JP4925777B2 - Turret with coolant supply device - Google Patents

Turret with coolant supply device Download PDF

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JP4925777B2
JP4925777B2 JP2006254048A JP2006254048A JP4925777B2 JP 4925777 B2 JP4925777 B2 JP 4925777B2 JP 2006254048 A JP2006254048 A JP 2006254048A JP 2006254048 A JP2006254048 A JP 2006254048A JP 4925777 B2 JP4925777 B2 JP 4925777B2
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tool
flow path
shaped member
rod
coolant
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JP2008073792A (en
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保 勝田
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Citizen Holdings Co Ltd
Citizen Watch Co Ltd
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Citizen Holdings Co Ltd
Citizen Watch Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

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  • Auxiliary Devices For Machine Tools (AREA)
  • Cutting Tools, Boring Holders, And Turrets (AREA)

Description

本発明は、内部流路を備えた工具にクーラントを供給する装置を備えた刃物台に関する。   The present invention relates to a tool post including a device for supplying coolant to a tool having an internal flow path.

一般に、工作機械による切削加工等においては、切削抵抗や摩擦により工具及びワークの温度が上昇する。この温度上昇は工具を劣化又は損傷させたり加工精度を低下させたりする虞があるため、切削部位にクーラントの供給が行われる。クーラントの供給手段及び方法は様々であるが、工具にクーラント用の内部流路を設けてクーラントを供給するやり方がある。クーラント用内部流路を有する工具は種々のものが公知であり、例えば特許文献1及び2等に記載されている。   Generally, in cutting with a machine tool or the like, the temperature of the tool and the workpiece rises due to cutting resistance and friction. Since this temperature rise may deteriorate or damage the tool or lower the machining accuracy, coolant is supplied to the cutting site. There are various coolant supply means and methods, and there is a method of supplying coolant by providing an internal flow path for coolant in the tool. Various tools having an internal coolant channel are known, and are described in, for example, Patent Documents 1 and 2.

また工具を保持する刃物台としても種々のものが公知であるが、例えば特許文献3及び4は、クシ歯型旋盤用の刃物台及びタレット刃物台を開示する。   Various turrets for holding a tool are known. For example, Patent Documents 3 and 4 disclose turrets and turret turrets for comb-type lathes.

特開平10−296506号公報JP-A-10-296506 特開2006−55916号公報JP 2006-55916 A 特開平8−39303号公報JP-A-8-39303 特開2002−103178号公報JP 2002-103178 A

各工具に供給するクーラントの圧力は、用途によっては数MPaの高圧になる。従ってクーラントを工具の後端部からその内部流路内に供給する際には、クーラントの漏れを防止するために、ねじ込み等の手間のかかる接続手段が採用されていた。また特許文献4に記載の構成では、タレット面板の流通孔出口に噴射ノズルを設けるか、あるいは工具後端部を保持する工具ホルダにもクーラント供給孔を形成する必要があり、やや構造が複雑となる。   The pressure of the coolant supplied to each tool becomes a high pressure of several MPa depending on the application. Therefore, when supplying the coolant from the rear end portion of the tool into the internal flow path, time-consuming connecting means such as screwing has been employed to prevent leakage of the coolant. Further, in the configuration described in Patent Document 4, it is necessary to provide an injection nozzle at the outlet of the flow hole of the turret face plate, or to form a coolant supply hole in a tool holder that holds the rear end of the tool, and the structure is somewhat complicated. Become.

そこで本発明は、クーラントの漏れの防止を確保した上で、クーラントの供給装置と工具とを簡易な構成で容易に接続することができる刃物台を提供することを目的とする。   Therefore, an object of the present invention is to provide a tool post that can easily connect a coolant supply device and a tool with a simple configuration while ensuring prevention of coolant leakage.

上記目的を達成するために、請求項1に記載の発明は、クーラント用の貫通孔を備えた工具を保持し、保持された前記工具の前記貫通孔に前記クーラントを供給する流路を有する刃物台であって、前記刃物台の本体に対して移動可能に設けられる移動体を備え、該移動体に前記流路を形成し、前記移動体を、前記流路と前記貫通孔とが連通するように、前記工具の前記貫通孔に向けて押圧する押付け手段を設け、前記押付け手段が、前記移動体の移動方向に交差し、前記本体に回転自在に支持された棒状部材を有し、該棒状部材の周面が前記移動体に当接し、該棒状部材の回転によって前記棒状部材がカム機構として作用し、前記周面によって前記移動体を押圧するように構成されたことを特徴とする、刃物台を提供する。 In order to achieve the above object, the invention according to claim 1 is a cutter having a flow path for holding a tool having a through hole for coolant and supplying the coolant to the through hole of the held tool. A moving body that is movably provided with respect to the main body of the tool post, the flow path is formed in the moving body, and the flow path and the through hole communicate with the moving body. The pressing means for pressing toward the through hole of the tool is provided, the pressing means has a rod-like member that intersects the moving direction of the moving body and is rotatably supported by the main body, The circumferential surface of the rod-shaped member is in contact with the moving body, and the rod-shaped member acts as a cam mechanism by the rotation of the rod-shaped member, and the movable body is pressed by the circumferential surface , Provide turret.

請求項2に記載の発明は、請求項1に記載の刃物台において、前記棒状部材の押圧部分は、その径方向断面において円の一部を切除した形状を有する、刃物台を提供する。 The invention according to claim 2 provides the tool rest according to claim 1, wherein the pressing portion of the rod-shaped member has a shape obtained by cutting a part of a circle in a radial cross section thereof.

請求項3に記載の発明は、請求項に記載の刃物台において、前記棒状部材の押圧部分は、その径方向断面において円形を有し、前記棒状部材の回転軸とは偏心した軸を中心に回転するように構成される、刃物台を提供する。 According to a third aspect of the present invention, in the tool post according to the first aspect , the pressing portion of the rod-shaped member has a circular shape in its radial cross section, and is centered on an axis that is eccentric from the rotation axis of the rod-shaped member. A tool post configured to rotate is provided.

請求項4に記載の発明は、請求項1〜3のいずれか1項に記載の刃物台において、前記本体は、前記クーラント供給装置が接続される第1ブロック部材と前記工具ホルダが接続される第2ブロック部材とから構成され、前記第1及び第2ブロック部材は、該第1及び第2部材に形成された内部流路の双方に流体連通する貫通孔を備えたプラグによって互いに連結され、前記内部流路を介して前記移動体の流路に流体を供給する、刃物台を提供する。 The invention according to claim 4 is the tool post according to any one of claims 1 to 3 , wherein the main body is connected to the first block member to which the coolant supply device is connected and the tool holder. A second block member, and the first and second block members are connected to each other by a plug having a through hole in fluid communication with both of the internal flow paths formed in the first and second members, A tool post for supplying fluid to the flow path of the moving body via the internal flow path is provided.

請求項5に記載の発明は、請求項に記載の刃物台において、前記プラグは、前記貫通孔と同軸方向に延びる略円筒形状を有し、該プラグの径方向外側部分において前記第1及び第2ブロック部材に当接してそれぞれシールを形成するOリングを有する、刃物台を提供する。 According to a fifth aspect of the present invention, in the tool post according to the fourth aspect , the plug has a substantially cylindrical shape extending coaxially with the through hole, and the first and A tool post having an O-ring that abuts a second block member to form a seal is provided.

請求項6に記載の発明は、請求項1〜5のいずれか1項に記載の刃物台において、前記本体は前記移動体の流路に流体を供給する内部流路を複数有し、前記内部流路の各々は前記流路との連通を開閉自在に遮断する閉止部材を有する、刃物台を提供する。 The invention according to claim 6 is the tool post according to any one of claims 1 to 5, wherein the main body has a plurality of internal flow paths for supplying fluid to the flow path of the movable body, Each of the flow paths provides a tool post having a closing member that blocks communication with the flow path so as to be freely opened and closed .

本発明によれば、工具を保持した工具ホルダをクーラント供給装置に取り付けた後に簡易な構造の押付け手段を作動させることにより、クーラントの漏れを確実に防止することができる。また工具後端部へのねじ込み等の面倒な作業も必要なく、工具交換等の作業の手間及び時間を大幅に短縮することができる。   According to the present invention, leakage of the coolant can be reliably prevented by operating the pressing means having a simple structure after the tool holder holding the tool is attached to the coolant supply device. In addition, troublesome work such as screwing into the rear end of the tool is not necessary, and the labor and time of work such as tool change can be greatly reduced.

押付け手段は、簡易な構造のカム機構を有することが有利であり、例えばその軸方向が移動体の移動方向と略直交するように構成された棒状部材から構成可能である。その場合、棒状部材の移動体に当接する部分が、該棒状部材の回転によってカム機構として作用する。   The pressing means advantageously has a cam mechanism with a simple structure, and can be constituted by, for example, a rod-shaped member configured such that its axial direction is substantially perpendicular to the moving direction of the moving body. In that case, the portion of the rod-shaped member that contacts the moving body acts as a cam mechanism by the rotation of the rod-shaped member.

またブロック部材は、クーラント供給装置が接続される第1ブロック部材と工具ホルダが接続される第2ブロック部材とに分割可能であることが干渉回避や作製上の容易さから有利である。その場合、第1及び第2ブロック部材は、第1及び第2部材に形成された内部流路の双方に流体連通する貫通孔を備えたプラグによって互いに連結可能である。さらにプラグを、貫通孔と同軸方向に延びる略円筒形状に構成し、第1及び第2部材に当接してそれぞれシールを形成するOリングをプラグの外周部分に設けることにより、クーラントの液圧が高い場合であっても確実なシールを形成することができる。   In addition, it is advantageous from the viewpoint of avoidance of interference and ease of manufacture that the block member can be divided into a first block member to which the coolant supply device is connected and a second block member to which the tool holder is connected. In this case, the first and second block members can be connected to each other by a plug having a through hole that is in fluid communication with both of the internal flow paths formed in the first and second members. Furthermore, the plug is configured in a substantially cylindrical shape extending coaxially with the through-hole, and an O-ring that contacts the first and second members to form a seal is provided on the outer peripheral portion of the plug, so that the hydraulic pressure of the coolant is reduced. Even if it is high, a reliable seal can be formed.

以下、図面を参照しながら本発明を詳細に説明する。
図1及び図2はそれぞれ、図示しない工作機械にて使用される本発明に係る刃物台10の好適な実施形態の構成を示す正面図及び上面図である。刃物台10は、概略図示したクーラント供給装置12から延びる3つの供給管14a、14b及び14cが接続される第1ブロック部材16と、第1ブロック部材16に接続される第2ブロック部材18と、第2ブロック部材18と着脱可能に構成された工具ホルダ20とを有する。工具ホルダ20は少なくとも1つの工具を保持できるが、一般には複数(図示例では5つ)の工具22を保持可能であり、加工すべきワークWの形状等に応じて適宜工具を使い分けることができる。
Hereinafter, the present invention will be described in detail with reference to the drawings.
FIGS. 1 and 2 are a front view and a top view, respectively, showing a configuration of a preferred embodiment of a tool post 10 according to the present invention used in a machine tool (not shown). The tool post 10 includes a first block member 16 to which three supply pipes 14 a, 14 b and 14 c extending from the coolant supply device 12 schematically illustrated are connected, a second block member 18 connected to the first block member 16, and It has the 2nd block member 18 and the tool holder 20 comprised so that attachment or detachment was possible. The tool holder 20 can hold at least one tool, but can generally hold a plurality (five in the illustrated example) of tools 22 and can use the tools appropriately according to the shape of the workpiece W to be processed. .

クーラント供給管14a、14b及び14cはそれぞれ公知の継手24a、24b及び24cを用いて第1ブロック部材16に接続され、例えばそれぞれ高圧(例えば約7MPa)、中圧(例えば約1.5MPa)及び低圧(例えば工具先端から垂れ流しとなるような圧)のクーラントを供給することができる。また後述するように、使用する供給管の切替えは継手の付替え等の作業を要することなく行うことができる。なお第1及び第2ブロックは一体部材であってもよいが、供給管と工具又はワークとの干渉を避けるために図2のようなL字形状を全体として形成することが好ましい。   The coolant supply pipes 14a, 14b, and 14c are connected to the first block member 16 using known joints 24a, 24b, and 24c, respectively. For example, high pressure (for example, about 7 MPa), medium pressure (for example, about 1.5 MPa), and low pressure, respectively. Coolant can be supplied (eg, pressure that causes dripping from the tip of the tool). Further, as will be described later, the supply pipe to be used can be switched without requiring a work such as replacement of the joint. The first and second blocks may be integrated members, but it is preferable to form an L-shape as a whole as shown in FIG. 2 in order to avoid interference between the supply pipe and the tool or workpiece.

図3は図1のA−A断面図であり、図4は図2のB−B断面図である。先ず図4に示すように、各供給管から供給されたクーラントは第1ブロック16内の第1流路26a、26b及び26c内を流れ、プラグ28a、28b及び28cを介して第2ブロック18に導かれる。プラグ28a、28b及び28cはそれぞれ、第1ブロック16の第1流路26a、26b及び26cと第2ブロック18内の第2流路30a、30b及び30cとを流体的に連通するものである。さらにプラグ28a、28b及び28cは、貫通孔すなわち流路32a、32b及び32cをそれぞれ備えた略円筒形状を有し、その外周に第1及び第2Oリング34a及び36a、34b及び36b、並びに34c及び36cをそれぞれ有する。第1Oリング34a、34b及び34cは、第1ブロック16と第2ブロック18との接合面38ではなく、プラグの円筒形状の径方向外側部分において第1ブロック16に当接すなわちシールを形成する。同様に第2Oリング36a、36b及び36cは、プラグの円筒形状の径方向外側部分において第2ブロック18に当接すなわちシールを形成する。このような構成によれば、クーラントの液圧はプラグを径方向外側に拡大する(すなわちOリングが潰れる)ように作用するので、クーラントが高圧であっても第1ブロック16と第2ブロック18との間でクーラントの漏れが生じることはない。さらに、上述のように各Oリングにおいて確実なシールが形成されるので、第1ブロック16と第2ブロック18との間の接合面38には面圧を生じさせる必要はなく、故に高い製作精度も要求されない。   3 is a cross-sectional view taken along the line AA in FIG. 1, and FIG. 4 is a cross-sectional view taken along the line BB in FIG. First, as shown in FIG. 4, the coolant supplied from each supply pipe flows in the first flow paths 26a, 26b and 26c in the first block 16, and reaches the second block 18 via the plugs 28a, 28b and 28c. Led. The plugs 28a, 28b, and 28c fluidly communicate the first flow paths 26a, 26b, and 26c of the first block 16 and the second flow paths 30a, 30b, and 30c in the second block 18, respectively. Further, the plugs 28a, 28b and 28c have a substantially cylindrical shape having through holes or flow paths 32a, 32b and 32c, respectively, and first and second O-rings 34a and 36a, 34b and 36b, and 34c and 36c. The first O-rings 34a, 34b, and 34c form abutment or seal with the first block 16 at the cylindrical radially outer portion of the plug, not at the joint surface 38 between the first block 16 and the second block 18. Similarly, the second O-rings 36a, 36b and 36c abut or form a seal with the second block 18 at the cylindrical radially outer portion of the plug. According to such a configuration, the hydraulic pressure of the coolant acts to expand the plug radially outward (that is, the O-ring is crushed). Therefore, even if the coolant is at a high pressure, the first block 16 and the second block 18 are used. There will be no leakage of coolant between them. Further, since a reliable seal is formed in each O-ring as described above, it is not necessary to generate a surface pressure on the joint surface 38 between the first block 16 and the second block 18, and thus high manufacturing accuracy. Is not required.

図3からわかるように、第2ブロック18の第2流路30a、30b及び30c内に導かれたクーラントのいずれを加工に使用するかは、各流路に設けられた閉止部材例えば止めネジ40a、40b及び40cによって規定される。すなわち、図5に詳細に示すように、使用しないクーラントに係る流路の止めネジ(図示例では止めネジ40a及び40b)は締め込まれて(図5では右へ移動)流路を閉じ、使用するクーラントに係る流路の止めネジ(図示例では止めネジ40c)は緩められて(図5では左へ移動)流路を開く。このようにいずれか1つの止めネジを緩めて他を締めることにより、要求される圧力のクーラントを工具に供給することができる。   As can be seen from FIG. 3, which of the coolant guided into the second flow paths 30a, 30b and 30c of the second block 18 is used for processing depends on a closing member provided in each flow path, for example, a set screw 40a. , 40b and 40c. That is, as shown in detail in FIG. 5, the set screws (the set screws 40 a and 40 b in the illustrated example) of the flow path relating to the unused coolant are tightened (moved to the right in FIG. 5) to close the flow path and use The set screw (the set screw 40c in the illustrated example) of the flow path related to the coolant is loosened (moved to the left in FIG. 5) to open the flow path. Thus, the coolant of the required pressure can be supplied to the tool by loosening any one set screw and tightening the other.

図3又は図4に示すように、上述の選定されたクーラントは、第2ブロック18内に配置された略円筒状の移動体42に供給される。移動体42は、第2ブロック18内を工具22に接離する方向(図示例では上下方向)にいくらか移動可能に構成され、換言すれば第2ブロック18の本体19に相対移動可能に構成される。また移動体42は、第2流路30a、30b及び30cのいずれにも流体的に連通する第3流路44を有する。第3流路44は、移動体42の第1端部46にて開口する。一方工具22は、その後端部48にて開口する第4流路50を有し、移動体42の第1端部46と工具22の後端部48とが第3Oリング52を介して当接することにより第3流路44は第4流路50に流体的に連通する。   As shown in FIG. 3 or FIG. 4, the above-mentioned selected coolant is supplied to a substantially cylindrical moving body 42 arranged in the second block 18. The moving body 42 is configured to be able to move somewhat in the direction in which the inside of the second block 18 contacts and separates from the tool 22 (vertical direction in the illustrated example). The The moving body 42 also has a third flow path 44 that fluidly communicates with any of the second flow paths 30a, 30b, and 30c. The third flow path 44 opens at the first end 46 of the moving body 42. On the other hand, the tool 22 has a fourth flow path 50 that opens at the rear end portion 48, and the first end portion 46 of the moving body 42 and the rear end portion 48 of the tool 22 abut via the third O-ring 52. As a result, the third flow path 44 is in fluid communication with the fourth flow path 50.

図6(a)及び(b)は、移動体42の第1端部46及び第3Oリング52の拡大図の択一的形態を示す図である。第1端部46には第3Oリング52を収容する凹部56が形成される。ここで図6(b)に示すように、工具交換時の第3Oリング52の落下を防止するために、凹部56は下方すなわち開放端に向かうに従って内径が小さくなるテーパ形状を有することが好ましい。また第3Oリングを使用しない構造も可能である。   FIGS. 6A and 6B are views showing alternative forms of enlarged views of the first end portion 46 and the third O-ring 52 of the moving body 42. The first end 46 is formed with a recess 56 that accommodates the third O-ring 52. Here, as shown in FIG. 6B, in order to prevent the third O-ring 52 from dropping when the tool is changed, it is preferable that the concave portion 56 has a tapered shape in which the inner diameter decreases downward, that is, toward the open end. A structure that does not use the third O-ring is also possible.

図3に示すように、移動体42の第1端部46の反対側の第2端部58は、第2ブロック18に設けられた押付け手段すなわち棒状部材60に当接する。棒状部材60は、その軸方向が移動体42の移動方向と略直交するように配置され、さらに図7(a)及び(b)に示すように、その後部62すなわち後端からある軸方向の長さにわたる部分(すなわち押付け部分)において、径方向断面が完全な円形ではなく一部を切除した形状(例えばある弦に沿って切除)を有し、一種のカム機構として作用する。また棒状部材60は、後部62と反対側の前部63に六角レンチ又はドライバー等の工具に係合する凹部を有し、自らの軸方向回りに回転可能に構成される。   As shown in FIG. 3, the second end 58 on the opposite side of the first end 46 of the moving body 42 abuts against the pressing means provided on the second block 18, that is, the rod-shaped member 60. The rod-shaped member 60 is arranged so that its axial direction is substantially orthogonal to the moving direction of the moving body 42, and as shown in FIGS. 7 (a) and 7 (b), an axial direction from the rear portion 62, that is, the rear end. In the portion extending over the length (that is, the pressing portion), the radial cross section is not completely circular but has a shape obtained by cutting away a part (for example, cutting along a certain chord), and acts as a kind of cam mechanism. Further, the rod-shaped member 60 has a concave portion that engages with a tool such as a hexagon wrench or a screwdriver in a front portion 63 opposite to the rear portion 62, and is configured to be rotatable about its own axial direction.

棒状部材60は、工具交換時等は図7(a)の回転位置にあり、工具取付け後の使用(加工)開始前に例えば約90度回転させられて図7(b)の回転位置に至る。従って図7(b)の状態では、移動体42は下方すなわち工具22に向けて付勢されるので、移動体42の第1端部46は工具22の後端部48に押付けられ、両者間に漏れのないシールが形成される。このような構成によれば、従来のように工具の後端部にクーラントの供給管をねじ込むような作業は不要であり、棒状部材60の回転という簡易な操作で確実に漏れを防止することができる。また供給管は上述のように常時第1ブロック16に接続可能なので、従来のように工具を交換する度にクーラント供給管を付け替える必要はなく、故にメンテナンス等を除き面倒なねじ込み作業が発生することはない。   The rod-shaped member 60 is at the rotational position shown in FIG. 7A when the tool is exchanged, etc., and is rotated, for example, by about 90 degrees before the start of use (machining) after the tool is attached to reach the rotational position shown in FIG. . Therefore, in the state of FIG. 7B, the moving body 42 is urged downward, that is, toward the tool 22, so that the first end portion 46 of the moving body 42 is pressed against the rear end portion 48 of the tool 22, A leak-free seal is formed. According to such a configuration, the work of screwing the coolant supply pipe into the rear end portion of the tool as in the prior art is unnecessary, and leakage can be reliably prevented by a simple operation of rotating the rod-shaped member 60. it can. Further, since the supply pipe can always be connected to the first block 16 as described above, it is not necessary to replace the coolant supply pipe every time the tool is changed as in the prior art, and therefore troublesome screwing work occurs except for maintenance. There is no.

また棒状部材60の後部62の径方向断面は、図7(a)及び(b)のような円からその一部を切除した形状ではなく、図8(a)及び(b)に示すような、部材60の回転軸について偏心した円形であってもよい。この場合、棒状部材60は工具交換時等は図8(a)の回転位置にあり、工具取付け後の使用開始前に例えば約180度回転させられて図8(b)の回転位置に至る。換言すれば、本発明における押付け手段は、回転等の簡易な操作によって移動体42を工具22に接離する方向に変位させることができる。   Further, the radial cross section of the rear portion 62 of the rod-shaped member 60 is not a shape obtained by cutting a part of the circle as shown in FIGS. 7A and 7B, but as shown in FIGS. 8A and 8B. The circular shape eccentric about the rotation axis of the member 60 may be used. In this case, the rod-shaped member 60 is at the rotational position shown in FIG. 8A when the tool is changed, and is rotated by, for example, about 180 degrees before the start of use after the tool is mounted, and reaches the rotational position shown in FIG. In other words, the pressing means in the present invention can displace the moving body 42 in the direction in which the moving body 42 is in contact with or separated from the tool 22 by a simple operation such as rotation.

なお図3に示すように、工具交換時のような工具22が外された状態において移動体42が落下することを防止するために、移動体42の外周の一部に溝64を形成し、さらに溝64に係る落下防止ネジ66を第2ブロック18内の適所に配置することが好ましい。   In addition, as shown in FIG. 3, in order to prevent the moving body 42 from dropping when the tool 22 is removed as in the tool change, a groove 64 is formed in a part of the outer periphery of the moving body 42, Furthermore, it is preferable to arrange the fall prevention screw 66 related to the groove 64 at a proper position in the second block 18.

本発明に係る刃物台の正面図である。It is a front view of the tool post which concerns on this invention. 図1の刃物台の上面図である。It is a top view of the tool post of FIG. 図1のA−A断面を示す図である。It is a figure which shows the AA cross section of FIG. 図2のB−B断面を示す図である。It is a figure which shows the BB cross section of FIG. 第2ブロック部材の止めネジの詳細を示す図である。It is a figure which shows the detail of the set screw of a 2nd block member. 移動体の端部の詳細を示す図である。It is a figure which shows the detail of the edge part of a moving body. (a)棒状部材が移動体を工具方向に付勢していない状態を示す図であり、(b)棒状部材が移動体を工具方向に付勢している状態を示す図である。(A) It is a figure which shows the state which the bar-shaped member is not urging | biasing a moving body in a tool direction, (b) It is a figure which shows the state which is urging | biasing a mobile body in a tool direction. (a)図7(a)に類似する、他の形態の棒状部材が移動体を工具方向に付勢していない状態を示す図であり、(b)棒状部材が移動体を工具方向に付勢している状態を示す図である。(A) It is a figure similar to Drawing 7 (a), and is a figure showing the state where the rod-shaped member of other forms has not energized the moving object to the tool direction, (b) The rod-shaped member attaches the moving object to the tool direction. It is a figure which shows the state which is energizing.

符号の説明Explanation of symbols

10 刃物台
16 第1ブロック
18 第2ブロック
20 工具ホルダ
22 工具
28a、28b、28c プラグ
40a、40b、40c 止めネジ
42 移動体
60 棒状部材
62 カム
W ワーク
DESCRIPTION OF SYMBOLS 10 Tool post 16 1st block 18 2nd block 20 Tool holder 22 Tool 28a, 28b, 28c Plug 40a, 40b, 40c Set screw 42 Moving body 60 Rod-shaped member 62 Cam W Workpiece

Claims (6)

クーラント用の貫通孔を備えた工具を保持し、保持された前記工具の前記貫通孔に前記クーラントを供給する流路を有する刃物台であって、
前記刃物台の本体に対して移動可能に設けられる移動体を備え、該移動体に前記流路を形成し、
前記移動体を、前記流路と前記貫通孔とが連通するように、前記工具の前記貫通孔に向けて押圧する押付け手段を設け、
前記押付け手段が、前記移動体の移動方向に交差し、前記本体に回転自在に支持された棒状部材を有し、該棒状部材の周面が前記移動体に当接し、該棒状部材の回転によって前記棒状部材がカム機構として作用し、前記周面によって前記移動体を押圧するように構成されたことを特徴とする、刃物台。
A tool post having a flow path for holding a tool having a through hole for coolant and supplying the coolant to the through hole of the held tool ,
A movable body provided to be movable with respect to the main body of the tool post, and forming the flow path in the movable body;
A pressing unit that presses the moving body toward the through hole of the tool so that the flow path and the through hole communicate with each other;
The pressing means has a rod-shaped member that intersects the moving direction of the movable body and is rotatably supported by the main body, and a peripheral surface of the rod-shaped member abuts on the movable body, and the rod-shaped member rotates by rotation. The tool post, wherein the bar-shaped member acts as a cam mechanism and is configured to press the moving body by the peripheral surface .
前記棒状部材の押圧部分は、その径方向断面において円の一部を切除した形状を有する、請求項1に記載の刃物台。 The turret according to claim 1, wherein the pressing portion of the rod-shaped member has a shape obtained by cutting a part of a circle in a radial cross section thereof . 前記棒状部材の押圧部分は、その径方向断面において円形を有し、前記棒状部材の回転軸とは偏心した軸を中心に回転するように構成される、請求項1に記載の刃物台。 2. The tool post according to claim 1 , wherein the pressing portion of the rod-shaped member has a circular shape in a radial cross section thereof, and is configured to rotate around an axis that is eccentric from a rotation axis of the rod-shaped member . 前記本体は、前記クーラント供給装置が接続される第1ブロック部材と前記工具ホルダが接続される第2ブロック部材とから構成され、前記第1及び第2ブロック部材は、該第1及び第2部材に形成された内部流路の双方に流体連通する貫通孔を備えたプラグによって互いに連結され、前記内部流路を介して前記移動体の流路に流体を供給する、請求項1〜3のいずれか1項に記載の刃物台。 The main body includes a first block member to which the coolant supply device is connected and a second block member to which the tool holder is connected. The first and second block members are the first and second members. Any one of Claims 1-3 connected with each other by the plug provided with the through-hole which fluidly communicates with both of the internal flow paths formed in the flow path, and supplying the fluid to the flow path of the moving body via the internal flow paths. The tool post according to claim 1 . 前記プラグは、前記貫通孔と同軸方向に延びる略円筒形状を有し、該プラグの径方向外側部分において前記第1及び第2ブロック部材に当接してそれぞれシールを形成するOリングを有する、請求項4に記載の刃物台。 The plug has a substantially cylindrical shape extending in a coaxial direction with the through hole, and has an O-ring that forms a seal by contacting the first and second block members at a radially outer portion of the plug. Item 5. The tool post according to Item 4 . 前記本体は前記移動体の流路に流体を供給する内部流路を複数有し、前記内部流路の各々は前記流路との連通を開閉自在に遮断する閉止部材を有する、請求項1〜5のいずれか1項に記載の刃物台。 The main body has a plurality of internal flow paths for supplying fluid to the flow path of the moving body, and each of the internal flow paths has a closing member that opens and closes communication with the flow path . The turret according to any one of 5.
JP2006254048A 2006-09-20 2006-09-20 Turret with coolant supply device Expired - Fee Related JP4925777B2 (en)

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