に沿って走行させるため、レール3の上端部に設けられ、電動モータ17により駆動される駆動シーブ18と、レール3の下端部に設けた折り返しシーブ16を備える。電動モータ17、駆動シーブ18は、5階の天井付近に備え付けられる。
【0024】
この実施の形態で、ワイヤ15は、1階の最下端に位置する折り返しシーブ16と、5階の最上端に位置する駆動シーブ18との間でエンドレスに引き回される。ワイヤ15の両端は、ワイヤ端固定具43を介してそれぞれ走行台車4に連結される。
【0025】
階段通路2のコーナにおけるレール3のコーナ形状は、三次元的なU字形に曲げられ、水平状態に固設されるU曲部の一端が下方直線部へ向かって湾曲し、その他端が上方直線部へ向かって湾曲している。
【0026】
レール3のコーナには、4個一組をなすシーブ14が2組配置され、レール3のコーナでは、各シーブ14を経由してワイヤ15が走行するのに伴い、走行台車4と共に搭乗台5が徐々に向きを変えながら通過するように構成されている。
【0027】
尚、安全確保のために、ワイヤ15は、2本一組をなして各シーブ14に掛け回され、走行台車連結側の2本のワイヤ15を案内する2個のシーブ14の他に、折り返し側の2本のワイヤ15を案内する別の2個のシーブが設けられる。
【0028】
本実施の形態においては、階段昇降装置は地上(GL)の階段通路2の踊場7から、5階の踊場6間に設けられているが、当然適用される階段はこれ以上でも、これ以下であってもよい。
【0029】
搭乗台5は、図2(a)に示すように、走行台車4の下部に回転可能に設けた搭乗台連結金具19を介して吊下され、補助レール13にガイドされて走行する。図2(b)には、傾斜走行時における走行台車4と搭乗台5の状態が示されている。
【0030】
搭乗台5は、座席20、足載せ台21、肘掛け22を備える。
【0031】
ワイヤ15は、ワイヤ15の各端部をワイヤ端固定具43を介して連結軸40にて走行台車4の連結金具29に連結している。連結金具29及び連結軸40の連結金具29側は、図3に示すように、自在継手31、32により回動可能に枢着されている。
【0032】
次に、本発明の走行台車の停止装置の実施の形態について図3〜図6を参照して説明する。
【0033】
図において、23はブレーキ作動アームで、上端部には、後記する規制アーム27の規制面27aと係合する傾斜状係合面23bを有し、下端部には、後記する規制部材35の規制溝35aと係脱する係合軸23aを設けた作動部23cを有する。作動部23cはブレーキ作動アーム23の下端に固着され、ブレーキ作動アーム23を反時計方向に付勢するバネ38を係止する支持軸39を有する。また、ブレーキ作動アーム23の傾斜状係合面23bの下部には略平板状のブレーキ部材25が固定ボルト26により固設されている。24はブレーキ作動アーム23を回転可能に支持するブレーキ作動アーム支持軸である。27は規制アームで、上部の台車牽引方向の側面には、ワイヤ15と連係し、台車4を牽引する連結軸40を自在継手32、31を介して連係する回動軸30を備えた連結金具である支持部材29を有し、下部には、上記したブレーキ作動アーム23の係合面23bと係合する傾斜状規制面27aを有する。28は規制アーム27を回動可能に支持する支持軸である。35は規制部材で、ブレーキ作動アーム23の下端に設けた作動部23cの係合軸23aと係合し、一端には、ブレーキ作動アーム23の回動を規制する規制溝35aを備え、基部は搭乗台連結金具19に固着され、回動軸41を中心に搭乗台5と一体的に回動する。規制溝35aは略V字状溝で、該溝の一辺はブレーキ作動アーム23の方向に向って上向きの円弧状保持面35aを延設している。38は固定金具37とブレーキ作動アーム23の作動部23cの支持軸39間に設けられた保持軸を貫装し張設されたバネで、ブレーキ作動アーム23を反時計方向に常時付勢し、ブレーキ作動アーム23の作動時において、ブレーキ部材25を走行ローラ12a方向に回動するように付勢されている。42はバネ調整ナットである。44は走行台車の下端面に設けたリミットスイッチで、バネによりブレーキ作動アーム23の係合軸23aを押圧するプランジャ45を備え、ブレーキ作動アーム23が反時計方向に回動すると、プランジャ45が作動し、リミットスイッチ44が動作して走行駆動モータ17を停止する。また、走行ローラ12a、12dは、レール3の上面で走行し、ガイドローラ12b,12cは、下面または側面に当接して走行する。
【0034】
本実施の形態の走行台車4は、図3〜図5に示すように、上端に規制アーム27の規制面27aと係合する傾斜状の係合面23bと、前記係合面23bの下部に設けた略平板状のブレーキ部材25と、下端に規制部材35の規制溝35aと係合する係合軸23aを設けた作動部23cを有し、ブレーキ作動アーム支持軸24を中心に回動するブレーキ作動アーム23と、ワイヤ15と連結し、台車4を牽引する連結軸40と自在継手32、31を介して連係し、水平方向に回動する回動軸30を備える連結金具29と、前記連結金具29を上部に固着し、下端にブレーキ作動アーム23の回動を規制し、ブレーキ作動アーム23の係合面23bと係合する規制面27aを備え、規制アーム軸28を中心に回動する規制アーム27と、ブレーキ作動アーム23の作動部23cの一端に設けた係合軸23aと係合し、ブレーキ作動アーム23の回動を規制する規制溝35aを一端に備え、基部を搭乗台連結金具19に固着され、搭乗台5と一体的に回動軸41を中心に回動する規制部材35を備えている。また、走行台車4の下部には、ブレーキ作動アームの作動時に、ブレーキ作動アーム23に設けたブレーキ部材25を走行ローラ12a方向に回動するように付勢するため、固定金具36に設けた支持軸37と、作動部23cに設けた支持軸39間にバネ38が配設されており、バネ38の付勢力を調節するバネ調整ナット42が設けられている。
【0035】
次に、本実施の形態における動作について説明する。上記したように、本実施の形態によれば、走行台車の動作時において、ワイヤ15等が切断されるかまたは緩み、走行台車の牽引力が低下すると、図5に示すように、規制アーム27が規制アーム軸28を中心に図3時計方向に回動し、ブレーキ作動アーム23の回動の規制を解除する構造となっている。
【0036】
一方、規制部材35は、搭乗台5の搭乗台連結金具19に設けられ、走行台車4が水平走行から傾斜走行に移行すると、その動作に連動して、回動軸41を中心にブレーキ作動アーム23の回動の規制を解除する方向(図3反時計方向)に回動する。
【0037】
従って、ブレーキ作動アーム23は、走行台車4の傾動を規制部材35が検知し、規制部材35によるブレーキ作動アーム23の回動規制が解除され、且つ、走行台車4の牽引力が低下することにより、規制アーム27によるブレーキ作動アーム23の回動規制が解除された状態において、図5に示すように、ブレーキ作動アーム23は、ブレーキ作動アーム支持軸24を中心にブレーキ部材25が走行ローラ12aの下方とレール3間に入り込む方向(図3反時計方向)に回動し、ブレーキ部材25のクサビ作用により走行ローラ12aの回動を停止する。
【0038】
一方、走行台車4が傾斜部走行時において、走行台車4を牽引する牽引力が正常であれば、ブレーキ作動アーム23の作動部23cの係合軸23aは、規制部材35の規制溝35aから解放され、ブレーキ作動アーム23は支持軸24を中心に制動力が作用する方向へ回動しようとするが、ブレーキ作動アーム23上端に設けた係合面23bは、規制アーム27の規制面と係合しており、規制アーム27には牽引力により回動軸28を中心に反時計方向に回動する力が加わっているため、ブレーキ作動アーム23の回動が阻止され、制動作用を行わない。
【0039】
しかし、走行台車の傾斜部走行時に、走行台車の牽引力が低下すると、上記した通り、規制アーム27のブレーキ作動アーム23への規制が解除され、ブレーキ作動アーム23は図5に示すように、支持軸24を中心に反時計方向に回動し、これによりブレーキ部材25が走行ローラ12aとレール3間に挿入され、走行ローラ12aの走行が制動される。このブレーキ部材25の動作により、走行ローラ12aはブレーキ部材25に乗り上げようとするが、ガイドローラ12bがレール3の下面にレール3との所定の隙間を有して設けられているので、走行ローラ12aは前記隙間分だけブレーキ部材25に乗り上げ、この動作により、走行ローラ12aとレール3間に挿入されるブレーキ部材25にはクサビ作用が発生し、走行台車4を制動する作用が働き、走行台車4の走行を停止する。尚、ブレーキ部材25は、走行ローラ12aとレール3間に挿入され易く、より大きなクサビ効果を発生するために、先端を薄くし、上面に傾斜面を有する形状としている。また、ブレーキ部材25は、ゴム等の弾性体で形成されるものが好ましい。
【0040】
以上により、クサビ効果を利用した停止装置であるため、小さいバネ力でも大きな制動力が得られ、構造が簡素化され、コスト低減となる効果を有する。
【0041】
一方、水平部走行には、走行台車4と搭乗台5は鉛直状態で走行し、図3に示すように、ブレーキ作動アーム23の係合軸23aは、規制部材35の規制溝35aに係合し、ブレーキ作動アーム23の回動を規制しているため、牽引力低下時において、規制アーム27がブレーキ作動アーム23の規制を解除しても、ブレーキ作動アーム23の回動は規制され、ブレーキ部材25は作動しない。
【0042】
このように、下降時の水平走行時に牽引力が低下すると、規制アーム27とブレーキ作動アーム23との係合が解除されるが、規制部材35の規制溝35aがブレーキ作動アーム23の作動部23cの係合軸23aを係合し、ブレーキ作動アーム23の回動を規制しているので、走行台車の停止機構は作用せず、走行台車をスムースに牽引できる作用を有する。
【0043】
また、上記実施の形態において、33は走行台車4の上端に設けられ、走行台車4の牽引動作時において、連結軸40の上方向への移動を規制する規制板である。次に規制板33の作用について説明する。
【0044】
傾斜部の下降走行時においては、搭乗台5の自重により連結軸40には張力が働いているので、走行台車4とワイヤ端固定具43は一定の位置関係を保ちながら安定して走行しているが、下降走行を続け走行台車4がレール3のコーナーである水平部に走行を移行すると、搭乗台5の自重による連結軸40の張力が無くなり、ワイヤ15はワイヤ端固定具43を介して連結軸40を押動して走行台車4を下降走行させる。この時、ワイヤ端固定具43と連係する側を上方に傾動する力が連結軸40に働き、ワイヤ端固定具43付近のワイヤ15がシーブ14のシーブ溝のつばと接触し局部的にワイヤ15が摩耗するという不具合が生じるため、図6に示すように走行台車4の上端部に前記連結軸40の上方への傾動を規制する規制板33を設け、ワイヤ端固定具43付近のワイヤの押し上げ動作を防止し、ワイヤ3のシーブ14通過時の局部的な摩擦を防止しワイヤ3の寿命を延ばすことができる。
【0045】
また、水平部下降走行時において、前述したように連結軸40が走行台車を押す状態になると、規制アーム27がブレーキ作動アーム23の係合面23bの規制を解放する方向(図3時計方向)に回動を開始する。規制板33を備えない場合には、規制アーム27が解放端まで回動し、この状態で、停止のためにワイヤ15の送り速度を減速させると、走行台車は不連続な走行速度となり、搭乗台5は揺動し、搭乗者への不快感を与える。これらを防止するため、図6に示すように走行台車4の上端部に規制板33を設け、規制アーム27の解放端までの回動を規制し、前述した搭乗台の揺れを防止し、水平部走行時の乗り心地を向上させることができる。
【0046】
また、水平部走行時、連結軸40は、図7の(a)に示すように、ワイヤ端固定具43と走行台車4とは、コーナーでの走行位置がズレている状態で走行するため、それぞれの進行方向が変化するので、レール3の内側の方向に向いて、走行台車を牽引する。また、傾斜部走行時は、連結軸40は、図7の(b)に示すように、ほぼレール3と平行になるため、台車の真上に位置しながら走行台車4を牽引する。このように、水平部走行時と傾斜部走行時では連結軸40の牽引方向が異なるため、規制板33は、水平部走行時のみ連結軸40の上方へ移動を規制することができる所定の幅を有し、傾斜部走行時は連結軸40の上方向の移動が自由となる形状で構成される。
【0047】
以上により、連結軸40の上方への移動を規制する規制板33を設けたので、傾斜部の牽引力低下時における落下防止装置の機能を損なうこと無く、ワイヤ固定具43付近のワイヤ3のシーブ14通過時の局部的な摩擦を防止し寿命を延ばし、水平部走行時の乗り心地を向上させることができる。
【0048】
また、水平部走行時においては前述したように連結軸40が走行台車4を押動して走行するため、走行台車4の牽引力低下が検出されてしまうので、この場合の走行に支障が無いように傾斜走行検知手段にてブレーキ作動アームの作動を規制している。
【0049】
【発明の効果】
本発明によれば、走行台車は、ワイヤ切断等による走行台車の牽引力低下を検出する牽引力検知手段と、走行台車が傾斜部を走行中であることを検出する傾斜検知手段と、牽引力検知手段と傾斜検知手段の動作によって作動するブレーキ規制手段等を備え、傾斜検知手段が走行台車の傾斜部走行中を検出した状態で、尚且つ、牽引力検知手段が走行台車の牽引力低下を検出した場合のみ、ブレーキ手段が作動し、レールを押圧して走行台車を停止させるようにしたので、万が一ワイヤ等が切断した場合でも、安全に走行台車を停止させることができ、且つ、機械的に動作する構造としたため、停電時等の電気的なトラブルが生じた場合でも停止機能を確実に果たすことができる。
【0050】
また、走行台車の水平走行時には、傾斜検知手段が作動しない構成としているため、ブレーキ手段が作動せず、スムースに走行することができる。さらに、傾斜検知手段は、ブレーキ手段の係合軸が係合する略V字状にで円弧状保持面を有する規制溝を備えており、係合軸と規制溝との係合をスムーズに行うことができる。さらにまた、走行台車にブレーキ手段の動作を検知するリミットスイッチを設けることにより、走行台車の走行停止と同期して駆動モータを停止さにるため、階段昇降装置の安全性を向上することができる。
【図面の簡単な説明】
【図1】本発明の一実施の形態である階段昇降装置を示す概要図である。
【図2】(a)は、走行台車と搭乗台の平行走行時における連結状態を示す概要図であり、(b)は、傾斜走行時における概要図である。
【図3】走行台車の拡大正面図である。
【図4】図3の側面図である。
【図5】走行台車のブレーキ作動時における拡大正面図である。
【図6】規制板の動作を説明する正面図である。
【図7】規制板の動作を説明する平面図である。
【図8】階段昇降装置の従来例を示す概要図である。
【図9】階段昇降室の従来例を示す概要図である。
【符号の説明】
1  階段室
2  階段通路
3  レール
4  走行台車
5  搭乗台
6  踊場
7  踊場
8  階段
9  ドア
10 仕切壁
11 天井
12a、12d 走行ローラ
12b、12c ガイドローラ
13 補助レール
14 シーブ
15 ワイヤ
16 折り返しシーブ
17 電動モータ
18 駆動シーブ
19 搭乗台連結金具
20 座席
21 足載せ台
22 肘掛け
23 ブレーキ作動アーム
23a係合軸
23b係合面
23c作動部
24 ブレーキ作動アーム支持軸
25 ブレーキ部材
26 固定ボルト
27 規制アーム
27a規制面
28 規制アーム軸
29 支持部材(連結金具)
30 回動軸
31 自在継手
32 自在継手
33 規制板
34 軸受部材
35 規制部材
35a規制溝
35b保持面
36 固定金具
37 支持軸
38 バネ
38a保持軸
39 支持軸
40 連結軸
41 回動軸
42 バネ調整ナット
43 ワイヤ端固定具
44 リミットスイッチ
45 プランジャ
[0001]
TECHNICAL FIELD OF THE INVENTION
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a stair climbing device provided in a staircase of a multi-storey building and mainly used for elevating a person. More specifically, in a stair climbing device that continuously moves a horizontal part and an inclined part, a function of stopping a traveling trolley when a wire breakage or loosening occurs during the movement of the inclined part without hindering movement of the horizontal part. The present invention relates to a stair climbing and lowering device provided.
[0002]
[Prior art]
Conventionally, as this type of stair climbing device, a device provided with a rail provided along the stairs, a chair-type boarding board provided to be able to travel on the rail, and a drive mechanism of the rail and the boarding board is known. is there.
[0003]
However, these chair-type elevating devices reduce the effective width of the stairs because the rails are installed directly on the stairs. From the point of view, it was not always enough. For this reason, a hanging stair lifting / lowering device that does not reduce the effective width of the stairs and does not hinder stair users has been developed.
[0004]
For example, as shown in FIG. 8, a rail 102 having a sloped rail portion 102 a, a traveling vehicle 103 traveling along the rail 102, and a riding tool suspended from the traveling vehicle 103 downward as shown in FIG. 104, a traveling drive device 105 that is an electric motor for driving the traveling carriage 103, and an elevating drive device for vertically moving the riding device 104 up and down. The driving motor is connected to the electric motor via a speed reducer and the like. The pinion is configured to engage a rack provided on the rail 102. In this stair climbing device, the rail 102 is disposed at a position near the ceiling of the stairway away from the stairs 101, so that the effective width of the stairs is rarely narrowed, and it is difficult for stair users to get in the way.
[0005]
However, the stair climbing device is, for example, a two-story building, between the first floor and the second floor, although there is a straight traveling part and an inclined traveling part, it is only for linear traveling in a plane, It was not possible to continuously travel between each floor of a building of three or more floors, and it was not possible to install the stair climbing device on the stairs of a building of three or more floors to continuously raise and lower the boarding platform 104.
[0006]
As shown in FIG. 9, the staircase 110 includes a plurality of landings 111 and 112 and a plurality of stairs 113, and is provided with a stair passage 114 that is three-dimensionally connected in a zigzag manner in the vertical direction. , 112 are arranged in such a manner that the inclination direction is reversed with respect to each landing 111, 112. For this reason, in order to provide the above-mentioned hanging stair climbing device in the staircase room 110 and to raise and lower the person between the third and higher floors, the space between the landing 111 on the first floor and the landing 111 on the second floor is required. As between the landing 111 on the third floor and the landing 111 on the third floor, a different stair lifting device must be provided for each of the upper and lower landings 111 and 112, and a plurality of stair lifting devices are required. Those who use these devices also need to change the stair climbing device for each landing 111. (For example, see Patent Document 1).
[0007]
In order to solve the problems of these conventional stair climbing devices, a rail that bends in a U-shape at the corner of the stair passage along the vicinity of the inside ceiling of the stair passage that is vertically zigzag in the staircase of a multi-story building, Japanese Patent Application No. 2001-041230 proposes a stair climbing device including a traveling vehicle provided so as to be able to travel on the vehicle, a board suspended from the traveling vehicle, and traveling driving means for driving the traveling vehicle. However, there has been no proposal for a stop device for the traveling vehicle to stop the traveling vehicle by detecting a decrease in traction force when traveling on an inclined rail without any trouble in traveling on the U-shaped rail at the corner portion.
[0008]
[Patent Document 1]
Japanese Patent Application Laid-Open No. 11-115752 (pages 4 to 8; FIG. 1)
[0009]
[Problems to be solved by the invention]
The present invention is directed to a stair climbing device that travels along a staircase of a building having a plurality of floors and a rail that is continuously provided along a stairway that extends in a zigzag manner in the staircase in the vertical direction. It is an object of the present invention to provide a stopping device for a traveling vehicle that does not operate when the horizontal rail of the hour shape is moved, and stops the traveling vehicle when the traction force is reduced due to wire cutting or the like during the movement of the inclined portion. No. 041230, a staircase, and a staircase which is provided continuously along a stairway that is vertically connected in a zigzag direction, and at the corner of the staircase, a rail that bends in a U-shape and can run on the rail A stair climbing and lowering device comprising: a traveling vehicle provided on the vehicle; a boarding platform suspended from the traveling vehicle; and traveling driving means for driving the traveling vehicle. When the traction force of the traction means during part running is lowered, there is provided a stop device for stopping the driving of the traveling vehicle.
[0010]
[Means for Solving the Problems]
The present invention has been made to solve the above problems, and has a guide rail continuously provided along a stairway that connects a staircase with a staircase of a multi-story building, and the guide rail can be run by a traction means. In a provided traveling vehicle, a boarding platform suspended from the traveling vehicle, and a stair climbing / lowering device including a traveling drive unit for driving the traction unit, the system operates by detecting a decrease in traction force due to a disconnection of the traveling drive unit or the like. Traction force detection means, operable in conjunction with the traction force detection means, and having brake means that operates in conjunction with the inclination detection means that operates by detecting the inclination of the traveling vehicle, traction force detection means, The present invention provides a stopping device for a traveling vehicle in a stair climbing and lowering device, characterized in that the operation of the braking device is released by the operation of both of the inclination detecting devices and the braking device stops the traveling vehicle.
[0011]
In the case of the conventional device, if the wire breaks, the wire rope looseness detecting device provided near the wire drive unit detects the wire rope tension drop due to the cutting and stops the drive motor. It took time for the wire rope slack detector to detect a drop in the wire rope tension depending on the location of the wire rope or when the wire rope was cut, but according to the present invention, the drop in the wire rope tension was immediately detected. In addition, it has the function of stopping the traveling vehicle.
[0012]
Further, as an embodiment, the brake means is always engaged with a regulating surface provided on the traction force detecting means at the upper end portion, the operation is regulated, and when the traction force decreases, the engagement with the regulating surface is released, and the braking means is restricted. Has a brake plate inserted between the traveling wheel and the rail at the time of regulation release, and at the lower end, can be disengaged from the regulation groove provided in the inclination detection means, A brake operation arm having an engagement shaft which is released from the restriction groove and whose operation restriction is released, and which is always elastically urged in the brake plate operation direction by a spring.
[0013]
Further, the traction force detecting means is provided with a connecting bracket for rotatably pivoting a connecting shaft connected to the traction wire at an upper end, and a restricting surface having a restricting surface for engaging with an engaging surface of the brake means at a lower end. Arm.
[0014]
Further, the inclination detecting means has a regulation groove having a base connected to the boarding connection fitting, engaging with an engagement shaft of the brake operation arm, and restricting rotation of the brake operation arm, and integrally with the boarding board. This is a regulating member that rotates and releases the engagement shaft of the brake operation arm from the engagement groove when tilted, and releases the regulation of the engagement shaft.
[0015]
In addition, the brake plate of the brake operation arm has an inclined surface, so that the brake plate can be easily inserted between the traveling wheel and the rail, and has an effect that the traveling of the traveling vehicle can be reliably stopped. .
[0016]
Further, as another embodiment, the regulating groove is a substantially V-shaped groove, one side of which extends an arc-shaped holding surface facing upward in the direction of the brake operating arm. Has the effect of smoothly engaging the engagement shaft when the engagement occurs.
[0017]
Further, the traveling vehicle has a limit switch provided with a plunger pressed by a brake operation arm, and the operation of the brake activation arm activates the limit switch to stop traveling driving means. Since the traveling drive motor is stopped in synchronization with the operation, there is an effect that safety can be improved.
[0018]
Furthermore, the traveling vehicle has a regulating plate that regulates the upward movement of the connecting shaft during the towing operation of the traveling vehicle, and has an effect of reducing local wear of the wire rope.
[0019]
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
[0020]
BEST MODE FOR CARRYING OUT THE INVENTION
FIG. 1 is a schematic diagram showing a stair climbing device according to one embodiment of the present invention, FIG. 2 is a schematic diagram showing a connection state between a traveling vehicle and a boarding platform, FIG. 3 is an enlarged front view showing the traveling vehicle, and FIG. FIG. 5 is a right side view of FIG. 3, FIG. 5 is an enlarged front view showing a state of the traveling bogie when the tractive force is reduced during inclining travel, FIG. 6 is a front view showing the operation of the regulating plate, and FIG. FIG.
[0021]
In FIG. 1, the stair climbing device is suspended from a rail 3 provided along a stair passage 2 of a staircase 1, a traveling vehicle 4 provided to be able to travel on the rail 3, and the traveling vehicle 4. The vehicle includes a boarding platform 5 and traveling driving means such as a wire for driving the traveling vehicle 4.
[0022]
The stairway 2 of the staircase 1 includes a plurality of landings 6 and 7 and a plurality of sets of stairs 8 and is three-dimensionally zigzag in the vertical direction. One set of stairs 8 provided between the two landings 6 and 7 is arranged in a manner that the inclination direction is reversed with respect to each landing 6 and 7. One landing 6 is a first to fifth floor landing, and the other landing 7 is a middle landing located between the two floor landings 6. Each floor landing 6 is provided with a door 9 assigned to each room. The rail 3 is disposed continuously along the vicinity of the ceiling 11 inside the stair passage 2. In this embodiment, a partition wall 10 extending vertically from the first floor to the fifth floor is provided inside the stair passage 2. The rail 3 is disposed above the partition wall 10 and along the ceiling 11, and is fixed to the partition wall 10 or the ceiling 11 at a plurality of locations. At the corner of the stairway 2, the rail 3 is provided three-dimensionally bent in a U-shape. Below the rail 3, an auxiliary rail 13 is provided along the partition wall 10 and in parallel with the rail 3 at a height just about the waist of a person.
[0023]
The traveling drive means includes a plurality of sheaves 14 provided at corner portions along the rails 3, wires 15 stretched in parallel along the rails 3 via the respective sheaves 14, and wires 15 to the respective sheaves 14. A drive sheave 18 provided at an upper end of the rail 3 and driven by an electric motor 17 and a folded sheave 16 provided at a lower end of the rail 3 for traveling along the rail 3 are provided. The electric motor 17 and the drive sheave 18 are provided near the ceiling on the fifth floor.
[0024]
In this embodiment, the wire 15 is routed endlessly between a folded sheave 16 located at the lowermost end of the first floor and a drive sheave 18 located at the uppermost end of the fifth floor. Both ends of the wire 15 are respectively connected to the traveling vehicle 4 via wire end fixing tools 43.
[0025]
The corner shape of the rail 3 at the corner of the stairway 2 is bent into a three-dimensional U-shape, one end of a U-curved portion fixed horizontally is curved toward a lower straight portion, and the other end is an upper straight line. It is curved toward the part.
[0026]
At the corner of the rail 3, two sets of four sheaves 14 are arranged, and at the corner of the rail 3, as the wire 15 travels via each sheave 14, the traveling carriage 4 and the boarding platform 5 are moved. Is configured to pass while changing its direction gradually.
[0027]
In order to ensure safety, the wires 15 are wound around each of the sheaves 14 in a set of two wires. In addition to the two sheaves 14 that guide the two wires 15 on the traveling vehicle connecting side, the wires 15 are folded back. Another two sheaves are provided to guide the two wires 15 on the side.
[0028]
In the present embodiment, the stair climbing device is provided between the landing 7 of the stair passage 2 on the ground (GL) and the landing 6 on the fifth floor. There may be.
[0029]
As shown in FIG. 2A, the boarding platform 5 is suspended via a boarding connection bracket 19 rotatably provided below the traveling vehicle 4, and travels while being guided by the auxiliary rail 13. FIG. 2B shows a state of the traveling vehicle 4 and the boarding platform 5 during the inclined traveling.
[0030]
The boarding table 5 includes a seat 20, a footrest 21, and an armrest 22.
[0031]
The wire 15 connects each end of the wire 15 to a connection fitting 29 of the traveling vehicle 4 via a connection shaft 40 via a wire end fixing tool 43. As shown in FIG. 3, the connecting fitting 29 and the connecting shaft 29 side of the connecting shaft 40 are pivotally connected by universal joints 31 and 32.
[0032]
Next, an embodiment of a stop device for a traveling vehicle according to the present invention will be described with reference to FIGS.
[0033]
In the drawing, reference numeral 23 denotes a brake operating arm, which has an inclined engaging surface 23b at an upper end portion for engaging with a regulating surface 27a of a regulating arm 27 described later, and a regulating member 35 described later at a lower end portion. It has an operating portion 23c provided with an engaging shaft 23a that engages and disengages with the groove 35a. The operating portion 23c is fixed to the lower end of the brake operating arm 23, and has a support shaft 39 that locks a spring 38 that urges the brake operating arm 23 counterclockwise. A substantially flat brake member 25 is fixed to a lower portion of the inclined engagement surface 23b of the brake operation arm 23 by a fixing bolt 26. Reference numeral 24 denotes a brake operation arm support shaft that rotatably supports the brake operation arm 23. Reference numeral 27 denotes a regulating arm, on the upper side surface of which in the direction of pulling the bogie, a connecting bracket provided with a rotating shaft 30 which is linked to the wire 15 and which links a connecting shaft 40 for pulling the bogie 4 via universal joints 32 and 31. And the lower part has an inclined regulating surface 27a which engages with the engaging surface 23b of the brake operating arm 23 described above. Reference numeral 28 denotes a support shaft that rotatably supports the regulating arm 27. A regulating member 35 is engaged with an engaging shaft 23a of an operating portion 23c provided at a lower end of the brake operating arm 23, and has a regulating groove 35a at one end for regulating the rotation of the brake operating arm 23. It is fixed to the boarding connection fitting 19 and rotates integrally with the boarding 5 about the rotating shaft 41. The restricting groove 35a is a substantially V-shaped groove, and one side of the groove extends an arc-shaped holding surface 35a facing upward toward the brake operating arm 23. Numeral 38 is a spring extending through a holding shaft provided between the fixing bracket 37 and the support shaft 39 of the operating portion 23c of the brake operating arm 23, and constantly biases the brake operating arm 23 in a counterclockwise direction. When the brake operation arm 23 is operated, the brake member 25 is urged to rotate in the direction of the traveling roller 12a. 42 is a spring adjusting nut. Reference numeral 44 denotes a limit switch provided on the lower end surface of the traveling vehicle. The limit switch 44 includes a plunger 45 that presses the engaging shaft 23a of the brake operating arm 23 with a spring. When the brake operating arm 23 rotates counterclockwise, the plunger 45 operates. Then, the limit switch 44 operates to stop the traveling drive motor 17. The running rollers 12a and 12d run on the upper surface of the rail 3, and the guide rollers 12b and 12c run while contacting the lower surface or the side surface.
[0034]
As shown in FIGS. 3 to 5, the traveling vehicle 4 according to the present embodiment has an inclined engagement surface 23 b that engages with the regulation surface 27 a of the regulation arm 27 at the upper end, and a lower portion of the engagement surface 23 b. It has a substantially plate-shaped brake member 25 provided and an operating portion 23c provided with an engaging shaft 23a at the lower end for engaging with the regulating groove 35a of the regulating member 35, and rotates around the brake operating arm support shaft 24. A connection bracket 29 connected to the brake operation arm 23 and the wire 15, connected to the connection shaft 40 for pulling the carriage 4 through universal joints 32 and 31, and provided with a rotation shaft 30 that rotates in the horizontal direction; A connecting bracket 29 is fixed to an upper portion, and a lower end is provided with a regulating surface 27a which regulates rotation of the brake operating arm 23 and engages with an engaging surface 23b of the brake operating arm 23, and rotates around a regulating arm shaft 28. Regulating arm 27 and brake A restricting groove 35a is provided at one end for engaging with an engaging shaft 23a provided at one end of an operating portion 23c of the moving arm 23, and restricting the rotation of the brake operating arm 23. The base is fixed to the boarding connection fitting 19, A regulating member 35 that rotates about the rotation shaft 41 integrally with the boarding table 5 is provided. In addition, a support provided on a fixing bracket 36 is provided at a lower portion of the traveling carriage 4 to urge the brake member 25 provided on the brake operating arm 23 to rotate toward the traveling roller 12a when the brake operating arm is operated. A spring 38 is provided between the shaft 37 and a support shaft 39 provided on the operating portion 23c, and a spring adjusting nut 42 for adjusting the urging force of the spring 38 is provided.
[0035]
Next, the operation in the present embodiment will be described. As described above, according to the present embodiment, if the wire 15 or the like is cut or loosened during the operation of the traveling vehicle and the tractive force of the traveling vehicle is reduced, as shown in FIG. It is configured to rotate clockwise in FIG. 3 around the regulating arm shaft 28 to release the regulation of the rotation of the brake operating arm 23.
[0036]
On the other hand, the regulating member 35 is provided on the boarding connection fitting 19 of the boarding board 5, and when the traveling vehicle 4 shifts from horizontal traveling to inclined traveling, the braking operation arm is pivoted about the rotating shaft 41 in conjunction with the operation. 23 rotates in a direction to release the restriction of the rotation (counterclockwise direction in FIG. 3).
[0037]
Therefore, the braking member 23 detects the tilting of the traveling vehicle 4 by the regulating member 35, and the regulation of the rotation of the brake operating arm 23 by the regulating member 35 is released, and the traction force of the traveling vehicle 4 is reduced. In a state where the rotation of the brake operation arm 23 by the restriction arm 27 is released, as shown in FIG. 5, the brake member 25 is moved below the traveling roller 12 a around the brake operation arm support shaft 24 as shown in FIG. And the rails 3 (in the counterclockwise direction in FIG. 3), and the rotation of the traveling roller 12a is stopped by the wedge action of the brake member 25.
[0038]
On the other hand, when the traveling vehicle 4 travels on the inclined portion, if the traction force for towing the traveling vehicle 4 is normal, the engaging shaft 23a of the operating portion 23c of the brake operating arm 23 is released from the regulating groove 35a of the regulating member 35. The brake operating arm 23 tends to rotate around the support shaft 24 in the direction in which the braking force acts, but the engaging surface 23 b provided at the upper end of the brake operating arm 23 engages with the regulating surface of the regulating arm 27. Since the force for turning the control arm 27 in the counterclockwise direction about the rotation shaft 28 is applied by the traction force, the rotation of the brake operation arm 23 is prevented, and the braking operation is not performed.
[0039]
However, when the tractive force of the traveling vehicle decreases during traveling on the inclined portion of the traveling vehicle, as described above, the regulation of the regulating arm 27 to the brake operating arm 23 is released, and the brake operating arm 23 is supported as shown in FIG. It rotates counterclockwise about the shaft 24, whereby the brake member 25 is inserted between the traveling roller 12a and the rail 3, and the traveling of the traveling roller 12a is braked. By the operation of the brake member 25, the traveling roller 12 a tries to ride on the brake member 25. However, since the guide roller 12 b is provided on the lower surface of the rail 3 with a predetermined gap from the rail 3, the traveling roller 12 a 12a rides on the brake member 25 by the amount of the gap, and by this operation, a wedge action occurs on the brake member 25 inserted between the traveling roller 12a and the rail 3, and an action of braking the traveling vehicle 4 works. 4 is stopped. The brake member 25 has a thin end and an inclined surface on the upper surface in order to be easily inserted between the traveling roller 12a and the rail 3 and to generate a greater wedge effect. The brake member 25 is preferably made of an elastic material such as rubber.
[0040]
As described above, since the stop device utilizes the wedge effect, a large braking force can be obtained even with a small spring force, so that the structure is simplified and the cost is reduced.
[0041]
On the other hand, in the horizontal section traveling, the traveling carriage 4 and the boarding platform 5 travel in a vertical state, and the engaging shaft 23a of the brake operating arm 23 engages with the regulating groove 35a of the regulating member 35 as shown in FIG. However, since the rotation of the brake operation arm 23 is restricted, even if the restriction arm 27 releases the restriction on the brake operation arm 23 when the traction force is reduced, the rotation of the brake operation arm 23 is restricted, and the brake member 25 does not work.
[0042]
As described above, when the traction force is reduced during the horizontal traveling at the time of descending, the engagement between the regulating arm 27 and the brake operating arm 23 is released, but the regulating groove 35a of the regulating member 35 is engaged with the operating portion 23c of the brake operating arm 23. Since the engagement shaft 23a is engaged and the rotation of the brake operation arm 23 is restricted, the stopping mechanism of the traveling vehicle does not act, and the traveling vehicle can be smoothly pulled.
[0043]
In the above embodiment, reference numeral 33 denotes a regulating plate provided at the upper end of the traveling vehicle 4 to regulate the upward movement of the connecting shaft 40 during the towing operation of the traveling vehicle 4. Next, the operation of the regulating plate 33 will be described.
[0044]
When the inclined section descends, the connecting shaft 40 is under tension by its own weight, so that the traveling vehicle 4 and the wire end fixing tool 43 travel stably while maintaining a fixed positional relationship. However, when the traveling vehicle 4 continues traveling downward and moves to a horizontal portion which is a corner of the rail 3, the tension of the connecting shaft 40 due to its own weight of the platform 5 is lost, and the wire 15 is connected via the wire end fixture 43. The traveling shaft 4 is moved downward by pushing the connecting shaft 40. At this time, a force for tilting the side linked with the wire end fixing tool 43 upward acts on the connection shaft 40, and the wire 15 near the wire end fixing tool 43 comes into contact with the collar of the sheave groove of the sheave 14, and the wire 15 As shown in FIG. 6, a regulating plate 33 for regulating the upward tilt of the connecting shaft 40 is provided at the upper end of the traveling vehicle 4 to push up the wire near the wire end fixing tool 43 as shown in FIG. Operation can be prevented, local friction when the wire 3 passes through the sheave 14 can be prevented, and the life of the wire 3 can be extended.
[0045]
In addition, when the connecting shaft 40 pushes the traveling cart as described above during the downward traveling of the horizontal portion, the regulating arm 27 releases the regulation of the engaging surface 23b of the brake operating arm 23 (clockwise direction in FIG. 3). To start rotating. In the case where the regulating plate 33 is not provided, the regulating arm 27 rotates to the release end, and in this state, if the feed speed of the wire 15 is reduced for stopping, the traveling vehicle has a discontinuous traveling speed, and The platform 5 rocks, giving the passengers discomfort. In order to prevent these, as shown in FIG. 6, a regulating plate 33 is provided at the upper end of the traveling cart 4 to regulate the rotation of the regulating arm 27 to the open end, to prevent the above-mentioned swing of the boarding board, Ride comfort at the time of running in a section can be improved.
[0046]
Also, when traveling in the horizontal portion, the connecting shaft 40 travels in a state where the traveling position at the corner is shifted between the wire end fixing tool 43 and the traveling vehicle 4 as shown in FIG. Since each traveling direction changes, the traveling vehicle is towed toward the inside of the rail 3. In addition, when traveling on an inclined portion, the connecting shaft 40 is substantially parallel to the rail 3 as shown in FIG. 7B, so that the traveling vehicle 4 is towed while being positioned directly above the vehicle. As described above, since the towing direction of the connecting shaft 40 is different between the horizontal section running and the inclined section running, the restricting plate 33 has a predetermined width capable of restricting the upward movement of the connecting shaft 40 only during the horizontal section running. , And has a shape in which the upward movement of the connecting shaft 40 is free when the vehicle is traveling on an inclined portion.
[0047]
As described above, since the regulating plate 33 that regulates the upward movement of the connecting shaft 40 is provided, the sheave 14 of the wire 3 near the wire fixing tool 43 can be provided without impairing the function of the fall prevention device when the traction force of the inclined portion is reduced. It is possible to prevent local friction at the time of passage, prolong the life, and improve the riding comfort when traveling in a horizontal part.
[0048]
In addition, when the vehicle travels in a horizontal section, the connecting shaft 40 pushes the traveling vehicle 4 to travel as described above, so that a decrease in the tractive force of the traveling vehicle 4 is detected, so that there is no obstacle to traveling in this case. The operation of the brake operation arm is regulated by the inclination traveling detection means.
[0049]
【The invention's effect】
According to the present invention, the traveling vehicle has a traction force detection unit that detects a decrease in traction force of the traveling vehicle due to a wire cut or the like, an inclination detection unit that detects that the traveling vehicle is traveling on an inclined portion, and a traction force detection unit. Brake control means and the like operated by the operation of the inclination detection means, provided that the inclination detection means detects that the traveling vehicle is traveling on an inclined portion, and only when the traction force detection means detects a decrease in the traction force of the traveling vehicle, Since the brake means is actuated and the rail is pressed to stop the traveling bogie, even if a wire or the like is cut, the traveling bogie can be safely stopped and has a mechanically operated structure. Therefore, even when an electric trouble such as a power failure occurs, the stop function can be reliably performed.
[0050]
In addition, when the traveling vehicle travels horizontally, the inclination detecting means does not operate, so that the brake means does not operate and the vehicle can travel smoothly. Furthermore, the inclination detecting means includes a regulating groove having a substantially V-shaped and arc-shaped holding surface with which the engaging shaft of the brake means engages, and smoothly engages the engaging shaft with the regulating groove. be able to. Furthermore, by providing a limit switch for detecting the operation of the brake means on the traveling vehicle, the drive motor is stopped in synchronization with the stop of traveling of the traveling vehicle, so that the safety of the stair climbing device can be improved. .
[Brief description of the drawings]
FIG. 1 is a schematic diagram showing a stair climbing device according to an embodiment of the present invention.
FIG. 2A is a schematic diagram illustrating a connected state of a traveling vehicle and a boarding platform during parallel traveling, and FIG. 2B is a schematic diagram illustrating an inclined traveling state.
FIG. 3 is an enlarged front view of the traveling vehicle.
FIG. 4 is a side view of FIG. 3;
FIG. 5 is an enlarged front view of the traveling bogie when a brake is operated.
FIG. 6 is a front view illustrating the operation of the regulating plate.
FIG. 7 is a plan view illustrating the operation of the regulating plate.
FIG. 8 is a schematic view showing a conventional example of a stair climbing device.
FIG. 9 is a schematic diagram showing a conventional example of a stair climbing room.
[Explanation of symbols]
1 staircase room
2 stairs passage
3 rails
4 traveling cart
5 Boarding platform
6 landing
7 landing
8 Stairs
9 door
10 Partition wall
11 Ceiling
12a, 12d running roller
12b, 12c Guide roller
13 Auxiliary rail
14 sheaves
15 wires
16 Return sheave
17 Electric motor
18 Drive sheave
19 Boarding bracket
20 seats
21 Footrest
22 Armrest
23 Brake operating arm
23a engagement shaft
23b engagement surface
23c working part
24 Brake operating arm support shaft
25 Brake material
26 Fixing bolt
27 Regulatory arm
27a regulation surface
28 Regulator arm axis
29 Supporting members (connection fittings)
30 Rotation axis
31 Universal Joint
32 Universal Joint
33 regulation plate
34 Bearing member
35 Regulation members
35a regulating groove
35b holding surface
36 Fixing bracket
37 Support shaft
38 Spring
38a holding shaft
39 Support shaft
40 connecting shaft
41 Rotation axis
42 Spring adjustment nut
43 Wire end fixture
44 Limit switch
45 plunger

Claims (8)

複数階の建物の階段室と階段室を連絡する階段通路に沿って連続的に設けられた案内レールと、前記案内レールに牽引手段により走行可能に設けられた走行台車と、前記走行台車に吊設される搭乗台と、牽引手段を駆動する走行駆動手段を備えた階段昇降装置において、走行駆動手段の切断等による牽引力低下を検知して作動する牽引力検知手段と、該牽引力検知手段に連動して作動可能で、かつ、走行台車の傾斜走行を検知して作動する傾斜検知手段に連動して作動するブレーキ手段を有し、牽引力検知手段と傾斜検知手段の両手段の作動によりブレーキ手段の作動規制を解除し、ブレーキ手段が走行台車を停止することを特徴とする階段昇降装置における走行台車の停止装置。A guide rail continuously provided along a stairway that connects the staircases of the multi-storey building with a stairway; a traveling carriage provided on the guide rail so as to be able to travel by traction means; In a stair climbing and lowering device provided with a boarding board provided and a traveling drive unit for driving the traction unit, a traction force detection unit that operates by detecting a decrease in traction force due to disconnection of the traveling drive unit and the like, and interlocked with the traction force detection unit. Brake means operable in conjunction with the inclination detecting means which operates by detecting the inclination of the traveling vehicle, and operates the braking means by the operation of both the traction force detecting means and the inclination detecting means. A stopping device for a traveling vehicle in a stair climbing and lowering device, wherein the regulation is released and the brake means stops the traveling vehicle. ブレーキ手段は、上端部に、常時は牽引力検知手段に設けた規制面と係合し、作動が規制され、牽引力低下時には、規制面との係合を離脱し、規制が解除される係合面と、規制解除時に、走行車輪とレール間に挿入されるブレーキ板を有し、下端部に、傾斜検知手段に設けた規制溝と係脱可能で、傾斜走行時に、規制溝から離脱して作動規制が解除される係合軸とを有し、バネによりブレーキ板作動方向に常時弾性付勢されるブレーキ作動アームであることを特徴とする請求項1記載の階段昇降装置における走行台車の停止装置。The braking means is always engaged with a regulating surface provided on the traction force detecting means at the upper end portion, and the operation is regulated. When the traction force is reduced, the braking means is disengaged from the regulating surface and the engaging surface from which the regulation is released. And a brake plate inserted between the traveling wheel and the rail when the regulation is released, and can be disengaged from a regulation groove provided in the inclination detecting means at a lower end portion. The stopping device for a traveling vehicle in a stair climbing and lowering device according to claim 1, characterized in that it is a brake operating arm having an engagement shaft for which regulation is released, and which is always elastically urged in a brake plate operating direction by a spring. . 牽引力検知手段は、上端に、牽引ワイヤと連結する連結軸を回動可能に枢設する連結金具が固設され、下端に、ブレーキ手段の係合面と係合する規制面を有する規制アームであることを特徴とする請求項1または2に記載の階段昇降装置における走行台車の停止装置。The tractive force detecting means is a regulating arm having a restricting arm having, at its upper end, a connecting fitting for rotatably pivoting a connecting shaft connected to the pulling wire, and having at its lower end a restricting surface for engaging with an engaging surface of the brake means. The stopping device for a traveling vehicle in the stair climbing device according to claim 1 or 2, wherein 傾斜検知手段は、基部が搭乗台連結金具に連結され、ブレーキ作動アームの係合軸と係合し、ブレーキ作動アームの回動を規制する規制溝を有し、搭乗台と一体的に回動して、傾斜時にブレーキ作動アームの係合軸が規制溝から離脱し、係合軸の規制を解除する規制部材であることを特徴とする請求項1〜3に記載の階段昇降装置おける走行台車の停止装置。The tilt detection means has a regulating groove having a base connected to the board connection fitting, engaging with an engagement shaft of the brake operating arm, and restricting rotation of the brake operating arm, and integrally rotating with the boarding board. The traveling carriage in the stair climbing device according to any one of claims 1 to 3, wherein the engagement shaft of the brake operation arm is disengaged from the restriction groove when tilted, and is a restriction member for releasing the restriction of the engagement shaft. Stop device. ブレーキ作動アームのブレーキ板は、傾斜面を有することを特徴とする請求項2または4に記載の階段昇降装置における走行台車の停止装置。The stopping device for a traveling vehicle in a stair climbing device according to claim 2, wherein the brake plate of the brake operating arm has an inclined surface. 規制溝は、略V字状溝で、その一辺はブレーキ作動アーム方向に向かって上向きの円弧状保持面を延設することを特徴とする請求項2または4に記載の階段昇降装置における走行台車の停止装置。5. The traveling vehicle according to claim 2, wherein the regulating groove is a substantially V-shaped groove, and one side of the regulating groove has an arc-shaped holding surface extending upward toward the brake operating arm. Stop device. 走行台車は、ブレーキ作動アームにより押圧されるプランジャを備えたリミットスイッチを有し、ブレーキ作動アームの作動により、リミットスイッチが動作し、走行駆動手段を停止することを特徴とする請求項1〜4いずれかに記載の階段昇降装置における走行台車の停止装置。The travel truck has a limit switch provided with a plunger pressed by a brake operation arm, and the operation of the brake operation arm activates the limit switch to stop the traveling drive means. A stopping device for a traveling vehicle in the stair climbing device according to any one of the above. 走行台車は、走行台車の牽引動作時における連結軸の上方向への移動を規制する規制板を備えたことを特徴とする請求項2または3記載の階段昇降装置における走行台車の停止装置。The stopping device for a traveling vehicle in a stair climbing and lowering device according to claim 2 or 3, wherein the traveling vehicle has a regulating plate that regulates upward movement of the connecting shaft during a towing operation of the traveling vehicle.
JP2002312680A 2002-10-28 2002-10-28 Traveling vehicle stopping device in stair lifting apparatus Pending JP2004142929A (en)

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* Cited by examiner, † Cited by third party
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CN110546099A (en) * 2017-02-08 2019-12-06 蒂森克虏伯座椅电梯有限公司 Seat elevator

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110546099A (en) * 2017-02-08 2019-12-06 蒂森克虏伯座椅电梯有限公司 Seat elevator
US11198592B2 (en) 2017-02-08 2021-12-14 Tk Home Solutions B.V. Stairlift
CN110546099B (en) * 2017-02-08 2022-02-22 蒂森克虏伯座椅电梯有限公司 Seat elevator

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