JP4815244B2 - Bottle inspection machine and bottle making equipment - Google Patents

Bottle inspection machine and bottle making equipment Download PDF

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JP4815244B2
JP4815244B2 JP2006087625A JP2006087625A JP4815244B2 JP 4815244 B2 JP4815244 B2 JP 4815244B2 JP 2006087625 A JP2006087625 A JP 2006087625A JP 2006087625 A JP2006087625 A JP 2006087625A JP 4815244 B2 JP4815244 B2 JP 4815244B2
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bottle
inspection
internal pressure
support surface
air
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JP2007263665A (en
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一人 松本
和也 前田
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Nihon Yamamura Glass Co Ltd
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Description

この発明は、びん底の底面の中央部が内方へ窪みその窪みを外周部が取り囲んでいるびんについて、びん底の平滑度合を検査するのに用いられるびん検査機と、そのびん検査機が用いられた製びん装置に関する。 The present invention, for bottles central portion of the bottom surface of the bottle bottom surrounds the outer periphery of the recess the recess inwardly, and bottle inspection machine used to test the smooth degree of the bottle bottom, the bottle inspection machine The present invention relates to a used bottle making apparatus.

従来、ガラスびんは、複数のセクションに分かれた製びん機により、セクション毎に個々の成形型を用いて同じガラスびんが一斉に製造される。各セクションで次々に製造されたガラスびんは、搬送系により最終の包装工程まで搬送される。製造されたガラスびんの中には、成形型の不良や製びん機の運転状態に起因した欠陥が発生する場合があり、搬送途中の検査工程では、複数の欠陥種目について欠陥の有無が検査される。 Conventionally, glass bottles, the bottle making machine which is divided into a plurality of sections, the same vial is prepared simultaneously using individual molds per section. The glass bottles produced one after another in each section are transported to the final packaging process by the transport system. In the manufactured glass bottles , there may be defects due to mold defects or bottle machine operating conditions. In the inspection process during transportation, the presence or absence of defects is inspected for multiple defect types. The

検査工程に設置される検査装置として、スターホイールの周囲に円陣に配置された複数の検査ステーションをもつ検査装置が採用されている(例えば特許文献1参照)。前記スターホイールは、周面に複数の切欠部を有し、各切欠部内へ次々に導入されたガラスびんは、スターホイールの間欠回転により各検査ステーションへ順送りされる。各検査ステーションには、検査機が個々に配設され、各検査機では、少なくとも1種類の欠陥種目について、欠陥の有無がそれぞれ検査される。検査の結果、欠陥をもつと判断されたガラスびんは、不良品として回収される。 As an inspection apparatus installed in the inspection process, an inspection apparatus having a plurality of inspection stations arranged in a circle around the star wheel is employed (for example, see Patent Document 1). The star wheel has a plurality of notches on the peripheral surface, and the glass bottles introduced one after another into each notch are sequentially fed to each inspection station by intermittent rotation of the star wheel. Each inspection station is individually provided with an inspection machine, and each inspection machine inspects whether or not there is a defect with respect to at least one type of defect item. Glass bottles determined to have defects as a result of inspection are collected as defective products.

特開2000−55831号公報JP 2000-55831 A

また、上記構成の検査装置により良品と判断されたガラスびんを適宜抜き取り、そのガラスびんについて底部の平滑度合が検査されている。抜き取ったガラスびんを表面が平滑な支持基板上に載置し、底部の全周にわたって隙間ゲージを差し込み、その隙間の有無を判断することにより底部の平滑度合の検査が行われる。 Further, a glass bottle judged as a non-defective product by the inspection apparatus having the above configuration is appropriately extracted, and the smoothness of the bottom of the glass bottle is inspected. The extracted glass bottle is placed on a support substrate having a smooth surface, a gap gauge is inserted over the entire circumference of the bottom portion, and the presence or absence of the gap is determined, thereby inspecting the smoothness of the bottom portion.

しかしながら、上記した手作業による検査方法では、作業効率が悪く、検査精度も低いうえに、人件費が嵩むという問題がある。また、製造されたガラスびんの全数について検査を行っていないことから、検査の信頼性に欠けるという問題もある。 However, the above-described manual inspection methods have problems in that work efficiency is poor, inspection accuracy is low, and labor costs increase. In addition, since all the manufactured glass bottles are not inspected, there is a problem that the inspection reliability is lacking.

この発明は、上記した問題に着目してなされたもので、製造されたびんの全数について、人手を煩わせることなく、効率的かつ高精度に底部の平滑度合を検査し得るびん検査機およびこのびん検査機を用いた製びん装置を提供することを目的とする。 The present invention has been made paying attention to the above-mentioned problems, and a bottle inspection machine capable of inspecting the smoothness of the bottom portion efficiently and with high accuracy without troublesome the total number of bottles manufactured, and this An object of the present invention is to provide a bottle making apparatus using a bottle inspection machine.

この発明によるびん検査機は、びん底の底面の中央部が内方へ窪みその窪みを外周部が取り囲んでいるびんを検査対象としてびん底の平滑度合を前記窪みを取り囲む外周部の平滑度合により検査するものである。導入された検査対象のびんのびん底を表面の支持面上に支持する支持基板を有し、前記支持面は、表面が平滑に形成されるとともに、びんが載置される位置には、前記支持面と支持面上に載置されたびんの底面との間に形成される空間に連通する2個の孔が形成されている。一方の孔には、前記空間より空気を導出させて内圧を低下させる空気吸引装置が接続され、他方の孔には、空気が導出された後の前記空間内の内圧を検出する圧力検出手段が接続されており、前記圧力検出手段による内圧の検出値を判別装置において所定のしきい値と比較することによりびん底の窪みを取り囲む外周部の平滑度合を判別するIn the bottle inspection machine according to the present invention, the smoothness of the bottom of the bottle is determined by the smoothness of the outer periphery surrounding the recess, with the center of the bottom of the bottle recessed inward and the bottle surrounding the recess surrounded by the outer periphery. It is to be inspected. It has a support substrate for supporting the bottle bottom of the introduced bottle to be inspected on the support surface of the surface, and the support surface is formed with a smooth surface and at the position where the bottle is placed, Two holes communicating with a space formed between the support surface and the bottom surface of the bottle placed on the support surface are formed. One hole is connected to an air suction device for reducing the internal pressure by deriving air from the space, and the other hole is provided with pressure detecting means for detecting the internal pressure in the space after the air is derived. It is connected, and the degree of smoothness of the outer peripheral portion surrounding the depression at the bottom of the bottle is determined by comparing the detected value of the internal pressure by the pressure detecting means with a predetermined threshold value in the determining device .

この発明の上記した構成において、「びん」は、底面の中央部が内方に窪んだ形態ものであれば、ガラス製、合成樹脂製、金属製、陶磁製などの各種のびんを含む。また、「圧力検出手段」は、支持基板の支持面と支持面上に載置されたびんの底面との間に形成される空間内の内圧を検出するものであり、圧力センサなど、種々の構成のものを用いることができる。さらに、「判別装置」は、専用のハードウェア回路によって実現することができるが、プログラムされたコンピュータによって実現することもできる。なお、しきい値を複数設定すれば、平滑度合の程度を判別することもできる。 In the above-described configuration of the present invention, the “ bottle ” includes various bottles such as glass, synthetic resin, metal, and ceramic as long as the center portion of the bottom surface is recessed inward. The “pressure detecting means” detects the internal pressure in the space formed between the support surface of the support substrate and the bottom surface of the bottle placed on the support surface. The thing of a structure can be used. Further, the “discriminating device” can be realized by a dedicated hardware circuit, but can also be realized by a programmed computer. If a plurality of threshold values are set, the degree of smoothness can be determined.

この発明のびん検査機によってびんのびん底の平滑度合を検査するには、まず、支持基板の支持面上にびんを導入し、その底面の中央部の窪んだ部分が前記支持面に形成された2個の孔の開口を包含するように載置する。空気吸引装置により前記支持面とびんの底面との間に形成される空間の空気を導出させる。びんのびん底の窪みを取り囲む外周部が平滑であれば、びんの底面の窪みを取り囲む外周部と支持面との間に隙間が生じず、前記空間の内圧が十分に下がるが、びんのびん底の窪みを取り囲む外周部が平滑でなければ、びんの底の外周部と支持面との間に隙間が生じ、前記空間の内圧は十分に下がらない。この内圧を圧力検出手段により検出することで、びんのびん底の平滑度合を前記窪みを取り囲む外周部の平滑度合により検査し、びんが良品であるか不良品であるかを判断する。 In order to inspect the smoothness of the bottle bottom by the bottle inspection machine of the present invention, first, a bottle is introduced on the support surface of the support substrate, and a recessed portion in the center of the bottom surface is formed on the support surface. It is mounted so as to include the openings of the two holes. Air in a space formed between the support surface and the bottom surface of the bottle is led out by an air suction device. If the outer peripheral portion surrounding the recess of Bin'nobin bottom smooth, no gap is formed between the outer peripheral portion and the support surface surrounding the recess in the bottom of the bottle, but the inner pressure of the space is sufficiently lowered, Bin'nobin If the outer peripheral portion surrounding the bottom recess is not smooth, a gap is formed between the outer peripheral portion of the bottom of the bottle and the support surface, and the internal pressure of the space does not sufficiently decrease. By detecting the pressure by the pressure detection means, and examined by smoothing degree of the outer peripheral portion surrounding the recess the smoothing degree of Bin'nobin bottom, bottle it is determined whether a defective or non-defective.

この発明によると、支持基板の支持面とびんの底面との間の空間より空気を導出すると、びんと支持面とが密着した状態になるので、前記空間の内圧を検出する際にびんががたつくことがなく、高精度かつ安定した検査を行うことができる。 According to the present invention, when deriving the air from the space between the supporting surface and the bottle bottom surface of the supporting substrate, since the state in which the bottle and the support surface are in close contact, bottle rattle when detecting the internal pressure of the space This makes it possible to perform a highly accurate and stable inspection.

この発明の好ましい一実施態様においては、前記空気吸引装置は、空気導入部分にフィルタが設けられている。
この実施態様によると、フィルタにより空気とともに取り込まれるびんの破片などの異物を取り除くことができるため、空気吸引装置の空気導入部に異物が詰まるのを回避でき、検査精度を向上させることができる。
In a preferred embodiment of the present invention, the air suction device is provided with a filter at an air introduction portion.
According to this embodiment, foreign matters such as bottle fragments taken together with air can be removed by the filter, so that the air introduction part of the air suction device can be prevented from being clogged, and the inspection accuracy can be improved.

この発明による他のびん検査機は、前記一方の孔に、前記空間より空気を導出させて内圧を低下させる空気吸引装置に代えて、前記空間へ空気を導入して内圧を高める空気供給装置が接続されている。
この発明においては、空気供給装置により前記空間内に空気を導入して内圧を上昇させるが、びんのびん底の窪みを取り囲む外周部の平滑度合が高ければ、隙間が生じず、内圧は十分に高められるが、平滑度合が低ければ、隙間が生じ、内圧は十分に高められない。空気が導入された後の前記空間内の内圧を検出し、その内圧検出値により空気の漏れ具合をチェックすることでびんの底の平滑度合を検査する。
In another bottle inspection machine according to the present invention, an air supply device that introduces air into the space and increases the internal pressure is provided instead of an air suction device that reduces the internal pressure by deriving air from the space into the one hole. It is connected.
In this invention, air is introduced into the space by the air supply device to increase the internal pressure, but if the smoothness of the outer peripheral portion surrounding the bottle bottom recess is high, there is no gap and the internal pressure is sufficient. However, if the degree of smoothness is low, a gap is generated and the internal pressure cannot be sufficiently increased. The internal pressure in the space after the air is introduced is detected, and the smoothness of the bottom of the bottle is inspected by checking the air leakage based on the internal pressure detection value.

この発明による製びん装置は、複数のセクションに分かれ前記セクション毎に同じびんを一斉に製造する製びん機と、前記製びん機の下流側に設けられびんの欠陥の有無を検査する複数の検査ステーションを具備する検査装置とを含む。前記検査ステーションのいずれかに上記したいずれかの実施態様のびん検査機が設けられている。さらに、この発明の好ましい実施態様においては、前記複数の検査ステーションは、びんが導入される複数の切欠部をもつスターホイールの外周であって前記スターホイールを間欠駆動したときの各切欠部が停止する角度位置に設けられている。 The bottle making apparatus according to the present invention includes a bottle making machine that is divided into a plurality of sections and that simultaneously manufactures the same bottle for each section, and a plurality of inspections that are provided on the downstream side of the bottle making machine to inspect for bottle defects. And an inspection apparatus having a station. A bottle inspection machine according to any of the embodiments described above is provided at any of the inspection stations. Furthermore, in a preferred embodiment of the present invention, the plurality of inspection stations are the outer periphery of a star wheel having a plurality of notches into which bottles are introduced, and each notch is stopped when the star wheel is intermittently driven. It is provided at an angular position.

上記した製びん装置によると、びんのびん底の窪みを取り囲む外周部の平滑度合の検査を、製造された全てのびんについて欠陥の有無を検査する従来の検査ラインで行うことにより、平滑度合の全数検査が可能となり、検査効率が向上する。 According to the bottle making apparatus described above, the smoothness level of the outer periphery surrounding the bottom of the bottle bottom is inspected for smoothness by performing the inspection on the conventional inspection line for inspecting all manufactured bottles for defects. 100% inspection is possible, improving inspection efficiency.

この発明によれば、びん底の底面の中央部が内方へ窪みその窪みを外周部が取り囲んでいるびんについて、びん底の平滑度合の検査を、人手を煩わせることなく、製造されたびんの全数について行うことができ、検査効率および検査精度を向上させることができる。 According to the invention, the bottle central portion of the bottom surface of the bottle bottom surrounds the outer periphery of the recess the recess inwardly, the inspection of the smooth degree of the bottle bottom, without troubling human intervention, bottles produced The inspection efficiency and inspection accuracy can be improved.

図1は、この発明のびん検査機1が導入された製びん工場内の製造ラインの概略構成を示す。
図示例のびん製造ラインは、製びん機5と、この製びん機5で次々に製造されるびん(容器の一例)Gを搬送する搬送系6と、製びん機5の下流側で搬送系6の搬送途中に設けられ、びんGの欠陥の有無を検査する検査装置7,70とを備えている。前記製びん機5は、複数個のセクションS1〜SNに分かれ、各セクションS1〜SNには、同じびんを成形するための成形型が個々に設けられており、セクション毎に個々の成形型を用いて同じびんGが一斉に製造される。なお、成形型は粗型と仕上型とを含むが、ここでは両方の型を単に「成形型」と総称する。
FIG. 1 shows a schematic configuration of a production line in a bottle factory where a bottle inspection machine 1 of the present invention is introduced.
The bottle production line in the illustrated example includes a bottle making machine 5, a carrying system 6 for carrying bottles (an example of containers) G successively produced by the bottle making machine 5, and a carrying system on the downstream side of the bottle making machine 5. 6 and an inspection device 7 and 70 for inspecting the bottle G for defects. The bottle making machine 5 is divided into a plurality of sections S1 to SN, and each section S1 to SN is individually provided with a molding die for molding the same bottle. The same bottle G is produced at the same time. In addition, although a shaping | molding die contains a rough type | mold and a finishing type | mold, here, both types are only named "molding die" generically.

各セクションS1〜SNには、「ゴブ」と称される溶融ガラスの塊が適当なタイミングで順次供給される。各セクションS1〜SNの成形型で成形されたびんは、搬送系6の第1の搬送コンベヤ6aへ送り出される。びんは、びん底の外面の中央部が内方へ窪んだ形態のものであり、びん底には、成形時、製造したセクションを表す符号として、各成形型に固有の型番が付される。   In each of the sections S1 to SN, a lump of molten glass called “gob” is sequentially supplied at an appropriate timing. The bottles molded by the molds of the sections S1 to SN are sent out to the first transport conveyor 6a of the transport system 6. The bottle has a shape in which a central portion of the outer surface of the bottle bottom is recessed inward, and a model number unique to each mold is attached to the bottle bottom as a code representing a manufactured section.

第1の搬送コンベヤ6aは、製びん機5の各セクションS1〜SNで製造されたびんを、一列に整列した状態で第2の搬送コンベヤ6bまで搬送する。第2の搬送コンベヤ6bは、縦列のびんを横列に編成して、第3の搬送コンベヤ6cまで搬送する。なお、第2の搬送コンベヤ6bの途中にびんの冷却装置(図示せず。)が設けてある。第3の搬送コンベヤ6cは、横列のびんを縦列に編成して、最終の箱詰装置8まで搬送する。この第3の搬送コンベヤ6cの途中には、びんを次々に導入して検査するための少なくとも1台(この実施例では2台)の検査装置7,70が設けられている。なお、この実施例では、2台の検査装置7,70を直列に設けて、各検査装置7,70で個別の検査を行うようにしているが、これに限らず、複数台の検査装置を並列に設けて、各検査装置で同じ検査を行うようにすることもできる。   The 1st conveyance conveyor 6a conveys the bottle manufactured by each section S1-SN of the bottle making machine 5 to the 2nd conveyance conveyor 6b in the state arranged in a line. The 2nd conveyance conveyor 6b organizes the bottle of a column in a row, and conveys it to the 3rd conveyance conveyor 6c. In addition, the bottle cooling device (not shown) is provided in the middle of the 2nd conveyance conveyor 6b. The third conveyor 6c organizes the bottles in a row in a column and conveys them to the final boxing device 8. In the middle of the third conveyor 6c, at least one (two in this embodiment) inspection devices 7 and 70 for introducing and inspecting bottles one after another are provided. In this embodiment, two inspection devices 7 and 70 are provided in series so that each inspection device 7 and 70 performs an individual inspection. However, the present invention is not limited to this, and a plurality of inspection devices are provided. It can also be provided in parallel so that each inspection apparatus can perform the same inspection.

図2は、この発明のびん検査機(容器検査機の一例)1が設けられている一方の検査装置7を示している。
図示例の検査装置7は、周面の等角度位置に切欠部10を備えたスターホイール11と、このスターホイール11を前記切欠部10,10間の角度ずつ間欠的に回転させる順送り機構12と、前記スターホイール11の各切欠部10が停止する位置に設定された5個の検査ステーションA〜E(図1に示す。)のうち、最初の検査ステーションAに配置されるこの発明にかかるびん検査機1と、残り4個の検査ステーションB〜Eにそれぞれ配置される他のびん検査機(図示せず。)とから成る。この検査装置7の上流側には、びん導入路9aが設けられ、びん導入路9aには各切欠部10へびんを送り込む送込み機構15が設けられている。また、検査装置7の下流側には、所定の欠陥を有する不良品のびんを回収するためのリジェクトテーブル(図示せず。)が配備されている。なお、図1において、9bは検査済の良品のびんGを次の検査装置70へ導くびん導出路である。
FIG. 2 shows one inspection apparatus 7 provided with a bottle inspection machine (an example of a container inspection machine) 1 of the present invention.
The inspection device 7 in the illustrated example includes a star wheel 11 having a notch 10 at an equiangular position on the peripheral surface, and a progressive mechanism 12 that rotates the star wheel 11 intermittently at an angle between the notches 10 and 10. Among the five inspection stations A to E (shown in FIG. 1) set at the positions where the notches 10 of the star wheel 11 are stopped, the bottle according to the present invention is arranged at the first inspection station A. It consists of an inspection machine 1 and other bottle inspection machines (not shown) arranged in the remaining four inspection stations B to E, respectively. A bottle introduction path 9 a is provided on the upstream side of the inspection apparatus 7, and a feeding mechanism 15 for feeding the bottle to each notch portion 10 is provided in the bottle introduction path 9 a. In addition, a rejection table (not shown) for collecting defective bottles having a predetermined defect is arranged on the downstream side of the inspection apparatus 7. In FIG. 1, reference numeral 9 b denotes a bottle lead-out path for guiding the inspected non-defective bottle G to the next inspection apparatus 70.

前記検査ステーションAでは、びん検査機1により、びんGの底の平滑度合が検査される。他の4個のステーションB〜Eでは、各びん検査機により、びんを回転させた状態、またはびんを回転させない状態で、少なくとも1種類の欠陥種目について、欠陥が存在するかどうかが検査される。なお、図中、17はびんを次の検査ステーションへ導くためのガイド板である。   At the inspection station A, the bottle inspection machine 1 inspects the smoothness of the bottom of the bottle G. In the other four stations B to E, each bottle inspection machine inspects whether or not a defect exists in at least one type of defect item with the bottle rotated or without the bottle rotated. . In the figure, reference numeral 17 denotes a guide plate for guiding the bottle to the next inspection station.

図3は、この発明の一実施例であるびん検査機1の構成を示している。
図示例のびん検査機1は、びん底の中央部が内方へ窪んだびんGを検査対象とするものである。図示例のびんGは、びん底の外面中央部が内方へ窪み、この窪みaを外周部bが取り囲んでいる。このびん底の外周部bの平滑度合がびん検査機1により検査される。このびん検査機1は、びんGが載置される円板状の支持基板2を有し、支持基板2の下方位置にバキューム装置(空気吸引装置の一例)3と圧力センサ(圧力検出手段の一例)4とが配置されている。圧力センサ4で検出された内圧値は判別装置14に取り込まれてびん底の平滑度合が判別される。
FIG. 3 shows the configuration of a bottle inspection machine 1 which is an embodiment of the present invention.
The bottle inspection machine 1 in the illustrated example is an inspection target for a bottle G in which the central portion of the bottle bottom is recessed inward. In the bottle G of the illustrated example, the central portion of the outer surface of the bottle bottom is recessed inward, and the outer peripheral portion b surrounds the recess a. The smoothness of the outer peripheral part b of the bottle bottom is inspected by the bottle inspection machine 1. This bottle inspection machine 1 has a disk-like support substrate 2 on which the bottle G is placed, and a vacuum device (an example of an air suction device) 3 and a pressure sensor (of a pressure detection means) below the support substrate 2. An example) 4 is arranged. The internal pressure value detected by the pressure sensor 4 is taken into the discrimination device 14 and the smoothness of the bottle bottom is discriminated.

前記支持基板2は、図4に示すように、びんGの底を支持する平滑な支持面20を有し、びんGが載置される位置には、前記支持面20と支持面20上に載置されたびんGの底面との間に形成される空間Sに連通する2個の孔21,22が形成されている。この支持基板2は、強度および断熱性の高い合成樹脂材で形成されている。これにより、支持基板2の摩耗などによる経年変化を低減することができ、支持基板2の削れカスなどの発生を低減することができるため、長期間使用することができる。また、孔21,22に前記削れカスなどが詰まることを低減することができる。
前記各孔21,22は支持基板2を上下に貫通し、上面および下面に開口している。なお、図4において、25はステーション間に設けられている水平な床板であり、びんGは床板25上をスライドして支持基板2の支持面20上に導かれる。
As shown in FIG. 4, the support substrate 2 has a smooth support surface 20 that supports the bottom of the bottle G. The support substrate 2 is placed on the support surface 20 and the support surface 20 at a position where the bottle G is placed. Two holes 21 and 22 communicating with the space S formed between the bottom of the bottle G to be placed are formed. The support substrate 2 is made of a synthetic resin material having high strength and heat insulation. As a result, the secular change due to the wear of the support substrate 2 can be reduced, and the occurrence of scraps and the like of the support substrate 2 can be reduced, so that it can be used for a long time. In addition, the clogging of the scraps and the like in the holes 21 and 22 can be reduced.
Each of the holes 21 and 22 penetrates the support substrate 2 up and down, and opens on the upper surface and the lower surface. In FIG. 4, reference numeral 25 denotes a horizontal floor plate provided between stations, and the bottle G slides on the floor plate 25 and is guided onto the support surface 20 of the support substrate 2.

前記一方の孔21には、通気管23を介してバキューム装置3が接続されている。このバキューム装置3は、前記空間Sより空気を導出させて空間S内の内圧を低下させる。バキューム装置3には、空気導入部分にフィルタ24が取り付けられている。フィルタ24は、空気とともに通気管23より取り込まれるガラスの破片などの異物を取り除くためのものである。
なお、前記フィルタ24は、形成される孔21の大きさに応じてその取り付け個数を変化させている。すなわち、孔21の径が大きく形成されている場合は、フィルタ24の個数を増やすことにより、ガラスの破片や第3の搬送コンベヤ6cの削れカスなどの異物が孔21につまることを回避することができるため、平滑度合の検査の精度を高めることができ、良品のびんの破棄を大幅に低減させることができる。
A vacuum device 3 is connected to the one hole 21 through a vent pipe 23. This vacuum device 3 reduces the internal pressure in the space S by deriving air from the space S. The vacuum device 3 has a filter 24 attached to the air introduction portion. The filter 24 is for removing foreign substances such as glass fragments taken in from the vent pipe 23 together with air.
Note that the number of attached filters 24 is changed according to the size of the holes 21 to be formed. That is, when the diameter of the hole 21 is large, the number of the filters 24 is increased to prevent foreign matter such as broken glass and scraped scraps of the third transport conveyor 6c from getting stuck in the hole 21. Therefore, the accuracy of the smoothness inspection can be increased, and the discard of non-defective bottles can be greatly reduced.

他方の孔22には、前記空間S内の内圧を検出するための圧力センサ4が接続されている。この圧力センサ4により、空気が導出された後の前記空間S内の内圧を検出し、その内圧検出値によりびん底の平滑度合の良否が判別される。
前記圧力センサ4は、コード線により判別装置14に電気接続されており、圧力センサ4による内圧の検出値は、電気信号に変換されて判別装置14へ出力される。判別装置14は、入力された内圧検出値を予め設定された所定のしきい値と比較し、内圧検出値が所定のしきい値より大きいときは、びんGの底の平滑度合が不良であると判断する。
A pressure sensor 4 for detecting the internal pressure in the space S is connected to the other hole 22. The pressure sensor 4 detects the internal pressure in the space S after the air is derived, and the smoothness level of the bottle bottom is determined based on the detected internal pressure.
The pressure sensor 4 is electrically connected to the determination device 14 by a cord line, and the detected value of the internal pressure by the pressure sensor 4 is converted into an electric signal and output to the determination device 14. The discrimination device 14 compares the input internal pressure detection value with a predetermined threshold value set in advance. When the internal pressure detection value is larger than the predetermined threshold value, the smoothness of the bottom of the bottle G is poor. Judge.

なお、この実施例では、前記空間S内の空気をバキューム装置3により導出することで空間S内の内圧を低下させ、その内圧値を検出することで、びん底の平滑度合を検査しているが、バキューム装置3に代えて、前記空間S内へ空気を導入する空気供給装置を用いて構成することもできる。空気供給装置により空間S内に空気を導入すると、内圧が上昇するが、空気の漏れ具合によって内圧が異なるので、内圧をチェックすることでびん底の平滑度合を検査する。内圧検出値が所定のしきい値より低いときは、びんGの底の平滑度合が不良であると判断する。   In this embodiment, the internal pressure in the space S is reduced by deriving the air in the space S by the vacuum device 3, and the smoothness of the bottle bottom is inspected by detecting the internal pressure value. However, instead of the vacuum device 3, an air supply device that introduces air into the space S may be used. When air is introduced into the space S by the air supply device, the internal pressure increases. However, since the internal pressure varies depending on the air leakage, the smoothness of the bottle bottom is inspected by checking the internal pressure. When the detected internal pressure value is lower than the predetermined threshold value, it is determined that the smoothness of the bottom of the bottle G is poor.

上記した構成のびんの製造ラインにおいて、製びん機5で製造されたびんGが検査装置7に導入されて第1の検査ステーションAに送られると、前記びん検査機1によりびん底の平滑度合、すなわち、びん底の窪みaを取り囲む外周部bの平滑度合が検査される。   When the bottle G manufactured by the bottle making machine 5 is introduced into the inspection apparatus 7 and sent to the first inspection station A in the bottle manufacturing line having the above-described configuration, the bottle inspection machine 1 determines the smoothness of the bottle bottom. That is, the degree of smoothness of the outer peripheral portion b surrounding the recess a at the bottom of the bottle is inspected.

支持基板2の支持面20上に、びんGが、その底面の中央部の窪みaに支持面20に形成された2個の孔21,22が包含されるように載置されると、バキューム装置3が駆動され、前記支持面20とびんGの底面との間に形成される空間Sの空気が導出される。これにより、前記空間Sの内圧が低下し、びんGと支持面20とが密着した状態になるので、空間Sの内圧を検出する際にびんGががたつくことがない。   When the bottle G is placed on the support surface 20 of the support substrate 2 so that the two holes 21 and 22 formed in the support surface 20 are included in the depression a at the center of the bottom surface, The device 3 is driven, and the air in the space S formed between the support surface 20 and the bottom surface of the bottle G is led out. As a result, the internal pressure of the space S decreases and the bottle G and the support surface 20 are brought into close contact with each other, so that the bottle G does not rattle when detecting the internal pressure of the space S.

びんGの底が平滑であれば、びんGの底面の外周部bと支持基板2の支持面20との間に隙間が生じず、空間Sの内圧が十分に下がる。これに対して、びんGの底が平滑でなければ、びんGの底面の外周部bと支持面20との間に隙間が生じ、空間Sの内圧は十分に下がらない。   If the bottom of the bottle G is smooth, there will be no gap between the outer peripheral portion b of the bottom surface of the bottle G and the support surface 20 of the support substrate 2, and the internal pressure of the space S will be sufficiently reduced. On the other hand, if the bottom of the bottle G is not smooth, a gap is generated between the outer peripheral portion b of the bottom surface of the bottle G and the support surface 20, and the internal pressure of the space S is not sufficiently lowered.

この内圧を圧力センサ4により検出し、判別装置14が内圧検出値を所定のしきい値と比較する。内圧検出値が所定のしきい値より大きいときは、びんGの底の平滑度合に不良があると判断される。   This internal pressure is detected by the pressure sensor 4, and the discrimination device 14 compares the internal pressure detection value with a predetermined threshold value. When the detected internal pressure value is greater than the predetermined threshold value, it is determined that the smoothness of the bottom of the bottle G is defective.

びん検査機1による検査が終了すると、前記順送り機構12の順送り動作により、第1の検査ステーションAで検査されたびんGは第2の検査ステーションBへ送られ、びん検査機13により所定の欠陥種目について、欠陥の有無が検査される。また、第1の検査ステーションAには未検査の新たなびんGが導入され、新たなびんGについてびん底の平滑度合の検査が行われる。   When the inspection by the bottle inspection machine 1 is completed, the bottle G inspected at the first inspection station A is sent to the second inspection station B by the sequential feeding operation of the sequential feeding mechanism 12, and the bottle inspection machine 13 performs a predetermined defect. The event is inspected for defects. In addition, a new bottle G that has not been inspected is introduced into the first inspection station A, and the new bottle G is inspected for the smoothness of the bottom of the bottle.

製びんラインの全体構成を示す説明図である。It is explanatory drawing which shows the whole structure of a bottle making line. 検査装置の一部分を拡大して示す平面図である。It is a top view which expands and shows a part of inspection apparatus. びん検査機の構成を示す断面図である。It is sectional drawing which shows the structure of a bottle inspection machine. 支持基板の構成を示す平面図である。It is a top view which shows the structure of a support substrate.

符号の説明Explanation of symbols

1 びん検査機
2 支持基板
3 バキューム装置
4 圧力センサ
10 切欠部
11 スターホイール
14 判別装置
20 支持面
21,22 孔
24 フィルタ
DESCRIPTION OF SYMBOLS 1 Bottle inspection machine 2 Support board 3 Vacuum apparatus 4 Pressure sensor 10 Notch part 11 Star wheel 14 Discriminating device 20 Support surface 21,22 Hole 24 Filter

Claims (5)

びん底の底面の中央部が内方へ窪みその窪みを外周部が取り囲んでいるびんを検査対象としてびん底の平滑度合を前記窪みを取り囲む外周部の平滑度合により検査するびん検査機であって、導入された検査対象のびんのびん底を表面の支持面上に支持する支持基板を有し、前記支持面は、表面が平滑に形成されるとともに、びんが載置される位置には、前記支持面と支持面上に載置されたびんの底面との間に形成される空間に連通する2個の孔が形成されており、一方の孔には、前記空間より空気を導出させて内圧を低下させる空気吸引装置が接続され、他方の孔には、空気が導出された後の前記空間内の内圧を検出する圧力検出手段が接続され、前記圧力検出手段による内圧の検出値を判別装置において所定のしきい値と比較することによりびん底の窪みを取り囲む外周部の平滑度合を判別するようにしたびん検査機。 A bottle inspection machine that inspects the smoothness of the bottom of the bottle by the smoothness of the outer periphery surrounding the recess, with the center of the bottom of the bottle being recessed inward and the bottle surrounding the recess surrounded by the outer periphery. , Having a support substrate that supports the bottle bottom of the introduced bottle to be inspected on the support surface of the surface, the support surface is formed with a smooth surface, and at the position where the bottle is placed, Two holes communicating with the space formed between the support surface and the bottom surface of the bottle placed on the support surface are formed, and air is led out from the space to one of the holes. An air suction device for reducing the internal pressure is connected, and the other hole is connected to a pressure detection means for detecting the internal pressure in the space after the air is led out , and the detected value of the internal pressure by the pressure detection means is discriminated. By comparing with a predetermined threshold in the device Bottle inspection machine which is adapted to determine the smoothing degree of the outer peripheral portion surrounding the recess of the bottle bottom. 前記空気吸引装置は、空気導入部分にフィルタが設けられている請求項1に記載されたびん検査機。 The bottle inspection machine according to claim 1, wherein the air suction device is provided with a filter in an air introduction portion. びん底の底面の中央部が内方へ窪みその窪みを外周部が取り囲んでいるびんを検査対象としてびん底の平滑度合を前記窪みを取り囲む外周部の平滑度合により検査するびん検査機であって、導入された検査対象のびんのびん底を表面の支持面上に支持する支持基板を有し、前記支持面は、表面が平滑に形成されるとともに、びんが載置される位置には、前記支持面と支持面上に載置されたびんの底面との間に形成される空間に連通する2個の孔が形成されており、一方の孔には、前記空間へ空気を導入して内圧を高める空気供給装置が接続され、他方の孔には、空気が導入された後の前記空間内の内圧を検出する圧力検出手段が接続され、前記圧力検出手段による内圧の検出値を判別装置において所定のしきい値と比較することによりびん底の窪みを取り囲む外周部の平滑度合を判別するようにしたびん検査機。 A bottle inspection machine that inspects the smoothness of the bottom of the bottle by the smoothness of the outer periphery surrounding the recess, with the center of the bottom of the bottle being recessed inward and the bottle surrounding the recess surrounded by the outer periphery. , Having a support substrate that supports the bottle bottom of the introduced bottle to be inspected on the support surface of the surface, the support surface is formed with a smooth surface, and at the position where the bottle is placed, Two holes communicating with the space formed between the support surface and the bottom surface of the bottle placed on the support surface are formed, and air is introduced into the space in one hole. An air supply device for increasing the internal pressure is connected, and the other hole is connected to a pressure detection means for detecting the internal pressure in the space after the air is introduced, and the detected value of the internal pressure by the pressure detection device is discriminated. At the bottom of the bottle by comparing it with a predetermined threshold Bottle inspection machine which is adapted to determine the smoothing degree of the outer peripheral portion surrounding the recess. 複数のセクションに分かれ前記セクション毎に同じびんを一斉に製造する製びん機と、前記製びん機の下流側に設けられびんの欠陥の有無を検査する複数の検査ステーションを具備する検査装置とを含む製びん装置であって、前記検査ステーションのいずれかに請求項1〜3のいずれかに記載されたびん検査機が設けられて成る製びん装置。A bottle maker that is divided into a plurality of sections and that simultaneously manufactures the same bottle for each section, and an inspection apparatus that is provided on the downstream side of the bottle maker and has a plurality of inspection stations that inspect for the presence or absence of bottle defects. A bottle making apparatus comprising the bottle inspection machine according to any one of claims 1 to 3 in any one of the inspection stations. 前記複数の検査ステーションは、びんが導入される複数の切欠部をもつスターホイールの外周であって前記スターホイールを間欠駆動したときの各切欠部が停止する角度位置に設けられている請求項4に記載された製びん装置。 5. The plurality of inspection stations are provided on an outer periphery of a star wheel having a plurality of notches into which bottles are introduced, at angular positions at which the notches stop when the star wheel is intermittently driven. The bottle making apparatus described in 1.
JP2006087625A 2006-03-28 2006-03-28 Bottle inspection machine and bottle making equipment Expired - Fee Related JP4815244B2 (en)

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