JP3070903U - Waste collection and disposal equipment for empty cans, etc. - Google Patents

Waste collection and disposal equipment for empty cans, etc.

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Publication number
JP3070903U
JP3070903U JP2000000649U JP2000000649U JP3070903U JP 3070903 U JP3070903 U JP 3070903U JP 2000000649 U JP2000000649 U JP 2000000649U JP 2000000649 U JP2000000649 U JP 2000000649U JP 3070903 U JP3070903 U JP 3070903U
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Japan
Prior art keywords
compression
collection
chamber
plate
container
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
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JP2000000649U
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Japanese (ja)
Inventor
秀雄 秋田
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秀雄 秋田
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Priority to JP2000000649U priority Critical patent/JP3070903U/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B9/00Presses specially adapted for particular purposes
    • B30B9/32Presses specially adapted for particular purposes for consolidating scrap metal or for compacting used cars
    • B30B9/321Presses specially adapted for particular purposes for consolidating scrap metal or for compacting used cars for consolidating empty containers, e.g. cans
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B9/00Presses specially adapted for particular purposes
    • B30B9/32Presses specially adapted for particular purposes for consolidating scrap metal or for compacting used cars
    • B30B9/321Presses specially adapted for particular purposes for consolidating scrap metal or for compacting used cars for consolidating empty containers, e.g. cans
    • B30B9/325Presses specially adapted for particular purposes for consolidating scrap metal or for compacting used cars for consolidating empty containers, e.g. cans between rotary pressing members, e.g. rollers, discs

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Refuse Collection And Transfer (AREA)
  • Processing Of Solid Wastes (AREA)

Abstract

(57)【要約】 【課題】 空缶等の回収作業に於いて、無駄なスペース
空間を最小限に縮小させて効率良く回収容器に堆積させ
ることを可能とし、回収集積に係るコスト低減を図り、
且つその使用時に於いても、簡便で安全な作業が行える
回収装置の提供。 【解決手段】 回収装置上に圧縮装置を脱着可能状態に
配設し、回収装置は直方体容器に形成すると共に、圧縮
装置は底板を20°〜50°程度の傾斜を有する投入室
と圧縮室を此の順序に直列配設したものとなし、一方投
入室と圧縮室間には仕切板を設け、該仕切板と投入室の
投入扉を逆関係に開閉動するように連動させ、且つ圧縮
室にはパンタグラフ機構の伸縮動作で昇降作用する押圧
板を備えたものとなすほか、圧縮室の傾斜壁面を開閉板
の構成となしたことを特徴とする。
(57) [Summary] [PROBLEMS] In collecting empty cans and the like, it is possible to reduce wasteful space space to a minimum and efficiently deposit it in a collection container, thereby reducing costs associated with collection and collection. ,
In addition, the present invention provides a recovery device that can perform simple and safe work even at the time of use. SOLUTION: A compression device is disposed on a collection device in a detachable state, the collection device is formed in a rectangular parallelepiped container, and the compression device has a bottom plate having an input chamber and a compression chamber having an inclination of about 20 ° to 50 °. In this order, a partition plate is provided between the input chamber and the compression chamber, and the partition plate and the input door of the input chamber are interlocked so as to be opened and closed in an inverse relationship. Is characterized in that it has a pressing plate that moves up and down by the expansion and contraction operation of the pantograph mechanism, and that an inclined wall surface of the compression chamber is configured as an opening / closing plate.

Description

【考案の詳細な説明】[Detailed description of the invention]

【0001】[0001]

【考案の属する技術分野】[Technical field to which the invention belongs]

本考案は、空缶等の廃棄物回収処理装置に関する。 The present invention relates to an apparatus for collecting and processing waste such as empty cans.

【0002】[0002]

【従来の技術】[Prior art]

従来、使用されている空缶等の回収処理装置の多くは、その回収作業に於いて 、空缶の材質を選別することなく処理され、回収後にスチール缶及びアルミ缶な どを分別していた。また、予め空缶の分別機能を備えた装置に於いても、それぞ れを独立させて処理する機能をもたせた構成であった。 Conventionally, most of the used cans and other collection and disposal equipment were treated without sorting the materials of the cans in the collection work, and after collection, steel cans and aluminum cans were separated. . In addition, even in an apparatus having a function of separating empty cans in advance, the apparatus was provided with a function of processing each of them independently.

【0003】[0003]

【考案が解決しようとする課題】[Problems to be solved by the invention]

資源保護及び環境改善が急務となっている現代社会に於いて、それぞれの資源 リサイクルをいかに効果的に行うかが、社会全体の大きな課題となっている。 現在、廃棄物の回収或いは、リサイクル用として多く設置されている空缶等の 回収装置は、投入後の空缶形状は変わらず処理されるものがほとんどであり、投 棄された空缶等は回収容器内で、すぐに嵩張り状態となり満杯となる。 また、回収後の分別作業に於いても、手作業で行われることが多く、更には回 収物の運搬処理に於いても、多大なスペースをとる原因となり、回収費用の増大 につながっている。 In a modern society where resource conservation and environmental improvement are urgently needed, how to effectively recycle each resource has become a major issue for society as a whole. At present, most of the collection equipment for empty cans, etc., which are installed for waste collection or recycling, can be treated without changing the shape of empty cans after being put in. It quickly becomes bulky and full in the collection container. In addition, the sorting work after collection is often performed manually, and also in the transportation of collected materials, it takes up a lot of space, leading to an increase in collection costs. .

【0004】 本考案は、空缶等の回収作業に於いて、無駄なスペース空間を最小限に縮小さ せて効率良く回収容器に堆積させることを可能とし、回収集積に係るコスト低減 を図り、且つその使用時に於いても、簡便で安全な作業が行える廃棄物回収装置 を供せんとするものである。[0004] The present invention makes it possible to minimize wasteful space space and efficiently deposit the waste in a collection container in the collection work of empty cans and the like, thereby reducing the cost associated with collection and collection. In addition, it does not provide a waste collection device that can perform simple and safe work even when it is used.

【0005】[0005]

【課題を解決するための手段】[Means for Solving the Problems]

本考案は、回収装置上に圧縮装置を脱着可能状態に配設し、回収装置は直方体 容器に形成すると共に、圧縮装置は底板を20°〜50°程度の傾斜を有する投 入室と圧縮室を此の順序に直列配設したものとなし、一方投入室と圧縮室間には 仕切板を設け、該仕切板と投入室の投入扉を逆関係に開閉動するように連動させ 、且つ圧縮室にはパンタグラフ機構の伸縮動作で昇降作用する押圧板を備えたも のとなすほか、圧縮室の傾斜壁面を開閉板の構成となしたことを特徴とする。 In the present invention, the compression device is disposed on the recovery device in a detachable state, the recovery device is formed in a rectangular parallelepiped container, and the compression device has an inlet chamber and a compression chamber whose bottom plate has an inclination of about 20 ° to 50 °. In this order, a partition plate is provided between the input chamber and the compression chamber, and the partition plate and the input door of the input chamber are interlocked so as to be opened and closed in an inverse relationship. Is characterized in that it has a pressing plate that moves up and down by the expansion and contraction operation of the pantograph mechanism, and that the inclined wall surface of the compression chamber is configured as an opening / closing plate.

【0006】 このさい、回収装置は回収容器を横に2箇並設したものとなすと共に、圧縮装 置は圧縮室の押圧板に磁石を埋設して、スチール缶を吸着可能となすほか、並設 した回収容器側へ向って押圧板の下面と当接状態に移動するスクレーパ機構を備 えたものとなしたものとし、圧縮装置を立設したガイドレールに案内させて離脱 可動となしたものとするものである。[0006] At this time, the collection device has two collection containers arranged side by side, and the compression device has a magnet buried in a pressing plate of a compression chamber so that a steel can can be adsorbed. It shall be equipped with a scraper mechanism that moves in contact with the lower surface of the pressing plate toward the installed collection container side, and shall be capable of detaching and moving by being guided by a guide rail with an upright compression device. Is what you do.

【0007】[0007]

【考案の実施の形態】[Embodiment of the invention]

本考案に係る空缶等の廃棄物回収装置の実施形態を以下の図示例によって説明 する。 図1は本考案に係る廃棄物回収装置の斜視図であり、1は回収装置本体、2は 圧縮装置、3は回収容器、4は取付け基台である。 An embodiment of a waste collection device such as an empty can according to the present invention will be described with reference to the following illustrated examples. FIG. 1 is a perspective view of a waste collection device according to the present invention, wherein 1 is a collection device main body, 2 is a compression device, 3 is a collection container, and 4 is a mounting base.

【0008】 図1に於いて、回収装置1は直方体容器に形成される。圧縮装置2は、その背 面部を該回収装置1上の取付け基台4へガイドレール4aを介して取り付けられ るものである。このさい、圧縮装置2は該ガイドレール4aにより上下にスライ ドさせて上方向へ脱着可能状態となされるのであり、圧縮装置2の下部分に設置 される回収容器3は、ポリエチレン製或いは金属製などを使用し、且つその容器 の高さ寸法は全体装置を人が立った状態で使用できる寸法に設計されるものとな してある。In FIG. 1, the collection device 1 is formed in a rectangular parallelepiped container. The compression device 2 has its back surface mounted on a mounting base 4 on the recovery device 1 via a guide rail 4a. At this time, the compression device 2 is slid up and down by the guide rail 4a so as to be detachable upward. The collection container 3 installed at the lower part of the compression device 2 is made of polyethylene or metal. The height of the container is designed so that the entire device can be used in a standing position.

【0009】 5は、取付け基台の下方付近に回収容器3を設置させるための載置台であり、 5aは載置台5の手前側面中央部に設けられた足踏みペダルである。 回収容器3の取り出し作業は、足踏みペダル5aの足踏動作により、回収容器 3が前傾されて取出しが可能となるのである。また、回収容器3の設置作業に於 いても同様の操作を行うのであり、これにより脱着作業を簡便に行えるものとな る。Reference numeral 5 denotes a mounting table on which the collection container 3 is installed near the lower part of the mounting base. Reference numeral 5a denotes a foot pedal provided at the center of the front side of the mounting table 5. In the removing operation of the collecting container 3, the collecting container 3 is tilted forward by the stepping action of the foot pedal 5a, and the collecting container 3 can be taken out. In addition, the same operation is performed in the installation work of the collection container 3, so that the desorption work can be easily performed.

【0010】 図2は、本考案に係る圧縮装置2の部分説明図で、Pは投入室、Qは圧縮室を 示すものである。このさい、投入室P及び圧縮室Qは各底板を同一傾斜角度を有 するものとなし、その角度はθ=20°〜50°程度とする。これにより圧縮装 置2に投入される空缶kは投入室P及び圧縮室Qへの誘導がスムーズに行えるも のとなる。FIG. 2 is a partial explanatory view of the compression device 2 according to the present invention, in which P indicates a charging chamber, and Q indicates a compression chamber. At this time, the charging chamber P and the compression chamber Q have the same bottom plate with the same inclination angle, and the angle is about θ = 20 ° to 50 °. Thereby, the empty can k charged into the compression device 2 can be smoothly guided to the charging chamber P and the compression chamber Q.

【0011】 図2に於いて2aは空缶を投入する投入扉、2bは投入室Pと圧縮室Q間に設 けられた仕切板である。該投入扉2aと仕切板2bは、常時逆関係に開閉動作さ れる構成となし、ワイヤーW等を介して上下に連動させて開閉動作が行われるも のとなる。 この2つの扉構造により、本装置の使用者は、誤って手や他の器物を圧縮室Q へ挿入ができなくなり、使用中に於ける事故を未然に防止することができるので ある。In FIG. 2, reference numeral 2a denotes a charging door for charging empty cans, and 2b denotes a partition plate provided between the charging chamber P and the compression chamber Q. The input door 2a and the partition plate 2b are configured to always open and close in an inverse relationship, and the opening and closing operations are performed by vertically interlocking via a wire W or the like. With these two door structures, the user of the present apparatus cannot accidentally insert his / her hand or other equipment into the compression chamber Q, thereby preventing an accident during use.

【0012】 6は圧縮室P内の圧縮板であって、後述するパンタグラフ機構によって底板に 向け押圧動作の行われるものとなる。具体的には螺杆軸7、ナット体8、上下作 動レバー9a,9b及びモーター10の使用で行われるのであり、モータ10の 正及び逆回転により、連結ナット8が螺杆7上を移動することにより、圧縮板6 を支持した上下作動レバー9a,9bが開閉して圧縮板6を上下動させるのであ る。Reference numeral 6 denotes a compression plate in the compression chamber P, which is pressed against the bottom plate by a pantograph mechanism described later. Specifically, this is performed by using the screw shaft 7, the nut body 8, the vertical operating levers 9a and 9b, and the motor 10. The forward and reverse rotation of the motor 10 causes the connecting nut 8 to move on the screw rod 7. Thus, the vertical operating levers 9a and 9b supporting the compression plate 6 open and close to move the compression plate 6 up and down.

【0013】 以下、圧縮室P内の押潰装置11に於ける構成を、図2、図3に基づいて説明 する。 圧縮室Qの天井壁hに固設したブラケットgに対し、空缶kを押潰させるため の圧縮板6を備えた押潰装置11を吊設状態に取付けしめるのであり、即ち押潰 装置11はモータ10の正逆回転駆動と共に、モータ軸に連結された螺杆軸7が 回動されることにより、その先端のナット体8が螺杆軸7上を前後移動させるよ うになし、そのさい上下に1対の上下作動レバー9a,9a及び9b,9bが開 閉される所謂パンタグラフ機構により、圧縮板6を矢印イ,ロの上下方向へ移動 させ、その下動の過程で空缶kを押潰させるのである。このさい12,13及び 14は上部作動レバー9a,9aを揺動自在に止着する係合ピンであり、15, 16及び17は下部作動レバー9b,9bを揺動自在に止着する係合ピンである 。 なお、Sは図3に示す如く圧縮室Qの背面側に穿設した縦長のスリットであっ て、これは、上下パンタグラフ機構で圧縮板6が上下動するさい、パンタグラフ 機構のモータ10駆動部を含め摺動移動させるようになすためのものである。Hereinafter, the configuration of the crushing device 11 in the compression chamber P will be described with reference to FIGS. The crushing device 11 having the compression plate 6 for crushing the empty can k is mounted in a suspended state with respect to the bracket g fixed to the ceiling wall h of the compression chamber Q, that is, the crushing device 11 When the screw shaft 7 connected to the motor shaft is rotated together with the forward / reverse rotation of the motor 10, the nut body 8 at the tip of the motor shaft 10 moves back and forth on the screw shaft 7, and in this case, By a so-called pantograph mechanism in which a pair of up / down operating levers 9a, 9a and 9b, 9b are opened and closed, the compression plate 6 is moved in the up and down directions of arrows a and b, and the empty can k is crushed during the downward movement. Let it do. In this case, reference numerals 12, 13 and 14 are engagement pins for swingably fixing the upper operation levers 9a, 9a, and 15, 16, and 17 are engagement pins for swingably fixing the lower operation levers 9b, 9b. It is a pin. S is a vertically elongated slit formed on the back side of the compression chamber Q as shown in FIG. 3, and is used to drive the motor 10 driving unit of the pantograph mechanism when the compression plate 6 moves up and down by the vertical pantograph mechanism. This is for sliding movement.

【0014】 一方、上記パンタグラフ機構による押潰作業で圧縮板6の上下動が適確に行わ れるべく案内補助手段が設けてあり、これは上記パンタグラフ機構を挟むように して圧縮室Qの前後壁面に対し1対の梁板18、18を橋架し、各梁板の前後箇 所にガイド棒19,19を植設したものとなしてある。 而して、上記圧縮板6の四隅付近には上記各ガイド棒19,19の挿通される 透孔tを穿設したものとなしてあるのであり、パンタグラフ機構の開閉動作で圧 縮板6が上下移動するさい、圧縮板6は上記各ガイド棒19,19に案内される ものとなる。On the other hand, a guide assisting means is provided so that the compression plate 6 can be moved up and down properly in the crushing operation by the pantograph mechanism. A pair of beam plates 18, 18 are bridged to the wall surface, and guide rods 19, 19 are planted at the front and rear portions of each beam plate. In the vicinity of the four corners of the compression plate 6, through holes t through which the guide rods 19 are inserted are formed, and the compression plate 6 is opened and closed by the pantograph mechanism. When moving up and down, the compression plate 6 is guided by each of the guide bars 19 and 19.

【0015】 なお、20は圧縮板6の上動作用の上限で接触するものとなるガイド棒19, 19に設けた係止具であって、これには空缶の押潰終了で圧縮板6が上昇して来 たさい、圧縮室Q裏側の排出扉Oを開放させるリミットスイッチ(図示せず)が 設けてある。これにより、押潰された空缶は回収容器内へ落下されるものとなり 、落下後排出扉Oが閉塞されて引き続き投入室内に空缶が存在する場合には、以 下同様に動作が繰り返されるものとなる。Reference numeral 20 denotes a locking member provided on the guide rods 19, 19 which comes into contact with the upper limit of the operation of the compression plate 6 at the upper limit. When the pressure rises, a limit switch (not shown) for opening the discharge door O on the back side of the compression chamber Q is provided. As a result, the crushed empty can is dropped into the collection container, and when the discharge door O is closed after the fall and the empty can still exists in the charging chamber, the operation is repeated in the same manner as described below. It will be.

【0016】 図4は、他の実施例を示すものであって、本実施例ではスチール缶とアルミ缶 との分別処理が行われるようになしたものである。図4に於いて3aはアルミ缶 用回収容器、3bはスチール缶用回収容器である。FIG. 4 shows another embodiment. In this embodiment, a separation process between a steel can and an aluminum can is performed. In FIG. 4, 3a is a collection container for aluminum cans, and 3b is a collection container for steel cans.

【0016】 図5及び図6は、図4に於ける圧縮装置2の部分説明図であって、図5は内部 側面図、図6は同正面図である。本例で投入室P及び圧縮室Qの構成は第1実施 例のものと実質的に変わりがないが、圧縮板6を隣接するスチール缶回収容器3 a側まで延長させた構成のものとなしてあり、アルミ缶回収容器3bとスチール 缶回収容器3aの境界部には投入扉2aから投入される空缶が隣接するスチール 缶回収容器側へ流入しないよう、高さ2cm程度の係止突状体21が設けてある 。5 and 6 are partial explanatory views of the compression device 2 in FIG. 4, wherein FIG. 5 is an internal side view and FIG. 6 is a front view. In this embodiment, the configuration of the charging chamber P and the compression chamber Q is substantially the same as that of the first embodiment, but is not the configuration in which the compression plate 6 is extended to the adjacent steel can collection container 3a side. At the boundary between the aluminum can collection container 3b and the steel can collection container 3a, a locking projection having a height of about 2 cm prevents an empty can introduced from the charging door 2a from flowing into the adjacent steel can collection container. A body 21 is provided.

【0017】 本実施例に於いては圧縮板6の裏面側には多数の永久磁石22が埋設されてな り、且つ該板6の上記堰板21と対応する箇所には圧縮板6の押圧時に上記係止 突状体21が嵌入されるものとなる凹溝mが設けてある。23はスクレーパーで あって、圧縮板6の上記押潰作業終了後に上昇した上限位置付近で圧縮板6の底 面部と接触するようにその片端部から他端部(図示例の図6)で右端から左端へ 向けて移動されるようになされるのであり、これには圧縮板6の長さ方向へ平行 に配設した螺杆24に対し該スクレーパー23の支軸を螺合させ、モータ25の 駆動で螺杆24を回動させることにより行わしめるのであり、モータ25の正転 ・逆転で該スクレーパー23は左右動させられるものとなる。なお、図面で26 a及び26bは螺杆24を支承してなるブラケットである。In this embodiment, a large number of permanent magnets 22 are buried on the back side of the compression plate 6, and the compression plate 6 is pressed against a portion of the plate 6 corresponding to the weir plate 21. A concave groove m into which the locking projection 21 is sometimes fitted is provided. Reference numeral 23 denotes a scraper, whose right end extends from one end to the other end (FIG. 6 in the illustrated example) so as to come into contact with the bottom surface of the compression plate 6 near the upper limit position which has risen after the crushing operation of the compression plate 6 is completed. From the left end to the left end. The support shaft of the scraper 23 is screwed into a screw rod 24 disposed parallel to the length direction of the compression plate 6, and the drive of the motor 25 is performed. The scraper 23 can be moved left and right by the forward and reverse rotations of the motor 25. In the drawing, reference numerals 26a and 26b denote brackets which support the screw 24.

【0018】 次に、圧縮処理後の空缶の分別処理作業を図5,図6に基づいて説明する。 本例では押潰作業でアルミ缶は永久磁石22の磁力作用を受けずに開閉板Oの 開放により、そのまま落下して回収容器3b内へ堆積処理されるものとなる。Next, the work of sorting empty cans after the compression processing will be described with reference to FIGS. In this example, the aluminum can is crushed and falls without being affected by the magnetic force of the permanent magnet 22 by the opening of the opening / closing plate O, and is dropped and deposited in the collection container 3b.

【0019】 これに対し、スチール缶は、圧縮板6の裏面側へその永久磁石25の磁力作用 により吸着された状態となっており、従って圧縮板6が上昇されたさいスクレー パー23を左方向に移動させることにより、吸着された空缶を圧縮板6の底面に 沿って移動させ、永久磁石22の磁力作用を受けない領域で、図示例では回収容 器3bの箇所でその容器内へ落下させるようになすのである。On the other hand, the steel can is in a state of being attracted to the back side of the compression plate 6 by the magnetic action of the permanent magnet 25, and therefore, when the compression plate 6 is raised, the scraper 23 is moved to the left. In this case, the adsorbed empty can is moved along the bottom surface of the compression plate 6 and dropped into the container at the location of the container 3b in the illustrated example in a region not affected by the magnetic force of the permanent magnet 22. It is made to do.

【0020】[0020]

【考案の効果】[Effect of the invention]

本考案は以上の通り構成するのであって、請求項1記載によれば、空缶の投入 から圧縮まで一連の処理作業が安全且つ迅速に行えるものとなる。 The present invention is configured as described above, and according to the first aspect, a series of processing operations from charging of an empty can to compression can be performed safely and promptly.

【0021】 本考案の請求項2記載によれば、空缶の投入から圧縮及び分別までの一連の処 理作業が安全且つ迅速に行えると共に、分別処理に於いても適確に行える上で著 効となすものとなる。According to the second aspect of the present invention, a series of processing operations from the charging of empty cans to the compression and separation can be performed safely and quickly, and the separation processing can be performed accurately. Will be effective.

【0022】 また、請求項3及び4記載によれば、空缶回収容器は各々の高さ及び形状に適 宜対応して設置することが可能となると共に、空缶回収作業を簡便且つ迅速に行 えるものとなるのである。Further, according to the third and fourth aspects, the empty can collection container can be installed corresponding to each height and shape appropriately, and the empty can collection work can be performed simply and quickly. You can do it.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本考案に係る廃棄物回収装置の斜視図である。FIG. 1 is a perspective view of a waste collection device according to the present invention.

【図2】本考案に係る圧縮装置の部分説明及び構成図で
ある。
FIG. 2 is a partial description and configuration diagram of the compression device according to the present invention.

【図3】本考案に係る圧縮装置の部分説明及び構成図で
ある。
FIG. 3 is a partial description and configuration diagram of the compression device according to the present invention.

【図4】本考案に係る廃棄物回収装置で回収容器を2箇
並設させた場合の斜視図である。
FIG. 4 is a perspective view of the waste collection apparatus according to the present invention when two collection containers are arranged in parallel.

【図5】図4に於ける圧縮装置の部分説明図である。FIG. 5 is a partial explanatory view of the compression device in FIG. 4;

【図6】図4に於ける圧縮装置の部分説明図である。FIG. 6 is a partial explanatory view of the compression device in FIG.

【符号の説明】[Explanation of symbols]

1 回収装置 2 圧縮装置 3 回収容器 4 取付け基台 5 載置台 6 圧縮板 7 螺杆軸ネジ 8 ナット体 9a,9b 上下作動レバー 10 モーター 11 押潰装置 12、13,14 係合ピン 15,16、17 係合ピン 18 梁板 19 ガイド棒 20 係止板 21 突状体 22 永久磁石 23 スクレーパー 24 螺杆 25 モータ 26a,26b ブラケット REFERENCE SIGNS LIST 1 collection device 2 compression device 3 collection container 4 mounting base 5 mounting table 6 compression plate 7 screw screw 8 nut body 9a, 9b up / down operation lever 10 motor 11 crushing device 12, 13, 14 engagement pin 15, 16, DESCRIPTION OF SYMBOLS 17 Engagement pin 18 Beam plate 19 Guide rod 20 Locking plate 21 Protrusion 22 Permanent magnet 23 Scraper 24 Screw 25 Motor 26a, 26b Bracket

Claims (4)

【実用新案登録請求の範囲】[Utility model registration claims] 【請求項1】 回収装置上に圧縮装置を脱着可能状態に
配設し、回収装置は直方体容器に形成すると共に、圧縮
装置は底板を20°〜50°程度の傾斜を有する投入室
と圧縮室を此の順序に直列配設したものとなし、一方投
入室と圧縮室間には仕切板を設け、該仕切板と投入室の
投入扉を逆関係に開閉動するように連動させ、且つ圧縮
室にはパンタグラフ機構の伸縮動作で昇降作用する押圧
板を備えたものとなすほか、圧縮室の傾斜壁面を開閉板
の構成となしたことを特徴とする空缶等の廃棄物回収処
理装置。
1. A compression device is provided on a collection device in a detachable state, the collection device is formed in a rectangular parallelepiped container, and the compression device has an input chamber and a compression chamber whose bottom plate has an inclination of about 20 ° to 50 °. In this order, a partition plate is provided between the input chamber and the compression chamber, and the partition plate and the input door of the input chamber are interlocked so as to be opened and closed in an opposite relationship, and the compression is performed. A waste collection device for empty cans and the like, characterized in that the chamber is provided with a pressing plate that moves up and down by the expansion and contraction operation of the pantograph mechanism, and the inclined wall of the compression chamber is configured as an open / close plate.
【請求項2】 回収装置は回収容器を横に2箇並設した
ものとなすと共に、圧縮装置は圧縮室の押圧板に磁石を
埋設して、スチール缶を吸着可能となすほか、並設した
回収容器側へ向って押圧板の下面と当接状態に移動する
スクレーパ機構を備えたものとなしたことを特徴とする
請求項1記載の空缶等の廃棄物回収処理装置。
2. The collecting device has two collecting containers arranged side by side, and the compressing device has magnets buried in a pressing plate of a compression chamber so that a steel can can be adsorbed, and the collecting device is arranged in parallel. 2. The waste collection and disposal device for empty cans and the like according to claim 1, further comprising a scraper mechanism that moves toward the collection container and comes into contact with the lower surface of the pressing plate.
【請求項3】 圧縮装置を立設したガイドレールに案内
させて離脱可動となしたことを特徴とする請求項1又は
2記載の空缶等の廃棄物回収処理装置。
3. The waste collection and disposal apparatus for empty cans and the like according to claim 1, wherein the compression apparatus is guided by a guide rail provided upright and is made detachable.
【請求項4】 回収装置の下方付近に足踏みペダルを配
置させて、足踏動作により回収容器を前傾させて脱着可
能となしたことを特徴とする請求項1,2又は3記載の
空缶等の廃棄物回収処理装置。
4. The empty can according to claim 1, wherein a foot pedal is disposed near a lower portion of the collection device, and the collection container is tilted forward by a stepping action to be detachable. And other waste collection and processing equipment.
JP2000000649U 2000-02-10 2000-02-10 Waste collection and disposal equipment for empty cans, etc. Expired - Fee Related JP3070903U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2000000649U JP3070903U (en) 2000-02-10 2000-02-10 Waste collection and disposal equipment for empty cans, etc.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2000000649U JP3070903U (en) 2000-02-10 2000-02-10 Waste collection and disposal equipment for empty cans, etc.

Publications (1)

Publication Number Publication Date
JP3070903U true JP3070903U (en) 2000-08-22

Family

ID=43204268

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2000000649U Expired - Fee Related JP3070903U (en) 2000-02-10 2000-02-10 Waste collection and disposal equipment for empty cans, etc.

Country Status (1)

Country Link
JP (1) JP3070903U (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2018199579A (en) * 2018-09-12 2018-12-20 株式会社寺岡精工 Article recovery device
JP2019043742A (en) * 2017-09-05 2019-03-22 株式会社寺岡精工 Article recovery device
JP2022019801A (en) * 2020-08-11 2022-01-27 株式会社寺岡精工 Article recovery device
JP2022043184A (en) * 2017-02-14 2022-03-15 株式会社寺岡精工 Article recovering device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2022043184A (en) * 2017-02-14 2022-03-15 株式会社寺岡精工 Article recovering device
JP7216446B2 (en) 2017-02-14 2023-02-01 株式会社寺岡精工 Container recovery device
JP2019043742A (en) * 2017-09-05 2019-03-22 株式会社寺岡精工 Article recovery device
JP2018199579A (en) * 2018-09-12 2018-12-20 株式会社寺岡精工 Article recovery device
JP2022019801A (en) * 2020-08-11 2022-01-27 株式会社寺岡精工 Article recovery device

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