JPH07164278A - Automatic programming generating method by designation of working precision - Google Patents

Automatic programming generating method by designation of working precision

Info

Publication number
JPH07164278A
JPH07164278A JP27694691A JP27694691A JPH07164278A JP H07164278 A JPH07164278 A JP H07164278A JP 27694691 A JP27694691 A JP 27694691A JP 27694691 A JP27694691 A JP 27694691A JP H07164278 A JPH07164278 A JP H07164278A
Authority
JP
Japan
Prior art keywords
file
prepared hole
tool
hole tool
determination
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
JP27694691A
Other languages
Japanese (ja)
Inventor
Hisashi Ukai
久 鵜飼
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.)
Enshu Ltd
Original Assignee
Enshu 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 Enshu Ltd filed Critical Enshu Ltd
Priority to JP27694691A priority Critical patent/JPH07164278A/en
Publication of JPH07164278A publication Critical patent/JPH07164278A/en
Pending legal-status Critical Current

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  • Numerical Control (AREA)
  • Stored Programmes (AREA)

Abstract

PURPOSE:To provide an automatic programming generating method in which the using tool and cutting condition for conducting an optimum working are automatically determined by a minimum key input operation when the working precision of each tool is designated. CONSTITUTION:Successively to the designation of working precision by key input operation, the selection and determination 1 of the working kind based on a tool working order file, the determination 2 of the prepared hole tool diameter based on a prepared hole tool diameter file, the determination 3 of the prepared hole tool depth based on a prepared hole tool depth file, and the determination 4 of the cutting condition based on a cutting condition file are automatically determined by the logical function of artificial intelligence to execute the optimum working.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、加工精度指定により使
用工具、切削条件などが自動決定されるプログラミング
自動生成方法に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a programming automatic generation method for automatically determining tools to be used, cutting conditions, etc. by designating machining accuracy.

【0002】[0002]

【従来技術と問題点】従来、工作機械の無人化運転に関
するものは、特公昭62ー166951号他に見るよう
提案されている。これらの技術内容は、加工ラインの多
数の加工セルに対して少ない入力操作で生産スケジュー
ルを設定するスケジュール運転方法や加工スケジューリ
ング装置を提供するものなどである。更に、各加工精度
指定は、各工具につき一つ一つの条件を手動操作により
入力設定する煩わしさがある。
2. Description of the Related Art Conventionally, as for unmanned operation of machine tools, it has been proposed to see in Japanese Examined Patent Publication No. 62-166951 and the like. These technical contents are to provide a schedule operation method and a processing scheduling device for setting a production schedule for a large number of processing cells in a processing line with a small number of input operations. Further, each machining precision designation has the troublesomeness of manually inputting and setting each condition for each tool.

【0003】前記工作機械の各工具の各加工精度指定
は、長時間無人運転を実現するために毎日変更される。
このため、作業者は、手作業等でスケジュール用のプロ
グラムの作成や各工具の各加工精度指定等の準備をする
ために長い作業時間を要していた。
Each machining precision designation of each tool of the machine tool is changed every day in order to realize unmanned operation for a long time.
For this reason, the operator needs a long working time to manually prepare a program for a schedule and to specify the machining accuracy of each tool.

【0004】[0004]

【発明が解決しようとする課題】本発明は、前記従来の
問題点に鑑み、各工具の各加工精度指定等に際して最少
限のキー入力操作で最適な加工を行う使用工具、切削条
件などが自動決定されるプログラミング自動生成方法を
提供することを目的とする。
SUMMARY OF THE INVENTION In view of the above-mentioned problems of the prior art, the present invention automatically determines a tool to be used, a cutting condition, etc. for performing optimum machining with a minimum number of key input operations when designating each machining accuracy of each tool. It is an object to provide a programming automatic generation method that is determined.

【0005】[0005]

【課題を解決するための手段】本発明は、キー入力操作
での加工精度の指定に続いて、工具加工順フアイルに基
づく加工種類の選択決定、下穴工具径フアイルに基づく
下穴工具径の決定、下穴工具深さフアイルに基づく下穴
工具深さの決定、切削条件フアイルに基づく切削条件の
決定等を人工知能の推論機能で自動決定し、最適加工を
実施することを特徴とする加工精度指定によるプログラ
ミング自動生成方法としたものである。
According to the present invention, following the designation of the machining accuracy by a key input operation, the selection of the machining type is determined based on the tool machining order file, and the prepared hole tool diameter based on the prepared hole tool diameter file. Machining characterized by automatically determining the determination, the depth of the prepared hole tool depth based on the prepared hole tool depth file, the determination of the cutting condition based on the cutting condition file, etc., and performing the optimum machining. This is the automatic programming generation method by specifying the precision.

【0006】本発明によると、キー操作による加工精度
の選択画面により加工精度を指定するだけで、最適な使
用工具や切削条件が自動的にプログラム生成される。
According to the present invention, the optimum tool to be used and the cutting condition are automatically generated by simply designating the machining accuracy on the screen for selecting the machining accuracy by the key operation.

【0007】[0007]

【実施例】以下、図面に示す実施例にて説明する。図1
は本発明の加工精度指定によるプログラミング自動生成
方法を実施する概要ブロック線図であり、図2は本発明
の加工精度指定によるプログラミング自動生成方法の動
作フローチャート図、図3は本発明の加工精度指定によ
る工具加工順フアイルを示す画面図である。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Embodiments shown in the drawings will be described below. Figure 1
2 is a schematic block diagram for implementing the programming automatic generation method by designating machining accuracy of the present invention, FIG. 2 is an operation flowchart of the programming automatic generation method by designating machining accuracy of the present invention, and FIG. It is a screen view which shows the tool processing order file by.

【0008】図1は、本発明の加工精度指定によるプロ
グラミング自動生成方法を示す実施装置100で、中央
演算部CPU(コンピュータ)10と本発明の人工知能
の推論機能が働くアプリケーションプログラムを持つR
OM20と、加工精度に関するデータフアイルを持つR
AM30,ディスプレィ40,キーボード50とを具備
している。前記キーボード50の操作のもと、ディスプ
レィ40の画面を見ながら本発明の加工精度指定による
プログラミング自動生成方法を実施する。
FIG. 1 shows an embodiment 100 of a programming automatic generation method according to the present invention, which has a central processing unit CPU (computer) 10 and an application program for operating the artificial intelligence inference function of the present invention.
OM20 and R with a data file related to processing accuracy
It has an AM 30, a display 40, and a keyboard 50. Under the operation of the keyboard 50, while watching the screen of the display 40, the programming automatic generation method according to the present invention is executed by designating the processing accuracy.

【0009】本発明に係る加工精度指定によるプログラ
ミング自動生成方法の実施装置100は上記のように構
成され、図2の動作フローチャートと図3の画面図にて
説明する。先ず、「スタート」によりディスプレィ40
には、「加工精度の選択」(1)画面が表示される。こ
こで、1:〜荒取り、2:∇荒仕上げ、3:∇∇中仕上
げ、4:∇∇∇精密仕上げ、の中から任意の加工精度を
キー操作で選択する。続いて、人工知能の推論機能が働
き(2)から(6)までの各決定と各ファイル(2´)
〜(6´)選択機能を順次説明する。先ず、「下穴工具
種類の決定」(2)は「工具加工順フアイル」(2´)
により行われ、この画面を図3に示している。上記下穴
工具加工順設定画面において、「加工種類」に「セン
タ、ドリル、タップ、リーマ、ボーリング、側面、み
ぞ、島取り、ポケット、平面、面取り」が表示され、任
意の加工を選択することで、加工順及びその工具1〜工
具5が自動選定される。
The apparatus 100 for executing the automatic programming generation method by designating the machining accuracy according to the present invention is configured as described above, and will be described with reference to the operation flowchart of FIG. 2 and the screen diagram of FIG. First, display 40 by "Start"
Displays a "Selection of processing accuracy" (1) screen. Here, any processing accuracy is selected by key operation from 1: to rough cutting, 2: ∇ rough finishing, 3: ∇ ∇ medium finishing, 4: ∇ ∇ ∇ precision finishing. Then, the inference function of artificial intelligence works and each decision from (2) to (6) and each file (2 ')
~ (6 ') selection function will be sequentially described. First, "Determination of prepared hole tool type" (2) is "Tool processing order file" (2 ')
This screen is shown in FIG. In the above-mentioned prepared hole tool machining order setting screen, "Center, Drill, Tap, Reamer, Boring, Side, Groove, Island, Pocket, Plane, Chamfer" is displayed in "Machining type", and any machining can be selected. Then, the processing order and its tools 1 to 5 are automatically selected.

【0010】次に「下穴工具径の決定」(3)は「下穴
工具径フアイル」(3´)により実行され、「下穴工具
深さの決定」(4)は「下穴深さフアイル」(4´)に
より実行され、「切削条件の決定」(5)は「切削条件フ
アイル」(5´)により実行され、「各種設定」(6)
は「各種設定フアイル」(6´)により実行される。以
上の人工知能の推論機能が働き、加工精度の指定に基づ
き、使用工具、切削条件などが自動決定され、最適な加
工を実現できる。
Next, "Determination of prepared hole tool diameter" (3) is executed by "Prepared hole tool diameter file" (3 '), and "Determination of prepared hole tool depth" (4) is "Prepared hole depth". "File" (4 '), "Determination of cutting condition" (5) is executed by "Cut condition file"(5'),"Varioussettings" (6)
Is executed by "various setting files" (6 '). The above inference function of artificial intelligence works, the tool to be used, the cutting condition, etc. are automatically determined based on the designation of the machining accuracy, and the optimal machining can be realized.

【0011】本発明は、上記一実施例に限定されること
なく発明の要旨内での設計変更が可能であること勿論で
ある。
It is needless to say that the present invention is not limited to the above-mentioned one embodiment, and design changes can be made within the scope of the invention.

【0012】[0012]

【効果】本発明の加工精度指定によるプログラミング自
動生成方法によるときは、キー操作による加工精度の選
択画面により加工精度を指定するだけで、最適な使用工
具や切削条件が自動的にプログラム生成される。また、
作業者の入力する項目及びキー操作を最少限にして対話
プログラムを短時間に作成できる効果がある。
[Effect] According to the automatic programming generation method by designating machining accuracy of the present invention, the optimum tool to be used and cutting conditions are automatically generated by simply designating the machining accuracy on the machining accuracy selection screen by key operation. . Also,
There is an effect that an operator can input items and key operations to a minimum and create an interactive program in a short time.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明の加工精度指定によるプログラミング自
動生成方法の実施装置を示す概要ブロック線図である。
FIG. 1 is a schematic block diagram showing an implementation device of a programming automatic generation method by designating machining accuracy according to the present invention.

【図2】本発明の加工精度指定によるプログラミング自
動生成方法の動作フローチャート図である。
FIG. 2 is an operation flowchart of a programming automatic generation method according to the present invention for designating machining accuracy.

【図3】工具加工順フアイルを示す画面図である。FIG. 3 is a screen view showing a tool processing order file.

【符号の説明】[Explanation of symbols]

10 コンピュータ 20 ROM 30 RAM 40 ディスプィ 50 キーボード 100 実施装置 (1) 「加工精度の選択」 (2) 「下穴工具種類の決定」 (3) 「下穴工具径の決定」7 (4) 「下穴工具深さの決定」 (5) 「切削条件の決定」 (6) 「各種設定」 10 Computer 20 ROM 30 RAM 40 Display 50 Keyboard 100 Implementing device (1) "Selection of machining accuracy" (2) "Determination of prepared hole tool type" (3) "Determination of prepared hole tool diameter" 7 (4) "Down" "Determination of hole tool depth" (5) "Determination of cutting conditions" (6) "Various settings"

【手続補正書】[Procedure amendment]

【提出日】平成6年8月18日[Submission date] August 18, 1994

【手続補正1】[Procedure Amendment 1]

【補正対象書類名】図面[Document name to be corrected] Drawing

【補正対象項目名】全図[Correction target item name] All drawings

【補正方法】変更[Correction method] Change

【補正内容】[Correction content]

【図1】 [Figure 1]

【図2】 [Fig. 2]

【図3】 [Figure 3]

フロントページの続き (51)Int.Cl.6 識別記号 庁内整理番号 FI 技術表示箇所 G05B 19/4093 19/4155 G06F 9/06 530 X 9367−5B Continuation of the front page (51) Int.Cl. 6 Identification code Office reference number FI technical display location G05B 19/4093 19/4155 G06F 9/06 530 X 9367-5B

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 キー入力操作での加工精度の指定に続い
て、工具加工順フアイルに基づく加工種類の選択決定、
下穴工具径フアイルに基づく下穴工具径の決定、下穴工
具深さフアイルに基づく下穴工具深さの決定、切削条件
フアイルに基づく切削条件の決定等を人工知能の推論機
能で自動決定し、最適加工を実施することを特徴とする
加工精度指定によるプログラミング自動生成方法。
1. Selection of a machining type based on a tool machining sequence file, following designation of machining accuracy by a key input operation,
The inference function of artificial intelligence automatically determines the prepared hole tool diameter based on the prepared hole tool diameter file, the prepared hole tool depth based on the prepared hole tool depth file, and the cutting condition based on the cutting condition file. , A method for automatically generating programming by designating machining accuracy, which is characterized by performing optimum machining.
JP27694691A 1991-09-26 1991-09-26 Automatic programming generating method by designation of working precision Pending JPH07164278A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP27694691A JPH07164278A (en) 1991-09-26 1991-09-26 Automatic programming generating method by designation of working precision

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP27694691A JPH07164278A (en) 1991-09-26 1991-09-26 Automatic programming generating method by designation of working precision

Publications (1)

Publication Number Publication Date
JPH07164278A true JPH07164278A (en) 1995-06-27

Family

ID=17576622

Family Applications (1)

Application Number Title Priority Date Filing Date
JP27694691A Pending JPH07164278A (en) 1991-09-26 1991-09-26 Automatic programming generating method by designation of working precision

Country Status (1)

Country Link
JP (1) JPH07164278A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010247256A (en) * 2009-04-13 2010-11-04 Hitachi Via Mechanics Ltd Machining program automatic conversion program

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010247256A (en) * 2009-04-13 2010-11-04 Hitachi Via Mechanics Ltd Machining program automatic conversion program

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