JPS59163608A - ジグソ− - Google Patents
ジグソ−Info
- Publication number
- JPS59163608A JPS59163608A JP58037975A JP3797583A JPS59163608A JP S59163608 A JPS59163608 A JP S59163608A JP 58037975 A JP58037975 A JP 58037975A JP 3797583 A JP3797583 A JP 3797583A JP S59163608 A JPS59163608 A JP S59163608A
- Authority
- JP
- Japan
- Prior art keywords
- optimum
- blade
- jigsaw
- data
- display means
- 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
Links
Classifications
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B19/00—Programme-control systems
- G05B19/02—Programme-control systems electric
- G05B19/18—Numerical control [NC], i.e. automatically operating machines, in particular machine tools, e.g. in a manufacturing environment, so as to execute positioning, movement or co-ordinated operations by means of programme data in numerical form
- G05B19/4093—Numerical control [NC], i.e. automatically operating machines, in particular machine tools, e.g. in a manufacturing environment, so as to execute positioning, movement or co-ordinated operations by means of programme data in numerical form characterised by part programming, e.g. entry of geometrical information as taken from a technical drawing, combining this with machining and material information to obtain control information, named part programme, for the NC machine
- G05B19/40937—Numerical control [NC], i.e. automatically operating machines, in particular machine tools, e.g. in a manufacturing environment, so as to execute positioning, movement or co-ordinated operations by means of programme data in numerical form characterised by part programming, e.g. entry of geometrical information as taken from a technical drawing, combining this with machining and material information to obtain control information, named part programme, for the NC machine concerning programming of machining or material parameters, pocket machining
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23D—PLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
- B23D49/00—Machines or devices for sawing with straight reciprocating saw blades, e.g. hacksaws
- B23D49/10—Hand-held or hand-operated sawing devices with straight saw blades
- B23D49/16—Hand-held or hand-operated sawing devices with straight saw blades actuated by electric or magnetic power or prime movers
- B23D49/162—Pad sawing devices
- B23D49/165—Pad sawing devices with means to move the saw blades in an orbital path
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23D—PLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
- B23D59/00—Accessories specially designed for sawing machines or sawing devices
- B23D59/008—Accessories specially designed for sawing machines or sawing devices comprising computers
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B2219/00—Program-control systems
- G05B2219/30—Nc systems
- G05B2219/35—Nc in input of data, input till input file format
- G05B2219/35431—Interactive
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P90/00—Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
- Y02P90/02—Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T83/00—Cutting
- Y10T83/687—By tool reciprocable along elongated edge
- Y10T83/7015—Having uniplanar compound motion
Landscapes
- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Mechanical Engineering (AREA)
- Geometry (AREA)
- Human Computer Interaction (AREA)
- Manufacturing & Machinery (AREA)
- General Physics & Mathematics (AREA)
- Automation & Control Theory (AREA)
- Sawing (AREA)
- Numerical Control (AREA)
Abstract
(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
め要約のデータは記録されません。
Description
【発明の詳細な説明】
本発明はジグソーの最適作業条件設定に関するものであ
る。
る。
従来はジグソーの操作は表1、表2および経験にもとづ
きブレード、オーとタルポジション(第1図参照)、ス
トローク数を決めていた。
きブレード、オーとタルポジション(第1図参照)、ス
トローク数を決めていた。
表1 適正使用のこ刃一覧表
ものではない。
表2 オービタルポジションの選択
このため、操作がしにくいばかりか、最適条件を即座に
見い出して作業を行なうことが困難であった。
見い出して作業を行なうことが困難であった。
本発明の目的は、上記した従来技術の欠点をなくすこと
にある。
にある。
本発明は、被切断材料、仕上り、切り方および板厚等の
作業条件を入力手段により入力し、選択手段により最適
ブレード、最適オービタルボジシii/、最適ストロー
ク数および注油の有無等の最適作業条件を選択するよう
にしたものである。
作業条件を入力手段により入力し、選択手段により最適
ブレード、最適オービタルボジシii/、最適ストロー
ク数および注油の有無等の最適作業条件を選択するよう
にしたものである。
第2図は本発明のジグソーの斜視図である。図において
、lはハウジング、2はテールカバー、3はノブ、4は
減速機構が収納されているギヤカバー、9はベース、1
0はブレード、11はオービタルポジションを切り換え
るチェンジノブ、8は主回路を開閉するスイッチ、7は
表示手段5、入力手段6からなる°パネルクミでハウジ
ング1内に収納されている。
、lはハウジング、2はテールカバー、3はノブ、4は
減速機構が収納されているギヤカバー、9はベース、1
0はブレード、11はオービタルポジションを切り換え
るチェンジノブ、8は主回路を開閉するスイッチ、7は
表示手段5、入力手段6からなる°パネルクミでハウジ
ング1内に収納されている。
第3図は本発明の第1実施例の回路図である。
第4図は第1実施例の表示手段と入力手段の詳細図であ
る。図において、5は被切断材料表示手段51、仕上り
表示手段52、切り方表示手段53、板厚表示手段54
、ブレード番号表示手段55、オービタルポジシラン表
示手段56、ストローク数設定表示手段57、注油有無
表示手段58からなる表示手段で液晶表示素子(以後L
CDと呼ぶ)あるいは発光ダイオード等からなる。6は
被切断材料および数字指定キー61、仕上りおよび数字
指定キー62、切り方および数字指定キー63、板厚指
定キー64、第2のブレード番号検索キー65からなる
入力手段、12は交流電源、13は電動機、14は半導
体制御素子、15はLCDを駆動するLCDドライバ、
演算手段ALU1プロクラムおよびテーブルデータ等を
格納するROM、入力データ、処理データおよび表示デ
ータの記憶等の退避に用いられるRAM1 I10ボー
ト、タイマ等からなるマイクロコンピュータ(以後マイ
コンと呼ぶ)で選択手段および演算手段として動作する
。
る。図において、5は被切断材料表示手段51、仕上り
表示手段52、切り方表示手段53、板厚表示手段54
、ブレード番号表示手段55、オービタルポジシラン表
示手段56、ストローク数設定表示手段57、注油有無
表示手段58からなる表示手段で液晶表示素子(以後L
CDと呼ぶ)あるいは発光ダイオード等からなる。6は
被切断材料および数字指定キー61、仕上りおよび数字
指定キー62、切り方および数字指定キー63、板厚指
定キー64、第2のブレード番号検索キー65からなる
入力手段、12は交流電源、13は電動機、14は半導
体制御素子、15はLCDを駆動するLCDドライバ、
演算手段ALU1プロクラムおよびテーブルデータ等を
格納するROM、入力データ、処理データおよび表示デ
ータの記憶等の退避に用いられるRAM1 I10ボー
ト、タイマ等からなるマイクロコンピュータ(以後マイ
コンと呼ぶ)で選択手段および演算手段として動作する
。
16はストローク数設定表示手段57のデータに基づい
てブレード6のストローク数を設定する調整ツマミ付町
変抵抗器161、L、張発振用コンデンサ162および
双方向性トリガ素子163からなる位相制御回路である
。位相制御回路16は調整ツマミにより可変抵抗器16
1の値を小さくすると、コンデンサ162の電圧が双方
向性トリガ素子163のトリガ電圧に達するのが早くな
シ、半導体制御素子14が早く点弧し、電動機13への
給電電圧が犬きくなシ、電動機13の回転数が高くなシ
、減速機構によシ減速されているプレードロのストロー
ク数も高くなる。逆に可変抵抗器161の値を大きくす
るとブレード6のストロークが低くなる。
てブレード6のストローク数を設定する調整ツマミ付町
変抵抗器161、L、張発振用コンデンサ162および
双方向性トリガ素子163からなる位相制御回路である
。位相制御回路16は調整ツマミにより可変抵抗器16
1の値を小さくすると、コンデンサ162の電圧が双方
向性トリガ素子163のトリガ電圧に達するのが早くな
シ、半導体制御素子14が早く点弧し、電動機13への
給電電圧が犬きくなシ、電動機13の回転数が高くなシ
、減速機構によシ減速されているプレードロのストロー
ク数も高くなる。逆に可変抵抗器161の値を大きくす
るとブレード6のストロークが低くなる。
次に動作を第5図のフローチャートをもとに説明する。
作業前に作業者は木、合板、軟質プラスチック、硬質プ
ラスチック、非鉄か鉄かの被切断材料、荒仕上か精密仕
上かの仕上シ具合、直線切か曲線切かの切シ方および板
厚データを入力手段6に入力する。板厚データの入力方
法は板厚キー114を押して、指定キー61.62およ
び63を数字指定モードにして板厚を指定すれば良い。
ラスチック、非鉄か鉄かの被切断材料、荒仕上か精密仕
上かの仕上シ具合、直線切か曲線切かの切シ方および板
厚データを入力手段6に入力する。板厚データの入力方
法は板厚キー114を押して、指定キー61.62およ
び63を数字指定モードにして板厚を指定すれば良い。
なお、指定キー61.62および63は通常被切断材料
、仕上りおよび切シ方の指定モードになっている。上記
の指定によシ、表示手段5には各指定入力データに応じ
た表示が行なわれる。また、マイコン15のROMに格
納されているテーブルデータ(表3参照)よシ選択され
るブレード番号、オービタルポジションストローク数お
よび注油の有無のデータが選択され、表示される。なお
、第2のブレード番号検索キー65を押せば、第2の選
択グレード番号が選択され表示される。表示出力データ
に基づき作業者が指定ブレードをっけ、チェンジノブ7
によシオービタルポジションを切シ換え、調整ツマミの
ついている可変抵抗器161によシストローフ数を設定
すれば最適条件で作業ができる。
、仕上りおよび切シ方の指定モードになっている。上記
の指定によシ、表示手段5には各指定入力データに応じ
た表示が行なわれる。また、マイコン15のROMに格
納されているテーブルデータ(表3参照)よシ選択され
るブレード番号、オービタルポジションストローク数お
よび注油の有無のデータが選択され、表示される。なお
、第2のブレード番号検索キー65を押せば、第2の選
択グレード番号が選択され表示される。表示出力データ
に基づき作業者が指定ブレードをっけ、チェンジノブ7
によシオービタルポジションを切シ換え、調整ツマミの
ついている可変抵抗器161によシストローフ数を設定
すれば最適条件で作業ができる。
表3
豪ブレード番号は日立王様純正部品に対するもので一般
的なものではない。
的なものではない。
第6図は本発明の第2実施例の回路図である。
第7図は第2実施例の表示手段と入力手段の詳細図であ
る。図において、109はスィッチ8オフ時はブレード
番号を、スィッチ8オン時はブレードの実ストローク数
を表示する表示手段、17はダイオード171、抵抗1
72.173、平滑用コンデンサ174および定電圧ダ
イオード175.176からなるマイコン用電源、18
はダイオード181、抵抗182.183平滑用コンデ
ンサ184および定電圧ダイオード185からなるスイ
ッチ状態検出回路で、スイッチ8がオフ状態にあるかオ
ン状態にあるかを検出する。19はマイコン15のデジ
タル出力データをアナログデータニ変換するD−Aコン
バータで出力電圧は電動機13の回転数すなわちブレー
ドのストローク数の設定電圧となる。20は電動機13
の回転数を検出する回転数検出器でホールIC,マグネ
ットピックアップ等からなる。21は回転数検出器20
からの回転数に比例し次、周波数信号をアナログ信号に
変換するF−Vコンバータ211、F−Vコンバータ2
11の出力電圧とD−Aコンバータ19の出力とD−A
コンバータ19の出力電圧の差分を増幅する差動増幅回
路212、差動増幅回路212の出力電圧に応じて半導
体制御素子14の点弧角を変える位相制御回路213か
らなる回転数制御回路21は電動機13に負荷がかかり
回転数が低下し、F−vコンバータ211の出力電圧が
小さくなると、差動増幅回路213の出力電圧が大きく
なり、位相制御回路213が半導体制御素子14の点弧
角を小さく、電動機13への給電電圧を犬きくするよう
に動作をする。これにより、電動機13の回転数は一定
に保たれる。すなわち、ブレードのストローク数が一定
に保たれる。
る。図において、109はスィッチ8オフ時はブレード
番号を、スィッチ8オン時はブレードの実ストローク数
を表示する表示手段、17はダイオード171、抵抗1
72.173、平滑用コンデンサ174および定電圧ダ
イオード175.176からなるマイコン用電源、18
はダイオード181、抵抗182.183平滑用コンデ
ンサ184および定電圧ダイオード185からなるスイ
ッチ状態検出回路で、スイッチ8がオフ状態にあるかオ
ン状態にあるかを検出する。19はマイコン15のデジ
タル出力データをアナログデータニ変換するD−Aコン
バータで出力電圧は電動機13の回転数すなわちブレー
ドのストローク数の設定電圧となる。20は電動機13
の回転数を検出する回転数検出器でホールIC,マグネ
ットピックアップ等からなる。21は回転数検出器20
からの回転数に比例し次、周波数信号をアナログ信号に
変換するF−Vコンバータ211、F−Vコンバータ2
11の出力電圧とD−Aコンバータ19の出力とD−A
コンバータ19の出力電圧の差分を増幅する差動増幅回
路212、差動増幅回路212の出力電圧に応じて半導
体制御素子14の点弧角を変える位相制御回路213か
らなる回転数制御回路21は電動機13に負荷がかかり
回転数が低下し、F−vコンバータ211の出力電圧が
小さくなると、差動増幅回路213の出力電圧が大きく
なり、位相制御回路213が半導体制御素子14の点弧
角を小さく、電動機13への給電電圧を犬きくするよう
に動作をする。これにより、電動機13の回転数は一定
に保たれる。すなわち、ブレードのストローク数が一定
に保たれる。
次に動作を第8図のフローチャートをもとに説明する。
作業前に作業者が被切断材料、仕上り、切り方および板
厚のデータを入力すると表示手段10には各指定入力デ
ータに応じた表示が行なわレル。また、マイコン15に
よりブレード番号、オービタルポジションおよび注油の
有無が選択され表示さ扛ると共にプレードのストローク
数のデータがD−Aコンバータ19に出力される。
厚のデータを入力すると表示手段10には各指定入力デ
ータに応じた表示が行なわレル。また、マイコン15に
よりブレード番号、オービタルポジションおよび注油の
有無が選択され表示さ扛ると共にプレードのストローク
数のデータがD−Aコンバータ19に出力される。
これに基づき作業者が指足ブレードをつけ、チェンジノ
ブ7によりオービタルボジショ7を切り換え、スイッチ
8をオンするとブレードは最適なストローク数で動作す
る。マイコン15は回転数検出器20の信号を入力し、
電動機13の回転が減速機構により減速されたブレード
の実ストローク数を演算し、表示手段5に実ストローク
数の演算データを出力する。
ブ7によりオービタルボジショ7を切り換え、スイッチ
8をオンするとブレードは最適なストローク数で動作す
る。マイコン15は回転数検出器20の信号を入力し、
電動機13の回転が減速機構により減速されたブレード
の実ストローク数を演算し、表示手段5に実ストローク
数の演算データを出力する。
本発明によれば、作業条件を入力すれば最適作業条件が
わかるので、操作性が良く、高能率の作業を行なうこと
ができる。
わかるので、操作性が良く、高能率の作業を行なうこと
ができる。
第1図はオービタルポジションに対するブレードの運動
軌道図、第2図は本発明のジグソーの斜視図、第3図は
本発明の第1実施例の回路−1第4図は第1実施例の表
示手段と入力手段の詳細図、第5図は本発明の第1実施
例のフローチャート、第6図は本発明の第2実施例の回
路図、第7図は第2実施例の表示手段と入力手段の詳細
図、第8図は本発明の第2実施例のフローチャートであ
る。 図において1はハウジング、7はパネルクミ、5は表示
手段、6は入力手段、15け選択手段および演算手段の
マイコン、16は位相制御回路、20は回転数検出器、
21は回転数制御回路である。 特許出願人の名称 日立工機株式会社図面の浄書(内
容に変更なし) 才l凪 才2の オー3図 74図 5? l7図 イZ 才I図 手続補正書(方式) 特許庁長官殿 1 事件の表示 昭和58年特許願第037975号
2 発明の名称 ジ グ ソ − 3 補正をする者 連絡先 電話(勝田)0292−73−81114 補
正命令の日付 昭和58年 6月28日 以 上
軌道図、第2図は本発明のジグソーの斜視図、第3図は
本発明の第1実施例の回路−1第4図は第1実施例の表
示手段と入力手段の詳細図、第5図は本発明の第1実施
例のフローチャート、第6図は本発明の第2実施例の回
路図、第7図は第2実施例の表示手段と入力手段の詳細
図、第8図は本発明の第2実施例のフローチャートであ
る。 図において1はハウジング、7はパネルクミ、5は表示
手段、6は入力手段、15け選択手段および演算手段の
マイコン、16は位相制御回路、20は回転数検出器、
21は回転数制御回路である。 特許出願人の名称 日立工機株式会社図面の浄書(内
容に変更なし) 才l凪 才2の オー3図 74図 5? l7図 イZ 才I図 手続補正書(方式) 特許庁長官殿 1 事件の表示 昭和58年特許願第037975号
2 発明の名称 ジ グ ソ − 3 補正をする者 連絡先 電話(勝田)0292−73−81114 補
正命令の日付 昭和58年 6月28日 以 上
Claims (1)
- 【特許請求の範囲】 1、被切断材料、仕上り、切り方および板厚等の作業条
件を入力する入力手段、該人力手段からの入力データに
基づき最適ブレード、最適オービタルポジション、最適
ストローク数および注油の有無等の最適作業条件を選択
する選択手段を備えたジグソー。 2 入力手段がキーボードからなる特許請求範囲第1項
記載のジグソー。 3、入力手段により入力する作業条件と選択手段によ妙
選択される最適作業条件を表示する表示手段を備えた特
許請求範囲第1項または第2項記載のジグソー。 ζ マニュアルでストローク数を調整できる位相制御回
路を備えた特許請求範囲第3項記載のジグソー。 5、 選択手段の最適ストローク数データをもとに自動
的に最適ストローク数制御をする回転数制御回路を備え
た特許請求範囲第1項、第2項または第3項記載のジグ
ソー。 6、 モータの回転数を表わす信号を発生する回転数検
出器、該回転数検出器の信号をカウントし、ブレードの
実ストローク数を演算する演算手段、該演算手段で演算
された実ストローク数を表示する表示手段を備えた特許
請求範囲第5項記載のジグソー。 7、トリガスイッチがオフ時はブレード番号を表示し、
オン時はブレードの実ストローク数を表示する表示手段
を備えた特許請求範囲第6項記載のジグソー。 & トリガスイッチがオフ時は板厚を表示し、オン時は
ブレードの実ストローク数を表示する表示手段を備えた
特許請求範囲第6項記載のジグソー。 9、入力手段と表示手段からなるパネルクミをハウジン
グの上方に配置した特許請求範囲第3項〜第8項記載の
ジグソー。
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP58037975A JPS59163608A (ja) | 1983-03-08 | 1983-03-08 | ジグソ− |
DE19843408189 DE3408189A1 (de) | 1983-03-08 | 1984-03-06 | Schaltungsanordnung fuer eine stichsaege |
US06/586,925 US4628459A (en) | 1983-03-08 | 1984-03-07 | Computerized circuit arrangement for jig saw |
CH113584A CH663559A5 (de) | 1983-03-08 | 1984-03-07 | Schaltungsanordnung fuer eine elektrische wippsaege. |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP58037975A JPS59163608A (ja) | 1983-03-08 | 1983-03-08 | ジグソ− |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS59163608A true JPS59163608A (ja) | 1984-09-14 |
Family
ID=12512565
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP58037975A Pending JPS59163608A (ja) | 1983-03-08 | 1983-03-08 | ジグソ− |
Country Status (2)
Country | Link |
---|---|
US (1) | US4628459A (ja) |
JP (1) | JPS59163608A (ja) |
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DE2613092A1 (de) * | 1975-04-25 | 1976-11-04 | Milwaukee Electric Tool Corp | Motorsaege |
JPS54121480A (en) * | 1978-03-13 | 1979-09-20 | Nippon Kokan Kk <Nkk> | Control of steel tube cutting |
DE3111275A1 (de) * | 1980-05-12 | 1982-04-29 | Gerber Garment Technology, Inc., 06074 South Windsor, Conn. | "verfahren und vorrichtung zum schneiden von flachmaterial" |
JPS57138520A (en) * | 1981-02-18 | 1982-08-26 | Amada Co Ltd | Controlling method and device for infeed speed in band saw machine |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US10391599B2 (en) | 2013-07-30 | 2019-08-27 | Koki Holdings Co., Ltd. | Electric power tool |
Also Published As
Publication number | Publication date |
---|---|
US4628459A (en) | 1986-12-09 |
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