JP5287300B2 - Weighing conveyor - Google Patents

Weighing conveyor Download PDF

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JP5287300B2
JP5287300B2 JP2009018630A JP2009018630A JP5287300B2 JP 5287300 B2 JP5287300 B2 JP 5287300B2 JP 2009018630 A JP2009018630 A JP 2009018630A JP 2009018630 A JP2009018630 A JP 2009018630A JP 5287300 B2 JP5287300 B2 JP 5287300B2
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weighing
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conveying
measuring
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祐一 井上
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Teraoka Seiko Co Ltd
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本発明は、物品を搬送しながらその物品の重量を計量する計量コンベアに関し、更に詳しくは長さの異なる物品を長さに応じた計量装置で計量する計量コンベアに関する。   The present invention relates to a weighing conveyor for weighing an article while conveying the article, and more particularly to a weighing conveyor for weighing an article having a different length with a weighing device according to the length.

搬送コンベアで搬送される物品を、搬送中に計量する方法としては計量手段(秤装置)を備えた1台の計量コンベアで計量する、所謂、単秤方式が一般的である。そして、この単秤方式で正確な計量値を得るためには、搬送する物品の間隔を調整し、計量コンベアに複数の物品が載らないようにする必要がある。従って、多種多様の物品が自動的に連続して搬送される状況においては、前記単秤方式では対応が困難である。
即ち、長さの異なる物品を搬送しながら、該物品の重量を計測する計量コンベアに関し、短い時間で物品の重量を正しく測定することができ、且つ物品の搬送効率と計量能力を向上させた計量コンベアが市場で望まれていた。
上記目的を達成する為に、物品を搬送する搬送手段と、重量を計量する計量手段を備えた2台の計量コンベアを直列且つ隣接させて配置し、その各計量手段の出力(計量値)を任意に組み合わせ加算して、物品の重量を測定する計量コンベアが開発提案されている(例えば、特許文献1参照)。
As a method for weighing the articles conveyed by the conveyance conveyor during conveyance, a so-called single balance method is generally used in which the measurement is performed by a single weighing conveyor equipped with weighing means (weighing device). In order to obtain an accurate measurement value by this single balance method, it is necessary to adjust the interval between articles to be conveyed so that a plurality of articles are not placed on the weighing conveyor. Therefore, in the situation where a wide variety of articles are automatically and continuously conveyed, it is difficult to cope with the single balance method.
That is, with respect to a weighing conveyor that measures the weight of an article while conveying an article having a different length, the weighing can correctly measure the weight of the article in a short time, and the weighing improves the carrying efficiency and weighing capacity of the article. A conveyor was desired in the market.
In order to achieve the above-mentioned object, two conveyors equipped with conveying means for conveying articles and weighing means for weighing the weight are arranged in series and adjacent to each other, and outputs (measurement values) of the respective weighing means are set. A weighing conveyor that measures the weight of an article by arbitrarily combining and adding has been proposed (for example, see Patent Document 1).

しかしながら、特許文献1に記載の計量コンベア(多連秤装置)は、物品を搬送しながらその物品の重量を測定する場合、前記物品が前記2台の計量コンベアに跨るよう載置された時、物品が跨る2台の計量手段には次のような応力が作用する。即ち、搬送方向に向かい手前側(1台目)に位置する計量コンベアには、搬送方向と逆の斜め下向きの力が、搬送方向に向かい先方(2台目)に位置する計量コンベアには搬送方向斜め下向き力が、それぞれ働く。また、搬送する物品の搬送位置によって、搬送方向に向かい手前側(1台目)に位置する計量コンベアには、今度は搬送方向に向かい先方(2台目)に位置する計量コンベアによる引っ張る力が加わって搬送方向斜め下向きの応力が発生し、搬送方向に向かい先方(2台目)に位置する計量コンベアには搬送方向に向かい手前側(1台目)に位置する計量コンベアから押される力が加わり搬送方向斜め下向きの応力が更に強いる等、搬送する物品の搬送位置により応力が変化しながら発生し、計量手段の測定に影響を及ぼす。それにより、前記2台の計量コンベアが備える計量手段は、本来垂直方向に加わる荷重を測定するところ、斜め方向の応力が加わった荷重を測定し、その測定値を出力してしまうという問題が生じる。
その為に、前記2台の計量コンベアは、斜め方向の応力が加わった荷重を前記計量手段で測定するので、その出力される計量値は正しい測定値とは言えず、この正しくない測定値を合算して得られる当該物品の計量値は当然のことながら正しい値とは言えない。
However, when the weighing conveyor (multiple scale device) described in Patent Document 1 measures the weight of an article while conveying the article, when the article is placed across the two weighing conveyors, The following stresses act on the two weighing means across the article. That is, the weighing conveyor located on the front side (first unit) facing in the conveying direction has an obliquely downward force opposite to the conveying direction, and is conveyed on the weighing conveyor located on the other side (second unit) facing in the conveying direction. Each diagonal downward force works. In addition, depending on the transport position of the article to be transported, the weighing conveyor located on the front side (first unit) facing in the transport direction is now subject to a pulling force by the weighing conveyor located on the other side (second unit) facing in the transport direction. In addition, a downward stress is generated in the conveying direction, and the weighing conveyor located in the opposite direction (second unit) in the conveying direction has a force pushed from the measuring conveyor located in the front side (first unit) in the conveying direction. In addition, the stress is generated while the stress is changed depending on the transport position of the article to be transported, such as a further downward stress in the transport direction, which affects the measurement of the measuring means. As a result, the weighing means included in the two weighing conveyors measure the load applied in the vertical direction, but measure the load applied with the stress in the oblique direction and output the measured value. .
Therefore, since the two weighing conveyors measure the load applied with the stress in the oblique direction by the weighing means, the measured value to be output cannot be said to be a correct measured value, and this incorrect measured value is not used. The measured value of the article obtained by adding up is naturally not a correct value.

又、前記特許文献1に基づく実際の装置は、2台の計量コンベア(計量装置)を、検定公差を考慮して設計製造されているが、前記物品の搬送時に発生する応力を考慮して組み付けされていないため、2台の計量コンベアのそれぞれの測定値を合算しても正しい計量値が得られず、検定公差から外れた測定精度になるという問題が生じる、   In addition, the actual device based on Patent Document 1 is designed and manufactured with two weighing conveyors (weighing devices) in consideration of the test tolerance, but is assembled in consideration of the stress generated during the conveyance of the article. Therefore, even if the measured values of the two weighing conveyors are added together, the correct measured value cannot be obtained, resulting in a measurement accuracy that is out of the test tolerance.

特開平10−122940号公報JP-A-10-122940

本発明は、上記従来の技術が有する問題点に鑑みてなされたもので、その目的とするところは、多連秤方式の計量コンベアにおいて、計量手段に搬送物品の応力が作用して斜めに荷重が加わって正しい測定ができなくなったとしても、短い時間で物品の重量を正しく測定することができ、且つ物品の搬送効率と計量能力を向上することができる計量コンベアを提供する。   The present invention has been made in view of the above-described problems of the prior art, and the object of the present invention is to load the slant by the stress of the transported article acting on the weighing means in a multi-scale weighing conveyor. There is provided a weighing conveyor capable of correctly measuring the weight of an article in a short time and improving the conveyance efficiency and weighing capacity of the article even if correct measurement cannot be performed due to the addition of.

上記目的を達成する為に本発明の計量コンベアは、物品を搬送する搬送手段と、該物品を前記搬送手段で搬送しながら重量を計量する計量手段を備えた計量コンベアであって、前記搬送手段と前記計量手段とを備えた複数台の搬送計量装置を、基台側計量装置上に、搬送方向が一直線となり連続して搬送し得るように直列且つ隣接して配置し、更に、前記搬送計量装置が備える搬送手段により搬送される物品の長さを計測する計測手段と、前記計測手段で計測された物品の長さに応じて、前記複数台の搬送計量装置、前記基台側計量装置から出力された計量値を選択する選択手段と、を備えたことを特徴とする(請求項1)。
前記計量コンベアを構成する搬送計量装置は、機長の異なる搬送計量装置が2台以上であればよく、それら搬送計量装置の配置は搬送方向に沿い機長の長いものから順番に配置する、或いは逆に機長の短いものから順番に配置する、又は不規則に配置する等、何れでもよい。
前記搬送計量装置の搬送手段は、ベルトコンベア、ローラコンベアの何れでもよい。
前記搬送計量装置及び計量装置に装備する計量手段は、力検出器として広く普及しているロードセル(ひずみゲージ式)に限らず、サーボシステムとしてまとまった電磁力平衡式、金属音叉振動式、弦振動式、静電容量式、圧電式、磁歪式、ジャイロ式、或いは油圧式の荷重計を用いて構成してもよい。
前記計測手段を配置する位置は、直列に配置した搬送計量装置の全長の範囲内に限らず、本計量コンベアの上流側に連設配置される搬入コンベア側に配置してもよい。但し、該計測手段を直列に配置した搬送計量装置の全長の範囲内に配置する場合、物品の長さは計測手段(センサ)による物品の検知時間と、該物品を搬送する搬送手段の搬送速度により算出される為、前記直列に配置する各搬送計量装置の搬送手段の速度は同じ速度とする。
また、前記計測手段は上記のものに限らず、前記搬送手段による搬送に同期したパルス信号を発生する装置と、該搬送手段により搬送される物品までの距離を非接触で検出して距離信号を出力する変位センサと、この距離信号をサンプリングし、順次のサンプル値が大きく変化するのを検知した時に物品の端部であると判定する信号を出力し、この端部判定信号に基いて前記パルス信号を計数し、端部を基準とした物体の移動方向の寸法を測定する信号処理回路とを備え、前記物品の長さ寸法測定を正確に計測する方法を用いてもよい。
前記計測手段で計測した物品の長さに応じて、選択手段が何れの搬送計量装置、計量装置の計量値を選択するかの方法は、例えば、搬送計量装置及び計量装置の各計量手段が計量対象とする物品の長さ範囲を設定した秤選択情報を記憶手段に記憶し、計測手段で計測された物品の長さ寸法と、前記記憶手段に記憶された秤選択情報に基づいて前記選択手段が選択する方法、或いは前記秤選択情報(データ)をプログラム内に持たせる方法、更に、搬送計量装置の両端に物品検出センサを設けて、その物品検出センサが出力するON/OFFの出力信号の組合わせ、或いはその順序により計量装置を選択する方法、または、単純に物品がはみ出しているか否かにより計量装置を選択する方法等が挙げられる。
前記選択手段等は、計量コンベアの側近に設置される制御盤(コンソール)を構成するマイクロコンピュータ等に格納されている。
In order to achieve the above object, a weighing conveyor according to the present invention is a weighing conveyor comprising conveying means for conveying an article, and weighing means for weighing the article while conveying the article by the conveying means, wherein the conveying means And a plurality of transport weighing devices including the weighing means are arranged in series and adjacent to each other on the base-side weighing device so that the conveyance direction is in a straight line and can be continuously conveyed. A measuring unit that measures the length of an article conveyed by a conveying unit included in the apparatus, and the plurality of conveying and weighing devices, the base-side weighing device, according to the length of the article measured by the measuring unit. And a selection means for selecting the output measurement value (claim 1).
The transport and weighing device that constitutes the weighing conveyor need only have two or more transport and weighing devices having different lengths, and the transport and weighing devices are arranged in order from the longest length along the transport direction, or vice versa. Arranging in order from the shortest of the captain, or arranging irregularly may be used.
The conveying means of the conveying and weighing device may be either a belt conveyor or a roller conveyor.
The weighing device equipped in the transport weighing device and the weighing device is not limited to a load cell (strain gauge type) widely used as a force detector, but is an electromagnetic force balanced type, a metal tuning fork vibration type, a string vibration, which are gathered as a servo system. You may comprise using a load meter of a type | formula, an electrostatic capacitance type, a piezoelectric type, a magnetostriction type, a gyro type, or a hydraulic type.
The position at which the measuring means is arranged is not limited to the entire length of the conveying and weighing device arranged in series, but may be arranged on the carry-in conveyor side arranged continuously on the upstream side of the weighing conveyor. However, when the measuring means is arranged within the total length of the conveying and weighing apparatus arranged in series, the length of the article is determined by the measuring means (sensor), the detection time of the article, and the conveying speed of the conveying means for conveying the article. Therefore, the speed of the transport means of the transport weighing devices arranged in series is the same speed.
In addition, the measuring means is not limited to the above, and a device that generates a pulse signal synchronized with the conveyance by the conveying means and a distance signal by detecting the distance to the article conveyed by the conveying means in a non-contact manner. The displacement sensor to output, and the distance signal are sampled, and a signal for determining that the end of the article is detected when a sequential change in the sample value is detected is output. Based on the end determination signal, the pulse is output. A signal processing circuit that counts the signal and measures the dimension of the object in the moving direction with the end as a reference, and a method of accurately measuring the length dimension of the article may be used.
According to the length of the article measured by the measuring means, the selection means selects the transport weighing device and the weighing value of the weighing device. The scale selection information in which the length range of the target article is set is stored in the storage means, and the selection means is based on the length dimension of the article measured by the measurement means and the scale selection information stored in the storage means Or a method for providing the weighing scale selection information (data) in the program, and further, an article detection sensor is provided at both ends of the transport weighing device, and an ON / OFF output signal output by the article detection sensor A method of selecting a weighing device according to a combination or order thereof, a method of simply selecting a weighing device depending on whether or not an article protrudes, and the like can be mentioned.
The selection means and the like are stored in a microcomputer or the like constituting a control panel (console) installed near the weighing conveyor.

上記手段によれば、例えば、記憶手段に予め記憶された秤選択情報に基づいて各搬送計量装置の機長に対応する物品の重量は、それぞれの搬送計量装置の計量値が選択採用され、機長がもっとも長い搬送計量装置より長い物品は直列配置した複数の搬送計量装置に跨って計量される。この時、両方の搬送計量装置には前記した背景技術の項で説明した応力が働いて各搬送計量装置の計量手段は、搬送する物品の搬送位置によって発生する斜め方向の応力が加わった荷重を測定するので正しい測定値を出力することができなくなるが、前記搬送計量装置は計量手段のみを備えた計量装置上に積層載置されていることで、該計量装置の計量値が前記選択手段で選択される。それにより、正しい計量値を得ることができる。   According to the above means, for example, the weight of the article corresponding to the captain of each transport weighing device is selected and adopted based on the scale selection information stored in advance in the storage means, and the captain is selected and adopted. Articles longer than the longest conveyance weighing device are weighed across a plurality of conveyance weighing devices arranged in series. At this time, the stress described in the section of the background art is applied to both the transfer weighing devices, and the weighing means of each transfer weighing device applies a load in which an oblique stress generated depending on the transfer position of the article to be transferred is applied. Since the measurement value cannot be output correctly, it is impossible to output the correct measurement value. However, since the transport weighing device is stacked on the weighing device having only the weighing means, the weighing value of the weighing device is determined by the selection means. Selected. Thereby, a correct measured value can be obtained.

又、前記計量コンベアは、前記搬送手段、前記計量手段、前記計測手段で何らかの異常が発生した場合、その異常が発生した旨とその明細を報知する報知手段と、前記報知手段により異常が報知された時、前記搬送計量装置の搬送手段を停止する停止手段と、を備えた構成としてもよい(請求項2)。  In addition, when any abnormality occurs in the transporting means, the weighing means, and the measuring means, the weighing conveyor is notified by the notifying means of notifying that the abnormality has occurred and its details, and the notifying means. It is good also as a structure provided with the stop means to stop the conveyance means of the said conveyance weighing apparatus (Claim 2).
前記報知手段としては、ブザーの鳴動、赤色等の点灯、或いは音声出力等が挙げられる。  Examples of the notification means include a buzzer sound, red lighting, or voice output.

上記手段によれば、作業者はどの搬送計量装置でどの物品を搬送中、或いは計量中、又は基台側計量装置による計量中に、何の異常が発生したのかを知ることができる。しかも、異常が発生した時点で搬送計量装置の搬送手段が停止されるので、作業者への危険や各装置が二次災害或いは副次的な故障を発生させてしまう危険性を回避することができる。  According to the above-described means, the operator can know what abnormality has occurred during which article is being conveyed, which is being weighed by which carrying weighing apparatus, or during weighing by the base-side weighing apparatus. Moreover, since the transport means of the transport and weighing device is stopped when an abnormality occurs, it is possible to avoid the danger to workers and the risk of each device causing a secondary disaster or a secondary failure. it can.

前記計量コンベアの具体例として、例えば、前記搬送計量装置が2台で、前記計測手段を前記直列配置の2台の搬送計量装置の間に配置する(請求項3)。  As a specific example of the weighing conveyor, for example, there are two conveyance weighing devices, and the measuring means is arranged between the two conveyance weighing devices arranged in series (Claim 3).
前記計測手段としては、例えば門形のフレームの対向する垂直辺部分に、物品検知センサが所定間隔をおいて縦一列に配置され、且つ水平辺部分には搬送される物品の横幅を検知する横幅検知センサが左右に間隔をおいて配置されている。  As the measuring means, for example, article detection sensors are arranged in a vertical line at a predetermined interval on opposite vertical sides of a gate-shaped frame, and the horizontal width of the article is detected on the horizontal side. The detection sensors are arranged on the left and right with an interval.

上記手段によれば、直列に配置した2台の搬送計量装置の機長に対応する長さの物品の重量値は、対応する搬送計量装置が有する計量手段の計量値が選択され、前記搬送計量装置の機長より長い物品についての重量値は下段の計量装置の計量値が選択採用される。即ち、2台の搬送計量装置に跨る長さの物品の重量も、下段に配置した単一の計量装置の計量値で確定される為、正しい計量値を得ることができる。  According to the above means, the weight value of the article having a length corresponding to the length of the two transport weighing devices arranged in series is selected from the weighing value of the weighing means possessed by the corresponding transport weighing device, The weight value of an article longer than the length of the machine is selected from the measurement value of the lower weighing device. That is, since the weight of an article having a length over two transport weighing devices is also determined by the measurement value of a single weighing device arranged in the lower stage, a correct weighing value can be obtained.
又、物品の長さを計測する計測手段を2台の搬送計量装置の間に配置したことで、該計測手段で長さが測定される以前に、1台目の搬送計量装置の計量手段による計量が終了する為、計測手段の計測結果が1台目の搬送計量装置の機長に対応する長さであれば、該計測手段を通過した時点で前記1台目の搬送計量装置の計量値が該物品の重量値として確定される。よって計量効率を高めることができる。  In addition, since the measuring means for measuring the length of the article is arranged between the two transport weighing devices, before the length is measured by the measuring device, the measuring means of the first transport weighing device is used. Since the measurement is completed, if the measurement result of the measuring means is a length corresponding to the machine length of the first transport weighing device, the measured value of the first transport weighing device will be Determined as the weight value of the article. Therefore, the measurement efficiency can be increased.

前記計量コンベアの基台側計量装置上に載置する複数の搬送計量装置は、何れも搬送手段と計量手段を備えているが、複数の内少なくとも1台は計量手段を備えない搬送手段のみで構成された搬送装置としてもよい。即ち、搬送手段を備えるが計量手段を備えない搬送装置と、前記搬送手段と前記計量手段とを備えた搬送計量装置を、基台側計量装置上に、搬送方向が一直線となり連続して搬送し得るように直列且つ隣接して配置し、更に、前記搬送装置と前記搬送計量装置が備える搬送手段により搬送される物品の長さを計測する計測手段と、前記計測手段で計測された物品の長さに応じて、前記搬送計量装置、基台側計量装置から出力された計量値を選択する選択手段と、を備えた構成としてもよい(請求項4)。  Each of the plurality of transport and weighing devices placed on the weighing device on the base side of the weighing conveyor includes a transport unit and a weighing unit, but at least one of the plurality is only a transport unit that does not include the weighing unit. It is good also as the comprised conveying apparatus. That is, a transport device that includes a transport unit but does not include a weighing unit, and a transport and weighing device that includes the transport unit and the weighing unit are continuously transported on a base-side weighing device in a straight transport direction. A measuring means for measuring the length of an article that is arranged in series and adjacent to each other and is conveyed by a conveying means included in the conveying apparatus and the conveying and weighing apparatus; and a length of the article measured by the measuring means According to this, it is good also as a structure provided with the selection means which selects the measured value output from the said conveyance weighing | measuring apparatus and the base side weighing | measuring apparatus.
その場合の具体例としては、例えば、搬送装置と搬送計量装置が1台宛で、前記計測手段を前記搬送装置と搬送計量装置の間に配置した構成とする(請求項6)。  As a specific example in that case, for example, a transport device and a transport weighing device are addressed to one unit, and the measuring means is arranged between the transport device and the transport weighing device (Claim 6).

上記手段によれば、上段に連設した複数の搬送計量装置のうち、少なくとも1台が計量手段を備えない搬送手段のみからなる搬送装置であっても、搬送する物品が搬送装置と搬送計量装置に跨る長さであった場合、前記搬送装置と搬送計量装置は計量手段のみを備えた基台側計量装置上に載置されていることで、該基台側計量装置の計量手段に応力が影響することはない。それにより、基台側計量装置上に載置する搬送計量装置を、全て計量手段を備えたもので構成した場合と同様、正しい計量値を計測することができる。しかも、計量手段の数を少なくできるためコストダウンを図ることができる。  According to the above means, even if at least one of the plurality of transport weighing devices arranged in the upper stage is a transport device including only a transport device that does not include the weighing device, the article to be transported is the transport device and the transport weighing device. The transport device and the transport weighing device are placed on a base-side weighing device having only a weighing means, so that stress is applied to the weighing means of the base-side weighing device. There is no impact. As a result, the correct measurement value can be measured as in the case where the transport weighing device placed on the base-side weighing device is configured with all weighing means. In addition, since the number of measuring means can be reduced, the cost can be reduced.
又、具体例の構成においては、搬送計量装置の機長内に収まる長さの物品の重量値は該搬送計量装置が備える計量手段の計量値が選択され、それ以外の長さの物品の重量値は、全て計量装置が備える計量手段の計量値が選択される。  In the configuration of the specific example, the weight value of the article having a length that can be accommodated within the captain of the conveyance weighing device is selected from the measurement value of the weighing means provided in the conveyance weighing device, and the weight value of the article having the other length is selected. Are all selected from the weighing values of the weighing means included in the weighing device.

又、前記計量コンベアは、前記搬送手段、前記計量手段、前記計測手段で何らかの異常が発生した場合、その異常が発生した旨とその明細を報知する報知手段と、前記報知手段により異常が報知された時、前記搬送装置、前記搬送計量装置の搬送手段を停止する停止手段と、を備えた構成としてもよい(請求項5)。  In addition, when any abnormality occurs in the transporting means, the weighing means, and the measuring means, the weighing conveyor is notified by the notifying means of notifying that the abnormality has occurred and its details, and the notifying means. It is good also as a structure provided with the stop means which stops the said conveying apparatus and the conveying means of the said conveyance weighing apparatus.
前記報知手段としては、ブザーの鳴動、赤色等の点灯、或いは音声出力等が挙げられる。  Examples of the notification means include a buzzer sound, red lighting, or voice output.

上記手段によれば、作業者はどの搬送装置又は搬送計量装置でどの物品を搬送中、或いは搬送計量装置で計量中、又は基台側計量装置による計量中に、何の異常が発生したのかを知ることができる。しかも、異常が発生した時点で搬送装置、搬送計量装置の搬送手段が停止されるので、作業者への危険や各装置が二次災害或いは副次的な故障を発生させてしまう危険性を回避することができる。  According to the above means, the operator can determine what abnormality has occurred during which article is being conveyed by which conveyance device or conveyance weighing device, during weighing by the conveyance weighing device, or during weighing by the weighing device on the base side. I can know. Moreover, since the transport means of the transport device and the transport weighing device are stopped when an abnormality occurs, it avoids the danger to workers and the risk that each device will cause a secondary disaster or a secondary failure. can do.

前記計量コンベアは、前記選択手段で選択された計量値と、前記計測手段で計測された計測値を表示する表示手段を備えてもよい(請求項7)。  The weighing conveyor may include a display unit that displays the measurement value selected by the selection unit and the measurement value measured by the measurement unit.
前記表示手段は、例えば、液晶表示器などによって構成され、制御盤(コンソール)に装備される。  The display means is constituted by, for example, a liquid crystal display and is provided on a control panel (console).
上記手段によれば、現在搬送計量している物品の計量値と計測値を目視確認することが容易にできる。それにより、計量コンベアの動作状態を容易に確認することができる。  According to the above means, it is possible to easily visually check the measurement value and the measurement value of the article currently being weighed. Thereby, the operation state of the weighing conveyor can be easily confirmed.

又、前記計量コンベアは、前記表示手段に表示した表示内容を上位の管理装置へ送信する通信手段を備えた構成としてもよい(請求項8)。  In addition, the weighing conveyor may include a communication unit that transmits the display content displayed on the display unit to an upper management device.
前記通信手段で送信する情報としては、少なくとも選択手段で選択された物品の計量値と前記計測手段で計測された計測値が挙げられる。  The information transmitted by the communication unit includes at least the measurement value of the article selected by the selection unit and the measurement value measured by the measurement unit.
上記手段によれば、物品毎の正しい計量値と計測値を表示手段に表示すると同時に、上位の管理装置へ送信するので、受信した管理装置は、正しい重量値(計量値)と計測値に基づいて、例えば、出荷価格、販売価格等を算出することができる。  According to the above means, since the correct measured value and measured value for each article are displayed on the display means and simultaneously transmitted to the upper management device, the received management device is based on the correct weight value (measured value) and measured value. Thus, for example, a shipping price, a selling price, etc. can be calculated.

本発明の計量コンベアは請求項1記載の構成により、各搬送計量装置の許容長さ以下の物品の重量は、それぞれの搬送計量装置の計量値が選択採用され、機長がもっとも長い搬送計量装置より長い物品については、前記複数の搬送計量装置を載置した基台側計量装置の計量値が選択採用される。即ち、各物品の重量は、それら物品の長さに対応する計量手段の計量値が採用される為、正しい計量値を得ることができる。
又、請求項2記載の構成により、作業者はどの搬送計量装置でどの物品を搬送中、或いは計量中、又は基台側計量装置による計量中に、何の異常が発生したのかを知ることができる。しかも、異常が発生した時点で搬送計量装置の搬送手段が停止されるので、作業者への危険や各装置が二次災害或いは副次的な故障を発生させてしまう危険性を回避することができる。
又、請求項3記載の構成により、2台の搬送計量装置に跨る長さの物品、或いは2台の搬送計量装置に跨る長さの物品の重量も、下段に配置した単一の基台側計量装置の計量値で確定される為、正しい計量値を得ることができる。
そして、計測手段を2台の搬送計量装置の間に配置したことで、計量効率を高めることができる。よって、時間的な測定効率と計量能力を向上できる計量コンベアを提供できる。
The weighing conveyor according to the present invention has the configuration according to claim 1, and the weight of articles below the allowable length of each conveyance weighing device is selected and adopted from the measurement value of each conveyance weighing device. For long articles, the weighing value of the weighing device on the base side on which the plurality of transfer weighing devices are mounted is selected and adopted. That is, as the weight of each article, the measurement value of the weighing means corresponding to the length of the article is adopted, so that a correct measurement value can be obtained.
In addition, according to the configuration of claim 2, the operator can know what abnormality has occurred during which article is being conveyed, which is being weighed by which weighing device, or during weighing by the weighing device on the base side. it can. Moreover, since the transport means of the transport and weighing device is stopped when an abnormality occurs, it is possible to avoid the danger to workers and the risk of each device causing a secondary disaster or a secondary failure. it can.
In addition, according to the configuration of claim 3, the weight of the article spanning two transport weighing devices or the length of the article spanning two transport weighing devices is also arranged on the single base side arranged in the lower stage. Since it is determined by the weighing value of the weighing device, a correct weighing value can be obtained.
And the measurement efficiency can be improved by arranging the measuring means between the two transport weighing devices. Therefore, it is possible to provide a weighing conveyor capable of improving temporal measurement efficiency and weighing capacity.

更に、請求項4記載の構成により、前記請求項1記載の構成と比べて少ない計量手段で同等の計量能力を備えた計量コンベアを提供できると共に、計量手段の数が少ない分安価に製作することができる。
また、請求項5記載の構成により、作業者はどの搬送計量装置、搬送装置でどの物品を搬送中、或いは搬送計量装置による計量中、又は基台側計量装置による計量中に、何の異常が発生したのかを知ることができる。しかも、異常が発生した時点で搬送計量装置又は搬送装置の搬送手段が停止されるので、作業者への危険や各装置が二次災害或いは副次的な故障を発生させてしまう危険性を回避することができる。
また、請求項6記載の構成により、2台の搬送計量装置に跨る長さの物品、或いは搬送装置と搬送計量装置に跨る長さの物品の重量も、下段に配置した単一の基台側計量装置の計量値で確定される為、正しい計量値を得ることができる。
そして、計測手段を搬送装置と搬送計量装置の間に配置したことで、計量効率を高めることができる。よって、時間的な測定効率と計量能力を向上できる計量コンベアを提供できる。
Furthermore, according to the configuration of claim 4, it is possible to provide a weighing conveyor having the same weighing capacity with a smaller number of weighing means than the configuration of claim 1, and to manufacture at a low cost because the number of weighing means is small. Can do.
In addition, according to the configuration of claim 5, the operator can find out what abnormality occurs during which conveyance weighing device, which article is being conveyed by the conveyance device, during weighing by the conveyance weighing device, or during weighing by the base-side weighing device. You can know what happened. Moreover, since the transport weighing device or the transport means of the transport device is stopped when an abnormality occurs, it avoids the danger to workers and the risk of each device causing a secondary disaster or a secondary failure. can do.
In addition, according to the configuration of claim 6, the weight of an article having a length straddling the two transport weighing devices or an article having a length straddling the transport device and the transport weighing device is also set on the single base side arranged in the lower stage. Since it is determined by the weighing value of the weighing device, a correct weighing value can be obtained.
And the measurement efficiency can be improved by arrange | positioning a measurement means between a conveying apparatus and a conveyance weighing apparatus. Therefore, it is possible to provide a weighing conveyor capable of improving temporal measurement efficiency and weighing capacity.

更に請求項7記載の構成により、現在搬送計量している物品の計量値と計測値を目視確認することが容易にできる。それにより、計量コンベアの動作状態を容易に確認することができる。
また、請求項8記載の構成により、物品毎の正しい計量値と計測値を表示手段に表示すると同時に、上位の管理装置へ送信するので、受信した管理装置は、正しい重量値(計量値)と計測値に基づいて、例えば、出荷価格、販売価格等を算出することができる。
Further the configuration according to claim 7 Symbol mounting, be confirmed visually metric of an article that is currently transported weighed and the measured value can be easily. Thereby, the operation state of the weighing conveyor can be easily confirmed.
Further, according to the configuration of the eighth aspect, since the correct measurement value and measurement value for each article are displayed on the display means and simultaneously transmitted to the upper management device, the received management device receives the correct weight value (measurement value). Based on the measured value, for example, a shipping price, a selling price, etc. can be calculated.

本発明に係る計量コンベアの実施の形態の一例を示す正面図。The front view which shows an example of embodiment of the weighing conveyor which concerns on this invention. 同平面図。FIG. 同側面図。The same side view. 計測手段部分を示す拡大図で、(a)は縦断側面図、(b)は同縦断正面図。It is an enlarged view which shows a measurement means part, (a) is a vertical side view, (b) is the vertical front view. 計量コンベアの電気ブロック図。Electric block diagram of a weighing conveyor. RAMに記憶される物品データの内容を示す図。The figure which shows the content of the article | item data memorize | stored in RAM. RAMに記憶される出荷先データの内容を示す図。The figure which shows the content of the shipping destination data memorize | stored in RAM. RAMに記憶される出荷作業データの内容を示す図。The figure which shows the content of the shipment work data memorize | stored in RAM. RAMに記憶される秤選択情報の内容を示す図。The figure which shows the content of the scale selection information memorize | stored in RAM. RAMに記憶される計量データの一例を示す図。The figure which shows an example of the measurement data memorize | stored in RAM. 物品の長さに応じた計量状態を示す図で、(a)は第2搬送計量装置(計量部2)による計量状態、(b)は第1搬送計量装置(計量部1)による計量状態、(c)は計量装置(計量部3)による計量状態を示す。It is a figure which shows the measurement state according to the length of articles | goods, (a) is the measurement state by a 2nd conveyance measurement apparatus (measurement part 2), (b) is the measurement state by a 1st conveyance measurement apparatus (measurement part 1), (C) shows the weighing state by the weighing device (metering unit 3). 図1の計量コンベアによる計量動作を示すフローチャート図。The flowchart figure which shows the measurement operation | movement by the measurement conveyor of FIG. 計量コンベアの他の実施の形態を示す正面図。The front view which shows other embodiment of a weighing conveyor.

以下、本発明の実施の形態を、図面に基づいて詳細に説明する。   Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.

図示の実施の形態は、搬送計量装置が2台、計量装置が1台からなる計量コンベアを示す。
図1〜図3は、本発明に係る計量コンベアの概略図で、物品Wを搬送する搬送手段1a
と物品Wの重量を計量する計量手段1bを備えた第1搬送計量装置1と、物品Wを搬送する搬送手段2aと物品Wの重量を計量する計量手段2bを備えた第2搬送計量装置2と、
前記第1搬送計量装置と第2搬送計量装置を載承保持する計量手段3bのみを備えた第3計量装置3とで構成されている。
前記第1搬送計量装置と第2搬送計量装置は、搬送手段1a,2aの機長に長短差(1a>2a)をつけて構成され、その第1搬送計量装置1と第2搬送計量装置2を、搬送方向が一直線となり連続して搬送し得るように直列且つ隣接して配置されている。そして、配置の順番は、搬送方向に沿い手前側に機長の長い第1搬送計量装置1を、その先(搬送方向前方)に第2搬送計量装置2が配置されている。尚、前記第1搬送計量装置1の上流側と前記第2搬送計量装置2の下流側にはそれぞれ物品Wを搬送する搬送コンベア7,7’が連設配置されている。
The illustrated embodiment shows a weighing conveyor including two transport weighing devices and one weighing device.
1 to 3 are schematic views of a weighing conveyor according to the present invention, and conveying means 1a for conveying an article W.
And a first transport weighing device 1 having a weighing means 1b for weighing the article W, a second conveyance weighing device 2 having a conveying means 2a for conveying the article W and a weighing means 2b for weighing the article W. When,
The first transport weighing device and the third weighing device 3 provided with only weighing means 3b for mounting and holding the second transport weighing device.
The first conveyance weighing device and the second conveyance weighing device are configured by adding a length difference (1a> 2a) to the length of the conveyance means 1a, 2a, and the first conveyance weighing device 1 and the second conveyance weighing device 2 are connected to each other. In addition, they are arranged in series and adjacent so that the conveying direction is a straight line and can be continuously conveyed. As for the order of arrangement, the first conveyance weighing device 1 having a long machine length is arranged on the front side along the conveyance direction, and the second conveyance weighing device 2 is arranged ahead (front in the conveyance direction). Conveyors 7 and 7 ′ for conveying the articles W are arranged in series on the upstream side of the first transport and weighing device 1 and the downstream side of the second transport and weighing device 2.

前記第3計量装置3は、前記第1搬送計量装置1と第2搬送計量装置2を載承して変形しないだけの強度を備えたフレーム3aを備え、そのフレームの略四隅下部に計量手段3bが配置されている。そして、前記計量装置3は前記計量手段3bを、上面が水平に維持された基台上に載置され、第1搬送計量装置1と第2搬送計量装置2に搬送載置されている全ての物品Wの合計重量を計量し得るように構成されている基台側の計量装置である。   The third weighing device 3 includes a frame 3a having a strength that does not deform by mounting the first and second weighing and weighing devices 1 and 2, and weighing means 3b at substantially lower corners of the frame. Is arranged. The weighing device 3 has the weighing means 3b placed on a base whose upper surface is kept horizontal, and all of the weighing means 3b conveyed and placed on the first conveyance weighing device 1 and the second conveyance weighing device 2. It is a weighing device on the base side configured to be able to weigh the total weight of the article W.

前記第1搬送計量装置1の搬送手段1a、及び第2搬送計量装置2の搬送手段2aは、ベルトコンベアで構成され、その搬送手段1a、2aの各フレームの四隅下部と、前記第3計量装置3のフレーム上面との間にそれぞれの搬送計量装置1,2の計量手段1b,2bが配置されている。これによって、第1搬送計量装置1の搬送手段1aに搬送載置された物品の重量は計量手段1bで、第2搬送計量装置2の搬送手段2aに搬送載置された物品の重量は計量手段2bで、それぞれ計量される。   The conveying means 1a of the first conveying and weighing apparatus 1 and the conveying means 2a of the second conveying and weighing apparatus 2 are constituted by belt conveyors, the lower corners of each frame of the conveying means 1a and 2a, and the third weighing apparatus. The weighing means 1b, 2b of the respective transfer weighing devices 1, 2 are arranged between the upper surface of the three frames. Thus, the weight of the article transported and placed on the transport means 1a of the first transport and weighing apparatus 1 is the weighing means 1b, and the weight of the article transported and placed on the transport means 2a of the second transport and weighing apparatus 2 is the weighing means. In 2b, each is weighed.

前記第1搬送計量装置1、第2搬送計量装置2、及び第3計量装置3が備える計量手段1b,2b,3bは、今日計測に一般的に採用されるロードセル(起歪体にひずみゲージを貼り付けたもの)を用いて構成される。そして、該ロードセルは、回路等を工夫し温度ドリフトを小さくする、防錆、防水、耐薬品、耐衝撃、耐振動等、耐環境性を強化して設置される。   The weighing means 1b, 2b, 3b provided in the first transfer weighing device 1, the second transfer weighing device 2, and the third weighing device 3 are load cells (a strain gauge is used as a strain generating body) that is generally employed for measurement today. It is configured using the pasted one). The load cell is installed with enhanced environmental resistance such as rust prevention, waterproofing, chemical resistance, shock resistance, vibration resistance, etc. to devise a circuit or the like to reduce temperature drift.

また、前記第3計量装置の上に直列に配置した第1搬送計量装置1の終端と第2搬送計量装置2の始端との間には、前記第1搬送計量装置に供給される物品Wの搬送方向の長さを計測する計測手段4が配置されている。
具体的には、図4に示すように第1搬送計量装置1の終端と第2搬送計量装置2の始端との間に起立配置した門形のフレーム5に計測手段4を構成する検知センサが設置されている。
即ち、門形のフレーム5の対向する垂直杆の対向面の一方に発光器4a、他方に受光器4bを、前記第1搬送計量装置及び第2搬送計量装置の各搬送手段の表面(ベルト表面)近傍位置に設置されている。尚、図示の検知センサは物品Wの高さも計測し得るように前記フレーム5の垂直杆に沿って一定間隔で多数配置されている。又、前記フレーム5の水平杆における搬送手段と対向する面には検知センサ8を一定間隔で並設して物品の横幅(前記検知センサ8の発光部と対向する位置に図示していない検知センサ受光部8’があり、この発光部8と受光部8’とにより搬送方向と直交する方向の幅)を計測し得るように構成してある。
この検知センサのON/OFFにより物品Wが計測手段4部分を通過したことが検知され、その通過時間(ONからOFFまでの時間)と、該物品Wを搬送する第1搬送計量装置1及び第2搬送計量装置2の搬送手段1a、2aの搬送速度(搬送手段1a、2aの搬送速度は同じ)とにより、現在搬送された物品Wの長さ寸法を算出することができる。
Moreover, between the terminal end of the 1st conveyance weighing apparatus 1 arrange | positioned in series on the said 3rd weighing apparatus, and the start end of the 2nd conveyance weighing apparatus 2, of the articles | goods W supplied to the said 1st conveyance weighing apparatus Measuring means 4 for measuring the length in the conveying direction is arranged.
Specifically, as shown in FIG. 4, a detection sensor that constitutes the measuring means 4 is provided on a gate-shaped frame 5 erected between the end of the first transport and weighing device 1 and the start of the second transport and weighing device 2. is set up.
That is, the light emitter 4a is disposed on one of the opposed surfaces of the vertical frame of the gate-shaped frame 5 and the light receiver 4b is disposed on the other surface, and the surface (belt surface) of each conveying means of the first and second conveying and weighing devices. ) It is installed in the vicinity. A number of detection sensors shown in the figure are arranged at regular intervals along the vertical ridges of the frame 5 so that the height of the article W can also be measured. Further, detection sensors 8 are arranged in parallel at regular intervals on the surface of the frame 5 facing the conveying means, and the width of the article (a detection sensor not shown in the position facing the light emitting portion of the detection sensor 8). There is a light receiving portion 8 ′, and the light emitting portion 8 and the light receiving portion 8 ′ are configured to measure the width in the direction perpendicular to the transport direction.
It is detected by the ON / OFF of this detection sensor that the article W has passed through the measuring means 4, the passing time (time from ON to OFF), the first transport and weighing device 1 that transports the article W, and the first 2 The length dimension of the article W currently conveyed can be calculated from the conveyance speeds of the conveyance means 1a and 2a of the conveyance weighing device 2 (the conveyance speeds of the conveyance means 1a and 2a are the same).

上記の如く構成した計量コンベアによる物品Wの計量及び物品Wの長さ寸法の計測は、該計量コンベアの近傍に設置されるマイクロコンピュータ等で構成される制御盤(コンソール)によって制御される。
図5は上記した計量コンベアの制御関係のブロック図で、第1搬送計量装置1、第2搬送計量装置2、第3計量装置3の動作制御とコントロールを行うCPU10と、制御を行うプログラムを記憶するROM11と、第1搬送計量装置1、第2搬送計量装置2、第3計量装置3の計量手段1b〜3bからの計量値、計測手段(検知センサ)4からの出力値及び計測値、更に各計量手段が計量対象とする物品の長さ範囲を設定した秤選択情報等を記憶するRAM12と、物品Wの計測値及び重量、搬送手段で搬送される物品に関する情報等を表示する表示部13と、計量手段1b〜3bのメンテナンスや予め設定する情報(秤選択情報等)の入力時に操作する入力操作部14と、エラー及び緊急の時に注意を喚起させる為の報知手段(音声出力部)15と、上位装置(管理装置)とのデータ通信を行う通信部16と、接続機器とのI/Oインターフェースと、第1搬送計量装置1の搬送部(搬送手段1a)18と、第1搬送計量装置1の計量部(計量手段1b)19と、物品Wの搬送方向の長さを検知する光センサなどによる長さ検出部(計測手段4)20と、第2搬送計量装置2の搬送部(搬送手段2a)21と、第2搬送計量装置2の計量部(計量手段2b)22と、第3計量装置3の計量部(計量手段3b)23等で構成されている。前記計量部19、22、23はA/D変換器を含む。
尚、前記報知手段15は、音声出力部の他に、赤色回転灯等を装備してもよい。その場合、回転灯などは前記計測手段4を装備するフレーム5に取り付けるようにしてもよい。
The weighing of the article W and the measurement of the length dimension of the article W by the weighing conveyor configured as described above are controlled by a control panel (console) constituted by a microcomputer or the like installed in the vicinity of the weighing conveyor.
FIG. 5 is a block diagram of the control related to the above-described weighing conveyor, and stores a CPU 10 for controlling and controlling the operation of the first transfer weighing device 1, the second transfer weighing device 2, and the third weighing device 3, and a program for performing the control. ROM 11, weighing values from weighing means 1 b to 3 b of first weighing and weighing apparatus 1, second conveying and weighing apparatus 2, and third weighing apparatus 3, output values and measured values from measuring means (detection sensor) 4, and A RAM 12 that stores scale selection information that sets the length range of articles to be weighed by each weighing unit, and a display unit 13 that displays measurement values and weights of the articles W, information about articles conveyed by the conveying means, and the like. And an input operation unit 14 that is operated at the time of maintenance of the weighing units 1b to 3b and input of preset information (such as scale selection information), and an informing unit (voice output for alerting in the event of an error or emergency) ) 15, a communication unit 16 that performs data communication with a host device (management device), an I / O interface with a connected device, a transport unit (transport unit 1 a) 18 of the first transport weighing device 1, a first The weighing unit (weighing unit 1b) 19 of the conveyance weighing device 1, the length detection unit (measurement unit 4) 20 using an optical sensor or the like that detects the length of the article W in the conveyance direction, and the conveyance of the second conveyance weighing device 2. Unit (conveying means 2 a) 21, measuring part (measuring means 2 b) 22 of the second conveying and weighing apparatus 2, measuring part (measuring means 3 b) 23 of the third measuring apparatus 3, and the like. The weighing units 19, 22, and 23 include A / D converters.
The notification means 15 may be equipped with a red rotating lamp or the like in addition to the audio output unit. In that case, a rotating lamp or the like may be attached to the frame 5 equipped with the measuring means 4.

図6は上位の管理装置に記憶される物品データの概要を示し、物品を識別する物品コード、JANコード、物品名称、単位、保管棚番号等の項目で構成されている。
図7は上位の管理装置が記憶する出荷先データの概要を示し、物品の出荷先を特定する出荷先番号、出荷先名、配送ルート、集荷先、出荷先の郵便番号、住所、電話番号等の項目で構成されている。
図8は同様に上位の管理装置が記憶する出荷作業データの概要を示し、出荷ID、出荷ID枝番、出荷先番号、出荷先名、納品日、物品コード、JANコード、物品名称、出荷数、実績数、完了フラグ等の項目で構成されている。前記出荷作業データの出荷IDと出荷ID枝番とが計量コンベアへ送信され、前記RAM12のワークエリアへ記憶される。
図9は前記RAM12に設定記憶される秤選択情報の概要を示し、秤番号(1:第2搬送計量装置、2:第1搬送計量装置、3:第3計量装置)、計量域1(下限値)、計量域2(上限値)、前記計量域1,2に基づく判定(以下、以内、以上)等の項目で構成されている。
図10は前記RAM12のワークメモリに記憶される各計量手段の計量値で、図示は長さが1051mm以上で50kgの物品を連続して搬送計量した時の計量値を示し、同図の計量値の場合、秤番号3の時刻2、4、6の値が物品1、2、3の重量として採択される。
FIG. 6 shows an outline of the article data stored in the upper management apparatus, and is composed of items such as an article code for identifying the article, a JAN code, an article name, a unit, and a storage shelf number.
FIG. 7 shows an outline of the shipping destination data stored in the host management device, and includes a shipping destination number, a shipping destination name, a delivery route, a collection destination, a postal code of the shipping destination, an address, a telephone number, etc. It consists of items.
FIG. 8 similarly shows an outline of the shipping work data stored in the host management device, and includes a shipping ID, a shipping ID branch number, a shipping destination number, a shipping destination name, a delivery date, an article code, a JAN code, an article name, and the number of shipments. And the number of achievements and completion flags. The shipping ID and shipping ID branch number of the shipping work data are transmitted to the weighing conveyor and stored in the work area of the RAM 12.
FIG. 9 shows an outline of the scale selection information set and stored in the RAM 12, and the scale number (1: second transport weighing device, 2: first transport weighing device, 3: third weighing device), weighing area 1 (lower limit) Value), measurement area 2 (upper limit value), determination based on the measurement areas 1 and 2 (hereinafter, within, above), and the like.
FIG. 10 shows the measured values of the respective weighing means stored in the work memory of the RAM 12, and the figure shows the measured values when a 50 kg article having a length of 1051 mm or more is continuously conveyed and weighed. In this case, the values of time 2, 4, and 6 of scale number 3 are adopted as the weights of articles 1, 2, and 3.

次に、計量コンベアによる搬送物品の計量及び物品の長さ計測の動作を図12のフローチャートに基づいて説明する。
S101…プログラムを終了するか否かの判定をする。表示部に表示されている「終了」
或いは入力操作部に設けられた「終了」ボタンが押されたか否かの判定。押さ
れた場合(YES)はエンドへ、それ以外(NO)はS102へ進む。
S102…作業開始か否かの判定をする。具体的には表示部に表示されている「開始」、
或いは入力操作部に設けられた「開始」ボタンが押されたか否かの判定。押さ
れた場合(YES)はS103へ進み、それ以外(NO)はS101へ戻る。
S103…第1搬送計量装置1の搬送手段1aと第2搬送計量装置2の搬送手段2aを始
動させる。
S104…現在、エラー状態にあるか否かを判定する。具体的には、第1搬送計量装置1
、第2搬送計量装置2、第3計量装置3の各計量手段が計量不能の状態、各搬
送手段に異常があり物品を搬送できない状態、計測手段(検知センサ)4に異
常がある場合等、検出されたエラーがあるか否かの判定。異常がある場合(YE
S)は、その異常内容を表示部へ表示しS105へ進み、異常がない場合(NO
)はS106へ進む。
Next, the operation of weighing the conveyed article by the weighing conveyor and measuring the length of the article will be described based on the flowchart of FIG.
S101: It is determined whether or not to end the program. "End" displayed on the display
Alternatively, it is determined whether or not an “end” button provided in the input operation unit has been pressed. Pressed
If yes (YES), go to the end, otherwise (NO) go to S102.
S102 ... It is determined whether or not the work is started. Specifically, “Start” displayed on the display,
Alternatively, it is determined whether or not a “start” button provided in the input operation unit has been pressed. Pressed
If yes (YES), the process proceeds to S103, otherwise (NO) returns to S101.
S103: Start the transport means 1a of the first transport and weighing device 1 and the transport means 2a of the second transport and weighing device 2.
Move.
S104: It is determined whether or not there is currently an error state. Specifically, the first transport weighing device 1
, Each of the weighing means of the second transport weighing device 2 and the third weighing device 3 is in a state where the weighing is impossible,
When the feeding means is abnormal and the article cannot be conveyed, the measuring means (detection sensor) 4
Determining whether there is a detected error, such as when there is always. If there is an abnormality (YE
S) displays the details of the abnormality on the display unit and proceeds to S105. If there is no abnormality (NO
) Proceeds to S106.

S105…表示部に表示されている「解除」或いは入力操作部に設けられた「解除」ボタ
ンが押されたか否かの判定をする。「解除」が押された場合はS103へ戻る

物理的な原因によるエラーの場合、作業者によって対策(処置)されていない
場合には、「解除」ボタンを押せないようにしてもよい。
S106…上位の管理装置より出荷IDを受信しているか否かを判定する。受信している
場合(YES)はS107へ進み、受信していない場合(NO)はS108へ進む

受信していない場合とは、上位管理装置で記憶する出荷作業データ(図8参照
)が全て終わっている或いは無い場合は、出荷データ無が受信されるので、一
意の仮想出荷IDを連番でRAM12のワークエリアへ自動作成し、その出荷
IDを現在の物品の出荷IDとしてセットしS108へ進む。尚、出荷IDは
、搬送計量する物品と計量確定した重量とを紐付けるために使われる。上位管
理装置側で、出荷指示データ一つ一つをユニーク(唯一)とする出荷IDが附
番(或る起点からの数字をインクリメントしたものでも良い)される。上位管
理装置で附番されない場合は、計量コンベアの制御盤のCPU10がRAM1
2のワークエリアへ搬送計量される物品毎に出荷IDを附番する。
S107…上位管理装置へ出荷作業データを問い合わせ、受信した出荷IDはRAM12
のワークエリアへ記憶しS108へ進む。
S105 ... "Release" displayed on the display unit or "Release" button provided on the input operation unit
It is determined whether or not the button is pressed. If “Cancel” is pressed, the process returns to S103.
.
In the case of an error due to a physical cause, no countermeasure (action) has been taken by the operator.
In this case, the “release” button may not be pressed.
S106: It is determined whether or not a shipping ID has been received from the upper management apparatus. Receiving
If yes (YES), go to S107; if not received (NO), go to S108
.
If not received, the shipment work data stored in the higher-level management device (see FIG. 8)
) Is all or no data is received, no shipment data is received.
The virtual shipping ID is automatically created in the work area of the RAM 12 by serial number, and the shipment
The ID is set as the shipping ID of the current article, and the process proceeds to S108. Shipment ID is
Used for associating an article to be weighed with a weighed weight. Upper pipe
On the physical device side, a shipping ID that makes each shipping instruction data unique is unique.
Number (may be an incremented number from a certain starting point). Upper pipe
When not numbered by the physical device, the CPU 10 of the control board of the weighing conveyor is RAM1
A shipping ID is assigned to each article to be transported and weighed to work area 2.
S107: Inquires the shipping management data to the host management apparatus, and the received shipping ID is stored in the RAM 12.
Are stored in the work area and the process proceeds to S108.

S108…搬送手段で搬送される物品のイン(IN)とアウト(OUT)を検知する検知セン
サ(計測手段)4により、物品が搬送されてきたか否かを判定する。フォトセ
ンサ1個で物品の長さを計測する場合は、光センサにより一定間隔でON/O
FFを検出する。前記検出する時間の間隔は、搬送手段(ベルトコンベア)の
搬送速度に応じて変化するようになっている。搬送手段(ベルトコンベア)の
搬送速度は、メンテナンスモードで設定され、RAM12の条件設定エリアに
記憶される。
センサがONの場合(NO)は、物品Wが搬送されてきていないと判断しS10
6へ戻り、センサがOFFの場合(YES)は、物品Wが搬送されてきたと判断
しS109へ進む。尚、フォトセンサは1個で行ってもよいが、2個以上のフ
ォトセンサを使い一定間隔でON/OFFを各センサで検知し、物品Wの長さ
を計測するようにしてもよい。
尚、前記検知は、bright=ON(物品によりセンサが遮られていない)、dark=
OFF(物品によりセンサが遮られている)の信号判定を行っているが、条件に
合わせて前記出力信号の判定を適宜変更してもよい。
S109…前記センサのON/OFFの計測と搬送手段の搬送速度により、搬送物品Wの
長さが演算される。
前記演算にて物品の長さを算出する方法の他に、搬送計量装置の両端に物品検
出センサを設けて、その物品検出センサが出力するON/OFFの出力信号の
組み合わせ、或いはその順序により計量装置を選択する方法、又は、単純に物
品が搬送計量装置の搬送方向の前後端からはみ出しているか否かにより計量装
置を選択する方法により、選択する秤装置の番号を決定するようにしてもよい

S110…物品Wの重量を計量手段1b〜3b(計量部19,22,23)各々が計測し
、その計測値をワークメモリへ記憶する。
S108: Detection sensor for detecting in (IN) and out (OUT) of articles conveyed by the conveying means.
Whether or not the article has been conveyed is determined by the measuring device 4. Photo set
When measuring the length of an article with one sensor, it is turned ON / O at regular intervals by an optical sensor.
FF is detected. The interval of the time to detect is a conveyance means (belt conveyor).
It changes according to the conveyance speed. Conveying means (belt conveyor)
The conveyance speed is set in the maintenance mode and is set in the condition setting area of the RAM 12.
Remembered.
If the sensor is ON (NO), it is determined that the article W has not been conveyed, and S10
Returning to step 6, if the sensor is OFF (YES), it is determined that the article W has been conveyed.
The process proceeds to S109. A single photo sensor may be used, but two or more photo sensors may be used.
The length of the article W is detected by using each photo sensor to detect ON / OFF at regular intervals.
May be measured.
The detection is as follows: bright = ON (the sensor is not obstructed by the article), dark =
OFF (sensor is blocked by article)
In addition, the determination of the output signal may be changed as appropriate.
S109: Depending on the ON / OFF measurement of the sensor and the conveyance speed of the conveyance means,
The length is calculated.
In addition to the method of calculating the length of an article by the above calculation, the article inspection is performed at both ends of the transport weighing device.
An output sensor is provided, and the ON / OFF output signal output by the article detection sensor
A method of selecting a weighing device according to a combination or order, or simply an object
Weighing equipment depends on whether the product protrudes from the front and rear ends in the transport direction of the transport weighing device.
The number of the weighing device to be selected may be determined by the method of selecting the device.
.
S110: Each of the weighing means 1b to 3b (the weighing units 19, 22, and 23) measures the weight of the article W.
The measured value is stored in the work memory.

S111…搬送物品Wの計量値は、前記検知センサ(計測手段)4で計測された物品Wの
長さに基づいて、大荷重を計量する計量手段3b、中荷重を計量する計量手段
1b、小荷重を計量する計量手段2bからの計量値を各々連続して記憶したR
AM12の中から選択決定される。
その選択決定は、前記検知センサによる物品の検知時間と搬送手段の搬送速度
から算出された物品Wの長さが、440mm以下の場合はRAM12に記憶さ
れた秤選択情報(図9参照)に基づいて小荷重を計量する第2搬送計量装置2
の計量手段2b(秤番号:1)からの計量値を読み出しS112へ進む。物品
Wの長さが441mm以上1050mm以下の場合は、同様にRAM12に記
憶された秤選択情報(図9参照)に基づいて中荷重を計量する第1搬送計量装
置1の計量手段1b(秤番号:2)からの計量値を読み出しS113へ進む。
物品Wの長さが1051mm以上の場合は、同様にRAM12に記憶された秤
選択情報(図9参照)に基づいて大荷重を計量する第3計量装置3の計量手段
3b(秤番号:3)からの計量値を読み出しS114へ進む。
S109で秤装置の番号を決定する方法の場合、S109で決定された秤装置
の番号に従い分岐するものとする。
S111: The measured value of the conveyed article W is the measured value of the article W measured by the detection sensor (measurement means) 4.
Measuring means 3b for measuring a heavy load based on the length, measuring means for measuring a medium load
1b, R which memorize | stores the measured value from the measuring means 2b which measures a small load each continuously
A selection is made from among the AMs 12.
The selection is determined by the detection time of the article by the detection sensor and the conveyance speed of the conveyance means.
When the length of the article W calculated from the above is 440 mm or less, it is stored in the RAM 12.
Second weighing machine 2 for weighing a small load based on the selected scale selection information (see FIG. 9)
The measured value from the weighing means 2b (balance number: 1) is read and the process proceeds to S112. Article
If the length of W is not less than 441 mm and not more than 1050 mm, it is recorded in the RAM 12 in the same manner.
The first transport weighing device that measures the medium load based on the memorized scale selection information (see FIG. 9)
The measured value from the weighing means 1b (balance number: 2) of the device 1 is read and the process proceeds to S113.
When the length of the article W is 1051 mm or more, the scale stored in the RAM 12 is similarly used.
Measuring means of the third measuring device 3 for measuring a large load based on the selection information (see FIG. 9)
The measurement value from 3b (balance number: 3) is read, and the process proceeds to S114.
In the case of the method of determining the number of the scale device in S109, the scale device determined in S109
Branch according to the number.

S112…第2搬送計量装置2の機長内に収まる長さの物品W1が搬送されたので、計量
手段2b(秤番号:1)の計量値に基づいて重量を算出しS115へ進む(図
11(a)参照)。
連続して搬送される複数物品毎の重量確定は、前記長さを検知する検知センサ
(計測手段)4での通過時間(ONからOFFまでの時間)と搬送手段1a、
2aの搬送速度と、前記RAM12に連続して記憶された計量手段2b(秤番
号:1)の計測値により、物品単位の周期変動毎に切り出すことができるので
、切り出された計測値毎に夫々の物品の重量を周知慣用技術である移動平均等
で算出して連続して搬送される物品の重量を順次確定させる。
尚、計測及び計量時に異常があった場合や、算出された物品の重量が異常を示
す値であった場合には、異常が発生している旨とその原因とをRAM12のワ
ークエリアへ記憶する。
S112 ... Since the article W1 having a length that fits within the captain of the second transport and weighing device 2 has been transported,
The weight is calculated based on the measured value of the means 2b (balance number: 1), and the process proceeds to S115 (FIG.
11 (a)).
The detection of the weight for each of a plurality of articles conveyed continuously detects the length.
(Measuring means) 4 transit time (time from ON to OFF) and conveying means 1a,
2a and the weighing means 2b (balance number) continuously stored in the RAM 12.
No. 1) Because it can be cut out for each period fluctuation of the article unit by the measured value of 1)
For each measured value, the weight of each article is a well-known and commonly used technique such as moving average
The weight of articles continuously conveyed is calculated in order and determined.
If there is an abnormality during measurement and weighing, or the calculated weight of the article indicates an abnormality.
If the value is equal to the threshold value, the fact that an abnormality has occurred and the cause thereof are
Stored in the test area.

S113…第2搬送計量装置2の機長より長く第1搬送計量装置1の機長内に収まる長さ
の物品W2が搬送されたので、計量手段1b(秤番号:2)の計量値に基づい
て重量を算出しS115へ進む(図11(b)参照)。
連続して搬送される複数物品毎の重量確定は、前記同様、前記長さを検知する
検知センサ(計測手段)4での通過時間(ONからOFFまでの時間)と搬送
手段1a、2aの搬送速度と、前記RAM12に連続して記憶された計量手段
1b(秤番号:2)の計測値により、物品単位の周期変動毎に切り出すことが
できるので、切り出された計測値毎に夫々の物品の重量を周知慣用技術である
移動平均等で算出して連続して搬送される物品の重量を順次確定させる。
尚、計測及び計量時に異常があった場合や算出された物品の重量が異常を示す
値であった場合には異常が発生している旨とその原因とをRAM12のワーク
エリアへ記憶する。
S113: Length that is longer than the length of the second transfer weighing device 2 and fits within the length of the first transfer weighing device 1
Since the article W2 is conveyed, based on the measurement value of the weighing means 1b (balance number: 2)
The weight is calculated and the process proceeds to S115 (see FIG. 11B).
As described above, the weight is determined for each of the plurality of articles that are continuously conveyed.
Passing time (time from ON to OFF) at the detection sensor (measurement means) 4 and conveyance
The conveying speed of the means 1a, 2a and the weighing means stored continuously in the RAM 12
It is possible to cut out every period fluctuation of the article unit by the measurement value of 1b (balance number: 2)
Because it is possible, the weight of each article for each measured value cut out is a well-known and conventional technique
The weights of articles continuously conveyed are calculated in order by moving averages and the like are sequentially determined.
In addition, when there is an abnormality during measurement and weighing, or the weight of the calculated article indicates an abnormality
If it is a value, the fact that an abnormality has occurred and the cause thereof are
Remember to area.

S114…第1搬送計量装置1の機長より長い物品W3が搬送されたので、計量手段3(
秤番号:3)の計量値に基づいて重量を算出しS115へ進む(図11(c)
参照)。
連続して搬送される複数物品毎の重量確定は、前記同様、前記長さを検知する
検知センサ(計測手段)4での通過時間(ONからOFFまでの時間)と搬送
手段1a、2aの搬送速度と、前記RAM12に連続して記憶された計量手段
3b(秤番号:3)の計測値により、物品単位の周期変動毎に切り出すことが
できるので、切り出された計測値毎に夫々の物品の重量を周知慣用技術である
移動平均等で算出して連続して搬送される物品の重量を順次確定させる。
尚、計測及び計量時に異常があった場合や算出された物品の重量が異常を示す
値であった場合には異常が発生している旨とその原因とをRAM12のワーク
エリアへ記憶する。
S114 ... Since the article W3 longer than the captain of the first transport and weighing device 1 has been transported, the weighing means 3 (
The weight is calculated based on the measured value of the scale number: 3), and the process proceeds to S115 (FIG. 11 (c)).
reference).
As described above, the weight is determined for each of the plurality of articles that are continuously conveyed.
Passing time (time from ON to OFF) at the detection sensor (measurement means) 4 and conveyance
The conveying speed of the means 1a, 2a and the weighing means stored continuously in the RAM 12
It is possible to cut out every period fluctuation of the article unit by the measured value of 3b (balance number: 3)
Because it is possible, the weight of each article for each measured value cut out is a well-known and conventional technique
The weights of articles continuously conveyed are calculated in order by moving averages and the like are sequentially determined.
In addition, when there is an abnormality during measurement and weighing, or the weight of the calculated article indicates an abnormality
If it is a value, the fact that an abnormality has occurred and the cause thereof are
Remember to area.

S115…計測時、計量時、搬送時、重量算出時、及び各種センサの異常があったか否か
等を、RAM12のワークエリアに記憶された情報に基づいて判定を行う。エ
ラーと判定された場合(YES)はS116へ進み、エラーが無い場合(NO)は
S118へ進む。
S116…エラー内容を表示部13に表示する。或いはパトライトを点灯(点滅)させる

S117…第1搬送計量装置1の搬送手段1aと第2搬送計量装置2の搬送手段2aを停
止させS104へ戻る。
S118…計測及び計量データが表示されている制御盤(コンソール)の画面へ、算出さ
れた物品の重量を表示する。(表示される重量は、物品の搬送順とそれに対応
する長さ、重量等を項目名と其れに対応する値を示す二次元の表で随時表示を
行う。)
前記計量データの表示は、現在搬送されている物品が計量され変動していく値
が随時表示され、重量が算出され確定されると確定された重量が固定表示され
る。
S119…前記結果を実績として記憶する。RAM12の実績記憶エリアに記憶すると共
に、上位管理装置へ送信する。尚、常に上位管理装置へ随時送信する場合には
、RAM12の実績記憶エリアに記憶しなくてもよい。
S120…出荷作業が完了したか否か、或いは出荷作業を中断するかの判定をする。作業
完了或いは中断の場合(YES)はS101へ戻り、作業が完了していない場合
(NO)はS104へ戻る。
物品の出荷作業を終了するか否かは、表示部13に表示されている「完了/中
断」、或いは入力操作部に設けられた「完了/中断」ボタンが押されたか否か
、或いは上位管理装置から「完了/中断」を受信したかの判定で行われる。「
完了/中断」ボタンが押された、或いは「完了/中断」のデータを上位管理装
置より受信した場合はS101へ戻り、それ以外はS104へ戻る。
S115: At the time of measurement, at the time of weighing, at the time of conveyance, at the time of weight calculation, and whether or not there was an abnormality in various sensors
Are determined based on the information stored in the work area of the RAM 12. D
If it is determined that the error has occurred (YES), the process proceeds to S116. If there is no error (NO),
Proceed to S118.
S116: The error content is displayed on the display unit 13. Or turn on (flash) the patrol light
.
S117: Stop the transfer means 1a of the first transfer weighing device 1 and the transfer means 2a of the second transfer weighing device 2.
Stop and return to S104.
S118: Calculated to the screen of the control panel (console) on which measurement and weighing data are displayed.
The weight of the selected item is displayed. (The displayed weight corresponds to the order of goods transport and
The length, weight, etc. to be displayed are displayed at any time in a two-dimensional table showing the item name and the corresponding value.
Do. )
The display of the weighing data is the value that the currently transported item is weighed and fluctuates.
Is displayed as needed, and when the weight is calculated and confirmed, the confirmed weight is fixedly displayed.
The
S119: The result is stored as a record. When stored in the record storage area of the RAM 12,
To the upper management device. In case of always sending to the upper management device
, It may not be stored in the result storage area of the RAM 12.
S120: It is determined whether or not the shipping operation is completed or whether or not the shipping operation is interrupted. work
If completed or interrupted (YES), return to S101, and work is not completed
(NO) returns to S104.
Whether or not to end the shipment operation of the article is displayed on the display unit 13 as “complete / medium”
”” Or whether the “Complete / Suspend” button provided on the input operation unit has been pressed.
Alternatively, the determination is made as to whether or not “completion / interruption” has been received from the upper management apparatus. "
When the “Complete / Suspend” button is pressed or the “Complete / Suspend” data is
If received from the device, the process returns to S101, otherwise the process returns to S104.

上記した図示の計量コンベアは、搬送手段と計量手段(計量部)とが一体となった中荷重を計量する第1搬送計量装置1と小荷重を計量する第2搬送計量装置2を直列且つ隣接して配置し、前記搬送手段を備えず計量手段のみを備えた大荷重を計量する計量装置3の上に積層配置した構造を有し、前記中荷重を計量する第1搬送計量装置1、小荷重を計量する第2搬送計量装置2、大荷重を計量する計量装置3からの計測値を各々連続してRAM12に記憶する。
更に、搬送物品の長さ(搬送方向の長さ)を計測するセンサ(計測手段)を、第1搬送計量装置1と第2搬送計量装置2との間に設け、このセンサのONとOFFにより物品が通過したことを検知し、その通過時間(ONからOFFまでの時間)と、前記搬送手段の搬送速度とにより、現在搬送された物品の長さを算出する。
搬送物品の計量値は、前記センサで計測され算出された物品の長さに基づいて、前記中荷重、小荷重、大荷重を計量する計量手段1b、2b、3b(計量部1、2、3)からの計測値を各々連続して記憶したRAM12の中から選択決定される。
In the illustrated weighing conveyor, the first conveying and weighing device 1 for weighing a medium load and the second conveying and weighing device 2 for weighing a small load are connected in series and adjacent to each other, in which the conveying means and the weighing means (metering unit) are integrated. A first transport and weighing device 1 that measures the medium load, and has a structure that is stacked on a weighing device 3 that measures only a large load that does not include the conveying unit and includes only a weighing unit. The measured values from the second transport weighing device 2 for weighing the load and the weighing device 3 for weighing the heavy load are stored in the RAM 12 successively.
Further, a sensor (measuring means) for measuring the length of the transported article (the length in the transport direction) is provided between the first transport and weighing device 1 and the second transport and weighing device 2, and the sensor is turned on and off. It detects that the article has passed, and calculates the length of the currently conveyed article based on the passage time (time from ON to OFF) and the conveyance speed of the conveyance means.
The weighing value of the conveyed article is a weighing means 1b, 2b, 3b (weighing units 1, 2, 3) for weighing the medium load, the small load, and the large load based on the length of the article measured and calculated by the sensor. ) From the RAM 12 in which the measured values from each are continuously stored.

その選択決定は、算出された物品の長さが、第2搬送計量装置2の機長寸法以下(実施例では440mm以下)の場合はRAM12に記憶された小荷重を計量する第2搬送計量装置2の計量手段2b(計量部2)の計測値を採用する。算出された物品の長さが、第2搬送計量装置の機長寸法以上で第1搬送計量装置1の機長寸法以下(実施例では441mm以上で1050mm以下)の場合はRAM12に記憶された中荷重を計量する第1搬送計量装置1の計量手段1b(計量部1)の計測値を採用する。又、算出された物品の長さが、第1搬送計量装置1の機長寸法以上(実施例では1051mm以上)の場合はRAM12に記憶された大荷重を計量する計量装置3の計量手段3b(計量部3)の計測値を採用する。そして、前記RAM12から読み出された計測値を周知慣用技術である移動平均等で求め、表示部へ順次表示すると共に、外部装置との接続インターフェースを用いて上部管理装置へ送信を行う。   In the selection and determination, when the calculated article length is equal to or less than the machine length dimension of the second transport and weighing device 2 (440 mm or less in the embodiment), the second transport and weighing device 2 that measures the small load stored in the RAM 12 is used. The measurement value of the weighing means 2b (the weighing unit 2) is adopted. When the calculated length of the article is not less than the machine length dimension of the second transfer weighing apparatus and not more than the machine length dimension of the first transfer weighing apparatus 1 (from 441 mm to 1050 mm in the embodiment), the medium load stored in the RAM 12 is used. The measured value of the weighing means 1b (the weighing unit 1) of the first transport weighing device 1 to be measured is adopted. If the calculated length of the article is equal to or larger than the machine length of the first transport and weighing device 1 (1051 mm or more in the embodiment), the weighing means 3b (weighing) of the weighing device 3 that measures a large load stored in the RAM 12 is used. The measurement value of part 3) is adopted. Then, the measured value read from the RAM 12 is obtained by a moving average or the like, which is a well-known and commonly used technique, sequentially displayed on the display unit, and transmitted to the upper management device using a connection interface with an external device.

連続して搬送される物品毎の重量確定は、前記物品の長さを検出するセンサの通過時間(ONからOFFまでの時間)と搬送手段の搬送速度と前記RAM12に連続して記憶された計測値とにより、物品単位の周期変動毎に切り出すことができるので、切り出された計測値毎に夫々の物品の重量を算出して、連続して搬送する物品の重量を順次確定させる。
上記方式を用いることにより、物品が斜めに搬送されたとしても、実際に搬送される物品の搬送長に基づいて計量手段(計量部)を選択し、その選択した単一の計量手段の計測値で重量を確定するので、現在、物品がどの搬送計量装置上に載置搬送されているのか、又は2台の搬送計量装置に跨って載置搬送されているのかを容易に判別することができる。
これにより、独立した夫々の計量手段(計量部)からの計測値に基づいて、物品の重量確定を行うことができるので、搬送する物品の正しい重量を表示或いは出力することができる。
The weight of each article conveyed continuously is determined by the measurement time continuously stored in the RAM 12 and the passage time (time from ON to OFF) of the sensor for detecting the length of the article, the conveying speed of the conveying means. Therefore, the weight of each article can be calculated for each of the cut measurement values, and the weight of the articles to be continuously conveyed can be sequentially determined.
By using the above method, even if the article is transported obliquely, the measuring means (measuring unit) is selected based on the transport length of the actually transported article, and the measured value of the selected single weighing means Since the weight is determined, it is possible to easily determine on which transport weighing device the article is currently placed and transported, or whether the article is placed and transported across the two transport weighing devices. .
Accordingly, the weight of the article can be determined based on the measurement value from each independent weighing means (measuring unit), so that the correct weight of the article to be conveyed can be displayed or output.

図13は、計量手段3bのみを備えた第3計量装置3上に、搬送手段1aのみを備えた第1搬送装置1’を1台と、搬送手段2aと計量手段2bとを備えた第2搬送計量装置2を1台、直列に配置して積層した計量コンベアを示し、前示実施例1と同様、第1搬送装置1’と前記第2搬送計量装置2が備える搬送手段2aにより搬送される物品の長さを計測する計測手段4が第1搬送装置1’と第2搬送計量装置2との間に配置されている。即ち、前記実施例1の計量コンベアとは第1搬送装置1’が計量手段を備えていない点が異なるのみである。   FIG. 13 shows a second measuring apparatus 3 having a first conveying apparatus 1 ′ having only a conveying means 1a, a conveying means 2a and a weighing means 2b on a third weighing apparatus 3 having only a weighing means 3b. 1 shows a weighing conveyor in which one conveyance weighing device 2 is arranged in series and stacked, and is conveyed by the conveying means 2a included in the first conveyance device 1 ′ and the second conveyance weighing device 2 as in the first embodiment. Measuring means 4 for measuring the length of the article to be measured is arranged between the first transport device 1 ′ and the second transport weighing device 2. That is, the only difference from the weighing conveyor of the first embodiment is that the first transfer device 1 'is not equipped with weighing means.

又、第1搬送装置1’と第2搬送計量装置2の機長は、前記実施例1と同様、第1搬送装置1’の機長が第2搬送計量装置2の機長より長く形成されている。尚、前記実施例1で示した部材と同じ部材については同一符号を付し、説明を省略する。   Further, the machine lengths of the first transfer device 1 ′ and the second transfer weighing device 2 are formed so that the machine length of the first transfer device 1 ′ is longer than the machine length of the second transfer weighing device 2 as in the first embodiment. The same members as those shown in the first embodiment are denoted by the same reference numerals and description thereof is omitted.

上記構成の計量コンベアで物品Wを搬送した場合、搬送される物品Wの長さ寸法が第2搬送計量装置2の機長内に収まる寸法であれば第2搬送計量装置2の計量手段2bの計量値が選択される。又、搬送される物品Wの長さ寸法が第2搬送計量装置2の機長より長く第1搬送装置1’の機長内に納まる長さ寸法である場合、及び第1搬送装置1’の機長より長い寸法である場合は、第3計量装置3の計量手段3bの計量値が選択される。
即ち、前記実施例1の計測動作を示す図12のフローチャートとの関係で説明すると、S111の秤選択で、物品Wの長さが「中」と「大」と判定された場合、S114に進み、計量手段3の計量値に基づいて重量が算出される。
また、複数の長さが異なる物品が順次搬送され、第1搬送装置1‘と第2搬送計量装置2の各搬送装置の機長内であり且つ跨ることなく物品が載置搬送された状態において、第1搬送装置1’上の物品の重量は、第3計量装置3の計量データから第2搬送計量装置2の計量データを減算すれば算出することができる。
When the article W is conveyed by the weighing conveyor having the above-described configuration, if the length dimension of the article W to be conveyed is a dimension that can be accommodated within the captain of the second conveyance weighing apparatus 2, the measurement by the weighing means 2b of the second conveyance weighing apparatus 2 is performed. A value is selected. Further, when the length of the article W to be conveyed is longer than the length of the second transport weighing device 2 and fits within the length of the first transport device 1 ′, and from the length of the first transport device 1 ′. In the case of a long dimension, the measured value of the weighing means 3b of the third weighing device 3 is selected.
That is, in relation to the flowchart of FIG. 12 showing the measurement operation of the first embodiment, when the length of the article W is determined to be “medium” and “large” in the scale selection in S111, the process proceeds to S114. The weight is calculated based on the measured value of the measuring means 3.
In addition, in a state in which a plurality of articles having different lengths are sequentially conveyed, and the articles are placed and conveyed within the captain of each conveyance device of the first conveyance device 1 ′ and the second conveyance weighing device 2, The weight of the article on the first transport device 1 ′ can be calculated by subtracting the weighing data of the second transport weighing device 2 from the weighing data of the third weighing device 3.

上記したように、搬送する物品Wが第1搬送装置1’と第2搬送計量装置2とに跨るように載置されたとしても、第3計量装置3の計量手段に応力が影響することが無いので、正しい計量値を計測することができる。また、計量手段(ロードセル)の数を少なくすることができるので、安価に製作することができる。
よって、少ない計量手段で、時間的な測定効率と計量能力を向上できる計量コンベアを提供することができる。
As described above, even if the article W to be transported is placed so as to straddle the first transport device 1 ′ and the second transport weighing device 2, stress may affect the weighing means of the third weighing device 3. Since there is no, the correct measurement value can be measured. In addition, since the number of weighing means (load cells) can be reduced, it can be manufactured at low cost.
Therefore, it is possible to provide a weighing conveyor that can improve the time measurement efficiency and the weighing capacity with a small number of weighing means.

本発明は図面に示した実施の形態に限定されるものではなく、本発明の要旨を変更しない範囲で適宜変更可能である。
(1)実施の形態では、計量手段(計量部)として起歪体にひずみゲージを貼り付けたロードセルを用いているが、サーボシステムとしてまとまった電磁力平衡式、金属音叉振動式、弦振動式、静電容量式、圧電式、磁歪式、ジャイロ式、或いは油圧式の荷重計を用いて構成してもよい。
(2)実施の形態では、物品の長さを計測する計測手段として光センサを用いて該光センサによる検知時間(ONからOFFまでの時間)と搬送手段の搬送速度より物品の長さを算出する方式を示したが、これに限定されず、搬送路に沿って複数個の光センサを配置し計測する方式等、何れでもよい。
(3)実施の形態では、計量装置上に積層載置する直列配置の搬送計量装置は2台であるが、積層載置する搬送計量装置の台数は2台に限らず、3台以上でもよい。
(4)図9の秤選択情報のようなテーブルは記憶手段に記憶することに限らず、このデータをプログラム内に持ってもよい。
The present invention is not limited to the embodiments shown in the drawings, and can be appropriately changed without departing from the scope of the present invention.
(1) In the embodiment, a load cell in which a strain gauge is attached to a strain generating body is used as a measuring means (measuring unit). However, as a servo system, a balanced electromagnetic force type, a metal tuning fork vibration type, a string vibration type Alternatively, a capacitance type, piezoelectric type, magnetostrictive type, gyro type, or hydraulic type load meter may be used.
(2) In the embodiment, an optical sensor is used as a measuring means for measuring the length of the article, and the length of the article is calculated from the detection time (time from ON to OFF) by the optical sensor and the conveying speed of the conveying means. However, the present invention is not limited to this, and any method such as a method of arranging and measuring a plurality of optical sensors along the conveyance path may be used.
(3) In the embodiment, the number of serially arranged transport weighing devices stacked on the weighing device is two, but the number of transport weighing devices stacked and mounted is not limited to two, and may be three or more. .
(4) The table such as the scale selection information in FIG. 9 is not limited to being stored in the storage means, and this data may be included in the program.

1…第1搬送計量装置 1’…第1搬送装置
2…第2搬送計量装置 1a,2a…搬送手段
1b,2b…計量手段 3…計量装置
3b…計量手段 4…計測手段(検知センサ)
W…物品
DESCRIPTION OF SYMBOLS 1 ... 1st conveyance weighing apparatus 1 '... 1st conveyance apparatus
2 ... 2nd conveyance measuring device 1a, 2a ... Conveying means 1b, 2b ... Measuring means 3 ... Measuring device 3b ... Measuring means 4 ... Measuring means (detection sensor)
W ... Goods

Claims (8)

物品を搬送する搬送手段と、該物品を前記搬送手段で搬送しながら重量を計量する計量手段を備えた計量コンベアであって、
前記搬送手段と前記計量手段とを備えた複数台の搬送計量装置を、基台側計量装置上に、搬送方向が一直線となり連続して搬送し得るように直列且つ隣接して配置し、
更に、前記搬送計量装置が備える搬送手段により搬送される物品の長さを計測する計測手段と、
前記計測手段で計測された物品の長さに応じて、前記複数台の搬送計量装置、前記基台側計量装置から出力された計量値を選択する選択手段と、
を備えたことを特徴とする計量コンベア。
A weighing conveyor comprising conveying means for conveying an article, and weighing means for weighing the article while conveying the article by the conveying means,
A plurality of transport weighing devices provided with the transport means and the weighing means are arranged in series and adjacent on the base-side weighing device so that the transport direction is in a straight line and can be continuously transported,
Furthermore, measuring means for measuring the length of the article conveyed by the conveying means provided in the conveyance weighing device,
According to the length of the article measured by the measuring means, a selection means for selecting the measurement values output from the plurality of transport weighing devices and the base-side weighing device,
A weighing conveyor characterized by comprising:
前記搬送手段、前記計量手段、前記計測手段で何らかの異常が発生した場合、その異常が発生した旨とその明細を報知する報知手段と、
前記報知手段により異常が報知された時、前記搬送計量装置の搬送手段を停止する停止手段と、
を備えたことを特徴とする請求項1記載の計量コンベア。
If any abnormality occurs in the conveying means, the weighing means, and the measuring means, a notification means for notifying that the abnormality has occurred and its details;
A stopping means for stopping the conveying means of the conveying and weighing device when an abnormality is notified by the notifying means;
The weighing conveyor according to claim 1, further comprising:
前記搬送計量装置が2台で、前記計測手段が前記2台の搬送計量装置の間に配置されていることを特徴とする請求項1又は2記載の計量コンベア。 The weighing conveyor according to claim 1 or 2 , wherein the number of the transport weighing devices is two, and the measuring means is disposed between the two transport weighing devices . 物品を搬送する搬送手段と、該物品を前記搬送手段で搬送しながら重量を計量する計量手段を備えた計量コンベアであって、
前記搬送手段を備え前記計量手段を備えない搬送装置と、前記搬送手段と前記計量手段とを備えた搬送計量装置を、基台側計量装置上に、搬送方向が一直線となり連続して搬送し得るように直列且つ隣接して配置し、
更に、前記搬送装置と前記搬送計量装置が備える搬送手段により搬送される物品の長さを計測する計測手段と、
前記計測手段で計測された物品の長さに応じて、前記搬送計量装置、前記基台側計量装置から出力された計量値を選択する選択手段と、
を備えたことを特徴とする計量コンベア。
A weighing conveyor comprising conveying means for conveying an article, and weighing means for weighing the article while conveying the article by the conveying means,
A transport device that includes the transport unit and does not include the metering unit, and a transport metering device that includes the transport unit and the metering unit, can be transported continuously on a base-side metering device with a transport direction in a straight line. Arranged in series and adjacent to each other,
Furthermore, measuring means for measuring the length of an article conveyed by the conveying means provided in the conveying apparatus and the conveying and weighing apparatus,
According to the length of the article measured by the measuring means, a selection means for selecting the measured value output from the transport weighing device, the base-side weighing device,
Weighing conveyor you comprising the.
前記搬送手段、前記計量手段、前記計測手段で何らかの異常が発生した場合、その異常が発生した旨とその明細を報知する報知手段と、
前記報知手段により異常が報知された時、前記搬送装置、前記搬送計量装置の搬送手段を停止する停止手段と
を備えたことを特徴とする請求項記載の計量コンベア。
If any abnormality occurs in the conveying means, the weighing means, and the measuring means, a notification means for notifying that the abnormality has occurred and its details;
A stopping means for stopping the conveying means of the conveying device and the conveying and weighing apparatus when an abnormality is notified by the notifying means ;
The weighing conveyor according to claim 4, further comprising:
前記搬送装置、前記搬送計量装置が台で、前記計測手段が前記搬送装置と前記搬送計量装置の間に配置されていることを特徴とする請求項4又は5記載の計量コンベア。 6. The weighing conveyor according to claim 4 , wherein the number of the transfer device and the transfer weighing device is one , and the measuring means is disposed between the transfer device and the transfer weighing device. 前記計量コンベアは、前記選択手段で選択された計量値と、前記計測手段で計測された計測値を表示する表示手段を備えていることを特徴とする請求項1乃至6の何れか1項記載の計量コンベア。 The said weighing conveyor is provided with the display means which displays the measured value selected by the said selection means, and the measured value measured by the said measuring means, The any one of Claim 1 thru | or 6 characterized by the above-mentioned. Weighing conveyor. 前記計量コンベアは、前記表示手段に表示した表示内容を上位の管理装置へ送信する通信手段を備えていることを特徴とする請求項7記載の計量コンベア。The weighing conveyor according to claim 7, further comprising a communication unit that transmits display content displayed on the display unit to a higher-level management device.
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