JPH10235510A - Throw away tip - Google Patents

Throw away tip

Info

Publication number
JPH10235510A
JPH10235510A JP3952297A JP3952297A JPH10235510A JP H10235510 A JPH10235510 A JP H10235510A JP 3952297 A JP3952297 A JP 3952297A JP 3952297 A JP3952297 A JP 3952297A JP H10235510 A JPH10235510 A JP H10235510A
Authority
JP
Japan
Prior art keywords
tip
cutting edge
main cutting
throw
angle
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP3952297A
Other languages
Japanese (ja)
Inventor
Masaharu Takiguchi
正治 滝口
Masato Kurokawa
正人 黒川
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitsubishi Materials Corp
Original Assignee
Mitsubishi Materials Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsubishi Materials Corp filed Critical Mitsubishi Materials Corp
Priority to JP3952297A priority Critical patent/JPH10235510A/en
Publication of JPH10235510A publication Critical patent/JPH10235510A/en
Pending legal-status Critical Current

Links

Abstract

PROBLEM TO BE SOLVED: To perform boring of a plurality of kinds of diameters by using differ ent tool main bodies by making the tip part of a main cutting edge a projecting curved shape which gradually approaches the bottom and making the rear end part a corner. SOLUTION: One end of a main cutting edge 6 is curved into a projecting curved shape of a radius Ra and is made a tip part 6a. The other end is made a rear end part 6b which is made a nose by a plane view. Because the rear end part 6b on the outer peripheral side of the main cutting edge 6 is made the nose even if the fitting angle of a throw away tip is changed, fracturing of the cutting edge 6 can be suppressed at the time of a rotational cutting. By using various kinds of drills provided with tip fitting seats which are different in the angle of the first side walls by using the same throw away tip, plural kinds of throw-away tipped drills having main cutting edges 6 which are different in tip angles and different in outside dimensions can be obtained.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、穴明け加工等に用
いられるスローアウェイ式ドリル等に装着可能なスロー
アウェイチップに関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a throw-away insert which can be mounted on a throw-away type drill used for drilling or the like.

【0002】[0002]

【従来の技術及び発明が解決しようとする課題】従来、
2枚刃のスローアウェイ式ドリルを用いて穴明け加工を
行う場合、ドリル本体の先端に取り付けられた2枚のス
ローアウェイチップの主切刃でもって回転切削が行われ
る。ところで、このようなスローアウェイ式ドリルで穴
加工を行う際、穴の内径が異なると、その内径に応じた
外径寸法を備えた主切刃を有する別のスローアウェイチ
ップを、そのチップを装着できるチップ取付座を備えた
別のドリル本体に装着して切削加工していた。そのた
め、加工する穴寸法に応じてそれぞれ対応するスローア
ウェイチップとこれを装着するドリル本体とを個別に用
意する必要があり、コスト高になり、穴加工時における
所望寸法のチップとこれに適合するドリル本体の選別が
煩雑であるという欠点があった。
2. Description of the Related Art
When drilling is performed using a two-flute indexable drill, rotary cutting is performed with the main cutting edge of two indexable inserts attached to the tip of the drill body. By the way, when the hole is drilled with such a throw-away type drill, if the inner diameter of the hole is different, another insert with a main cutting edge having an outer diameter dimension corresponding to the inner diameter is attached to the insert. It had to be mounted on another drill body equipped with a possible chip mounting seat for cutting. Therefore, it is necessary to separately prepare a corresponding throw-away tip and a drill body for mounting the same in accordance with the hole size to be machined, resulting in high cost, and a chip having a desired size at the time of hole machining and conforming thereto. There is a disadvantage that the selection of the drill body is complicated.

【0003】本発明は、このような課題に鑑みて、異な
る工具本体に用いて複数種類の径の穴加工が可能なスロ
ーアウェイチップを提供することを目的とする。
[0003] In view of the above problems, an object of the present invention is to provide a throw-away insert that can be used for different tool bodies and can be used to machine a plurality of types of holes.

【0004】[0004]

【課題を解決するための手段】本発明によるスローアウ
ェイチップは、着座面をなす下面と、この下面に対向し
てすくい面をなす上面とを備え、下面側から上面に向け
て外側に傾斜する側面と上面との交差稜線部が主切刃と
されたスローアウェイチップにおいて、主切刃の先端部
が漸次下面に近付く凸曲線状とされていると共に後端部
がコーナRとされたことを特徴とするものである。この
チップをスローアウェイ式ドリル等に装着して切削加工
すると、主切刃の先端部が凸曲線を成しているので、刃
先強度が大きく喰い付き時等に先端部が欠損するのを抑
制でき、また後端部がコーナRとされているから、チッ
プの装着角度に関わらず欠損しにくい。また、チップ取
付座の回転軸線に対する角度を変えた工具本体を複数種
類設けることで、同一のスローアウェイチップを回転軸
線に対して異なる角度で装着でき、主切刃の回転軸線に
対する角度が相違することで工具切刃の外径寸法を増減
設定することができて経済的である。
The indexable insert according to the present invention has a lower surface forming a seating surface and an upper surface forming a rake face opposite to the lower surface, and is inclined outward from the lower surface toward the upper surface. In the throwaway tip where the intersection ridge line between the side surface and the top surface is the main cutting edge, the tip of the main cutting edge is formed into a convex curve gradually approaching the lower surface, and the rear end is formed as a corner R. It is a feature. When this tip is mounted on a throw-away type drill, etc., the tip of the main cutting edge has a convex curve, so the edge strength is large and it can be suppressed that the tip is broken when biting etc. In addition, since the rear end portion has a corner R, it is unlikely to be broken regardless of the mounting angle of the chip. Also, by providing a plurality of types of tool bodies having different angles with respect to the rotation axis of the tip mounting seat, the same throw-away tip can be mounted at different angles with respect to the rotation axis, and the angle of the main cutting edge with respect to the rotation axis is different. This makes it possible to increase or decrease the outer diameter of the tool cutting blade, which is economical.

【0005】また、主切刃の後端部に続く外側側面は、
スローアウェイチップの取り付け角度に関わらず加工面
に当接しないようサイド逃げ角が設定されていてもよ
い。そのため、異なる工具本体のチップ取付座に主切刃
が異なる角度をなすようにこのスローアウェイチップを
装着しても、回転切削時に外側側面が加工面を擦ること
はない。また、上面には、主切刃に沿ってブレーカ溝が
設けられていてもよい。また、スローアウェイチップは
略三角形板状とされ、主切刃の逃げ面をなす側面に対向
する二つの側面が、工具本体のチップ取付座の側壁に当
接して位置決めされるようにしてもよい。
[0005] The outer side surface following the rear end of the main cutting edge includes:
The side clearance angle may be set so as not to come into contact with the processing surface regardless of the attachment angle of the throw-away insert. For this reason, even if the indexable insert is attached to the tip mounting seats of different tool bodies so that the main cutting edge forms a different angle, the outer side surface does not rub the machined surface during rotary cutting. Further, a breaker groove may be provided on the upper surface along the main cutting edge. Further, the throw-away insert may be formed in a substantially triangular plate shape, and two side surfaces opposite to the side surface forming the flank of the main cutting edge may be positioned in contact with the side wall of the chip mounting seat of the tool body. .

【0006】[0006]

【発明の実施の形態】以下、本発明の実施の形態を図1
乃至図6により説明する。図1は実施の形態によるスロ
ーアウェイチップの平面図、図2は図1に示すスローア
ウェイチップのA方向矢視による側面図、図3は図1に
示すチップのB−B線断面図、図4は実施の形態による
スローアウェイチップを装着したスローアウェイ式ドリ
ルの全体図、図5は図4におけるドリルの刃部の拡大
図、図6は図4に示すドリルの先端面拡大図である。図
1乃至3において、実施の形態によるスローアウェイチ
ップ1は多角形板状、例えば略三角形板状(または略六
角形板状)に形成されている。このスローアウェイチッ
プ1は、着座面とされる下面2に対向してすくい面をな
す上面3が設けられ、上面3の中央部から下面2を貫通
してネジ挿通用の孔4が穿孔されている。上面3と下面
2との間は側面5とされている。
FIG. 1 is a block diagram showing an embodiment of the present invention.
This will be described with reference to FIGS. 1 is a plan view of a throw-away tip according to an embodiment, FIG. 2 is a side view of the throw-away tip shown in FIG. 1 as viewed in the direction of arrow A, and FIG. 3 is a cross-sectional view of the tip shown in FIG. 4 is an overall view of a throw-away type drill to which the throw-away tip according to the embodiment is mounted, FIG. 5 is an enlarged view of a drill blade portion in FIG. 4, and FIG. 6 is an enlarged view of a tip end surface of the drill shown in FIG. 1 to 3, the throw-away tip 1 according to the embodiment is formed in a polygonal plate shape, for example, a substantially triangular plate shape (or a substantially hexagonal plate shape). The throw-away tip 1 is provided with an upper surface 3 which forms a rake face facing the lower surface 2 which is a seating surface, and a hole 4 for screw insertion is formed through the lower surface 2 from the center of the upper surface 3. I have. A side surface 5 is formed between the upper surface 3 and the lower surface 2.

【0007】このチップ1は、上面3と逃げ面を成す主
側面5aとでなす最長のほぼ直線状の交差稜線が主切刃
6とされている。主側面5aと鋭角で交差する隣りの側
面5bの上面1との交差部(辺)が凸曲面状にカットさ
れて上面1から下面2に近付くよう湾曲する凸曲面7と
されていることで、主切刃6の一端は、図2(図1のA
方向矢視図)で示すように半径Raの凸曲線状に湾曲さ
れ、先端部6aとされている。他端は平面視でノーズR
とされた後端部6bとされている。主側面5aが下面側
から上面3に向けて外側に傾斜することで、このチップ
1はポジチップとされている。
The chip 1 has a main cutting edge 6 which is the longest substantially straight crossing ridge formed by the upper surface 3 and the main side surface 5a forming a flank. The intersection (side) of the adjacent side surface 5b, which intersects the main side surface 5a at an acute angle, with the upper surface 1 is cut into a convex curved surface and is formed as a convex curved surface 7 that curves from the upper surface 1 to the lower surface 2. One end of the main cutting edge 6 is shown in FIG.
As viewed in the direction indicated by the arrow, it is curved in the shape of a convex curve having a radius Ra, which is the tip 6a. Nose R at the other end in plan view
Rear end 6b. Since the main side surface 5a is inclined outward from the lower surface toward the upper surface 3, the chip 1 is a positive chip.

【0008】また、側面5bに隣接して凸曲面7を斜め
にカットする第一側面5cと面取り側面5eを介した第
二側面5dとは、所定の交角が設定されており、第一及
び第二側面5c、5dは上下面3、2に直交する平面と
されている。主側面5aと第二側面5dとの間にはサイ
ド逃げ角γを有する第三側面5f(外側側面)が形成さ
れている。側面5bと第三側面5fも主側面5aと同様
に下面側から上面3に向けて外側に傾斜している。そし
て、上面3において、主切刃6に沿って図3に示すよう
な断面円弧状のブレーカ溝8が形成され、このブレーカ
溝8は主切刃6の先端部6a側では凸曲面7に交差して
終了し、後端部6b側で第三側面5fに接続されてい
る。
The first side face 5c which obliquely cuts the convex curved face 7 adjacent to the side face 5b and the second side face 5d via the chamfered side face 5e have a predetermined intersection angle, and the first and the second side faces are formed. The two side surfaces 5c and 5d are planes orthogonal to the upper and lower surfaces 3 and 2. A third side surface 5f (outside side surface) having a side clearance angle γ is formed between the main side surface 5a and the second side surface 5d. The side surface 5b and the third side surface 5f are also inclined outward from the lower surface side toward the upper surface 3 similarly to the main side surface 5a. On the upper surface 3, a breaker groove 8 having an arc-shaped cross section as shown in FIG. 3 is formed along the main cutting edge 6, and this breaker groove 8 intersects with the convex curved surface 7 on the tip 6 a side of the main cutting edge 6. Then, it is connected to the third side surface 5f on the rear end 6b side.

【0009】本実施の形態によるスローアウェイチップ
1は上述の構成を備えており、次にこのチップ1が装着
されるスローアウェイ式ドリル10について、図4乃至
図6により説明する。図4乃至6において、スローアウ
ェイ式ドリル10のドリル本体11は、シャンク部12
と刃部13とからなり、ドリル本体11の刃部13の先
端面13aは回転軸線Oとの交点を頂点とする略円錐の
テーパ面状に形成され、しかもその頂点付近は基端側に
落ち込む凹部14とされている。刃部13の外周面に
は、回転軸線Oに対向して断面視略扇型の一対の切屑排
出溝15が形成され(図6参照)、これら切屑排出溝1
5は回転軸線Oに沿って外周面を螺旋状に切り欠いて形
成されている。
The indexable insert 1 according to the present embodiment has the above-described configuration. Next, an indexable drill 10 to which the insert 1 is mounted will be described with reference to FIGS. 4 to 6, the drill body 11 of the throw-away drill 10 includes a shank portion 12.
The tip surface 13a of the blade portion 13 of the drill body 11 is formed in a substantially conical tapered surface having an apex at the intersection with the rotation axis O, and the vicinity of the apex falls to the base end side. The recess 14 is provided. A pair of chip discharge grooves 15 having a substantially fan shape in cross section are formed on the outer peripheral surface of the blade portion 13 so as to face the rotation axis O (see FIG. 6).
5 is formed by spirally cutting the outer peripheral surface along the rotation axis O.

【0010】各切屑排出溝15の回転方向を向く壁面1
5aは、その先端部が平面視略V字状に切り欠かれてチ
ップ取付座17とされ、チップ取付座17は底面17a
とその両側の第一及び第二側壁17b,17cとからな
り、第一及び第二側壁17b,17cの交差部にぬすみ
が形成されている。第一及び第二側壁17b,17cの
交角は、スローアウェイチップ1の第一及び第二側面5
c,5dの交角と同一に設定されている。図5に示すよ
うに、ドリル本体11の回転軸線Oに近接する側の第一
側壁17bは、切屑排出溝15の回転方向後方を向く壁
面15bよりも回転軸線Oとのなす角度が大きく(角度
αとする)、外側に突出している。また、第一側壁17
bの角度αは、後述するようにドリル10の主切刃6の
先端角β、即ち主切刃6の外径寸法φDに応じて決定さ
れている。
[0010] Wall surface 1 of each chip discharge groove 15 facing the rotation direction
5a is a chip mounting seat 17 whose tip is cut out in a substantially V shape in plan view, and the chip mounting seat 17 has a bottom surface 17a.
And first and second side walls 17b and 17c on both sides thereof, and a slack is formed at the intersection of the first and second side walls 17b and 17c. The intersection angle between the first and second side walls 17b and 17c is different from the first and second side surfaces 5 of the throw-away tip 1.
It is set to be the same as the intersection angle between c and 5d. As shown in FIG. 5, the first side wall 17b on the side close to the rotation axis O of the drill body 11 has a larger angle (angle) with the rotation axis O than the wall surface 15b of the chip discharge groove 15 facing rearward in the rotation direction. α), and protrudes outward. Also, the first side wall 17
The angle α of b is determined according to the tip angle β of the main cutting edge 6 of the drill 10, that is, the outer diameter dimension φD of the main cutting edge 6, as described later.

【0011】実施の形態による2枚のスローアウェイチ
ップ1が、図5に示すように、ドリル本体11の各チッ
プ取付座17にそれぞれ装着され、各チップ1の第一及
び第二側面5c、5dがチップ取付座17の第一及び第
二側壁17b、17cに当接させられる。その際、チッ
プ1の凸曲面7がチップ取付座17から先端側に突出し
て、回転軸線Oに近接してその外側にほぼ平行に位置
し、主切刃6は回転軸線Oに直交する線と鋭角θ(例え
ばθ1とする)をなす取付け状態でネジ止めされてい
る。そのため、一対のスローアウェイチップ1、1の主
切刃6、6は、回転軸線Oの領域で基端側に凹んだ凹部
14(チゼル部)を介して先端角β(例えばβ1とし、
β1=180゜−2θ1)を成している。一対の主切刃6
の長さ寸法は予め設定されているから、主切刃6の角度
θ即ち先端角βによってドリル10の主切刃6の外径φ
D(例えばD1とする)が決定される。
As shown in FIG. 5, two indexable inserts 1 according to the embodiment are mounted on the respective tip mounting seats 17 of the drill body 11, and the first and second side surfaces 5c, 5d of the respective inserts 1 are provided. Are brought into contact with the first and second side walls 17b and 17c of the chip mounting seat 17. At this time, the convex curved surface 7 of the tip 1 protrudes from the tip mounting seat 17 to the distal end side, is positioned close to the rotation axis O and almost parallel to the outside thereof, and the main cutting edge 6 is defined by a line perpendicular to the rotation axis O. It is screwed in an attached state forming an acute angle θ (for example, θ 1 ). Therefore, the main cutting edges 6, 6 of the pair of indexable inserts 1 , 1 are provided with a tip angle β (for example, β 1 ) via a concave portion 14 (chisel portion) that is concave toward the base end in the region of the rotation axis O.
β 1 = 180 ° −2θ 1 ). A pair of main cutting blades 6
Is set in advance, the outer diameter φ of the main cutting edge 6 of the drill 10 depends on the angle θ of the main cutting edge 6, ie, the tip angle β.
D (eg, D 1) are determined.

【0012】本実施の形態によるスローアウェイチップ
1を装着したスローアウェイ式ドリル10は上述のよう
に構成されており、切削加工時には、先端角β1を備え
た一対の主切刃6,6で穴明け加工が行われる。その
際、ドリル本体11の回転軸線Oの周りは低速となる
が、凹部14が設けられ主切刃6がないので、欠損する
こともない。この部分にチゼルが設けられていないか
ら、切削時のスラスト抵抗が小さい。そのため、穴明け
加工切削時に凹部14の部分に削り残しができるが、こ
の削り残しは生成される切屑によって折断されたり、ド
リル10に押しつぶされるために、不具合は生じない。
また、主切刃6の先端側から漸次被削材に接触すること
になるが、主切刃6の先端部6aは凸曲線とされている
から、喰い付き時に主切刃6に衝撃的な負荷がかから
ず、先端部6aが欠けにくい。また、スローアウェイチ
ップ1の切削荷重を受けるチップ取付座17の回転軸線
O側の第一側壁17bが、切屑排出溝15の回転方向後
方を向く壁面15bより外側に突出しているので、ドリ
ル剛性が高い。主切刃6の外周側の後端部6bはノーズ
Rとなっているので、切削時に欠損することを抑制でき
る。
The indexable drill 10 equipped with the indexable insert 1 according to the present embodiment is configured as described above. At the time of cutting, a pair of main cutting edges 6 and 6 having a tip angle β 1 is used. Drilling is performed. At this time, the rotation speed around the rotation axis O of the drill body 11 becomes low, but since there is no concave portion 14 and there is no main cutting edge 6, there is no loss. Since no chisel is provided in this portion, thrust resistance during cutting is small. For this reason, uncut portions can be left in the concave portions 14 at the time of drilling cutting. However, since the uncut portions are broken by the generated chips or crushed by the drill 10, no problem occurs.
In addition, the workpiece gradually comes into contact with the work piece from the tip side of the main cutting edge 6, but since the tip portion 6a of the main cutting edge 6 has a convex curve, the main cutting edge 6 has an impact on the main cutting edge 6 when biting. The load is not applied, and the tip 6a is not easily chipped. Further, since the first side wall 17b on the rotation axis O side of the tip mounting seat 17 receiving the cutting load of the throw-away tip 1 projects outward from the wall surface 15b of the chip discharge groove 15 facing rearward in the rotation direction, the drill rigidity is reduced. high. Since the rear end portion 6b on the outer peripheral side of the main cutting edge 6 has a nose R, it is possible to suppress breakage during cutting.

【0013】また、ドリル10の主切刃外径φDをより
大きくして、より大径の穴明けを行う場合には、図7に
示すように、チップ取付座17を除いてドリル10と同
形同大のドリル20を用いる。チップ取付座17′は、
その第一側壁17b′の回転軸線Oに対する角度α(例
えばα2とする)をα1より大きく設定して、第一及び第
二側壁17b′、17c′の交角をドリル10と同一に
設定すればよい。そして、このドリル20に上述のスロ
ーアウェイチップ1を装着すれば、回転軸線Oに直交す
る線に対する主切刃6の角度θ(例えばθ2とする)が
θ1より大きくなり、一対のスローアウェイチップ1、
1の主切刃6、6の先端角β(例えばβ2とする)が角
度β1より大きくなり、ドリル20の主切刃6の外径φ
D(例えばD2とする)も所定寸法だけD1より増大す
る。
When the outer diameter φD of the main cutting edge of the drill 10 is to be made larger and a larger diameter hole is to be drilled, as shown in FIG. A drill 20 of the same size is used. The tip mounting seat 17 '
The angle α (eg, α 2 ) of the first side wall 17 b ′ with respect to the rotation axis O is set to be larger than α 1 , and the intersection angle between the first and second side walls 17 b ′ and 17 c ′ is set to be the same as that of the drill 10. I just need. When the above-described throw-away tip 1 is mounted on the drill 20, the angle θ (for example, θ 2 ) of the main cutting edge 6 with respect to a line orthogonal to the rotation axis O becomes larger than θ 1 , and a pair of throw-aways Chip 1,
The tip angle β (for example, β 2 ) of the first main cutting edge 6 becomes larger than the angle β 1 , and the outer diameter φ of the main cutting edge 6 of the drill 20.
D (for example, D 2) also increases from D 1 by a predetermined distance.

【0014】スローアウェイチップ1の装着角度が変化
しても、主切刃6の外周側の後端部6bはノーズRとな
っているので、回転切削時に欠損することを抑制でき
る。また、チップ1の後端部6bにつながる第三側面5
fに、主切刃6の取り得る装着角度θの最大値に対して
加工面を擦過しない大きさの正のサイド逃げ角γ(回転
軸線Oに平行な線に対して)を設定しているから、回転
切削時にチップ1の第三側面5fが加工面を擦過するお
それもない。従って、同一のスローアウェイチップ1を
用いて、第一側壁17b,17b′…の角度αの異なる
チップ取付座17,17′…を備えた各種のドリル1
0,20…を用いることで、先端角βが異なり、外径寸
法φDの異なる主切刃6を有する複数種類のスローアウ
ェイ式ドリルを得られることになる。尚、主切刃6の回
転軸線Oに直交する線に対する角度θと、主切刃6の先
端角βと外径φDとの各数値について、相互関係の一例
を示せば下の表1のようになる。
Even if the mounting angle of the indexable insert 1 changes, the rear end 6b on the outer peripheral side of the main cutting edge 6 has a nose R, so that it is possible to suppress the chipping during rotary cutting. Also, a third side surface 5 connected to the rear end 6b of the chip 1
f, a positive side clearance angle γ (with respect to a line parallel to the rotation axis O) is set so as not to scratch the processing surface with respect to the maximum value of the mounting angle θ that the main cutting edge 6 can take. Therefore, there is no possibility that the third side surface 5f of the chip 1 will scrape the machined surface during rotary cutting. Therefore, various drills 1 having the tip mounting seats 17, 17 '... Having different angles α of the first side walls 17b, 17b'.
By using 0, 20,..., It is possible to obtain a plurality of types of indexable drills having the main cutting edges 6 having different tip angles β and different outer diameters φD. An example of the correlation between the angle θ of the main cutting edge 6 with respect to a line orthogonal to the rotation axis O, the tip angle β of the main cutting edge 6 and the outer diameter φD is shown in Table 1 below. become.

【0015】[0015]

【表1】 [Table 1]

【0016】上述のように、本実施の形態によれば、1
種類のスローアウェイチップ1を用いて、回転軸線Oに
対する角度αの相違する各チップ取付座17,17′…
を備えた複数種類のドリル10,20…に装着可能とな
り、主切刃6の外径寸法φDの異なる複数種類のスロー
アウェイ式ドリルが得られる。従って、同一のチップを
異なるドリル10,20…に装着して異なる外径寸法の
ドリルが得られ、異なる内径の穴明け作業等ができ、複
数種類のチップを備える必要がなく経済的であり、しか
も各種のドリルに対するチップ1の装着作業が容易にな
る。
As described above, according to the present embodiment, 1
Each of the tip mounting seats 17, 17 'having a different angle .alpha.
Can be mounted on a plurality of types of drills 10, 20,... Provided with the above, and a plurality of types of indexable drills having different outer diameters φD of the main cutting edge 6 can be obtained. Accordingly, the same tip is mounted on different drills 10, 20,... To obtain drills having different outer diameters, and it is possible to perform a drilling operation with different inner diameters, and it is economical because it is not necessary to provide a plurality of types of tips. In addition, the work of attaching the tip 1 to various drills becomes easy.

【0017】尚、上述の実施の形態では、主切刃6は直
線状とされているが、凸曲線状でもよく、チップ1の形
状も略三角形に限らず、四角形板状等、各種のものに適
用できる。
In the above-described embodiment, the main cutting edge 6 is straight, but it may be convex, and the shape of the tip 1 is not limited to a substantially triangle, but may be various types such as a square plate. Applicable to

【0018】[0018]

【発明の効果】上述のように、本発明に係るスローアウ
ェイチップは、主切刃の先端部が漸次下面に近付く凸曲
線状とされていると共に後端部がコーナRとされている
から、このチップをスローアウェイ式ドリル等に装着し
て切削加工すると、主切刃の先端部が凸曲線を成してい
るので刃先強度が強く、喰い付き時等に先端部が欠損す
るのを抑制でき、また後端部がコーナRとされているか
ら、チップの装着角度に関わらず欠損しにくい。また、
チップ取付座の回転軸線に対する角度を変えた工具本体
を複数種類設けることで、同一のスローアウェイチップ
を装着できて主切刃の先端角を変化させることができ、
主切刃の外径寸法を増減することができて経済的であ
る。また、主切刃の後端部に続く外側側面は、スローア
ウェイチップの取り付け角度に関わらず加工面に当接し
ないようサイド逃げ角が設定されているから、異なる工
具本体のチップ取付座に主切刃が異なる先端角をなすよ
うにこのスローアウェイチップを装着しても、外側側面
が回転切削時に加工面を擦ることはない。
As described above, in the indexable insert according to the present invention, the tip of the main cutting edge is formed in a convex curve shape gradually approaching the lower surface, and the rear end is formed as a corner R. When this tip is mounted on a throw-away type drill, etc., the tip of the main cutting edge has a convex curve, so the cutting edge strength is strong, and it is possible to prevent the tip from losing when biting etc. In addition, since the rear end portion has a corner R, it is unlikely to be broken regardless of the mounting angle of the chip. Also,
By providing a plurality of types of tool bodies with different angles with respect to the rotation axis of the tip mounting seat, the same indexable insert can be mounted and the tip angle of the main cutting edge can be changed.
It is economical because the outer diameter of the main cutting edge can be increased or decreased. The outer side surface following the rear end of the main cutting edge has a side clearance angle set so that it does not come into contact with the processing surface regardless of the mounting angle of the indexable insert. Even if the indexable insert is mounted so that the cutting edges have different tip angles, the outer side surface does not rub against the processing surface during rotary cutting.

【図面の簡単な説明】[Brief description of the drawings]

【図1】 本実施の形態によるスローアウェイチップの
平面図である。
FIG. 1 is a plan view of a throw-away tip according to the present embodiment.

【図2】 図1に示すスローアウェイチップのA方向矢
視による側面図である。
FIG. 2 is a side view of the throw away tip shown in FIG.

【図3】 図1に示すスローアウェイチップのB−B線
断面図である。
FIG. 3 is a sectional view taken along line BB of the throw-away tip shown in FIG.

【図4】 本発明の実施の形態によるスローアウェイチ
ップを装着したスローアウェイ式ドリルの全体図であ
る。
FIG. 4 is an overall view of a throw-away drill equipped with a throw-away tip according to an embodiment of the present invention.

【図5】 図4におけるドリルの刃部の拡大図である。FIG. 5 is an enlarged view of a blade portion of the drill in FIG.

【図6】 図4に示すドリルの先端面拡大図である。FIG. 6 is an enlarged view of the distal end face of the drill shown in FIG.

【図7】 スローアウェイチップを他の角度のチップ取
付座を有するドリルに装着した状態の刃部の拡大図であ
る。
FIG. 7 is an enlarged view of the blade portion in a state where the indexable insert is mounted on a drill having a tip mounting seat at another angle.

【符号の説明】[Explanation of symbols]

1 スローアウェイチップ 5a 主側面 5c 第一側面 5d 第二側面 5f 第三側面 6 主切刃 6a 先端部 6b 後端部 10 スローアウェイ式ドリル 17,17′ チップ取付座 17b,17b′ 第一側壁 17c,17c′ 第二側壁 DESCRIPTION OF SYMBOLS 1 throw-away tip 5a main side 5c first side 5d second side 5f third side 6 main cutting edge 6a tip 6b rear end 10 throw-away drill 17, 17 'tip mounting seat 17b, 17b' first side wall 17c , 17c 'second side wall

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 着座面をなす下面と、この下面に対向し
てすくい面をなす上面とを備え、前記下面側から上面に
向けて外側に傾斜する側面と前記上面との交差稜線部が
主切刃とされたスローアウェイチップにおいて、前記主
切刃の先端部が漸次下面に近付く凸曲線状とされている
と共に後端部がコーナRとされたことを特徴とするスロ
ーアウェイチップ。
1. A lower surface forming a seating surface, and an upper surface forming a rake surface opposite to the lower surface, and an intersection ridge line portion of the side surface inclined outward from the lower surface side to the upper surface and the upper surface is mainly provided. In a throwaway tip having a cutting edge, a tip of the main cutting edge is formed into a convex curve gradually approaching a lower surface, and a rear end is formed with a corner R.
【請求項2】 前記主切刃の後端部に続く外側側面は、
前記スローアウェイチップの取り付け角度に関わらず加
工面に当接しないようサイド逃げ角が設定されているこ
とを特徴とする請求項1記載のスローアウェイチップ。
2. An outer side surface following a rear end of the main cutting blade,
2. The throw-away insert according to claim 1, wherein a side clearance angle is set so that the side-away insert does not come into contact with a processing surface regardless of an attachment angle of the throw-away insert.
JP3952297A 1997-02-24 1997-02-24 Throw away tip Pending JPH10235510A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3952297A JPH10235510A (en) 1997-02-24 1997-02-24 Throw away tip

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3952297A JPH10235510A (en) 1997-02-24 1997-02-24 Throw away tip

Publications (1)

Publication Number Publication Date
JPH10235510A true JPH10235510A (en) 1998-09-08

Family

ID=12555388

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3952297A Pending JPH10235510A (en) 1997-02-24 1997-02-24 Throw away tip

Country Status (1)

Country Link
JP (1) JPH10235510A (en)

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