JPH0230327A - Stroke control device press brake - Google Patents

Stroke control device press brake

Info

Publication number
JPH0230327A
JPH0230327A JP17732288A JP17732288A JPH0230327A JP H0230327 A JPH0230327 A JP H0230327A JP 17732288 A JP17732288 A JP 17732288A JP 17732288 A JP17732288 A JP 17732288A JP H0230327 A JPH0230327 A JP H0230327A
Authority
JP
Japan
Prior art keywords
punch
plate material
stroke
die
plate
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.)
Pending
Application number
JP17732288A
Other languages
Japanese (ja)
Inventor
Junji Adachi
淳治 安達
Yoshinori Tokunaga
徳永 嘉則
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Electric Works Co Ltd
Original Assignee
Matsushita Electric Works Ltd
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 Matsushita Electric Works Ltd filed Critical Matsushita Electric Works Ltd
Priority to JP17732288A priority Critical patent/JPH0230327A/en
Publication of JPH0230327A publication Critical patent/JPH0230327A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To keep the high bending accuracy of a plate material by sensing through a load sensor a time when a punch has come into contact with the plate material, computing the contact position through a stroke sensor and controlling the amount of indentation of the punch. CONSTITUTION:The punch 3 forces the plate material 1 into a groove 20 of a die to bend the plate material 1. When the punch 3 is lowered by hydraulic pressure supplied from a hydraulic ram 4 and comes into contact with the plate material 1, the value of the hydraulic pressure increases quickly. This change is detected by the load sensor 5 and the position of the punch 3 is known by the stroke sensor 7. The control computing circuit 8 requires a distance from the upper surface of the die 2 to the tip of the punch 3 and the plate thickness and computes a suitable amount of indentation. The punch 3 is lowered by a necessary amount based on the output valve of the stroke sensor 7. A necessary, accurate bending can be carried out without providing a special plate thickness measuring device.

Description

【発明の詳細な説明】[Detailed description of the invention]

【産業上の利用分野1 本発明はポンチとダイとからなり、長尺の板材を所定角
度に折り曲げるために使用されるプレスブレーキのス)
a−り制御i置に関するものであ【従来の技術】 このプレスブレーキのストローク制御は、従来、プレス
ブレーキが待つ機械的原点を基準に設定されたストロー
クだけポンチを駆動している。すなわち、第4図に示す
ように、ダイ2に対してポンチ3の先端が原点x0から
Xsのところまで下げることでストロークXを定め、こ
れによって板材1に対するポンチ3の所要の押し込み量
X0が確保されて板材1の曲げがなされるようにしてい
る。
[Industrial Application Field 1] The present invention is a press brake machine consisting of a punch and a die, which is used to bend a long plate material at a predetermined angle.
This relates to the position control of the press brake. Conventionally, the stroke control of the press brake involves driving the punch by a stroke set based on the mechanical origin where the press brake waits. That is, as shown in FIG. 4, the stroke X is determined by lowering the tip of the punch 3 relative to the die 2 from the origin x0 to the point Xs, thereby ensuring the required pushing amount X0 of the punch 3 against the plate material 1. so that the plate material 1 is bent.

【発明が解決しようとする課題】[Problem to be solved by the invention]

この場合、板材1の板厚tが公称厚み通りであれば全く
問題はないのであるが、公称厚み七〇よりも板厚t、が
薄い場合や、あるいは公称厚みtoよりも板厚t2が厚
いと、この板厚t+、L2と公称厚みt。 との差の分だけ、板材1に対するポンチ3の押し込み量
xl+X2が本来の値x0から変化してしまう。 しかも本来ならば、板厚が公称板厚より小さければ押し
込み量を大きく、公称板厚より大きければ押し込み量を
小さくしなくては、必要とする曲げを得られないのに対
して、逆となってしまうために、曲げ角度の精度が大き
く悪化してしまうという問題点を有している。 プレスブレーキに板材1をセットする前に板材1の板厚
を測定して、この測定値によってプレスブレーキのスト
ロークを補正するようにすることが特開昭61−927
25号公報に示されているが、この場合、板厚測定装置
及び工程が増えるという問題がある。 本発明はこのような点に鑑み為されたものであり、その
目的とするところは別途板厚測定装置を必要とすること
なく、また板厚測定工程を必要とすることなく、プレス
ストロークを板材の厚みに応じたものに自動調整するこ
とができ、板材に対する曲げ精度を高く保つことができ
るプレスブレーキのストローク制御装置を提供するにあ
る。
In this case, there is no problem if the thickness t of the plate 1 is the same as the nominal thickness, but if the plate thickness t is thinner than the nominal thickness 70, or the plate thickness t2 is thicker than the nominal thickness to. and this plate thickness t+, L2 and nominal thickness t. The pushing amount xl+X2 of the punch 3 against the plate material 1 changes from the original value x0 by the difference between the two. Moreover, originally, if the plate thickness was smaller than the nominal plate thickness, the amount of push-in would have to be increased, and if the plate thickness was larger than the nominal thickness, the amount of push-in would have to be smaller to obtain the required bending, but the opposite is true. Therefore, there is a problem in that the accuracy of the bending angle is greatly deteriorated. JP-A-61-927 discloses that the thickness of the plate 1 is measured before setting the plate 1 on the press brake, and the stroke of the press brake is corrected based on this measurement value.
However, in this case, there is a problem in that the number of plate thickness measuring devices and processes increases. The present invention has been made in view of these points, and its purpose is to adjust the press stroke to the plate material without requiring a separate plate thickness measuring device or without the need for a plate thickness measurement process. To provide a press brake stroke control device that can automatically adjust the stroke according to the thickness of the press brake and maintain high bending accuracy for the plate material.

【課題を解決するための手段】[Means to solve the problem]

しかして本発明は、ダイと、ダイに板材を押し込んで板
材に曲げを与えるポンチとからなるプレスブレーキのス
トローク制御装置であって、ポンチの駆動負荷を検出す
る負荷センサーと、プレスストロークを検出するストロ
ークセンサーとを備えるとともに、負荷センサーの出力
から得られるポンチと板材との接触位置からポンチの押
し込み量を制御する制御手段を備えていることに特徴を
有している。 [作用] 本発明によれば、その板材の曲げ加工中に板材の板厚を
リアルタイムに測定して、この測定した板厚に応じてス
トロークを制御して、ポンチによる板材の押し込み量を
板材の板厚に応じたものとすることができる。 [実施例1 以下本発明を図示の実施例に基づいて詳述すると、1字
形の溝20を備えたダイ2と、このダイ2のW42θ内
に板材1を押し込んで板材1に曲げを与えるポンチ3と
からなるプレスブレーキにおいて、ポンチ3を駆動する
ための油圧ラム4に、その油圧値Pを測定することでポ
ンチ3の駆動負荷を計測する負荷センサー5を取り付け
てあり、また油圧ラム4から供給される油圧によってポ
ンチ3の上下駆動を行なう駆動ユニット6には、ポンチ
3の動作量、つまりはプレスストロークを測定するリニ
アスケール等からなるストロークセンサー7を設けであ
る。そして、プレスブレーキの動作制御を行なう制御演
算回路8に、上記両センサー5,7が接続されている1
図中9は油圧センサー7と制御演算回路8との間に挿入
されたA/Dコンバーターである。 しかして、このプレスブレーキにおいては、ダイ2上に
板材1をセットし、油圧ラム4から供給する油圧によっ
てポンチ3を下降させて板材1をダイ2の溝20内に押
し込むことで、板材1に対する曲げを行なうわけである
が、この時、油圧ラム4から駆動ユニット6に供給され
る油圧値Pを負荷センサー5で検出することによって、
ポンチ3の駆動負荷を計測する。 今、ポンチ3が下降してゆき、第3図(a)に示すよう
に、板材1の表面にポンチ3が接触したならば、第2図
に破線で示す油圧値Pの変化から明らかなように、この
時点から油圧値Pが急速に上昇する。制御演算回路8は
この時点のポンチ3の位置を基準X0とするとともに、
ダイ2の上面からポンチ3先端までの距離として板厚t
を求め、この板厚tに適した押し込みilxを求め、ス
トロークセンサー7の出力値をもとに、この位置から上
記押し込み量Xだけポンチ3を更に下降させることによ
って、1143図(b)に示すように、板材1に曲げを
行なうのである。 この結果、板材1に与えられる押し込み量Xは、常に板
材1の板厚tに最適の値となるものであり、またプレス
ブレーキの板材1に対する曲げ加工中に上記計測を行な
うことから、別途測定工程を必要としないものである。 尚、ここでは油圧で駆動するものの場合について説明し
たが、他の駆動源で駆動するものについても、同様に駆
動負荷を検出することによって、同様のストローク制御
を行なうことができる。
Therefore, the present invention is a stroke control device for a press brake that includes a die and a punch that pushes a plate material into the die and bends the plate material, and includes a load sensor that detects the driving load of the punch and a press stroke that detects the press stroke. The present invention is characterized in that it includes a stroke sensor and a control means that controls the amount of push of the punch based on the contact position between the punch and the plate material obtained from the output of the load sensor. [Function] According to the present invention, the thickness of the plate material is measured in real time during bending of the plate material, and the stroke is controlled according to the measured thickness, so that the amount of pushing of the plate material by the punch can be adjusted. It can be made according to the plate thickness. [Example 1] The present invention will be described below in detail based on the illustrated embodiment. A die 2 having a single-shaped groove 20, and a punch that bends the plate material 1 by pushing the plate material 1 into the W42θ of the die 2. 3, a load sensor 5 is attached to a hydraulic ram 4 for driving the punch 3, and a load sensor 5 is attached to the hydraulic ram 4 for measuring the driving load of the punch 3 by measuring the hydraulic pressure value P. A drive unit 6, which drives the punch 3 up and down by supplied hydraulic pressure, is provided with a stroke sensor 7 consisting of a linear scale or the like that measures the amount of movement of the punch 3, that is, the press stroke. The sensors 5 and 7 are connected to a control calculation circuit 8 that controls the operation of the press brake.
9 in the figure is an A/D converter inserted between the oil pressure sensor 7 and the control calculation circuit 8. In this press brake, the plate material 1 is set on the die 2, and the punch 3 is lowered by the hydraulic pressure supplied from the hydraulic ram 4 to push the plate material 1 into the groove 20 of the die 2. At this time, the hydraulic pressure P supplied from the hydraulic ram 4 to the drive unit 6 is detected by the load sensor 5.
Measure the driving load of punch 3. If the punch 3 now descends and comes into contact with the surface of the plate 1 as shown in Figure 3(a), it will be clear from the change in the hydraulic pressure P shown by the broken line in Figure 2. From this point on, the oil pressure value P rapidly increases. The control calculation circuit 8 sets the position of the punch 3 at this point as the reference X0, and
The plate thickness t is the distance from the top surface of the die 2 to the tip of the punch 3.
, find the indentation ilx suitable for this plate thickness t, and further lower the punch 3 by the above-mentioned indentation amount X from this position based on the output value of the stroke sensor 7, as shown in Fig. 1143 (b). In this way, the plate material 1 is bent. As a result, the pushing amount X given to the plate material 1 is always the optimal value for the plate thickness t of the plate material 1, and since the above measurement is performed during the bending process of the plate material 1 with the press brake, it is necessary to measure separately. It does not require any process. Note that although the case of a hydraulically driven device has been described here, similar stroke control can be performed for a device driven by another drive source by similarly detecting the driving load.

【発明の効果】【Effect of the invention】

以上のように本発明においでは、プレスブレーキの白げ
加工中に板材の板厚を測定して、この測定値に応じたス
トロークで板材に曲げ加工を施すことができるものであ
り、板材の板厚測定!if!や測定工程を別途必要とす
ることなく、所要の曲げを正確に行なうことができるも
のである。
As described above, in the present invention, the thickness of the plate material can be measured during the whitening process of the press brake, and the plate material can be bent with a stroke according to the measured value. Thickness measurement! If! This allows the required bending to be performed accurately without requiring a separate measurement process.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明一実施例のブロック構成図、第2図は同
上の動作を説明するタイムチャート、第3図(a)(b
)は同上の端面図、第4図は従来例の問題点を示す端面
図であって、1は板材、2はダイ、3はポンチ、5は負
臂センサー、7はストロークセンサー、8は制御演算回
路を示す。 代理人 弁理士 石 1)氏 七 1i13■
FIG. 1 is a block configuration diagram of an embodiment of the present invention, FIG. 2 is a time chart explaining the same operation, and FIGS. 3(a) and (b).
) is an end view of the same as above, and FIG. 4 is an end view showing the problems of the conventional example, where 1 is a plate material, 2 is a die, 3 is a punch, 5 is a negative arm sensor, 7 is a stroke sensor, and 8 is a control. The arithmetic circuit is shown. Agent Patent Attorney Mr. Ishi 1) 71i13■

Claims (1)

【特許請求の範囲】[Claims] (1)ダイと、ダイに板材を押し込んで板材に曲げを与
えるポンチとからなるプレスブレーキのストローク制御
装置であって、ポンチの駆動負荷を検出する負荷センサ
ーと、プレスストロークを検出するストロークセンサー
とを備えるとともに、負荷センサーの出力から得られる
ポンチと板材との接触位置からポンチの押し込み量を制
御する制御手段を備えていることを特徴とするプレスブ
レーキのストローク制御装置。
(1) A press brake stroke control device consisting of a die and a punch that bends the plate material by pushing the plate material into the die, and includes a load sensor that detects the driving load of the punch, and a stroke sensor that detects the press stroke. What is claimed is: 1. A stroke control device for a press brake, comprising: a control means for controlling the pushing amount of the punch based on the contact position between the punch and the plate obtained from the output of a load sensor.
JP17732288A 1988-07-15 1988-07-15 Stroke control device press brake Pending JPH0230327A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP17732288A JPH0230327A (en) 1988-07-15 1988-07-15 Stroke control device press brake

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP17732288A JPH0230327A (en) 1988-07-15 1988-07-15 Stroke control device press brake

Publications (1)

Publication Number Publication Date
JPH0230327A true JPH0230327A (en) 1990-01-31

Family

ID=16028954

Family Applications (1)

Application Number Title Priority Date Filing Date
JP17732288A Pending JPH0230327A (en) 1988-07-15 1988-07-15 Stroke control device press brake

Country Status (1)

Country Link
JP (1) JPH0230327A (en)

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5222528A (en) * 1992-01-13 1993-06-29 Westinghouse Electric Corp. Device for forming leads
WO1995010370A1 (en) * 1993-10-15 1995-04-20 Komatsu Ltd. Method for setting the position of a ram of a press brake and device for controlling the ram
JPH1052800A (en) * 1996-08-08 1998-02-24 Daikin Ind Ltd Control device of press
WO2001053017A1 (en) * 2000-01-17 2001-07-26 Amada Company, Limited Sheet working method, sheet working system, and various devices related to such system
EP1120176A1 (en) * 2000-01-24 2001-08-01 Beyeler Raskin S.A. Method for controlling the stroke of a press brake
WO2001060541A1 (en) * 2000-02-18 2001-08-23 Amada Company, Limited Method and device for detecting plate thickness in press
WO2002074463A1 (en) * 2001-03-16 2002-09-26 Bystronic Laser Ag Method for setting the travel of a press brake
EP1424146A1 (en) * 2002-11-29 2004-06-02 Rbh Device for automatically correcting bending parameters inherent of sheet metal in a press brake
US6959573B2 (en) 2000-08-11 2005-11-01 Amada Company, Limited Bending method and device therefore
JP2006088183A (en) * 2004-09-22 2006-04-06 Amada Co Ltd Bending method and bending machine for work
JP2013158812A (en) * 2012-02-07 2013-08-19 Amada Co Ltd Bending device and bending method
JP2013212515A (en) * 2012-04-02 2013-10-17 Amada Co Ltd Plate thickness measuring device for bending machine
CN111729961A (en) * 2020-07-29 2020-10-02 吴江市液铸液压件铸造有限公司 Intelligent pneumatic stamping equipment suitable for metal parts

Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5222528A (en) * 1992-01-13 1993-06-29 Westinghouse Electric Corp. Device for forming leads
WO1995010370A1 (en) * 1993-10-15 1995-04-20 Komatsu Ltd. Method for setting the position of a ram of a press brake and device for controlling the ram
JPH1052800A (en) * 1996-08-08 1998-02-24 Daikin Ind Ltd Control device of press
US7249478B2 (en) 2000-01-17 2007-07-31 Amada Company, Limited Method and system for processing plate material, and various devices concerning the system
WO2001053017A1 (en) * 2000-01-17 2001-07-26 Amada Company, Limited Sheet working method, sheet working system, and various devices related to such system
US7040129B2 (en) 2000-01-17 2006-05-09 Amada Company, Limited Sheet working method, sheet working system, and various devices related to such system
EP1120176A1 (en) * 2000-01-24 2001-08-01 Beyeler Raskin S.A. Method for controlling the stroke of a press brake
US6581427B2 (en) 2000-01-24 2003-06-24 Beyeler Raskin S.A. Method of adjusting the stroke of a press brake
WO2001060541A1 (en) * 2000-02-18 2001-08-23 Amada Company, Limited Method and device for detecting plate thickness in press
US6826939B2 (en) 2000-02-18 2004-12-07 Amada Company, Ltd. Method and device for detaching plate thickness in press
US6959573B2 (en) 2000-08-11 2005-11-01 Amada Company, Limited Bending method and device therefore
WO2002074463A1 (en) * 2001-03-16 2002-09-26 Bystronic Laser Ag Method for setting the travel of a press brake
US7079919B2 (en) 2001-03-16 2006-07-18 Bystronic Laser Ag Method for setting the travel of a press brake
EP1424146A1 (en) * 2002-11-29 2004-06-02 Rbh Device for automatically correcting bending parameters inherent of sheet metal in a press brake
FR2847835A1 (en) * 2002-11-29 2004-06-04 Rbh DEVICE FOR AUTOMATIC CORRECTION OF BENDING PARAMETERS INHERENT TO SHEET, ON A PRESS BRAKE
JP2006088183A (en) * 2004-09-22 2006-04-06 Amada Co Ltd Bending method and bending machine for work
JP2013158812A (en) * 2012-02-07 2013-08-19 Amada Co Ltd Bending device and bending method
JP2013212515A (en) * 2012-04-02 2013-10-17 Amada Co Ltd Plate thickness measuring device for bending machine
CN111729961A (en) * 2020-07-29 2020-10-02 吴江市液铸液压件铸造有限公司 Intelligent pneumatic stamping equipment suitable for metal parts

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