JP4505391B2 - vending machine - Google Patents

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JP4505391B2
JP4505391B2 JP2005232454A JP2005232454A JP4505391B2 JP 4505391 B2 JP4505391 B2 JP 4505391B2 JP 2005232454 A JP2005232454 A JP 2005232454A JP 2005232454 A JP2005232454 A JP 2005232454A JP 4505391 B2 JP4505391 B2 JP 4505391B2
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plate
partition wall
wall
shaft
vending machine
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JP2007048087A (en
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啓二 五十嵐
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Sanden Holdings Corp
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Sanden Corp
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Description

本発明は、商品を横向きに積み重ねて収納するための商品収納ラックを有する自動販売機に関する。   The present invention relates to a vending machine having a product storage rack for storing products stacked in a horizontal direction.

缶入り飲料,瓶入り飲料,ペットボトル入り飲料等の商品を販売する自動販売機は、商品を横向きに積み重ねて収納するための商品収納ラックを有している。商品収納ラック内に収納された商品は冷却状態,加温状態または常温状態で保管され、該商品は入金を伴う購入操作に基づき収納通路の下端に配された搬出機によって1個ずつ搬出され販売口に導かれる。   A vending machine that sells products such as canned beverages, bottled beverages, and plastic bottled beverages has a product storage rack for stacking and storing products horizontally. The products stored in the product storage rack are stored in a cooled state, a warmed state, or a normal temperature state, and the products are discharged and sold one by one by an unloader placed at the lower end of the storage passage based on a purchase operation involving payment. Guided to the mouth.

前記の商品収納ラックは左壁板と右壁板と左・右壁板間を前後方向で仕切るための2以上の仕切壁板をその構成要素として含む。一般に、左壁板と右壁板はそれぞれ縦長の1枚板から成り、各仕切壁板は上下方向で並列された複数の湾曲板から成り、左・右壁板と前後2つの仕切壁板の内側には前後側が蛇行した収納通路が形成されている。   The commodity storage rack includes two or more partition wall plates for partitioning the left wall plate, the right wall plate, and the left and right wall plates in the front-rear direction. In general, the left wall plate and the right wall plate are each composed of a single vertically long plate, each partition wall plate is composed of a plurality of curved plates arranged in parallel in the vertical direction, and includes the left and right wall plates and the two front and rear partition wall plates. A storage passage having a meandering front and rear side is formed inside.

仕切壁板を構成する各湾曲板は、上端のシャフト挿通孔に挿通されたシャフトの両突出端を左・右壁板のシャフト支持孔に差し込むことによって該左・右壁板に支持され、且つ、捻りコイルバネによって内側に付勢されている。各湾曲板は、収納通路の上端開口から投入された商品の落下衝撃を緩和する役目を果たすと共に商品の下方移動を案内する役目を果たす。
特開2003−196733号公報
Each curved plate constituting the partition wall plate is supported by the left and right wall plates by inserting both projecting ends of the shaft inserted into the shaft insertion hole at the upper end into the shaft support holes of the left and right wall plates, and It is urged inward by a torsion coil spring. Each curved plate plays a role of mitigating a drop impact of a product put in from an upper end opening of the storage passage and a role of guiding a downward movement of the product.
JP 2003-196733 A

従前の商品収納ラックを組み立てるには、複数のシャフトの一端を左・右壁板の一方のシャフト支持孔に差し込んで支持させ、各シャフトに湾曲板のシャフト挿通孔及び捻りコイルバネを嵌め込んだ後、複数のシャフトの他端を左・右壁板の一方のシャフト支持孔に差し込んで支持させる必要がある。   To assemble a conventional product storage rack, insert one end of multiple shafts into one of the shaft support holes on the left and right wall plates to support them, and then insert the curved plate shaft insertion holes and torsion coil springs into each shaft. The other ends of the plurality of shafts need to be inserted and supported in one shaft support hole of the left / right wall plate.

この組み立て作業の時間及び労力は湾曲板の数にほぼ比例するため、湾曲板の数が多い商品収納ラックの場合にはその組み立てに係る作業コストが増して、自動販売機の製造コストが嵩んでしまう。   Since the time and labor of this assembling work are almost proportional to the number of curved plates, in the case of a product storage rack having a large number of curved plates, the work cost associated with the assembly increases and the manufacturing cost of the vending machine increases. End up.

本発明は前記事情に鑑みて創作されたもので、その目的とするところは、商品収納ラックの組立作業を簡略化して該組み立てに係る作業コスト、ひいては自動販売機の製造コストを低減できる自動販売機を提供することにある。   The present invention was created in view of the circumstances described above, and the object of the present invention is to provide a vending machine that can simplify the assembling work of the product storage rack and reduce the working cost related to the assembling, and thus the manufacturing cost of the vending machine. Is to provide a machine.

前記目的を達成するため、本発明は、商品を横向きに積み重ねて収納するための商品収納ラックを有する自動販売機であって、該商品収納ラックは左壁板と右壁板と左・右壁板間を前後方向で仕切るための2以上の仕切壁板を構成要素として含み、各仕切壁板はベース板と該ベース板に上向き付勢下で軸支された姿勢制御板とを有する壁モジュールを複数個上下方向に連結することによって構成されている、ことをその特徴とする。   To achieve the above object, the present invention is a vending machine having a product storage rack for storing products stacked in a horizontal direction, the product storage rack comprising a left wall plate, a right wall plate, and left and right walls. A wall module including two or more partition wall plates for partitioning between plates in the front-rear direction, each partition wall plate having a base plate and a posture control plate pivotally supported by the base plate under upward bias It is characterized in that it is configured by connecting a plurality of them in the vertical direction.

本発明によれば、左壁板と右壁板と2以上の仕切壁板によって商品収納ラックが構成されていて、しかも、各仕切壁板は各仕切壁板用の壁モジュールを複数個上下方向に連結して構成されているので、各仕切壁板に対応した種類の壁モジュールを用意しておけば、該壁モジュールを用いて各仕切壁板を簡単に組み立てることができ、該仕切壁板を用いて商品収納ラックを短時間,省労力で組み立てることができる。つまり、従前の商品収納ラックに比べて、組立作業を簡略化して該組み立てに係る作業コスト、ひいては自動販売機の製造コストを低減することができる。   According to the present invention, the product storage rack is constituted by the left wall plate, the right wall plate, and two or more partition wall plates, and each partition wall plate includes a plurality of wall modules for each partition wall plate in the vertical direction. Therefore, if a wall module of a type corresponding to each partition wall plate is prepared, each partition wall plate can be easily assembled using the wall module. The product storage rack can be assembled in a short time with labor savings. That is, as compared with the conventional product storage rack, the assembling work can be simplified to reduce the working cost for the assembling, and thus the manufacturing cost of the vending machine.

本発明によれば、商品収納ラックの組立作業を簡略化して該組み立てに係る作業コスト、ひいては自動販売機の製造コストを低減できる。   According to the present invention, the assembling work of the product storage rack can be simplified to reduce the working cost related to the assembling, and consequently the manufacturing cost of the vending machine.

本発明の前記目的とそれ以外の目的と、構成特徴と、作用効果は、以下の説明と添付図面によって明らかとなる。   The above object and other objects, structural features, and operational effects of the present invention will become apparent from the following description and the accompanying drawings.

図1〜図16は本発明の一実施形態を示す。尚、以下の説明では、図1の左側を前、右側を後、奥側を左、手前側を右として表記する。   1 to 16 show an embodiment of the present invention. In the following description, the left side of FIG. 1 is represented as the front, the right side as the rear, the back side as the left, and the near side as the right.

図1は商品収納ラックの部分右側面図、図2は図1から右壁板を除外した図、図3は商品収納ラックの商品収納状態を示す図、図4は前側の仕切壁板を構成する壁モジュールの前面図、図5は図4の右側面図、図6は後側の仕切壁板を構成する壁モジュールの前面図、図7は図6の右側面図、図8は中間の仕切壁板を構成する壁モジュールの前面図、図9は図8の右側面図、図10は各壁モジュールで共通のベース板の前面図、図11は図10のa1−a1線端面図,a2−a2線断面図及びa3−a3線断面図、図12は各壁モジュールで共通の姿勢制御板の上面図、図13は図12のb−b線端面図、図14は各壁モジュールで共通の軸支シャフトを示す図、図15は各壁モジュールで共通の捻りコイルバネを示す図、図16は商品収納ラックの組み立て方法の説明図である。   FIG. 1 is a partial right side view of a product storage rack, FIG. 2 is a view excluding the right wall plate from FIG. 1, FIG. 3 is a view showing a product storage state of the product storage rack, and FIG. 5 is a right side view of FIG. 4, FIG. 6 is a front view of the wall module constituting the rear partition wall plate, FIG. 7 is a right side view of FIG. 6, and FIG. FIG. 9 is a right side view of FIG. 8, FIG. 10 is a front view of a base plate common to each wall module, and FIG. 11 is an end view taken along line a1-a1 of FIG. a2-a2 cross-sectional view and a3-a3 line cross-sectional view, FIG. 12 is a top view of a posture control plate common to each wall module, FIG. 13 is an end view taken along line bb of FIG. 12, and FIG. Fig. 15 shows a common shaft shaft, Fig. 15 shows a common torsion coil spring in each wall module, and Fig. 16 shows product storage. Tsu is an explanatory view of a method of assembling click.

図1及び図2に示す商品収納ラック10は、左壁板20と、右壁板30と、左・右壁板20,30の間を前後方向で仕切るための3つの仕切壁板40,50,60(前側の仕切壁板40,後側の仕切壁板50,中間の仕切壁板60)をその構成要素として含んでいる。   The product storage rack 10 shown in FIGS. 1 and 2 includes a left wall plate 20, a right wall plate 30, and three partition wall plates 40, 50 for partitioning the left and right wall plates 20, 30 in the front-rear direction. , 60 (front partition wall plate 40, rear partition wall plate 50, intermediate partition wall plate 60).

左壁板20と右壁板30はそれぞれ縦長の1枚板から成り、左右方向で平行に配されている。左壁板20は後述の連結シャフト71の一方の突出端を差し込んで支持するための複数のシャフト支持孔20aを有し、右壁板30は後述の連結シャフト71の他方の突出端を差し込んで支持するための複数のシャフト支持孔30aを有している(図16参照)。   The left wall plate 20 and the right wall plate 30 are each composed of a single vertically long plate, and are arranged in parallel in the left-right direction. The left wall plate 20 has a plurality of shaft support holes 20a for inserting and supporting one protruding end of a connecting shaft 71 described later, and the right wall plate 30 is inserted with the other protruding end of a connecting shaft 71 described later. A plurality of shaft support holes 30a are provided for support (see FIG. 16).

前側の仕切壁板40は壁モジュール41(図4及ぶ図5参照)を複数個上下方向に連結することによって構成され、後側の仕切壁板50は壁モジュール51(図6及び図7参照)を複数個上下方向に連結することによって構成され、中間の仕切壁板60は壁モジュール61(図8及び図9参照)を複数個上下方向に連結することによって構成されている。   The front partition wall plate 40 is configured by connecting a plurality of wall modules 41 (see FIGS. 4 and 5) in the vertical direction, and the rear partition wall plate 50 is a wall module 51 (see FIGS. 6 and 7). The intermediate partition wall plate 60 is formed by connecting a plurality of wall modules 61 (see FIGS. 8 and 9) in the vertical direction.

この商品収納ラック10では、左壁板20と右壁板30と前側の仕切壁板40と中間の仕切壁板60の内側に1つの収納通路80が形成され、左壁板20と右壁板30と中間の仕切壁板60と後側の仕切壁板50の内側に他の1つの収納通路90が形成されている。各収納通路80,90には缶入り飲料,瓶入り飲料,ペットボトル入り飲料等の商品COを横向きに積み重ねて収納することができる(図3参照)。商品収納ラック10内に収納された商品COは冷却状態,加温状態または常温状態で保管され、該商品COは入金を伴う購入操作に基づき収納通路80,90の下端に配された搬出機(図示省略)によって1個ずつ搬出され販売口に導かれる。   In the commodity storage rack 10, one storage passage 80 is formed inside the left wall plate 20, the right wall plate 30, the front partition wall plate 40, and the intermediate partition wall plate 60. Another storage passage 90 is formed inside the partition wall plate 60 and the intermediate partition wall plate 30 and the rear partition wall plate 50. In each of the storage passages 80 and 90, a product CO such as a canned beverage, a bottled beverage, or a plastic bottled beverage can be stacked and stored in a horizontal direction (see FIG. 3). The product CO stored in the product storage rack 10 is stored in a cooled state, a warmed state, or a normal temperature state, and the product CO is unloaded at the lower ends of the storage passages 80 and 90 based on a purchase operation involving payment. (Not shown) are taken out one by one and guided to the sales outlet.

先に述べた壁モジュール41,51,61は共通部品(ベース板101,姿勢制御板102,軸支シャフト103及び捻りコイルバネ104)を利用してそれぞれ組み立てられている。各壁モジュール41,51,61の構造を説明する前に、共通部品であるベース板101,姿勢制御板102,軸支シャフト103及び捻りコイルバネ104について図10〜図15を参照して説明する。   The wall modules 41, 51, 61 described above are assembled using common parts (base plate 101, attitude control plate 102, shaft support shaft 103, and torsion coil spring 104). Before describing the structure of each wall module 41, 51, 61, the base plate 101, the attitude control plate 102, the shaft shaft 103, and the torsion coil spring 104, which are common parts, will be described with reference to FIGS.

図10及び図11に示すように、ベース板101は前面形状が矩形を成す板材から成り、その左右幅の約1/2の左右幅を有する連結孔101aを上端右側に有し、同様の幅寸法を有する連結孔101bを下端左側に有している。因みに、各連結孔101a,101bはベース板101と一体の帯状片を円形に丸める加工を行うことによって形成されている。また、ベース板101は下部に矩形状の孔101cを有する。孔101cの左側部分101dと右側部分101eは、後述する軸支孔101h,101iに左右一方から軸支シャフト103が挿入できるようにく字状に屈曲されている。   As shown in FIGS. 10 and 11, the base plate 101 is made of a plate material having a rectangular front surface shape, and has a connecting hole 101a having a left-right width of about 1/2 of the left-right width on the right side of the upper end. A connecting hole 101b having dimensions is provided on the left side of the lower end. Incidentally, each connection hole 101a, 101b is formed by performing the process which rounds the strip | belt-piece piece integral with the base board 101 into a circle. The base plate 101 has a rectangular hole 101c at the bottom. The left portion 101d and the right portion 101e of the hole 101c are bent in a square shape so that the shaft 103 can be inserted into shaft support holes 101h and 101i, which will be described later.

さらに、ベース板101は孔101c内の上部に、左側軸支片101fと右側軸支片101gと左側位置決め片101jと右側位置決め片101kを有する。各片101f,101g,101j,101kは孔101cの上縁から下方に向かって延びるようにベース板101と一体に形成されたもので、左側軸支片101fと右側軸支片101gの下端には左側軸支孔101hと右側軸支孔101iがそれぞれ設けられている。各軸支孔101h,101iの孔径は互いに等しく、各軸支孔101h,101iの中心は左右方向で一致している。因みに、各軸支孔101h,101iはベース板101と一体の帯状片を円形に丸める加工を行うことによって形成されている。また、左側軸支片101fと右側位置決め片101kは同じ角度をもって後側に傾いており、右側軸支片101gと左側位置決め片101jは同じ角度をもって前側に傾いている。   Further, the base plate 101 has a left shaft supporting piece 101f, a right shaft supporting piece 101g, a left positioning piece 101j, and a right positioning piece 101k in the upper part of the hole 101c. Each of the pieces 101f, 101g, 101j, and 101k is formed integrally with the base plate 101 so as to extend downward from the upper edge of the hole 101c, and is provided at the lower ends of the left shaft support piece 101f and the right shaft support piece 101g. A left shaft support hole 101h and a right shaft support hole 101i are provided. The diameters of the shaft support holes 101h and 101i are equal to each other, and the centers of the shaft support holes 101h and 101i are aligned in the left-right direction. Incidentally, each shaft support hole 101h, 101i is formed by carrying out the process which rounds the strip | belt-piece piece integral with the base board 101 into a circle. Further, the left shaft support piece 101f and the right positioning piece 101k are inclined rearward at the same angle, and the right shaft support piece 101g and the left positioning piece 101j are inclined frontward at the same angle.

図12及び図13に示すように、姿勢制御板102は上面形状を矩形を成し全体が湾曲した板材から成り、その一側縁の端部に第1軸支孔102aを有しこれと離れた位置に第2軸支孔102bを間隔をおいて有する。各軸支孔102a,102bの孔径は互いに等しく、且つ、ベース板101の各軸支孔101h,101iの孔径と一致しており、各軸支孔102a,102bの中心は左右方向で一致している。因みに、各軸支孔102a,102bは姿勢制御板102と一体の帯状片を円形に丸める加工を行うことによって形成されている。また、姿勢制御板102の他側縁には商品への損傷を防止するために軸支孔102a,102bと同様の丸め加工(符号102c)が施されている。   As shown in FIGS. 12 and 13, the attitude control plate 102 is made of a plate material whose upper surface is rectangular in shape and curved as a whole, and has a first shaft support hole 102 a at the end of one side edge thereof and is separated from this. The second shaft support hole 102b is provided at a certain distance. The diameters of the shaft support holes 102a and 102b are equal to each other and coincide with the diameters of the shaft support holes 101h and 101i of the base plate 101, and the centers of the shaft support holes 102a and 102b are aligned in the left-right direction. Yes. Incidentally, each shaft support hole 102a, 102b is formed by carrying out the process which rounds the strip | belt piece integral with the attitude | position control board 102 into a circle. Further, the other side edge of the attitude control plate 102 is subjected to the same rounding process (reference numeral 102c) as the shaft support holes 102a and 102b in order to prevent damage to the product.

図14に示すように、軸支シャフト103はベース板101の各軸支孔101h,101iの孔径と姿勢制御板102の各軸支孔102a,102bの孔径よりも僅かに小さな直径を有しており、各孔101h,101i,102a,102bへの挿入を可能としている。また、軸支シャフト103の長さはベース板101の左右幅とほぼ一致している。   As shown in FIG. 14, the shaft 103 has a diameter slightly smaller than the diameter of the shaft support holes 101 h and 101 i of the base plate 101 and the diameter of the shaft support holes 102 a and 102 b of the attitude control plate 102. Therefore, it can be inserted into the holes 101h, 101i, 102a, 102b. The length of the shaft 103 is substantially the same as the left and right width of the base plate 101.

図15に示すように、捻りコイルバネ104は係合用の延長部分104aを両端に有する。捻りコイルバネ104の内孔の孔径は軸支シャフト103の直径よりも僅かに大きく、該軸支シャフト103の挿入を許容する。   As shown in FIG. 15, the torsion coil spring 104 has extended portions 104a for engagement at both ends. The diameter of the inner hole of the torsion coil spring 104 is slightly larger than the diameter of the shaft shaft 103 and allows the shaft shaft 103 to be inserted.

次に、先に説明した共通部品(ベース板101,姿勢制御板102,軸支シャフト103及び捻りコイルバネ104)を利用して組み立てられた各壁モジュール41,51,61の構造について図4〜図9を参照して説明する。   Next, the structure of each of the wall modules 41, 51, 61 assembled using the common parts (the base plate 101, the attitude control plate 102, the shaft support shaft 103, and the torsion coil spring 104) described above will be described with reference to FIGS. This will be described with reference to FIG.

図4及び図5に示すように、前側の仕切壁板40を構成する壁モジュール41は、ベース板101の後側に姿勢制御板102を向き合わせた後に、該姿勢制御板102の第1軸支孔102aを右側軸支孔101iの右側に配し、且つ、第2軸支孔102bを左側軸支孔101hの右側に配すると共に、右側軸支孔101iと第2軸支孔102bとの間に捻りコイルバネ103を配して、各軸支孔101h,101i,102a,102b及び捻りコイルバネ103の内孔にこれらの左右一方から軸支シャフト103を挿入することによって組み立てられている。軸支シャフト103を挿入する前段階では、捻りコイルバネ103の一方の延長部分104aをベース板103に係合させ、且つ、他方の延長部分104aを姿勢制御板102に係合させて、該姿勢制御板102を上向きに付勢する。上向きに付勢された姿勢制御板102はその基部上面を右側位置決め片101kに接触したところでそれ以上の上方回転を抑制される。   As shown in FIGS. 4 and 5, the wall module 41 constituting the front partition wall plate 40 has the first axis of the posture control plate 102 after the posture control plate 102 faces the rear side of the base plate 101. The support hole 102a is disposed on the right side of the right shaft support hole 101i, the second shaft support hole 102b is disposed on the right side of the left shaft support hole 101h, and the right shaft support hole 101i and the second shaft support hole 102b The torsion coil spring 103 is arranged therebetween, and the shaft support shafts 103 are inserted into the respective shaft support holes 101h, 101i, 102a, 102b and the inner holes of the torsion coil spring 103 from the left and right sides. In the stage before inserting the shaft 103, the one extension portion 104a of the torsion coil spring 103 is engaged with the base plate 103, and the other extension portion 104a is engaged with the posture control plate 102 to control the posture. The plate 102 is biased upward. The posture control plate 102 biased upward is restrained from further upward rotation when the upper surface of the base portion comes into contact with the right positioning piece 101k.

図6及び図7に示すように、後側の仕切壁板50を構成する壁モジュール51は、ベース板101の前側に姿勢制御板102を向き合わせた後に、該姿勢制御板102の第1軸支孔102aを左側軸支孔101hの左側に配し、且つ、第2軸支孔102bを右側軸支孔101hの左側に配すると共に、左側軸支孔101hと第2軸支孔102bとの間に捻りコイルバネ103を配して、各軸支孔101h,101i,102a,102b及び捻りコイルバネ103の内孔にこれらの左右一方から軸支シャフト103を挿入することによって組み立てられている。軸支シャフト103を挿入する前段階では、捻りコイルバネ103の一方の延長部分104aをベース板103に係合させ、且つ、他方の延長部分104aを姿勢制御板102に係合させて、該姿勢制御板102を上向きに付勢する。上向きに付勢された姿勢制御板102はその基部上面を左側位置決め片101jに接触したところでそれ以上の上方回転を抑制される。   As shown in FIGS. 6 and 7, the wall module 51 constituting the rear partition wall plate 50 is configured such that the posture control plate 102 faces the front side of the base plate 101, and then the first axis of the posture control plate 102. The support hole 102a is disposed on the left side of the left shaft support hole 101h, the second shaft support hole 102b is disposed on the left side of the right shaft support hole 101h, and the left shaft support hole 101h and the second shaft support hole 102b The torsion coil spring 103 is arranged therebetween, and the shaft support shafts 103 are inserted into the respective shaft support holes 101h, 101i, 102a, 102b and the inner holes of the torsion coil spring 103 from the left and right sides. In the stage before inserting the shaft 103, the one extension portion 104a of the torsion coil spring 103 is engaged with the base plate 103, and the other extension portion 104a is engaged with the posture control plate 102 to control the posture. The plate 102 is biased upward. The posture control plate 102 biased upward is restrained from further upward rotation when the upper surface of the base portion comes into contact with the left positioning piece 101j.

図8及び図9に示すように、中間の仕切壁板60を構成する壁モジュール61は、ベース板101の前側に姿勢制御板102を向き合わせ、且つ、後側に姿勢制御板102を向き合わせた後に、前側の姿勢制御板102の第1軸支孔102aを左側軸支孔101hの左側に配し、且つ、第2軸支孔102bを右側軸支孔101hの左側に配し、また、後側の姿勢制御板102の第1軸支孔102aを右側軸支孔101iの右側に配し、且つ、第2軸支孔102bを左側軸支孔101hの右側に配すると共に、前側の姿勢制御板102の第2軸支孔102bと後側の姿勢制御板102の第2軸支孔102bとの間に捻りコイルバネ103を配して、各軸支孔101h,101i,102a,102b及び捻りコイルバネ103の内孔にこれらの左右一方から軸支シャフト103を挿入することによって組み立てられている。軸支シャフト103を挿入する前段階では、捻りコイルバネ103の一方の延長部分104aを前側の姿勢制御板102に係合させ、且つ、他方の延長部分104aを後側の姿勢制御板102に係合させて、両方の姿勢制御板102を上向きに付勢する。上向きに付勢された前側の姿勢制御板102はその基部上面を左側位置決め片101jに接触したところでそれ以上の上方回転を抑制され、後側の姿勢制御板102はその基部上面を右側位置決め片101kに接触したところでそれ以上の上方回転を抑制される。   As shown in FIGS. 8 and 9, the wall module 61 constituting the intermediate partition wall plate 60 faces the posture control plate 102 to the front side of the base plate 101 and faces the posture control plate 102 to the rear side. After that, the first shaft support hole 102a of the front posture control plate 102 is disposed on the left side of the left shaft support hole 101h, and the second shaft support hole 102b is disposed on the left side of the right shaft support hole 101h. The first shaft support hole 102a of the rear posture control plate 102 is disposed on the right side of the right shaft support hole 101i, and the second shaft support hole 102b is disposed on the right side of the left shaft support hole 101h. A torsion coil spring 103 is arranged between the second shaft support hole 102b of the control plate 102 and the second shaft support hole 102b of the rear posture control plate 102, and each shaft support hole 101h, 101i, 102a, 102b and the twist These in the inner hole of the coil spring 103 It is assembled by inserting the journalled shaft 103 from the right one. Prior to inserting the shaft 103, one extension 104a of the torsion coil spring 103 is engaged with the front posture control plate 102, and the other extension 104a is engaged with the rear posture control plate 102. Thus, both posture control plates 102 are biased upward. The front posture control plate 102 biased upward is restrained from further upward rotation when the upper surface of the base comes into contact with the left positioning piece 101j, and the rear posture control plate 102 holds the base upper surface of the right positioning piece 101k. Further upward rotation is suppressed at the point of contact.

次に、先に説明した各壁モジュール41,51,61を用いて3つの仕切壁板40,50,60をそれぞれ構成する方法、並びに、左壁板20と右壁板30と3つの仕切壁板40,50,60を用いて商品収納ラック10を組み立てる方法について説明する。   Next, a method of configuring the three partition wall plates 40, 50, 60 using the wall modules 41, 51, 61 described above, and the left wall plate 20, the right wall plate 30, and the three partition walls, respectively. A method of assembling the product storage rack 10 using the plates 40, 50, 60 will be described.

前記の壁モジュール41によって前側の仕切壁板40を構成するときには、上下の壁モジュール41の上側のベース板101の下端の連結孔101bと下側のベース板101の上端の連結孔101aにこれらの左右一方から連結シャフト71を挿通することによって上下の壁モジュール41を連結する作業を必要数繰り返す。   When the front partition wall plate 40 is constituted by the wall module 41, the lower connection plate 101b of the upper base plate 101 of the upper and lower wall modules 41 and the connection hole 101a of the upper end of the lower base plate 101 are connected to these. The operation of connecting the upper and lower wall modules 41 by inserting the connecting shaft 71 from the left and right ones is repeated as many times as necessary.

また、前記の壁モジュール51によって後側の仕切壁板50を構成するときには、上下の壁モジュール51の上側のベース板101の下端の連結孔101bと下側のベース板101の上端の連結孔101aにこれらの左右一方から連結シャフト71を挿通することによって上下の壁モジュール51を連結する作業を必要数繰り返す。   When the rear partition wall plate 50 is constituted by the wall module 51, the lower connection hole 101 b of the upper base plate 101 of the upper and lower wall modules 51 and the upper connection hole 101 a of the lower base plate 101 are used. The operation of connecting the upper and lower wall modules 51 by inserting the connecting shaft 71 from one of the left and right is repeated as many times as necessary.

さらに、前記の壁モジュール61によって中間の仕切壁板60を構成するときには、上下の壁モジュール61の上側のベース板101の下端の連結孔101bと下側のベース板101の上端の連結孔101aにこれらの左右一方から連結シャフト71を挿通することによって上下の壁モジュール61を連結する作業を必要数繰り返す。   Further, when the intermediate partition wall plate 60 is constituted by the wall module 61, the connection hole 101 b at the lower end of the upper base plate 101 of the upper and lower wall modules 61 and the connection hole 101 a at the upper end of the lower base plate 101 are provided. The operation of connecting the upper and lower wall modules 61 by inserting the connecting shaft 71 from one of the left and right sides is repeated as many times as necessary.

前記の連結シャフト71は、図16に示すように、各連結孔101a,101bの孔径よりも僅かに小さな直径を有し、ベース板101の左右幅よりも大きな長さを有している。また、連結シャフト71の両端には、CリングやEリング等から成る留め金具72を嵌合するための環状溝71aが形成されている。   As shown in FIG. 16, the connecting shaft 71 has a diameter slightly smaller than the diameter of each of the connecting holes 101 a and 101 b and a length larger than the left and right width of the base plate 101. Further, at both ends of the connecting shaft 71, an annular groove 71a for fitting a fastener 72 made of a C ring, an E ring or the like is formed.

前記の左壁板20と右壁板30と3つの仕切壁板40,50,60を用いて商品収納ラック10を組み立てるときには、図16に示すように、3つの仕切壁板40,50,60が有する複数の連結シャフト71の両突出端を左壁板20のシャフト支持孔20aと右壁板30のシャフト支持孔30aにそれぞれ差し込むと共に各連結シャフト71の両端に留め金具72を嵌合してその支持を行えばよい。これにより、図1及び図2に示す商品収納ラック10を得ることができる。   When the product storage rack 10 is assembled using the left wall plate 20, the right wall plate 30, and the three partition wall plates 40, 50, 60, as shown in FIG. 16, the three partition wall plates 40, 50, 60 are assembled. The projecting ends of the plurality of connecting shafts 71 included in each are inserted into the shaft support hole 20a of the left wall plate 20 and the shaft support hole 30a of the right wall plate 30, respectively, and fasteners 72 are fitted to both ends of each connection shaft 71. What is necessary is just to do the support. Thereby, the product storage rack 10 shown in FIG.1 and FIG.2 can be obtained.

このように、前述の実施形態によれば、左壁板20と右壁板30と3つの仕切壁板40,50,60によって商品収納ラック10が構成されていて、しかも、各仕切壁板40,50,60は各仕切壁板40,50,60用の壁モジュール41,51,61を複数個上下方向に連結して構成されているので、各仕切壁板40,50,60に対応した3種類の壁モジュール41,51,61を用意しておけば、該壁モジュール41,51,61を用いて各仕切壁板40,50,60を簡単に組み立てることができ、該仕切壁板40,50,60を用いて商品収納ラック10を短時間,省労力で組み立てることができる。つまり、従前の商品収納ラックに比べて、組立作業を簡略化して該組み立てに係る作業コスト、ひいては自動販売機の製造コストを低減することができる。   As described above, according to the above-described embodiment, the product storage rack 10 is configured by the left wall plate 20, the right wall plate 30, and the three partition wall plates 40, 50, 60. , 50, 60 are constructed by connecting a plurality of wall modules 41, 51, 61 for the respective partition wall plates 40, 50, 60 in the vertical direction, so that they correspond to the respective partition wall plates 40, 50, 60. If three types of wall modules 41, 51, 61 are prepared, the partition wall plates 40, 50, 60 can be easily assembled using the wall modules 41, 51, 61. , 50, 60 can be used to assemble the product storage rack 10 in a short time with labor savings. That is, as compared with the conventional product storage rack, the assembling work can be simplified to reduce the working cost for the assembling, and thus the manufacturing cost of the vending machine.

また、各仕切壁板40,50,60を構成する壁モジュール41,51,61は共通部品(ベース板101,姿勢制御板102,軸支シャフト103及び捻りコイルバネ104)を利用してそれぞれ組み立てられているので、各壁モジュール41,51,61毎に専用部品を利用する場合に比べて部品点数を削減してコスト低減を図ることができる。   Further, the wall modules 41, 51, 61 constituting the partition wall plates 40, 50, 60 are respectively assembled using common components (base plate 101, attitude control plate 102, shaft support shaft 103, and torsion coil spring 104). Therefore, the number of parts can be reduced and the cost can be reduced as compared with the case where dedicated parts are used for each of the wall modules 41, 51, 61.

さらに、各壁モジュール41,51,61を上下に連結して各仕切壁板40,50,60を組み立てる際に用いられる連結シャフト71を利用して各仕切壁板40,50,60を左・右壁板20,30に支持させているので、各仕切壁板40,50,60を左・右壁板20,30に支持させる際に必要な部品点数を削減してコスト低減を図ることができる。   Further, the partition wall plates 40, 50, 60 are connected to the left and the left using the connecting shaft 71 used when the partition wall plates 40, 50, 60 are assembled by connecting the wall modules 41, 51, 61 up and down. Since the right wall plates 20 and 30 are supported, the number of parts required for supporting the partition wall plates 40, 50 and 60 on the left and right wall plates 20 and 30 can be reduced to reduce the cost. it can.

さらに、中間の仕切壁板60を構成する壁モジュール61では、2つの姿勢制御板102は単一の軸支シャフト103によって軸支しているので、姿勢制御板102毎に異なる軸支シャフトを用いる場合に比べて部品点数を削減してコスト低減を図ることができる。   Further, in the wall module 61 constituting the intermediate partition wall plate 60, the two posture control plates 102 are supported by the single shaft shaft 103, and therefore different shafts are used for each posture control plate 102. Compared to the case, the number of parts can be reduced and the cost can be reduced.

さらに、中間の仕切壁板60を構成する壁モジュール61では、2つの姿勢制御板102は単一の捻りコイルバネ104によって上向きに付勢されているので、姿勢制御板102毎に異なる捻りコイルバネを用いる場合に比べて部品点数を削減してコスト低減を図ることができる。   Further, in the wall module 61 constituting the intermediate partition wall plate 60, the two posture control plates 102 are biased upward by a single torsion coil spring 104, and therefore different torsion coil springs are used for each posture control plate 102. Compared to the case, the number of parts can be reduced and the cost can be reduced.

尚、前述の実施形態では、各壁モジュール41,51,61を上下に連結して各仕切壁板40,50,60を組み立てる際に用いられる連結シャフト71を利用して各仕切壁板40,50,60を左・右壁板20,30に支持させたが、共通部品であるベース板101の代わりに図17に示すベース板101’を用いれば前記とは異なる支持形態を採用できる。   In the above-described embodiment, the partition wall plates 40, 51, 61 are connected to each other by using the connection shaft 71 used when the partition wall plates 40, 50, 60 are assembled by vertically connecting the wall modules 41, 51, 61. 50 and 60 are supported by the left and right wall plates 20 and 30, but if a base plate 101 ′ shown in FIG. 17 is used instead of the base plate 101 which is a common part, a different support form from the above can be adopted.

図17に示したベース板101’は左右側縁に2つの突出片101lを有する。このベース板101’を用いた各壁モジュール41,51,61の組み立て方法は前記実施形態と同じであるが、各壁モジュール41,51,61によって3つの仕切壁板40,50,60を構成するときには、図18に示すように、前記連結シャフト71よりも長さが短い連結シャフト71’を使用する。また、左壁板20と右壁板30と3つの仕切壁板40,50,60を用いて商品収納ラック10を組み立てるときには、図18に示すように、3つの仕切壁板40,50,60のベース板101’が有する突出片101lを左壁板20に設けた片支持孔20bと右壁板30に設けた片支持孔30bにそれぞれ差し込むと共に差し込み後の突出片101lの端部を折り曲げる等してその支持を行う。   The base plate 101 'shown in FIG. 17 has two protruding pieces 101l on the left and right side edges. The method of assembling each wall module 41, 51, 61 using this base plate 101 'is the same as that of the above embodiment, but the three partition wall plates 40, 50, 60 are constituted by each wall module 41, 51, 61. When doing so, as shown in FIG. 18, a connecting shaft 71 ′ shorter than the connecting shaft 71 is used. When the product storage rack 10 is assembled using the left wall plate 20, the right wall plate 30, and the three partition wall plates 40, 50, 60, as shown in FIG. 18, the three partition wall plates 40, 50, 60 are assembled. The protruding piece 101l of the base plate 101 'is inserted into the piece supporting hole 20b provided in the left wall plate 20 and the piece supporting hole 30b provided in the right wall plate 30, respectively, and the end of the protruding piece 101l after the insertion is bent. And support it.

このような突出片101lを有するベース板101’を用いる場合には連結シャフト71’を必ずしも用いる必要はないため、図19に示すように、例えば下側の連結孔101bの代わりに連結シャフト71’の代用となる軸部101mを一体に形成してこれを上側の連結孔101aに挿入することによって上下の壁モジュール41,51,61の連結を行うようにしてもよい。因みに、軸部101mはベース板101と一体のL状片を円形に丸める加工を行うことによって形成されている。このようにすれば、共通部品である連結シャフト71’が不要になるので、部品点数の削減してコスト低減を図ることができる。   When the base plate 101 ′ having such a protruding piece 101l is used, the connection shaft 71 ′ is not necessarily used. Therefore, as shown in FIG. 19, for example, the connection shaft 71 ′ is used instead of the lower connection hole 101b. Alternatively, the upper and lower wall modules 41, 51, 61 may be connected by integrally forming a shaft portion 101 m serving as a substitute for the above and inserting it into the upper connecting hole 101 a. Incidentally, the shaft portion 101m is formed by rounding an L-shaped piece integral with the base plate 101 into a circle. This eliminates the need for the connecting shaft 71 ′, which is a common component, thereby reducing the number of components and reducing costs.

また、前述の実施形態では、ベース板101の軸支孔101h,101iと姿勢制御板102の軸支孔102a,102bに軸支ロッド103を挿入することによって該姿勢制御板102の軸支を行ったが、図20に示すように、両軸支孔102a,102bの代わりに軸支ロッド103の代用となる軸部102d,102eを一体に形成した姿勢制御板102’を用い、該姿勢制御板102’の軸部102d,102eをベース板102の軸支孔101h,101iに挿入することによって姿勢制御板102’の軸支を行うようにしてもよい。因みに、軸部102d,102eは姿勢制御板102’と一体のL状片を円形に丸める加工を行うことによって形成されている。このようにすれば、共通部品である軸支シャフト103が不要になるので、部品点数の削減してコスト低減を図ることができる。軸支シャフト103が無い場合には前記実施形態のようにして捻りコイルバネ104を配することができなくなるので、この場合には小型の捻りコイルバネを軸部102d,102eの少なくとも一方に装着して姿勢制御板102’を上向きに付勢するか、或いは、捻りコイルバネと同様の役目を果たす板バネ等を姿勢制御板102’またはベース板101に適宜配するとよい。   In the above-described embodiment, the posture control plate 102 is supported by inserting the shaft support rod 103 into the shaft support holes 101h and 101i of the base plate 101 and the shaft support holes 102a and 102b of the posture control plate 102. However, as shown in FIG. 20, a posture control plate 102 ′ in which shaft portions 102d and 102e serving as a substitute for the shaft support rod 103 are integrally formed instead of the shaft support holes 102a and 102b is used. The orientation control plate 102 ′ may be supported by inserting the shaft portions 102 d and 102 e of 102 ′ into the shaft support holes 101 h and 101 i of the base plate 102. Incidentally, the shaft portions 102d and 102e are formed by rounding an L-shaped piece integral with the attitude control plate 102 'into a circle. This eliminates the need for the pivot shaft 103 that is a common component, thereby reducing the number of components and reducing costs. When the shaft 103 is not provided, the torsion coil spring 104 cannot be arranged as in the above embodiment. In this case, a small torsion coil spring is attached to at least one of the shaft portions 102d and 102e. The control plate 102 ′ may be urged upward, or a leaf spring or the like that performs the same function as the torsion coil spring may be appropriately disposed on the attitude control plate 102 ′ or the base plate 101.

さらに、前述の実施形態では、左壁板20と右壁板30と左・右壁板間を前後方向で仕切る3つの仕切壁板40,50,60を構成要素として含み、且つ、2つの収納通路80,90を有するものを商品収納ラック10として示したが、中間の仕切壁板60を無くして前後の仕切壁板40,50の高さ位置を調整すれば単一の収納通路を有する商品収納ラックを得ることができる。また、中間の仕切壁板60を2以上設けて各仕切壁板40,50,60の高さ位置を調整すれば3以上の収納通路を有する商品収納ラックを得ることもできる。   Furthermore, in the above-mentioned embodiment, the three partition wall plates 40, 50, 60 that partition the left wall plate 20, the right wall plate 30, and the left and right wall plates in the front-rear direction are included as components, and two storages are provided. Although the product storage rack 10 is shown as having the passages 80 and 90, if the height of the front and rear partition wall plates 40 and 50 is adjusted without the intermediate partition wall plate 60, the product has a single storage passage. A storage rack can be obtained. Further, if two or more intermediate partition wall plates 60 are provided and the height positions of the partition wall plates 40, 50, 60 are adjusted, a product storage rack having three or more storage passages can be obtained.

本発明の一実施形態を示す商品収納ラックの部分右側面図である。It is a partial right view of the goods storage rack which shows one Embodiment of this invention. 図1から右壁板を除外した図である。It is the figure which excluded the right wall board from FIG. 商品収納ラックの商品収納状態を示す図である。It is a figure which shows the goods storage state of a goods storage rack. 前側の仕切壁板を構成する壁モジュールの前面図である。It is a front view of the wall module which comprises the front partition wall board. 図4の右側面図である。FIG. 5 is a right side view of FIG. 4. 後側の仕切壁板を構成する壁モジュールの前面図である。It is a front view of the wall module which comprises the rear partition wall board. 図6の右側面図である。FIG. 7 is a right side view of FIG. 6. 中間の仕切壁板を構成する壁モジュールの前面図である。It is a front view of the wall module which comprises an intermediate partition wall board. 図8の右側面図である。It is a right view of FIG. 各壁モジュールで共通のベース板の前面図である。It is a front view of a base plate common to each wall module. 図10のa1−a1線端面図,a2−a2線断面図及びa3−a3線断面図である。It is the a1-a1 line end view of FIG. 10, a2-a2 sectional view, and a3-a3 sectional view. 各壁モジュールで共通の姿勢制御板の上面図である。It is a top view of the attitude | position control board common in each wall module. 図12のb−b線端面図である。FIG. 13 is an end view taken along line bb in FIG. 12. 各壁モジュールで共通の軸支シャフトを示す図である。It is a figure which shows the common shaft shaft in each wall module. 各壁モジュールで共通の捻りコイルバネを示す図である。It is a figure which shows the torsion coil spring common in each wall module. 商品収納ラックの組み立て方法の説明図である。It is explanatory drawing of the assembly method of a goods storage rack. 図10に示したベース板の変形例を示すベース板の前面図である。It is a front view of the base board which shows the modification of the base board shown in FIG. 図17に示したベース板を用いた場合の商品収納ラックの組み立て方法の説明図である。It is explanatory drawing of the assembly method of the goods storage rack at the time of using the base board shown in FIG. 図17に示したベース板の変形例を示す図である。It is a figure which shows the modification of the base board shown in FIG. 図12に示した姿勢制御板の変形例を示す姿勢制御板の上面図である。It is a top view of the attitude | position control board which shows the modification of the attitude | position control board shown in FIG.

符号の説明Explanation of symbols

10…商品収納ラック、20…左壁板、20a…シャフト支持孔、20b…片支持孔、30…右壁板、30a…シャフト支持孔、30b…片支持孔、40…前側の仕切壁板、41…壁モジュール、50…後側の仕切壁板、51…壁モジュール、60…中間の仕切壁板、61…壁モジュール、71,71’…連結シャフト、72…留め金具、80,90…収納通路、101,101’…ベース板、101a,101b…連結孔、101h,101i…軸支孔、101m…軸部、102,102’…姿勢制御板、102a,102b…軸支孔、102d,102e…軸部、103…軸支シャフト、104…捻りコイルバネ。   DESCRIPTION OF SYMBOLS 10 ... Product storage rack, 20 ... Left wall board, 20a ... Shaft support hole, 20b ... Single support hole, 30 ... Right wall board, 30a ... Shaft support hole, 30b ... Single support hole, 40 ... Front side partition wall board, 41 ... Wall module, 50 ... Rear partition wall plate, 51 ... Wall module, 60 ... Middle partition wall plate, 61 ... Wall module, 71, 71 '... Connection shaft, 72 ... Fastener, 80, 90 ... Storage 101, 101 '... Base plate, 101a, 101b ... Connecting hole, 101h, 101i ... Shaft support hole, 101m ... Shaft, 102, 102' ... Posture control plate, 102a, 102b ... Shaft support hole, 102d, 102e ... shaft portion, 103 ... shaft shaft, 104 ... torsion coil spring.

Claims (11)

商品を横向きに積み重ねて収納するための商品収納ラックを有する自動販売機であって、
該商品収納ラックは左壁板と右壁板と左・右壁板間を前後方向で仕切るための2以上の仕切壁板を構成要素として含み、
各仕切壁板はベース板と該ベース板に上向き付勢下で軸支された姿勢制御板とを有する壁モジュールを複数個上下方向に連結することによって構成されている、
ことを特徴とする自動販売機。
A vending machine having a product storage rack for stacking and storing products horizontally,
The product storage rack includes two or more partition wall plates as components for partitioning the left wall plate, the right wall plate, and the left and right wall plates in the front-rear direction.
Each partition wall plate is configured by connecting a plurality of wall modules having a base plate and a posture control plate pivotally supported by the base plate under upward biasing in a vertical direction.
Vending machine characterized by that.
各仕切り板を構成する壁モジュールは共通のベース板及び姿勢制御板を利用して組み立てられている、
ことを特徴とする請求項1に記載の自動販売機。
The wall modules constituting each partition plate are assembled using a common base plate and attitude control plate.
The vending machine according to claim 1.
ベース板に対する姿勢制御板の軸支は、ベース板と姿勢制御板に設けられた軸支孔に軸支シャフトを挿入することによって行われている、
ことを特徴とする請求項1または2に記載の自動販売機。
The support of the attitude control plate with respect to the base plate is performed by inserting a support shaft into a shaft support hole provided in the base plate and the attitude control plate.
The vending machine according to claim 1 or 2, characterized in that
ベース板に対する姿勢制御板の軸支は、ベース板と姿勢制御板の一方に設けられた軸支孔に他方に設けられた軸部を挿入することによって行われている、
ことを特徴とする請求項1または2に記載の自動販売機。
Axial support of the attitude control plate with respect to the base plate is performed by inserting a shaft portion provided in the other into a shaft support hole provided in one of the base plate and the attitude control plate.
The vending machine according to claim 1 or 2, characterized in that
各壁モジュールのベース板は上下端に連結部位を有し、上下の壁モジュールは上側のベース板の下端の連結部位と下側のベース板の上端の連結部位を結合することによって連結されている、
ことを特徴とする請求項1〜4の何れか1項に記載の自動販売機。
The base plate of each wall module has connection parts at the upper and lower ends, and the upper and lower wall modules are connected by connecting the connection part at the lower end of the upper base plate and the connection part at the upper end of the lower base plate. ,
The vending machine according to any one of claims 1 to 4, wherein
上下端の連結部位は連結孔であり、連結部位相互の結合は両連結孔に連結シャフトを挿通することによって行われている、
ことを特徴とする請求項5に記載の自動販売機。
The connection parts of the upper and lower ends are connection holes, and the connection between the connection parts is performed by inserting a connection shaft into both connection holes.
The vending machine according to claim 5.
各仕切壁板は、両連結孔に挿通された連結シャフトの両突出端を左・右壁板のシャフト支持孔に差し込むことによって該左・右壁板に支持されている、
ことを特徴とする請求項6に記載の自動販売機。
Each partition wall plate is supported by the left and right wall plates by inserting both projecting ends of the connection shafts inserted into both connection holes into the shaft support holes of the left and right wall plates.
The vending machine according to claim 6.
上下端の一方の連結部位は連結孔で他方の連結部位は連結孔に挿入可能な軸部であり、連結部位相互の結合は連結孔に軸部を挿通することによって行われている、
ことを特徴とする請求項5に記載の自動販売機。
One connecting part of the upper and lower ends is a connecting hole, and the other connecting part is a shaft part that can be inserted into the connecting hole, and coupling between the connecting parts is performed by inserting the shaft part into the connecting hole.
The vending machine according to claim 5.
各仕切壁板は、ベース板の左右側縁に設けられた突出片を左・右壁板の片支持孔に差し込むことによって該左・右壁板に支持されている、
ことを特徴とする請求項8に記載の自動販売機。
Each partition wall plate is supported on the left and right wall plates by inserting projecting pieces provided on the left and right side edges of the base plate into the piece support holes of the left and right wall plates.
The vending machine according to claim 8, wherein:
商品収納ラックは左壁板と右壁板と左・右壁板間を前後方向で仕切るための前側の仕切壁板と後側の仕切壁板と少なくとも1つの中間の仕切壁板を構成要素として含み、
前側の仕切壁板を構成する壁モジュールと後側の仕切壁板を構成する壁モジュールは中間の仕切壁板側に位置する1つの姿勢制御板をそれぞれ有し、
中間の仕切壁板を構成する壁モジュールは前側の仕切壁板側と後側の仕切壁板側に位置する2つの姿勢制御板を前後対称に有する、
ことを特徴とする請求項1〜9の何れか1項に記載の自動販売機。
The product storage rack includes a front partition wall plate, a rear partition wall plate, and at least one intermediate partition wall plate for partitioning the left wall plate, the right wall plate, and the left and right wall plates in the front-rear direction. Including
The wall module constituting the front partition wall plate and the wall module constituting the rear partition wall plate each have one posture control plate located on the intermediate partition wall plate side,
The wall module constituting the middle partition wall plate has two posture control plates located on the front partition wall plate side and the rear partition wall plate side symmetrically,
The vending machine according to any one of claims 1 to 9, wherein:
中間の仕切壁板を構成する壁モジュールの2つの姿勢制御板は単一のバネ材によって上向きに付勢されている、
ことを特徴とする請求項10に記載の自動販売機。
The two attitude control plates of the wall module constituting the intermediate partition wall plate are biased upward by a single spring material.
The vending machine according to claim 10.
JP2005232454A 2005-08-10 2005-08-10 vending machine Expired - Fee Related JP4505391B2 (en)

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Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003016517A (en) * 2001-07-04 2003-01-17 Kubota Corp Commodity housing device of vending machine

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003016517A (en) * 2001-07-04 2003-01-17 Kubota Corp Commodity housing device of vending machine

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