JP5367473B2 - Tool holder - Google Patents

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Publication number
JP5367473B2
JP5367473B2 JP2009144307A JP2009144307A JP5367473B2 JP 5367473 B2 JP5367473 B2 JP 5367473B2 JP 2009144307 A JP2009144307 A JP 2009144307A JP 2009144307 A JP2009144307 A JP 2009144307A JP 5367473 B2 JP5367473 B2 JP 5367473B2
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tool holder
hole
tool
cutting
suction hole
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JP2011000661A (en
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靖宏 稲増
康児 佐藤
春機 溝口
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DMG Mori Co Ltd
MST Corp
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DMG Mori Co Ltd
Mori Seiki Co Ltd
MST Corp
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  • Auxiliary Devices For Machine Tools (AREA)
  • Jigs For Machine Tools (AREA)

Description

本発明は、工具ホルダに関し、詳細には、特に軽金属又は炭素材等の加工時に発生する粉塵状の切削粉の回収効率を改善できるようにした工具ホルダに関する。   The present invention relates to a tool holder, and more particularly to a tool holder that can improve the recovery efficiency of dust-like cutting powder generated particularly during processing of light metal or carbon material.

例えばマグネシウム合金を切削加工する場合に発生する粉塵状の切削粉の回収を可能とするフライス工具として特許文献1に記載されたものがある。このフライス工具は、シャンクの軸芯に形成されたチップ導出通路を有し、該チップ導出通路は吸出しホッパに連通している。   For example, Patent Document 1 discloses a milling tool that enables recovery of dust-like cutting powder generated when a magnesium alloy is cut. This milling tool has a tip lead-out passage formed in the shaft core of the shank, and the tip lead-out passage communicates with the suction hopper.

特表2005−532917号公報JP 2005-532917 A

前記特許文献1に記載のフライス工具では、シャンクの軸芯に形成されたチップ導出通路により切削粉を吸引するようにしているため、シャンク径が小さくなるとチップ導出通路の径も小さくなって流路抵抗が大きくなり、切削粉を十分に吸引できないといった問題がある。また、前記従来のフライス工具の場合、チップ導出通路の断面積に比べて吸出しホッパにおける通路面積が大きくなっているため、吸引空気の流速が吸出しホッパ部分で低下し、この部分に切削粉が沈殿し、堆積してしまうといった問題も懸念される。さらにまた、吸出しホッパを備えているため、構造が複雑であり、しかもその構造上、工具の自動交換ができないといった問題がある。   In the milling tool described in Patent Document 1, since the cutting powder is sucked by the tip lead-out passage formed in the shaft core of the shank, the diameter of the tip lead-out passage is reduced when the shank diameter is reduced. There is a problem that the resistance increases and the cutting powder cannot be sufficiently sucked. In the case of the conventional milling tool, since the passage area in the suction hopper is larger than the cross-sectional area of the tip lead-out passage, the flow rate of the suction air is reduced in the suction hopper portion, and the cutting powder is precipitated in this portion. In addition, there are concerns about problems such as accumulation. Furthermore, since the suction hopper is provided, there is a problem that the structure is complicated and the tool cannot be automatically changed due to the structure.

本発明は、前記従来の問題点に鑑みてなされたもので、切削粉の吸引効率が高く、切削粉の内部蓄積を防止でき、さらに工具の自動交換が可能である工具ホルダを提供することを課題としている。   The present invention has been made in view of the above-mentioned conventional problems, and provides a tool holder that has high cutting powder suction efficiency, can prevent internal accumulation of cutting powder, and can automatically change tools. It is an issue.

請求項1の発明は、先端面に開口し、刃具を取り付け可能な装着穴と、該装着穴に連通するとともに基端面に開口するクランプ穴とを有し、工作機械の主軸に取り付けられる工具ホルダにおいて、該工具ホルダは、前記先端面に開口し、前記クランプ穴に連通するよう形成された吸引穴を有し、前記先端面の周囲を囲むとともに前記装着穴に取り付けられた刃具の先端付近まで延びるカバー部材を備えたことを特徴としている。 The invention of claim 1 has a mounting hole that opens to the front end surface and can be attached to a cutting tool, and a clamp hole that communicates with the mounting hole and opens to the base end surface, and is attached to the spindle of the machine tool. The tool holder has a suction hole that opens to the tip surface and communicates with the clamp hole, surrounds the periphery of the tip surface, and close to the tip of the cutting tool attached to the mounting hole. It is characterized by having a cover member that extends .

請求項2の発明は、先端面に開口し、刃具を取り付け可能な装着穴と、該装着穴に連通するとともに基端面に開口するクランプ穴とを有し、工作機械の主軸に取り付けられる工具ホルダにおいて、該工具ホルダは、前記先端面に開口し、前記クランプ穴に連通するよう形成された吸引穴を有し、前記先端面と前記刃具の先端との間に、かつ前記工具ホルダと共に回転するように設けられ、前記工具ホルダの回転に伴って空気を前記吸引穴に向けて加圧送風する羽根部材を備えたことを特徴としている。 According to a second aspect of the present invention, there is provided a tool holder that is attached to a spindle of a machine tool and has a mounting hole that opens to a front end surface and can be attached to a cutting tool, and a clamp hole that communicates with the mounting hole and opens to a base end surface. The tool holder has a suction hole that opens to the tip surface and communicates with the clamp hole , and rotates with the tool holder between the tip surface and the tip of the cutting tool. And a blade member that pressurizes and blows air toward the suction hole as the tool holder rotates .

請求項3の発明は、請求項1に記載の工具ホルダにおいて、前記先端面と前記刃具の先端との間に、かつ前記工具ホルダと共に回転するように設けられ、前記工具ホルダの回転に伴って空気を前記吸引穴に向けて加圧送風する羽根部材を備えたことを特徴としている。 Invention of Claim 3 is provided in the tool holder of Claim 1 so that it may rotate between the said front end surface and the front-end | tip of the said blade tool, and with the said tool holder, and with rotation of the said tool holder It is characterized by including a blade member that pressurizes and blows air toward the suction hole.

請求項1の発明では、吸引穴を、工具ホルダの先端面に開口し、クランプ穴と連通するように形成したので、切削点から吸引穴の開口までの距離が小さくなり、刃先に近い位置での吸引が可能となり、吸引効率を向上できる。また、刃具自体ではなく、工具ホルダに吸引穴を形成しているので、小径の刃具の場合でも必要な断面積を有する吸引穴を設けることができ、吸引効率を向上できる。   In the first aspect of the present invention, since the suction hole is formed in the tip surface of the tool holder so as to communicate with the clamp hole, the distance from the cutting point to the opening of the suction hole is reduced, and at a position close to the cutting edge. As a result, suction efficiency can be improved. In addition, since the suction hole is formed in the tool holder, not the cutting tool itself, a suction hole having a necessary cross-sectional area can be provided even in the case of a small-diameter cutting tool, and suction efficiency can be improved.

また、工具ホルダの先端面の周囲を囲むとともに、刃具の先端付近まで延びるカバー部材を備えたので、切削粉が発生する切削点付近の流速を高めることができ、吸引効率をより一層向上できる。 Moreover, since the cover member surrounding the tip surface of the tool holder and extending to the vicinity of the tip of the cutting tool is provided, the flow velocity near the cutting point where the cutting powder is generated can be increased, and the suction efficiency can be further improved.

請求項の発明では、工具ホルダの先端面と刃具の先端との間に工具ホルダと共に回転する羽根部材を設けたので、切削加工に伴って羽根部材が回転することにより、切削点近傍の空気を吸引穴に向けて加圧送風し、切削粉を確実に吸引穴に送り込むことができ、吸引効率をさらに向上できる。 In the invention of claim 2 , since the blade member that rotates together with the tool holder is provided between the tip surface of the tool holder and the tip of the cutting tool, the blade member rotates with the cutting process, so that the air near the cutting point is Can be pressurized and blown toward the suction hole to reliably feed the cutting powder into the suction hole, and the suction efficiency can be further improved.

本発明の実施例1に係る工具ホルダを備えた主軸装置の断面側面図である。It is a cross-sectional side view of the main spindle apparatus provided with the tool holder which concerns on Example 1 of this invention. 前記主軸装置の工具ホルダのクランプ部分の断面側面図である。It is a cross-sectional side view of the clamp part of the tool holder of the said spindle apparatus. 前記工具ホルダの一部断面側面図である。It is a partial cross section side view of the said tool holder. 前記工具ホルダに装着される刃具の側面図及びA矢視図である。It is the side view and A arrow directional view of the cutting tool with which the said tool holder is mounted | worn. 前記工具ホルダの断面底面図(図3のV-V線断面図)である。FIG. 5 is a cross-sectional bottom view of the tool holder (a cross-sectional view taken along line VV in FIG. 3). 前記工具ホルダの断面底面図(図3のVI-VI線断面図)である。FIG. 4 is a cross-sectional bottom view of the tool holder (a cross-sectional view taken along line VI-VI in FIG. 3). 前記工具ホルダの変形例を示す一部断面側面図である。It is a partial cross section side view which shows the modification of the said tool holder.

以下、本発明の実施例を添付図面に基づいて説明する。図1〜図6は、本発明の実施例1に係る工具ホルダを説明するための図である。   Embodiments of the present invention will be described below with reference to the accompanying drawings. FIGS. 1-6 is a figure for demonstrating the tool holder which concerns on Example 1 of this invention.

図において、1は縦型マシニングセンタ等の工作機械に備えられた主軸装置である。この主軸装置1は、コラムにより支持された主軸頭2と、該主軸頭2により回転自在に支持された主軸3と、該主軸3の先端部に支持された工具ホルダ4と、該工具ホルダ4を前記主軸3にクランプ・アンクランプするクランプ機構5とを備えている。   In the figure, reference numeral 1 denotes a spindle device provided in a machine tool such as a vertical machining center. The spindle device 1 includes a spindle head 2 supported by a column, a spindle 3 rotatably supported by the spindle head 2, a tool holder 4 supported at a tip portion of the spindle 3, and the tool holder 4. And a clamping mechanism 5 for clamping and unclamping to the main shaft 3.

前記主軸3は、軸心に貫通穴3aを有する筒体で構成されている。前記主軸3の下部及び上部は、下軸受6a及び上軸受6bを介して前記主軸頭2により回転自在に支持されている。また前記主軸3の貫通穴3aの下端部にはテーパ穴3bが形成され、該テーパ穴3bに前記工具ホルダ4が嵌合固定される。なお、図示していないが、前記主軸3と主軸頭2との間には該主軸3を回転駆動する電動モータが配設されている。   The main shaft 3 is formed of a cylindrical body having a through hole 3a at the axis. A lower part and an upper part of the main shaft 3 are rotatably supported by the main shaft head 2 via a lower bearing 6a and an upper bearing 6b. A tapered hole 3b is formed at the lower end of the through hole 3a of the main shaft 3, and the tool holder 4 is fitted and fixed in the tapered hole 3b. Although not shown, an electric motor that rotationally drives the main shaft 3 is disposed between the main shaft 3 and the main shaft head 2.

前記クランプ機構5は、前記主軸3の貫通穴3a内に挿入配置され、前記工具ホルダ4を前記テーパ穴3bにクランプし、又はアンクランプするドローバー7と、該ドローバー7をアンクランプ方向に移動させる駆動機構(シリンダ機構)8とを有する。   The clamp mechanism 5 is inserted and disposed in the through hole 3a of the main shaft 3, and the draw bar 7 that clamps or unclamps the tool holder 4 in the tapered hole 3b, and moves the draw bar 7 in the unclamping direction. And a drive mechanism (cylinder mechanism) 8.

前記ドローバー7は、前記テーパ穴3bの近傍に配置された複数の係合爪11を前記工具ホルダ4の上端部に形成され係合段部14aに係合させる筒状の係合駆動パイプ9と、該係合駆動パイプ9に接続された筒状のドローバー本体10とを有する。   The draw bar 7 is formed with a cylindrical engagement drive pipe 9 that is formed at the upper end portion of the tool holder 4 and engages with an engagement step portion 14a. The engagement claw 11 is disposed near the tapered hole 3b. And a cylindrical drawbar body 10 connected to the engagement drive pipe 9.

前記係合爪11はこれの基端部11aを中心に前端の爪部11bを径方向に拡開可能に構成されている。前記係合駆動パイプ9の前端にはカム9aが形成され、該カム9aは前記爪部11bの内面に摺接しており、後進位置(図1上方位置)にあるとき該爪部11bを係合段部14aに係合させ、前進位置(図1下方位置)にあるとき前記係合を解除する。   The engaging claw 11 is configured such that the front end claw portion 11b can be expanded in the radial direction around the base end portion 11a. A cam 9a is formed at the front end of the engagement drive pipe 9. The cam 9a is in sliding contact with the inner surface of the claw portion 11b, and engages the claw portion 11b when it is in a reverse position (upward position in FIG. 1). Engage with the stepped portion 14a and release the engagement when in the forward position (downward position in FIG. 1).

前記ドローバー本体10と主軸3の貫通穴3aとの間には多数の皿ばね15が介在されている。前記皿ばね15は前記ドローバー7をクランプ方向(図1上方向)に付勢している。この付勢力により係合駆動パイプ9がクランプ方向に移動すると、前記カム9aが爪部11bを拡開させて前記係合段部14aに係合させ、工具ホルダ4のテーパ部14bを前記テーパ穴3bに強固に嵌合させる。   A large number of disc springs 15 are interposed between the draw bar main body 10 and the through hole 3 a of the main shaft 3. The disc spring 15 biases the draw bar 7 in the clamping direction (upward in FIG. 1). When the engagement drive pipe 9 is moved in the clamping direction by this urging force, the cam 9a expands the claw portion 11b to engage the engagement step portion 14a, and the taper portion 14b of the tool holder 4 is moved to the taper hole. Fit firmly into 3b.

前記駆動機構8は、前記主軸頭2の上端部にボルト8aにより締め付け固定されたケーシング18aと、蓋部材18bとで形成されたシリンダ穴18c内にピストン18dを挿入配置した構造のものである。油室bに油圧が供給されると、このピストン18dが図1下方に移動し、押圧プレート24を介して前記ドローバー7を前記皿ばね15の付勢力に抗してアンクランプ方向(図1下方向)に移動させ、前記工具ホルダ4のテーパ部14bとテーパ穴3bとの嵌合を解除する。   The drive mechanism 8 has a structure in which a piston 18d is inserted and arranged in a cylinder hole 18c formed by a casing 18a fastened and fixed to the upper end portion of the spindle head 2 by a bolt 8a and a lid member 18b. When hydraulic pressure is supplied to the oil chamber b, the piston 18d moves downward in FIG. 1, and the draw bar 7 is unclamped against the urging force of the disc spring 15 via the pressing plate 24 (lower in FIG. 1). And the fitting between the tapered portion 14b of the tool holder 4 and the tapered hole 3b is released.

前記ドローバー7の下部を構成する係合駆動パイプ9の上端部9bは、上部を構成するドローバー本体10の下端部10a内に挿入され、これの内面にねじ込まれている。   An upper end portion 9b of the engagement drive pipe 9 constituting the lower portion of the draw bar 7 is inserted into a lower end portion 10a of the draw bar main body 10 constituting the upper portion and screwed into the inner surface thereof.

また前記係合駆動パイプ9のカム9a内には、連結パイプ17が同軸をなすように挿入されており、該連結パイプ17はナット部材17aにより工具ホルダ4内に固定されている。   A connecting pipe 17 is inserted into the cam 9a of the engagement drive pipe 9 so as to be coaxial, and the connecting pipe 17 is fixed in the tool holder 4 by a nut member 17a.

さらにまた前記ドローバー本体10の上端部10bは、前記駆動機構8のインナパイプ16の下端部16a内に挿入されている。このインナパイプ16は前記蓋部材18b内に挿入され、かつ該蓋部材18bに固定されている。   Furthermore, the upper end portion 10 b of the draw bar main body 10 is inserted into the lower end portion 16 a of the inner pipe 16 of the drive mechanism 8. The inner pipe 16 is inserted into the lid member 18b and fixed to the lid member 18b.

前記インナパイプ16と前記ドローバー本体10の上端部10bとの間には、外部から空気がインナパイプ16内に吸引されるのを回避するためのシール機構21が設けられている。   A seal mechanism 21 is provided between the inner pipe 16 and the upper end portion 10 b of the draw bar main body 10 to prevent air from being sucked into the inner pipe 16 from the outside.

そして前記連結パイプ17,ドローバー7及びインナパイプ16の軸芯部には、これらを軸方向に貫通する第4吸引穴a4が形成されている。該第4吸引穴a4は、前記連結パイプ17内部分、係合駆動パイプ9内部分、ドローバー本体10内部分及びインナパイプ16内部分共に略同じ径に設定されている。また、前記インナパイプ16の上端部16bには、吸引装置16cが接続されている。   A fourth suction hole a4 is formed in the axial core portion of the connecting pipe 17, the draw bar 7, and the inner pipe 16 so as to penetrate them in the axial direction. The fourth suction hole a4 is set to have substantially the same diameter in the connection pipe 17, the engagement drive pipe 9, the draw bar main body 10, and the inner pipe 16. A suction device 16 c is connected to the upper end portion 16 b of the inner pipe 16.

前記工具ホルダ4は、刃具12を保持する保持部19と、前記主軸3にクランプされるクランプ部14との材質の異なる2部品を圧入等で結合した構造を有する。前記保持部19は、基部19dと、ここから刃具12の切れ刃12aに近接するよう下方に延びる嵌合部19cとを有する。この嵌合部19cは、これの先端面19aに開口するようその軸芯に設けられ、前記刃具12が焼嵌め等により固着される装着穴19bを有する。前記クランプ部14は、これの基端面14cに開口するようその軸芯に設けられ、前記係合爪11,連結パイプ17等が挿入されるクランプ穴14dを有する。前記保持部19の装着穴19bは該保持部19の軸芯に形成された第2吸引穴a2を介して前記クランプ穴14dに連通している。   The tool holder 4 has a structure in which two parts made of different materials, such as a holding part 19 that holds the cutting tool 12 and a clamp part 14 that is clamped to the main shaft 3, are joined by press-fitting or the like. The holding part 19 has a base part 19d and a fitting part 19c extending downward from the base part 19d so as to be close to the cutting edge 12a of the cutting tool 12. The fitting portion 19c is provided on the shaft core so as to open to the tip end surface 19a thereof, and has a mounting hole 19b to which the blade 12 is fixed by shrink fitting or the like. The clamp portion 14 is provided on the shaft core so as to open to the base end surface 14c thereof, and has a clamp hole 14d into which the engagement claw 11, the connection pipe 17 and the like are inserted. The mounting hole 19b of the holding part 19 communicates with the clamp hole 14d through a second suction hole a2 formed in the axial center of the holding part 19.

また前記刃具12は、切れ刃12a部分とシャンク部12bとからなり、該シャンク部12bの軸芯には、第1吸引穴a1が形成されている。そして前記切れ刃12aとシャンク部12bとの境界部分には、前記第1吸引穴a1に連通する2つの吸引口12c,12cが形成されている。前記第1吸引穴a1は、前記保持部19に形成された第2吸引穴a2を介して前記第4吸引穴a4に連通している。   The cutting tool 12 includes a cutting edge 12a portion and a shank portion 12b, and a first suction hole a1 is formed in the axial center of the shank portion 12b. Two suction ports 12c and 12c communicating with the first suction hole a1 are formed at a boundary portion between the cutting edge 12a and the shank portion 12b. The first suction hole a1 communicates with the fourth suction hole a4 via a second suction hole a2 formed in the holding portion 19.

そして前記保持部19には、前記先端面19aに開口する6個の第3吸引穴a3が前記装着穴19bを囲むように形成されている。この第3吸引穴a3は、前記保持部19の略全長に渡る長さを有し、前記嵌合部19cの上端部付近で軸芯側に傾斜して前記第2吸引穴a2に連通している。   The holding portion 19 is formed with six third suction holes a3 that open to the distal end surface 19a so as to surround the mounting hole 19b. The third suction hole a3 has a length that covers substantially the entire length of the holding portion 19, and is inclined toward the axial center near the upper end portion of the fitting portion 19c and communicates with the second suction hole a2. Yes.

なお、前記第3吸引穴a3は、図7に示すように、前記保持部19の先端面19aから前記第2吸引穴a2方向へ傾斜させて形成することにより、前記先端面19aに近い部分で前記第2吸引穴a2に連通させても良い。このようにすれば、第3吸引穴a3が短くなった分、該部分での流路抵抗を低減できる。   As shown in FIG. 7, the third suction hole a <b> 3 is formed so as to be inclined from the front end surface 19 a of the holding portion 19 toward the second suction hole a <b> 2, so that the third suction hole a <b> 3 is close to the front end surface 19 a. You may make it connect with the said 2nd suction hole a2. If it does in this way, the flow path resistance in this part can be reduced by the part for which the 3rd suction hole a3 became short.

前記工具ホルダ4の保持部19には、前記嵌合部19cの周囲を囲むとともに、前記刃具12の切れ刃12a付近まで延びるカバー部材25が配設されている。このカバー部材25は、前記嵌合部19c部分を囲む筒部25aと、該筒部25aの基端部に形成されたフランジ部25bとを有し、該フランジ部25bが前記保持部19の基部19dにねじ込まれたナット部材26により前記保持部19に固定されている。また前記筒部25aの下端部には、ここからさらに下方に延びる小径部25cが形成されている。この小径部25cは前記刃具12の周囲を囲んでいる。   The holding part 19 of the tool holder 4 is provided with a cover member 25 that surrounds the periphery of the fitting part 19c and extends to the vicinity of the cutting edge 12a of the cutting tool 12. The cover member 25 includes a cylindrical portion 25 a that surrounds the fitting portion 19 c and a flange portion 25 b that is formed at a proximal end portion of the cylindrical portion 25 a, and the flange portion 25 b is a base portion of the holding portion 19. It is fixed to the holding part 19 by a nut member 26 screwed into 19d. Further, a small diameter portion 25c extending further downward is formed at the lower end portion of the cylindrical portion 25a. The small diameter portion 25c surrounds the periphery of the cutting tool 12.

前記工具ホルダ4には、羽根車(羽根部材)27が、該工具ホルダ4の先端面19aと前記刃具12の先端との間に、好ましくは前記カバー部材25の小径部25c内に位置するように、かつ前記工具ホルダ4と共に回転するように設けられている。前記羽根車27は、鉄等の金属製のものであり、リング状のボス部27aと、該ボス部27aから放射状に延びるように該ボス部27aに一体形成された羽根27bとを有する。前記ボス部27aが焼嵌め等により前記刃具12のシャンク部12bに固着されている。ここで前記羽根車27の羽根27bの枚数や形状の設定に当たっては、前記第3吸引穴a3を可能な限り覆わないようにするのが好ましい。   In the tool holder 4, an impeller (blade member) 27 is located between the tip surface 19 a of the tool holder 4 and the tip of the blade 12, preferably in the small diameter portion 25 c of the cover member 25. And to rotate together with the tool holder 4. The impeller 27 is made of metal such as iron and has a ring-shaped boss portion 27a and a blade 27b integrally formed on the boss portion 27a so as to extend radially from the boss portion 27a. The boss portion 27a is fixed to the shank portion 12b of the blade 12 by shrink fitting or the like. Here, when setting the number and shape of the blades 27b of the impeller 27, it is preferable not to cover the third suction hole a3 as much as possible.

なお、前記羽根車27は、前記カバー部材25あるいは前記工具ホルダ4の保持部19に取り付けてもよく、あるいはカバー部材25と一体に形成しても良い。   The impeller 27 may be attached to the cover member 25 or the holding portion 19 of the tool holder 4 or may be formed integrally with the cover member 25.

本実施例では、刃具12によりワークを切削するとともに、吸引装置16cにより前記刃具12による切削点付近の空気が吸引される。これにより前記切削点にて発生する切削粉は、第1吸引穴a1,第3吸引穴a3から吸引され、第2吸引穴a2,第4吸引穴a4を通って前記吸引装置16cに吸引される。   In this embodiment, the workpiece is cut by the cutting tool 12, and the air near the cutting point by the cutting tool 12 is sucked by the suction device 16c. Thereby, the cutting powder generated at the cutting point is sucked from the first suction hole a1 and the third suction hole a3, and sucked to the suction device 16c through the second suction hole a2 and the fourth suction hole a4. .

そして本実施例では、前記第3吸引穴a3を、工具ホルダ4の前記切削点に近接する先端面19aに開口するように形成したので、切削点から第3吸引穴a3の開口までの距離が小さくなり、切削点に近い位置での吸引が可能となり、それだけ吸引効率を向上できる。   In the present embodiment, since the third suction hole a3 is formed so as to open in the tip surface 19a close to the cutting point of the tool holder 4, the distance from the cutting point to the opening of the third suction hole a3 is It becomes small and suction at a position close to the cutting point is possible, and the suction efficiency can be improved accordingly.

また、刃具12に設けた第1吸引穴a1に加えて、工具ホルダ4に第3吸引穴a3を形成しているので、刃具が小径であるために、第1吸引穴を小径にせざるを得ない場合、あるいは刃具に吸引穴を形成できない場合でも、第3吸引穴a3により必要な通路面積を確保でき、吸引効率を向上できる。   Further, since the third suction hole a3 is formed in the tool holder 4 in addition to the first suction hole a1 provided in the cutting tool 12, since the cutting tool has a small diameter, the first suction hole must be reduced in diameter. Even when there is no suction hole or when the suction hole cannot be formed in the cutting tool, a necessary passage area can be secured by the third suction hole a3, and suction efficiency can be improved.

また、工具ホルダ4の先端部付近を囲むとともに、刃具12の切れ刃12a付近まで延びるカバー部材25を備えたので、切削粉が発生する切削点付近の流速を高めることができ、吸引効率をより一層向上できる。   Moreover, since the cover member 25 surrounding the tip end portion of the tool holder 4 and extending to the vicinity of the cutting edge 12a of the cutting tool 12 is provided, the flow velocity near the cutting point where the cutting powder is generated can be increased, and the suction efficiency can be further increased. It can be further improved.

さらにまた、工具ホルダ4の先端面と刃具12の先端との間に工具ホルダ4と共に回転する羽根車27を設けたので、切削加工に伴って羽根27bが回転することにより、切削点の周囲の空気を第3吸引穴a3に向けて加圧送風し、切削粉を確実に第3吸引穴a3に送り込むことができ、吸引効率をさらに向上できる。   Furthermore, since the impeller 27 that rotates together with the tool holder 4 is provided between the tip surface of the tool holder 4 and the tip of the cutting tool 12, the blade 27b rotates along with the cutting process, so The air is pressurized and blown toward the third suction hole a3, and the cutting powder can be reliably fed into the third suction hole a3, so that the suction efficiency can be further improved.

1 工作機械
3 主軸
4 工具ホルダ
12 刃具
14d クランプ穴
19a 先端面
19b 装着穴
25 カバー部材
27 羽根車(羽根部材)
a3 第3吸引穴(吸引穴)
DESCRIPTION OF SYMBOLS 1 Machine tool 3 Spindle 4 Tool holder 12 Cutting tool 14d Clamp hole 19a Tip surface 19b Mounting hole 25 Cover member 27 Impeller (blade member)
a3 Third suction hole (suction hole)

Claims (3)

先端面に開口し、刃具を取り付け可能な装着穴と、該装着穴に連通するとともに基端面に開口するクランプ穴とを有し、工作機械の主軸に取り付けられる工具ホルダにおいて、
該工具ホルダは、前記先端面に開口し、前記クランプ穴に連通するよう形成された吸引穴を有し、
前記先端面の周囲を囲むとともに前記装着穴に取り付けられた刃具の先端付近まで延びるカバー部材を備えた
ことを特徴とする工具ホルダ。
In a tool holder attached to a spindle of a machine tool, having a mounting hole that opens to a distal end surface and that can be attached to a cutting tool, and a clamp hole that communicates with the mounting hole and opens to a proximal end surface.
The tool holder has a suction hole that opens to the tip surface and is formed to communicate with the clamp hole;
A tool holder comprising a cover member that surrounds the periphery of the distal end surface and extends to the vicinity of the distal end of a cutting tool attached to the mounting hole .
先端面に開口し、刃具を取り付け可能な装着穴と、該装着穴に連通するとともに基端面に開口するクランプ穴とを有し、工作機械の主軸に取り付けられる工具ホルダにおいて、
該工具ホルダは、前記先端面に開口し、前記クランプ穴に連通するよう形成された吸引穴を有し、
前記先端面と前記刃具の先端との間に、かつ前記工具ホルダと共に回転するように設けられ、前記工具ホルダの回転に伴って空気を前記吸引穴に向けて加圧送風する羽根部材を備えた
ことを特徴とする工具ホルダ。
In a tool holder attached to a spindle of a machine tool, having a mounting hole that opens to a distal end surface and that can be attached to a cutting tool, and a clamp hole that communicates with the mounting hole and opens to a proximal end surface.
The tool holder has a suction hole that opens to the tip surface and is formed to communicate with the clamp hole;
A blade member is provided between the tip surface and the tip of the cutting tool so as to rotate together with the tool holder, and includes a blade member that pressurizes and blows air toward the suction hole as the tool holder rotates. <br/> A tool holder characterized by that.
請求項1に記載の工具ホルダにおいて、
前記先端面と前記刃具の先端との間に、かつ前記工具ホルダと共に回転するように設けられ、前記工具ホルダの回転に伴って空気を前記吸引穴に向けて加圧送風する羽根部材を備えた
ことを特徴とする工具ホルダ。
The tool holder according to claim 1, wherein
A blade member is provided between the tip surface and the tip of the cutting tool so as to rotate together with the tool holder, and includes a blade member that pressurizes and blows air toward the suction hole as the tool holder rotates. A tool holder characterized by that.
JP2009144307A 2009-06-17 2009-06-17 Tool holder Expired - Fee Related JP5367473B2 (en)

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