JP2008049405A - Removable device of rotary tool - Google Patents

Removable device of rotary tool Download PDF

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JP2008049405A
JP2008049405A JP2006224950A JP2006224950A JP2008049405A JP 2008049405 A JP2008049405 A JP 2008049405A JP 2006224950 A JP2006224950 A JP 2006224950A JP 2006224950 A JP2006224950 A JP 2006224950A JP 2008049405 A JP2008049405 A JP 2008049405A
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side holder
holding
axial direction
holding cylinder
tool
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JP4942424B2 (en
JP2008049405A5 (en
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Seiji Araki
誠次 荒木
Kazuo Murasawa
和夫 村沢
Masahiro Onda
正博 恩田
Yuukai Ogura
悠介 小倉
Haruhiko Abe
治彦 阿部
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Kuraki Co Ltd
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Kuraki Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a comparatively easy-to-constitute removable device of a rotary tool capable of easily and quickly detaching a honing tool from a spindle of a honing machine for example, for honing processing, while securing a required rotary accuracy. <P>SOLUTION: This device comprises a stationary side holder 1 fixed to a tip end of a spindle, and a detaching side holder 2 fixing a base end of a rotary tool 3. An insertion pestle 12 of the detaching side hole 2 is inserted in a holding cylinder 11 of the stationary side holder 1, and balls 6 are engaged with lock indented grooves 13, 13, so that each of the balls 6, 6 are restrained by pressurizing sleeves 7a, 7b. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

この発明に係る回転工具の着脱装置は、例えば、ホーニング加工を行なうホーニング盤の主軸に対するホーニングツールの着脱を、必要とする回転精度を確保しつつ、容易且つ迅速に行なえる様にするものである。   The rotary tool attaching / detaching device according to the present invention is, for example, capable of easily and quickly attaching / detaching a honing tool to / from a main shaft of a honing machine for performing honing while ensuring necessary rotational accuracy. .

主軸によりホーニングツールを回転駆動して被加工物の円孔に仕上加工を施す技術が、例えば特許文献1に記載される等により従来から知られている。但し、この特許文献1に記載された発明の場合には、主軸に対するホーニングツールの着脱を、必要とする回転精度を確保しつつ、容易且つ迅速に行なう事に就いて、特に考慮してはいない。回転精度の確保に就いては、主軸とホーニングツールとを自在継手を介して結合する事で、これら主軸とホーニングツールとの回転中心がずれても、必要とする回転精度を確保する様にしている。従って、上記引用文献1に記載された構造では、加工径の変更、仕上精度の変更、面粗度の変更、回転工具の摩耗、損傷に伴う交換の際、主軸に対するホーニングツールの着脱を、必要とする回転精度を確保しつつ、容易且つ迅速に行なう事はできない。   A technique for performing a finishing process on a circular hole of a workpiece by rotationally driving a honing tool by a main shaft has been conventionally known, for example, as described in Patent Document 1. However, in the case of the invention described in Patent Document 1, no particular consideration is given to easily and quickly performing the attachment / detachment of the honing tool with respect to the main shaft while ensuring the necessary rotational accuracy. . For securing the rotational accuracy, the main shaft and the honing tool are connected via a universal joint so that the required rotational accuracy can be ensured even if the rotational center of the main shaft and the honing tool is deviated. Yes. Therefore, in the structure described in the above cited reference 1, it is necessary to attach / detach the honing tool to / from the spindle when changing the machining diameter, changing the finishing accuracy, changing the surface roughness, wearing the rotating tool, or replacing it with damage. It is not possible to carry out easily and quickly while ensuring the rotation accuracy.

一方、特許文献2には、主軸に対するホーニングツールの着脱を、必要とする回転精度を確保しつつ、容易且つ迅速に行なう事に就いて考慮した、回転工具の着脱装置に関する発明が記載されている。但し、上記特許文献2に記載された発明の構造は、マシニングセンタのプルスタッドの如き複雑な構造を有する。又、着脱時に操作部を揺動変位させる必要があり、着脱作業の自動化が難しいものと考えられる。   On the other hand, Patent Document 2 describes an invention relating to a rotary tool attaching / detaching device that takes into account the fact that the honing tool is attached to and detached from the main shaft easily and quickly while ensuring the required rotational accuracy. . However, the structure of the invention described in Patent Document 2 has a complicated structure such as a pull stud of a machining center. In addition, it is necessary to swing and displace the operation unit at the time of attachment / detachment, and it is considered difficult to automate the attachment / detachment work.

国際公開WO92/02335International Publication WO92 / 02335 特開2000−190198号公報JP 2000-190198 A

本発明は、上述の様な事情に鑑み、比較的簡単に構成できて、例えば、ホーニング加工に関して、加工径の変更、仕上精度の変更、面粗度の変更、回転工具の摩耗、損傷に伴う交換の際、ホーニング盤の主軸に対するホーニングツールの着脱を、必要とする回転精度を確保しつつ、容易且つ迅速に行なえる構造を実現すべく発明したものである。   The present invention can be configured relatively easily in view of the circumstances as described above. For example, with respect to honing, the machining diameter is changed, the finishing accuracy is changed, the surface roughness is changed, the rotary tool is worn, and the damage is caused. The present invention has been invented to realize a structure that can easily and quickly perform the detachment of the honing tool with respect to the main shaft of the honing machine at the time of replacement while ensuring the necessary rotational accuracy.

本発明の回転工具の着脱装置は、固定側ホルダと着脱側ホルダとを備える。このうちの固定側ホルダは、回転加工機械の主軸に対し、この主軸と同心に結合固定される。
この固定側ホルダのこの主軸に対する結合固定は、この主軸側に設けたチャック等、従来から周知の構造により行なう。上記固定側ホルダを上記主軸に対し着脱する頻度は、この主軸に対し回転工具を着脱する頻度に比べれば遥かに少ない。従って、この主軸に対する上記固定側ホルダの着脱作業が多少面倒になる事は、特に差し支えはない。
The attachment / detachment device for a rotary tool of the present invention includes a fixed side holder and an attachment / detachment side holder. Of these, the fixed side holder is coupled and fixed concentrically with the main shaft of the rotary machine.
The fixing of the fixed side holder to the main shaft is performed by a conventionally known structure such as a chuck provided on the main shaft side. The frequency with which the fixed-side holder is attached to and detached from the main shaft is far less than the frequency with which the rotary tool is attached to and detached from the main shaft. Therefore, there is no problem in that the attaching and detaching work of the fixed side holder with respect to the main shaft is somewhat troublesome.

一方、上記着脱側ホルダは、上記回転工具の基端部を同心に結合固定した状態で上記固定側ホルダに、この固定側ホルダと同心に、且つ、装着状態でこの固定側ホルダとの間での回転力の伝達を可能に着脱される。この様な着脱側ホルダに対する上記回転工具の結合固定は、ねじ止め等、従来から周知の構造により行なう。この回転工具を上記着脱側ホルダに対し着脱する頻度に就いても、上記主軸に対しこの回転工具を着脱する頻度に比べれば少ない。従って、上記着脱側ホルダに対するこの回転工具の着脱作業が多少面倒になる事も、特に差し支えはない。   On the other hand, the detachable side holder is connected to the fixed side holder in a state where the base end portion of the rotary tool is concentrically coupled and fixed, concentrically with the fixed side holder, and between the fixed side holder in the mounted state. It can be attached and detached to transmit the rotational force. Such a fixing of the rotary tool to the detachable holder is performed by a conventionally known structure such as screwing. The frequency of attaching / detaching the rotary tool to / from the attach / detach side holder is less than the frequency of attaching / detaching the rotary tool to / from the spindle. Therefore, there is no problem in that the attaching / detaching operation of the rotary tool with respect to the attaching / detaching side holder is somewhat troublesome.

又、上記固定側ホルダは、ハウジング体と、複数の保持孔と、複数個のボールと、押圧スリーブと、傾斜面と、弾性部材とを備える。
このうちのハウジング体は、基端部に回転加工機械の主軸に結合固定する為の軸部を、中間部乃至先端部に、先端面中央部に開口を有する有底円筒状の保持筒部を、それぞれ設けている。
又、上記各保持孔は、上記保持筒部の軸方向に離隔した2個所位置のそれぞれ同一円周上複数個所(例えば円周方向等間隔3個所位置ずつ、合計6個所位置)に、それぞれこの保持筒部の内外両周面同士を連通させる(径方向に貫通する)状態で形成されている。
又、上記各ボールは、上記各保持孔内に1個ずつ、それぞれ上記保持筒部の径方向の変位を可能に保持されている。
又、上記押圧スリーブは、上記保持筒部の周囲に、この保持筒部の軸方向の変位を可能に外嵌されている。
又、上記傾斜面は、上記押圧スリーブの内周面で上記各保持孔に対向する部分に形成されたもので、この押圧スリーブの軸方向一端側に向かう程内径が大きくなる方向に傾斜している。
又、上記弾性部材は、上記押圧スリーブと上記保持筒部との間に設けられて、これら両押圧スリーブをそれぞれの軸方向一端側に向け弾性的に押圧するものである。
The fixed side holder includes a housing body, a plurality of holding holes, a plurality of balls, a pressing sleeve, an inclined surface, and an elastic member.
Of these, the housing body has a shaft portion for coupling and fixing to the main shaft of the rotary processing machine at the base end portion, and a bottomed cylindrical holding cylinder portion having an opening at the center portion of the distal end surface at the intermediate portion to the distal end portion. , Each provided.
In addition, the holding holes are respectively provided at a plurality of positions on the same circumference at two positions separated in the axial direction of the holding cylinder portion (for example, three positions at equal intervals in the circumferential direction for a total of six positions). It is formed in a state in which both the inner and outer peripheral surfaces of the holding cylinder portion are communicated (through in the radial direction).
Each of the balls is held in each holding hole so that the holding cylinder portion can be displaced in the radial direction.
The pressing sleeve is externally fitted around the holding cylinder portion so as to allow displacement of the holding cylinder portion in the axial direction.
The inclined surface is formed on the inner peripheral surface of the pressing sleeve at a portion facing the holding holes, and is inclined in a direction in which the inner diameter increases toward the one end side in the axial direction of the pressing sleeve. Yes.
The elastic member is provided between the pressing sleeve and the holding cylinder portion, and elastically presses both the pressing sleeves toward one axial end side.

更に、前記着脱側ホルダは、挿入杆部と、1対の係止凹溝と、工具保持部とを備える。 このうちの挿入杆部は、上記固定側ホルダの保持筒部内に挿入可能である。
又、上記両係止凹溝は、この挿入杆部の軸方向2個所位置で上記保持筒部内にこの挿入杆部を挿入した状態で上記各保持孔に対向する部分に、それぞれ形成されたもので、円弧形、V字形等、底部に向かう程幅寸法が小さくなる断面形状を有する。
更に、上記工具保持部は、上記回転工具の基端部を結合固定する為のもので、上記挿入杆部の端部に設けられている。
Furthermore, the detachable side holder includes an insertion flange, a pair of locking concave grooves, and a tool holding portion. Of these, the insertion flange can be inserted into the holding cylinder of the fixed holder.
The locking grooves are formed in portions facing the holding holes in a state where the insertion hook is inserted into the holding cylinder at two positions in the axial direction of the insertion hook. Thus, it has a cross-sectional shape such as an arc shape, a V shape, or the like, the width dimension of which decreases toward the bottom.
Furthermore, the tool holding part is for coupling and fixing the base end part of the rotary tool, and is provided at the end part of the insertion hook part.

上述の様な本発明の回転工具の着脱装置を実施する場合に、好ましくは、請求項2に記載した様に、上記保持筒部と上記工具保持部とのうちの一方の部材に係止突部を、これら保持筒部と工具保持部とのうちの他方の部材に向け軸方向に突出する状態で形成する。そして、上記挿入杆部を上記保持筒部内に挿入した状態で、上記係止突部と、上記他方の部材に形成された係止凹部とを係合させる事により、固定側ホルダと着脱側ホルダとの間での回転力の伝達を可能にする。   When carrying out the rotary tool attaching / detaching device of the present invention as described above, preferably, as described in claim 2, a locking projection is formed on one member of the holding cylinder portion and the tool holding portion. The part is formed in a state of protruding in the axial direction toward the other member of the holding cylinder part and the tool holding part. Then, with the insertion flange portion inserted into the holding cylinder portion, the locking projection and the locking recess formed in the other member are engaged, whereby the fixed side holder and the detachable side holder Rotational force can be transmitted between them.

或いは、上述の様な本発明の回転工具の着脱装置を実施する場合に、好ましくは、請求項3に記載した様に、上記押圧スリーブを、軸方向に離隔した保持孔部毎に独立して1対設ける。この場合に、更に好ましくは、請求項4に記載した様に、これら両押圧スリーブが、それぞれ弾性部材により軸方向一端側に押圧され、それぞれの傾斜面で各ボールを係止凹溝の底面に押し付けた状態で、一方の押圧スリーブの軸方向一端面と他方の押圧スリーブの軸方向他端面とを近接対向させる。又、この他方の押圧スリーブの外周面に外向フランジ状の係止鍔部を設ける。   Or when implementing the attachment / detachment device of the rotary tool of this invention as mentioned above, Preferably, as described in Claim 3, the said press sleeve is independently provided for every holding hole part spaced apart to the axial direction. One pair is provided. In this case, more preferably, as described in claim 4, both the pressing sleeves are each pressed toward one end in the axial direction by the elastic member, and each ball is brought into contact with the bottom surface of the locking groove by the respective inclined surfaces. In the pressed state, one axial end surface of one pressing sleeve and the other axial end surface of the other pressing sleeve are made to face each other. Further, an outward flange-like locking collar portion is provided on the outer peripheral surface of the other pressing sleeve.

上述の様に構成する本発明の回転工具の着脱装置によれば、比較的簡単に構成できて、例えば、ホーニング加工に関して、加工径の変更、仕上精度の変更、面粗度の変更、回転工具の摩耗、損傷に伴う交換の際、ホーニング盤の主軸に対するホーニングツールの着脱を、必要とする回転精度を確保しつつ、容易且つ迅速に行なえる構造を実現できる。
即ち、構成各部材の形状が何れも単純である為、必要とする精度を確保しつつ、簡単、且つ、低コストで構成できる。
According to the rotary tool attaching / detaching device of the present invention configured as described above, it can be configured relatively easily. For example, with respect to honing, a change in machining diameter, a change in finishing accuracy, a change in surface roughness, a rotary tool When exchanging due to wear and damage of the honing machine, it is possible to realize a structure that allows the honing tool to be attached to and detached from the main shaft of the honing machine easily and quickly while ensuring the necessary rotational accuracy.
That is, since the shape of each constituent member is simple, it can be configured easily and at low cost while ensuring the required accuracy.

又、固定側ホルダに対する着脱側ホルダの着脱作業は、押圧スリーブを弾性部材の弾力に抗して軸方向他端側に変位させた状態で、容易に行なえる。即ち、この押圧スリーブを軸方向他端側に変位させた状態では、このスリーブの内周面に形成した傾斜面のうちで各保持孔に対向する部分が、保持筒部の径方向に関して比較的外方に位置する。この状態では、これら各保持孔内に保持された各ボールが上記保持筒部の径方向外方に変位可能になり、同一円周上に存在する複数個のボールの内接円の直径が、上記着脱側ホルダの挿入杆部の外径以上に拡大可能になる。この為、この挿入杆部を上記保持筒部に抜き差しする事により、上記固定側ホルダに対する上記着脱側ホルダの着脱を行なえる。   The attaching / detaching operation of the attaching / detaching side holder with respect to the fixed side holder can be easily performed in a state where the pressing sleeve is displaced to the other end side in the axial direction against the elastic force of the elastic member. That is, in a state where the pressing sleeve is displaced to the other end side in the axial direction, a portion of the inclined surface formed on the inner peripheral surface of the sleeve that faces each holding hole is relatively in the radial direction of the holding cylinder portion. Located outward. In this state, each ball held in each holding hole can be displaced radially outward of the holding cylinder portion, and the diameters of the inscribed circles of a plurality of balls existing on the same circumference are as follows: It becomes possible to expand beyond the outer diameter of the insertion flange of the detachable holder. For this reason, the attachment / detachment side holder can be attached to and detached from the fixed side holder by inserting / removing the insertion hook part into / from the holding cylinder part.

これに対して、上記押圧スリーブを弾性部材の弾力に基づいて軸方向一端側に変位させた状態では、この押圧スリーブの内周面に形成した傾斜面が上記各保持孔内に保持された各ボールを、上記挿入杆部の外周面に形成した1対の係止凹溝に向け、上記保持筒部の径方向内方に押圧する。この状態では、上記各ボールの一部がこれら両係止凹溝に係合した状態のまま、同一円周上に存在する複数個のボールの内接円の直径が、上記挿入杆部の外径未満(上記両係止凹溝の底部の外径程度)に縮められたままの状態となる。この為、上記挿入杆部を上記保持筒部内に銜え込んだままにして、上記固定側ホルダに対し上記着脱側ホルダを結合固定できる。   On the other hand, in a state where the pressing sleeve is displaced toward the one end side in the axial direction based on the elasticity of the elastic member, the inclined surfaces formed on the inner peripheral surface of the pressing sleeve are held in the holding holes. The ball is pressed radially inward of the holding cylinder portion toward a pair of locking grooves formed on the outer peripheral surface of the insertion flange. In this state, the diameters of the inscribed circles of a plurality of balls existing on the same circumference remain outside the insertion flange portion while a part of each ball is engaged with both the locking grooves. It will be in the state still shortened to less than a diameter (about the outer diameter of the bottom part of the said both locking ditch | groove). For this reason, the detachable side holder can be coupled and fixed to the fixed side holder while the insertion collar portion is held in the holding cylinder portion.

又、請求項2に記載した構造によれば、固定側、着脱側両ホルダを、回転方向の位相を合わせた状態で結合する(固定側ホルダの保持筒部に着脱側ホルダの挿入杆部を挿入する)のみで、これら両ホルダ同士を、回転力の伝達を可能に結合固定できる。
更に、請求項3に記載した構造によれば、押圧スリーブの加工精度を厳密に規制せずに済む。更に、請求項4に記載した構造によれば、1個の係止鍔部を軸方向他端側に変位させるのみで、1対のスリーブを、それぞれ弾性部材の弾力に抗して、軸方向他端側に変位させる事ができる。即ち、これら両押圧スリーブ毎に軸方向他端側に変位させる作業が不要になる。従って、上記固定側ホルダに対する上記着脱側ホルダの着脱作業を容易に行なえる。
Further, according to the structure described in claim 2, the fixed side holder and the detachable side holder are coupled in a state in which the phases in the rotation direction are matched (the insertion collar portion of the detachable side holder is connected to the holding cylinder portion of the fixed side holder). These holders can be coupled and fixed so that rotational force can be transmitted.
Furthermore, according to the structure described in claim 3, it is not necessary to strictly regulate the processing accuracy of the pressing sleeve. Furthermore, according to the structure described in claim 4, it is possible to move the pair of sleeves in the axial direction against the elastic force of the elastic member only by displacing one locking hook portion toward the other axial end. It can be displaced to the other end side. That is, the operation of displacing both the pressing sleeves toward the other end in the axial direction is not necessary. Therefore, the attaching / detaching work of the attaching / detaching side holder with respect to the fixed side holder can be easily performed.

図1〜5は、総ての請求項に対応する、本発明の実施の形態の1例を示している。本例の回転工具の着脱装置は、固定側ホルダ1と着脱側ホルダ2とを備える。このうちの固定側ホルダ1は、回転加工機械の1種であるホーニング盤の主軸(図示省略)に対し、この主軸と同心に結合固定される。この固定側ホルダ1をこの主軸に対して結合固定するのは、この主軸側に設けたチャック等、従来から周知の構造により行なう。上記固定側ホルダ1を上記主軸に対し着脱する頻度は、この主軸に対し回転工具を着脱する頻度に比べれば遥かに少ない。従って、この主軸に対する上記固定側ホルダ1の着脱作業が多少面倒になる事は、特に差し支えはない。   1 to 5 show an example of an embodiment of the present invention corresponding to all claims. The rotating tool attaching / detaching device of this example includes a fixed side holder 1 and an attaching / detaching side holder 2. Of these, the fixed-side holder 1 is coupled and fixed concentrically to the main shaft (not shown) of a honing machine, which is a type of rotary processing machine. The fixed side holder 1 is coupled and fixed to the main shaft by a conventionally known structure such as a chuck provided on the main shaft side. The frequency of attaching and detaching the fixed side holder 1 to and from the main shaft is far less than the frequency of attaching and detaching the rotary tool to the main shaft. Therefore, it is not particularly troublesome to attach and detach the fixed side holder 1 with respect to the main shaft.

一方、上記着脱側ホルダ2は、ホーニングツール等の回転工具3の基端部を同心に結合固定した状態で上記固定側ホルダ1に、この固定側ホルダ1と同心に、且つ、装着状態でこの固定側ホルダ1との間での回転力の伝達を可能に着脱される。この様な着脱側ホルダ2に対する上記回転工具3の結合固定は、ねじ止め等、従来から周知の構造により行なう。この回転工具3を上記着脱側ホルダ2に対し着脱する頻度に就いても、上記主軸に対しこの回転工具3を着脱する頻度に比べれば少ない。従って、上記着脱側ホルダ2に対するこの回転工具3の着脱作業が多少面倒になる事も、特に差し支えはない。   On the other hand, the detachable side holder 2 is connected to the fixed side holder 1 in a state where the base end portion of the rotary tool 3 such as a honing tool is concentrically coupled and fixed. It is attached to and detached from the stationary side holder 1 so as to be able to transmit a rotational force. Such a fixing of the rotary tool 3 to the detachable holder 2 is performed by a conventionally known structure such as screwing. The frequency of attaching / detaching the rotary tool 3 to / from the attach / detach side holder 2 is less than the frequency of attaching / detaching the rotary tool 3 to / from the main shaft. Accordingly, there is no problem in that the attaching / detaching operation of the rotary tool 3 to / from the attaching / detaching side holder 2 is somewhat troublesome.

即ち、回転加工機械をホーニング盤とし、回転工具3をホーニングツールとして、本発明を実施する場合に、ホーニングツールを頻繁に交換するにしても、この交換は、上記固定側ホルダ1に結合固定する上記着脱側ホルダ2を交換する事で行なう。上記固定側ホルダ1は上記主軸の先端部に結合固定したままとし、上記ホーニングツールは上記着脱側ホルダ2に結合固定したままとする。   That is, when the present invention is carried out with the rotary machine as a honing machine and the rotary tool 3 as a honing tool, even if the honing tool is frequently replaced, this replacement is coupled and fixed to the fixed side holder 1. This is done by exchanging the detachable holder 2. The fixed side holder 1 remains connected and fixed to the tip of the main shaft, and the honing tool remains connected and fixed to the detachable side holder 2.

又、上記固定側ホルダ1は、ハウジング体4と、複数の保持孔5、5と、複数個のボール6、6と、1対の押圧スリーブ7a、7bと、1対の傾斜面8、8と、それぞれが弾性部材である、1対の圧縮コイルばね9、9とを備える。
このうちのハウジング体4は、炭素鋼、軸受鋼、ステンレス鋼等の硬質金属製の素材に旋削加工等の機械加工を施して、各部の外径及び内径を精度良く仕上げたもので、軸部10と保持筒部11とを、互いに同心に、且つ、軸方向に関して互いに直列に設けて成る。このうちの軸部10は、円杆状で、上記ハウジング体4の基端部(図1〜4の上端部、使用状態でも同じ)に設けられている。この様な軸部10は、使用状態で、上記ホーニング盤の主軸の先端部に設けたチャックに保持する等により、この主軸の先端部に、この主軸と同心に結合固定する。
The fixed holder 1 includes a housing body 4, a plurality of holding holes 5 and 5, a plurality of balls 6 and 6, a pair of pressing sleeves 7 a and 7 b, and a pair of inclined surfaces 8 and 8. And a pair of compression coil springs 9 and 9, each of which is an elastic member.
Of these, the housing body 4 is obtained by machining a hard metal material such as carbon steel, bearing steel, stainless steel or the like, such as turning, and accurately finishing the outer diameter and inner diameter of each part. 10 and the holding cylinder part 11 are provided concentrically with each other and in series with each other in the axial direction. Of these, the shaft portion 10 has a circular shape and is provided at the base end portion of the housing body 4 (the upper end portion in FIGS. 1 to 4, which is the same even when used). Such a shaft portion 10 is connected and fixed to the tip end portion of the main shaft concentrically with the main shaft, for example, by being held by a chuck provided at the tip end portion of the main shaft of the honing machine.

又、上記保持筒部11は、有底円筒状で、上記固定側ホルダ1の軸方向中間部乃至先端部に設けられており、先端面中央部に開口を有する。この様な保持筒部11の外径は、上記両押圧スリーブ7a、7bの最小内径との関係で、精度良く仕上げている。又、上記保持筒部11の内径は、軸方向両端部(奥端部及び開口寄り端部)で、後述する着脱側ホルダ2の挿入杆部12の軸方向両端部(先端部及び基端部)の外径との関係で、精度良く(この挿入杆部12の軸方向両端部の外径と同じに)仕上げている。これに対して、上記保持筒部11の軸方向中間部(後述する1対の係止凹溝13、13の間部分)は、軸方向両端部よりも少し大径にしている。又、上記軸方向中間部分の内径の精度は、特に高くする必要はない。   The holding cylinder portion 11 has a bottomed cylindrical shape and is provided at an axial intermediate portion or a tip portion of the fixed side holder 1 and has an opening at a center portion of the tip surface. The outer diameter of the holding cylinder portion 11 is finished with high accuracy in relation to the minimum inner diameter of the pressing sleeves 7a and 7b. Further, the inner diameter of the holding cylinder portion 11 is axially opposite end portions (back end portion and opening close end portion), and both axial end portions (distal end portion and proximal end portion) of the insertion collar portion 12 of the detachable side holder 2 described later. ) And the outer diameter of the insertion flange 12 is finished with high accuracy (same as the outer diameter of both ends in the axial direction of the insertion flange 12). On the other hand, the axially intermediate portion of the holding cylinder portion 11 (the portion between a pair of locking grooves 13 and 13 described later) has a slightly larger diameter than both axial end portions. Further, the accuracy of the inner diameter of the intermediate portion in the axial direction does not need to be particularly high.

又、前記各保持孔5、5は、上記保持筒部11の軸方向に離隔した2個所位置のそれぞれ同一円周上複数個所(本例の場合には、図5に示す様に、円周方向等間隔3個所位置ずつ、合計6個所位置)に、それぞれこの保持筒部11の内外両周面同士を連通させる(径方向に貫通する)状態で形成している。そして、上記各保持孔5、5内に、前記各ボール6、6を1個ずつ、それぞれ上記保持筒部11の径方向の変位を可能に保持している。これら各ボール6、6は、玉軸受用の玉の如く、軸受鋼等の硬質金属製で、必要十分な、形状精度及び寸法精度を有する。上記各保持孔5、5の内径は、上記各ボール6、6の外径よりも僅かに大きくして、これら各ボール6、6が上記各保持孔5、5内で、がたつきなく、且つ、上記保持筒部11の径方向に円滑に変位できる様にしている。   Each of the holding holes 5 and 5 has a plurality of locations on the same circumference at two locations separated in the axial direction of the holding cylinder portion 11 (in this example, as shown in FIG. The inner and outer peripheral surfaces of the holding cylinder portion 11 are communicated with each other at three equal positions in the direction (total of six positions) in a state in which the inner and outer peripheral surfaces of the holding cylinder portion 11 communicate with each other. Each of the balls 6, 6 is held in each of the holding holes 5, 5 such that the holding cylinder portion 11 can be displaced in the radial direction. Each of these balls 6 and 6 is made of a hard metal such as bearing steel, like a ball for a ball bearing, and has necessary and sufficient shape accuracy and dimensional accuracy. The inner diameters of the holding holes 5 and 5 are slightly larger than the outer diameters of the balls 6 and 6 so that the balls 6 and 6 do not rattle in the holding holes 5 and 5. In addition, the holding cylinder portion 11 can be smoothly displaced in the radial direction.

又、前記両押圧スリーブ7a、7bは、炭素鋼、軸受鋼、ステンレス鋼等の硬質金属製の素材に旋削加工等の機械加工を施して、全体を略円筒状に形成したもので、それぞれが上記保持筒部11に、この保持筒部11の軸方向の変位を可能に、がたつきなく外嵌されている。この為に上記両押圧スリーブ7a、7bの最小内径を、上記保持筒部11の外径よりも僅かに大きくしている。これら両押圧スリーブ7a、7bの内周面は、軸方向中間部に、上記最小内径部となる小幅の小径円筒面部14を形成している。   The pressing sleeves 7a and 7b are formed by machining a hard metal material such as carbon steel, bearing steel, stainless steel or the like into a substantially cylindrical shape. The holding cylinder part 11 is externally fitted without rattling so that the holding cylinder part 11 can be displaced in the axial direction. For this reason, the minimum inner diameters of the pressing sleeves 7a and 7b are made slightly larger than the outer diameter of the holding cylinder portion 11. The inner peripheral surfaces of both the pressing sleeves 7a and 7b form a small-diameter cylindrical surface portion 14 having a small width, which becomes the minimum inner diameter portion, in the intermediate portion in the axial direction.

又、上記両押圧スリーブ7a、7bの内周面のうちで上記小径円筒面部14よりも軸方向一端寄り(図1〜4の下端寄り、使用状態でも同じ)に、前記傾斜面8を設けている。この傾斜面8は、円すい凹面状で、上記両押圧スリーブ7a、7bの軸方向一端側に向かう程内径が大きくなる方向に傾斜している。又、上記傾斜面8は、前記固定側ホルダ1の構成各部材4、6、7a、7b、9を組み立てた状態で、このハウジング体4に対するこれら両押圧スリーブ7a、7bの軸方向変位に拘らず、上記各保持孔5、5に対向する部分に存在する。   The inclined surface 8 is provided on the inner peripheral surface of the both pressing sleeves 7a and 7b closer to one end in the axial direction than the small-diameter cylindrical surface portion 14 (closer to the lower end in FIGS. Yes. The inclined surface 8 has a conical concave shape, and is inclined in a direction in which the inner diameter becomes larger toward the one end side in the axial direction of the pressing sleeves 7a and 7b. The inclined surface 8 is related to the axial displacement of both the pressing sleeves 7a and 7b with respect to the housing body 4 in a state in which the constituent members 4, 6, 7a, 7b and 9 of the fixed side holder 1 are assembled. It exists in the part facing each said holding | maintenance hole 5 and 5.

更に、上記両押圧スリーブ7a、7bの内周面のうちで上記小径円筒面部14よりも軸方向他端寄り(図1〜4の上端寄り、使用状態でも同じ)に、この小径円筒面14よりも大きな内径を有する、大径円筒面部15を設けている。これら両円筒面部14、15同士は、段差面16により連続させている。前記両圧縮コイルばね9、9はそれぞれ、上記保持筒部11の外周面に形成した止め輪17、17と上記両押圧スリーブ7a、7bの内周面の段差面16、16との間に設けて、これら両押圧スリーブ7a、7bをそれぞれの軸方向一端側に向け弾性的に押圧している。   Further, of the inner circumferential surfaces of the pressing sleeves 7a and 7b, the small diameter cylindrical surface 14 is closer to the other end in the axial direction than the small diameter cylindrical surface portion 14 (same as the upper end in FIGS. A large-diameter cylindrical surface portion 15 having a large inner diameter is also provided. These cylindrical surface portions 14 and 15 are made continuous by a step surface 16. The compression coil springs 9 and 9 are respectively provided between retaining rings 17 and 17 formed on the outer peripheral surface of the holding cylinder portion 11 and step surfaces 16 and 16 on the inner peripheral surfaces of the pressing sleeves 7a and 7b. Thus, both the pressing sleeves 7a and 7b are elastically pressed toward one end side in the axial direction.

一方、前記着脱側ホルダ2は、炭素鋼、軸受鋼、ステンレス鋼等の硬質金属製の素材に旋削加工等の機械加工を施して、各部の外径及び内径を精度良く仕上げたもので、挿入杆部12と、1対の係止凹溝13、13と、工具保持部18とを備える。
このうちの挿入杆部12は、円杆状で、上記固定側ホルダ1の保持筒部11内に挿入可能である。又、この挿入杆部12の外周面の軸方向2個所位置に、上記両係止凹溝13、13を、それぞれ全周に亙って形成している。上記挿入杆部12の軸方向に関する、これら両係止凹溝13、13のピッチは、上記保持筒部11の軸方向に関する、前記各保持孔5、5のピッチとほぼ等しくしている(完全に一致させる事が好ましいが、多少ずれても差し支えない)。
On the other hand, the detachable side holder 2 is formed by machining a hard metal material such as carbon steel, bearing steel, stainless steel or the like, and turning the outer diameter and inner diameter of each part with high precision. A flange 12, a pair of locking grooves 13 and 13, and a tool holding part 18 are provided.
Of these, the insertion hook 12 is circular and can be inserted into the holding cylinder 11 of the fixed holder 1. Further, the two locking grooves 13 and 13 are formed over the entire circumference at two positions in the axial direction of the outer peripheral surface of the insertion collar 12. The pitch of the locking grooves 13 and 13 with respect to the axial direction of the insertion collar 12 is substantially equal to the pitch of the holding holes 5 and 5 with respect to the axial direction of the holding cylinder 11 (completely). It is preferable to match this, but there is no problem even if it is slightly deviated).

何れにしても、上記両係止凹溝13、13は、上記保持筒部11内に上記挿入杆部12を挿入した状態で上記各保持孔5、5に対向する部分に、それぞれ形成されたもので、断面円弧形である。尚、好ましくは、上記保持筒部11内に上記挿入杆部12を挿入し切った状態で、上記各保持孔5、5の中心よりも上記両係止凹溝13、13の中心が、上記保持筒部11の軸方向一端側(図1〜4の下側)に、少しだけ偏った部分に存在する様に、各部の位置関係を規制する事が好ましい。この理由は、上記両係止凹溝13、13と前記ボール6、6との係合に基づき、上記挿入杆部12を上記保持筒部11内に引き込む方向の分力を発生させる為である。   In any case, the locking grooves 13 and 13 are formed in portions facing the holding holes 5 and 5 in a state where the insertion flange 12 is inserted into the holding cylinder portion 11, respectively. It has a circular arc cross section. Preferably, in the state where the insertion flange 12 is fully inserted into the holding cylinder portion 11, the center of the both locking grooves 13, 13 is more than the center of the holding holes 5, 5. It is preferable to restrict the positional relationship of each part so that it exists in the part which is slightly deviated to the axial direction one end side (lower side of FIGS. 1-4) of the holding | maintenance cylinder part 11. FIG. The reason for this is to generate a component force in the direction in which the insertion flange 12 is pulled into the holding cylinder 11 based on the engagement between the locking grooves 13 and 13 and the balls 6 and 6. .

更に、前記工具保持部18は、前記回転工具3の基端部を結合固定する為のもので、上記挿入杆部12の端部に設けられている。本例の場合には、前記着脱側ホルダ2の軸方向一端部(図1の下端部)を上記挿入杆部12よりも大径にして、上記工具保持部18としている。この工具保持部18の中心部には、支持孔19を形成して、上記回転工具3の基端部に設けた支持杆部20を挿入可能としている。この支持孔19の内径はこの支持杆部20の外径と同じとして、この支持孔19内にこの支持杆部20を、がたつきなく挿入可能としている。又、上記工具保持部18の一部同一円周上2個所位置で、回転方向に関する位相が90度異なる部分にねじ孔21、21を、この工具保持部18を径方向に貫通する状態で形成している。上記支持杆部20を上記支持孔19に挿入した状態で、上記両ねじ孔21、21に抑えねじ22、22を螺合し更に緊締し、上記回転工具3を上記工具保持部18に結合固定している。この様な、工具保持部18に対するこの回転工具3の結合固定部分の構造は、一般的な構造である。   Further, the tool holding portion 18 is for coupling and fixing the base end portion of the rotary tool 3 and is provided at the end portion of the insertion flange portion 12. In the case of this example, one end portion in the axial direction (the lower end portion in FIG. 1) of the detachable side holder 2 is made larger in diameter than the insertion flange portion 12 to form the tool holding portion 18. A support hole 19 is formed at the center of the tool holding portion 18 so that a support collar 20 provided at the base end of the rotary tool 3 can be inserted. The inner diameter of the support hole 19 is the same as the outer diameter of the support flange 20, and the support flange 20 can be inserted into the support hole 19 without rattling. In addition, screw holes 21 and 21 are formed in portions where the phase with respect to the rotation direction is 90 degrees different at two positions on the same circumference of the tool holding portion 18 so as to penetrate the tool holding portion 18 in the radial direction. is doing. With the support flange 20 inserted into the support hole 19, the holding screws 22, 22 are screwed into the screw holes 21, 21 and further tightened, and the rotary tool 3 is coupled and fixed to the tool holder 18. is doing. Such a structure of the joint fixing portion of the rotary tool 3 with respect to the tool holding portion 18 is a general structure.

又、本例の場合には、上記保持筒部11の一端面(下端面)の径方向反対側2個所位置に1対の係止突部23を、上記工具保持部18に向け、下方に突出する状態で形成している。又、この工具保持部18の基端部外周面の径方向反対側2個所位置に1対の係止凹部24を、この基端部外周面から径方向に凹む状態で形成している。上記工具保持部18の円周方向に関する、上記両係止凹部24の幅寸法は、同方向に関する上記両係止突部23の幅寸法と同じか、僅かに大きくしている。又、これら両係止突部23の先端縁には面取りを施して、この先端部の幅寸法を漸次小さくしている。前記挿入杆部12を上記保持筒部11内に挿入した状態で上記両係止突部23は、上記両係止凹部24に係合して、前記固定側ホルダ1と上記着脱側ホルダ2との間での回転力の伝達を可能にする。   Further, in the case of this example, a pair of locking projections 23 are provided at two positions opposite to the radial direction of the one end surface (lower end surface) of the holding cylinder portion 11 toward the tool holding portion 18 and downward. It is formed in a protruding state. In addition, a pair of locking recesses 24 are formed in two radially opposite positions on the outer peripheral surface of the base end portion of the tool holding portion 18 so as to be recessed in the radial direction from the outer peripheral surface of the base end portion. The width dimension of the locking recesses 24 in the circumferential direction of the tool holding portion 18 is the same as or slightly larger than the width dimension of the locking protrusions 23 in the same direction. In addition, the leading edges of the locking projections 23 are chamfered to gradually reduce the width dimension of the leading ends. In a state where the insertion collar portion 12 is inserted into the holding cylinder portion 11, the both locking projections 23 engage with the both locking recesses 24, and the fixed side holder 1 and the detachable side holder 2 Enables transmission of rotational force between the two.

更に、本例の場合には、前記両押圧スリーブ7a、7bを近接配置している。即ち、一方(上方)の押圧スリーブ7aの一端縁(下端縁)と他方(下方)のスリーブ7bの他端縁(上端縁)とを、図1、4に示す様に当接させるか、図2、3に示す様に近接対向させている。即ち、上記両押圧スリーブ7a、7bを前記圧縮コイルばね9、9により軸方向一端側に押圧し、それぞれの傾斜面8、8で前記各ボール6、6を前記両係止凹溝13、13の底面に押し付けた状態で、図2、3に示す様に、一方の押圧スリーブ7aの軸方向一端面と他方の押圧スリーブ7bの軸方向他端面とを近接対向させる。又、この他方の押圧スリーブ7bの外周面に、外向フランジ状の係止鍔部25を設けている。   Furthermore, in the case of this example, both the pressing sleeves 7a and 7b are arranged close to each other. That is, one end edge (lower end edge) of one (upper) pressing sleeve 7a and the other end edge (upper end edge) of the other (lower) sleeve 7b are brought into contact with each other as shown in FIGS. As shown in Figs. That is, both the pressing sleeves 7a and 7b are pressed to one end side in the axial direction by the compression coil springs 9 and 9, and the balls 6 and 6 are held by the inclined surfaces 8 and 8 in the locking grooves 13 and 13 respectively. 2 and 3, the one axial end surface of one pressing sleeve 7a and the other axial end surface of the other pressing sleeve 7b are brought close to each other as shown in FIGS. Further, an outward flange-like locking collar portion 25 is provided on the outer peripheral surface of the other pressing sleeve 7b.

上述の様に構成する本例の回転工具の着脱装置によれば、比較的簡単に構成できて、例えば、ホーニング加工に関して、加工径の変更、仕上精度の変更、面粗度の変更、回転工具3の摩耗、損傷に伴う交換の際、ホーニング盤の主軸に対するホーニングツールの着脱を、必要とする回転精度を確保しつつ、容易且つ迅速に行なえる構造を実現できる。
即ち、固定側、回転側両ホルダ1、2の構成各部材は、何れも形状が単純であったり、ボール6、6に関しては汎用の部品を使用できる為、必要とする精度を確保しつつ、簡単、且つ、低コストで構成できる。
According to the rotary tool attaching / detaching apparatus of the present example configured as described above, it can be configured relatively easily. For example, with respect to honing, a change in machining diameter, a change in finishing accuracy, a change in surface roughness, a rotary tool When exchanging due to wear or damage of 3, the honing tool can be attached to and detached from the main shaft of the honing machine while ensuring the necessary rotational accuracy, and a structure that can be easily and quickly realized.
That is, each of the constituent members of both the fixed side and rotating side holders 1 and 2 has a simple shape, and general-purpose parts can be used for the balls 6 and 6, while ensuring the required accuracy. It can be configured simply and at low cost.

又、固定側ホルダ1に対する着脱側ホルダ2の着脱作業は、1対の押圧スリーブ7a、7bを、上記両圧縮コイルばね9、9の弾力に抗して軸方向他端側(上側)に変位させた状態で、容易に行なえる。本例の場合には、下側に設けた押圧スリーブ7bの外周面に設けた、上記1個の係止鍔部25を上側に変位させれば、図1、4に示す様に、上記下側の押圧スリーブ7bが上側の押圧スリーブ7aを押し上げる事で、上記両押圧スリーブ7a、7bを、それぞれ上記圧縮コイルばね9、9の弾力に抗して、上側に変位させる事ができる。従って、上記両押圧スリーブ7a、7b毎に上側に変位させる作業が不要になり、1対のスリーブ7a、7bの上側への変位を、一挙に行なえる。   Further, the attaching / detaching operation of the attaching / detaching side holder 2 with respect to the fixed side holder 1 is performed by displacing the pair of pressing sleeves 7a, 7b to the other end side (upper side) in the axial direction against the elasticity of the compression coil springs 9, 9. It can be done easily with the In the case of this example, if the one locking collar 25 provided on the outer peripheral surface of the pressing sleeve 7b provided on the lower side is displaced upward, as shown in FIGS. Since the upper pressing sleeve 7b pushes up the upper pressing sleeve 7a, both the pressing sleeves 7a and 7b can be displaced upward against the elasticity of the compression coil springs 9 and 9, respectively. Therefore, the operation of displacing the both pressing sleeves 7a and 7b upward is unnecessary, and the upward displacement of the pair of sleeves 7a and 7b can be performed at once.

そして、上記両押圧スリーブ7a、7bを軸方向他端側に変位させた状態では、これら両押圧スリーブ7a、7bの内周面に形成した傾斜面8、8のうちで各保持孔5、5に対向する部分が、図1、4に示す様に、保持筒部11の径方向に関して比較的外方に位置する。この状態では、これら各保持孔5、5内に保持された各ボール6、6が、同図に示す様に上記保持筒部11の径方向外方に変位可能になり、同一円周上に存在する複数個のボール6、6の内接円の直径が、上記着脱側ホルダ2の挿入杆部12の外径以上に拡大可能になる。この為、この挿入杆部12を上記保持筒部11に抜き差しする事で、上記固定側ホルダ1に対する上記着脱側ホルダ2の着脱を行なえる様になる。従って、上記固定側ホルダ1に対する上記着脱側ホルダ2の着脱作業を容易に行なえる。   And in the state which displaced both the said press sleeves 7a and 7b to the axial direction other end side, each holding hole 5, 5 among the inclined surfaces 8 and 8 formed in the internal peripheral surface of these both press sleeves 7a and 7b. As shown in FIGS. 1 and 4, the portion opposite to is positioned relatively outward in the radial direction of the holding cylinder portion 11. In this state, the balls 6 and 6 held in the holding holes 5 and 5 can be displaced radially outward of the holding cylinder portion 11 as shown in FIG. The diameter of the inscribed circle of the plurality of existing balls 6 and 6 can be increased to be larger than the outer diameter of the insertion flange 12 of the detachable side holder 2. For this reason, the attachment / detachment side holder 2 can be attached to and detached from the fixed side holder 1 by inserting / removing the insertion collar portion 12 to / from the holding cylinder portion 11. Therefore, the attaching / detaching work of the attaching / detaching side holder 2 to the fixed side holder 1 can be easily performed.

上記固定側ホルダ1から上記着脱側ホルダ2を取り外す際には、この着脱側ホルダ2の挿入杆部12をこの固定側ホルダ1の保持筒部11から抜き出せば良い。この挿入杆部12を抜き出し方向に変位させるのに伴って上記各ボール6、6が、前記両係止凹溝13、13に押し退けられる様にして上記保持筒部11の径方向外方に変位し、上記各ボール6、6の内径側を上記挿入杆部12が通過する事を許容する。これに対して、上記固定側ホルダ1に上記着脱側ホルダ2を結合する際には、前記両係止突部23と前記両係止凹部24との位相を合わせた状態で、上記挿入杆部12を上記保持筒部11に挿入する。この際、上記両押圧スリーブ7a、7bは、図1、4に示した様に、前記圧縮コイルばね9、9の弾力に抗して、軸方向に変位させておく。この為、上記挿入杆部12の挿入に伴って上記各ボール6、6が、この挿入杆部12の先端部外周縁に設けた面取り部により押し退けられる様にして上記保持筒部11の径方向外方に変位し、上記各ボール6、6の内径側を上記挿入杆部12が通過する事を許容する。   When removing the detachable side holder 2 from the fixed side holder 1, the insertion collar 12 of the detachable side holder 2 may be extracted from the holding cylinder portion 11 of the fixed side holder 1. As the insertion hook 12 is displaced in the extraction direction, the balls 6 and 6 are displaced outwardly in the radial direction of the holding cylinder 11 so that the balls 6 and 6 are pushed away by the locking grooves 13 and 13. Then, the insertion flange 12 is allowed to pass through the inner diameter side of each of the balls 6 and 6. On the other hand, when the detachable side holder 2 is coupled to the fixed side holder 1, the insertion flange portion is in a state in which the phases of the locking projections 23 and the locking recesses 24 are matched. 12 is inserted into the holding cylinder portion 11. At this time, the pressing sleeves 7a and 7b are displaced in the axial direction against the elasticity of the compression coil springs 9 and 9, as shown in FIGS. For this reason, with the insertion of the insertion hook 12, the balls 6, 6 are pushed away by the chamfered portion provided at the outer peripheral edge of the insertion hook 12 in the radial direction of the holding cylinder 11. Displacement outwards allows the insertion flange 12 to pass through the inner diameter side of the balls 6, 6.

この様にして、上記挿入杆部12を上記保持筒部11の奥に迄挿入し、上記両係止突部23と前記両係止凹部24とを係合させた状態で、固定側、着脱側両ホルダ1、2同士の間での回転力の伝達が可能になる。又、この状態で上記各ボール6、6は、上記挿入杆部12の外周面に形成した1対の係止凹溝13、13に対向する。そこで、この状態で、図2、3に示す様に、上記両押圧スリーブ7a、7bを上記圧縮コイルばね9、9の弾力に基づいて軸方向一端側に変位させ、これら両押圧スリーブ7a、7bの内周面に形成した傾斜面8、8により上記各ボール6、6を、上記両係止凹溝13、13に向け、上記保持筒部11の径方向内方に押圧する。この結果、上記各ボール6、6の一部がこれら両係止凹溝13、13に係合した状態のまま、同一円周上に存在する複数個のボール6、6の内接円の直径が、上記挿入杆部12の外径未満(上記両係止凹溝13、13の底部の外径程度)に縮められる。この為、上記挿入杆部12を上記保持筒部11内に銜え込んだままにして、上記固定側ホルダ1に対し上記着脱側ホルダ2を結合固定できる。   In this way, the insertion collar portion 12 is inserted deep into the holding cylinder portion 11 and the both locking projections 23 and the both locking recesses 24 are engaged with each other. Rotational force can be transmitted between the side holders 1 and 2. In this state, the balls 6, 6 face a pair of locking grooves 13, 13 formed on the outer peripheral surface of the insertion flange 12. Therefore, in this state, as shown in FIGS. 2 and 3, both the pressing sleeves 7a and 7b are displaced to one end side in the axial direction based on the elasticity of the compression coil springs 9 and 9, so that both the pressing sleeves 7a and 7b. The balls 6, 6 are pressed toward the locking grooves 13, 13 by the inclined surfaces 8, 8 formed on the inner peripheral surface of the holding cylinder portion 11 in the radial direction. As a result, the diameters of the inscribed circles of the plurality of balls 6 and 6 existing on the same circumference while a part of each of the balls 6 and 6 is engaged with both the locking grooves 13 and 13. However, it is shrunk | reduced to less than the outer diameter of the said insertion collar part 12 (about the outer diameter of the bottom part of both the said locking grooves 13 and 13). For this reason, the detachable side holder 2 can be coupled and fixed to the fixed side holder 1 while the insertion collar portion 12 is held in the holding cylinder portion 11.

尚、軸方向に離隔して設けた2列のボール6、6を抑えたり、抑え力を解除したりする為、一体型のスリーブの内周面の軸方向に離隔した2個所位置に、それぞれ傾斜面を形成する事も考えられる。この様に構成すれば、単一のスリーブを軸方向に変位させるのみで、上記2列のボール6、6を上記保持筒部11の径方向に変位させられる。但し、この様な一体型のスリーブを構成すると、当該スリーブの内周面の軸方向2個所位置に形成する傾斜面の形状精度及び寸法精度を厳密に規制する必要がある。   It should be noted that in order to suppress the two rows of balls 6 and 6 provided apart in the axial direction and release the holding force, two axially spaced positions on the inner peripheral surface of the integral sleeve are respectively provided. It is also possible to form an inclined surface. With this configuration, the two rows of balls 6 and 6 can be displaced in the radial direction of the holding cylinder portion 11 only by displacing the single sleeve in the axial direction. However, when such an integral sleeve is configured, it is necessary to strictly regulate the shape accuracy and dimensional accuracy of the inclined surfaces formed at two positions in the axial direction of the inner peripheral surface of the sleeve.

例えば、固定側ホルダ1と着脱側ホルダ2とを結合する際に、両列の傾斜面により両列のボール6、6を、同じ様に上記保持筒部11の径方向内方に押圧すべく、これら両列の傾斜面の傾斜角度や各ボール6、6の直径を厳密に規制する必要が生じる。この理由は、上記固定側ホルダ1と上記着脱側ホルダ2との結合部の剛性を確保する為には、この着脱側ホルダ2の挿入杆部12の軸方向2個所位置(係止凹溝13、13部分)を、両列のボール6、6により、同じ様に抑え付ける必要がある為である。   For example, when the fixed-side holder 1 and the detachable-side holder 2 are coupled together, both rows of balls 6 and 6 should be pressed inward in the radial direction of the holding cylinder portion 11 by the inclined surfaces of both rows. Therefore, it is necessary to strictly regulate the inclination angles of the inclined surfaces of both rows and the diameters of the balls 6 and 6. The reason for this is that in order to ensure the rigidity of the coupling portion between the fixed side holder 1 and the detachable side holder 2, two axial positions (locking grooves 13) of the insertion flange 12 of the detachable side holder 2 are provided. , 13 part) must be suppressed in the same manner by the balls 6 and 6 in both rows.

両列の傾斜面の傾斜角度や各ボール6、6の直径を厳密に規制する事は、可能ではあるが、製造コスト上昇の原因となる為、好ましくない。これに対して本例の様に、互いに独立した1対の押圧スリーブ7a、7bにより、各列のボール6、6を径方向内方に押圧する様に構成すれば、両列の傾斜面の傾斜角度や各ボール6、6の直径を厳密に規制しなくても、上記挿入杆部12の軸方向2個所位置を両列のボール6、6により、同じ様に抑え付ける事ができる。この結果、必要とする性能(結合部の曲げ剛性確保)を確保しつつ、コスト低減を図れる。   Although it is possible to strictly regulate the inclination angles of the inclined surfaces of both rows and the diameters of the balls 6 and 6, it is not preferable because it causes an increase in manufacturing cost. On the other hand, as shown in this example, if the balls 6 and 6 in each row are pressed radially inward by a pair of mutually independent pressing sleeves 7a and 7b, the inclined surfaces of both rows are formed. Even if the inclination angle and the diameter of each of the balls 6 and 6 are not strictly regulated, the two positions in the axial direction of the insertion flange 12 can be suppressed in the same way by the balls 6 and 6 in both rows. As a result, the cost can be reduced while ensuring the required performance (securing the bending rigidity of the coupling portion).

本発明の回転工具の着脱装置は、ホーニング盤の主軸にホーニングツールを着脱する部分に適用する事で、顕著な効果を得られる。この理由は、ホーニング盤の場合、主軸の回転中心と回転工具であるホーニングツールの回転中心とを精度良く一致させる要求が高く、しかも、ホーニングツールを交換する頻度が高い為である。但し、本発明は、この様な、ホーニング盤のホーニングツールの着脱部に限らず、ボール盤等、主軸と回転中心と回転工具の回転中心とを一致させる必要がある、各種回転加工機械で実施できる。
又、本発明は、例えば一方の押圧スリーブ7bの外周面に設けた係止鍔部25を軸方向移動させただけで、固定側ホルダ1に対する着脱側ホルダ2の着脱を可能にできる等、各部の動きが直線的である為、工具交換の自動化が可能になる。この為、回転工具を交換しつつ、夜間等の長時間の無人運転を可能にする事もできる。
The apparatus for attaching and detaching a rotary tool according to the present invention can obtain a remarkable effect by being applied to a part where the honing tool is attached to and detached from the main shaft of the honing machine. This is because, in the case of a honing machine, there is a high demand for precisely matching the rotation center of the spindle and the rotation center of the honing tool, which is a rotating tool, and the frequency of exchanging the honing tool is high. However, the present invention is not limited to such a honing tool attaching / detaching portion of the honing machine, but can be implemented by various rotary processing machines such as a drilling machine, in which the main shaft, the rotation center, and the rotation center of the rotary tool need to be matched. .
Further, in the present invention, for example, the detachable side holder 2 can be attached to and detached from the fixed side holder 1 only by moving the locking collar 25 provided on the outer peripheral surface of the one pressing sleeve 7b in the axial direction. Since the movement of the tool is linear, tool change can be automated. For this reason, it is possible to enable unattended operation for a long time such as at night while exchanging the rotary tool.

本発明の実施の形態の1例を、固定側ホルダと着脱側ホルダと回転工具とを分離した状態で示す部分切断正面図。The partial cutting front view which shows one example of embodiment of this invention in the state which isolate | separated the fixed side holder, the attachment / detachment side holder, and the rotary tool. 同じく、固定側ホルダと着脱側ホルダと回転工具とを組み合わせて結合固定(クランプ)した状態で示す、部分切断正面図。Similarly, the partial cutting front view shown in the state where the fixed side holder, the detachable side holder, and the rotary tool were combined and fixed (clamped). 図2の上半部拡大図。The upper half enlarged view of FIG. 固定側ホルダと着脱側ホルダとを分離可能に(アンクランプ)した状態で示す、図3と同様の図。FIG. 4 is a view similar to FIG. 3, showing the fixed side holder and the detachable side holder detachable (unclamped). 図3のA−A断面図。AA sectional drawing of FIG.

符号の説明Explanation of symbols

1 固定側ホルダ
2 着脱側ホルダ
3 回転工具
4 ハウジング体
5 保持孔
6 ボール
7a、7b 押圧スリーブ
8 傾斜面
9 圧縮コイルばね
10 軸部
11 保持筒部
12 挿入杆部
13 係止凹溝
14 小径円筒面部
15 大径円筒面部
16 段差面
17 止め輪
18 工具保持部
19 支持孔
20 支持杆部
21 ねじ孔
22 抑えねじ
23 係止突部
24 係止凹部
25 係止鍔部
DESCRIPTION OF SYMBOLS 1 Fixed side holder 2 Removable side holder 3 Rotating tool 4 Housing body 5 Holding hole 6 Ball 7a, 7b Pressing sleeve 8 Inclined surface 9 Compression coil spring 10 Shaft part 11 Holding cylinder part 12 Inserting hook part 13 Locking concave groove 14 Small diameter cylinder Surface portion 15 Large-diameter cylindrical surface portion 16 Stepped surface 17 Retaining ring 18 Tool holding portion 19 Support hole 20 Support flange portion 21 Screw hole 22 Retaining screw 23 Locking protrusion 24 Locking recess portion 25 Locking flange portion

Claims (4)

回転加工機械の主軸に対し、この主軸と同心に結合固定される固定側ホルダと、回転工具の基端部を同心に結合固定した状態で上記固定側ホルダに、この固定側ホルダと同心に、且つ、装着状態でこの固定側ホルダとの間での回転力の伝達を可能に着脱される着脱側ホルダとを備え、
このうちの固定側ホルダは、基端部に回転加工機械の主軸に結合固定する為の軸部を、中間部乃至先端部に、先端面中央部に開口を有する有底円筒状の保持筒部を、それぞれ設けたハウジング体と、この保持筒部の軸方向に離隔した2個所位置のそれぞれ同一円周上複数個所に、それぞれこの保持筒部の内外両周面同士を連通させる状態で形成された複数の保持孔と、これら各保持孔内に1個ずつ、それぞれ上記保持筒部の径方向の変位を可能に保持された複数個のボールと、この保持筒部の周囲に、この保持筒部の軸方向の変位を可能に外嵌された押圧スリーブと、この押圧スリーブの内周面で上記各保持孔に対向する部分に形成された、この押圧スリーブの軸方向一端側に向かう程内径が大きくなる方向に傾斜した傾斜面と、この押圧スリーブと上記保持筒部との間に設けられて、この押圧スリーブをそれぞれの軸方向一端側に向け弾性的に押圧する弾性部材とを備えたものであり、
上記着脱側ホルダは、上記固定側ホルダの保持筒部内に挿入可能な挿入杆部と、この挿入杆部の軸方向2個所位置でこの保持筒部内にこの挿入杆部を挿入した状態で上記各保持孔に対向する部分にそれぞれ形成された1対の係止凹溝と、上記挿入杆部の端部に設けられた、上記回転工具の基端部を結合固定する為の工具保持部とを備えたものである、
回転工具の着脱装置。
A fixed-side holder that is coupled and fixed concentrically with the main shaft of the rotary processing machine, and the fixed-side holder in a state where the base end portion of the rotary tool is coupled and fixed concentrically, concentrically with the fixed-side holder, And a detachable side holder that is detachable so as to allow transmission of rotational force between the fixed side holder in the mounted state,
Of these, the fixed-side holder is a bottomed cylindrical holding cylinder portion having a shaft portion for coupling and fixing to the main shaft of the rotary processing machine at the base end portion, and an opening from the middle portion to the tip portion, and an opening at the center portion of the tip surface Are formed in a state in which the inner and outer peripheral surfaces of the holding cylinder portion are communicated with each other at a plurality of locations on the same circumference at two positions spaced apart in the axial direction of the holding cylinder portion. A plurality of holding holes, a plurality of balls each being held in the holding holes so as to be able to be displaced in the radial direction, and the holding cylinders around the holding cylinder parts. A pressing sleeve that is externally fitted to allow displacement in the axial direction of the portion, and an inner diameter that is formed on a portion of the inner peripheral surface of the pressing sleeve that faces each of the holding holes toward the one end side in the axial direction of the pressing sleeve. And an inclined surface inclined in the direction in which the Provided between the over blanking and the holding tubular portion, which has an elastic member which elastically presses toward the pressing sleeve in the respective axial end,
The detachable side holder includes an insertion hook part that can be inserted into the holding cylinder part of the fixed side holder, and the insertion hook part inserted into the holding cylinder part at two positions in the axial direction of the insertion hook part. A pair of locking concave grooves formed in portions facing the holding holes, and a tool holding portion provided at an end portion of the insertion hook for fixing and fixing the base end portion of the rotary tool. Is what we have,
Rotating tool detaching device.
保持筒部と工具保持部とのうちの一方の部材に係止突部を、これら保持筒部と工具保持部とのうちの他方の部材に向け軸方向に突出する状態で形成しており、挿入杆部を上記保持筒部内に挿入した状態で、上記係止突部と、上記他方の部材に形成された係止凹部とを係合させる事により、固定側ホルダと着脱側ホルダとの間での回転力の伝達を可能にする、請求項1に記載した回転工具の着脱装置。   A locking protrusion is formed on one member of the holding cylinder part and the tool holding part, and is formed in a state protruding in the axial direction toward the other member of the holding cylinder part and the tool holding part, With the insertion collar portion inserted into the holding cylinder portion, the locking projection and the locking recess formed in the other member are engaged with each other, so that the space between the fixed side holder and the detachable side holder can be reduced. The rotation tool attaching / detaching device according to claim 1, which enables transmission of a rotational force at a point. 押圧スリーブが、軸方向に離隔した保持孔部毎に独立して1対設けられている、請求項1〜2のうちの何れか1項に記載した回転工具の着脱装置。   The rotary tool attaching / detaching device according to claim 1, wherein a pair of pressing sleeves are provided independently for each holding hole portion spaced apart in the axial direction. 1対の押圧スリーブが、それぞれ弾性部材により軸方向一端側に押圧され、それぞれの傾斜面で各ボールを係止凹溝の底面に押し付けた状態で、一方の押圧スリーブの軸方向一端面と他方の押圧スリーブの軸方向他端面とが近接対向しており、この他方の押圧スリーブの外周面に外向フランジ状の係止鍔部が設けられている、請求項3に記載した回転工具の着脱装置。   A pair of pressing sleeves are pressed toward one end in the axial direction by the elastic members, respectively, and one end of the pressing sleeve in the axial direction and the other are pressed against the bottom surface of the locking groove by the respective inclined surfaces. The rotary tool attaching / detaching device according to claim 3, wherein the other end surface in the axial direction of the pressing sleeve is close to and opposed to the outer peripheral surface of the other pressing sleeve, and an outward flange-like locking hook portion is provided. .
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6353580B1 (en) * 2017-04-18 2018-07-04 株式会社日進製作所 Connecting device, honing device and honing tool
JP2018536545A (en) * 2016-10-28 2018-12-13 イーアンドキュー ワン−タッチ カンパニー リミテッド Abrasive tool fixture and method for manufacturing body of abrasive tool fixture
KR20190033729A (en) * 2017-09-22 2019-04-01 김주영 apparatus for honing tool
US10875147B2 (en) 2016-10-28 2020-12-29 E&Q One-Touch Co., Ltd. Grinding tool fixture and method of manufacturing main body of grinding tool fixture

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JP2002536195A (en) * 1999-02-12 2002-10-29 サンドビック アクティエボラーグ(プブル) Grinding tools and grinding cups and grinding spindles for grinding buttons of rock drill bits, and methods of mounting grinding cups on grinding spindles

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JPS55165737A (en) * 1979-06-09 1980-12-24 Yutaka Idota Coloring agent for materials for domestic animal breeding
JPH0438354A (en) * 1990-06-01 1992-02-07 Kajima Corp Stretching method for frp rod
JP2002536195A (en) * 1999-02-12 2002-10-29 サンドビック アクティエボラーグ(プブル) Grinding tools and grinding cups and grinding spindles for grinding buttons of rock drill bits, and methods of mounting grinding cups on grinding spindles

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2018536545A (en) * 2016-10-28 2018-12-13 イーアンドキュー ワン−タッチ カンパニー リミテッド Abrasive tool fixture and method for manufacturing body of abrasive tool fixture
US10875147B2 (en) 2016-10-28 2020-12-29 E&Q One-Touch Co., Ltd. Grinding tool fixture and method of manufacturing main body of grinding tool fixture
JP6353580B1 (en) * 2017-04-18 2018-07-04 株式会社日進製作所 Connecting device, honing device and honing tool
WO2018193939A1 (en) * 2017-04-18 2018-10-25 株式会社日進製作所 Connection device, honing device, and honing tool
JP2018176376A (en) * 2017-04-18 2018-11-15 株式会社日進製作所 Coupling device, honing device and honing tool
CN110520248A (en) * 2017-04-18 2019-11-29 株式会社日进制作所 Link device, grinding equipment and hone
KR20190033729A (en) * 2017-09-22 2019-04-01 김주영 apparatus for honing tool
KR101985684B1 (en) 2017-09-22 2019-06-04 김주영 apparatus for honing tool

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