JP3685242B2 - Cutting method of tapered square screw - Google Patents

Cutting method of tapered square screw Download PDF

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Publication number
JP3685242B2
JP3685242B2 JP20403599A JP20403599A JP3685242B2 JP 3685242 B2 JP3685242 B2 JP 3685242B2 JP 20403599 A JP20403599 A JP 20403599A JP 20403599 A JP20403599 A JP 20403599A JP 3685242 B2 JP3685242 B2 JP 3685242B2
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Japan
Prior art keywords
thread
chaser
flank
axis
respect
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JP20403599A
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Japanese (ja)
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JP2001030113A (en
Inventor
隆寛 高野
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Nippon Steel Corp
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Sumitomo Metal Industries Ltd
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Description

【0001】
【発明の属する技術分野】
本発明は、管端に特殊なシール部を有する油井管などの鋼管へのテーパ付角形ねじの切削方法に関する。
【0002】
【従来の技術】
石油や天然ガスの掘削などに用いる油井管のねじは、製造上および用途上の要求が極めて厳しいため、例えば、API規格のバットレスねじが開発されている。しかし、近年の油井は、極めて深くなり、API規格のバットレスねじ以上にジョイントストレングスおよび気密性の向上が要求されている。このため、より大きな強度や漏洩防止を要する石油、天然ガス井用の特殊なエキストリームライン角形ねじが開発され、規格化されている。
【0003】
このエキストリームライン角形ねじは、例えば、雄ねじの場合、図6(a)(b)に示すように、鋼管51の端部のねじ山52の遊び側フランク53および圧力側フランク54のねじ継手の軸に対する反管端側角度α1、α2が鋭角なテーパ付角形ねじ形状である。このような、エキストリームライン角形ねじ継手のねじの切削加工は、ねじ下テーパ外径部を加工したのち、図7(a)に示すように、仕上ねじ形状に成形された数山のねじ山形切れ刃X、Yを持ったチェーザ71を使用し、数パス、例えば、図7(b)に示すように、3パスのねじ切削を行うことによって、ねじの切削加工を行っていた。
【0004】
また、他のねじの切削方法あるいはねじの切削工具としては、工具ホルダーに側刃部と下刃部とが設けられた総形バイトとねじ切削工具とを一定の間隔をおいて所定の段差を設けて一体的に組み付けた切削加工工具を用いて、管端に特殊なシール部を有する鋼管のねじ切り加工方法であって、前記総形バイトの側刃部を用いて前記シール部の端面と外面を切削加工する工程と、前記総形バイトの下刃部を用いてねじ下テーパ外径部を切削加工する工程と、前記ねじ切削工具を用いて前記ねじ下テーパ外径部にねじ切削加工を行う工程と、を一連の動作で連続して行う鋼管のねじ切り加工方法(特公平6-102285号公報)、工具回転型の鋼管端面加工機に使用する組合せ工具において、各種チップを着脱可能に設けた工具本体と、該工具本体のチャック側端面角部にあって主軸軸線方向を横切る方向に向けて夫々頂角を形成するように取付けた三角または四角形チップと、前記工具本体の前記チップ取付け位置より主軸軸線方向内側に設けられたチェーザとからなり、前記チップの頂角および斜面荷より鋼管の端面、内外面の面取り、外径加工を行うと共にチェーザでねじ加工を行う組合わせ工具(実開昭62-53921号公報)等が提案されている。
【0005】
【発明が解決しようとする課題】
前記従来のチェーザを使用した鋼管のねじ切り加工は、いずれも1個のチェーザを使用し、例えば、3パスのねじ切削によりねじ切削加工を行うため、切り粉が加工途中の製品に巻付く等により発生するチェーザの欠損が起きた場合、その製品は不良品となってしまう。しかも、この方法は、1個のチェーザを使用して数パスねじ切削するため、チェーザのねじ山形切れ刃の摩耗が早く、チェーザの寿命が短いという問題があった。
【0006】
さらに、ねじ切削能率を向上させるためには、ねじ切削パス回数を減少させることが必要であるが、従来のように1個のチェーザのみの使用ではそれを行った場合、1パス当たりのチェーザへの切削負荷が増大し、チェーザの寿命を著しく低下させていた。
【0007】
チェーザを粗加工用と仕上加工用の2個使用する場合でも、粗加工用のチェーザに切れ刃の追い側フランクおよび進み側フランクのねじ継手の軸に対する反管端側角度が鋭角な断面角形ねじ形状のねじ山形切れ刃を採用すると、図8に示すように、チェーザ81の研削を行う際、ねじ山形切れ刃X、Yの側面がねじ継手の軸に対して鋭角の面に逃げ角θが必要なため、図9に示すように、チェーザ81の1個毎にグラインダー82で研削を行う必要が生じる。このため、チェーザ研削には、多くの工数を必要とし、チェーザ81が高価となってしまうという問題点を有している。
【0008】
本発明の目的は、上記従来技術の問題点を解消し、加工途中において粗加工用チェーザに欠損が生じても、不良品の発生を防止でき、粗加工用チェーザでの切削加工代を大きく取れると共に、複数個を同時に研削できる粗加工用チェーザと、仕上加工用チェーザを用いたねじ切削方法を提供することにある。
【0009】
【課題を解決するための手段】
本発明のテーパ付角形ねじの切削加工方法は、ねじ下テーパ外径部を加工したのち、ねじ山の遊び側フランクおよび圧力側フランクのねじ継手の軸に対する反管端側角度α、αが鋭角なテーパ付角形ねじ形状のねじの切削加工を行うに際し、切れ刃の追い側フランクのねじ継手の軸に対する反管端側角度βが鈍角または直角で、進み側フランクのねじ継手の軸に対する反管端側角度βが鋭角な鋸歯ねじ形状の切れ刃を3山以上有する粗加工用のチェーザを用い、1回以上の粗ねじ加工を施す。そして、切れ刃の進み側フランクのねじ継手の軸に対する反管端側角度γ がテーパ付角形ねじのねじ山の遊び側フランクのねじ継手の軸に対する反管端側角度α と同一で、かつ、追い側フランクのねじ継手の軸に対する反管端側角度γ 、前記テーパ付角形ねじのねじ山の圧力側フランクのねじ継手の軸に対する反管端側角度α と同一のねじ山形切れ刃を1山以上有する仕上加工用のチェーザを用い、1回以上の仕上ねじ加工を施すのである。
【0010】
【発明の実施の形態】
本発明のテーパ付角形ねじの切削加工方法は、ねじ下テーパ外径部を加工したのち、切れ刃の追い側フランクのねじ継手の軸に対する反管端側角度βが鈍角または直角で、進み側フランクのねじ継手の軸に対する反管端側角度βが鋭角な鋸歯ねじ形状の切れ刃を3山以上有する粗加工用のチェーザと、切れ刃の進み側フランクのねじ継手の軸に対する反管端側角度γ がテーパ付角形ねじのねじ山の遊び側フランクのねじ継手の軸に対する反管端側角度α と同一で、かつ、追い側フランクのねじ継手の軸に対する反管端側角度γ 、テーパ付角形ねじのねじ山の圧力側フランクのねじ継手の軸に対する反管端側角度α 同一のねじ山形切れ刃を1山以上有する仕上加工用のチェーザの2個を使用するため、加工途中で粗加工用のチェーザに欠損が発生しても、仕上加工用のチェーザで切削加工でき、不良品の発生を防止することができる。
【0011】
また、本発明のテーパ付角形ねじの切削加工方法は、粗加工用のチェーザでねじの大部分を切削加工することにより、加工に要する仕上加工用のチェーザの切削回数を減少でき、チェーザの寿命延長を図ることができる。
【0012】
さらに、粗加工用のチェーザは、加工対象のねじ継手の軸方向に大きな幅を持たせて切れ刃を3山以上としたため、1パス当たりのねじ溝加工代を大きく取れ、ねじの切削加工に要する研削パス回数を低減でき、ねじ切削能率を向上できる。
【0013】
さらにまた、粗加工用のチェーザは、切れ刃の追い側フランクのねじ継手の軸に対する反管端側角度β2が鈍角または直角な鋸歯ねじ形状の切れ刃を採用したため、追い側フランクの逃げ角が不要となり、チェーザの研削加工を行う際、数枚の粗加工用のチェーザを同時に研削できるため、チェーザ研削工数を削減でき、結果として粗加工用のチェーザを低価格で入手できる。
【0014】
【実施例】
図1(a)に示すように、切れ刃の進み側フランク1のねじ継手の軸に対する反管端側角度β1が鋭角で、追い側フランク2のねじ継手の軸に対する反管端側角度β2が直角な鋸歯ねじ形状の4山の切れ刃A〜Dを有する粗加工用チェーザ3と、図1(b)に示すように、切れ刃の進み側フランク11および追い側フランク12のねじ継手の軸に対する反管端側角度γ1、γ2が鋭角な断面角形ねじ形状の2山のねじ山形切れ刃E、Fを有する仕上加工用チェーザ13を使用し、外径244.48mm、肉厚13.84mmの継目無鋼管の管端にねじ下テーパ外径部の加工を行った後、図2に示すように、粗加工用チェーザ3で1パス、仕上加工用チェーザ13で1パスのねじの切削加工を実施し、テーパ付角形ねじを管端に形成する試験を実施した。
【0015】
また、比較のため、従来法として図7(a)に示すように、切れ刃の進み側フランク72および追い側フランク73のねじ継手の軸に対する反管端側角度が鋭角な断面角形ねじ形状の2山の切れ刃X、Yを有する1個の加工用チェーザ71を使用し、管端にねじ下テーパ外径部の加工を行った後、図7(b)に示すように、3パスでねじの切削加工を実施し、テーパ付角形ねじを管端に形成する試験を実施した。
【0016】
そして、本発明法および従来法のチェーザ寿命、ねじ切削加工能率、チェーザ原単位を調査した。その結果を図3〜図5に示す。なお、チェーザ寿命は、仕上加工用チェーザ1個当たりのねじ切り加工管端数、ねじ切削加工能率は、1時間当たりのねじ切り加工管端数、チェーザ原単位は、寿命当たりのチェーザ価格で、従来法を100とした指数で示す。
【0017】
図3〜図5に示すように、本発明法では、チェーザ寿命が従来法に比較して約3倍に延長し、ねじ切削加工能率が従来法に比較して約11%向上し、チェーザ原単位が従来法に比較して約30%低減することができた。
【0018】
【発明の効果】
本発明のテーパ付角形ねじの切削加工方法は、切れ刃の追い側フランクのねじ継手の軸に対する反管端側角度βが鈍角または直角で、進み側フランクのねじ継手の軸に対する反管端側角度βが鋭角な鋸歯ねじ形状の切れ刃を3山以上有する粗加工用のチェーザを用いて1回以上の粗ねじ加工を施す。そして、切れ刃の進み側フランクのねじ継手の軸に対する反管端側角度γ がテーパ付角形ねじのねじ山の遊び側フランクのねじ継手の軸に対する反管端側角度α と同一で、かつ、追い側フランクのねじ継手の軸に対する反管端側角度γ 、テーパ付角形ねじのねじ山の圧力側フランクのねじ継手の軸に対する反管端側角度α と同一のねじ山形切れ刃を1山以上有する仕上加工用のチェーザを用いて1回以上の仕上ねじ加工を施すことによって、ねじ切削加工能率の向上、チェーザ平均寿命を延長できると共に、ねじチェーザの原単位を低減することができる。
【図面の簡単な説明】
【図1】実施例で用いた本発明法のチェーザを示すもので、(a)図は粗加工用のチェーザ、(b)図は仕上加工用のチェーザの側面図である。
【図2】実施例で用いた本発明法のチェーザによる2パスでのねじの切削加工方法の詳細説明図である。
【図3】実施例における本発明法と従来法のチェーザ寿命の比較を示すグラフである。
【図4】実施例における本発明法と従来法のねじ切削能率の比較を示すグラフである。
【図5】実施例における本発明法と従来法のチェーザ原単位の比較を示すグラフである。
【図6】テーパ付角形ねじの説明図で、(a)図は管端テーパ付角形ねじ部の概略断面図、(b)図は角形ねじの断面説明図である。
【図7】従来法のチェーザとねじの切削加工方法の説明図で、(a)図はチェーザの側面図、(b)図は3パスでのねじの切削加工方法の詳細説明図である。
【図8】従来法のチェーザの詳細説明図で、(a)図は側面図、(b)図は正面図、(c)図は底面図である。
【図9】従来法のチェーザのグラインダー研削の説明図で、(a)図は側面図、(b)図は底面図である。
【符号の説明】
1、11、72 進み側
2、12、73 追い側
3 粗加工用チェーザ
13 仕上加工用チェーザ
51 鋼管
52 ねじ山
53 遊び側フランク
54 圧力側フランク
71、81 チェーザ
82 グラインダー
A、B、C、D、X、Y 切れ刃
E、F、X、Y ねじ山形切れ刃
θ 逃げ角
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a method for cutting a tapered square screw into a steel pipe such as an oil well pipe having a special seal portion at a pipe end.
[0002]
[Prior art]
For example, API-standard buttress screws have been developed since oil well pipe screws used for drilling oil and natural gas have extremely strict requirements in terms of manufacturing and applications. However, oil wells in recent years have become extremely deep, and there is a demand for improved joint strength and airtightness over API standard buttress screws. For this reason, special extreme line square screws for oil and natural gas wells that require greater strength and leakage prevention have been developed and standardized.
[0003]
For example, in the case of a male screw, this extreme line square screw is a screw joint of a play side flank 53 and a pressure side flank 54 of a thread 52 at the end of a steel pipe 51, as shown in FIGS. 6 (a) and 6 (b). The opposite tube end-side angles α 1 and α 2 with respect to the shaft have a tapered rectangular screw shape. In such an extreme line rectangular threaded joint thread cutting, after machining the under-taper outer diameter part, as shown in Fig. 7 (a), several thread shapes formed into a finished thread shape Using a chaser 71 having cutting edges X and Y, as shown in FIG. 7 (b), for example, as shown in FIG.
[0004]
As another thread cutting method or thread cutting tool, a predetermined step is provided at a predetermined interval between a total cutting tool in which a side blade portion and a lower blade portion are provided on a tool holder and a thread cutting tool. A steel pipe threading method having a special seal part at the pipe end using a cutting tool provided and integrally assembled, wherein the end face and the outer surface of the seal part are used by using the side blade part of the total shape bite A step of cutting a taper outer diameter portion using a lower blade portion of the total shape bite, and a screw cutting work on the taper outer diameter portion using a screw cutting tool. Threading method for steel pipe (Japanese Patent Publication No. 6-102285), which is a continuous process in a series of operations Tool body and chuck of the tool body Triangular or quadrilateral inserts attached to form corner angles in the direction crossing the spindle axis direction at the side end face corners, and a chaser provided on the inner side in the spindle axis direction from the tip mounting position of the tool body A combination tool (Japanese Utility Model Publication No. 62-53921) that performs chamfering of the end face, inner and outer faces of steel pipes, outer diameter machining and threading with a chaser is proposed from the tip apex angle and slope load Has been.
[0005]
[Problems to be solved by the invention]
The conventional threading of steel pipes using the chaser uses one chaser, for example, to perform thread cutting by three-pass thread cutting. If a missing chaser occurs, the product becomes defective. In addition, this method has a problem that the threader-shaped cutting edge of the chaser is worn quickly and the life of the chaser is short because a single chaser is used to cut several passes.
[0006]
In addition, in order to improve the thread cutting efficiency, it is necessary to reduce the number of thread cutting passes. However, if only one chaser is used as in the conventional case, the number of chaser per pass is reduced. As a result, the cutting load of the chaser was significantly reduced.
[0007]
Even when two chases are used for roughing and finishing, the cross-section square screw with a sharp angle opposite to the end of the threaded joint of the cutting edge follower flank and lead flank on the roughing chaser When the shape of the thread-shaped cutting edge is adopted, as shown in FIG. 8, when grinding the chaser 81, the side surfaces of the thread-shaped cutting edges X and Y are acute with respect to the axis of the threaded joint. Since it is necessary, as shown in FIG. 9, it is necessary to perform grinding with a grinder 82 for each of the chases 81. For this reason, the chaser grinding requires a lot of man-hours, and the chaser 81 is expensive.
[0008]
The object of the present invention is to eliminate the above-mentioned problems of the prior art, and to prevent the occurrence of defective products even when a chip in the rough machining chaser is broken during the machining, so that the machining cost of the rough machining chaser can be increased. Another object of the present invention is to provide a roughing chaser capable of simultaneously grinding a plurality of pieces and a thread cutting method using a finishing chaser.
[0009]
[Means for Solving the Problems]
In the taper-shaped square screw cutting method of the present invention, after processing the taper outer diameter portion under the screw, the anti-pipe end side angles α 1 and α 2 with respect to the thread joint axis of the thread side idle side flank and the pressure side flank. When cutting a screw with an acute tapered square screw shape, the angle β 2 opposite to the pipe end of the follower flank of the cutting edge is an obtuse angle or a right angle, and the axis of the lead flank threaded joint anti tube end angle beta 1 is used Cheza for rough machining with a cutting edge of an acute buttress thread shape 3 mountain above, to provide one or more crude threading for. Then, the anti-tube end-side angle gamma 1 with respect to the axis of the threaded joint of the stabbing flank cutting edge are identical and counter tube end angle alpha 1 relative to the axis of the threaded joint of the clearance flank of the thread of the tapered square screw, and follow flank anti pipe end side angles gamma 2 with respect to the axis of the threaded joint, the anti-tube end angle alpha 2 of the same screws with respect to the axis of the threaded joint of the pressure side flank of the thread of the tapered square screw A finishing chaser having one or more angle cutting edges is used to perform one or more finishing threads.
[0010]
DETAILED DESCRIPTION OF THE INVENTION
Cutting method of tapered square screw of the present invention, after processing the untapped tapered outer diameter, counter-tube end angle beta 2 with respect to the axis of the threaded joint follow flank cutting edge an obtuse angle or a right angle, the flow proceeds and Cheza for rough machining counter tube end angle beta 1 with respect to the axis of the side flanks threaded joint has a cutting edge of an acute buttress thread shape 3 mountain above, anti-tube with respect to the axis of the threaded joint of the stabbing flank cutting edge The end-side angle γ 1 is the same as the anti-pipe end-side angle α 1 with respect to the threaded joint flank of the thread of the tapered square screw thread , and the anti-pipe end-side angle with respect to the shaft of the follower flank threaded joint degrees gamma 2 is two Cheza for finishing operation with a counter-pipe end side angle alpha 2 of the same thread profile cutting edge relative to the axis of the pressure flank of the threaded joint of the threads of the tapered square screw or one peak For use, rough machining Even if defects occur over The can cutting in Cheza for finishing, it is possible to prevent the occurrence of defective products.
[0011]
Further, the cutting method of the tapered square screw according to the present invention can reduce the number of times of finishing chaser required for machining by cutting most of the screw with a roughing chaser, and the life of the chaser Can be extended.
[0012]
Furthermore, the rough machining chaser has a large width in the axial direction of the threaded joint to be machined and has three or more cutting edges. The number of grinding passes required can be reduced, and the thread cutting efficiency can be improved.
[0013]
Furthermore, the chaser for rough machining employs a saw-tooth thread-shaped cutting blade with an obtuse or right-angled anti-pipe end side angle β 2 with respect to the threaded joint axis of the trailing edge of the cutting edge. When the chaser is ground, several chases for roughing can be ground at the same time, so the number of chaser grinding steps can be reduced, and as a result, the chaser for roughing can be obtained at a low price.
[0014]
【Example】
As shown in FIG. 1 (a), in the anti-tube end-side angle beta 1 with respect to the axis of the cutting edge of the stabbing flank 1 of the threaded joint is acute, anti pipe end side angle relative to the axis of the chase flank 2 of the threaded joint beta A roughing chaser 3 having four threads A to D in the form of a sawtooth screw 2 having a right angle, and a threaded joint of the leading flank 11 and follower flank 12 of the cutting edge as shown in FIG. 1 (b) Using the finishing chaser 13 with two threaded cutting edges E and F with a square thread shape with an acute cross section angle γ 1 , γ 2 against the axis of the tube, outer diameter 244.48 mm, wall thickness 13.84 After machining the tapered outer diameter of the thread under the pipe end of a seamless steel pipe of mm, as shown in Fig. 2, one pass is cut with the roughing chaser 3 and one pass with the finishing chaser 13 Processing was performed and a test was performed to form a tapered square screw at the end of the tube.
[0015]
Further, for comparison, as shown in FIG. 7 (a) as a conventional method, a cross-sectional square thread shape with an acute angle on the opposite end side to the threaded joint axis of the leading edge flank 72 and the trailing flank 73 of the cutting edge is provided. Using one machining chaser 71 with two cutting edges X and Y and machining the threaded taper outer diameter part at the pipe end, as shown in Fig. 7 (b), in three passes A test for forming a tapered square screw at the pipe end was performed by cutting the screw.
[0016]
Then, the chaser life, thread cutting efficiency, and chaser intensity of the method of the present invention and the conventional method were investigated. The results are shown in FIGS. Note that the chaser life is the number of threaded pipe ends per finisher chaser, the thread cutting efficiency is the number of threaded pipe ends per hour, the chaser unit is the chaser price per life, and the conventional method is 100 It is shown by the index.
[0017]
As shown in FIGS. 3 to 5, in the method of the present invention, the chaser life is extended by about three times compared to the conventional method, and the thread cutting efficiency is improved by about 11% compared to the conventional method. The unit could be reduced by about 30% compared with the conventional method.
[0018]
【The invention's effect】
Cutting method of tapered square screw of the present invention, the anti-tube end angle beta 2 is obtuse or a right angle relative to the axis of the threaded joint follow flank of the cutting edge, anti pipe end with respect to the axis of the stabbing flank of the threaded joint side angle beta 1 is subjected to rough threading of one or more times with Cheza for rough machining with a cutting edge of an acute buttress thread shape 3 mountain above. Then, the anti-tube end-side angle gamma 1 with respect to the axis of the threaded joint of the stabbing flank cutting edge are identical and counter tube end angle alpha 1 relative to the axis of the threaded joint of the clearance flank of the thread of the tapered square screw, and the chase flank counter pipe end side angles gamma 2 with respect to the axis of the threaded joint, the anti-tube end angle alpha 2 of the same screws with respect to the axis of the pressure flank of the threaded joint of the threads of the tapered square thread profile By performing finishing screw machining once or more using a finishing chaser having one or more cutting edges, the thread cutting efficiency can be improved, the average life of the chaser can be extended, and the basic unit of the screw chaser can be reduced. be able to.
[Brief description of the drawings]
FIG. 1 shows a chaser of the method of the present invention used in an embodiment, wherein FIG. 1 (a) is a roughing chaser, and FIG. 1 (b) is a side view of a finishing chaser.
FIG. 2 is a detailed explanatory view of a thread cutting method in two passes by a chaser according to the present invention used in an embodiment.
FIG. 3 is a graph showing a comparison of the chaser lifetime between the method of the present invention and the conventional method in an example.
FIG. 4 is a graph showing a comparison of thread cutting efficiency between the method of the present invention and the conventional method in Examples.
FIG. 5 is a graph showing a comparison of the basic unit of chaser between the method of the present invention and the conventional method in Examples.
6A and 6B are explanatory views of a tapered square screw, wherein FIG. 6A is a schematic cross-sectional view of a tube end tapered square screw portion, and FIG. 6B is a cross-sectional explanatory view of a square screw.
7A and 7B are explanatory views of a conventional chaser and screw cutting method, wherein FIG. 7A is a side view of the chaser, and FIG. 7B is a detailed explanatory view of a screw cutting method in three passes.
FIG. 8 is a detailed explanatory view of a conventional chaser, in which (a) is a side view, (b) is a front view, and (c) is a bottom view.
9A and 9B are explanatory diagrams of grinder grinding of a conventional chaser, where FIG. 9A is a side view and FIG. 9B is a bottom view.
[Explanation of symbols]
1, 11, 72 Advance side
2, 12, 73
3 Rough chaser
13 Finishing chaser
51 steel pipe
52 Thread
53 Playing Frank
54 Pressure side flank
71, 81 Chesa
82 Grinder
A, B, C, D, X, Y
E, F, X, Y Thread cutting edge θ Clearance angle

Claims (1)

ねじ山の遊び側フランクおよび圧力側フランクのねじ継手の軸に対する反管端側角度α、αが鋭角なテーパ付角形ねじ形状のねじ継手製品のねじの切削加工方法において、ねじ下テーパ外径部を加工したのち、切れ刃の追い側フランクのねじ継手の軸に対する反管端側角度βが鈍角または直角で、進み側フランクのねじ継手の軸に対する反管端側角度βが鋭角な鋸歯ねじ形状の切れ刃を3山以上有する粗加工用チェーザを用いて1回以上の粗ねじ加工を施したのち、切れ刃の進み側フランクのねじ継手の軸に対する反管端側角度γ が前記テーパ付角形ねじのねじ山の遊び側フランクのねじ継手の軸に対する反管端側角度α と同一で、かつ、追い側フランクのねじ継手の軸に対する反管端側角度γ 前記テーパ付角形ねじのねじ山の圧力側フランクのねじ継手の軸に対する反管端側角度α と同一のねじ山形切れ刃を1山以上有する仕上加工用チェーザを用いて1回以上の仕上ねじ加工を施すことを特徴とするテーパ付角形ねじの切削加工方法。In a thread cutting method of a threaded joint product with a tapered square thread shape with acute angles α 1 and α 2 with respect to the thread joint axis of the thread play side flank and pressure side flank After machining the diameter, the anti-pipe end side angle β 2 of the cutting edge follower flank with respect to the screw joint axis is obtuse or right-angled, and the anti-pipe end side angle β 1 with respect to the lead side flank thread joint axis is acute. After the rough threading is performed one or more times using a roughing chaser having three or more serrated thread-shaped cutting edges, the angle γ 1 on the opposite end of the cutting edge leading side flank with respect to the threaded joint axis There the same as the anti-tube end angle alpha 1 relative to the axis of the threaded joint of the clearance flank of the thread of the tapered square screw, and the counter-pipe end side angles gamma 2 with respect to the axis of the follow-side flank of the threaded joint Tapered square thread screw It is characterized in that the finishing thread machining is performed at least once using a finishing chaser having at least one thread-shaped cutting edge having the same angle α 2 as the counter pipe end side angle α 2 with respect to the axis of the threaded joint of the thread pressure side flank. Cutting method for tapered square screw.
JP20403599A 1999-07-19 1999-07-19 Cutting method of tapered square screw Expired - Fee Related JP3685242B2 (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
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CN103406607A (en) * 2013-03-21 2013-11-27 昆山华辰精密工具有限公司 Double-edged buttress thread chasing tool blade
KR20190078383A (en) * 2017-12-26 2019-07-04 주식회사 포스코 Insert for processing screw

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JP4543372B2 (en) * 2004-04-30 2010-09-15 住友金属工業株式会社 Thread cutting method for steel pipe
EP2260978A4 (en) * 2008-03-31 2016-08-31 Nippon Steel & Sumitomo Metal Corp Method of manufacturing screw joint product
CN102463393B (en) * 2010-11-16 2013-11-06 上海五钢设备工程有限公司 Method for processing coarse-pitch triangular-cone thread
CN110280845B (en) * 2019-07-19 2020-07-10 西北机电工程研究所 Machining method and machining tool for double-fixed-point threads

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103406607A (en) * 2013-03-21 2013-11-27 昆山华辰精密工具有限公司 Double-edged buttress thread chasing tool blade
KR20190078383A (en) * 2017-12-26 2019-07-04 주식회사 포스코 Insert for processing screw
KR102043790B1 (en) 2017-12-26 2019-11-12 주식회사 포스코 Insert for processing screw

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