JP5761823B2 - Adsorption pressure control method for molded product take-out machine - Google Patents

Adsorption pressure control method for molded product take-out machine Download PDF

Info

Publication number
JP5761823B2
JP5761823B2 JP2013173047A JP2013173047A JP5761823B2 JP 5761823 B2 JP5761823 B2 JP 5761823B2 JP 2013173047 A JP2013173047 A JP 2013173047A JP 2013173047 A JP2013173047 A JP 2013173047A JP 5761823 B2 JP5761823 B2 JP 5761823B2
Authority
JP
Japan
Prior art keywords
pressure
suction
adsorption
negative pressure
molded product
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
JP2013173047A
Other languages
Japanese (ja)
Other versions
JP2013252715A (en
Inventor
武井 英治
英治 武井
慎二 河内
慎二 河内
弘樹 松山
弘樹 松山
Original Assignee
株式会社スター精機
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 株式会社スター精機 filed Critical 株式会社スター精機
Priority to JP2013173047A priority Critical patent/JP5761823B2/en
Publication of JP2013252715A publication Critical patent/JP2013252715A/en
Application granted granted Critical
Publication of JP5761823B2 publication Critical patent/JP5761823B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Moulds For Moulding Plastics Or The Like (AREA)
  • Injection Moulding Of Plastics Or The Like (AREA)

Description

本発明は、成形品取出し機において成形品を吸着保持して所定個所に取出すチャックに設けられる吸着パッドの吸着圧制御方法に関する。 The present invention relates to a method for controlling the suction pressure of a suction pad provided on a chuck that holds a molded product by suction and takes it out at a predetermined location in a molded product take-out machine.

本出願人は、特許文献1に示す成形品取出し機を提案した。該成形品取出し機は、電気ケーブルを介して接続され、チャックの移動位置を設定する各種入力手段及び入力された移動位置を表示する表示手段を備えた操作ボックスにあって、該成型品取出機には、負圧を発生する負圧発生装置、負圧発生装置と吸着パッドとを接続する吸着系、負圧発生装置による負圧を可変調整する負圧調整部材、吸着系の実吸着圧を検出して電気信号を出力する吸着圧検出器を設けると共に操作ボックスには、吸着パッドによる成型品の吸着圧を設定する吸着圧設定手段、吸着圧検出器からの電気信号に基づいて吸着系の実吸着圧を表示する吸着圧表示手段、吸着パッドによる成型品の吸着良否を判別するための不良吸着圧を設定する不良吸着圧設定手段、吸着パッドによる成型品の吸着時に実吸着圧が不良吸着圧以下の場合に警告する警告手段及び吸着圧設定手段により設定された吸着圧に基づいて負圧調整部材を制御して実吸着圧を所望の吸着圧に可変制御すると共に成型品吸着時の実吸着圧が不良吸着圧以下の時に警告手段を作動制御する制御手段により構成される。 The present applicant has proposed a molded product take-out machine shown in Patent Document 1. The molded product take-out machine is an operation box that is connected via an electric cable and includes various input means for setting the movement position of the chuck and a display means for displaying the input movement position. The negative pressure generator that generates negative pressure, the suction system that connects the negative pressure generator and the suction pad, the negative pressure adjustment member that variably adjusts the negative pressure by the negative pressure generator, and the actual suction pressure of the suction system An adsorption pressure detector that detects and outputs an electric signal is provided, and an operation box has an adsorption pressure setting means for setting an adsorption pressure of a molded product by an adsorption pad, and an adsorption system based on an electric signal from the adsorption pressure detector. Adsorption pressure display means for displaying the actual adsorption pressure, defective adsorption pressure setting means for setting the defective adsorption pressure for determining whether the molded product is adsorbed by the adsorption pad, and the actual adsorption pressure is poorly adsorbed when the molded product is adsorbed by the adsorption pad Pressure The negative suction adjustment member is controlled on the basis of the suction pressure set by the warning means and the suction pressure setting means for warning in the case of, and the actual suction pressure is variably controlled to the desired suction pressure and the actual suction pressure at the time of sucking the molded product Is constituted by a control means for controlling the operation of the warning means when the pressure is lower than the defective adsorption pressure.

該成形品取出し機の制御手段は、吸着パッドの実吸着圧が、予め設定された吸着検知圧に達したか否かに基づいて成形品の吸着状態を判別しているが、成形品が正常に吸着された後においても、真空発生装置の駆動を継続して真空(負圧)吸引状態を継続している。このため、真空発生装置の稼働時間が長くなってエアーの消費量及び消費電力が増大して成形コストが高コスト化する問題を有している。 The control means of the molded product take-out machine discriminates the suction state of the molded product based on whether or not the actual suction pressure of the suction pad has reached a preset suction detection pressure. Even after being adsorbed by the vacuum, the vacuum generator is continuously driven to keep the vacuum (negative pressure) suction state. For this reason, there is a problem that the operating time of the vacuum generator becomes longer, the amount of consumed air and power consumption increase, and the molding cost increases.

なお、圧縮空気の通過に伴って負圧を発生させる形式の負圧発生装置にあっても、負圧を発生させるには、圧縮空気を発生させるためのブロア装置の運転を継続する必要があり、エアー消費量及び消費電力の増大が避けられなかった。 Even in the case of a negative pressure generating device that generates a negative pressure with the passage of compressed air, it is necessary to continue the operation of the blower device for generating the compressed air in order to generate the negative pressure. Increase in air consumption and power consumption was inevitable.

また、成形品が正常に吸着された後においても、真空発生状態が継続して吸着圧が高くなる結果、成形品に吸着痕が形成されて不良品化する恐れがある。これにより成形品の不良化率が高くなって成形コストが増大する問題を有している。 Further, even after the molded product is normally adsorbed, the vacuum generation state continues and the adsorption pressure increases, and as a result, an adsorption mark may be formed on the molded product, which may result in a defective product. As a result, there is a problem that the defective rate of the molded product increases and the molding cost increases.

特許第3897286公報Japanese Patent No. 3897286

解決しようとする問題点は、成形品を真空吸着する際に真空発生装置の稼働時間が長くなってエアーの消費量及び消費電力が増大して成形コストが高コスト化する点にある。また、成形品が正常に吸着された後においても、真空発生状態が継続されることにより吸着圧が高くなって成形品に吸着痕が形成され、成形品の不良化率が高くなる点にある。 The problem to be solved is that when the molded product is vacuum-sucked , the operating time of the vacuum generator becomes longer, the amount of air consumption and power consumption is increased, and the molding cost is increased. In addition, even after the molded product is normally adsorbed, the vacuum generation state is continued, so that the adsorption pressure is increased, and suction marks are formed on the molded product, resulting in a higher defect rate of the molded product. .

本発明は、樹脂成形機から成形品を吸着パッドにより吸着保持して所定の開放位置に取出す成形品取出し機において、成形品取出し機を駆動制御する各種制御ユニットが収容された制御ボックスに着脱可能に取付けられる操作ペンダントに表示部材を設け、該表示部材上に負圧(真空)手段と吸着パッドの負圧流路に設けられた吸着圧検知手段により検出される吸着パッドによる成形品の実吸着圧、吸着パッドに成形品が吸着保持されたと判断する吸着検知圧、検出される実吸着圧が負圧手段の最大負圧より低く、成形品への吸着痕形成を回避する負圧で、かつ負圧手段を駆動停止する際の基準値になる吸着停止閾値圧、負圧手段の駆動停止後に検出される実吸着圧が上記吸着検知圧より高く、上記吸着停止閾値圧より低い負圧で、かつ負圧手段を再駆動する際の基準値になる再駆動閾値圧の内、実吸着圧、吸着検知圧及び吸着停止閾値圧を表示し、上記吸着検知圧及び吸着停止閾値圧は、表示部材に表示された対応するウィンドウを操作した後に表示部材に表示された数値設定ボタンにより所望の負圧を、吸着検知圧が吸着停止閾値圧より低い負圧であることを条件に設定可能にする一方、吸着検知圧が吸着停止閾値圧より高い負圧の場合には設定を禁止することを主要な特徴とする。 The present invention is a molded product take-out machine for picking up and holding a molded product from a resin molding machine with a suction pad and taking it out to a predetermined open position, and is detachable from a control box containing various control units for driving and controlling the molded product take-out machine A display member is provided on the operation pendant attached to the display, and the actual suction pressure of the molded product by the suction pad detected by the suction pressure detection means provided in the negative pressure (vacuum) means and the suction pressure passage of the suction pad on the display member The suction detection pressure for determining that the molded product is sucked and held on the suction pad, the detected actual suction pressure is lower than the maximum negative pressure of the negative pressure means, and is a negative pressure that avoids the formation of suction marks on the molded product and is negative. An adsorption stop threshold pressure that is a reference value when driving the pressure means is stopped, an actual adsorption pressure detected after the negative pressure means is stopped is a negative pressure that is higher than the adsorption detection pressure and lower than the adsorption stop threshold pressure, and Negative pressure Of redrive threshold pressure becomes the reference value when re-driving the stage, the actual suction pressure, displays the suction detecting pressure and suction stop threshold pressure, the suction detecting pressure and suction stop threshold pressure is displayed on the display member The desired negative pressure can be set with the numerical value setting button displayed on the display member after operating the corresponding window, while the suction detection pressure is lower than the suction stop threshold pressure. pressure is mainly characterized a prohibiting child configuration in the case of a high negative pressure than the suction stop threshold pressure.

本発明は、成形品が正常に吸着された後においては、負圧手段の稼働時間を短くしてエアーの消費量及び消費電力を低減するための各吸着圧を容易に確認することができる。また、成形品が正常に吸着された後においては、吸着圧が必要以上に高くなるのを回避して成形品に吸着痕が形成されるのを防止するための吸着圧を容易に確認することができる。 The present invention, after the molded product is normally adsorbed can easily check each suction pressure of order to reduce consumption and power consumption of the air to shorten the operating time of the negative pressure means . In addition, after the molded product has been successfully adsorbed, it should be easy to confirm the adsorption pressure to prevent the adsorption pressure from becoming higher than necessary and prevent the formation of adsorption marks on the molded product. Can do.

成形品取出し機の概略を示す斜視図である。It is a perspective view which shows the outline of a molded article take-out machine. 吸着パッドの負圧回路を示す説明図である。It is explanatory drawing which shows the negative pressure circuit of a suction pad. 操作ペンダントの概略を示す斜視図である。It is a perspective view which shows the outline of an operation pendant. 制御概略を示す電気的ブロック図である。It is an electrical block diagram which shows the control outline. 吸着圧設定前の画像を示す説明図である。It is explanatory drawing which shows the image before adsorption pressure setting. 吸着圧設定後の画像を示す説明図である。It is explanatory drawing which shows the image after adsorption pressure setting. 吸着圧制御フローの一部を示すフローチャートである。It is a flowchart which shows a part of adsorption pressure control flow. 吸着圧制御フローの一部を示すフローチャートである。It is a flowchart which shows a part of adsorption pressure control flow. 実吸着圧が吸着検知圧に達した状態の画像を示す説明図である。It is explanatory drawing which shows the image of the state in which the actual adsorption pressure reached the adsorption detection pressure. 実吸着圧が吸着閾値圧に達した状態の画像を示す説明図である。It is explanatory drawing which shows the image of the state where the actual adsorption pressure reached the adsorption threshold pressure. 実吸着圧が吸着閾値圧より高くなった際の画像を示す説明図である。It is explanatory drawing which shows an image when real adsorption pressure becomes higher than adsorption threshold pressure. 吸着圧設定モード時の変更画像を示す説明図である。It is explanatory drawing which shows the change image at the time of adsorption pressure setting mode. 吸着閾値圧の設定画像を示す説明図である。It is explanatory drawing which shows the setting image of adsorption | suction threshold pressure.

表示部材上に負圧(真空)手段と吸着パッドの負圧流路に設けられた吸着圧検知手段により検出される吸着パッドによる成形品の実吸着圧、吸着パッドに成形品が吸着保持されたと判断する吸着検知圧、検出される実吸着圧が負圧手段の最大負圧より低く、成形品への吸着痕形成を回避する負圧で、かつ負圧手段を駆動停止する際の基準値になる吸着停止閾値圧、負圧手段の駆動停止後に検出される実吸着圧が上記吸着検知圧より高く、上記吸着停止閾値圧より低い負圧で、かつ負圧手段を再駆動する際の基準値になる再駆動閾値圧の内、実吸着圧、吸着検知圧及び吸着停止閾値圧を表示し、上記吸着検知圧及び吸着停止閾値圧は、表示部材に表示された対応するウィンドウを操作した後に表示部材に表示された数値設定ボタンにより所望の負圧を、吸着検知圧が吸着停止閾値圧より低い負圧であることを条件に設定可能にする一方、吸着検知圧が吸着停止閾値圧より高い負圧の場合には設定を禁止することを最良の形態とする。 The actual suction pressure of the molded article by the suction pad detected by the suction pressure detecting means provided in the negative pressure (vacuum) means and the negative pressure flow path of the suction pad on the display member, it is determined that the molded article is sucked and held on the suction pad The suction detection pressure to be detected, the actual suction pressure to be detected is lower than the maximum negative pressure of the negative pressure means, is a negative pressure that avoids the formation of suction marks on the molded product, and becomes a reference value when driving the negative pressure means to stop. The suction stop threshold pressure, the actual suction pressure detected after the negative pressure means stops driving, is a negative pressure that is higher than the suction detection pressure and lower than the suction stop threshold pressure, and is a reference value when the negative pressure means is redriven. The actual adsorption pressure, the adsorption detection pressure, and the adsorption stop threshold pressure are displayed among the re-driving threshold pressures, and the adsorption detection pressure and the adsorption stop threshold pressure are displayed after operating the corresponding window displayed on the display member. The numerical setting button displayed on the The pressure, while allowing set on condition that suction detecting pressure is a negative pressure lower than the adsorption stop threshold pressure, the best that suction detecting pressure that prohibits setting in the case of a high negative pressure than the suction stop threshold pressure The form is as follows.

以下に実施形態を示す図に従って本発明を説明する。
先ず、本発明が適用される成形品取出し機の概略に付いて説明すると、図1に示すように成形品取出し機1の本体フレーム3は、該成形品取出し機1が取付けられる樹脂成形機(図示せず)の中心軸線と直交する方向へ延び、該本体フレーム3上には、走行体5がその長手方向へ往復移動するように支持されている。該走行体5において上記中心軸線方向に延びるように設けられた前後フレーム9には、前後走行体11がその長手方向へ往復移動するように支持される。そして前後走行体11には、上下方向へ軸線を有した上下ユニット13が設けられている。該上下ユニット13の下部には、チャック15が設けられ、上記上下ユニット13の駆動に伴って上下方向へ所定のストロークで昇降される。上記チャック15には、シリコンゴム等の弾性材により形成された吸着パッド17が成形品の吸着個所に相対するように取付けられ、各吸着パッド17には、負圧回路19が接続される。
The present invention will be described below with reference to the drawings showing embodiments.
First, the outline of a molded product take-out machine to which the present invention is applied will be described. As shown in FIG. 1, the main body frame 3 of the molded product take-out machine 1 is a resin molding machine ( The travel body 5 is supported on the main body frame 3 so as to reciprocate in the longitudinal direction. The front and rear traveling bodies 11 are supported by the front and rear frames 9 provided to extend in the central axis direction in the traveling body 5 so as to reciprocate in the longitudinal direction. The front and rear traveling body 11 is provided with a vertical unit 13 having an axis in the vertical direction. A chuck 15 is provided at the lower part of the vertical unit 13, and is moved up and down with a predetermined stroke in the vertical direction as the vertical unit 13 is driven. A suction pad 17 formed of an elastic material such as silicon rubber is attached to the chuck 15 so as to face the suction portion of the molded product, and a negative pressure circuit 19 is connected to each suction pad 17.

図2に示すように、吸着パッド17の負圧回路19は、例えばエアーブロー装置等の圧縮空気発生装置21、該圧縮空気発生装置21の前段側(吸着パッド17側)に接続され、圧縮空気が通過する際にベルヌーイの法則に基づいて負圧を発生させる負圧発生装置23、該負圧発生装置23の前段側に接続され、例えばダイヤフラムやピエゾ素子、バイモルフ素子の圧電素子等からなる歪ゲージにより構成される吸着圧検知器25、圧縮空気発生装置21の前段側に分岐接続され、後述する負圧破壊するために噴射される圧縮空気の圧力を調整する噴射空気圧調整器27、該噴射空気圧調整器27の前段側と吸着パッド17及び吸着圧検知器25の間に分岐接続され、電磁ソレノイド等から構成される噴射空気開閉弁29により構成される。上記部材の内、負圧発生装置23、吸着圧検知器25、噴射空気圧調整器27、噴射空気開閉弁29は、上記した走行体5上に搭載される。 As shown in FIG. 2, the negative pressure circuit 19 of the suction pad 17 is connected to a compressed air generating device 21 such as an air blowing device, and the front side (the suction pad 17 side) of the compressed air generating device 21, and compressed air. Is connected to the front side of the negative pressure generating device 23, for example, a diaphragm, a piezoelectric element, a bimorph element, or the like. An adsorption pressure detector 25 constituted by a gauge, an injection air pressure regulator 27 which is branched and connected to the front stage side of the compressed air generating device 21 and adjusts the pressure of compressed air to be injected for breaking negative pressure, which will be described later, the injection A pre-stage side of the air pressure regulator 27 and the suction pad 17 and the suction pressure detector 25 are branched and connected to each other. Among the above members, the negative pressure generator 23, the adsorption pressure detector 25, the injection air pressure adjuster 27, and the injection air on / off valve 29 are mounted on the traveling body 5 described above.

図3に示すように、負圧回路19の制御手段31は、樹脂成形機の操作側または反操作側の床面に設置され、成形品取出し機1を駆動制御する各種制御ユニット(図示せず)が収容された制御ボックス33に着脱可能に取付けられる操作ペンダント35に収容される。該操作ペンダント35は、主にチャック15の移動位置を設定したり、吸着圧を設定したりするモードに切換える各種モード切換キー35a、設定キー35b及び入力キー35cと設定された各種データを確認する液晶タッチパネルからなる表示部材35dが設けられている。
尚、上記した各種モード切換キー35a、設定キー35b及び入力キー35cは、物理的な部材の他に、表示部材35dに表示されるキー又は釦の画像をタッチ操作することにより所定動作させる形式であってもよい。
As shown in FIG. 3, the control means 31 of the negative pressure circuit 19 is installed on the floor surface on the operation side or the non-operation side of the resin molding machine, and various control units (not shown) for driving and controlling the molded product take-out machine 1. ) Is accommodated in an operation pendant 35 that is detachably attached to the control box 33 in which it is accommodated. The operation pendant 35 mainly checks various data set with various mode switching keys 35a, setting keys 35b, and input keys 35c for switching to a mode for setting the moving position of the chuck 15 or setting the suction pressure. A display member 35d made of a liquid crystal touch panel is provided.
The various mode switching keys 35a, the setting keys 35b, and the input keys 35c described above are not only physical members but also a predetermined operation type by touching a key or button image displayed on the display member 35d. There may be.

図4に示すように、制御手段31のCPU37は、プログラム記憶手段39及び作業記憶手段41を有し、プログラム記憶手段39には、吸着制御プログラム、吸着圧表示プログラム、吸着検知圧設定プログラム、吸着停止閾値圧設定プログラム等の各種プログラムデータが記憶されている。また、作業記憶手段41は、検出される実吸着圧を所定のサンプリングタイム毎に順次記憶するシフトレジスタ等の実吸着圧記憶領域41a、予め設定される吸着検知圧を記憶する吸着検知圧記憶領域41b、予め設定される吸着停止閾値圧を記憶する吸着停止閾値圧記憶領域41c等を有している。実吸着圧記憶領域41aには、吸着パッド17による成形品の吸着時における実際の吸着圧データが記憶される。吸着検知圧記憶領域41bには、後述する吸着検知圧設定モード時に設定され、吸着パッド17が成形品を吸着保持したと判定するための吸着検知圧データが記憶される。吸着停止閾値記憶領域41cには、後述する吸着停止閾値圧設定モード時に設定され、吸着パッド17による成形品の吸着保持時に圧縮空気発生装置21をOFF制御するための吸着停止閾値圧データが記憶される。 As shown in FIG. 4, the CPU 37 of the control means 31 includes a program storage means 39 and a work storage means 41. The program storage means 39 includes an adsorption control program, an adsorption pressure display program, an adsorption detection pressure setting program, an adsorption Various program data such as a stop threshold pressure setting program are stored. The work storage means 41 includes an actual adsorption pressure storage area 41a such as a shift register that sequentially stores detected actual adsorption pressures at predetermined sampling times, and an adsorption detection pressure storage area that stores preset adsorption detection pressures. 41b, an adsorption stop threshold pressure storage area 41c for storing a preset adsorption stop threshold pressure, and the like. In the actual suction pressure storage area 41a, actual suction pressure data at the time of suction of the molded product by the suction pad 17 is stored. The suction detection pressure storage area 41b stores suction detection pressure data that is set in the suction detection pressure setting mode to be described later and for determining that the suction pad 17 sucks and holds the molded product. The suction stop threshold storage area 41c stores suction stop threshold pressure data for OFF control of the compressed air generating device 21 that is set in the suction stop threshold pressure setting mode, which will be described later. The

また、CPU37には、入出力手段43を介して上記した圧縮空気発生装置21及び吸着圧検知器25が接続されている。該入出力手段43は、圧縮空気発生装置21をON−OFF制御する際にCPU37から出力される制御信号をD/A変換したり、吸着検知器25から出力される電気信号をA/D変換したりする。 The compressed air generator 21 and the adsorption pressure detector 25 are connected to the CPU 37 via the input / output means 43. The input / output means 43 D / A converts a control signal output from the CPU 37 when the compressed air generator 21 is ON / OFF controlled, or A / D converts an electric signal output from the adsorption detector 25. To do.

CPU37には、表示部材35dが表示制御手段45を介して接続される。CPU37は、例えばモード切換キー35aにより吸着圧設定モードに切換えられた際に、吸着圧設定プログラムに基づいて表示部材35dに図5に示す画像を表示させる。該画像中には、設定された吸着検知圧を数値表示する吸着検知圧表示ウィンドウ47a、設定された吸着停止閾値圧を数値表示する吸着停止閾値圧表示ウィンドウ47b、稼働中の実吸着圧を数値表示する実吸着圧表示ウィンドウ47c、テンキー設定釦47d、プラス釦47e、マイナス釦47f及び設定された吸着検知圧及び吸着停止閾値圧と稼働中の実吸着圧を関連してグラフ画像表示するグラフ表示ウィンドウ47gが配列される。なお、グラフ表示ウィンドウ47gに表示される実吸着圧は、吸着圧の変化に基づいて変位する針画像として表示される。 A display member 35 d is connected to the CPU 37 via the display control means 45. For example, when the CPU 37 is switched to the adsorption pressure setting mode by the mode switching key 35a, the CPU 37 displays the image shown in FIG. 5 on the display member 35d based on the adsorption pressure setting program. The image includes an adsorption detection pressure display window 47a for displaying the set adsorption detection pressure as a numerical value, an adsorption stop threshold pressure display window 47b for displaying the set adsorption stop threshold pressure as a numerical value, and a numerical value for the actual adsorption pressure during operation. The actual adsorption pressure display window 47c to be displayed, the numeric keypad setting button 47d, the plus button 47e, the minus button 47f, and the graph display for displaying the graph image in association with the set adsorption detection pressure and adsorption stop threshold pressure and the actual adsorption pressure in operation. Windows 47g are arranged. The actual suction pressure displayed in the graph display window 47g is displayed as a needle image that is displaced based on a change in the suction pressure.

次に、成形品の吸着制御方法を説明する。
先ず、作業者は、成形品の形状や重量等に基づいて吸着検知圧及び吸着停止閾値圧をそれぞれ設定する。この吸着検知圧は、吸着パッド17による成形品の吸着時に実吸着圧が所定値に達した際に、成形品を吸着保持したと判断するための吸着圧で、例えば負圧発生装置25の最大負圧が−70KPsの場合、例えば−40KPsに設定される。また、吸着停止閾値圧は、圧縮空気発生装置21を停止制御する際の吸着圧で、吸着検知圧が上記−40KPsの場合には、上記吸着検知圧より高い負圧値の、例えば−60KPsに設定される。
Next, a method for controlling adsorption of a molded product will be described.
First, the operator sets the suction detection pressure and the suction stop threshold pressure based on the shape and weight of the molded product. This adsorption detection pressure is an adsorption pressure for determining that the molded product is adsorbed and held when the actual adsorption pressure reaches a predetermined value when the molded product is adsorbed by the adsorption pad 17, and is, for example, the maximum of the negative pressure generator 25. When the negative pressure is −70 KPs, for example, it is set to −40 KPs. Further, the adsorption stop threshold pressure is an adsorption pressure when the compressed air generating device 21 is controlled to stop. When the adsorption detection pressure is −40 KPs, a negative pressure value higher than the adsorption detection pressure, for example, −60 KPs. Is set.

尚、上記操作により設定される吸着検知圧及び吸着停止閾値圧は、常に吸着検知圧が吸着停止閾値圧より低い負圧であることが条件で、反対の吸着圧が設定された際には、CPU37は、設定値の入力を禁止すると共にエラーメッセージを表示する等の設定禁止処理を実行する。 Note that the suction detection pressure and the suction stop threshold pressure set by the above operation are always set to the negative pressure lower than the suction stop threshold pressure, and when the opposite suction pressure is set, The CPU 37 executes setting prohibition processing such as prohibiting the input of the setting value and displaying an error message.

上記吸着検知圧及び吸着停止閾値圧の設定は、以下のように行う。
操作ペンダント35のモード切換キー35aの操作により吸気圧設定モードに切換えると、CPU37は、表示部材35dに図5に示す画像を表示させる。そして吸着検知圧を設定するには、該画像中の吸着検知圧表示ウィンドウ47aがタッチ操作されると、CPU37は、吸着検知圧設定プログラムに基づいてタッチ操作されるプラス釦47e、マイナス釦47fまたはテンキー設定釦47dのタッチ操作により表示されるテンキー(図示せず)のタッチ操作により設定された所望の吸着検知圧を吸着検知圧記憶領域41bに記憶させると共に吸着検知圧表示ウィンドウ47aに、設定された吸着検知圧を表示させる。また、CPU37は、グラフ表示ウィンドウ47gに、吸着検知圧記憶領域41bに記憶された吸着検知圧データをグラフ表示させる。
The suction detection pressure and the suction stop threshold pressure are set as follows.
When the mode is switched to the intake pressure setting mode by operating the mode switching key 35a of the operation pendant 35, the CPU 37 displays the image shown in FIG. 5 on the display member 35d. In order to set the suction detection pressure, when the suction detection pressure display window 47a in the image is touched, the CPU 37 performs a touch operation based on the suction detection pressure setting program, the plus button 47e, the minus button 47f or The desired suction detection pressure set by the touch operation of the numeric keypad (not shown) displayed by the touch operation of the numeric keypad setting button 47d is stored in the suction detection pressure storage area 41b and set in the suction detection pressure display window 47a. Display the detected suction pressure. Further, the CPU 37 displays the adsorption detection pressure data stored in the adsorption detection pressure storage area 41b as a graph in the graph display window 47g.

吸着停止閾値圧を設定するには、吸気圧設定モード時に図5に示す画像中の吸着停止閾値圧表示ウィンドウ47bがタッチ操作されると、CPU37は、吸着停止閾値圧設定プログラムに基づいてタッチ操作されるプラス釦47e、マイナス釦47fまたはテンキー設定釦47dのタッチ操作により表示されるテンキーのタッチ操作により設定された所望の吸着停止閾値圧を吸着停止閾値圧記憶領域41cに記憶させると共に吸着停止閾値圧表示ウィンドウ47bに、設定された吸着停止閾値圧を表示させる。また、CPU37は、グラフ表示ウィンドウ47gに、吸着停止閾値圧記憶領域41cに記憶された吸着停止閾値圧データを上記吸着検知圧データと色違いでグラフ表示させる。(図6参照) To set the suction stop threshold pressure, when the suction stop threshold pressure display window 47b in the image shown in FIG. 5 is touched in the intake pressure setting mode, the CPU 37 performs a touch operation based on the suction stop threshold pressure setting program. The desired suction stop threshold pressure set by the touch operation of the numeric keypad displayed by the touch operation of the plus button 47e, the minus button 47f or the numeric keypad setting button 47d is stored in the suction stop threshold pressure storage area 41c and the suction stop threshold value The set adsorption stop threshold pressure is displayed in the pressure display window 47b. Further, the CPU 37 causes the graph display window 47g to display the adsorption stop threshold pressure data stored in the adsorption stop threshold pressure storage area 41c in a graph with a color different from that of the adsorption detection pressure data. (See Figure 6)

次に、吸着圧制御方法を説明する。
図7及び8に示すように、樹脂成形機により成形された成形品を成形品取出し機1により取出す際に、ステップ71により、走行体5、前後走行体11及び上下ユニット13をそれぞれ移動制御してチャック15を、樹脂成形機における金型内に保持された成形品に近接した状態で相対させる。このとき、圧縮空気発生装置21が駆動状態で、負圧発生装置23は、供給される圧縮空気により負圧形成されている。従って、吸着パッド17は、接続された負圧回路19により外気を吸引している。
Next, the adsorption pressure control method will be described.
As shown in FIGS. 7 and 8, when the molded product molded by the resin molding machine is taken out by the molded product take-out machine 1, the running body 5, the front and rear traveling body 11, and the upper and lower unit 13 are controlled to move in step 71. Thus, the chuck 15 is opposed to the molded product held in the mold in the resin molding machine in a state of being close to the molded product. At this time, the compressed air generator 21 is in a driving state, and the negative pressure generator 23 is formed with a negative pressure by the supplied compressed air. Therefore, the suction pad 17 sucks outside air by the connected negative pressure circuit 19.

次に、ステップ73により、前後走行体11の前進移動に伴って吸着パッド17の先端が成形品に当接される。これにより吸着パッド17の開口部が閉鎖されて負圧状態になり、成形品を吸着させる。そしてステップ75により、吸着パッド17に至る流路の負圧を予め設定されたサンプリングタイム毎に吸着圧検知器25により検出し、吸着圧に応じた電気信号の信号レベルに対応してA/D変換された実吸着圧データを実吸着圧記憶領域41aに順次記憶し、実吸着圧記憶領域41aに記憶された実吸着圧データに基づいて実吸着圧表示ウィンドウ47cに数値表示させると共にグラフ表示ウィンドウ47gに変位する針画像として表示させる。 Next, at step 73, the tip of the suction pad 17 is brought into contact with the molded product as the front and rear traveling body 11 moves forward. As a result, the opening of the suction pad 17 is closed to a negative pressure state, and the molded product is sucked. Then, in step 75, the negative pressure of the flow path leading to the suction pad 17 is detected by the suction pressure detector 25 at every preset sampling time, and the A / D corresponding to the signal level of the electrical signal corresponding to the suction pressure is detected. The converted actual adsorption pressure data is sequentially stored in the actual adsorption pressure storage area 41a, numerically displayed on the actual adsorption pressure display window 47c based on the actual adsorption pressure data stored in the actual adsorption pressure storage area 41a, and a graph display window It is displayed as a needle image displaced to 47 g.

次に、ステップ77により、吸着パッド17による成形品の吸着の進展に伴って吸着圧検出器25により検出される実吸着圧が吸着検知圧記憶領域41bに記憶された吸着検知圧に達したか否かを判定し、該ステップ77がYES(図9参照)のとき、ステップ79により、成形品取出し機1の制御ユニットに駆動指示信号を出力して、例えば前後走行体11を後退移動させて吸着パッド17に吸着保持された成形品を金型内から抜き出す所定の取出し動作を行わせる。反対に、該ステップ77がNOのとき、ステップ77に戻る。 Next, in step 77, whether the actual suction pressure detected by the suction pressure detector 25 with the progress of suction of the molded product by the suction pad 17 has reached the suction detection pressure stored in the suction detection pressure storage area 41b. When step 77 is YES (see FIG. 9), a drive instruction signal is output to the control unit of the molded article take-out machine 1 by step 79, for example, the front and rear traveling body 11 is moved backward. A predetermined take-out operation for taking out the molded product sucked and held by the suction pad 17 from the mold is performed. Conversely, when step 77 is NO, the process returns to step 77.

上記した吸着パッド17による成形品の吸着保持時においては、圧縮空気発生装置21の駆動が継続されることにより吸着パッド17による成形品の吸着圧(負圧)が徐々に高くなる。このため、次にステップ81により、吸着圧検知器25により検出される実吸着圧が吸着停止閾値圧記憶領域41cに記憶された吸着停止閾値圧に達したか否かを判定し、該ステップ81がYES(図10参照)のとき、ステップ83により、圧縮空気発生装置21にOFF制御信号を出力して駆動を停止させる。反対に、ステップ81がNOのとき、ステップ81に戻る。 At the time of adsorbing and holding the molded product by the suction pad 17, the suction pressure (negative pressure) of the molded product by the suction pad 17 is gradually increased by continuing to drive the compressed air generator 21. Therefore, next, in step 81, it is determined whether or not the actual adsorption pressure detected by the adsorption pressure detector 25 has reached the adsorption stop threshold pressure stored in the adsorption stop threshold pressure storage area 41c. Is YES (see FIG. 10), in step 83, an OFF control signal is output to the compressed air generator 21 to stop driving. Conversely, when step 81 is NO, the process returns to step 81.

圧縮空気発生装置21の駆動が停止されると、負圧形成が中断されるため、吸着パッド17による成形品の実吸着圧が徐々に低くなる。このため、次にステップ85により、吸着圧検知器25により検出される実吸着圧が吸着停止閾値圧記憶領域41cに記憶された吸着停止閾値圧より、予めプログラムされた所定圧、例えば10KPs低くなった再駆動閾値圧に達したか否かを判定し、該ステップ85がYES(図11参照)のとき、ステップ87により、圧縮空気発生装置21にON制御信号を出力して再駆動させる。これにより再駆動される圧縮空気発生装置21により負圧形成が再開されることにより吸着パッド17による成形品の実吸着圧が、実吸着圧記憶領域41aに記憶された吸着検知圧以下になるのを規制して吸着保持状態を維持させる。反対に、上記ステップ85がNOのとき、ステップ85に戻る。 When the driving of the compressed air generator 21 is stopped, the negative pressure formation is interrupted, so that the actual suction pressure of the molded product by the suction pad 17 gradually decreases. For this reason, in step 85, the actual adsorption pressure detected by the adsorption pressure detector 25 is lower than the adsorption stop threshold pressure stored in the adsorption stop threshold pressure storage area 41c by a predetermined pressure, for example, 10 KPs. It is determined whether or not the re-driving threshold pressure has been reached, and when the step 85 is YES (see FIG. 11), an ON control signal is output to the compressed air generator 21 and re-driven in step 87. Thus, the actual suction pressure of the molded product by the suction pad 17 becomes equal to or lower than the suction detection pressure stored in the actual suction pressure storage area 41a by the negative pressure formation being resumed by the re-driven compressed air generator 21. To maintain the suction holding state. Conversely, when step 85 is NO, the process returns to step 85.

次に、ステップ89により、実吸着圧が吸着停止閾値圧に達したか否かを判定し、該ステップ89がYESのとき、ステップ91により、圧縮空気発生装置21をOFF制御した後に、ステップ93によりチャック15が所定の開放位置へ移動したか否かを判定する。なお、上記ステップ89がNOのときには、ステップ87に戻る。また、上記ステップ93がNOのとき、ステップ89に戻る。上記動作の繰り返しにより成形品の吸着保持時には、実吸着圧が吸着検知圧と吸着停止閾値圧の間、従って吸着閾値圧以上になるのを回避し、圧縮空気発生装置21の稼働時間を低減すると共に成形品が過度に吸着されて吸着痕が形成されるのを防止する。 Next, in step 89, it is determined whether or not the actual adsorption pressure has reached the adsorption stop threshold pressure. When the step 89 is YES, in step 91, after the compressed air generator 21 is controlled to be OFF, step 93 is performed. Thus, it is determined whether or not the chuck 15 has moved to a predetermined opening position. When step 89 is NO, the process returns to step 87. When step 93 is NO, the process returns to step 89. By repeating the above operation, when the molded product is held by suction, the actual suction pressure is prevented from being between the suction detection pressure and the suction stop threshold pressure, and thus higher than the suction threshold pressure, and the operating time of the compressed air generator 21 is reduced. At the same time, the molded product is prevented from being excessively adsorbed to form adsorption marks.

次に、ステップ93がYESのとき、ステップ95により、圧縮空気発生装置21が駆動しているか否かを判定し、該ステップ95がYESのとき、ステップ97により、噴射空気開閉弁29に開信号を出力して吸着パッド17から圧縮空気を噴射させて吸着パッド17の負圧を強制的に破壊し、成形品の吸着保持を解除させる。反対に、ステップ95がNOのときには、ステップ99により、圧縮空気発生装置21をON制御してステップ97に移る。 Next, when step 93 is YES, it is determined at step 95 whether or not the compressed air generator 21 is being driven. When step 95 is YES, an open signal is sent to the injection air on-off valve 29 by step 97. And the compressed air is jetted from the suction pad 17 to forcibly destroy the negative pressure of the suction pad 17 and release the suction holding of the molded product. On the other hand, when step 95 is NO, in step 99, the compressed air generating device 21 is ON-controlled and the routine proceeds to step 97.

本実施例は、吸着パッド17による成形品の吸着保持時においては、実吸着圧が吸着検知圧と吸着停止閾値圧の間になるように圧縮空気発生装置21を駆動制御することにより圧縮空気発生装置21の稼働時間を低減して圧縮空気の消費量を低減すると共に成形品が、吸着停止閾値圧以上の過度の吸着圧で吸着されることによる吸着痕の発生を防止することができる。 In the present embodiment, when the molded product is held by suction by the suction pad 17, compressed air is generated by controlling the compressed air generator 21 so that the actual suction pressure is between the suction detection pressure and the suction stop threshold pressure. It is possible to reduce the consumption time of the compressed air by reducing the operation time of the device 21 and to prevent the occurrence of adsorption marks due to the molded product being adsorbed with an excessive adsorption pressure equal to or higher than the adsorption stop threshold pressure.

上記説明は、負圧発生装置内において圧縮空気を通過させる際に負圧を発生させるとして説明したが、負圧発生装置を使用せずに真空ポンプ等の真空発生装置を使用して成形品を負圧吸引する方法であってもよい。この場合にあっては、成形品の吸着保持時に、実吸着圧が吸着検知圧と吸着停止閾値圧の間になるように真空発生装置をON−OFF制御すればよい。 In the above description, the negative pressure is generated when the compressed air is allowed to pass through the negative pressure generator. However, the molded product can be formed using a vacuum generator such as a vacuum pump without using the negative pressure generator. A negative pressure suction method may be used. In this case, the vacuum generator may be ON / OFF controlled so that the actual suction pressure is between the suction detection pressure and the suction stop threshold pressure when the molded product is sucked and held.

上記説明は、成形品の吸着保持時に、真空発生装置のOFF制御後にON制御するタイミングをプログラムに依然する方法としたが、ON制御する再駆動閾値圧に付いても、OFF制御する吸着停止閾値圧と同様に、任意に設定する方法であってもよい。即ち、図12に示すように、吸着圧設定モード時に、表示部材35dに表示される画像中に再駆動閾値圧設定釦121を表示する。なお、該画像においては、図5に示す吸着停止閾値圧表示ウィンドウ47bの表示を省略する。 The above description is based on a method in which the timing of ON control after OFF control of the vacuum generator is kept depending on the program at the time of suction holding of the molded product. As with the pressure, a method of arbitrarily setting may be used. That is, as shown in FIG. 12, the redrive threshold pressure setting button 121 is displayed in the image displayed on the display member 35d in the adsorption pressure setting mode. In this image, the display of the adsorption stop threshold pressure display window 47b shown in FIG. 5 is omitted.

そして再駆動閾値圧設定釦121がタッチ操作されると、図13に示す吸着停止閾値圧設定画像中に、吸着停止閾値圧表示ウィンドウ123a及び再駆動閾値圧表示ウィンドウ123bをそれぞれ表示させる。吸着パッド17による成形品の吸着保持に伴って実吸着圧が吸着検知圧を超えて高くなった際に、圧縮空気発生装置21をOFF制御するための吸着停止閾値圧を設定するには、吸着停止閾値圧表示ウィンドウ123aをタッチ操作した後に、上記と同様にして吸着圧を設定する。 When the redrive threshold pressure setting button 121 is touched, an adsorption stop threshold pressure display window 123a and a redrive threshold pressure display window 123b are displayed in the adsorption stop threshold pressure setting image shown in FIG. In order to set the suction stop threshold pressure for controlling the compressed air generator 21 to be OFF when the actual suction pressure becomes higher than the suction detection pressure with the suction holding of the molded product by the suction pad 17, the suction stop threshold pressure is set. After touching the stop threshold pressure display window 123a, the adsorption pressure is set in the same manner as described above.

一方、圧縮空気発生装置21がOFF制御されて負圧発生が規制されると、時間の経過に伴って実吸着圧が低くなり、吸着パッド17による成形品の吸着が解除される恐れがある。このため、実吸着圧が吸着停止閾値圧が低くなった際に、圧縮空気発生装置21をON制御して負圧を発生させる必要がある。再駆動閾値圧は、圧縮空気発生装置21をON制御する際の吸着圧で、吸着検知圧より高く、かつ吸着停止閾値圧より低い値で任意に設定される。再駆動閾値圧を設定するには、再駆動閾値圧表示ウィンドウ123bをタッチ操作した後に、上記と同様にして吸着圧を設定する。 On the other hand, when the compressed air generation device 21 is controlled to be turned off and the generation of negative pressure is restricted, the actual suction pressure decreases with time, and the suction of the molded product by the suction pad 17 may be released. For this reason, when the actual adsorption pressure becomes lower than the adsorption stop threshold pressure, it is necessary to control the compressed air generator 21 to generate negative pressure. The redrive threshold pressure is an adsorption pressure when the compressed air generator 21 is ON-controlled, and is arbitrarily set to a value higher than the adsorption detection pressure and lower than the adsorption stop threshold pressure. In order to set the re-driving threshold pressure, the suction pressure is set in the same manner as described above after touching the re-driving threshold pressure display window 123b.

尚、図12及び13に示す表示部材35dにおいて、実施例と同一の部材に付いては、同一の符号を付して詳細な説明を省略する。 In addition, in the display member 35d shown to FIG. 12 and 13, about the same member as an Example, the same code | symbol is attached | subjected and detailed description is abbreviate | omitted.

1 成形品取出し機
3 本体フレーム
5 走行体
9 前後フレーム
11 前後走行体
13 上下ユニット
15 チャック
17 吸着パッド
19 負圧回路
21 圧縮空気発生装置
23 負圧発生装置
25 吸着圧検知器
27 噴射空気圧調整器
29 噴射空気開閉弁
31 制御手段
33 制御ボックス
35 操作ペンダント
35a モード切換キー
35b 設定キー
35c 入力キー
35d 表示部材
37 CPU
39 プログラム記憶手段
41 作業記憶手段
41a 実吸着圧記憶領域
41b 吸着検知圧記憶領域
41c 吸着停止閾値圧記憶領域
43 入出力手段
45 表示制御手段
47a 吸着検知圧表示ウィンドウ
47b 吸着停止閾値圧表示ウィンドウ
47c 実吸着圧表示ウィンドウ
47d テンキー設定釦
47e プラス釦
47f マイナス釦
47g グラフ表示ウィンドウ
DESCRIPTION OF SYMBOLS 1 Mold take-out machine 3 Main body frame 5 Traveling body 9 Front-rear frame 11 Front-rear traveling body 13 Vertical unit 15 Chuck 17 Suction pad 19 Negative pressure circuit 21 Compressed air generator 23 Negative pressure generator 25 Adsorption pressure detector 27 Injection air pressure regulator 29 Injecting air on-off valve 31 Control means 33 Control box 35 Operation pendant 35a Mode switching key 35b Setting key 35c Input key 35d Display member 37 CPU
39 Program storage means 41 Work storage means 41a Actual adsorption pressure storage area 41b Adsorption detection pressure storage area 41c Adsorption stop threshold pressure storage area 43 Input / output means 45 Display control means 47a Adsorption detection pressure display window 47b Adsorption stop threshold pressure display window 47c Adsorption pressure display window 47d Numeric key setting button 47e Plus button 47f Minus button 47g Graph display window

Claims (2)

樹脂成形機から成形品を吸着パッドにより吸着保持して所定の開放位置に取出す成形品取出し機において、
成形品取出し機を駆動制御する各種制御ユニットが収容された制御ボックスに着脱可能に取付けられる操作ペンダントに表示部材を設け、
該表示部材上に負圧(真空)手段と吸着パッドの負圧流路に設けられた吸着圧検知手段により検出される吸着パッドによる成形品の実吸着圧、吸着パッドに成形品が吸着保持されたと判断する吸着検知圧、検出される実吸着圧が負圧手段の最大負圧より低く、成形品への吸着痕形成を回避する負圧で、かつ負圧手段を駆動停止する際の基準値になる吸着停止閾値圧、負圧手段の駆動停止後に検出される実吸着圧が上記吸着検知圧より高く、上記吸着停止閾値圧より低い負圧で、かつ負圧手段を再駆動する際の基準値になる再駆動閾値圧の内、実吸着圧、吸着検知圧及び吸着停止閾値圧を表示し、
上記吸着検知圧及び吸着停止閾値圧は、表示部材に表示された対応するウィンドウを操作した後に表示部材に表示された数値設定ボタンにより所望の負圧を、吸着検知圧が吸着停止閾値圧より低い負圧であることを条件に設定可能にする一方、吸着検知圧が吸着停止閾値圧より高い負圧の場合には設定を禁止することを特徴とする吸着圧制御方法。
In a molded product take-out machine that picks up and holds a molded product from a resin molding machine with a suction pad and takes it out to a predetermined open position.
A display member is provided on an operation pendant that can be detachably attached to a control box in which various control units for driving and controlling the molded product take-out machine are housed.
The actual suction pressure of the molded article by the suction pad detected by the negative pressure (vacuum) means and the suction pressure detection means provided in the negative pressure flow path of the suction pad on the display member, and the molded article is sucked and held by the suction pad The suction detection pressure to be judged, the detected actual suction pressure is lower than the maximum negative pressure of the negative pressure means, a negative pressure that avoids the formation of suction marks on the molded product, and a reference value when driving the negative pressure means is stopped The suction stop threshold pressure, the actual suction pressure detected after the negative pressure means stops driving is a negative pressure that is higher than the suction detection pressure and lower than the suction stop threshold pressure, and a reference value when the negative pressure means is redriven. Displays the actual adsorption pressure, adsorption detection pressure, and adsorption stop threshold pressure among the re-driving threshold pressures .
The suction detection pressure and the suction stop threshold pressure are set to a desired negative pressure by the numerical value setting button displayed on the display member after operating the corresponding window displayed on the display member, and the suction detection pressure is lower than the suction stop threshold pressure. while the settable on condition that a negative pressure, the suction pressure control method suction detecting pressure, characterized that you prohibit setting in the case of a high negative pressure than the suction stop threshold pressure.
請求項1において、
表示部材には、吸着検知圧及び吸着停止閾値圧をグラフ表示すると共に実吸着
圧を、吸着圧の変化に基づいて変位する針画像として表示する吸着圧制御方法。
In claim 1,
An adsorption pressure control method for displaying on the display member the adsorption detection pressure and the adsorption stop threshold pressure in a graph and displaying the actual adsorption pressure as a needle image that is displaced based on a change in the adsorption pressure.
JP2013173047A 2013-08-23 2013-08-23 Adsorption pressure control method for molded product take-out machine Active JP5761823B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2013173047A JP5761823B2 (en) 2013-08-23 2013-08-23 Adsorption pressure control method for molded product take-out machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2013173047A JP5761823B2 (en) 2013-08-23 2013-08-23 Adsorption pressure control method for molded product take-out machine

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
JP2008275331A Division JP5761774B2 (en) 2008-10-27 2008-10-27 Adsorption pressure control method for molded product take-out machine

Publications (2)

Publication Number Publication Date
JP2013252715A JP2013252715A (en) 2013-12-19
JP5761823B2 true JP5761823B2 (en) 2015-08-12

Family

ID=49950633

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2013173047A Active JP5761823B2 (en) 2013-08-23 2013-08-23 Adsorption pressure control method for molded product take-out machine

Country Status (1)

Country Link
JP (1) JP5761823B2 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102019110912B3 (en) * 2019-04-26 2020-07-30 J. Schmalz Gmbh Method for operating a handling system and vacuum block for such a handling system
CN114476200A (en) * 2020-10-23 2022-05-13 深圳市鸿珀智能科技有限公司 Certificate making equipment, material adsorption device of certificate making equipment and control method of material adsorption device

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001018266A (en) * 1999-07-05 2001-01-23 Yushin Precision Equipment Co Ltd Injection molded product taking-out apparatus
JP3897286B2 (en) * 2002-02-07 2007-03-22 株式会社スター精機 Mold take-out machine
JP4046179B2 (en) * 2002-08-28 2008-02-13 株式会社スター精機 Molded product take-out machine
JP4653984B2 (en) * 2004-08-31 2011-03-16 株式会社ユーシン精機 Mold take-out device
JP5016344B2 (en) * 2007-03-28 2012-09-05 株式会社ユーシン精機 Mold take-out machine controller

Also Published As

Publication number Publication date
JP2013252715A (en) 2013-12-19

Similar Documents

Publication Publication Date Title
US10245977B2 (en) Armrest control device and armrest device
JP5761823B2 (en) Adsorption pressure control method for molded product take-out machine
JP4832945B2 (en) Syringe pump and substrate processing apparatus
EP2233276B1 (en) Cloth bonding apparatus
US10059533B2 (en) Controlling a vacuum system comprising a vacuum generator
JP4046179B2 (en) Molded product take-out machine
US20180008112A1 (en) Vacuum cleaner and handle for a cleaner
JP4845489B2 (en) Vibration control method for molded product take-out machine
JP5761824B2 (en) Adsorption pressure control method for molded product take-out machine
JP5761774B2 (en) Adsorption pressure control method for molded product take-out machine
JP6338272B2 (en) Molded product take-out machine and negative pressure generating means control method
JP2013129163A (en) Inkjet recording device
JP2010110863A (en) Vacuum suction device and molded article ejector with vacuum suction device
JP5203902B2 (en) Liquid filling and packaging equipment
JP2009285074A5 (en)
KR100930638B1 (en) Squeegee pressure regulating device in automatic screen printing machine
TWI446973B (en) Coating machine
JP3897286B2 (en) Mold take-out machine
JP2009292066A (en) Molding extraction machine
JP5848044B2 (en) Mold take-out machine
JP6547759B2 (en) Ink supply device and inkjet recording device
JP2009241541A5 (en)
KR101963043B1 (en) Airbag pillow adapted to user sleep
JP6318847B2 (en) Negative pressure detection system
JP2009125656A (en) Apparatus for discharging liquid droplet

Legal Events

Date Code Title Description
A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20140612

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20140616

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20140805

A02 Decision of refusal

Free format text: JAPANESE INTERMEDIATE CODE: A02

Effective date: 20140926

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20141126

A911 Transfer to examiner for re-examination before appeal (zenchi)

Free format text: JAPANESE INTERMEDIATE CODE: A911

Effective date: 20141205

A912 Re-examination (zenchi) completed and case transferred to appeal board

Free format text: JAPANESE INTERMEDIATE CODE: A912

Effective date: 20150109

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20150421

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20150605

R150 Certificate of patent or registration of utility model

Ref document number: 5761823

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250