JP7318859B2 - Elevating mechanism and three-dimensional automated warehouse equipped with the elevating mechanism - Google Patents

Elevating mechanism and three-dimensional automated warehouse equipped with the elevating mechanism Download PDF

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JP7318859B2
JP7318859B2 JP2017052305A JP2017052305A JP7318859B2 JP 7318859 B2 JP7318859 B2 JP 7318859B2 JP 2017052305 A JP2017052305 A JP 2017052305A JP 2017052305 A JP2017052305 A JP 2017052305A JP 7318859 B2 JP7318859 B2 JP 7318859B2
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由雄 井上
啓樹 篠原
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Toyo Kanetsu KK
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本発明は、立体自動倉庫の昇降機構及びその昇降機構を備えた立体自動倉庫に関する。特に、本発明は、水平方向(X軸方向)及び垂直方向(Y軸方向)に碁盤目状に配列してなる物品及び物品収納容器(以下、「物品等」という)の格納棚が所定の数だけ所定の空間を隔てて配列され、X軸方向の物品等の移載がY軸方向の各段に設けられた走行台車で行われ、Y軸方向の物品等の移載が格納棚の所定の空間に設けられたリフトで行われる立体自動倉庫の昇降機構及びその昇降機構を備えた立体自動倉庫に関する。 BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a lift mechanism for a multi-level automated warehouse and a multi-level automated warehouse equipped with the lift mechanism. In particular, the present invention provides storage shelves for articles and article storage containers (hereinafter referred to as "articles, etc.") arranged in a grid pattern in the horizontal direction (X-axis direction) and vertical direction (Y-axis direction). The number of storage racks are arranged at predetermined intervals, and the transfer of goods in the X-axis direction is performed by traveling carriages provided at each stage in the Y-axis direction, and the transfer of goods in the Y-axis direction is performed on storage racks. The present invention relates to a lift mechanism for a multi-level automated warehouse performed by a lift provided in a predetermined space, and to a multi-level automated warehouse equipped with the lift mechanism.

物流における近代化・合理化は、生産・販売面のそれに比較すると立ち遅れていたが、近年、必要な時に必要な物品を手にしたいという要望が、産業界だけでなく一般消費者でも強くなり、急速な物流合理化、すなわち、物流革命が推進されている。これには、パレチゼーション、コンテナリゼーションによるユニット・ロード・システムの進展、倉庫の自動化の促進等が不可欠である。 Modernization and rationalization in logistics have lagged behind those in production and sales, but in recent years, the desire to get the goods they need when they need them has become stronger not only in the industrial world but also among general consumers, and the demand is rapidly increasing. Logistics rationalization, that is, a logistics revolution is being promoted. To this end, the development of unit load systems through palletization and containerization, and the promotion of warehouse automation are indispensable.

この中でも、物流効率の向上は言うまでもなく、空間の利用効率、人員の削減、作業環境の改善等という観点からも、コンピュータを用いて集約された膨大な入出荷及び在庫情報等に基づいて、様々な制御システムが、コンベヤ、昇降機、周辺装置等の一連の動作を稼働させる立体自動倉庫システムは特に注目されており、日夜進歩している状況にある。 Among these, from the perspective of not only improving the efficiency of logistics, but also the efficiency of space utilization, the reduction of personnel, and the improvement of the work environment, etc. A multi-level automated warehouse system, in which a simple control system operates a series of operations of conveyors, elevators, peripheral devices, etc., has received particular attention, and is in a situation where it is progressing day and night.

このような立体自動倉庫は、一般的に、保管部と入出庫部から構成され、これらの間に各種移載手段が設けられている。入出庫部は、コンベヤ等が主体であり、保管部は、格納棚が物品等の出し入れ可能な格納面で所定の空間を隔てて対峙されており、その空間に物品等の移載手段が配設された格納設備が構成単位となっているか、物品等の出し入れ可能な格納面の反対面で隣接する1組の格納棚が所定の区間を隔てて対峙されており、その空間に物品等の移載手段が配設された格納設備が構成単位となっているものが一般的である。 Such a three-dimensional automated warehouse generally consists of a storage section and a loading/unloading section, and various transfer means are provided between them. The loading/unloading section is mainly composed of a conveyor, etc., and the storage section has storage shelves facing each other with a predetermined space on a storage surface from which articles can be put in and taken out. A set of storage racks that are adjacent to each other on the opposite side of the storage surface from which items can be put in and taken out are opposed to each other with a predetermined interval, and the space in which items, etc. are stored. A storage facility in which a transfer means is arranged is generally used as a structural unit.

そして、上記物品等の移載手段の違いによって様々な立体自動倉庫が開発されている。例えば、スタッカクレーン等を物品等の移載手段とし、格納棚のX軸方向及びY軸方向に物品等の自在な往復移動を可能にした立体自動倉庫(例えば、特許文献1や2)や、Y軸方向の各段に設けられた走行台車と格納棚間の所定の空間に設けられたリフトとを物品等の移載手段とし、走行車が格納棚のX軸方向への物品等の自在な往復移動を、リフトがY軸方向の物品等の自在な往復移動をそれぞれ担う立体自動倉庫(図1、例えば、特許文献3、4、及び、非特許文献1)等がある。 Various automatic warehouses have been developed depending on the means for transferring the above-mentioned articles. For example, a three-dimensional automated warehouse (for example, Patent Documents 1 and 2) in which a stacker crane or the like is used as a means for transferring goods, etc., and goods such as can be freely reciprocated in the X-axis direction and the Y-axis direction of the storage shelf, A traveling truck provided at each stage in the Y-axis direction and a lift provided in a predetermined space between the storage shelves are used as means for transferring articles, etc., and the traveling vehicle can freely move the articles, etc. in the X-axis direction of the storage shelves. There is a three-dimensional automated warehouse (Fig. 1, for example, Patent Documents 3 and 4, and Non-Patent Document 1) in which a lift is responsible for free reciprocating movement of articles in the Y-axis direction.

特に、後者の立体自動倉庫は、物流効率、空間の利用効率、人員の削減、作業環境の改善等に優れているが、この立体自動倉庫にも課題があり、改良されつつある。例えば、設備の費用及び設置の空間を抑制したまま、収納量が大きくするため、リフトを対称の中心として格納棚を直列に配備したタンデム方式の立体倉庫(特許文献5)や、並列に配備される格納棚間の横断方向(Z軸方向、X軸方向と垂直方向)への物品等の移載を可能とした横断搬送方式の立体自動倉庫(特許文献6)等が提案されている。 In particular, the latter automated warehouse is excellent in terms of physical distribution efficiency, space utilization efficiency, reduction of personnel, improvement of working environment, etc. However, this automated warehouse also has problems and is being improved. For example, in order to increase the amount of storage while suppressing equipment costs and installation space, a tandem type multi-story warehouse (Patent Document 5) in which storage shelves are arranged in series with the lift as the center of symmetry, A three-dimensional automated warehouse (Patent Document 6), etc., has been proposed that employs a cross-transport method that enables the transfer of articles in the transverse direction (perpendicular to the Z-axis direction and the X-axis direction) between storage racks.

しかし、図1のような立体自動倉庫においては、その平面図(図2)から明らかなように、対峙する格納棚(L’とLn+1、Ln+1’とLn+2)で作られた走行台車4の走行空間6の一端に、マスト8-1、昇降路8-2、キャリッジ8-3、運搬台8-4から構成されるリフト8が配置されており、キャリッジ8-3の摺動機構によって昇降路8-2を上下し、キャリッジ8-3に載置された運搬台8-4がY軸方向に物品等の自在な往復移動を可能としているが、リフト8の設置場所が制約されている上、立体自動倉庫の一部に固設され空間を占拠して空間の利用効率を下げているという問題がある。更に、図1の立体自動倉庫の収納量を向上させたタンデム方式の立体自動倉庫では、その平面図(図3)及び図3の切断線Aで紙面に垂直に切断した断面図(図4)から明らかなように、リフト8が、走行台車4の走行空間6の中央に配置されるため、走行台車4のX軸方向の往復移動を妨げており、物流効率を大きく低下させる原因となっている。このように、リフト8に起因する種々の問題があるにもかかわらず、これらを解決する方法は未だ開示されていない。 However, in the three-dimensional automated warehouse as shown in FIG. 1, as is clear from the plan view (FIG. 2), the running shelves made of facing storage racks (L n ' and L n+1 , L n+1 ' and L n+2 ) A lift 8 composed of a mast 8-1, a hoistway 8-2, a carriage 8-3, and a carriage 8-4 is arranged at one end of the travel space 6 of the carriage 4, and the carriage 8-3 slides. The hoistway 8-2 is moved up and down by a mechanism, and the carriage 8-4 mounted on the carriage 8-3 enables free reciprocation of articles, etc. in the Y-axis direction, but the installation location of the lift 8 is restricted. In addition, there is a problem that it is fixed in a part of the multi-level automatic warehouse and occupies the space, lowering the space utilization efficiency. Furthermore, in the tandem-type automatic warehouse with an improved storage capacity of the automatic warehouse shown in FIG. , the lift 8 is arranged in the center of the traveling space 6 of the traveling carriage 4, which hinders the reciprocating movement of the traveling carriage 4 in the X-axis direction, which greatly reduces the efficiency of physical distribution. there is Thus, despite the various problems caused by the lift 8, a method for solving these problems has not yet been disclosed.

特開平8-108904号公報JP-A-8-108904 特開2012-236683号公報JP 2012-236683 A 特開昭63-165205号公報JP-A-63-165205 特開2015-168573号公報JP 2015-168573 A 特開2011-178549号公報JP 2011-178549 A 特表2015-524374号公報Japanese Patent Publication No. 2015-524374

株式会社イトーキホームページ、SAS PDF、http://www.itoki.jp/catalog/pdf/senmon/sys_streamer.pdfItoki Co., Ltd. homepage, SAS PDF, http://www. Itoki. jp/catalog/pdf/senmon/sys_streamer. pdf

本発明は、碁盤目状に配列してなる物品等の格納棚が所定の数だけ所定の空間を隔てて並列に配列され、Y軸方向の各段に設けられた走行台車と格納棚間の空間に配備されたリフトとを物品等の移載手段とし、走行台車が格納棚のX軸方向への物品等の自在な往復移動を、リフトがY軸方向の物品等の自在な往復移動をそれぞれ担う立体自動倉庫において、格納棚間の空間に配備されたリフトの弊害を解決し、設備費用を抑制し、空間の利用効率及び物流効率の高い立体自動倉庫を実現することが可能な昇降機構及びその昇降機構を備えた昇降機構一体型立体自動倉庫を提供することを目的としている。 According to the present invention, a predetermined number of storage shelves for articles, etc., arranged in a grid pattern are arranged in parallel with a predetermined space therebetween, and a traveling carriage provided at each stage in the Y-axis direction and a storage shelf are provided. A lift arranged in space is used as a transfer means for goods, etc., and a traveling cart freely reciprocates goods, etc. in the X-axis direction of the storage shelf, and a lift freely reciprocates goods, etc. in the Y-axis direction. Elevating mechanism that solves the adverse effects of lifts installed in the space between storage shelves, reduces equipment costs, and realizes a multi-level automated warehouse with high space utilization efficiency and distribution efficiency And the object is to provide a lifting mechanism-integrated three-dimensional automatic warehouse equipped with the lifting mechanism.

本発明者らは、碁盤目状に配列してなる物品等の格納棚が所定の数だけ所定の空間を隔てて並列に配列され、Y軸方向の各段に設けられた走行台車と格納棚間の所定の空間に設けられたリフトとを物品等の移載手段とし、走行車が格納棚のX軸方向への物品等の自在な往復移動を、リフトがY軸方向の物品等の自在な往復移動をそれぞれ担う立体自動倉庫において、リフトに代わり、格納棚に緊結される上下方向ガイド部と、該上下方向ガイド部に付設される駆動手段と、該駆動手段を介して接続される運搬台とを具備する昇降機構を立体自動倉庫と一体化させることによって、従来のリフトの費用を削減でき、その小型化、薄型化、並びに、低層化及び高層化が可能となり、立体自動倉庫の空間の利用効率が高められる上、走行台車のX軸方向の往復移動の自由度が高まり、設置場所が拡大されることを見出し、本発明の完成に至った。 The present inventors have found that a predetermined number of storage shelves for articles, etc., arranged in a grid are arranged in parallel with a predetermined space therebetween, and a traveling carriage and a storage shelf are provided at each stage in the Y-axis direction. A lift provided in a predetermined space between the racks is used as means for transferring articles, etc. The traveling vehicle freely reciprocates articles, etc. in the X-axis direction of the storage shelf, and the lift freely transfers articles, etc. in the Y-axis direction. In place of the lift, a vertical guide part tightly connected to the storage shelf, a driving means attached to the vertical guide part, and a transport connected via the driving means By integrating a lifting mechanism equipped with a platform with a multi-level automated warehouse, the cost of conventional lifts can be reduced, making it possible to make it smaller, thinner, and lower and higher, and the space of the multi-level automated warehouse. In addition to the improvement in the utilization efficiency of the traveling carriage, the degree of freedom of the reciprocating movement of the traveling carriage in the X-axis direction is increased, and the installation location is expanded, leading to the completion of the present invention.

すなわち、本発明は、格納棚に緊結される上下方向ガイド部と、該上下方向ガイド部に付設される駆動手段と、該駆動手段を介して接続される運搬台とを具備する昇降機構を提供するものである。 That is, the present invention provides an elevating mechanism comprising a vertical guide portion tightly connected to a storage shelf, driving means attached to the vertical guide portion, and a carriage connected via the driving means. It is something to do.

更に、本発明は、格納棚と、該格納棚に緊結される上下方向ガイド部と、該上下方向ガイド部に付設される駆動手段と、該駆動手段を介して接続される運搬台とを具備することを特徴とする昇降機構一体型立体自動倉庫を提供するものである。 Further, the present invention comprises a storage shelf, a vertical guide part tightly connected to the storage shelf, a drive means attached to the vertical guide part, and a carriage connected via the drive means. To provide a three-dimensional automatic warehouse integrated with a lifting mechanism characterized by:

より具体的には、水平方向及び垂直方向に碁盤目状に配列してなる物品等の格納棚と、該格納棚の物品等を出し入れ可能な格納面の水平方向に走行し、該物品等を自在に出し入れ可能な移載手段と、該格納棚又は該移動手段の走行路に緊結される上下方向ガイド部と、該上下方向ガイド部に付設される駆動手段と、該駆動手段を介して接続される運搬台とを具備する昇降機構一体型立体自動倉庫を提供するものである。 More specifically, it travels in the horizontal direction of a storage shelf for articles, etc., arranged in a grid pattern in the horizontal and vertical directions, and a storage surface on which the articles, etc. can be taken in and out, and stores the articles, etc. Transfer means that can be freely put in and taken out, a vertical guide part that is tightly connected to the storage shelf or the travel path of the moving means, a driving means attached to the vertical guide part, and connected via the driving means A lifting mechanism-integrated three-dimensional automatic warehouse equipped with a carriage that is equipped with.

本発明の昇降機構は、従来のマストにあたる上下方向ガイド部が格納棚に緊結されて格納棚の構造体によって補強されるので、従来のリフトのような重厚なマストが不要で、小型化及び薄型化できる上、格納棚の段数に応じた高さの昇降機構に設計すればよく、低層化及び高層化が可能となることに特徴がある。この結果、従来のリフトが有する設置場所の制約が解除され、空間の利用効率が向上される上、リフトにかかる費用が削減されるようになる。しかも、本発明の昇降機構は、立体自動倉庫のあらゆる位置に取り付けられるため、昇降機構一体型立体自動倉庫は、総合的な物流効率が高い立体自動倉庫となる。 In the lifting mechanism of the present invention, the up-and-down guide part corresponding to the conventional mast is tightly connected to the storage shelf and is reinforced by the structure of the storage shelf, so the heavy mast of the conventional lift is unnecessary, and the size and thickness can be reduced. In addition, it is possible to design a lifting mechanism having a height corresponding to the number of stages of storage racks, and it is characterized in that it is possible to lower the floor and raise the floor. As a result, restrictions on the installation location of conventional lifts are removed, space efficiency is improved, and the cost of lifts is reduced. Moreover, since the lifting mechanism of the present invention can be installed at any position in the multi-level automated warehouse, the lifting-mechanism-integrated multi-level automated warehouse is a multi-level automated warehouse with high overall distribution efficiency.

このような昇降機構に特徴的な上下方向ガイド部は、少なくとも、運搬台を昇降可能な駆動手段を付設する強度や大きさを必要とするが、従来のリフトを構成するマストの材質及び幅が同じである場合、その厚さを1/2以下とすることができる。そして、昇降機構をより小型化、軽量化、低価格化するためには、より幅の狭い上下方向ガイド部を有する昇降機構を2機以上用いて、運搬台をY軸方向に移動させる機構とすることも可能である。ただし、上下方向ガイド部は、格納棚の構造体、すなわち、格納棚を構成する梁(ビーム、ワイドビーム、サブビーム、デッキチャンネル等)、支柱、棚板等、更に、格納棚の格納面の水平方向に走行する移載手段が設けられる場合には、Y軸方向の各段に設けられる走行レールでも補強することができるので、上下方向ガイド部の設計は、格納棚の構造体の設計並びに走行レールの設計と共に決定される変更事項であって、本発明の技術思想の本質を成すものではない。 The vertical guide section, which is characteristic of such a lifting mechanism, requires at least the strength and size necessary to attach a driving means capable of lifting and lowering the carriage. If they are the same, their thickness can be halved or less. In order to further reduce the size, weight, and cost of the lifting mechanism, two or more lifting mechanisms having narrower vertical guides are used to move the carriage in the Y-axis direction. It is also possible to However, the vertical direction guide part does not affect the structure of the storage shelf, that is, the beams (beams, wide beams, sub-beams, deck channels, etc.) that make up the storage shelf, struts, shelf boards, etc., and the horizontal direction of the storage surface of the storage shelf. If a transfer means is provided that travels in both directions, the travel rails provided at each stage in the Y-axis direction can also be reinforced. It is a change determined together with the design of the rail and does not form the essence of the technical idea of the present invention.

一方、本発明の昇降機構に特徴的な上下方向ガイド部を、上記格納棚を構成する梁、支柱、棚板、及び、移載手段に必要とされるレール等に接合する方法は、リベット接合、ネジ接合、圧入接合等の機械的接合、並びに、融接、圧接、ろう接等の溶接を用いる冶金的接合等一般的な接合方法を利用することができる。しかし、昇降機構の設置場所の自由度を考慮した場合、ネジ接合であることが好ましい。 On the other hand, the method of joining the vertical guide part, which is characteristic of the lifting mechanism of the present invention, to the beams, struts, shelf boards, and rails required for the transfer means, which constitute the storage shelf, is riveting. General joining methods such as mechanical joining such as screw joining, press-fit joining, and metallurgical joining using welding such as fusion welding, pressure welding, and brazing can be used. However, considering the degree of freedom in the installation location of the lifting mechanism, screw connection is preferred.

また、昇降機構の上下方向ガイド部を、上記格納棚を構成する梁、支柱、棚板、移載手段に必要とされるレール等に組み込む方法は、強度や空間利用効率等の観点から、嵌め込み構法であることが好ましい。 In addition, the method of incorporating the vertical direction guide portion of the lifting mechanism into the beams, supports, shelf boards, rails required for the transfer means, etc. that constitute the above-mentioned storage shelf is considered to be a fitting method from the viewpoint of strength, space utilization efficiency, etc. Construction method is preferable.

更に、格納棚の段数に応じた昇降機構の設計という観点からは、格納棚一段分の高さの上下方向ガイド部をY軸方向に継ぎ足す構成とすることが好ましい。この場合、上下方向ガイド部に嵌め込み継手工法を用いることが強度上好ましい。 Furthermore, from the viewpoint of designing an elevating mechanism according to the number of stages of storage shelves, it is preferable to adopt a configuration in which a vertical guide portion having a height corresponding to one stage of storage shelves is added in the Y-axis direction. In this case, it is preferable in terms of strength to use a fitting joint construction method for the vertical direction guide portion.

そして、このような上下方向ガイド部に付設される駆動手段と該駆動手段を介して接続される運搬台とは、従来のリフトと同様に、駆動手段が昇降路と摺動機構を備えたキャリッジとからなり、運搬台がキャリッジに載置されたものが好ましく用いられる。しかし、駆動手段は、これに限定されるものではなく、様々なリフトに用いられるロープ式、油圧式、鎖駆動式等の駆動手段であってもよい。また、運搬台も、一般的なコンベヤであればよいが、立体自動倉庫の構成から、格納棚間のZ軸方向への物品等の移動を可能にするために、方向変換機構を有するコンベヤであることが望まれる場合もある。 The driving means attached to the vertical guide portion and the carriage connected via the driving means are carriages in which the driving means are provided with a hoistway and a sliding mechanism, as in conventional lifts. and a carriage mounted on a carriage is preferably used. However, the drive means is not limited to this, and may be a rope type, hydraulic type, chain drive type, etc. drive means used for various lifts. Also, the carrier may be a general conveyor, but given the configuration of the automated high-rise warehouse, a conveyor with a direction changing mechanism is used to enable movement of articles, etc. in the Z-axis direction between storage racks. Sometimes one is desired.

本発明の昇降機構は、あらゆる格納棚及び立体自動倉庫に一体化した昇降機一体型立体自動倉庫を実現することができる。特に、碁盤目状に配列してなる物品等の格納棚が所定の数だけ所定の空間を隔てて並列に配列され、Y軸方向の各段に設けられた走行台車と格納棚間の空間に配備されたリフトとを物品等の移載手段とし、走行台車が格納棚のX軸方向への物品等の自在な往復移動を、リフトがY軸方向の物品等の自在な往復移動をそれぞれ担う立体自動倉庫に一体化すること、すなわち、リフトに置き換えることが可能であって、本発明の昇降機構がこのような立体自動倉庫に一体化されると、格納棚のX軸方向への物品等の往復移動を担う走行台車の走行空間からリフトが除去されるため、走行台車の往復運動の自由度が飛躍的に高まり、物流効率が大きく改善された昇降機構一体型立体自動倉庫を実現できる。 The elevating mechanism of the present invention can realize an elevator-integrated multi-level automated warehouse that is integrated with all storage racks and multi-level automated warehouses. In particular, a predetermined number of storage shelves for goods arranged in a grid pattern are arranged in parallel with a predetermined space between them, and the space between the traveling carriage and the storage shelf provided at each stage in the Y-axis direction. The deployed lifts are used as means for transferring goods, etc., and the traveling carriage is responsible for free reciprocating movement of goods, etc. in the X-axis direction of the storage shelf, and the lift is responsible for free reciprocating movement of goods, etc. in the Y-axis direction. It can be integrated into a multi-level automated warehouse, that is, it can be replaced with a lift. Since the lift is removed from the traveling space of the traveling carriage responsible for the reciprocating movement of the carriage, the degree of freedom of the reciprocating motion of the traveling carriage is dramatically increased, and a multi-story automated warehouse with an integrated lifting mechanism can be realized with greatly improved logistics efficiency.

本発明により、従来のリフトの費用を削減でき、その小型化、薄型化、並びに、低層化及び高層化が可能となり、立体自動倉庫の空間の利用効率が高められる上、X軸方向の往復移動の自由度が高まり、設置場所が拡大されるため、総合的な物流効率が極めて優れた昇降機構及び昇降機構一体型立体自動倉庫が提供される。 According to the present invention, the cost of conventional lifts can be reduced, and it is possible to make them smaller, thinner, and lower and higher. Since the degree of freedom is increased and the installation location is expanded, a lifting mechanism and a lifting mechanism-integrated three-dimensional automatic warehouse with extremely excellent overall distribution efficiency are provided.

Y軸方向の各段に設けられた走行台車と格納棚間の所定の空間に設けられた昇降移載機とを物品等の移載手段とし、走行車が格納棚のX軸方向への物品等の自在な往復移動を、昇降移載機がY軸方向の物品等の自在な往復移動を担う従来の立体自動倉庫の模式図である。A traveling cart provided at each stage in the Y-axis direction and a lift transfer device provided in a predetermined space between the storage shelves are used as means for transferring articles, and the traveling vehicle moves the articles in the X-axis direction of the storage shelves. 1 is a schematic diagram of a conventional three-dimensional automated warehouse in which a lift transfer machine is responsible for free reciprocating movement of articles, etc. in the Y-axis direction. 図1の立体自動倉庫を上から見た平面の模式図である。FIG. 2 is a schematic plan view of the three-dimensional automated warehouse of FIG. 1 viewed from above; 図1の立体自動倉庫の収納量を改良したタンデム方式の立体自動倉庫を上から見た平面の模式図である。FIG. 2 is a schematic top plan view of a tandem-type automatic multi-level warehouse in which the storage capacity of the multi-level automatic warehouse shown in FIG. 1 is improved. 図3の切断線Aにおいて、紙面と垂直に切断した断面の模式図である。FIG. 4 is a schematic diagram of a cross section cut perpendicular to the plane of the paper on the cutting line A of FIG. 3 ; 本発明の一実施形態に係る、上下方向ガイド部が格納棚を構成する梁に組み込まれた昇降機構を備えた立体自動倉庫を上から見た平面の模式図である。BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a schematic plan view of a three-dimensional automated warehouse as viewed from above, according to an embodiment of the present invention, provided with a lift mechanism in which a vertical guide part is incorporated in a beam that constitutes a storage shelf; 図5の切断線Bにおいて、紙面と垂直に切断した断面の模式図である。FIG. 6 is a schematic diagram of a cross section cut perpendicular to the plane of the paper on the cutting line B of FIG. 5 ; 本発明の一実施形態に係る、昇降機構が組み込まれる梁の位置及び上下方向ガイド部の幅が異なる昇降機構を備えた立体自動倉庫を上から見た平面の模式図である。1 is a schematic plan view of a three-dimensional automated warehouse provided with lifting mechanisms having different positions of beams in which the lifting mechanisms are incorporated and different widths of vertical guide portions according to one embodiment of the present invention, viewed from above. FIG. 図5~7に示した立体自動倉庫において、昇降機構が1機である場合の上下方向ガイド部を梁に組み込む方法を示した模式図である。FIG. 8 is a schematic diagram showing a method of incorporating a vertical guide section into a beam when there is only one lifting mechanism in the automatic multi-story warehouse shown in FIGS. 図5~7に示した立体自動倉庫において、昇降機構が1機である場合の上下方向ガイド部を支柱に組み込む方法を示した模式図である。FIG. 8 is a schematic diagram showing a method of incorporating a vertical guide section into a pillar when there is only one lifting mechanism in the automatic multi-story warehouse shown in FIGS. 図7に示した立体自動倉庫において、幅の狭い昇降機構が2機である場合の上下方向ガイド部を梁に組み込む方法を示した模式図である。FIG. 8 is a schematic diagram showing a method of incorporating a vertical guide section into a beam when there are two narrow lifting mechanisms in the multi-story automated warehouse shown in FIG. 7 ; 図7に示した立体自動倉庫において、幅の狭い昇降機構が2機である場合の上下方向ガイド部を支柱に組み込む方法を示した模式図である。FIG. 8 is a schematic diagram showing a method of incorporating a vertical guide section into a column when there are two narrow lifting mechanisms in the multi-story automated warehouse shown in FIG. 7 ;

以下、本発明を、図面に示した一実施形態を用いてより詳細に説明するが、本発明は、これらに限定されるものではなく、本発明の主旨を逸脱しない範囲内で種々変更して実施することが可能であり、特許請求の範囲に記載した技術思想によってのみ限定されるものである。 Hereinafter, the present invention will be described in more detail using one embodiment shown in the drawings, but the present invention is not limited to these, and various modifications can be made without departing from the gist of the present invention. It is possible to implement it and is limited only by the technical concept described in the claims.

図5は、本発明の一実施形態に係る、上下方向ガイド部が格納棚を構成する梁に組み込まれた昇降移載機を備えた立体自動倉庫を上から見た平面の模式図である。格納棚L、L’、Ln+1、Ln+1’、Ln+2は、支柱1、梁2、棚板3から構成されており、上下方向ガイド部9-1、駆動手段を構成する昇降路9-2とキャリッジ9-3、及び、運搬台9-4から構成される昇降機構9の上下方向ガイド部9-1が、背面で隣接する格納棚LとL’、Ln+1とLn+1’を構成する梁2に構設され、格納棚L、L’、Ln+1、Ln+1’、Ln+2の空間に昇降機構9が設けられている。その空間を上下方向ガイド部9-1に付設された駆動手段のキャリッジ9-3に載置された運搬台9-4が、上下方向ガイド部9-1に付設された駆動手段の昇降路9-2に沿って上下移動して、物品等を移動させる。 FIG. 5 is a schematic plan view of a three-dimensional automated warehouse as viewed from above, according to an embodiment of the present invention, provided with a lift transfer machine in which a vertical guide part is incorporated in a beam that constitutes a storage shelf. The storage shelves L n , L n ', L n+1 , L n+1 ', L n+2 are composed of columns 1, beams 2, and shelf plates 3, vertical guides 9-1, and hoistways that constitute driving means. 9-2, a carriage 9-3 , and a vertical direction guide portion 9-1 of the lifting mechanism 9, which is composed of a platform 9-4. A lifting mechanism 9 is provided in the space of the storage shelves L n , L n ′, L n+1 , L n+1 ′, and L n+2 . A carriage 9-4 placed on a carriage 9-3 of the driving means attached to the vertical guide portion 9-1 is placed in the space, and the hoistway 9 of the driving means attached to the vertical guide portion 9-1 moves toward the vertical direction guide portion 9-1. It moves up and down along -2 to move items.

図6は、図5の切断線Bにおいて、紙面と垂直に切断した断面の模式図である。この断面の模式図は、昇降機構9の上下方向ガイド部9-1が、背面で隣接する格納棚LとL’、Ln+1とLn+1’を構成する梁2に構設され、格納棚L、L’、Ln+1、Ln+1’、Ln+2の空間に昇降機構9が設けられ、上下方向ガイド部9-1に付設された駆動手段のキャリッジ9-3に載置された運搬台9-4が、上下方向ガイド部9-1に付設された駆動手段の昇降路9-2に沿って上下移動して、物品等を移動させる様子を如実に示している。 FIG. 6 is a schematic diagram of a cross section cut perpendicular to the plane of the paper on the cutting line B of FIG. 5 . In this cross-sectional schematic diagram, the vertical guide portion 9-1 of the lifting mechanism 9 is constructed on the beam 2 that constitutes the storage shelves L n and L n ', L n+1 and L n+1 ' adjacent on the back, and is stored. A lifting mechanism 9 is provided in the spaces of the shelves L n , L n ', L n+1 , L n+1 ', and L n+2 , and placed on a carriage 9-3 of a driving means attached to a vertical guide portion 9-1. It clearly shows how the carriage 9-4 moves up and down along the hoistway 9-2 of the driving means attached to the vertical guide portion 9-1 to move articles and the like.

本発明の昇降機構9及びそれを設置した立体自動倉庫(図5及び6)は、従来のリフト8及びそれを設置した立体自動倉庫(図2~4)と比較すると、従来のリフト8が走行台車4の走行空間6を占有していたことに起因する弊害を解消していること、すなわち、立体自動倉庫の空間の利用効率を顕著に高めていることが分かる。特に、タンデム方式の立体自動倉庫では、図3及び図4から明らかなように、従来のリフト8が、走行台車4の走行空間6の中央に配置されるため、走行台車4のX軸方向の往復移動を妨げており、物流効率を大きく低下させる原因になっているのに対し、本発明の昇降機構9は、図5及び図6に示すように、走行台車4のX軸方向の往復移動が自在に行え、物流効率を飛躍的に向上させることができる。 The lifting mechanism 9 of the present invention and the multi-level automated warehouse (Figs. 5 and 6) installed with it are compared with the conventional lift 8 and the multi-level automated warehouse (Figs. 2-4) where the conventional lift 8 is installed. It can be seen that the problem caused by the occupation of the traveling space 6 of the cart 4 is eliminated, that is, the utilization efficiency of the space of the multi-level automatic warehouse is remarkably improved. In particular, in the tandem type multi-story automatic warehouse, as is clear from FIGS. 5 and 6, the lifting mechanism 9 of the present invention prevents the traveling carriage 4 from reciprocating in the X-axis direction. can be carried out freely, and the efficiency of physical distribution can be dramatically improved.

図5では、一実施形態として、格納棚の一端に本発明の昇降機構9を配備し、それに隣接するように、効率的な物流が行われるように、一時的に物品等を蓄えておく仮置き搬送台7を設けているが、この構成に限定されるものではない。本発明の昇降機構9は、図5の格納棚のX軸方向の梁2に沿って、どこでも構設することが可能であるし、立体自動倉庫に求められる能力に応じて2機以上構設することも可能である。仮置き搬送台7は、本発明の昇降機構9に隣接するように配備することが好ましいが、走行台車4が、昇降機構9の運搬台9-4に載置されて移動してきた物品等を直接移載できるため、必ず必要とするものでもない。 In FIG. 5, as an embodiment, the elevating mechanism 9 of the present invention is arranged at one end of the storage shelf, and adjacent to it is a temporary storage device for temporarily storing articles and the like so that efficient physical distribution can be performed. Although the placement carrier 7 is provided, it is not limited to this configuration. The lifting mechanism 9 of the present invention can be installed anywhere along the beam 2 in the X-axis direction of the storage shelf in FIG. It is also possible to The temporary placement carrier 7 is preferably arranged adjacent to the lifting mechanism 9 of the present invention. Since it can be directly transferred, it is not necessarily required.

また、本発明の昇降機構9は図7に示したように、走行台車4の走行空間6側の梁2に構設することもできる。この場合は、走行台車4が走行するレール5を昇降機構9の上下方向ガイド部9-1を構設するために用いることができる。しかし、走行台車4は、昇降機構9の運搬台9-4に載置されて移動してきた物品等を直接移載できないため、昇降機構9に仮置き搬送台7を隣接して配備する必要がある。 Further, the elevating mechanism 9 of the present invention can be installed on the beam 2 on the traveling space 6 side of the traveling carriage 4 as shown in FIG. In this case, the rail 5 on which the traveling carriage 4 travels can be used to form the vertical guide portion 9-1 of the lifting mechanism 9. As shown in FIG. However, since the traveling carriage 4 cannot directly transfer the articles or the like placed on the carriage 9-4 of the elevating mechanism 9 and moved, it is necessary to arrange the temporary placement carriage 7 adjacent to the elevating mechanism 9. be.

更に、図7に示すように、本発明の昇降機構は、幅が狭い昇降機構91を2機以上使用して、格納棚に組み込むことも可能である。この昇降機構91は、図10に示すように、2機の上下方向ガイド部91-1、それらに付設される昇降路9-2及びキャリッジ91-3からなる駆動部があり、1機の運搬台91-4を2機のキャリッジ91-3で載置する構成となっている。昇降機構9と同様、背面で隣接する格納棚LとL’、Ln+1とLn+1’を構成する梁2に構設することも、走行台車4の走行空間6側の梁2やレール5に構設することもできる。特に、この幅の狭い昇降機構91は、走行台車4の走行空間6側の梁2やレール5に構設しても、昇降機構91の運搬台91-4に載置されて移動してきた物品等を直接移載できるという利点がある。 Furthermore, as shown in FIG. 7, the lifting mechanism of the present invention can use two or more narrow lifting mechanisms 91 and can be incorporated into the storage shelf. As shown in FIG. 10, this elevating mechanism 91 has two vertical guides 91-1, a hoistway 9-2 attached thereto, and a carriage 91-3. The table 91-4 is placed on two carriages 91-3. As with the lifting mechanism 9, the storage shelves Ln and Ln ', Ln +1 and Ln+1 ' adjacent on the back side may be provided on the beams 2, or the beams 2 and rails on the side of the traveling space 6 of the traveling carriage 4 may be provided. 5 can also be set. In particular, even if the narrow lifting mechanism 91 is arranged on the beam 2 or the rail 5 on the side of the traveling space 6 of the traveling carriage 4, the article placed on the carriage 91-4 of the lifting mechanism 91 and moved There is an advantage that such as can be directly transferred.

図8から図11は、昇降機構9及び91の上下方向ガイド部9-1及び91-1を格納棚の構造体に組み込む方法を示している。 8 to 11 show how the vertical guides 9-1 and 91-1 of the lifting mechanisms 9 and 91 are incorporated into the storage shelf structure.

図8は、昇降機構9の上下方向ガイド部9-1と梁2又はレール5が、リベット接合、ネジ接合、圧入接合等の機械的接合、融接、圧接、ろう接等の溶接を用いる冶金的接合等一般的な接合方法でそのまま接合されている。しかし、破線で囲まれた上下方向ガイド部9-1と梁2又はレール5とは、破線の部分の拡大図のように、嵌め込み方式で接合することが強度上好ましい。一方、ここでは、上下方向ガイド部9-1及び昇降路9-2が一本の長い構造体として描出されているが、格納棚一段分の長さの上下方向ガイド部9-1及びそれに付設される昇降路9-2を継ぎ足していくことも可能である。 FIG. 8 shows that the vertical guide portion 9-1 of the lifting mechanism 9 and the beam 2 or rail 5 are connected by mechanical joining such as riveting, screw joining, and press-fit joining, and metallurgical welding using welding such as fusion welding, pressure welding, and brazing. It is joined as it is by a general joining method such as mechanical joining. However, the vertical guide portion 9-1 and the beam 2 or rail 5 enclosed by the dashed line are preferably joined by fitting, as shown in the enlarged view of the dashed line portion, in terms of strength. On the other hand, here, the vertical guide part 9-1 and the hoistway 9-2 are depicted as one long structure, but the vertical guide part 9-1 having the length of one storage shelf and the attached It is also possible to extend the hoistway 9-2 to be used.

また、図9に示すように、上下方向ガイド部9-1を梁2に接合するのではなく、支柱1に上下方向ガイド部9-1を嵌め込むことも可能である。この場合も、破線で囲まれた支柱1と梁2又はレール5とは、破線の拡大図のようにして、嵌め込み方式で接合することが強度上好ましい。逆に、図には示していないが、2本の支柱1に上下方向ガイド部9-1を介設するように接合してもよい。 Further, as shown in FIG. 9, it is also possible to fit the vertical guide portion 9-1 into the column 1 instead of joining the vertical guide portion 9-1 to the beam 2. FIG. In this case as well, it is preferable from the standpoint of strength that the pillar 1 and the beam 2 or rail 5 surrounded by the dashed line are joined by fitting as shown in the enlarged view of the dashed line. Conversely, although not shown in the drawings, the two columns 1 may be joined together with the vertical guide portion 9-1 interposed therebetween.

図10及び11に示すように、2機の上下方向ガイド部91-1、それらに付設される昇降路91-2及びキャリッジ91-3からなる駆動部があり、1機の運搬台91-4を2機のキャリッジ91-3で載置する構成となっている昇降機構91も、図8及び9同様に接合して組み込むことができる。上下方向ガイド部91-1と梁2又はレール5が、リベット接合、ネジ接合、圧入接合等の機械的接合、融接、圧接、ろう接等の溶接を用いる冶金的接合等一般的な接合方法でそのまま接合することができるが、破線で囲まれた上下方向ガイド部91-1と梁2又はレール5、及び、支柱11と梁2又はレール5は、嵌め込み方式で接合することが強度上好ましい。また、図示していないが、2本の支柱11で、上下方向ガイド部91-1を介設するように接合してもよい。そして、上下方向ガイド部91-1及び昇降路91-2が一本の長い構造体として描出されているが、格納棚一段分の長さの上下方向ガイド部91-1及び昇降路91-2を継ぎ足していくことも可能である。
As shown in FIGS. 10 and 11, there are two vertical guides 91-1, a hoistway 91-2 and a carriage 91-3 attached to them, and a drive unit 91-4. A lifting mechanism 91 configured to place the carriage 91-3 on two carriages 91-3 can also be incorporated by being joined in the same manner as in FIGS. The vertical direction guide part 91-1 and the beam 2 or rail 5 are joined by general joining methods such as mechanical joining such as riveting, screw joining and press-fit joining, and metallurgical joining using welding such as fusion welding, pressure welding and brazing. However, the vertical guide portion 91-1 and the beam 2 or the rail 5, and the support 11 and the beam 2 or the rail 5 surrounded by the dashed line are preferably joined by a fitting method in terms of strength. . Also, although not shown, two posts 11 may be joined so as to interpose the vertical guide portion 91-1. Although the vertical guide portion 91-1 and the hoistway 91-2 are drawn as one long structure, the vertical guide portion 91-1 and the hoistway 91-2 having the length of one storage shelf are shown. It is also possible to continue to add

本発明は、格納棚の支柱、梁、棚板等に組み込むことによって、昇降機構の上下方向ガイド部を小型軽量化及び低コスト化することができ、立体自動倉庫の空間の利用効率を向上させるだけでなく、物流効率を改善することができる昇降機構及びそれを備えた昇降機構一体型立体自動倉庫を提供するものであるが、立体自動倉庫に適用できるだけでなく、強固な構造体が存在する場合に、その構造体の上下方向の物品等の移載が必要とされるあらゆる場合に適用することが可能である。また、本発明は、物品等の移載に限定されるものではなく、書庫、車庫、工場における資材、部品、仕掛品、完成品等の保管庫等のあらゆる保管管理システムに適用できる昇降機構及びそれを備えた昇降機構一体型立体自動倉庫である。 INDUSTRIAL APPLICABILITY The present invention can reduce the size, weight, and cost of the vertical guide section of the elevating mechanism by incorporating it into the struts, beams, shelf boards, etc. of the storage shelf, thereby improving the space utilization efficiency of the multi-story automatic warehouse. In addition, it provides a lifting mechanism that can improve logistics efficiency and a lifting mechanism-integrated multi-level automatic warehouse equipped with the same, but it is not only applicable to the three-dimensional automatic warehouse, but also has a strong structure. In some cases, it can be applied to any case where it is necessary to transfer an article or the like in the vertical direction of the structure. In addition, the present invention is not limited to the transfer of goods, etc., but a lifting mechanism and a lifting mechanism that can be applied to any storage management system such as a library, a garage, and a storehouse for materials, parts, work-in-process products, finished products, etc. in factories. This is a multi-level automated warehouse with an integrated lifting mechanism.

n-1’、L、L’、Ln+1、Ln+1 ’、Ln+2 格納棚
n-1’、P、P’、Pn+1、Pn+1’、Pn+2 物品等
1 支柱(1)
11 支柱(2)
2 梁
3 棚板
4 伸縮アームを備えた走行台車
5 レール
6 走行台車の走行空間
7 仮置き搬送台
8 従来のリフト
8-1 マスト
8-2 昇降路
8-3 キャリッジ
8-4 運搬台
9 本発明の第1の昇降機構
9-1 上下方向ガイド部
9-2 昇降路
9-3 キャリッジ
9-4 運搬台
91 本発明の第2の昇降機構
91-1 上下方向ガイド部
91-2 昇降路
91-3 キャリッジ
91-4 運搬台
10 搬出入装置
A、B 切断線
L n-1 ', L n , L n ', L n+1 , L n+1 ', L n+2 Storage shelf P n-1 ', P n , P n ', P n+1 , P n+1 ', P n+2 Goods, etc. 1 Support (1)
11 strut (2)
2 Beam 3 Shelf 4 Traveling carriage with telescopic arm 5 Rail 6 Traveling space of traveling carriage 7 Temporary placement platform 8 Conventional lift 8-1 Mast 8-2 Hoistway 8-3 Carriage 8-4 Platform 9 First Lifting Mechanism 9-1 of the Invention Vertical Guide Part 9-2 Lifting Path 9-3 Carriage 9-4 Carrier 91 Second Lifting Mechanism 91-1 of the Invention Vertical Guide Part 91-2 Lifting Path 91 -3 Carriage 91-4 Platform 10 Loading/unloading device A, B Cutting line

Claims (3)

水平方向及び垂直方向に碁盤目状に配列してなる物品又は物品収納容器の格納棚が背面を合わせて隣接して形成される一対の格納棚部と、
第1の前記一対の格納棚部とこれに隣接する第2の前記一対の格納棚部との間の各段の前記水平方向に形成される走行路の両側の略全長に亘って付設された右側レール及び左側レール上を水平方向に走行し、前記格納棚との間で前記物品又は物品収納容器を自在に出し入れ可能な走行台車と、
前記右側レールもしくは前記左側レールの前記走行路とは対向する側に構築され上下方向に移動することの可能な昇降機構であって、前記右側レールもしくは前記左側レールと接合される上下方向ガイド部、前記上下方向ガイド部に付設される駆動手段であって昇降路と摺動機構を備えたキャリッジとからなる駆動手段、及び、前記キャリッジに載置される運搬台、を有した昇降機構と
を具備し、
前記昇降機構と前記走行台車との間の物品又は物品収納容器の移載に当たっては、前記運搬台に載置されて移動してきた前記物品又は物品収納容器を前記走行台車が前記右側レールもしくは前記左側レールをまたいで直接移載する
ことを特徴とする昇降機構一体型立体自動倉庫。
a pair of storage shelves formed adjacent to each other with their backs facing each other, and storage shelves for goods or goods storage containers arranged in a grid pattern in the horizontal direction and the vertical direction;
It is attached over substantially the entire length of both sides of the traveling path formed in the horizontal direction of each stage between the first pair of storage shelves and the second pair of storage shelves adjacent thereto. a traveling carriage that travels horizontally on the right rail and the left rail and can freely take in and out the article or the article storage container between the storage shelf;
A lifting mechanism that is constructed on the side of the right rail or the left rail opposite to the running path and is capable of moving in the vertical direction, the vertical guide portion being joined to the right rail or the left rail; Driving means attached to the vertical direction guide portion and comprising a carriage having a hoistway and a sliding mechanism, and an elevating mechanism having a carriage mounted on the carriage. death,
When transferring an article or an article storage container between the lifting mechanism and the traveling carriage, the article or the article storage container that has been placed on the carrier and moved is moved by the traveling carriage on the right side rail or the left side rail. A three-dimensional automated warehouse with an integrated lifting mechanism that is characterized by direct transfer across rails.
前記運搬台は、方向変換機構を有するコンベヤであることを特徴とする請求項1記載の昇降機構一体型立体自動倉庫。 2. The multi-story automated warehouse with integrated lifting mechanism according to claim 1, wherein said carriage is a conveyor having a direction changing mechanism. 前記昇降機構に隣接して仮置き搬送台をさらに備え、
前記昇降機構と前記走行台車との間の物品又は物品収納容器の移載に当たっては、前記運搬台に載置されて移動してきた前記物品又は物品収納容器を前記走行台車が前記右側レールもしくは前記左側レールごしに直接移載する、又は、前記運搬台から前記仮置き搬送台に移載された前記物品又は物品収納容器を前記走行台車が前記右側レールもしくは前記左側レールごしに直接移載する、ことを特徴とする請求項1もしくは2記載の昇降機構一体型立体自動倉庫。
further comprising a temporary placement carrier adjacent to the lifting mechanism;
When transferring an article or an article storage container between the lifting mechanism and the traveling carriage, the article or the article storage container that has been placed on the carrier and moved is moved by the traveling carriage on the right side rail or the left side rail. The article or article storage container transferred from the carriage to the temporary placement carriage is directly transferred through the rail, or the traveling carriage directly transfers the article or article storage container through the right rail or the left rail. 3. The multi-story automated warehouse with integrated lifting mechanism according to claim 1 or 2, characterized in that:
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