JPS61152353A - Automatic centering device - Google Patents

Automatic centering device

Info

Publication number
JPS61152353A
JPS61152353A JP28051584A JP28051584A JPS61152353A JP S61152353 A JPS61152353 A JP S61152353A JP 28051584 A JP28051584 A JP 28051584A JP 28051584 A JP28051584 A JP 28051584A JP S61152353 A JPS61152353 A JP S61152353A
Authority
JP
Japan
Prior art keywords
turntable
workpiece
center
slide block
detector
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.)
Granted
Application number
JP28051584A
Other languages
Japanese (ja)
Other versions
JPH0132587B2 (en
Inventor
Manabu Okada
学 岡田
Koichi Okada
浩一 岡田
Takatoshi Asakura
浅倉 孝寿
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.)
NTN Corp
Original Assignee
NTN Toyo Bearing Co 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 NTN Toyo Bearing Co Ltd filed Critical NTN Toyo Bearing Co Ltd
Priority to JP28051584A priority Critical patent/JPS61152353A/en
Publication of JPS61152353A publication Critical patent/JPS61152353A/en
Publication of JPH0132587B2 publication Critical patent/JPH0132587B2/ja
Granted legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q17/00Arrangements for observing, indicating or measuring on machine tools
    • B23Q17/22Arrangements for observing, indicating or measuring on machine tools for indicating or measuring existing or desired position of tool or work
    • B23Q17/2291Arrangements for observing, indicating or measuring on machine tools for indicating or measuring existing or desired position of tool or work for adjusting the workpiece relative to the holder thereof
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q3/00Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
    • B23Q3/18Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine for positioning only
    • B23Q3/183Centering devices

Abstract

PURPOSE:To enable automatic centering by moving and controlling a workpiece pressing device, according to the displacement of an off-center detecting device in contact with the workpiece rotating with the turntable of the centering device where an optical disc, etc. are centered about the central part of the turntable. CONSTITUTION:A round workpiece W placed on a turntable 1 is rotated therewith and a slide block 3 is made to move in the radial direction of the turntable 1 by a motor 6 so that the bearing 12 of an off-center detecting device 10 will come in contact with the workpiece W, thereby causing the vibration of the said device 10 about a pin 9, depending upon the displacement of the workpiece W and the turntable 1. The extent of the vibration is detected by a displacement detecting device 14 and the motor 6 is actuated for advancing the slide block 3. Then, the contact point a is pressed by a spring 16 and the center O2 of the workpiece W is correctively made to shift toward the center O1 of the turntable 1. The positional detection and correction are so repeated for the proper centering of the workpiece W. By the foregoing constitution of mechanism, it becomes possible to ensure automatic centering of high precision.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 この発明は、ターンテーブル上に載置した光ディスク等
のディスクを上記ターンテーブルの回転中心に一致させ
る自動芯出し装置に関するものである。
DETAILED DESCRIPTION OF THE INVENTION [Field of Industrial Application] The present invention relates to an automatic centering device that aligns a disc such as an optical disc placed on a turntable with the center of rotation of the turntable.

〔従来の技術〕[Conventional technology]

光ディスクのガイドトラックや磁気ディスクのサーボト
ラック等は、ディスクの外径と同志であることが望まし
い。この要求を満足させるには。
It is desirable that the guide track of an optical disk, the servo track of a magnetic disk, etc. be the same as the outer diameter of the disk. To satisfy this request.

情報の記録時においてディスクを支持するターンテーブ
ルの回転中心にディスクの外径中心を一致させる必要が
ある。
When recording information, it is necessary to align the center of the outer diameter of the disk with the center of rotation of a turntable that supports the disk.

ターンテーブルとディスク(以下円形ワークと呼称する
)の芯出し方法には、ワーク中央に外径と同志に孔を形
成し、ターンテーブル側には回転中心と同志に円形の突
起を設け、その突起と孔のはめ合いによって円形ワーク
を位置決めする方法が従来から存在する。
To center the turntable and disc (hereinafter referred to as a circular workpiece), a hole is formed in the center of the workpiece on the same axis as the outer diameter, and a circular protrusion is provided on the turntable side on the same axis as the center of rotation. There has been a conventional method of positioning a circular workpiece by fitting a hole into a hole.

しかし、孔なしワークの場合、上記のような機械的な位
置決め方法を採用することができない。
However, in the case of a workpiece without a hole, the above mechanical positioning method cannot be adopted.

この場合の芯出しには、ターンテーブル上に円形ワーク
を載置したのち、ターンテーブルを回転し、円形ワーク
の外径の芯振れを測定しなからハンマ等でワーク位置を
修正する方法か採られている。
In this case, centering can be done by placing a circular workpiece on a turntable, rotating the turntable, measuring the center runout of the outer diameter of the circular workpiece, and then correcting the workpiece position with a hammer or the like. It is being

[発明が解決しようとする間領点] 上記のような人手による芯出しは、円形ワークの外径を
直接測定しながらの調整であるため、精度がでる反面、
高度な技術と熟練を必要とし、手間と相当の時間を要す
るという不都合がある。
[Interval points to be solved by the invention] Manual centering as described above is accurate while directly measuring the outer diameter of the circular workpiece, but on the other hand,
This method requires advanced technology and skill, and is disadvantageous in that it requires a lot of effort and time.

そこで、この発明は上記の不都合を解消し、円形ワーク
の芯出し作業の自動化を図り、精度の高い芯出しが行な
えるようにすることを技術的課題としている。
Therefore, the technical object of the present invention is to eliminate the above-mentioned disadvantages, automate the centering work of circular workpieces, and enable highly accurate centering.

〔間額点を解決するための手段〕[Means to resolve the issue]

上記の課電を解決するために、この発明は、円形ワーク
を載置可能なターンテーブルの径方向にスライドブロッ
クを移動させる駆動装置を設け、上記スライドブロック
には、このスライドブロックと同方向に移動可能に支持
され、スプリングによって設定位置に戻される芯振れ検
出体と、この芯振れ検出体の変位量を検出する変位量検
出器と。
In order to solve the above-mentioned electrification problem, the present invention is provided with a drive device that moves a slide block in the radial direction of a turntable on which a circular workpiece can be placed, and the slide block is provided with a drive device that moves a slide block in the same direction as the slide block. A runout detector that is movably supported and returned to a set position by a spring, and a displacement detector that detects the amount of displacement of the runout detector.

その検出信号に基づいて前記駆動装置を制御する制御装
置と、上記スライドブロックに固定されたワーク押圧子
とをそれぞれ設け、上記ワーク押圧子のワーク押圧位置
と設定位置に戻された芯振れ検出体の検出位置を上記タ
ーンテーブルの回転軸芯を中心とする同一円周上もしく
はその近傍に配置した構成としたものである。
A control device that controls the drive device based on the detection signal, and a workpiece presser fixed to the slide block are respectively provided, and the workpiece presser is returned to the workpiece pressing position and the center runout detector is returned to the set position. The detection positions of the turntable are arranged on the same circumference centered on the rotational axis of the turntable or in the vicinity thereof.

〔作用〕[Effect]

上記の構成から成る芯出し装置を用いて、ターンテーブ
ル上に載置した円形ワークの芯出し作業を行なうには、
まず、ターンテーブルと共に円形ワークを一方向に回転
し、その回転する円形ワークの径方向にスライドブロッ
クを移動し、ワーク外周の押圧によって移動する芯振れ
検出体と、その検出体の変位量を検出する検出器とによ
ってワーク外周の芯振れを検出し、同時にワーク押圧子
がワーク外周をターンテーブルの回転中心に向けて押す
作用(ワーク押圧子とワークとの接触点と、ターンテー
ブルの回転軸心とを結ぶ線上に作用する力)により円形
ワークの芯出しを行ない、上記検出器から出力される検
出信号が設定振幅値に達するまでスライドブロックを円
形ワークの径方向に移動させる。そして検出器からの出
力信号が設定振幅値に達したとき、制御装置からの信号
により駆動装置を逆転し1円形ワークの外周から離れる
方向にスライドブロックを移動させるものである。
To center a circular workpiece placed on a turntable using the centering device configured as described above,
First, a circular workpiece is rotated in one direction with a turntable, a slide block is moved in the radial direction of the rotating circular workpiece, and a center runout detection body that moves due to pressure on the workpiece's outer circumference and the amount of displacement of the detection body are detected. At the same time, the workpiece pusher pushes the workpiece outer circumference toward the center of rotation of the turntable (the contact point between the workpiece pusher and the workpiece and the center of rotation of the turntable). The circular work is centered by the force acting on the line connecting the two, and the slide block is moved in the radial direction of the circular work until the detection signal output from the detector reaches the set amplitude value. When the output signal from the detector reaches a set amplitude value, the drive device is reversed by a signal from the control device to move the slide block in a direction away from the outer periphery of the circular workpiece.

〔実施例〕〔Example〕

以下、この発明の実施例を添付図面に基づいて説明する
Embodiments of the present invention will be described below with reference to the accompanying drawings.

第1図に示すように、ターンテーブル1の外側方には、
ブロック支持台2が配置され、そのブロック支持台2上
に支持されたスライドブロック3は、上記ターンテーブ
ル1の径方向に向けて移動可能になっている。
As shown in FIG. 1, on the outside of the turntable 1,
A block support stand 2 is arranged, and the slide block 3 supported on the block support stand 2 is movable in the radial direction of the turntable 1.

上記スライドブロック3の背部にはねじ孔4が形成され
、そのねじ孔4にねじ係合したねじ棒5は、ブロック支
持台2に支持されたモータ6の回転軸7に接続され、上
記モータ6を駆動すると。
A screw hole 4 is formed in the back of the slide block 3, and a screw rod 5 screwed into the screw hole 4 is connected to a rotating shaft 7 of a motor 6 supported on the block support base 2. When you drive.

スライドブロック3がターンテーブル1の径方向に移動
する。
The slide block 3 moves in the radial direction of the turntable 1.

また、スライドブロック3の前部には、ピン9が設けら
れ、そのピン9に芯振れ検出体10の一端が回動可能に
支持されている。この芯振れ検出体10の他端には突軸
11が設けられ、その突軸11の先端には、ターンテー
ブル1上に載置された円形ワークWの外周に対して接触
可能なベアリング12が回動可能に支持されている。
Further, a pin 9 is provided at the front portion of the slide block 3, and one end of the center runout detector 10 is rotatably supported by the pin 9. A protruding shaft 11 is provided at the other end of this center runout detector 10, and a bearing 12 that can come into contact with the outer periphery of a circular workpiece W placed on the turntable 1 is provided at the tip of the protruding shaft 11. Rotatably supported.

上記の芯振れ検出体10は、ターンテーブル1と共に回
転する円形ワークWの外周の芯振れによってピン9を中
心に後方に回動し、スライドブロック3との間に設けた
スプリング13によって設定位置に戻される。このスプ
リング13の弾力はきわめて小さく、円形ワークWを動
かさない程度の弾力になっている。
The above-described center runout detector 10 is rotated rearward about the pin 9 due to center runout on the outer periphery of the circular workpiece W rotating together with the turntable 1, and is held at a set position by a spring 13 provided between it and the slide block 3. be returned. The elasticity of this spring 13 is extremely small, and has enough elasticity to not move the circular workpiece W.

また、芯振れ検出体10の他端の移動量は、スライドブ
ロック3に支持された変位量検出器14゛によって検出
される。ここで、変位量検出器14は渦電流損を利用し
た非接触形のものが使用され。
Further, the amount of movement of the other end of the center runout detector 10 is detected by a displacement amount detector 14' supported by the slide block 3. Here, the displacement detector 14 is a non-contact type that utilizes eddy current loss.

この検出器14からの検出信号は、制御装置17に入力
され、その制御装置17からの出力信号によって前記モ
ータ6の運転が制御される。
The detection signal from the detector 14 is input to a control device 17, and the operation of the motor 6 is controlled by the output signal from the control device 17.

なお、芯振れ検出体1oの支持方法は図示例に限定され
ず、スライドブロック3と同方向に移動可能に支持して
もよい。
Note that the method of supporting the center runout detector 1o is not limited to the illustrated example, and may be supported so as to be movable in the same direction as the slide block 3.

ざらに、前記スライドブロック3の前部には、ワーク押
圧用の押圧子15が設けられ、その押圧子15の先端に
ベアリング16が回転可能に支持されている。このベア
リング16のワークWを押圧する位置と設定位置に戻さ
れた芯振れ検出体10のベアリング12が円形ワークW
の外周によって押される位置は、ターンテーブル1の軸
芯を中心とする同一円周上もしくはその近傍に配置され
ている。
Roughly speaking, a presser 15 for pressing a workpiece is provided at the front of the slide block 3, and a bearing 16 is rotatably supported at the tip of the presser 15. The position where this bearing 16 presses the workpiece W and the bearing 12 of the center runout detector 10 returned to the set position are the circular workpiece W.
The positions pushed by the outer periphery of the turntable 1 are arranged on the same circumference centered on the axis of the turntable 1 or in the vicinity thereof.

実施例の場合、芯振れ検出体10のベアリング12のワ
ーク接触位置は、押圧子15のベアリング16のワーク
抑圧位置よりターンテーブル1の軸芯側に位置している
In the case of the embodiment, the workpiece contact position of the bearing 12 of the core runout detector 10 is located closer to the axis of the turntable 1 than the workpiece suppression position of the bearing 16 of the presser 15 .

いま、ターンテーブル1上に円形ワークWを単に載置す
ると、円形ワークWの中心とターンテーブル1の回転中
心とが(出熱に一致する場合があるが、殆んどの場合、
円形ワークWの中心はターンテーブル1の回転中心に対
して偏心する。その偏心した支持状態において、ターン
テーブル1の回転中心O1と円形ワークWの中心02を
結ぶ直線lが円形ワークWの外周と交わる二つの交点の
うち。
Now, if the circular workpiece W is simply placed on the turntable 1, the center of the circular workpiece W and the rotation center of the turntable 1 may coincide with the heat output, but in most cases,
The center of the circular workpiece W is eccentric with respect to the rotation center of the turntable 1. In the eccentrically supported state, one of the two intersections where the straight line l connecting the rotation center O1 of the turntable 1 and the center 02 of the circular workpiece W intersects with the outer periphery of the circular workpiece W.

一方の交点を突出点aとすると、その突出点aはターン
テーブル1の中心から最も離れた位置にあり、ターンテ
ーブル1の回転時において突出点aはターンテーブル1
の中心までの距離(第1図中O1a  の距離)を半径
として円運動する。
If one of the intersection points is a protruding point a, the protruding point a is at the farthest position from the center of the turntable 1, and when the turntable 1 is rotating, the protruding point a is
It moves in a circle with the distance to the center of (the distance O1a in FIG. 1) as the radius.

ターンテーブル1上に載置された円形ワークWが偏心す
る状態において、ターンテーブル1を回転し、それより
、モータ6を駆動してスライドブロック3をターンテー
ブル1の径方向に移動させると、円形ワークWの上記突
出点aが芯振れ検出体10のベアリング12と接触し始
め5、その接触によってピン9を中心に芯振れ検出体1
Qが回動し、芯振れ検出体1oの他端の移動量が変位量
検出器14によって検出される。また、突出点aは次に
押圧子15のベアリング16と接触するため、円形ワー
クWは上記ベアリング16によって押され、その押圧に
よって円形ワークWはその中心02  がターンテーブ
ル1の中心O1に向けて移動する。
When the circular workpiece W placed on the turntable 1 is eccentric, when the turntable 1 is rotated and the motor 6 is driven to move the slide block 3 in the radial direction of the turntable 1, it becomes circular. The protruding point a of the workpiece W begins to come into contact with the bearing 12 of the runout detector 10 5, and due to this contact, the runout detector 1 moves around the pin 9.
Q rotates, and the displacement amount detector 14 detects the amount of movement of the other end of the center runout detector 1o. Further, since the protruding point a next comes into contact with the bearing 16 of the presser 15, the circular workpiece W is pushed by the bearing 16, and due to the pressure, the circular workpiece W is moved so that its center 02 is directed toward the center O1 of the turntable 1. Moving.

円形ワークWの位置の修正が行なわれ、その円形ワーク
Wの中心02 とターンテーブル1の中心01とが一致
すると、芯振れ検出体10はきわめて小さな回動を繰り
返し、そのときの変位量検出器14からの検出振幅信号
によってモータ6が逆転に切り換わり、スライドブロッ
ク3を円形ワークWの外周から離れる方向に移動させる
。これによって円形ワークWの芯出し作業が完了する。
When the position of the circular workpiece W is corrected and the center 02 of the circular workpiece W matches the center 01 of the turntable 1, the center runout detector 10 repeats extremely small rotations, and the displacement detector at that time The detected amplitude signal from 14 switches the motor 6 to reverse rotation, and moves the slide block 3 in a direction away from the outer periphery of the circular workpiece W. This completes the centering work of the circular workpiece W.

上記のような芯出し作業は、ロータリエンコーダでター
ンテーブル1の回転数(回転角)を検出し、その1回転
信号を制御装置17に入力してセンサ14から入力され
る振れ信号と演算し、振れ信号を出力するようにする。
The above-mentioned centering work is performed by detecting the rotation speed (rotation angle) of the turntable 1 with a rotary encoder, inputting the one rotation signal to the control device 17, and calculating it with the runout signal input from the sensor 14. Output the runout signal.

第2図は制御装置17から出力される波形を示し、A点
は円形ワークWの突出点3が芯振れ検出体10のベアリ
ング12と接触し始めた位置を示す。
FIG. 2 shows a waveform output from the control device 17, and point A indicates the position where the protruding point 3 of the circular workpiece W starts to come into contact with the bearing 12 of the center runout detector 10.

実施例においては、スライドブロック3の送り速度変更
位置電圧を設定し、検出器14から出力される電圧がそ
の変更位置電圧に達すると、モータ6の回転速度を下げ
てスライドブロック3を低速送りするようにしである。
In the embodiment, the feed speed change position voltage of the slide block 3 is set, and when the voltage output from the detector 14 reaches the change position voltage, the rotation speed of the motor 6 is lowered to feed the slide block 3 at a low speed. That's how it is.

また、円形ワークWの芯振れが修正され、検出器14か
らの出力電圧が設定値以下の振れまわりになった0点で
モータ14を逆転させるようにしである。
Further, the center runout of the circular workpiece W is corrected and the motor 14 is rotated in reverse at the 0 point where the output voltage from the detector 14 becomes a runout below a set value.

なお、検出器14からの出力にターンテーブル回転数周
波数のバンドパスフィルタを入れておけば、円形ワーク
Wの外周の面粗さ、外周の真円度、歪みなどによる悪影
響を除去することができ、またワーク径の違いからくる
曲率の違いによる設定検出信号に対する直流分の影響を
なくすことができる。
Note that if a bandpass filter for the turntable rotation speed frequency is inserted into the output from the detector 14, it is possible to remove the adverse effects caused by the surface roughness of the outer periphery of the circular workpiece W, the roundness of the outer periphery, distortion, etc. Furthermore, it is possible to eliminate the influence of the DC component on the setting detection signal due to the difference in curvature caused by the difference in workpiece diameter.

〔効果〕〔effect〕

以上のように、この発明によれば、円形ワーク゛を支持
するターンテーブルを一方向に回動し、その状態におい
てスライドブロックをターンテーブルの径方向に移動さ
せる簡単な作用によって円形ワークを自動的に芯出しす
ることができると共に。
As described above, according to the present invention, the circular workpiece is automatically moved by rotating the turntable supporting the circular workpiece in one direction and moving the slide block in the radial direction of the turntable in this state. Along with being able to center.

円形ワークの外周の芯振れを検出しながら芯出し作業を
行なうため1円形ワークを精度よく、し、かも短時間に
芯出しすることができる。
Since centering work is performed while detecting center runout on the outer periphery of a circular workpiece, a single circular workpiece can be centered accurately and in a short time.

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

第1図は、この発明に係る芯出し装置の一実施例を示す
平面図、第2図は同上装置の検出器から出力される電圧
波形を示すグラフである。 1・・・ターンテーブル、3・・・スライドブロック、
4・・・ねじ孔、5・・・ねじ棒、6・・・モータ、1
0・・・芯振れ検出体、13・・・スプリング、14・
・・変位量検出器、15・・・押圧子 エヌ・チーーエヌ
FIG. 1 is a plan view showing an embodiment of a centering device according to the present invention, and FIG. 2 is a graph showing a voltage waveform output from a detector of the same device. 1... Turntable, 3... Slide block,
4...Threaded hole, 5...Threaded rod, 6...Motor, 1
0... Core runout detection body, 13... Spring, 14.
...Displacement amount detector, 15...Press element NCHN

Claims (1)

【特許請求の範囲】[Claims] 円形ワークを載置可能なターンテーブルと、そのターン
テーブルの径方向に移動可能なスライドブロックと、そ
のスライドブロックをターンテーブルの径方向に移動さ
せる駆動装置とから成り、前記スライドブロックには、
このスライドブロックと同方向に移動可能に支持され、
スプリングによって設定位置に戻される芯振れ検出体と
、この芯振れ検出体の変位量を検出し、その検出信号に
基づいて前記駆動装置を制御する変位量検出器と、上記
スライドブロックに固定されたワーク押圧子とをそれぞ
れ設け、上記押圧子のワーク押圧位置と設定位置に戻さ
れた芯振れ検出体の検出位置を上記ターンテーブルの回
転軸芯を中心とする同一円周上もしくはその近傍に配置
した自動芯出し装置。
It consists of a turntable on which a circular work can be placed, a slide block that is movable in the radial direction of the turntable, and a drive device that moves the slide block in the radial direction of the turntable, and the slide block includes:
It is supported so that it can move in the same direction as this slide block,
A runout detector that is returned to a set position by a spring, a displacement detector that detects the amount of displacement of the runout detector and controls the drive device based on the detection signal, and a displacement detector that is fixed to the slide block. A workpiece presser is provided, and the workpiece pressing position of the presser and the detection position of the runout detector returned to the set position are arranged on the same circumference centered on the rotation axis of the turntable or in the vicinity thereof. automatic centering device.
JP28051584A 1984-12-24 1984-12-24 Automatic centering device Granted JPS61152353A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP28051584A JPS61152353A (en) 1984-12-24 1984-12-24 Automatic centering device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP28051584A JPS61152353A (en) 1984-12-24 1984-12-24 Automatic centering device

Publications (2)

Publication Number Publication Date
JPS61152353A true JPS61152353A (en) 1986-07-11
JPH0132587B2 JPH0132587B2 (en) 1989-07-06

Family

ID=17626172

Family Applications (1)

Application Number Title Priority Date Filing Date
JP28051584A Granted JPS61152353A (en) 1984-12-24 1984-12-24 Automatic centering device

Country Status (1)

Country Link
JP (1) JPS61152353A (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0350799A2 (en) * 1988-07-13 1990-01-17 Bryant Grinder Corporation Automatic workpart centering mechanism for a chuck
WO1999028080A1 (en) * 1997-12-02 1999-06-10 Kaspar Walter Gmbh & Co. Kg Maschinenfabrik Device and method for correcting radial run-outs
US6754971B1 (en) * 1998-07-25 2004-06-29 Fa. Oskar Braunsberger Centering device for flat components, especially glass panels
EP3427894A1 (en) * 2017-07-10 2019-01-16 Supfina Grieshaber GmbH & Co. KG Workpiece centring device and method for centring a work piece to be finished
JP7036299B1 (en) * 2020-10-21 2022-03-15 日本精工株式会社 Centering tool, centering device, machine tool, circular work centering method, circular work manufacturing method, ring member manufacturing method, bearing manufacturing method, machine manufacturing method, vehicle manufacturing method, and program.
WO2022085744A1 (en) * 2020-10-21 2022-04-28 日本精工株式会社 Centering tool, centering device, machine tool, method of centering circular workpiece, circular workpiece manufacturing method, ring member manufacturing method, bearing manufacturing method, machine manufacturing method, vehicle manufacturing method, and program

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5963061A (en) * 1982-09-30 1984-04-10 Matsushita Electric Ind Co Ltd Rotation driving device of disk-like recording medium

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5963061A (en) * 1982-09-30 1984-04-10 Matsushita Electric Ind Co Ltd Rotation driving device of disk-like recording medium

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0350799A2 (en) * 1988-07-13 1990-01-17 Bryant Grinder Corporation Automatic workpart centering mechanism for a chuck
EP0350799A3 (en) * 1988-07-13 1991-07-24 Bryant Grinder Corporation Automatic workpart centering mechanism for a chuck
WO1999028080A1 (en) * 1997-12-02 1999-06-10 Kaspar Walter Gmbh & Co. Kg Maschinenfabrik Device and method for correcting radial run-outs
US6754971B1 (en) * 1998-07-25 2004-06-29 Fa. Oskar Braunsberger Centering device for flat components, especially glass panels
EP3427894A1 (en) * 2017-07-10 2019-01-16 Supfina Grieshaber GmbH & Co. KG Workpiece centring device and method for centring a work piece to be finished
JP7036299B1 (en) * 2020-10-21 2022-03-15 日本精工株式会社 Centering tool, centering device, machine tool, circular work centering method, circular work manufacturing method, ring member manufacturing method, bearing manufacturing method, machine manufacturing method, vehicle manufacturing method, and program.
WO2022085744A1 (en) * 2020-10-21 2022-04-28 日本精工株式会社 Centering tool, centering device, machine tool, method of centering circular workpiece, circular workpiece manufacturing method, ring member manufacturing method, bearing manufacturing method, machine manufacturing method, vehicle manufacturing method, and program

Also Published As

Publication number Publication date
JPH0132587B2 (en) 1989-07-06

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