JP2008230713A - Pneumatic carrying device for light vessel - Google Patents

Pneumatic carrying device for light vessel Download PDF

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JP2008230713A
JP2008230713A JP2007068185A JP2007068185A JP2008230713A JP 2008230713 A JP2008230713 A JP 2008230713A JP 2007068185 A JP2007068185 A JP 2007068185A JP 2007068185 A JP2007068185 A JP 2007068185A JP 2008230713 A JP2008230713 A JP 2008230713A
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container
air
guide rail
conveying
thrust
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JP4784536B2 (en
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Ryutaro Horinouchi
竜太郎 堀之内
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Mitsubishi Materials Techno Corp
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Mitsubishi Materials Techno Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a pneumatic carrying device for a light vessel capable of suppressing any wobbling or oscillating phenomenon of the container during the conveyance, reducing any wear of a guide rail, reducing the necessary conveying power, and smoothly conveying the container. <P>SOLUTION: In the pneumatic carrying device for the light vessel, a lower side of a flange part of a container W having the flange part 16 on a neck part 18 is supported by a guide rail 12, the air flow is applied to the container W, and the container is conveyed while allowing the flange part 16 of the container W to slide on an upper surface of the guide rail 12. Air ejection ports 8a are formed immediately below the guide rail 12, and the container W is subjected to the thrust in the conveying direction by the airflow jetted from the air ejection ports 8a, and at the same time, subjected to the thrust to the optimum conveying point of force in the descending direction, i.e., the horizontal direction. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、ペットボトル等の軽量容器の首部を支持して空気流による推進力で搬送する軽量容器の空気搬送装置に関するものである。   The present invention relates to an air conveyance device for a lightweight container that supports a neck portion of a lightweight container such as a PET bottle and conveys it with a propulsive force by an air flow.

従来、ペットボトル等の軽量容器を起立姿勢で搬送する搬送コンベアとして、容器の首部に形成されているフランジ部の下面を案内レールで支持すると共に、容器の後方から空気を吹き付けて、その推進力により案内レール上を滑らせて搬送するようにした空気搬送コンベア装置が知られており、例えば、特許文献1が開示されている。   Conventionally, as a conveyor for transporting lightweight containers such as PET bottles in an upright position, the lower surface of the flange formed on the neck of the container is supported by a guide rail, and air is blown from the rear of the container, and its propulsive force There is known an air conveyance conveyor device that is slid and conveyed on a guide rail. For example, Patent Document 1 is disclosed.

特許文献1の空気搬送コンベア装置は、案内レールの直下に空気噴射口が斜め上向きに設けられ、空気噴射口から容器の鍔部に向けて噴射される空気流により容器が進行方向の推力と共に、容器のフランジ部が浮上方向の推力を受けるように構成されており、搬送時に容器を浮上させることにより、フランジ部と案内レールとの摺動抵抗を軽減して容器の搬送エネルギー効率を向上するようにしている。   In the air conveyance conveyor device of Patent Document 1, the air injection port is provided obliquely upward directly below the guide rail, and the container is moved along with the thrust in the traveling direction by the air flow injected from the air injection port toward the buttocks of the container. The flange part of the container is configured to receive thrust in the rising direction, and by raising the container during transportation, the sliding resistance between the flange part and the guide rail is reduced and the transportation energy efficiency of the container is improved. I have to.

ところが、上記構成の空気搬送コンベア装置では、フランジ部を浮上させることによって容器の搬送負荷を軽減できるが、一方では、フランジ部が案内レールより浮上することで搬送容器のふらつきや首振り現象が発生し易くなっており、よって、容器搬送の安定性に欠けるという問題があった。
特開2002−137825号公報
However, in the air conveyor system having the above-described configuration, the container load can be reduced by raising the flange portion. Therefore, there is a problem that the stability of container transportation is lacking.
JP 2002-137825 A

本発明は、上記の問題点に鑑みなされたもので、搬送時の容器のふらつきや首振り現象を抑制し、容器を円滑に搬送できる軽量容器の空気搬送装置を提供することを目的としている。   The present invention has been made in view of the above-described problems, and an object of the present invention is to provide a lightweight container air transport apparatus that can smoothly transport a container while suppressing wobbling and swinging of the container during transport.

すなわち、請求項1に記載の発明は、首部にフランジ部が形成された容器のフランジ部下面を案内レールにて支持すると共に、前記容器に空気流を作用させて、前記案内レールの上面に前記容器のフランジ部を摺動させながら搬送する軽量容器の空気搬送装置において、前記案内レールの直下に空気噴射口を設け、当該空気噴射口より噴射される空気流により前記容器が搬送方向の推力を受けつつ、降下方向の推力を受けるように構成したことを特徴としている。   That is, according to the first aspect of the present invention, the lower surface of the flange portion of the container having the flange portion formed on the neck portion is supported by the guide rail, and an air flow is applied to the container so that the upper surface of the guide rail is In an air conveyance device for a lightweight container that conveys while sliding a flange portion of the container, an air injection port is provided immediately below the guide rail, and the container generates thrust in the conveyance direction by an air flow injected from the air injection port. It is characterized by being configured to receive thrust in the descending direction while receiving.

また、請求項2に記載の発明は、請求項1に記載の軽量容器の空気搬送装置において、前記空気噴射口が前記搬送方向に向けて、且つ、斜め下方に向けて設けられ、当該空気噴射口より噴射される空気の動圧が、水平方向搬送最適力点、すなわち、前記容器の肩部に作用するように成されていることを特徴としている。   According to a second aspect of the present invention, in the air conveying device for a lightweight container according to the first aspect, the air injection port is provided in the conveying direction and obliquely downward, and the air injection It is characterized in that the dynamic pressure of the air injected from the mouth acts on the horizontal conveyance optimum force point, that is, the shoulder of the container.

また、請求項3に記載の発明は、請求項1または請求項2の何れかに記載の軽量容器の空気搬送装置において、前記容器の搬送路の上部および両側部がカバー部材にて覆われていることを特徴としている。   According to a third aspect of the present invention, in the lightweight container pneumatic conveying device according to the first or second aspect, the upper and both sides of the conveying path of the container are covered with a cover member. It is characterized by being.

請求項1〜3に記載の発明によれば、空気噴射口より噴射される空気流により容器が搬送方向の推力を受けつつ、降下方向の推力を受けるように構成したので、降下方向に発生する推力により、容器搬送時のフランジ部の浮上が防止され、容器の浮上により生じる容器のふらつきや首振り現象を抑制して容器の搬送姿勢を安定化させることができる。これにより、容器を円滑に搬送することができる。   According to the first to third aspects of the present invention, the container is configured to receive the thrust in the descending direction while receiving the thrust in the transport direction by the air flow ejected from the air ejection port. Due to the thrust, the flange portion is prevented from floating during container transportation, and it is possible to stabilize the container transportation posture by suppressing the wobbling and swinging of the container caused by the container floating. Thereby, a container can be conveyed smoothly.

ところで、このような噴射空気により搬送される容器においては、支承点となるフランジ部と重心との間であって重心側近傍にあたる肩部は、噴射空気による推進力が最も有効に作用し、且つ、容器を搬送方向にふらつかせることなく安定的に搬送できる部位となる。
このため、請求項2に記載の発明のように、空気噴射口より噴射される空気の動圧が容器の肩部に作用するように構成すれば、上記のように、推進力が最も有効に作用する容器の肩部に推進動圧を集中することができ、且つ、空気噴射口が肩部に近接するように設けられているため、容器搬送エネルギーを有効に利用した効率的な搬送が可能となる。
また、容器の肩部(水平方向搬送最適力点)に推進動圧を集中させることにより、従来の搬送装置で発生していた容器フランジ部の案内レールへの過剰な押し付け力による案内レールの摩耗や搬送動力の増大を最小限に抑制することができる。
By the way, in such a container transported by the blast air, the propulsive force by the blast air is most effectively applied to the shoulder portion between the flange portion serving as a support point and the centroid and in the vicinity of the centroid side, and The container can be stably transported without causing the container to stagger in the transport direction.
For this reason, as described above, if the dynamic pressure of the air injected from the air injection port acts on the shoulder portion of the container, the propulsive force is most effective as described above. Propulsion dynamic pressure can be concentrated on the shoulder of the container that acts, and the air injection port is provided close to the shoulder, so that efficient transport using the container transport energy is possible. It becomes.
In addition, by concentrating the propulsive dynamic pressure on the shoulder of the container (horizontal conveyance optimum force point), the guide rail wear and tear caused by excessive pressing force on the guide rail of the container flange generated in the conventional conveyance device An increase in conveyance power can be suppressed to a minimum.

また、請求項3に記載の発明によれば、容器の搬送路の上部および両側部をカバー部材で覆ったので、異物が混入し易い空気ダクト内雰囲気から搬送路を隔離することができ、これにより容器の開口部から容器内部に異物が浸入するのを防止することができる。   Further, according to the invention described in claim 3, since the upper part and both sides of the conveyance path of the container are covered with the cover member, the conveyance path can be isolated from the atmosphere in the air duct where foreign substances are easily mixed. Thus, foreign matter can be prevented from entering the inside of the container from the opening of the container.

以下、図面に基づいて本発明の軽量容器の空気搬送装置の一実施形態を説明する。図1は空気搬送装置の内部構成を示し、図2は空気搬送装置の要部を示し、図3は上面視による搬送路を示し、図4は容器の搬送状態を示している。
尚、本実施形態では、上記軽量容器としてペットボトルが例示されている。
上記ペットボトルWは、上端に飲み口となる開口部15を有し、その下方にフランジ部16を設けた細径の首部18と、この首部18より下方に向けて徐々に拡径される肩部17と、この肩部17より底部21に至る大径の胴部19とを備えている。
Hereinafter, an embodiment of an air conveyance device for a lightweight container according to the present invention will be described with reference to the drawings. FIG. 1 shows an internal configuration of the air conveying device, FIG. 2 shows a main part of the air conveying device, FIG. 3 shows a conveying path in a top view, and FIG. 4 shows a container conveying state.
In the present embodiment, a PET bottle is exemplified as the lightweight container.
The plastic bottle W has an opening 15 serving as a drinking mouth at the upper end, a narrow neck 18 provided with a flange 16 below it, and a shoulder that gradually expands downward from the neck 18. A portion 17 and a large-diameter trunk portion 19 extending from the shoulder portion 17 to the bottom portion 21 are provided.

図1中、符号10は容器Wの搬送路5を覆う四角形状の空気ダクトで、この空気ダクト10内に、図示しない加圧空気供給源(例えば、送風機)から所定圧力の空気(加圧空気)がダクトを介して供給されるようになっている。   In FIG. 1, reference numeral 10 denotes a rectangular air duct that covers the conveyance path 5 of the container W. In the air duct 10, air of a predetermined pressure (pressurized air) is supplied from a pressurized air supply source (for example, a blower) (not shown). ) Is supplied via a duct.

この空気ダクト10内の左右の下部側壁には、容器Wの搬送路5に沿って固定フレーム1が設けられ、各々固定フレーム1の上面が空気ダクト10の幅方向に設けた取付部材4にネジ止めされていると共に、各々固定フレーム1の下面に、所定の間隔を持って相平行する一対の支持部材2、2が固定されている。そして、これらの支持部材2の内側端部、すなわち、空気ダクト10の幅方向の中央部に、容器Wの空気搬送機構20が配設されている。   A fixed frame 1 is provided on the left and right lower side walls in the air duct 10 along the conveyance path 5 of the container W, and each upper surface of the fixed frame 1 is screwed to a mounting member 4 provided in the width direction of the air duct 10. A pair of support members 2, 2 that are fixed and parallel to each other at a predetermined interval are fixed to the lower surface of the fixed frame 1. And the air conveyance mechanism 20 of the container W is arrange | positioned in the inner side edge part of these support members 2, ie, the center part of the width direction of the air duct 10. As shown in FIG.

また、図1、図4に示すように、容器Wの胴部19下部の近傍には、容器Wを両側より支持して起立姿勢で搬送される容器Wの横ぶれを防止するガイドレール3が所定の間隔を持って、各容器サイズに合わせて上下複数箇所(本実施形態においては3カ所)に設けられている。   As shown in FIGS. 1 and 4, in the vicinity of the lower portion of the body portion 19 of the container W, there is a guide rail 3 that supports the container W from both sides and prevents lateral shaking of the container W that is conveyed in a standing posture. It is provided at a plurality of upper and lower locations (three locations in this embodiment) according to the size of each container with a predetermined interval.

上記空気搬送機構20は、図2に示すように、容器Wが搬送される搬送路5を備え、そして、この搬送部5を含む搬送空間7を密閉に近い状態に維持している。この搬送空間7は、上部が密閉板14(カバー部材)で覆われ、且つ、両側部が取付部材4にネジ止めされた左右一対の固定部材6、6(カバー部材)にて覆われることにより形成されている。   As shown in FIG. 2, the air transport mechanism 20 includes a transport path 5 through which the container W is transported, and maintains the transport space 7 including the transport unit 5 in a state close to sealing. The transfer space 7 is covered with a sealing plate 14 (cover member) at the upper part and a pair of left and right fixing members 6 and 6 (cover members) screwed to the mounting member 4 at both sides. Is formed.

そして、各固定部材6の下部フランジ6aと各支持部材2の間には、空気案内用の溝8(案内溝8)が多数形成された長尺板状のノズル板9がそれぞれ搬送路5に沿って設けられていると共に、このノズル板9の上面に容器Wのフランジ部16の下面を両側より支持する一対の案内レール12、12が設けられ、これらノズル板9と案内レール12が締結部材13によりフランジ6aと支持部材2に挟持された状態で固定されている。
案内溝8の上部開口部が上記したフランジ部6aと案内レール12の下面にて塞がれることにより、空気噴射ノズル11が形成される。この空気噴射ノズル11の上流側端部は空気ダクト10内に開放されており、下流側端部の空気噴射口8aは容器W側に開放されている。
A long plate-like nozzle plate 9 in which a large number of air guiding grooves 8 (guide grooves 8) are formed between the lower flange 6 a of each fixing member 6 and each supporting member 2 is provided in the conveying path 5. A pair of guide rails 12 and 12 are provided on the upper surface of the nozzle plate 9 to support the lower surface of the flange portion 16 of the container W from both sides, and the nozzle plate 9 and the guide rail 12 are fastening members. 13 is fixed in a state of being sandwiched between the flange 6 a and the support member 2.
When the upper opening of the guide groove 8 is blocked by the flange 6a and the lower surface of the guide rail 12, the air injection nozzle 11 is formed. An upstream end portion of the air injection nozzle 11 is opened in the air duct 10, and an air injection port 8 a at the downstream end portion is opened on the container W side.

上記ノズル板9に設けた多数の案内溝8は、図3に示すように、平面視において、上流側端部から空気噴出口8a側に向けて漸次搬送方向側へと傾斜して設けられており、且つ、これらの案内溝8は、上記案内レール12の下面部分において、図2に示すように、斜め下方に傾斜させて形成され、これにより、空気噴射口8aから噴射される空気流による推力を容器Wの搬送方向に指向させると共に、容器搬送方向に対して斜め下方向、すなわち、水平方向搬送最適力点に指向させるようになっている。   As shown in FIG. 3, the plurality of guide grooves 8 provided in the nozzle plate 9 are provided so as to be gradually inclined toward the conveying direction side from the upstream end toward the air outlet 8 a in a plan view. In addition, these guide grooves 8 are formed on the lower surface portion of the guide rail 12 so as to be inclined obliquely downward as shown in FIG. 2, thereby causing the air flow injected from the air injection port 8 a. The thrust is directed in the conveyance direction of the container W and directed obliquely downward with respect to the container conveyance direction, that is, in the horizontal direction conveyance optimum force point.

また、本実施形態では、搬送空間7を形成する左右一対の固定部材6の高さ方向中央に、嵌め込み式の密閉板14を取り付けできるようになっており、図示しないが、この密閉板14に搬送空間7内の過剰動圧を回収する吸引板や、搬送方向と同一方向に空気を噴射する噴射口板、或いは搬送方向と反対方向に空気を噴射する噴射口板等を必要に応じて取り付けできるようになっている。   In the present embodiment, a fitting type sealing plate 14 can be attached to the center in the height direction of the pair of left and right fixing members 6 forming the conveyance space 7. A suction plate that collects excess dynamic pressure in the conveyance space 7, an injection plate that injects air in the same direction as the conveyance direction, an injection plate that injects air in the direction opposite to the conveyance direction, etc. are attached as necessary. It can be done.

上記構成の軽量容器の空気搬送装置では、加圧空気供給源(例えば、図示しない送風機)から供給される加圧空気が空気ダクト10内に導入されると、空気ダクト10内の加圧空気は、図4に示すように、案内溝8(すなわち、空気噴射ノズル11)を通して空気噴射口8aより容器Wの肩部17に向かって噴射され、この空気の動圧よって容器Wが搬送方向の推力を受け、容器Wは案内レール12に沿って搬送される。
この際に、このような噴射空気により搬送される容器Wにおいては、案内レール12により支持され、搬送容器の支承点となるフランジ部16と重心Pとの間であって重心P側近傍にあたる肩部17は、噴射空気による推進力が最も有効に作用し、且つ、容器Wを搬送方向にふらつかせることなく安定的に搬送できる部位となる。
In the air transport device for a lightweight container having the above-described configuration, when pressurized air supplied from a pressurized air supply source (for example, a blower (not shown)) is introduced into the air duct 10, the pressurized air in the air duct 10 is As shown in FIG. 4, the air is injected from the air injection port 8a toward the shoulder 17 of the container W through the guide groove 8 (that is, the air injection nozzle 11). The container W is conveyed along the guide rail 12.
At this time, the container W transported by such blast air is supported by the guide rail 12 and is located between the flange portion 16 serving as a supporting point of the transport container and the center of gravity P and in the vicinity of the center of gravity P side. The portion 17 is a portion where the propulsive force by the jet air is most effectively applied and the container W can be stably transported without causing the container W to fluctuate in the transport direction.

そして、本実施形態では、空気噴射ノズル11の先端側を斜め下方に傾斜させているので、空気噴射口8aより噴射される空気が肩部17に当たると、その動圧力により、容器Wが搬送方向の推力を受けつつ、容器Wのフランジ部16が降下方向の推力を受けることになり、この下方向の推力により、容器Wのフランジ部16の浮上が防止され、フランジ部16が案内レール12上に支持された状態で摺動する。この結果、容器Wが浮上することにより生じる容器Wのふらつきや首振り現象が抑制され、容器Wの搬送姿勢を安定化させることができる。これにより、容器Wを円滑に搬送することができるようになる。   And in this embodiment, since the front end side of the air injection nozzle 11 is inclined diagonally downward, when the air injected from the air injection port 8a hits the shoulder portion 17, the container W moves in the transport direction by the dynamic pressure. The flange portion 16 of the container W receives a thrust in the descending direction while receiving the thrust of this, and this downward thrust prevents the flange portion 16 of the container W from floating, and the flange portion 16 is on the guide rail 12. It slides in the state supported by. As a result, the wobbling or swinging phenomenon of the container W caused by the rising of the container W is suppressed, and the conveyance posture of the container W can be stabilized. Thereby, the container W can be transported smoothly.

また、搬送方向の両側に配置された空気噴射口8aより斜め下方向に噴射される空気は、最も有効な推進力の作用点にあたる容器Wの肩部17であって案内レール12間の中央部に集中し、且つ、空気噴射口8aが容器Wの肩部17に近接するように設けられているため、搬送に必要な動力(搬送エネルギー)を有効に利用した効率的で安定した搬送が可能となる。
また、容器の肩部に推進動圧を集中させることにより、従来の搬送装置で発生していた容器フランジ部の案内レールへの過剰な押し付け力による案内レールの摩耗や搬送動力の増大を最小限に抑制することができる。
Further, the air jetted obliquely downward from the air jet ports 8a arranged on both sides in the transport direction is the shoulder portion 17 of the container W corresponding to the point of action of the most effective propulsive force and the central portion between the guide rails 12. And the air injection port 8a is provided so as to be close to the shoulder 17 of the container W, so that efficient and stable transportation using the power necessary for transportation (transport energy) is possible. It becomes.
In addition, by concentrating the propulsive dynamic pressure on the shoulder of the container, the wear of the guide rail and the increase in transport power due to the excessive pressing force of the container flange on the guide rail, which has been generated in the conventional transport device, are minimized. Can be suppressed.

また、容器Wの搬送路5の上部と両側部を、カバー部材となる密閉板14と固定部材6で覆う構造としたので、異物が混入し易い空気ダクト10内雰囲気より搬送路5を隔離することができ、これにより、容器Wの開口部15から容器W内部に異物が浸入するのを防止することができる。   Further, since the upper portion and both side portions of the conveyance path 5 of the container W are covered with the sealing plate 14 serving as a cover member and the fixing member 6, the conveyance path 5 is isolated from the atmosphere in the air duct 10 in which foreign substances are easily mixed. Accordingly, it is possible to prevent foreign matter from entering the inside of the container W from the opening 15 of the container W.

また、図示しないが、搬送空間7を形成する左右一対の固定部材6を取付部材4よりフリーな構造とすると共に、密閉板14および支持部材2に伸縮自在なスライド部材を取り付けて、上記各固定部材6を幅方向に移動可能にすることにより、首部18の外径が異なる容器Wに対しても、自動または手動にて容易に型替えができるようになる。   Although not shown, the pair of left and right fixing members 6 forming the conveyance space 7 is structured to be freer than the mounting member 4, and an elastic slide member is attached to the sealing plate 14 and the supporting member 2 to fix each of the above-mentioned fixings. By making the member 6 movable in the width direction, it is possible to easily change the mold automatically or manually even for the containers W having different outer diameters of the neck portion 18.

本発明による軽量容器の空気搬送装置の一実施形態を示す縦断面図。The longitudinal cross-sectional view which shows one Embodiment of the air conveyance apparatus of the lightweight container by this invention. 図1の要部拡大図。The principal part enlarged view of FIG. 図1の搬送路を示す平面図。The top view which shows the conveyance path of FIG. 図1の空気搬送装置によって容器を搬送する状態を示す側面図。The side view which shows the state which conveys a container with the air conveying apparatus of FIG.

符号の説明Explanation of symbols

5 搬送路
6 カバー部材(固定部材)
8a 空気噴射口
12 案内レール
14 カバー部材(密閉板)
17 肩部
18 首部
16 フランジ部
W 容器
5 Transport path 6 Cover member (fixing member)
8a Air injection port 12 Guide rail 14 Cover member (sealing plate)
17 Shoulder 18 Neck 16 Flange W Container

Claims (3)

首部にフランジ部が形成された容器のフランジ部下面を案内レールにて支持すると共に、前記容器に空気流を作用させて、前記案内レールの上面に前記容器のフランジ部を摺動させながら搬送する軽量容器の空気搬送装置において、
前記案内レールの直下に空気噴射口を設け、当該空気噴射口より噴射される空気流により前記容器が搬送方向の推力を受けつつ、降下方向の推力を受けるように構成したことを特徴とする軽量容器の空気搬送装置。
The lower surface of the flange portion of the container having a flange portion formed on the neck portion is supported by the guide rail, and air is applied to the container, and the container is conveyed while sliding the flange portion of the container on the upper surface of the guide rail. In a pneumatic container for lightweight containers,
An air injection port is provided immediately below the guide rail, and the container is configured to receive a thrust in the descending direction while receiving a thrust in the transport direction by an air flow injected from the air injection port. Container air conveying device.
前記空気噴射口が前記搬送方向に向けて、且つ、斜め下方に向けて設けられ、当該空気噴射口より噴射される空気の動圧が前記容器の肩部に作用するように成されていることを特徴とする請求項1に記載の軽量容器の空気搬送装置。 The air injection port is provided in the conveying direction and obliquely downward, and is configured such that the dynamic pressure of air injected from the air injection port acts on the shoulder portion of the container. The air conveyance device of the lightweight container according to claim 1 characterized by things. 前記容器の搬送路の上部および両側部がカバー部材にて覆われていることを特徴とする請求項1または請求項2の何れかに記載の軽量容器の空気搬送装置。 The lightweight container pneumatic conveying apparatus according to claim 1, wherein an upper part and both side parts of the conveying path of the container are covered with a cover member.
JP2007068185A 2007-03-16 2007-03-16 Air transport device for lightweight containers Active JP4784536B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016088662A (en) * 2014-10-31 2016-05-23 三友機器株式会社 Container air carrying device

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05162852A (en) * 1991-08-06 1993-06-29 Simplimatic Eng Co Pneumatic bottle conveyor

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05162852A (en) * 1991-08-06 1993-06-29 Simplimatic Eng Co Pneumatic bottle conveyor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016088662A (en) * 2014-10-31 2016-05-23 三友機器株式会社 Container air carrying device

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