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JP7398096B2 - How to modify the grinding surface of a rotary whetstone - Google Patents

How to modify the grinding surface of a rotary whetstone Download PDF

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JP7398096B2
JP7398096B2 JP2019234357A JP2019234357A JP7398096B2 JP 7398096 B2 JP7398096 B2 JP 7398096B2 JP 2019234357 A JP2019234357 A JP 2019234357A JP 2019234357 A JP2019234357 A JP 2019234357A JP 7398096 B2 JP7398096 B2 JP 7398096B2
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correction
rotary
grinding surface
rotary grindstone
grinding
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JP2021102248A (en
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幸泰 長瀬
武志 板津
一人 渡辺
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Nagase Integrex Co Ltd
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Description

本発明は、ツルーイングを行うための研削面修正装置によってドレッシングを行うことができる回転砥石の研削面修正方法に関するものである。 The present invention relates to a method for modifying a grinding surface of a rotary grindstone in which dressing can be performed using a grinding surface modification device for performing truing.

特許文献1には、回転砥石の近傍に、ツルーイング装置とドレッシング装置がそれぞれ装備された研削装置が開示されている。つまり、この研削装置においては、回転砥石に対するツルーイングとドレッシングとが異なる装置によって行われる。 Patent Document 1 discloses a grinding device that is equipped with a truing device and a dressing device, respectively, in the vicinity of a rotating grindstone. That is, in this grinding device, truing and dressing of the rotary grindstone are performed by different devices.

特開平2-237768号公報Japanese Patent Application Publication No. 2-237768

特許文献1の研削装置においては、ツルーイングとドレッシングとをそれぞれツルーイング装置及びドレッシング装置によって個々に行うようになっているため、ツルーイングとドレッシングとの2つの作業を連続して行う場合、両作業間のタイムラグのためにトータルの時間がかかる問題がある。また、ツルーイング装置及びドレッシング装置を個別に設ける必要があるため、研削装置の大型化と構造の複雑化を招くものである。 In the grinding device of Patent Document 1, truing and dressing are performed individually by the truing device and the dressing device, respectively, so when the two operations of truing and dressing are performed consecutively, the time between the two operations is There is a problem in that it takes a total amount of time due to the time lag. Furthermore, since it is necessary to separately provide a truing device and a dressing device, the grinding device becomes larger and has a more complicated structure.

本発明の目的は、ツルーングを可能にした装置によって回転砥石のドレッシングを行い得る回転砥石の研削面修正方法を提供することにある。 SUMMARY OF THE INVENTION An object of the present invention is to provide a method for modifying the grinding surface of a rotary grindstone in which dressing of the rotary grindstone can be performed using a device that enables truning.

上記の目的を達成するために、本発明においては、外周面を研削面とした回転砥石の研削面を修正する回転砥石の研削面修正方法において、平行な一軸線を中心に同方向に回転されるとともに、前記軸線と直交する修正作用面を有する隣接状態の複数の回転修正体を用い、前記回転砥石を前記複数の回転修正体の回転中心を通る直線に沿って複数の回転修正体を跨いで回転修正体の径方向に移動させることにより、回転砥石の前記研削面をドレッシングすることを特徴とする。 In order to achieve the above object, the present invention provides a method for modifying the grinding surface of a rotary whetstone in which the grinding surface of a rotary whetstone is corrected by using the outer circumferential surface as the grinding surface. At the same time, using a plurality of adjacent rotary correction bodies having correction action surfaces perpendicular to the axis, the rotary grindstone is moved across the plurality of rotary correction bodies along a straight line passing through the rotation centers of the plurality of rotation correction bodies. The grinding surface of the rotary grindstone is dressed by moving the rotary correction body in the radial direction.

以上の方法によれば、ツルーイング可能にした回転修正体により、ドレッシングが行われるため、ツルーイング専用及びドレッシング専用の装置を設ける必要がなく、研削装置の大型化及び構造の複雑化を避けることができる。 According to the above method, since dressing is performed by the rotation correction body that enables truing, there is no need to provide dedicated equipment for truing and dressing, and it is possible to avoid increasing the size of the grinding equipment and complicating its structure. .

本発明によれば、単一の装置によってツルーイングとドレッシングとを行い得るという効果を発揮する。 According to the present invention, it is possible to perform truing and dressing with a single device.

研削盤の正面図。Front view of the grinding machine. 修正装置の斜視図。FIG. 3 is a perspective view of the correction device. 修正装置の動力関係を示す簡略図。A simplified diagram showing the power relationship of the correction device. 回転修正体を示す平面図。FIG. 3 is a plan view showing a rotation correction body. ツルーイング状態を示す平面図。A plan view showing a truing state. ドレッシング状態を示す平面図。A plan view showing a dressing state. 回転砥石の砥粒を示す簡略図。A simplified diagram showing abrasive grains of a rotating whetstone.

以下、本発明を具体化した実施形態を図面に基づいて説明する。
図1に示すように、研削盤11のベッド12の上面にはテーブル13がX軸方向に移動可能に支持されており、このテーブル13の上面にワーク100が支持される。ベッド12上にはコラム14がZ軸方向に移動可能に支持されており、このコラム14上には、Z軸方向に延びる軸線を中心に回転される回転砥石15がY軸方向(上下方向)に移動可能に支持されている。
DESCRIPTION OF EMBODIMENTS Hereinafter, embodiments embodying the present invention will be described based on the drawings.
As shown in FIG. 1, a table 13 is supported on the top surface of the bed 12 of the grinding machine 11 so as to be movable in the X-axis direction, and a workpiece 100 is supported on the top surface of this table 13. A column 14 is supported on the bed 12 so as to be movable in the Z-axis direction, and a rotary grindstone 15 that is rotated about an axis extending in the Z-axis direction is mounted on the column 14 in the Y-axis direction (vertical direction). movably supported.

修正装置21は以下のように構成されている。
図1,図2及び図4に示すように、修正装置21のケーシング22にはY軸と平行な軸24により回転可能に支持された一対のカップ状の砥石よりなる回転修正体23が近接配置されている。両回転修正体23の上面は同一平面内に位置しており、その上面が修正作用面231になっている。
The correction device 21 is configured as follows.
As shown in FIGS. 1, 2, and 4, a rotary correction body 23 consisting of a pair of cup-shaped grindstones rotatably supported by a shaft 24 parallel to the Y-axis is arranged close to the casing 22 of the correction device 21. has been done. The upper surfaces of both rotary correction bodies 23 are located in the same plane, and the upper surfaces serve as a correction action surface 231.

図3に示すように、ケーシング22にはモータ25が内装されている。そのモータ25の出力軸26上のスプロケット27と前記両軸24上のスプロケット28との間にはチェーン29が介装されていて、モータ25の駆動により、スプロケット27やチェーン29などを介して両回転修正体23が同時に同方向へ同速度で回転される。従って、図4から明らかなように、両回転修正体23の近接部においては、上方から見て、その両回転修正体23の回転方向が逆になる。 As shown in FIG. 3, a motor 25 is installed inside the casing 22. A chain 29 is interposed between a sprocket 27 on the output shaft 26 of the motor 25 and a sprocket 28 on both shafts 24. The rotation correction body 23 is simultaneously rotated in the same direction and at the same speed. Therefore, as is clear from FIG. 4, in the vicinity of both rotation correction bodies 23, the rotation directions of both rotation correction bodies 23 are reversed when viewed from above.

修正装置21は、その底面にマグネット(図示しない)を有し、そのマグネットの磁気力によって修正装置21はテーブル13の上面に固着される。修正装置21の固着位置は任意であって、例えば、ワーク100の設置位置の後部が選ばれる。 The correction device 21 has a magnet (not shown) on its bottom surface, and the correction device 21 is fixed to the top surface of the table 13 by the magnetic force of the magnet. The fixing device 21 can be fixed at any arbitrary position, for example, the rear part of the installation position of the workpiece 100 is selected.

次に、本実施形態の砥石修正方法を説明する。
図5はツルーイング状態を示すものである。回転砥石15の外周面である研削面151のツルーイングに際しては、回転修正体23の軸方向の上方から見て、回転砥石15の軸が回転修正体23の径方向を指向するように配置される。この状態で、回転砥石15の研削面151の下端が回転修正体23の修正作用面231に対して回転修正体23の矢印で示す半径方向(矢印β方向)に沿って往復動される。すなわち、このツルーイングにおいては、モータ25の駆動により、回転修正体23がチェーン29などを介して同時に同方向へ同回転速度(10~6000rpm程度)で回転されるとともに、回転砥石15が回転される。このとき、回転砥石15の研削面151の下端の回転方向Pが、回転修正体23の修正作用面231の回転方向Qと同方向にされる。また、回転砥石15の研削面151の周速度が回転修正体23の修正作用面231の内径位置232の周速度と同速度とされる。
Next, the grindstone correction method of this embodiment will be explained.
FIG. 5 shows the truing state. When truing the grinding surface 151 which is the outer peripheral surface of the rotary grindstone 15, the axis of the rotary whetstone 15 is arranged so as to point in the radial direction of the rotation correction body 23 when viewed from above in the axial direction of the rotation correction body 23. . In this state, the lower end of the grinding surface 151 of the rotary grindstone 15 is reciprocated with respect to the correction working surface 231 of the rotary correction body 23 along the radial direction (arrow β direction) of the rotation correction body 23 shown by the arrow. That is, in this truing, by driving the motor 25, the rotation correction body 23 is simultaneously rotated in the same direction at the same rotation speed (about 10 to 6000 rpm) via the chain 29, etc., and the rotating grindstone 15 is also rotated. . At this time, the rotation direction P of the lower end of the grinding surface 151 of the rotary grindstone 15 is made to be the same direction as the rotation direction Q of the correction action surface 231 of the rotation correction body 23. Further, the circumferential speed of the grinding surface 151 of the rotary grindstone 15 is set to be the same as the circumferential speed of the inner diameter position 232 of the correction action surface 231 of the rotary correction body 23.

そして、回転砥石15の研削面151を一方の回転修正体23の修正作用面231に当てて、回転砥石15をその回転砥石15の軸方向に平行に、かつ回転修正体23の矢印βで示す半径方向に往復動作させる。このときの往復移動速度は、研削面151の周速度よりかなり遅い速度である。このようにすれば、回転修正体23の修正作用面231の内径位置232の部分を除いて研削面151と修正作用面231との間に僅かな速度差が生じる。このため、速度差が生じた部分において研削面151引き剥がされるようにして研削されて、その研削面151がツルーイングされる。 Then, the grinding surface 151 of the rotary grindstone 15 is applied to the correction action surface 231 of one of the rotation correction bodies 23, and the rotation grindstone 15 is parallel to the axial direction of the rotation correction body 23, as indicated by the arrow β of the rotation correction body 23. Reciprocate in the radial direction. The reciprocating speed at this time is considerably slower than the circumferential speed of the grinding surface 151. In this way, a slight speed difference is generated between the grinding surface 151 and the correction action surface 231 except for the inner diameter position 232 of the correction action surface 231 of the rotation correction body 23. Therefore, the grinding surface 151 is peeled off at the portion where the speed difference occurs, and the grinding surface 151 is trued.

一方の回転修正体23の修正作用面231において所定時間のツルーイングが行われた後は、他方の回転修正体23の修正作用面231において、前記と同様に、回転砥石15をその回転砥石15の軸方向に平行に、かつ回転修正体23の矢印で示す半径方向(矢印β方向)に往復動作させる。このようにして、ツルーイングが行われる。このため、回転砥石15の研削面151の形状が整えられる。 After truing has been performed for a predetermined period of time on the correction surface 231 of one rotary correction body 23, the rotary grindstone 15 is rotated on the correction surface 231 of the other rotation correction body 23 in the same manner as described above. It is caused to reciprocate in parallel to the axial direction and in the radial direction (direction of arrow β) shown by the arrow of the rotation correction body 23. In this way, truing is performed. Therefore, the shape of the grinding surface 151 of the rotary grindstone 15 is adjusted.

図6は回転砥石15のドレッシング状態を示すものである。回転砥石15の研削面151のドレッシングに際しては、回転砥石15と両回転修正体23の修正作用面231との位置関係を、図5に示すように、回転修正体23の回転中心αを通る直線Lと回転砥石15の幅方向中心線とを上下方向の一平面内に位置するように一致させる。この位置関係において、回転砥石15の研削面151の周速度(10~6000rpm程度)を回転修正体23の修正作用面231の内径位置232の周速度と一致させる。そして、この状態で、回転砥石15を前記両回転中心αを通る直線Lに沿って矢印γ方向に往復動作させる。この場合、回転砥石15の往復動速度は、前記周速度よりきわめて遅い速度である。なお、ドレッシングにおいては、回転砥石15と回転修正体23との間に多少の速度差(1:1.1~3程度)が生じてもよい。 FIG. 6 shows the dressing state of the rotary grindstone 15. When dressing the grinding surface 151 of the rotary whetstone 15, the positional relationship between the rotary whetstone 15 and the correction working surfaces 231 of both rotary correction bodies 23 is determined by a straight line passing through the center of rotation α of the rotary correction body 23, as shown in FIG. L and the center line in the width direction of the rotary grindstone 15 are aligned so that they are located within one plane in the vertical direction. In this positional relationship, the circumferential speed (about 10 to 6000 rpm) of the grinding surface 151 of the rotary grindstone 15 is made to match the circumferential speed of the inner diameter position 232 of the correction action surface 231 of the rotary correction body 23. In this state, the rotary grindstone 15 is reciprocated in the direction of the arrow γ along a straight line L passing through both the rotation centers α. In this case, the reciprocating speed of the rotary grindstone 15 is much slower than the circumferential speed. Note that during dressing, a slight speed difference (about 1:1.1 to 3) may occur between the rotary grindstone 15 and the rotary correction body 23.

このようにすれば、回転修正体23の修正作用面231により、回転砥石15の研削面151の砥粒結合材154が、図7に矢印Sで示すように研削面151の幅方向の両側から斜めに研削される。このため、砥粒152の回転方向前部側(図7の左側)及び両側の砥粒結合材154が削り取られる。このようにして、砥粒152の回転方向後ろ側に続く結合材154の残留部153が存在した状態で、研削面151の砥粒152が突出されるように研削面151の目立てが行われる。このようにして、回転砥石15のドレッシングが行われる。 In this way, the abrasive bonding material 154 of the grinding surface 151 of the rotary grindstone 15 is moved from both sides of the grinding surface 151 in the width direction by the correction action surface 231 of the rotation correction body 23, as shown by the arrow S in FIG. Grinded diagonally. Therefore, the abrasive bonding material 154 on the front side (left side in FIG. 7) and both sides of the abrasive grain 152 in the rotational direction is scraped off. In this way, the grinding surface 151 is sharpened so that the abrasive grains 152 on the grinding surface 151 are protruded while the residual portion 153 of the bonding material 154 continues on the rear side in the rotational direction of the abrasive grains 152. In this way, dressing of the rotating grindstone 15 is performed.

本実施形態においては、以下の効果がある。
(1)一対の回転修正体23により、回転砥石15のツルーイングとドレッシングとを行うことができる。このため、従来の研削装置とは異なり、ツルーイング専用の装置及びドレッシング専用の装置が不要になる。従って、研削装置の構成が簡単になるとともに、小型化が可能になる。
This embodiment has the following effects.
(1) The pair of rotation correction bodies 23 can perform truing and dressing of the rotary grindstone 15. Therefore, unlike conventional grinding equipment, a dedicated truing device and a dedicated dressing device are not required. Therefore, the configuration of the grinding device becomes simple and it becomes possible to reduce the size of the grinding device.

(2)一対の回転修正体23の修正作用面231における広い面積においてドレッシングが実行されるため、先鋭状のドレッサによってピンポイント的にドレッシングを行う場合と比較して、ドレッシングを短時間で効率よく行うことが可能になる。 (2) Since dressing is performed over a wide area of the correction action surfaces 231 of the pair of rotational correction bodies 23, dressing can be performed more efficiently in a shorter time than when dressing is performed pinpointly using a sharp-edged dresser. It becomes possible to do so.

(3)ツルーイングとドレッシングとを連続して行う場合、ツルーイング装置とドレッシング装置とが離隔して単独で装備されている研削盤と比較して、同じ位置において両作業を行うことができるため、両作業間のタイムラグを小さくできて、連続作業を能率よく行うことができる。 (3) When performing truing and dressing in succession, both operations can be performed at the same location, compared to a grinding machine that is equipped with separate truing and dressing devices. The time lag between tasks can be reduced and continuous tasks can be carried out efficiently.

(4)両回転修正体23において回転砥石15を往復させることにより、ドレッシングが行われるため、両回転修正体23が回転砥石15により均等に研削される。このため、両回転修正体23の修正作用面231の高さを一致させることができる。従って、このドレッシングに続いて、高精度なツルーイングを行うことが可能になる。 (4) Since dressing is performed by reciprocating the rotary grindstone 15 in both rotary correction bodies 23, both rotary correction bodies 23 are evenly ground by the rotary whetstone 15. Therefore, the heights of the correction action surfaces 231 of both rotary correction bodies 23 can be matched. Therefore, following this dressing, it becomes possible to perform highly accurate truing.

(5)ツルーイングにおいては、研削面151が回転修正体23との速度差によって引き剥がされるようにして研削されて、整形されるが、研削面151の面形状の粗さは必ずしも良いものとは言えないことがある。しかしながら、本実施形態においては、ツルーイングに続くドレッシングにおいて研削面151の両側から研削作用が加えられるため、研削面151の粗さが解消されて、ワーク100に対する高精度研削に寄与できる。 (5) In truing, the ground surface 151 is ground and shaped by being peeled off due to the speed difference with the rotation correction body 23, but the roughness of the surface shape of the ground surface 151 is not necessarily good. There are things I can't say. However, in this embodiment, since a grinding action is applied from both sides of the grinding surface 151 during dressing following truing, the roughness of the grinding surface 151 is eliminated, contributing to high precision grinding of the workpiece 100.

(変更例)
前記各実施形態は、以下のように変更して実施することができる。そして、各実施形態及び以下の変更例は、技術的に矛盾しない範囲で互いに組み合わせて実施することができる。
(Example of change)
Each of the embodiments described above can be modified and implemented as follows. Each embodiment and the following modification examples can be implemented in combination with each other within a technically consistent range.

・ツルーイング後やドレッシング後の回転砥石15の研削面151をカメラで撮影して画像を取得し、その画像とあらかじめ設定された基準画像と比較して、研削面151の状況を自動的に評価すること。そして、研削面151のツルーイングやドレッシングが所定にレベルに達したときに、ツルーイング及びドレッシングが終了されるようにすること。 - Obtain an image by photographing the grinding surface 151 of the rotary grindstone 15 after truing or dressing with a camera, and automatically evaluate the condition of the grinding surface 151 by comparing the image with a preset reference image. thing. Then, when the truing and dressing of the grinding surface 151 reach a predetermined level, the truing and dressing are finished.

・ワーク100の加工において、切削負荷や回転砥石15の研削面151の状態を検出して、ツルーイングの開始タイミングやドレッシングの開始タイミングを判別すること。 - In processing the workpiece 100, detecting the cutting load and the state of the grinding surface 151 of the rotary grindstone 15 to determine the timing to start truing and the timing to start dressing.

11…研削盤
15…回転砥石
21…修正装置
23…回転修正体
24…軸
151…研削面
231…修正作用面
232…内径位置
11... Grinding machine 15... Rotary grindstone 21... Correction device 23... Rotating correction body 24... Shaft 151... Grinding surface 231... Correction action surface 232... Inner diameter position

Claims (4)

外周面を研削面とした回転砥石の研削面を修正する回転砥石の研削面修正方法において、
平行な一軸線を中心に同方向に回転されるとともに、前記軸線と直交する修正作用面を有する隣接状態の複数の回転修正体を用い、前記回転砥石を前記複数の回転修正体の径方向に、かつ前記回転砥石の軸方向に移動させることにより、前記修正作用面によって前記研削面をツルーイングする方法と、前記回転砥石を前記複数の回転修正体の回転中心を通る直線に沿って複数の回転修正体を跨いで回転修正体の径方向に移動させることにより、回転砥石の前記研削面をドレッシングする方法と、を含む回転砥石の研削面修正方法。
In a method for modifying the grinding surface of a rotary whetstone that uses the outer peripheral surface as the grinding surface,
Using a plurality of adjacent rotary correction bodies that are rotated in the same direction around one parallel axis and have a correction surface perpendicular to the axis, the rotary grindstone is moved in the radial direction of the plurality of rotary correction bodies. , and a method of truing the grinding surface by the correction action surface by moving the rotary grindstone in the axial direction; A method for modifying a grinding surface of a rotary grindstone, comprising: dressing the grinding surface of the rotary grindstone by moving the rotary correction body in the radial direction across the correction body.
回転砥石の研削面の周速度と回転修正体の回転速度とを等しくする請求項1に記載の回転砥石の研削面修正方法。 The grinding surface correction method of a rotary grindstone according to claim 1, wherein the circumferential speed of the grinding surface of the rotary grindstone and the rotation speed of the rotation correction body are made equal. 回転砥石の研削面の周速度と回転修正体の修正作用面の内径位置の周速度とを等しくする請求項に記載の回転砥石の研削面修正方法。 3. The grinding surface correction method of a rotary grindstone according to claim 2 , wherein the circumferential speed of the grinding surface of the rotary grindstone is made equal to the circumferential speed of the inner diameter position of the correction working surface of the rotary correction body. 回転砥石を一対の回転修正体の平行な線上を移動させることによりツルーイングする請求項に記載の回転砥石の研削面修正方法。 2. The grinding surface correction method of a rotary grindstone according to claim 1 , wherein truing is carried out by moving the rotary grindstone on parallel lines of a pair of rotation correction bodies.
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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003117820A (en) 2001-10-11 2003-04-23 Nagase Integrex Co Ltd Truing device for grinding wheel
JP2010284776A (en) 2009-06-15 2010-12-24 Ntn Corp Grinding machine

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Publication number Priority date Publication date Assignee Title
JPS6427858A (en) * 1987-01-17 1989-01-30 Ota Keizo Dressing tooling method and device for super abrasive grain wheel
JPH0752009A (en) * 1993-08-19 1995-02-28 Nagase Integrex:Kk Rotary grinding machine

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003117820A (en) 2001-10-11 2003-04-23 Nagase Integrex Co Ltd Truing device for grinding wheel
JP2010284776A (en) 2009-06-15 2010-12-24 Ntn Corp Grinding machine

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