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JP5949174B2 - Machining center - Google Patents

Machining center Download PDF

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Publication number
JP5949174B2
JP5949174B2 JP2012124944A JP2012124944A JP5949174B2 JP 5949174 B2 JP5949174 B2 JP 5949174B2 JP 2012124944 A JP2012124944 A JP 2012124944A JP 2012124944 A JP2012124944 A JP 2012124944A JP 5949174 B2 JP5949174 B2 JP 5949174B2
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Prior art keywords
tool
spindle
spindle head
opening
tool magazine
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JP2013248709A (en
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勝也 細川
勝也 細川
一海 服部
一海 服部
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Howa Machinery Ltd
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Howa Machinery Ltd
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Priority to JP2012124944A priority Critical patent/JP5949174B2/en
Priority to CN201310195530.1A priority patent/CN103447878B/en
Priority to KR1020130062840A priority patent/KR101880773B1/en
Publication of JP2013248709A publication Critical patent/JP2013248709A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q3/00Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
    • B23Q3/155Arrangements for automatic insertion or removal of tools, e.g. combined with manual handling
    • B23Q3/157Arrangements for automatic insertion or removal of tools, e.g. combined with manual handling of rotary tools
    • B23Q3/15713Arrangements for automatic insertion or removal of tools, e.g. combined with manual handling of rotary tools a transfer device taking a single tool from a storage device and inserting it in a spindle
    • B23Q3/1572Arrangements for automatic insertion or removal of tools, e.g. combined with manual handling of rotary tools a transfer device taking a single tool from a storage device and inserting it in a spindle the storage device comprising rotating or circulating storing means
    • B23Q3/15722Rotary discs or drums
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q3/00Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
    • B23Q3/155Arrangements for automatic insertion or removal of tools, e.g. combined with manual handling
    • B23Q3/15513Arrangements for automatic insertion or removal of tools, e.g. combined with manual handling the tool being taken from a storage device and transferred to a tool holder by means of transfer devices

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Auxiliary Devices For Machine Tools (AREA)
  • Automatic Tool Replacement In Machine Tools (AREA)

Description

本発明は、アームレス自動工具交換を行うマシニングセンタに関し、詳しくはY軸方向に移動可能に支持されたスライドベースに、被加工物が載置されるテーブルを載置すると共にアームレス型自動工具交換装置を具備させたマシニングセンタに関する。   The present invention relates to a machining center for performing an armless automatic tool change. More specifically, a table on which a workpiece is placed is placed on a slide base supported so as to be movable in the Y-axis direction, and an armless type automatic tool changer is provided. The present invention relates to a machining center provided.

Y軸方向に移動可能に支持されたスライドベースに、被加工物が載置されるテーブルと円盤状に工具保持部を複数備えた工具マガジンを有し、工具マガジンもY軸方向に移動させてアームレス自動工具交換を行うマシニングセンタがある(例えば、特許文献1参照)。  A slide base supported so as to be movable in the Y-axis direction has a table on which a workpiece is placed and a tool magazine having a plurality of tool holding parts in a disk shape. The tool magazine is also moved in the Y-axis direction. There is a machining center that performs armless automatic tool change (see, for example, Patent Document 1).

一方、アームレス自動工具交換を行うマシニングセンタにおいて、加工時に発生する切り屑等が工具マガジンに侵入しないように、加工領域と工具マガジンを隔離する構造を備えたマシニングセンタがある。例えば、特許文献2では、可動式の開閉カバーをマガジンカバーに設け、開閉カバーを閉じることで、切り屑等の侵入を防いでいる。
また、円盤状の工具保持板を備えた工具マガジンが固定設置され、工具マガジンと加工領域との間を分離するための固定カバーを設けた横型マシニングセンタがある。例えば、特許文献3では、固定カバーに形成された工具交換のための開口部を、工具保持板に取り付けた可動カバーで閉塞することで切り屑等の侵入を防いでいる。
On the other hand, there is a machining center having a structure that separates a machining area and a tool magazine so that chips generated during machining do not enter the tool magazine in a machining center that performs armless automatic tool change. For example, in Patent Document 2, a movable opening / closing cover is provided on a magazine cover, and the opening / closing cover is closed to prevent intrusion of chips and the like.
Further, there is a horizontal machining center in which a tool magazine having a disk-shaped tool holding plate is fixedly installed, and a fixed cover for separating the tool magazine from a machining area is provided. For example, in Patent Document 3, the opening for tool replacement formed in the fixed cover is closed with a movable cover attached to the tool holding plate to prevent intrusion of chips and the like.

特開2008−142891号公報JP 2008-142891 A 特開平7−112341号公報JP-A-7-112341 特開2011−45947号公報JP 2011-45947 A

しかしながら、上記特許文献2の開閉カバーによりマガジンカバーの開口部を開閉する構成は、製造コストが嵩む問題があった。一方、引用文献3の工具保持板に回動カバーを設ける構成は、簡易な構成で開口部を閉塞する構成であるが、ベッド上のコラム移動エリアなどの非加工領域に切り屑等が入り込むのを防止する機能まで備えていなかった。また、開口部が大きいため切り屑やクーラントが工具マガジン内に侵入し易かったし、工具交換時に交換される工具(主軸に装着される工具)に隣接する工具に切り屑等が付着するおそれがあった。   However, the configuration in which the opening portion of the magazine cover is opened and closed by the opening and closing cover of Patent Document 2 has a problem that the manufacturing cost increases. On the other hand, although the structure which provides a rotation cover in the tool holding plate of the cited reference 3 is a structure which obstruct | occludes an opening part by simple structure, chips etc. enter into non-working areas, such as a column movement area on a bed. It was not equipped with a function to prevent. In addition, since the opening is large, it is easy for chips and coolant to enter the tool magazine, and there is a risk that chips etc. will adhere to the tool adjacent to the tool to be replaced when the tool is replaced (tool mounted on the spindle). there were.

そこで、本発明はこのような問題点に鑑み、加工時の切り屑やクーラントが工具マガジンやスライドベース後部などの非加工領域に入り込むのを防止できる簡易な構造の遮蔽板を備えたマシニングセンタを提供することを目的としている。   Therefore, in view of such problems, the present invention provides a machining center including a shielding plate having a simple structure capable of preventing chips and coolant during processing from entering a non-machining region such as a tool magazine or a slide base rear portion. The purpose is to do.

上記課題を解決する為に、請求項1の発明は、上面に前後方向に沿って摺動面が形成されているベッドと、摺動面上で前後移動可能に支持されたスライドベースと、スライドベース上に設置されて被工作物を載置するテーブルと、テーブルの上部で装着された工具を回転させる主軸及び主軸を支持する主軸ヘッドと、工具マガジンを備えて主軸に装着する工具を自動交換するアームレス型自動工具交換装置と、スライドベース側の加工領域と工具マガジン側の非加工領域との間を隔離する遮蔽板と備えたマシニングセンタにおいて、主軸ヘッドは、上下及び左右に移動可能にベッド上の摺動面後方に立設されたコラムに支持される一方、アームレス型自動工具交換装置は、テーパシャンク部を上にした工具を着脱自在に把持する工具把持部を円環状に複数備えた工具マガジンと、工具マガジンを回転して所望の工具把持部を割り出す割出モータとを有して、主軸ヘッドと割り出した所望の工具把持部との間で工具の装着・離脱動作を行い工具交換を実行し、遮蔽板は、スライドベース上に立設した背面板と背面板の左右に設けた側面板とを有して、背面板に主軸ヘッド及び工具が通過可能な開口部を設ける一方、工具マガジンの工具把持部の少なくとも1箇所に開口部を閉鎖する閉鎖手段を設け、閉鎖手段が、工具マガジンの複数箇所に立設されて工具マガジンと共に旋回する板部材であって、スライドベースの前後移動と、主軸ヘッドの上下移動と、工具マガジンの回転とにより、主軸ヘッドを開口部から工具マガジンが配置された非加工領域内に進入させて、アームレス型自動工具交換装置と主軸との間で工具交換を行い、少なくとも加工動作中は、閉鎖手段が割り出されて開口部を閉鎖し、加工領域と非加工領域を隔離することを特徴とする。
この構成によれば、遮蔽板に設けた開口部は主軸ヘッド及び工具が通過できれば良いため比較的小さい形状で良いし、遮蔽板により容易に閉鎖できる。よって、加工時に切り屑やクーラントが工具マガジンやスライドベース後部などの非加工領域に入り込むのを簡易な構造で防止できる。
In order to solve the above-mentioned problems, the invention of claim 1 includes a bed having a sliding surface formed on the upper surface along the front-rear direction, a slide base supported so as to be movable back and forth on the sliding surface, and a slide. A table installed on the base for placing the workpiece, a spindle for rotating the tool mounted on the table, a spindle head for supporting the spindle, and a tool magazine for automatically changing the tool mounted on the spindle In a machining center equipped with an armless type automatic tool changer and a shielding plate that separates a machining area on the slide base side and a non-machining area on the tool magazine side, the spindle head is movable on the bed vertically and horizontally On the other hand, the armless type automatic tool changer has a tool gripping part for detachably gripping a tool with a taper shank part up. A tool magazine having a plurality of annular shapes and an indexing motor that rotates the tool magazine to index a desired tool gripping portion, and attaches / detaches the tool between the spindle head and the indexed desired tool gripping portion. The shield plate has a back plate erected on the slide base and side plates provided on the left and right sides of the back plate, and an opening through which the spindle head and the tool can pass. A closing member that closes the opening at at least one position of the tool gripping portion of the tool magazine, and the closing means is a plate member that is erected at a plurality of positions of the tool magazine and pivots together with the tool magazine. , a back and forth movement of the slide base, and vertical movement of the spindle head by the rotation of the tool magazine, by advancing the spindle head through the opening in the non-processing region where the tool magazine is arranged, armless type automatic Perform tool change with the tool changer and the main shaft, at least during the processing operation, closure means indexed to close the opening, characterized by isolating the machining area and the non-processing region.
According to this configuration, the opening provided in the shielding plate only needs to be able to pass the spindle head and the tool, and therefore may have a relatively small shape, and can be easily closed by the shielding plate. Therefore, it is possible to prevent chips and coolant from entering a non-machining region such as a tool magazine or the rear portion of the slide base during machining with a simple structure.

また、簡単な構造の閉鎖手段により、安価なアームレス型自動工具交換装置にできる。 Further , an inexpensive armless type automatic tool changer can be obtained by a simple closing means.

更に、閉塞手段を複数備えるため、割出時間を短くでき、工具交換時間を短縮できる。 Furthermore, since a plurality of closing means are provided, the indexing time can be shortened and the tool change time can be shortened.

請求項の発明は、請求項に記載の構成において、割出モータによる所望の工具把持部の割り出し動作は、主軸に装着された工具による加工が終了した時点に開始されることを特徴とする。
この構成によれば、加工が終了した時点で、工具把持部の割り出し行われることで、アームレス型自動工具交換装置を前進させる際の待機時間がなくなり、工具交換時間を短縮できる。
According to a second aspect of the present invention, in the configuration according to the first aspect , the indexing operation of the desired tool gripping portion by the indexing motor is started when the processing by the tool attached to the spindle is finished. To do.
According to this configuration, when the processing is finished, the tool gripping portion is indexed, so that the waiting time when the armless automatic tool changer is advanced is eliminated, and the tool change time can be shortened.

本発明によれば、遮蔽板に設けた開口部は主軸ヘッド及び工具が通過できれば良いため比較的小さい形状で良く、遮蔽板により閉塞し易い。よって、加工時に切り屑やクーラントが工具マガジンやスライドベース後部などの非加工領域に入り込むのを簡易な構造で防止できる。   According to the present invention, the opening provided in the shielding plate may have a relatively small shape as long as the spindle head and the tool can pass therethrough, and is easily blocked by the shielding plate. Therefore, it is possible to prevent chips and coolant from entering a non-machining region such as a tool magazine or the rear portion of the slide base during machining with a simple structure.

本発明に係るマシニングセンタの一例を示す側面図であり、加工時の状態を示している。It is a side view which shows an example of the machining center which concerns on this invention, and has shown the state at the time of a process. A部拡大図であり、主軸を断面図で示している。It is A section enlarged view, and has shown the principal axis with sectional drawing. 図1のマシニングセンタの一部を抜き出した斜視説明図である。FIG. 2 is an explanatory perspective view of a part of the machining center in FIG. 1 extracted. 遮蔽板の斜視図を示し、(a)は加工領域側からみた図、(b)は非加工領域側から見た図である。The perspective view of a shielding board is shown, (a) is the figure seen from the process area side, (b) is the figure seen from the non-process area side. ATC装置の斜視図である。It is a perspective view of an ATC device. 工具マガジンの正面図である。It is a front view of a tool magazine. 図1の状態における工具マガジンと主軸ヘッドの位置関係を示す平面説明図である。FIG. 2 is an explanatory plan view showing a positional relationship between a tool magazine and a spindle head in the state of FIG. 1. B部拡大図である。It is a B section enlarged view. 図1のマシニングセンタにおいて、主軸ヘッドが工具交換位置にある状態の側面図である。FIG. 2 is a side view of the machining center of FIG. 1 with a spindle head in a tool change position. 図9の状態における工具マガジンと主軸ヘッドの位置関係を示す平面説明図である。FIG. 10 is an explanatory plan view showing the positional relationship between the tool magazine and the spindle head in the state of FIG. 9. C部拡大図である。It is a C section enlarged view.

以下、本発明を具体化した実施の形態を、図面を参照して詳細に説明する。図1は本発明に係るマシニングセンタの一例を示し、加工時の状態の側面図を示している。1はマシニングセンタの基部を構成するベッド、2は被加工物を載置するテーブル、3はテーブル2を前後動させるためのスライドベース、4は装着した工具Tを回転する主軸、5は主軸4を保持する主軸ヘッド、6は主軸ヘッド5を昇降動させる主軸ヘッド昇降体、7は複数の工具Tを収容して主軸4に装着する工具Tを交換するためのアームレス自動工具交換装置(以下、単にATC装置と称する)、8は主軸ヘッド昇降体6を支持するコラム、9はATC装置7を支持するステー、11は加工領域と非加工領域を隔離して切り屑やクーラント等が非加工領域への侵入を阻止する遮蔽板である。   DESCRIPTION OF THE PREFERRED EMBODIMENTS Embodiments embodying the present invention will be described below in detail with reference to the drawings. FIG. 1 shows an example of a machining center according to the present invention, and shows a side view of a state during processing. DESCRIPTION OF SYMBOLS 1 is the bed which comprises the base part of a machining center, 2 is the table which mounts a workpiece, 3 is the slide base for moving the table 2 back and forth, 4 is the main axis | shaft which rotates the tool T with which it mounted | mounted, 5 is the main axis | shaft 4 The main spindle head to be held, 6 is a main spindle head lifting / lowering body for moving the main spindle head 5 up and down, and 7 is an armless automatic tool changer (hereinafter simply referred to as “toolless automatic tool changer”) for accommodating a plurality of tools T and replacing the tool T mounted on the main spindle 4. (Referred to as an ATC device), 8 is a column that supports the spindle head lift 6, 9 is a stay that supports the ATC device 7, 11 is a region that separates the processing region from the non-processing region, and chips, coolant, etc. are moved to the non-processing region. It is a shielding plate that prevents the intrusion of water.

尚、図1において、図示左方向が前方であり、この方向をY軸方向、Y軸に直交する左右方向をX軸方向、上下方向をZ軸方向として以下説明する。   In FIG. 1, the left direction in the figure is the front, and this direction will be described as the Y-axis direction, the left-right direction orthogonal to the Y-axis as the X-axis direction, and the up-down direction as the Z-axis direction.

ベッド1は平坦な上面を有し、スライドベース3を前後方向に摺動させるためのY軸摺動面が形成されている。このY軸摺動面の後部にはコラム8が立設され、コラム8に支持されて主軸ヘッド昇降体6がベッド2の上方に配置されている。
詳しくは、ベッド1の後部から起立形成されたコラム8は、上部が前方に折り曲げられて略L字状に形成されており、前方を向いた先端部にX軸摺動面が形成され、サドル12がX軸方向移動可能に支持されている。そしてサドル12は、前面にZ軸摺動面が形成され、主軸ヘッド昇降体6がZ軸方向移動可能に支持されている。
The bed 1 has a flat upper surface, and a Y-axis sliding surface for sliding the slide base 3 in the front-rear direction is formed. A column 8 is erected on the rear portion of the Y-axis sliding surface, and a spindle head elevating body 6 is disposed above the bed 2 by being supported by the column 8.
Specifically, the column 8 erected from the rear part of the bed 1 is formed in a substantially L shape with the upper part bent forward, and an X-axis sliding surface is formed at the front end part facing forward. 12 is supported so as to be movable in the X-axis direction. The saddle 12 has a Z-axis sliding surface formed on the front surface, and the spindle head elevating body 6 is supported so as to be movable in the Z-axis direction.

図2は図1のA部拡大図であり、主軸4周りを断面で示している。図2に示すように、工具Tは上部に円錐形状のテーパシャンク部13、棒状のプルスタッド14を有し、主軸4はこのテーパシャンク部13を挿入するテーパ孔4a、プルスタッド14を把持して引っ張り支持するドローバー4b備えている。尚、これらの主軸4周りの構成は従来と同様であるため詳しい説明は省略する。   FIG. 2 is an enlarged view of a portion A in FIG. 1 and shows the periphery of the main shaft 4 in a cross section. As shown in FIG. 2, the tool T has a conical tapered shank portion 13 and a rod-shaped pull stud 14 at the upper portion, and the main shaft 4 holds the tapered hole 4 a and the pull stud 14 into which the tapered shank portion 13 is inserted. And a draw bar 4b for pulling and supporting. Since the configuration around the main shaft 4 is the same as that of the prior art, a detailed description thereof will be omitted.

図3はマシニングセンタの一部を抜き出した斜視説明図であり、テーブル2とATC装置7と遮蔽板11との関係を示している。図3に示すE1は、スライドベース2及び主軸4が配置された加工領域、E2は工具マガジン20が配置された非加工領域であり、遮蔽板11により双方の領域は隔離されている。   FIG. 3 is a perspective explanatory view in which a part of the machining center is extracted, and shows the relationship among the table 2, the ATC device 7 and the shielding plate 11. E1 shown in FIG. 3 is a machining area in which the slide base 2 and the main shaft 4 are arranged, E2 is a non-machining area in which the tool magazine 20 is arranged, and both areas are isolated by the shielding plate 11.

図4はこの遮蔽板11の斜視図を示し、(a)は前方(加工領域E1側)から見た図、(b)は後方(非加工領域E2側)からみた図を示している。遮蔽板11は、背面板11a、左側面板11b、右側面板11cを有して略コ字状に形成され、背面板11の中央上部には長方形状の開口部30が設けられている。開口部30は、工具Tを交換する際に主軸ヘッド5及び主軸4に装着された工具Tが通過可能な幅及び高さで開口形成されている。そして、開口部30の左右端部には、後述する閉鎖板で閉鎖した際に隙間を無くすための帯状のゴム片30aが取り付けられている。
また、背面板11aの下部は、前方に傾斜させた傾斜面板31を有し、切り屑等やクーラントがスライドベース3後部のベッド1上等に落下するのを防止している。遮蔽板11はスライドベース3に固定されている。
4A and 4B are perspective views of the shielding plate 11. FIG. 4A is a diagram viewed from the front (processing region E1 side), and FIG. 4B is a diagram viewed from the rear (non-processing region E2 side). The shielding plate 11 has a back plate 11 a, a left side plate 11 b, and a right side plate 11 c and is formed in a substantially U shape. A rectangular opening 30 is provided at the upper center of the back plate 11. The opening 30 is formed with a width and height that allow the tool T mounted on the spindle head 5 and the spindle 4 to pass when the tool T is replaced. A band-shaped rubber piece 30a is attached to the left and right ends of the opening 30 to eliminate a gap when the opening 30 is closed with a closing plate described later.
Further, the lower portion of the back plate 11a has an inclined face plate 31 that is inclined forward to prevent chips and coolant from falling onto the bed 1 at the rear of the slide base 3 and the like. The shielding plate 11 is fixed to the slide base 3.

尚、図3に示す遮蔽板11は、開口部30が閉鎖板23で閉鎖されている。この閉鎖板23は後述するように工具マガジン20に取り付けられている。   In the shielding plate 11 shown in FIG. 3, the opening 30 is closed by a closing plate 23. The closing plate 23 is attached to the tool magazine 20 as will be described later.

一方、ATC装置7は、水平に配置された円盤状の工具マガジン20を有し、工具マガジン20は複数の工具把持部21を環状に配置している。そして、工具マガジン20の中央下部には、図1に示すように工具マガジン20を回転させる割出モータ22が配置されている。この割出モータ22がスライドベース3の背部から延びたステー9の先端に固定され、ATC装置7はスライドベース3の後方斜め上部に配置される。   On the other hand, the ATC device 7 has a disk-shaped tool magazine 20 arranged horizontally, and the tool magazine 20 has a plurality of tool gripping portions 21 arranged in an annular shape. An indexing motor 22 that rotates the tool magazine 20 is disposed at the lower center of the tool magazine 20 as shown in FIG. The indexing motor 22 is fixed to the tip of the stay 9 extending from the back of the slide base 3, and the ATC device 7 is disposed obliquely above the rear of the slide base 3.

図5はATC装置7を斜め後方から見た斜視図、図6は工具マガジンの正面図をそれぞれ示している。図5,図6に示すように、遮蔽板11の開口部30を閉鎖する閉鎖板23が工具マガジン20の一端に取り付けられている。閉鎖板23は開口部30に合致する長方形で形成されている。   FIG. 5 is a perspective view of the ATC device 7 as viewed obliquely from the rear, and FIG. 6 is a front view of the tool magazine. As shown in FIGS. 5 and 6, a closing plate 23 that closes the opening 30 of the shielding plate 11 is attached to one end of the tool magazine 20. The closing plate 23 is formed in a rectangular shape that matches the opening 30.

図7は工具マガジン20と主軸ヘッドの位置関係を示す平面説明図、図8は図7のB部拡大図をそれぞれ示している。閉鎖板23により開口部30を閉鎖した状態では、図7に示すように,閉鎖板23が開口部30に合致する所定位置に工具マガジン20を回転して割り出すだけで開口部30を閉鎖できる。そして、図8に示すように開口部30の周囲に取り付けられたゴム片30aに閉鎖板23が当接することで、開口部30が隙間無く閉鎖される。
尚、工具マガジン20は工具把持部21を多数備えており、図7はその状態を示しているが、図7以外で示す工具マガジン20は工具把持部21及び工具把持部21に把持された工具Tは一部のみ示している。また、後述する図11に示すように、ゴム片30aを備えた開口部30の幅は主軸ヘッド5の径Wとほぼ同一に形成され、開口部30は主軸ヘッド5が通過可能な最小の幅で形成されている。また、工具Tは主軸ヘッド5より小さい径で形成されている。
FIG. 7 is an explanatory plan view showing the positional relationship between the tool magazine 20 and the spindle head, and FIG. 8 is an enlarged view of part B of FIG. In a state where the opening 30 is closed by the closing plate 23, the opening 30 can be closed simply by rotating and indexing the tool magazine 20 to a predetermined position where the closing plate 23 matches the opening 30 as shown in FIG. 7. And as shown in FIG. 8, the opening part 30 is closed without a gap | interval, when the closing plate 23 contact | abuts to the rubber piece 30a attached to the circumference | surroundings of the opening part 30. FIG.
The tool magazine 20 includes a large number of tool gripping portions 21, and FIG. 7 shows the state. However, the tool magazine 20 shown in FIG. 7 is a tool gripped by the tool gripping portion 21 and the tool gripping portion 21. Only part of T is shown. Further, as shown in FIG. 11 described later, the width of the opening 30 provided with the rubber piece 30a is formed substantially the same as the diameter W of the spindle head 5, and the opening 30 is the minimum width through which the spindle head 5 can pass. It is formed with. The tool T is formed with a smaller diameter than the spindle head 5.

このように構成されたマシニングセンタにおける工具交換の流れは以下の様である。図9は主軸ヘッド5が工具交換位置にある状態のマシニングセンタ側面図、図10はこの状態での工具マガジン20と主軸ヘッド5の関係を示す平面図、図11は図10のC部拡大図をそれぞれ示し、これらの図を参照して説明する。
工具Tを交換する場合、主軸ヘッド5がX軸上の所定の位置で且つ所定の高さ(第1の所定位置)に移動すると共にスライドベース3が前方に移動し、主軸ヘッド5が遮蔽板11の開口部30を通過して工具交換が行われる。図9はこの工具交換の動作状態を示している。また、上記図7に示す主軸ヘッド5の位置が、開口部30の前方に主軸ヘッド5を配置した第1の所定位置に配置した状態である。
The flow of tool change in the machining center configured as described above is as follows. 9 is a side view of the machining center with the spindle head 5 in the tool change position, FIG. 10 is a plan view showing the relationship between the tool magazine 20 and the spindle head 5 in this state, and FIG. 11 is an enlarged view of a portion C in FIG. Each will be shown and described with reference to these figures.
When exchanging the tool T, the spindle head 5 moves to a predetermined position on the X-axis and to a predetermined height (first predetermined position), and the slide base 3 moves forward. 11 is passed through the opening 30 and the tool is changed. FIG. 9 shows the operating state of this tool change. Further, the position of the spindle head 5 shown in FIG. 7 is in a state of being arranged at a first predetermined position where the spindle head 5 is arranged in front of the opening 30.

具体的に、サドル12のX軸方向移動と、主軸ヘッド昇降体6のZ軸方向移動とにより、主軸ヘッド5を第1の所定位置に位置決めする。この第1の所定位置は、開口部30の前方に主軸ヘッド5が配置された状態となる。並行して、割出モータ22が工具マガジン20を回転して閉鎖板23を移動して開口部30を開放し、同時に所望の工具把持部(主軸に装着している工具Tを収容する工具把持部)を割り出して開口部30の後方に配置する。更に、スライドベース3を前方(Y軸方向)に移動させて、ATC装置7を所定の位置(第2の所定位置)に位置決めする。
図11に示す開口部30の直前となるPの位置に主軸ヘッド5を配置した状態が、第2の所定位置にATC装置7を移動させた状態である。
Specifically, the spindle head 5 is positioned at the first predetermined position by the movement of the saddle 12 in the X-axis direction and the movement of the spindle head elevating body 6 in the Z-axis direction. The first predetermined position is a state in which the spindle head 5 is disposed in front of the opening 30. In parallel, the indexing motor 22 rotates the tool magazine 20 to move the closing plate 23 to open the opening 30, and at the same time, a desired tool gripping part (tool gripping the tool T mounted on the spindle) Part) and positioned behind the opening 30. Further, the slide base 3 is moved forward (Y-axis direction) to position the ATC device 7 at a predetermined position (second predetermined position).
A state in which the spindle head 5 is disposed at a position P immediately before the opening 30 shown in FIG. 11 is a state in which the ATC device 7 is moved to the second predetermined position.

その後、スライドベース3を更に前方へ移動させることで、主軸ヘッド5が遮蔽板11の開口部30を通過し、図11のQに示す工具交換位置に移動する。この移動操作により主軸4に装着されている工具Tが工具把持部21に把持される。
この把持を受けて、主軸4による工具把持が解除されてヘッド5を上昇(Z軸方向移動)させる。こうして、工具Tは主軸4から工具マガジン20に移動し、次に使用する工具Tの装着動作に入る。
Thereafter, by moving the slide base 3 further forward, the spindle head 5 passes through the opening 30 of the shielding plate 11 and moves to the tool change position indicated by Q in FIG. The tool T attached to the spindle 4 is gripped by the tool gripper 21 by this moving operation.
Upon receiving this grip, the tool grip by the spindle 4 is released and the head 5 is raised (moved in the Z-axis direction). In this way, the tool T moves from the spindle 4 to the tool magazine 20 and enters the mounting operation of the tool T to be used next.

工具Tの装着動作は、主軸ヘッド5を上昇させた状態で工具マガジン20を回転させ、所望の工具Tを交換位置へ割り出し、主軸ヘッド5を下降させることで実施される。
こうして工具交換が終了したら、スライドベース3を後方へ移動(Y軸方向移動)することで、主軸ヘッド5が開口部30から引き出され、加工領域E1に移動させる。その後、被加工物の加工が継続される。
The mounting operation of the tool T is performed by rotating the tool magazine 20 with the spindle head 5 raised, indexing the desired tool T to the replacement position, and lowering the spindle head 5.
When the tool change is completed in this manner, the spindle head 5 is pulled out from the opening 30 and moved to the machining area E1 by moving the slide base 3 backward (moving in the Y-axis direction). Thereafter, processing of the workpiece is continued.

一方、ATC装置7は、割出モータ22が工具マガジン20を回転させて閉鎖板23を開口部30に配置して開口部30を閉鎖する。こうして工具交換は実施され、加工中開口部30は常時閉鎖される。   On the other hand, in the ATC device 7, the indexing motor 22 rotates the tool magazine 20 to dispose the closing plate 23 in the opening 30 and close the opening 30. In this way, the tool is changed, and the opening 30 is always closed during processing.

このように、遮蔽板11に設けた開口部30は主軸ヘッド5及び工具Tが通過できれば良いため比較的小さい形状で良いし、遮蔽板11により容易に閉鎖できる。よって、加工時に切り屑やクーラントが工具マガジン20やスライドベース3後部などの非加工領域E2に入り込むのを簡易な構造で防止できる。
また、閉鎖板23は簡単な形状の板部材で良く、アームレス型自動工具交換装置7を安価に構成できる。
As described above, the opening 30 provided in the shielding plate 11 may have a relatively small shape as long as the spindle head 5 and the tool T can pass therethrough, and can be easily closed by the shielding plate 11. Therefore, it is possible to prevent chips and coolant from entering the non-machining region E2 such as the tool magazine 20 or the rear portion of the slide base 3 during machining with a simple structure.
Further, the closing plate 23 may be a plate member having a simple shape, and the armless automatic tool changer 7 can be configured at low cost.

尚、上記実施形態では閉鎖板23を工具マガジン20に1枚設置しているが、工具マガジン20の複数箇所に設けても良く、閉塞板を複数備えることで割出時間を短くでき、工具交換時間を短縮できる。
また、割出モータ22による所望の工具把持部21の割り出し動作は、主軸4に装着された工具Tによる加工が終了した時点に開始するとよく、ATC装置を前進させる際の待機時間がなくなり、工具交換時間を短縮できる。
In the above embodiment, one closing plate 23 is installed in the tool magazine 20, but it may be provided in a plurality of locations in the tool magazine 20, and by providing a plurality of closing plates, the indexing time can be shortened, and the tool can be changed. You can save time.
The indexing operation of the desired tool gripping part 21 by the indexing motor 22 may be started when the machining by the tool T attached to the spindle 4 is completed, and the waiting time for advancing the ATC device is eliminated, and the tool Exchange time can be shortened.

1・・ベッド、2・・テーブル、3・・スライドベース、4・・主軸、5・・主軸ヘッド、7・・ATC装置(アームレス型自動工具交換装置)、11・・遮蔽板、11a・・背面板、11b・・右側面板、11c・・左側面板、13・・テーパシャンク部、20・・工具マガジン、21・・工具把持部、22・・割出モータ、23・・閉鎖板(閉鎖手段)、30・・開口部。   1 .... bed, 2 .... table, 3 .... slide base, 4 .... spindle, 5 .... spindle head, 7 .... ATC device (armless automatic tool changer), 11 .... shielding plate, 11a ... Back plate, 11b ... right side plate, 11c ... left side plate, 13 ... taper shank part, 20 ... tool magazine, 21 ... tool gripping part, 22 ... indexing motor, 23 ... closing plate (closing means) ), 30 .. opening.

Claims (2)

上面に前後方向に沿って摺動面が形成されているベッドと、前記摺動面上で前後移動可能に支持されたスライドベースと、前記スライドベース上に設置されて被工作物を載置するテーブルと、前記テーブルの上部で装着された工具を回転させる主軸及び前記主軸を支持する主軸ヘッドと、工具マガジンを備えて前記主軸に装着する工具を自動交換するアームレス型自動工具交換装置と、前記スライドベース側の加工領域と前記工具マガジン側の非加工領域との間を隔離する遮蔽板と備えたマシニングセンタにおいて、
前記主軸ヘッドは、上下及び左右に移動可能に前記ベッド上の摺動面後方に立設されたコラムに支持される一方、
前記アームレス型自動工具交換装置は、テーパシャンク部を上にした工具を着脱自在に把持する工具把持部を円環状に複数備えた工具マガジンと、前記工具マガジンを回転して所望の工具把持部を割り出す割出モータとを有して、前記主軸ヘッドと割り出した所望の前記工具把持部との間で工具の装着・離脱動作を行い工具交換を実行し、
前記遮蔽板は、前記スライドベース上に立設した背面板と背面板の左右に設けた側面板とを有して、前記背面板に前記主軸ヘッド及び工具が通過可能な開口部を設ける一方、前記工具マガジンの前記工具把持部の少なくとも1箇所に前記開口部を閉鎖する閉鎖手段を設け、
前記閉鎖手段が、前記工具マガジンの複数箇所に立設されて前記工具マガジンと共に旋回する板部材であって、
前記スライドベースの前後移動と、前記主軸ヘッドの上下移動と、前記工具マガジンの回転とにより、前記主軸ヘッドを前記開口部から前記工具マガジンが配置された前記非加工領域内に進入させて、前記アームレス型自動工具交換装置と前記主軸との間で工具交換を行い、
少なくとも加工動作中は、前記閉鎖手段が割り出されて前記開口部を閉鎖し、前記加工領域と前記非加工領域を隔離することを特徴とするマシニングセンタ。
A bed having a sliding surface formed on the upper surface along the front-rear direction, a slide base supported so as to be movable back and forth on the sliding surface, and placed on the slide base to place a workpiece A table, a spindle that rotates a tool mounted on the upper part of the table, a spindle head that supports the spindle, an armless automatic tool changer that includes a tool magazine and automatically changes a tool that is mounted on the spindle; In a machining center provided with a shielding plate that separates a machining area on the slide base side and a non-machining area on the tool magazine side,
While the spindle head is supported by a column erected on the back of the sliding surface on the bed so as to be movable up and down and left and right,
The armless type automatic tool changer includes a tool magazine provided with a plurality of annular tool grips for detachably gripping a tool with a taper shank portion up, and a desired tool gripping portion by rotating the tool magazine. An indexing motor for indexing, and performing a tool change by performing a tool mounting / dismounting operation between the spindle head and the indexed desired tool gripping part,
The shield plate has a back plate erected on the slide base and side plates provided on the left and right of the back plate, while providing the back plate with an opening through which the spindle head and a tool can pass. A closing means for closing the opening at at least one position of the tool gripping portion of the tool magazine;
The closing means is a plate member that is erected at a plurality of locations of the tool magazine and pivots together with the tool magazine,
By moving the slide base back and forth, moving the spindle head up and down, and rotating the tool magazine, the spindle head enters the non-working area where the tool magazine is disposed from the opening, and Tool exchange between the armless type automatic tool changer and the spindle,
The machining center characterized in that at least during the machining operation, the closing means is indexed to close the opening and to isolate the machining area from the non-machining area.
前記割出モータによる所望の前記工具把持部の割り出し動作は、前記主軸に装着された工具による加工が終了した時点に開始されることを特徴とする請求項記載のマシニングセンタ。 Said indexing operation desired of the tool gripping portion by indexing motor, a machining center according to claim 1, wherein the machining by the tool mounted on the spindle is started upon completion.
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