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JP6238052B2 - Tow truck - Google Patents

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JP6238052B2
JP6238052B2 JP2013183021A JP2013183021A JP6238052B2 JP 6238052 B2 JP6238052 B2 JP 6238052B2 JP 2013183021 A JP2013183021 A JP 2013183021A JP 2013183021 A JP2013183021 A JP 2013183021A JP 6238052 B2 JP6238052 B2 JP 6238052B2
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vehicle
traction
steering
towing
wheels
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JP2015048033A (en
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佐藤 等
等 佐藤
洋史 金森
洋史 金森
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Shimizu Corp
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Description

本発明は、荷物や部品などの運搬等に用いられ、単数の状態または複数台が連結された状態で牽引される牽引台車に関するものである。   The present invention relates to a towing cart that is used for transporting luggage, parts, and the like and towed in a single state or in a state where a plurality of units are connected.

従来、荷物の集配センターや工場等の生産現場等では、牽引先頭車(牽引動力車)に連結された単数または複数の牽引台車に部品や荷物等を載せて運搬しており、各牽引台車は、牽引先頭車の走行軌跡に沿うように牽引される。一般的な牽引台車の車輪の構成では四隅にキャスターが設けられており、前側左右には車輪の方向が任意の方向に旋回可能な自在キャスターが、後側左右には車輪の方向が前後に固定された固定キャスターが設けられている。   Conventionally, at production sites such as luggage collection / delivery centers and factories, parts and luggage are carried on one or more towing carts connected to the leading towing vehicle (towing powered vehicle). The vehicle is towed along the traveling track of the leading vehicle. In a typical tow truck wheel configuration, casters are provided at the four corners. The front casters are capable of swiveling in any direction on the front left and right, and the rear wheels are fixed on the front and rear wheels. Fixed casters are provided.

一方、構内トレーラーなどで用いられる牽引台車として、機械的リンク機構によって四隅の車輪を操舵するようにした四輪操舵台車が知られている(例えば、非特許文献1を参照)。この四輪操舵台車は、牽引先頭車とほぼ同一軌跡を通過することができるため、工場、空港などで大量の荷物を一度に搬送する際に、複数台を連結した状態で用いられている。しかし、この四輪操舵台車は前方の車両と同じ軌跡を通過するという性能を有するが、同一軌跡を描くのは前進動作の時に限られる。   On the other hand, a four-wheel steering cart that steers wheels at four corners by a mechanical link mechanism is known as a towing cart used in a yard trailer or the like (see, for example, Non-Patent Document 1). Since this four-wheel steering cart can pass almost the same trajectory as the towing head vehicle, it is used in a state where a plurality of vehicles are connected when a large amount of luggage is transported at a time in a factory, an airport, or the like. However, although this four-wheel steering carriage has the performance of passing the same trajectory as the preceding vehicle, the same trajectory is drawn only during forward movement.

他方、床面に敷設した磁気テープ等の誘導路に沿って無人状態で走行することにより、荷物等を自動搬送するようにした自動操舵機構を有する自動搬送台車が知られている(例えば、特許文献1、2を参照)。   On the other hand, there is known an automatic conveyance carriage having an automatic steering mechanism that automatically conveys luggage and the like by traveling unattended along a guide path such as a magnetic tape laid on the floor (for example, a patent) References 1 and 2).

「構内トレーラー情報/大量・重量運搬に最適の4WS式台車など|中部産業」、[online]、[平成25年8月19日検索]、インターネット<URL:http://www.chubu-sangyo.co.jp/toreraor/toreraor.htm>"On-site trailer information / 4WS type trolleys that are ideal for large-volume and heavy-weight transportation, etc. | Chubu Sangyo", [online], [searched on August 19, 2013], Internet <URL: http: //www.chubu-sangyo. co.jp/toreraor/toreraor.htm>

特開平10−39925号公報JP-A-10-39925 実開昭60−78663号公報Japanese Utility Model Publication No. 60-78663

上述したように、上記の従来の四輪操舵台車は、前方の車両と同じ軌跡を通過するという性能を有するが、同一軌跡を描くのは前進動作の時に限られる。したがって、この四輪操舵台車を使用する場合には、前進動作を前提とするために搬送経路をループ状に計画する必要があるので、無駄なスペースを要してしまうという問題があった。   As described above, the above-described conventional four-wheel steering carriage has the performance of passing the same trajectory as that of the preceding vehicle, but the same trajectory is drawn only during forward movement. Therefore, when this four-wheel steering carriage is used, since it is necessary to plan the conveyance path in a loop shape on the assumption of forward movement, there is a problem in that useless space is required.

こうしたことから、前進動作の時には、前方の車両と同じ軌跡を通過する一方で、後退動作の時には、後方の車両と同じ軌跡を通過することができるような牽引台車、言い換えれば、牽引動力車の前進動作、後退動作にかかわらず、所定のルート上を走行することが可能な牽引台車の開発が求められていた。   For this reason, a tow truck that can pass the same trajectory as that of the preceding vehicle during forward movement, and can pass the same trajectory as that of the rear vehicle during reverse movement, in other words, the traction power vehicle. There has been a demand for the development of a towing cart capable of traveling on a predetermined route regardless of forward movement or backward movement.

本発明は、上記に鑑みてなされたものであって、牽引動力車の前進動作、後退動作にかかわらず、所定のルート上を走行することが可能な牽引台車を提供することを目的とする。   The present invention has been made in view of the above, and an object of the present invention is to provide a tow truck that can travel on a predetermined route regardless of forward movement and backward movement of the traction powered vehicle.

上記した課題を解決し、目的を達成するために、本発明に係る牽引台車は、走行用の動力を有する牽引動力車によって牽引される走行用の動力を有しない牽引台車であって、車体の前側と後側にそれぞれ取り付けられた車輪と、前記各車輪の近傍にそれぞれ取り付けられ、床面に設けられた誘導線を検知する誘導線センサーと、前記各車輪をそれぞれ操舵するための駆動手段と、前記誘導線センサーの検知に基づいて前記駆動手段を駆動して前記車輪を操舵制御する自動操舵機構とを備えることを特徴とする。   In order to solve the above-described problems and achieve the object, a towing cart according to the present invention is a towing cart that does not have traveling power to be pulled by a towing power vehicle having traveling power, Wheels attached to the front side and the rear side, guide line sensors attached to the vicinity of the wheels and detecting the guide lines provided on the floor, and driving means for steering the wheels, respectively And an automatic steering mechanism that drives the driving means based on detection of the guide wire sensor to control the steering of the wheels.

また、本発明に係る他の牽引台車は、上述した発明において、前記牽引動力車を前記誘導線に沿って走行するように構成し、前記牽引動力車の前進動作および後退動作のいずれの場合でも、前記牽引動力車と同じ軌跡を通過可能に構成したことを特徴とする。   In addition, in the above-described invention, the other traction cart according to the present invention is configured such that the traction power vehicle travels along the guide line so that the traction power vehicle can be moved forward or backward. The vehicle is configured to be able to pass the same trajectory as the traction power vehicle.

本発明に係る牽引台車によれば、走行用の動力を有する牽引動力車によって牽引される走行用の動力を有しない牽引台車であって、車体の前側と後側にそれぞれ取り付けられた車輪と、前記各車輪の近傍にそれぞれ取り付けられ、床面に設けられた誘導線を検知する誘導線センサーと、前記各車輪をそれぞれ操舵するための駆動手段と、前記誘導線センサーの検知に基づいて前記駆動手段を駆動して前記車輪を操舵制御する自動操舵機構とを備えるので、牽引台車は前進の際も後退の際も、誘導線を検知しながら所定のルートに沿って通過することができるという効果を奏する。このため、牽引動力車の前進動作、後退動作にかかわらず、牽引台車は所定のルート上を走行することができる。特に、従来は後方の車両に追従することが困難であった後退動作においても、牽引台車は後方の車両と同じ軌跡を走行可能である。   According to the towing cart according to the present invention, the towing cart does not have the driving power to be pulled by the towing power vehicle having the driving power, and the wheels are respectively attached to the front side and the rear side of the vehicle body, A guide line sensor that is mounted near each wheel and detects a guide line provided on the floor, a drive means for steering each wheel, and the drive based on the detection of the guide line sensor And an automatic steering mechanism that controls the wheels by driving the means, so that the towing cart can pass along a predetermined route while detecting the guide line during both forward and backward movements. Play. For this reason, the traction cart can travel on a predetermined route regardless of the forward movement and backward movement of the traction power vehicle. In particular, even in a backward movement that has conventionally been difficult to follow the vehicle behind, the tow truck can travel on the same trajectory as the vehicle behind.

また、走行ルートをループ状にする必要がなく、単線ルートの往復走行も可能となるので、最短ルート計画が可能となり、従来のようにスペースを無駄に占有するような事態も生じない。さらに、牽引動力車の前進動作、後退動作にかかわらず、牽引台車は所定のルート上を走行できるので、例えば鉄道の貨物基地のように、使用しない牽引台車を牽引動力車で待機エリアへ誘導することが可能である。   In addition, since it is not necessary to make the travel route in a loop shape, it is possible to reciprocate a single route, so that the shortest route can be planned, and a situation in which space is not occupied as in the conventional case does not occur. Furthermore, regardless of whether the traction power vehicle is moving forward or backward, the traction vehicle can travel on a predetermined route. For example, like a railway freight base, an unused traction vehicle is guided to a waiting area by a traction power vehicle. It is possible.

図1は、本発明に係る牽引台車の実施例を示す概略下面図である。FIG. 1 is a schematic bottom view showing an embodiment of a tow truck according to the present invention. 図2は、図1のA−A線に沿った側断面図である。FIG. 2 is a side sectional view taken along the line AA in FIG. 図3は、図2のB−B線に沿った正面断面図である。FIG. 3 is a front sectional view taken along line BB in FIG. 図4は、本発明に係る牽引台車を複数台連結して、牽引先頭車の動力で前進動作および後退動作を行う場合の例を示した概略平面図である。FIG. 4 is a schematic plan view showing an example in which a plurality of tow trolleys according to the present invention are connected and the forward operation and the reverse operation are performed with the power of the leading traction vehicle.

以下に、本発明に係る牽引台車の実施の形態を図面に基づいて詳細に説明する。なお、この実施例によりこの発明が限定されるものではない。   Embodiments of a tow truck according to the present invention will be described below in detail with reference to the drawings. Note that the present invention is not limited to the embodiments.

図1、図2および図3に示すように、本発明に係る牽引台車10は、走行用の動力を有する牽引動力車によって牽引される走行用の動力を有しない台車である。この牽引台車10は、車体12の左右方向中央の前側12fと後側12rとにそれぞれ取り付けられた左右2個の操舵輪14(車輪)と、前側と後側の各操舵輪14をそれぞれ操舵するための操舵用のモーター16(駆動手段)とを備えている。モーター16は車体12の下面に取り付けた基台18に懸垂状態に固定されている。   As shown in FIGS. 1, 2, and 3, a towing cart 10 according to the present invention is a cart that does not have traveling power that is pulled by a towing power vehicle that has traveling power. The tow truck 10 steers the left and right steering wheels 14 (wheels) respectively attached to the front side 12f and the rear side 12r of the vehicle body 12 in the left-right direction center, and the front and rear steering wheels 14 respectively. And a steering motor 16 (driving means). The motor 16 is fixed to a base 18 attached to the lower surface of the vehicle body 12 in a suspended state.

さらに、この牽引台車10は、前後の各操舵輪14の近傍においてそれぞれ前側と後側に取り付けられ、床面1に設けられた磁気テープ2(誘導線)からの発生磁気を検知する磁気センサー20(誘導線センサー)と、前後の各操舵輪14をそれぞれ操舵制御するための自動操舵機構22とを備えている。磁気センサー20は、各操舵輪14の車輪支持部24から前後に延びる支持部材26の前端と後端とにおいて、下向きに取り付けてある。   Further, the traction cart 10 is attached to the front side and the rear side in the vicinity of the front and rear steering wheels 14, respectively, and a magnetic sensor 20 that detects the generated magnetism from the magnetic tape 2 (guide wire) provided on the floor surface 1. (Guide wire sensor) and an automatic steering mechanism 22 for steering and controlling the front and rear steering wheels 14 respectively. The magnetic sensor 20 is attached downward at the front end and the rear end of a support member 26 extending forward and backward from the wheel support portion 24 of each steered wheel 14.

自動操舵機構22は、磁気センサー20の検知に基づいてモーター16を駆動して操舵輪14を操舵制御するものであり、左右の操舵輪14の回転軸を連結支持する正面視で逆U字状の車輪支持部24の上面中央から鉛直上向きに立ち上がり、車体下面に回動自在に固定された操舵軸28を有している。この操舵軸28の軸線は左右の操舵輪14の間の左右方向中央に位置している。   The automatic steering mechanism 22 controls the steering wheel 14 by driving the motor 16 based on the detection of the magnetic sensor 20, and has an inverted U shape in front view connecting and supporting the rotation shafts of the left and right steering wheels 14. A steering shaft 28 that rises vertically upward from the center of the upper surface of the wheel support portion 24 and is rotatably fixed to the lower surface of the vehicle body. The axis of the steering shaft 28 is located at the center in the left-right direction between the left and right steering wheels 14.

この操舵軸28とモーター16の出力軸は、図示しないプーリー、タイミングベルト、歯車などを介して連結されており、操舵輪14はモーター16による操舵軸28の回動を介して車輪の方向を旋回して自動操舵されるようになっている。このようにして、自動操舵機構22は、牽引台車10の進行方向を操舵制御することができる。なお、車体下面のモーター16近傍には、図示しない自動操舵機構22の制御装置およびモーター16用の電源バッテリーが固定されている。   The steering shaft 28 and the output shaft of the motor 16 are connected via pulleys, timing belts, gears, etc. (not shown), and the steering wheel 14 turns in the direction of the wheel through the rotation of the steering shaft 28 by the motor 16. And is automatically steered. In this way, the automatic steering mechanism 22 can perform steering control of the traveling direction of the traction carriage 10. A control device for the automatic steering mechanism 22 (not shown) and a power supply battery for the motor 16 are fixed in the vicinity of the motor 16 on the lower surface of the vehicle body.

また、この牽引台車10は、車体の下面の四隅、すなわち車体の前側左右および後側左右に設けられたキャスター30をさらに備えている。このキャスター30は車輪の方向が任意の方向に旋回可能な自在キャスターとして構成され、車輪32と車輪支持部34と摺動部36と基台38とからなる。   The traction cart 10 further includes casters 30 provided at the four corners of the lower surface of the vehicle body, that is, the front left and right and the rear left and right of the vehicle body. The caster 30 is configured as a free caster capable of turning the direction of the wheel in an arbitrary direction, and includes a wheel 32, a wheel support part 34, a sliding part 36, and a base 38.

上記の構成の動作および作用について説明する。ただし、以下の説明では、牽引台車10は、操作者の図示しない開始ボタン入力操作によって始動され、その後、停止ボタンが入力操作されるまでは、自動操舵機構22による自動操舵制御運転が行われるように制御装置のソフトウエアがあらかじめ組み立てられているものとする。   The operation and action of the above configuration will be described. However, in the following description, the tow cart 10 is started by an operator's start button input operation (not shown), and thereafter, the automatic steering control operation by the automatic steering mechanism 22 is performed until the stop button is input. It is assumed that the control device software is assembled in advance.

図4に示すように、牽引台車10は、4台が連結具40を介して直列に連結された状態で、本発明と同じく磁気センサー(不図示)を有し、磁気テープ2に沿って走行するように構成された牽引先頭車V(牽引動力車)によって牽引されている。各牽引台車10の前後2台の自動操舵機構22における磁気センサー10のそれぞれが個別に磁気テープ2を検出するとともに、操舵輪14を操舵している。   As shown in FIG. 4, the tow cart 10 has a magnetic sensor (not shown) as in the present invention and is driven along the magnetic tape 2 in a state where four are connected in series via a connector 40. The vehicle is towed by a towing head vehicle V (traction power vehicle) configured as described above. Each of the magnetic sensors 10 in the two automatic steering mechanisms 22 at the front and rear of each traction cart 10 individually detects the magnetic tape 2 and steers the steering wheel 14.

(前進動作の場合)
まず、牽引先頭車Vが前進方向Fに走行する前進動作の場合について説明する。
各牽引台車10の前後2台の自動操舵機構22は、磁気テープ2が発する磁力線の強さや向きを各操舵輪14の前側(進行方向前側)に位置する磁気センサー20が検出し、磁気テープ2の左端(または右端)の位置が磁気センサー20の定位置となるように前後2台の各モーター16を自動制御して前後2組の操舵輪14を操舵しながら走行する。この場合、例えば、左右の操舵輪14の間の中央部分に磁気テープ2が位置するように操舵輪14を操舵するようにしてもよい。磁気センサー20の検出信号は、それぞれ自動操舵機構22の図示しない制御装置に入力されて演算処理される。この制御装置は、磁気センサー20からの検出信号に基づいてモーター16の駆動制御を行う。このようにして、牽引先頭車Vに牽引される各牽引台車10は、磁気テープ2に沿う操舵を自動的に行う。
(For forward movement)
First, the case of the forward movement in which the towing head vehicle V travels in the forward direction F will be described.
The two automatic steering mechanisms 22 at the front and rear of each traction cart 10 detect the strength and direction of the magnetic lines generated by the magnetic tape 2 by the magnetic sensor 20 located on the front side (front side in the traveling direction) of each steering wheel 14, and the magnetic tape 2 The two front and rear motors 16 are automatically controlled so that the left end (or right end) of the motor is at a fixed position of the magnetic sensor 20, and the two front and rear sets of steering wheels 14 are steered. In this case, for example, the steering wheel 14 may be steered so that the magnetic tape 2 is positioned at the center between the left and right steering wheels 14. The detection signals of the magnetic sensor 20 are respectively input to a control device (not shown) of the automatic steering mechanism 22 and processed. The control device performs drive control of the motor 16 based on a detection signal from the magnetic sensor 20. In this way, each towing cart 10 towed by the leading towing vehicle V automatically performs steering along the magnetic tape 2.

自動操舵機構22の図示しない制御装置によって前後2台の自動操舵機構22を同期制御すると、前後2組の操舵輪14がそれぞれ磁気テープ2に沿うように自動操舵で走行するため、牽引台車10の四隅の旋回自在なキャスター30が強制操舵される。このため、牽引台車10は直線走行はもちろん、コーナー部等の曲線走行においても磁気テープ2に沿って走行可能である。   When the two front and rear automatic steering mechanisms 22 are synchronously controlled by a control device (not shown) of the automatic steering mechanism 22, the two front and rear sets of steering wheels 14 travel by automatic steering along the magnetic tape 2. The four turnable casters 30 are forcibly steered. For this reason, the traction cart 10 can travel along the magnetic tape 2 not only in a straight line but also in a curved line such as a corner portion.

(後退動作の場合)
次に、牽引先頭車Vが後退方向Rに走行する後退動作の場合について説明する。
各牽引台車10の前後2台の自動操舵機構22は、磁気テープ2が発する磁力線の強さや向きを各操舵輪14の後側(進行方向前側)に位置する磁気センサー20が検出する。上記の前進動作の場合と同様に、磁気テープ2の左端(または右端)の位置が磁気センサー20の定位置となるように前後2台の各モーター16を自動制御して前後2組の操舵輪14を操舵しながら走行する。なお、磁気センサー20、自動操舵機構22の図示しない制御装置、モーター16の動作および作用については、上記の前進動作の場合と同様である。
(For backward movement)
Next, the case of the reverse operation in which the towing head vehicle V travels in the reverse direction R will be described.
The two automatic steering mechanisms 22 at the front and rear of each traction carriage 10 detect the strength and direction of the magnetic lines generated by the magnetic tape 2 by the magnetic sensor 20 located on the rear side (front side in the traveling direction) of each steering wheel 14. As in the case of the forward movement described above, the two front and rear motors 16 are automatically controlled so that the position of the left end (or right end) of the magnetic tape 2 becomes a fixed position of the magnetic sensor 20, and two sets of front and rear steering wheels are controlled. Drive 14 while steering. Note that the operations and actions of the magnetic sensor 20, the control device (not shown) of the automatic steering mechanism 22, and the motor 16 are the same as in the case of the forward movement described above.

このように、本発明の牽引台車10は、牽引先頭車Vの前進動作および後退動作のいずれの場合でも、磁気テープ2を検知しながら牽引先頭車Vと同じ軌跡を通過することができる。特に、従来は後方の車両に追従することが困難であった牽引先頭車Vの後退動作においても、本発明の牽引台車10は後方の車両と同じ軌跡を走行可能である。   As described above, the towing cart 10 of the present invention can pass the same trajectory as the towing head vehicle V while detecting the magnetic tape 2 in both the forward operation and the backward operation of the towing head vehicle V. In particular, even in the backward movement of the leading traction vehicle V, which has conventionally been difficult to follow the rear vehicle, the traction cart 10 of the present invention can travel on the same locus as the rear vehicle.

また、本発明によれば、走行ルートをループ状にする必要がなく、単線ルートの往復走行も可能となるので、最短ルート計画が可能となり、従来のようにスペースを無駄に占有するような事態も生じない。さらに、牽引先頭車Vの前進動作、後退動作にかかわらず、牽引台車10は所定のルート上を走行できるので、例えば鉄道の貨物基地のように、使用しない牽引台車10を牽引先頭車Vで待機エリアへ誘導することが可能である。   In addition, according to the present invention, it is not necessary to make the travel route in a loop shape, and it is possible to reciprocate a single route, so that the shortest route can be planned, and a situation in which space is occupied wastefully as in the past. Does not occur. Furthermore, regardless of the forward movement or backward movement of the towing head vehicle V, the tow truck 10 can travel on a predetermined route, so that the unused towing truck 10 is on standby at the towing head car V, such as a railway freight base. It is possible to guide to the area.

以上説明したように、本発明に係る牽引台車によれば、走行用の動力を有する牽引動力車によって牽引される走行用の動力を有しない牽引台車であって、車体の前側と後側にそれぞれ取り付けられた車輪と、前記各車輪の近傍にそれぞれ取り付けられ、床面に設けられた誘導線を検知する誘導線センサーと、前記各車輪をそれぞれ操舵するための駆動手段と、前記誘導線センサーの検知に基づいて前記駆動手段を駆動して前記車輪を操舵制御する自動操舵機構とを備えるので、牽引台車は前進の際も後退の際も、誘導線を検知しながら所定のルートに沿って通過することができる。このため、牽引動力車の前進動作、後退動作にかかわらず、牽引台車は所定のルート上を走行することができる。特に、従来は後方の車両に追従することが困難であった後退動作においても、牽引台車は後方の車両と同じ軌跡を走行可能である。   As described above, according to the towing cart according to the present invention, the towing cart has no running power towed by the towing powered vehicle having the running power, and is provided on the front side and the rear side of the vehicle body, respectively. An attached wheel, a guide line sensor that is attached to each wheel in the vicinity of the wheel and detects a guide line provided on the floor, driving means for steering each wheel, and a guide line sensor. An automatic steering mechanism that drives the drive means based on the detection to control the wheels is provided, so that the traction carriage passes along a predetermined route while detecting the guide line during both forward and backward movements. can do. For this reason, the traction cart can travel on a predetermined route regardless of the forward movement and backward movement of the traction power vehicle. In particular, even in a backward movement that has conventionally been difficult to follow the vehicle behind, the tow truck can travel on the same trajectory as the vehicle behind.

また、走行ルートをループ状にする必要がなく、単線ルートの往復走行も可能となるので、最短ルート計画が可能となり、従来のようにスペースを無駄に占有するような事態も生じない。さらに、牽引動力車の前進動作、後退動作にかかわらず、牽引台車は所定のルート上を走行できるので、例えば鉄道の貨物基地のように、使用しない牽引台車を牽引動力車で待機エリアへ誘導することが可能である。   In addition, since it is not necessary to make the travel route in a loop shape, it is possible to reciprocate a single route, so that the shortest route can be planned, and a situation in which space is not occupied as in the conventional case does not occur. Furthermore, regardless of whether the traction power vehicle is moving forward or backward, the traction vehicle can travel on a predetermined route. For example, like a railway freight base, an unused traction vehicle is guided to a waiting area by a traction power vehicle. It is possible.

以上のように、本発明に係る牽引台車は、荷物や部品などの運搬等に用いられ、単数の状態または複数台が連結された状態で牽引される牽引台車に有用であり、特に、牽引先頭車の前進動作、後退動作にかかわらず、所定のルート上を走行するのに適している。   As described above, the towing cart according to the present invention is useful for a towing cart that is used for transporting luggage, parts, etc., and is towed in a single state or in a state in which a plurality of units are connected. It is suitable for traveling on a predetermined route regardless of whether the vehicle is moving forward or backward.

1 床面
2 磁気テープ(誘導線)
10 牽引台車
12 車体
12f 前側
12r 後側
14 操舵輪(車輪)
16 モーター(駆動手段)
18 基台
20 磁気センサー(誘導線センサー)
22 自動操舵機構
24 車輪支持部
26 支持部材
28 操舵軸
30 キャスター
32 車輪
34 車輪支持部
36 摺動部
38 基台
40 連結具
V 牽引先頭車(牽引動力車)
F 前進方向
R 後退方向
1 Floor 2 Magnetic tape (guide wire)
10 Tow truck 12 Car body 12f Front side 12r Rear side 14 Steering wheel (wheel)
16 Motor (drive means)
18 base 20 magnetic sensor (guide wire sensor)
DESCRIPTION OF SYMBOLS 22 Automatic steering mechanism 24 Wheel support part 26 Support member 28 Steering shaft 30 Caster 32 Wheel 34 Wheel support part 36 Sliding part 38 Base 40 Connecting tool V Traction top vehicle (traction power vehicle)
F Forward direction R Reverse direction

Claims (2)

走行用の動力を有する牽引動力車によって牽引される走行用の動力を有しない牽引台車であって、
車体の左右方向中央の前側と後側にそれぞれ取り付けられた操舵輪と、前記車体の前側左右と後側左右にそれぞれ取り付けられ、車輪の方向が任意の方向に旋回可能な自在キャスターと、前記各操舵輪の近傍にそれぞれ取り付けられ、床面に設けられた誘導線を検知する誘導線センサーと、前記各操舵輪をそれぞれ操舵するための駆動手段と、前記誘導線センサーの検知に基づいて前記駆動手段を駆動して前記各操舵輪を操舵制御する自動操舵機構とを備えることを特徴とする牽引台車。
A towing cart that does not have driving power towed by a towing power vehicle having driving power,
Steering wheels respectively attached to the front side and the rear side in the center in the left-right direction of the vehicle body, the free casters attached to the front left and right sides and the rear left and right sides of the vehicle body and capable of turning the direction of the wheels in any direction, A guide line sensor that is attached to the vicinity of the steered wheels and detects a guide line provided on the floor, a drive means for steering each steered wheel, and the drive based on the detection of the guide line sensor And an automatic steering mechanism that controls the steering wheels by driving means.
前記牽引動力車を前記誘導線に沿って走行するように構成し、
前記牽引動力車の前進動作および後退動作のいずれの場合でも、前記牽引動力車と同じ軌跡を通過可能に構成したことを特徴とする請求項1に記載の牽引台車。
The traction power vehicle is configured to travel along the guide line,
2. The traction cart according to claim 1, wherein the traction trolley is configured to be able to pass through the same locus as the traction motive vehicle in both cases of the forward operation and the reverse operation of the traction power vehicle.
JP2013183021A 2013-09-04 2013-09-04 Tow truck Expired - Fee Related JP6238052B2 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06107168A (en) * 1992-09-28 1994-04-19 Toyota Motor Corp Conveyor system by means of guided vehicle train
JP3437896B2 (en) * 1996-08-02 2003-08-18 鹿島建設株式会社 Round-trip vehicle

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