JP4551856B2 - Shrink packaging defect detection device - Google Patents

Shrink packaging defect detection device Download PDF

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JP4551856B2
JP4551856B2 JP2005300742A JP2005300742A JP4551856B2 JP 4551856 B2 JP4551856 B2 JP 4551856B2 JP 2005300742 A JP2005300742 A JP 2005300742A JP 2005300742 A JP2005300742 A JP 2005300742A JP 4551856 B2 JP4551856 B2 JP 4551856B2
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heat
film
packaged
shrinkable film
detection
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JP2007106471A (en
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健 野原
吉信 小林
仁三郎 大橋
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Nissin Foods Holdings Co Ltd
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本発明は、食品、食品以外の商品、又はそれらを収納した容器等(以下で「被包装物」と記す。)を、熱収縮性フィルムで包装したときに起こり得る不具合を検出できるシュリンク包装不良検出装置に関する。   The present invention relates to a defective shrink wrapping that can detect defects that may occur when food, non-food products, or containers that contain them (hereinafter referred to as “packages”) are packaged with a heat-shrinkable film. The present invention relates to a detection device.

シュリンク包装の技術として、例えば熱収縮性ポリプロピレン系樹脂等から成る熱収縮性フィルムを用いて、被包装物を包み込むことが知られている。図6(a)から(c)の順に示すように、被包装物Pを矢印Tで指した方向へ搬送し、この被包装物Pを追いかけるようにして、帯状の熱収縮性フィルムF0を供給する。そして、被包装物Pの下方で、熱収縮性フィルムF0の両側の縁同士を融着して継ぎ合せると、熱収縮性フィルムFが筒状になる。符号f0は、被包装物Pの縁同士を継ぎ合せた接合部を指している。   As a shrink wrapping technique, for example, it is known to wrap a package using a heat-shrinkable film made of a heat-shrinkable polypropylene resin or the like. As shown in the order of FIGS. 6A to 6C, the package P is conveyed in the direction indicated by the arrow T, and the band-shaped heat-shrinkable film F0 is supplied so as to follow the package P. To do. When the edges on both sides of the heat-shrinkable film F0 are fused and joined together under the package P, the heat-shrinkable film F becomes cylindrical. The code | symbol f0 points out the junction part which joined the edges of the to-be-packaged goods P together.

続いて、筒状の熱収縮性フィルムF1の一端f1を融着し、熱収縮性フィルムF1の途中f2を切断すると同時に融着すると、熱収縮性フィルムF1は被包装物Pを内包した袋状となる。このような袋状の熱収縮性フィルムFと共に被包装物Pを、例えばベルトコンベアに載せ、ヒートトンネルに搬入する等して加熱すると、熱収縮性フィルムFが収縮し、被包装物Pに密着することになる。尚、熱収縮性フィルムFには、その内部に残留する空気を収縮の過程で大気へ逃がせるように、図に表れていない複数の通気孔が形成されている。   Subsequently, one end f1 of the tubular heat-shrinkable film F1 is fused, and when f2 is cut at the same time while f2 is cut in the middle of the heat-shrinkable film F1, the heat-shrinkable film F1 has a bag shape containing the package P. It becomes. When the package P is heated together with such a bag-shaped heat-shrinkable film F by, for example, placing it on a belt conveyor and carrying it into a heat tunnel, the heat-shrinkable film F shrinks and adheres to the package P. Will do. The heat-shrinkable film F is formed with a plurality of air holes not shown in the figure so that air remaining in the heat-shrinkable film F can escape to the atmosphere during the shrinkage process.

下記の特許文献1,2には、放電管を用いてヒートトンネル内における被包装物の有無を検出する技術が開示されている。また、下記の特許文献3には、透明容器に透明フィルムが正常に装着できているか否かを検査する技術が開示されている。これは、互いに対向する光源と2次元カラーイメージセンサーとの間に、更に互いに対面する2枚の偏光板を配置し、これら2枚の偏光板の間を、透明フィルムが装着された透明容器が透過するときに、光源から照射される白色光が透明フィルムによって呈色する干渉色を、2次元カラーイメージセンサーにて監視するものである。
特開平5−262329号公報 特開平6−278723号公報 特開平9−072861号公報
Patent Documents 1 and 2 below disclose techniques for detecting the presence or absence of an object to be packaged in a heat tunnel using a discharge tube. Patent Document 3 below discloses a technique for inspecting whether or not a transparent film can be normally attached to a transparent container. This is because two polarizing plates facing each other are further arranged between the light source and the two-dimensional color image sensor facing each other, and a transparent container with a transparent film is transmitted between the two polarizing plates. Sometimes, a two-dimensional color image sensor monitors an interference color in which white light emitted from a light source is colored by a transparent film.
JP-A-5-262329 JP-A-6-278723 Japanese Patent Laid-Open No. 9-072861

上記のようなシュリンク包装の工程において、熱収縮性フィルムFの接合部f0,f1又はf2の融着が不完全である場合、或いは、熱収縮性フィルムFの一部が破れている等の封止不良が起こることがある。封止不良の有る熱収縮性フィルムFを加熱すると、シュリンク包装が不完全なものとなり、或いは加熱後に熱収縮性フィルムFに皺ができるという不具合が起こる。そして、これらの不具合は、目視によってオペレータが一つ一つ排除する必要があった。   In the shrink wrapping process as described above, when the fusing of the joints f0, f1 or f2 of the heat shrinkable film F is incomplete, or the heat shrinkable film F is partially broken. Stop failure may occur. When the heat-shrinkable film F with poor sealing is heated, the shrink wrapping becomes incomplete, or the heat-shrinkable film F is wrinkled after heating. And these troubles had to be eliminated one by one by visual inspection.

また、特許文献1,2に記載の放電管は、熱収縮性フィルムの封止不良を検出することはできない。特許文献3に係る技術は、被包装物(容器)が透明なものでなければ、被包装物にて白色光が遮られるので、上記の封止不良を検出することができない。   Further, the discharge tubes described in Patent Documents 1 and 2 cannot detect a sealing failure of the heat-shrinkable film. In the technique according to Patent Document 3, if the object to be packaged (container) is not transparent, white light is blocked by the object to be packaged, and thus the above-described sealing failure cannot be detected.

そこで、本発明は、袋体状に封止された熱収縮性フィルムを加熱してシュリンク包装する場合において、該袋体が空気の熱膨張により一旦膨らんだ後に収縮する特性に着目し、熱収縮性フィルムの封止不良を確実に検出できるシュリンク包装不良検出装置を提供することを目的とする。   Accordingly, the present invention focuses on the characteristic that when a heat-shrinkable film sealed in a bag shape is heated and shrink-wrapped, the bag body once expands due to the thermal expansion of air, and then contracts. It aims at providing the shrink packaging defect detection apparatus which can detect the sealing defect of an adhesive film reliably.

本発明は、通気孔を有する袋状の熱収縮性フィルムに空気と共に内包された被包装物を1個ずつ順番に搬送する搬送手段と、前記被包装物が前記搬送手段によって搬送される過程で前記熱収縮性フィルムを加熱する加熱手段と、を備えるシュリンク包装装置に設けられ、前記熱収縮性フィルムの封止不良を検出するシュリンク包装不良検出装置であって、前記搬送手段によって搬送される個々の前記被包装物を検出する非接触型の光電センサを備えた被包装物検出手段と、前記加熱手段によって前記空気が熱膨張して個々の前記被包装物の周りに膨れる熱収縮性フィルムを検出する非接触型の光電センサを備えた膨張度合を検知するフィルム検出手段とを備え、前記被包装物検出手段及び前記フィルム検出手段は、前記被包装物が前記加熱手段を通過する過程の所定位置に互いに高さを違えて配設されていることを特徴とする。 The present invention relates to a conveying means for sequentially conveying the objects to be packaged enclosed with air in a bag-like heat-shrinkable film having a vent hole, and a process in which the objects to be packaged are conveyed by the conveying means. A shrink wrapping failure detection device for detecting a sealing failure of the heat shrinkable film, provided in a shrink wrapping device provided with a heating means for heating the heat shrinkable film, each of which is transported by the transport means A non-contact type photoelectric sensor for detecting the package to be packaged, and a heat-shrinkable film that expands around the individual packages by thermal expansion of the air by the heating unit. a film detecting means for detecting an expansion degree with a photoelectric sensor of non-contact type detecting, the articles to be packaged detecting means and the film detecting means, the objects to be packaged is the heating hands It characterized in that it is disposed Chigae the height from each other at a predetermined position of the process of passing through.

更に、本発明は、前記被包装物検出手段によって被包装物が検出された被包装物の内、前記フィルム検出手段によって前記熱収縮性フィルムが所定の度合に膨張していることが検知されなかった物を包装不良として分別する分別手段を有する。 Furthermore, the present invention is, among the pre-Symbol the packaged product to be packaged is detected by the package item detection unit, said heat-shrinkable film by the film detecting means is inflated to a predetermined degree is detected There is a sorting means for sorting the missing items as defective packaging.

更に、前記分別手段は、前記被包装物検出手段から送出される検出信号に基づいて1列に並んだ複数の被包装物の中から所定位置にある1つの被包装物を特定し、前記フィルム検出手段から送出されるフィルム検出信号に基づいて封止不良が有る熱収縮性フィルムを認識する制御装置からの情報に基づいて分別を行うことを特徴とする。 Further , the sorting means identifies one packaged object at a predetermined position from among a plurality of packaged objects arranged in a row based on a detection signal sent from the packaged object detecting means, and the film Sorting is performed based on information from a control device that recognizes a heat-shrinkable film having a sealing failure based on a film detection signal sent from a detection means .

更に、前記フィルム検出手段は、前記検出領域が前記被包装物に接近する方向、又は前記検出領域が前記被包装物から離れる方向に変位できることを特徴とする。   Furthermore, the film detection means can be displaced in a direction in which the detection area approaches the packaged object or in a direction in which the detection area moves away from the packaged object.

本発明に係るシュリンク包装不良検出装置によれば、シュリンク包装の工程で、被包装物の周りに袋状に包装した熱収縮性フィルムが一旦膨れ、その膨れる度合が所定の度合に達したことを、フィルム検出手段によって検出したことに基づき、熱収縮性フィルムが正常であることを確認できる。或いは、熱収縮性フィルムに封止不良があれば、その箇所から空気が抜けて熱収縮性フィルムの膨らむ度合が小さくなり、又は全く膨らまなくなるので、これに基づき、熱収縮性フィルムに封止不良が有ることを確認できる。   According to the shrink packaging defect detection device according to the present invention, in the shrink packaging process, the heat-shrinkable film wrapped in a bag shape around the packaged object once swells, and the degree of swelling reaches a predetermined degree. Based on the detection by the film detection means, it can be confirmed that the heat-shrinkable film is normal. Alternatively, if the heat-shrinkable film has poor sealing, the degree of expansion of the heat-shrinkable film will be reduced due to air escaping from that location, or it will not expand at all. Can be confirmed.

また、本発明に係るシュリンク包装不良検出装置は、搬送手段が被包装物を1個ずつ順に搬送し、これを被包装物検出手段によって検出して特定するので、1個ずつの被包装物毎に、その周りに熱収縮性フィルムが膨れる度合をフィルム検出手段によって検出することができる。これによって、搬送手段によって搬送される一つの被包装物とその他の被包装物とを区別できるので、一つの被包装物の周りに熱収縮性フィルムが膨れる度合をフィルム検出手段が検出するべきときに、同フィルム検出手段が、他の被包装物を内包する熱収縮性フィルムが膨れる度合を検出するという事態を回避することができる。   Further, in the shrink packaging defect detection device according to the present invention, the conveying means conveys the objects to be packaged one by one in order, and this is detected and specified by the object to be packaged. In addition, the degree of swelling of the heat-shrinkable film around it can be detected by the film detection means. As a result, it is possible to distinguish between one packaged item conveyed by the conveying unit and the other packaged items, so that the film detecting unit should detect the degree of expansion of the heat-shrinkable film around one packaged item. In addition, it is possible to avoid a situation in which the film detection means detects the degree to which the heat-shrinkable film that encloses another packaged object swells.

更に、当該シュリンク包装不良検出装置によれば、被包装物検出手段によって被包装物を検出して特定し、該特定した被包装物について、フィルム検出手段によってその周りに膨れる熱収縮性フィルムを検出するので、該特定した被包装物が正常であるか不良品であるかを識別でき、この識別データに従って正常品と不良品を分別することができる。従って、オペレータの目視に頼ることなく、上記の通りフィルム検出手段にて熱収縮性フィルムの封止不良の有無を確認した上で、封止不良の有る熱収縮性フィルムを、例えば廃棄するために確実に回収することができる。   Furthermore, according to the shrink packaging defect detection device, the package detection unit detects and identifies the package, and the film detection unit detects a heat-shrinkable film that swells around the identified package to be detected. Therefore, it can be identified whether the specified packaged item is normal or defective, and the normal product and the defective product can be separated according to the identification data. Therefore, without relying on the visual observation of the operator, after confirming the presence or absence of sealing failure of the heat-shrinkable film by the film detection means as described above, for example, to discard the heat-shrinkable film having the sealing failure It can be reliably recovered.

更に、本発明においては、当該シュリンク包装不良検出装置のフィルム検出手段として、空気の熱膨張によって被包装物の周りに膨れる熱収縮性フィルムを検出できる検出領域が画定された非接触型センサを適用することができる。この場合、非接触型センサを作動させるのにコンピューター等による複雑な制御が不要である。しかも、非接触型センサを、例えば既存のヒートトンネルに取付けるのに、ヒートトンネルに大掛かりな改造を施さなくて済むので、当該シュリンク包装不良検出装置を安価に設置できるという利点がある。   Furthermore, in the present invention, a non-contact type sensor in which a detection region capable of detecting a heat-shrinkable film that swells around a package due to thermal expansion of air is applied as film detection means of the shrink wrapping defect detection device. can do. In this case, complicated control by a computer or the like is not required to operate the non-contact type sensor. Moreover, since it is not necessary to make a major modification to the heat tunnel to attach the non-contact sensor to, for example, an existing heat tunnel, there is an advantage that the shrink packaging defect detection device can be installed at low cost.

更に、フィルム検出手段が、被包装物に対して検出領域を接近し、又は離す方向に変位できるように設置することもでき、この場合は次の利点が得られる。即ち、シュリンク包装が、寸法違いの複数種の熱収縮性フィルムの中から選択される熱収縮性フィルムを用いて行われる場合に、その熱収縮性フィルムが被包装物の周りに膨れる範囲(距離)の限界付近で熱収縮性フィルムを検出できる位置に、フィルム検出手段を予め移動させることができる。これにより、熱収縮性フィルムの寸法が替わっても、以上に述べた効果を達成することができる。   Furthermore, the film detection means can be installed so that the detection area can be moved toward or away from the package, and in this case, the following advantages can be obtained. That is, when shrink wrapping is performed using a heat-shrinkable film selected from a plurality of types of heat-shrinkable films having different dimensions, the range (distance) in which the heat-shrinkable film swells around the package The film detecting means can be moved in advance to a position where the heat-shrinkable film can be detected in the vicinity of the limit. Thereby, even if the dimension of a heat-shrinkable film changes, the effect described above can be achieved.

本発明の実施の形態に係るシュリンク包装不良検出装置について図面を参照しながら説明する。以下で、ベルトコンベヤ、ヒートトンネル、センサ類、及び制御装置のような自明の要素については、その詳細な説明又は図示を省略する。   A shrink packaging defect detection device according to an embodiment of the present invention will be described with reference to the drawings. In the following, detailed descriptions or illustrations of obvious elements such as belt conveyors, heat tunnels, sensors, and control devices are omitted.

図1(a),(b)は、本発明に係るシュリンク包装不良検出装置1を、シュリンク包装装置2に取付けた例を示している。シュリンク包装装置2は、袋状の熱収縮性フィルムFに空気と共に内包された被包装物Pを1個ずつ順番に矢印Tで指した方向へ搬送する搬送手段3と、被包装物Pが搬送される過程で熱収縮性フィルムFを加熱する加熱手段4とを備える。   FIGS. 1A and 1B show an example in which the shrink packaging defect detection device 1 according to the present invention is attached to a shrink packaging device 2. The shrink wrapping apparatus 2 includes a transport means 3 for transporting the articles to be packaged P enclosed in the bag-like heat-shrinkable film F together with air in the direction indicated by the arrow T one by one, and the articles to be packaged P being conveyed. And heating means 4 for heating the heat-shrinkable film F in the process.

搬送手段3は、被包装物Pを載せられる無端状ベルト31を、複数の回転輪32に巻掛けしたベルトコンベヤである。この他、被包装物Pを水平方向に搬送できるものであれば、搬送手段3としてローラコンベヤ等を適用しても良い。加熱手段4は、ヒートトンネル41を主体とし、その内部を搬送手段3にて搬送される被包装物Pが通過する。加熱手段4の熱源としては温風の他に、熱収縮性フィルムFを良好に加熱できれば、搬送手段3の近傍に電熱線を設ける等しても良い。   The conveying means 3 is a belt conveyor in which an endless belt 31 on which an article to be packaged P is placed is wound around a plurality of rotating wheels 32. In addition, a roller conveyor or the like may be applied as the transport means 3 as long as the article to be packaged P can be transported in the horizontal direction. The heating means 4 has a heat tunnel 41 as a main body, and an article P to be packaged conveyed by the conveying means 3 passes through the inside of the heating tunnel 41. As a heat source for the heating means 4, in addition to warm air, a heating wire may be provided in the vicinity of the conveying means 3 as long as the heat-shrinkable film F can be heated satisfactorily.

シュリンク包装不良検出装置1は、図2,3に示すように、搬送手段3によって1個ずつ順に搬送される被包装物Pを個々に検出して特定する被包装物検出手段5と、被包装物Pの周りに膨張する熱収縮性フィルムFを検知するフィルム検出手段6を備える。   As shown in FIGS. 2 and 3, the shrink packaging defect detection device 1 includes a package detection unit 5 that individually detects and identifies the packages P to be transported one by one by the transport unit 3, and a package Film detecting means 6 for detecting the heat-shrinkable film F expanding around the object P is provided.

被包装物検出手段5、又はフィルム検出手段6には、それぞれ光電センサ、近接センサ、又は超音波センサ等の非接触型センサを適用できる。本実施例では、レーザー光線、赤外線等の光を照射する発光素子51,61と、発光素子51,61が照射した光を検出する検出部52,62とから構成される光電センサを、それぞれ被包装物検出手段5又はフィルム検出手段6として適用する。光電センサの検出方式には、反射型(回帰反射型)を適用するのが検出精度を向上する観点から好ましいが、特に限定されることはない。   A non-contact type sensor such as a photoelectric sensor, a proximity sensor, or an ultrasonic sensor can be applied to the packaged object detection means 5 or the film detection means 6, respectively. In the present embodiment, a photoelectric sensor including light emitting elements 51 and 61 that emit light such as laser light and infrared rays and detection units 52 and 62 that detect light emitted from the light emitting elements 51 and 61 is packaged. It applies as the object detection means 5 or the film detection means 6. A reflection type (regression reflection type) is preferably applied to the photoelectric sensor detection method from the viewpoint of improving detection accuracy, but is not particularly limited.

例えば、光電センサの検出方式が対向透過型であるならば、ヒートトンネル41の両側に、レーザー光線、赤外線等の光を透過させる窓をそれぞれ設けるようにする。そして、図1(b)に示すように、ヒートトンネル41の一方の外側部にフィルム検出手段6の発光素子61を配置し、ヒートトンネル41の他方の外側部に検出部62を配置する。これらと同様に、被包装物検出手段5の発光素子51、及び検出部52もそれぞれ配置されるが、図示は省略する。上記の窓とは、ヒートトンネル41の側部に形成した孔でも良いが、又はこの孔に透明カバーを取付けたものがより好ましい。尚、光電センサが耐熱性のものである場合には、光電センサをヒートトンネル41の内部に配置することもでき、この場合、窓を設けなくても良いことは言うまでもない。   For example, if the detection method of the photoelectric sensor is a counter-transmission type, windows for transmitting light such as laser light and infrared light are provided on both sides of the heat tunnel 41, respectively. Then, as shown in FIG. 1B, the light emitting element 61 of the film detection means 6 is arranged on one outer side of the heat tunnel 41, and the detection unit 62 is arranged on the other outer side of the heat tunnel 41. Similarly to these, the light emitting element 51 and the detection unit 52 of the package detection means 5 are also arranged, but the illustration is omitted. The window may be a hole formed in the side portion of the heat tunnel 41, or more preferably a transparent cover attached to the hole. In addition, when a photoelectric sensor is heat-resistant, it can also be arrange | positioned inside the heat tunnel 41, and it cannot be overemphasized that a window does not need to be provided in this case.

上記の通り、被包装物検出手段5とフィルム検出手段6との構成は略同様であるが、図2に示すように、被包装物検出手段5とフィルム検出手段6とは、互いに高さを違えている。このため、ヒートトンネル41の点xで指した所定位置に被包装物Pが達したとき、被包装物検出手段5は、被包装物Pを検出して検出信号を送出する。また、フィルム検出手段6は、ドットで示した検出領域8に熱収縮性フィルムFが進入したとき、熱収縮性フィルムFを検出してフィルム検出信号を送出する。これらの信号は図3に示す制御装置9に送信される。制御装置9については後述する。   As described above, the configurations of the package detection unit 5 and the film detection unit 6 are substantially the same. However, as shown in FIG. 2, the package detection unit 5 and the film detection unit 6 have a height different from each other. It is wrong. For this reason, when the article to be packaged P reaches the predetermined position indicated by the point x of the heat tunnel 41, the article to be packaged detecting means 5 detects the article to be packaged P and sends a detection signal. Further, when the heat-shrinkable film F enters the detection area 8 indicated by dots, the film detection means 6 detects the heat-shrinkable film F and sends a film detection signal. These signals are transmitted to the control device 9 shown in FIG. The control device 9 will be described later.

或いは、上記の光電センサが反射形である場合は、発光素子61と検出部62とを、互いに隣接させてヒートトンネル41の一方の外側部に配置し、発光素子61が照射した光を検出部62へ反射させるリフレクタを、ヒートトンネル41の他方の側部に配置する。また、上記の光電センサとして、包装不良の度合まで検出可能な幅広の帯状検出エリアを有するエリアセンサを適用しても良い。また、熱収縮性フィルムFの素地が透明である場合は、従来技術として述べた偏光効果を利用する光電センサ、又は拡散反射型の光電センサを適用しても良い。   Alternatively, when the photoelectric sensor is of a reflective type, the light emitting element 61 and the detection unit 62 are arranged on one outer side of the heat tunnel 41 so as to be adjacent to each other, and the light irradiated by the light emitting element 61 is detected by the detection unit. A reflector that reflects to 62 is disposed on the other side of the heat tunnel 41. Moreover, you may apply the area sensor which has a wide strip | belt-shaped detection area which can be detected to the extent of packaging defect as said photoelectric sensor. In addition, when the base of the heat-shrinkable film F is transparent, a photoelectric sensor using the polarization effect described as the prior art or a diffuse reflection type photoelectric sensor may be applied.

図示を省略しているが、フィルム検出手段6を上下方向に変位できるようヒートトンネル41に取付けても良い。例えば、ヒートトンネル41の両方の外側部に、それぞれ上下方向に並ぶ複数の螺子孔を形成し、これらの螺子孔の中から選択される何れかの螺子孔に螺合するボルトを介して、発光素子51,61と検出部52,62とを、それぞれヒートトンネル41に固定しても良い。   Although not shown, the film detecting means 6 may be attached to the heat tunnel 41 so that it can be displaced in the vertical direction. For example, a plurality of screw holes arranged in the vertical direction are formed on both outer portions of the heat tunnel 41, and light is emitted through bolts that are screwed into any of the screw holes selected from these screw holes. The elements 51 and 61 and the detection units 52 and 62 may be fixed to the heat tunnel 41, respectively.

次に、シュリンク包装不良検出装置1の動作を説明する。図2に示すように、搬送手段3は、袋状の熱収縮性フィルムFに内包された被包装物Pを、矢印Tで指した方向に1列に並べた状態で搬送する。この過程で、1列に並んだ被包装物Pが、1個ずつ順番にヒートトンネル41の所定位置を通過する毎に、被包装物Pを被包装物検出手段5が検出して検出信号を送出するので、この検出信号に基づいて、制御装置9は、1列に並んだ複数の被包装物Pの中から所定位置にある1つの被包装物Pを特定できる。   Next, operation | movement of the shrink packaging defect detection apparatus 1 is demonstrated. As shown in FIG. 2, the transport means 3 transports the articles to be packaged P contained in the bag-like heat-shrinkable film F in a state where they are arranged in a line in the direction indicated by the arrow T. In this process, each time the articles to be packaged P arranged in a row pass through a predetermined position of the heat tunnel 41 one by one in order, the article to be packaged P detecting means 5 detects the detection signal. Since it sends out, based on this detection signal, the control apparatus 9 can pinpoint one to-be-packaged object P in a predetermined position from the some to-be-packaged objects P arranged in 1 row.

また、個々に被包装物Pを内包した熱収縮性フィルムFが加熱手段4にて加熱されると、個々に被包装物Pの内部の空気も一緒に加熱されて膨張する。同時に、熱収縮性フィルムFの内部の空気は、熱収縮性フィルムFの通気孔から外方(大気)へ放出しようとするが、通気孔は直径1mm程のピンホールであるので、通気孔を通過できる空気の流量は限られている。このため、一時的に熱収縮性フィルムFの内部で空気の圧力が上昇することになるので、袋状の熱収縮性フィルムFが被包装物Pの周りへ膨らむことになる。   In addition, when the heat-shrinkable film F that individually encloses the article to be packaged P is heated by the heating means 4, the air inside the article to be packaged P is also individually heated and expanded. At the same time, the air inside the heat-shrinkable film F tries to be released to the outside (atmosphere) from the vent hole of the heat-shrinkable film F, but the vent hole is a pinhole having a diameter of about 1 mm. The flow rate of air that can pass is limited. For this reason, since the air pressure temporarily rises inside the heat-shrinkable film F, the bag-like heat-shrinkable film F swells around the package P.

図2中に点xで指した所定位置は、熱収縮性フィルムFが被包装物Pと共にヒートトンネル41に進入した後、袋状の熱収縮性フィルムFの膨らむ度合が最大になる時期、言い換えると、被包装物Pの周りに膨らむ熱収縮性フィルムFの範囲(距離)が限界に達する時期を見計らって設定されている。このように熱収縮性フィルムFが最大に膨らむ度合は、熱収縮性フィルムFに封止不良が無ければ、その元の寸法又は形状によりある程度決まっているので、フィルム検出手段6は、熱収縮性フィルムFが被包装物Pから膨れる範囲の限界付近に検出領域8が合致するように、ヒートトンネル41に対して位置決めされる。被包装物Pから膨れる範囲には、上下、水平方向、及び図面の奥行き方向が含まれる。   The predetermined position indicated by the point x in FIG. 2 is the time when the degree of swelling of the bag-like heat-shrinkable film F is maximized after the heat-shrinkable film F enters the heat tunnel 41 together with the package P. And the time (distance) of the heat-shrinkable film F that swells around the article to be packaged P is set in anticipation of reaching the limit. Thus, since the degree to which the heat-shrinkable film F swells to the maximum is determined to some extent by its original size or shape if the heat-shrinkable film F has no sealing failure, the film detecting means 6 has a heat-shrinkable property. The film F is positioned with respect to the heat tunnel 41 so that the detection region 8 matches the limit of the range in which the film F swells from the package P. The range that swells from the package P includes the top and bottom, the horizontal direction, and the depth direction of the drawing.

従って、ヒートトンネル41の所定位置に達した1つの被包装物Pを制御装置9が検出した時点で、被包装物Pの周りに膨れる熱収縮性フィルムFを、フィルム検出手段6が検知してフィルム検出信号を送出したとき、このフィルム検出信号に基づいて、制御装置9は、熱収縮性フィルムFに封止不良が無く、熱収縮性フィルムFが正常であることを認識できる。   Accordingly, when the control device 9 detects one packaged object P that has reached a predetermined position in the heat tunnel 41, the film detecting means 6 detects the heat-shrinkable film F that swells around the packaged object P. When the film detection signal is transmitted, based on the film detection signal, the control device 9 can recognize that the heat-shrinkable film F has no sealing failure and the heat-shrinkable film F is normal.

更に、上記の通りフィルム検出手段6が上下方向に変位できるならば、被包装物Pに対してフィルム検出手段6の検出領域8を所望に接近させ、又は離すことができるので、次の利点が得られる。即ち、シュリンク包装が、寸法違いの複数種の熱収縮性フィルムFの中から選択した熱収縮性フィルムFを用いて行われる場合に、その熱収縮性フィルムFが被包装物Pの周りに膨れる範囲の限界付近で熱収縮性フィルムFを検出できる適切な位置に、フィルム検出手段6を予め移動させることができる。従って、熱収縮性フィルムFの寸法が替わっても、その熱収縮性フィルムFが正常であれば、フィルム検出手段6は熱収縮性フィルムFを適切に検出できる。   Furthermore, if the film detection means 6 can be displaced in the vertical direction as described above, the detection area 8 of the film detection means 6 can be brought close to or separated from the packaged object P as desired. can get. That is, when shrink wrapping is performed using a heat-shrinkable film F selected from a plurality of types of heat-shrinkable films F having different dimensions, the heat-shrinkable film F swells around the packaged object P. The film detecting means 6 can be moved in advance to an appropriate position where the heat-shrinkable film F can be detected near the limit of the range. Therefore, even if the dimensions of the heat-shrinkable film F are changed, if the heat-shrinkable film F is normal, the film detecting means 6 can appropriately detect the heat-shrinkable film F.

或いは、熱収縮性フィルムFに封止不良が有る場合、又は破れ等がある場合、これらの箇所から空気が漏れるので、熱収縮性フィルムFの内部の空気がヒートトンネル41で加熱されても、図4に示すように、熱収縮性フィルムFの膨らむ度合が小さくなり、又は熱収縮性フィルムFが全く膨らまなくなる。このため、被包装物検出手段5から検出信号が送出されることにより制御装置9が1つの被包装物Pを特定した時点で、その被包装物Pを内包する熱収縮性フィルムFはフィルム検出手段6の検出領域8まで届かない。従って、フィルム検出手段6からフィルム検出信号が送出されず、これに基づいて、制御装置9は、当該被包装物Pは熱収縮性フィルムFに封止不良が有ることを認識できる。   Alternatively, if the heat-shrinkable film F has a sealing failure, or if there is a tear or the like, air leaks from these locations, so even if the air inside the heat-shrinkable film F is heated by the heat tunnel 41, As shown in FIG. 4, the degree to which the heat-shrinkable film F swells becomes small, or the heat-shrinkable film F does not swell at all. For this reason, when the control device 9 specifies one package P by sending a detection signal from the package detection means 5, the heat-shrinkable film F containing the package P is detected by the film. It does not reach the detection area 8 of the means 6. Accordingly, the film detection signal is not sent from the film detection means 6, and based on this, the control device 9 can recognize that the heat-shrinkable film F has a sealing failure in the package P.

以上のように、シュリンク包装不良検出装置1によれば、搬送手段3が被包装物Pを搬送する過程で、被包装物P毎にその周りに膨れる熱収縮性フィルムFの有無をフィルム検出手段6で個別に判定でき、しかも、搬送手段3に搬送される1つの被包装物Pとその他の被包装物Pとを区別できる。従って、1つの被包装物Pの周りに膨れる熱収縮性フィルムFをフィルム検出手段6が検出するときに、フィルム検出手段6が、他の被包装物Pを内包する熱収縮性フィルムFを誤って検出するという事態にならない。   As described above, according to the shrink packaging defect detection device 1, in the process in which the transport unit 3 transports the package P, the presence or absence of the heat-shrinkable film F that swells around the package P is detected as a film detection unit. 6 can be individually determined, and one packaged article P conveyed to the conveying means 3 can be distinguished from the other packaged articles P. Therefore, when the film detection means 6 detects the heat-shrinkable film F that swells around one packaged object P, the film-detecting means 6 incorrectly detects the heat-shrinkable film F that contains another packaged object P. Will not be detected.

更に、封止不良が有る熱収縮性フィルムFと正常な熱収縮性フィルムFとを、制御装置9で分別認識し、この情報に基づいて図1,3に示す分別手段7によって分別する。分別手段7は、ヒートトンネル41の出口付近の外部に設けられ、コンベヤの近傍に設置されるノズル71と、ノズル71に圧縮空気を供給するエアコンプレッサ72と、ノズル71とエアコンプレッサ72との間に介在し制御装置9の指令に従い開閉するソレノイド開閉弁73とを備える。   Further, the heat-shrinkable film F having a sealing failure and the normal heat-shrinkable film F are recognized and recognized by the control device 9, and are classified by the sorting means 7 shown in FIGS. The separating means 7 is provided outside the vicinity of the exit of the heat tunnel 41, a nozzle 71 installed in the vicinity of the conveyor, an air compressor 72 that supplies compressed air to the nozzle 71, and between the nozzle 71 and the air compressor 72. And a solenoid on-off valve 73 that opens and closes in accordance with a command from the control device 9.

正常な熱収縮性フィルムFに内包された被包装物Pが、搬送手段3にて搬送されノズル71の近傍を通過する間は、ソレノイド開閉弁73が閉じられているので、正常な熱収縮性フィルムFと共に被包装物Pは搬送手段3にて搬送され続ける。そして、封止不良が有る熱収縮性フィルムFに内包された被包装物Pが、ノズル71の近傍を通過しようとすると、制御装置9がソレノイド開閉弁73を開くので、ノズル71から噴射される圧縮空気によって封止不良が有る熱収縮性フィルムFと共に被包装物Pが吹き飛ばされ、搬送手段3から落下する。この後、封止不良が有る熱収縮性フィルムFと共に被包装物Pを、シュートで受け止める等して回収しても良い。   Since the solenoid opening / closing valve 73 is closed while the article P to be packaged contained in the normal heat-shrinkable film F is transported by the transport means 3 and passes through the vicinity of the nozzle 71, the normal heat-shrinkability is maintained. The article P to be packaged together with the film F is continuously conveyed by the conveying means 3. And if the to-be-packaged object P included in the heat-shrinkable film F having a sealing failure tries to pass through the vicinity of the nozzle 71, the control device 9 opens the solenoid opening / closing valve 73, so that it is injected from the nozzle 71. The package P is blown off together with the heat-shrinkable film F having a sealing failure by the compressed air, and falls from the conveying means 3. Then, you may collect | recover the to-be-packaged goods P with a chute | shoot etc. with the heat-shrinkable film F with a sealing defect.

また、ノズル71から圧縮空気を噴射されるタイミングは次のように設定される。例えば、搬送手段3が被包装物Pを搬送する速度が一定であれば、被包装物Pがヒートトンネル41の所定位置からノズル71の近傍を通過するまでの時間が判るので、制御装置9が、上記のように熱収縮性フィルムFに封止不良が有ることを確認した時点で、タイマ回路を始動させ、被包装物Pが所定位置からノズル71の近傍を通過するまでに要する時間が経過したところで、ソレノイド開閉弁73が開くようにしても良い。或いは、制御装置9に接続したロータリエンコーダ74により、搬送手段3の回転輪32が回転する角度を検出すれば、この角度に基づいて、制御装置9は、搬送手段3に搬送された被包装物Pの距離を算定できるので、被包装物Pがノズル71の近傍を通過する時点で、制御装置9がソレノイド開閉弁73を開くようにしても良い。   The timing at which the compressed air is injected from the nozzle 71 is set as follows. For example, if the speed at which the transport means 3 transports the package P is constant, the time until the package P passes through the vicinity of the nozzle 71 from a predetermined position of the heat tunnel 41 is known. When the heat-shrinkable film F is confirmed to have a sealing failure as described above, the timer circuit is started, and the time required for the article to be packaged P to pass through the vicinity of the nozzle 71 from a predetermined position has elapsed. The solenoid on-off valve 73 may be opened. Alternatively, if the rotary encoder 74 connected to the control device 9 detects the angle at which the rotating wheel 32 of the transport means 3 rotates, the control device 9 can transfer the packaged material transported to the transport means 3 based on this angle. Since the distance of P can be calculated, the control device 9 may open the solenoid opening / closing valve 73 when the article to be packaged P passes the vicinity of the nozzle 71.

尚、本発明はその趣旨を逸脱しない範囲で当業者の知識に基づき種々なる改良、修正、又は変形を加えた態様で実施できるものである。例えば、図2に示した被包装物検出手段5は、フィルム検出手段6の真上に位置するが、被包装物検出手段5を図中の左右にずらせて配置しても良い。また、分別手段7としては、被包装物Pに適時接触することにより、被包装物Pをコンベヤ上から退けるアーム、又はダンパーを適用しても良い。   It should be noted that the present invention can be implemented in variously modified, modified, or modified forms based on the knowledge of those skilled in the art without departing from the spirit of the present invention. For example, the package detection unit 5 shown in FIG. 2 is located directly above the film detection unit 6, but the package detection unit 5 may be shifted to the left and right in the drawing. Further, as the sorting means 7, an arm or a damper that retracts the article to be packaged P from the conveyor by contacting the article to be packaged P in a timely manner may be applied.

更に、図5に示すように、フィルム検出手段6が、赤外線又は超音波を熱収縮性フィルムFに反射させることにより、熱収縮性フィルムFまでの距離を計測できる測距センサであっても良い。この場合、測距センサ63をヒートトンネル41の天面付近に配置し、測距センサ63から熱収縮性フィルムFまでの距離hに基づき熱収縮性フィルムFの膨らむ度合を検出する。即ち、距離hが、所期の値(度合)に比較して大きいか、又は小さいかに基づき、封止不良の有無を判定することができる。また、被包装物検出手段5又は分別手段7を省略し、制御装置9が封止不良を確認したときに、ブザーを鳴らす等してオペレータに知らせるようにすることもできる。また、被包装物検出手段5の配置は、搬送手段3が被包装物Pを搬送する方向の前方、又は後方であっても良い。   Furthermore, as shown in FIG. 5, the film detection means 6 may be a distance measuring sensor that can measure the distance to the heat-shrinkable film F by reflecting infrared rays or ultrasonic waves on the heat-shrinkable film F. . In this case, the distance measuring sensor 63 is disposed near the top surface of the heat tunnel 41, and the degree of expansion of the heat shrinkable film F is detected based on the distance h from the distance measuring sensor 63 to the heat shrinkable film F. That is, the presence / absence of a sealing failure can be determined based on whether the distance h is larger or smaller than an intended value (degree). Further, the package detection means 5 or the sorting means 7 can be omitted, and when the control device 9 confirms a sealing failure, the operator can be notified by sounding a buzzer or the like. Further, the arrangement of the package detection means 5 may be forward or backward in the direction in which the conveyance means 3 conveys the package P.

本発明に係るシュリンク包装不良検出装置は、熱収縮フィルムの色、光の透過率又は反射率に影響されることなく、またあらゆる被包装物を内包する熱収縮フィルムについて、その封止不良を確実に検出することができる。   The shrink packaging defect detection device according to the present invention is not affected by the color, light transmittance, or reflectance of the heat shrink film, and reliably seals the heat shrink film that contains all the items to be packaged. Can be detected.

(a)は本発明の実施例1に係るシュリンク包装不良検出装置の一例の概略を示す正面図、(b)はその側面面。(A) is a front view which shows the outline of an example of the shrink packaging defect detection apparatus which concerns on Example 1 of this invention, (b) is the side surface. 本発明の実施例1に係るシュリンク包装不良検出装置の動作の一例を概念的に示す正面図。The front view which shows notionally an example of operation | movement of the shrink packaging defect detection apparatus which concerns on Example 1 of this invention. 本発明の実施例1に係るシュリンク包装不良検出装置の要部を示すブロック図。The block diagram which shows the principal part of the shrink packaging defect detection apparatus which concerns on Example 1 of this invention. 本発明の実施例1に係るシュリンク包装不良検出装置の動作の他例を概念的に示す正面図。The front view which shows notionally other examples of operation | movement of the shrink packaging defect detection apparatus which concerns on Example 1 of this invention. 本発明の実施例1に係るシュリンク包装不良検出装置の他例の概略を示す正面図。The front view which shows the outline of the other example of the shrink packaging defect detection apparatus which concerns on Example 1 of this invention. シュリンク包装の前工程を(a)乃至(c)の順に示した斜視図。The perspective view which showed the pre-process of shrink packaging in order of (a) thru | or (c).

符号の説明Explanation of symbols

1:シュリンク包装不良検出装置
2:シュリンク包装装置
3:搬送手段
4:加熱手段
5:被包装物検出手段
6:フィルム検出手段
7:分別手段
8:検出領域
F:熱収縮性フィルム
P:被包装物
1: Shrink wrapping detection device 2: Shrink wrapping device 3: Conveying means 4: Heating means 5: Packaged object detecting means 6: Film detecting means 7: Sorting means 8: Detection area F: Heat shrinkable film P: Packaged object

Claims (4)

通気孔を有する袋状の熱収縮性フィルムに空気と共に内包された被包装物を1個ずつ順番に搬送する搬送手段と、前記被包装物が前記搬送手段によって搬送される過程で前記熱収縮性フィルムを加熱する加熱手段と、を備えるシュリンク包装装置に設けられ、前記熱収縮性フィルムの封止不良を検出するシュリンク包装不良検出装置であって、
前記搬送手段によって搬送される個々の前記被包装物を検出する非接触型の光電センサを備えた被包装物検出手段と、
前記加熱手段によって前記空気が熱膨張して個々の前記被包装物の周りに膨れる熱収縮性フィルムの膨張度合を検知する非接触型の光電センサを備えたフィルム検出手段とを有し、
前記被包装物検出手段及び前記フィルム検出手段は、前記被包装物が前記加熱手段を通過する過程の所定位置に互いに高さを違えて配設されていることを特徴とするシュリンク包装不良検出装置。
Conveying means for sequentially conveying the objects to be packaged enclosed with air in a bag-like heat-shrinkable film having a vent hole, and the heat shrinkability in the process of conveying the objects to be packaged by the conveying means A shrink wrapping failure detection device that is provided in a shrink wrapping device comprising a heating means for heating a film and detects a sealing failure of the heat shrinkable film,
Packaged object detection means provided with a non-contact photoelectric sensor for detecting each of the packaged objects conveyed by the conveying means;
A film detecting means comprising a non-contact photoelectric sensor for detecting the degree of expansion of a heat-shrinkable film that expands around the respective packaging objects as the air is thermally expanded by the heating means ;
The shrink packaging defect detection device, wherein the packaged object detection means and the film detection means are arranged at different positions at predetermined positions in the process of passing the packaged object through the heating means. .
前記被包装物検出手段によって被包装物が検出された被包装物の内、前記フィルム検出手段によって前記熱吸収性フィルムが所定の度合に膨張していることが検知されなかった物を包装不良として分別する分別手段を有する請求項1に記載のシュリンク包装不良検出装置。   Out of the packages to be packaged whose packages have been detected by the packages to be packaged detection means, those that have not been detected by the film detector to have the heat absorbing film expanded to a predetermined degree are regarded as defective packaging. The shrink packaging defect detection device according to claim 1, further comprising a sorting unit for sorting. 前記分別手段は、前記被包装物検出手段から送出される検出信号に基づいて1列に並んだ複数の被包装物の中から所定位置にある1つの被包装物を特定し、前記フィルム検出手段から送出されるフィルム検出信号に基づいて封止不良が有る熱収縮性フィルムを認識する制御装置からの情報に基づいて分別を行うことを特徴とする請求項に記載のシュリンク包装不良検出装置。 The sorting unit specifies one packaged object at a predetermined position from a plurality of packaged objects arranged in a line based on a detection signal sent from the packaged object detecting unit, and the film detecting unit The shrink packaging defect detection device according to claim 2 , wherein sorting is performed based on information from a control device that recognizes a heat-shrinkable film having a sealing failure based on a film detection signal sent from the device. 前記フィルム検出手段は、前記検出領域が前記被包装物に接近する方向、又は前記検出領域が前記被包装物から離れる方向に変位できることを特徴とする請求項1から請求項のいずれか一つに記載のシュリンク包装不良検出装置。 The film detecting means is any one of claims 1 to 3, the direction the detecting region approaches the material to be packaged, or the detection region, characterized in that the displaceable in a direction away from the material to be packaged The shrink packaging defect detection device as described in 1.
JP2005300742A 2005-10-14 2005-10-14 Shrink packaging defect detection device Expired - Fee Related JP4551856B2 (en)

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JPH1111437A (en) * 1997-06-20 1999-01-19 Yakult Honsha Co Ltd Flaw detection method and device for package
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