JP5525897B2 - Pipe fitting - Google Patents

Pipe fitting Download PDF

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JP5525897B2
JP5525897B2 JP2010088361A JP2010088361A JP5525897B2 JP 5525897 B2 JP5525897 B2 JP 5525897B2 JP 2010088361 A JP2010088361 A JP 2010088361A JP 2010088361 A JP2010088361 A JP 2010088361A JP 5525897 B2 JP5525897 B2 JP 5525897B2
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ferrule
pipe
connecting pipe
tapered surface
outer periphery
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JP2011220400A (en
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毅人 鹿島
一成 西村
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Inaba Denki Sangyo Co Ltd
JFE Pipe Fitting Mfg Co Ltd
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Inaba Denki Sangyo Co Ltd
JFE Pipe Fitting Mfg Co Ltd
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本発明は、冷熱空調機等の冷媒配管など金属製接続管の接続に用いられる管継手に関する。   The present invention relates to a pipe joint used for connecting a metal connecting pipe such as a refrigerant pipe for a cold air conditioner or the like.

この種の管継手として、先に本出願人により図4に示すようなフェルールを用いる形態の管継手を提案した(例えば、特許文献1参照。)。図4における右半分は締付ナット22の仮締め状態図を、左半分は締付ナット22の本締め完了時の状態図をそれぞれ示している。この管継手は、筒状の継手本体21と、この継手本体21の雄ねじに螺合される締付ナット22と、継手本体21に挿入される金属製の接続管Pの全周を囲むような筒状をなす金属製のフェルール(締付リング)23と、継手本体21の内周に軸方向外方に向かって漸次拡がり状に形成したテーパ面25を有し、締付ナット22の螺進に伴ってフェルール23を縮径方向へ押圧する縮径手段とを備え、この縮径手段により押圧されたフェルール23が塑性変形しつつ縮径することで、図4における左半分の状態図に示すごとく接続管Pの外周に対し気密・水密状態に密着する形態で締め付ける構成としたものである。   As this type of pipe joint, the applicant previously proposed a pipe joint having a form using a ferrule as shown in FIG. 4 (see, for example, Patent Document 1). The right half in FIG. 4 shows a temporary tightening state diagram of the tightening nut 22, and the left half shows a state diagram when the tightening nut 22 is fully tightened. The pipe joint surrounds the entire circumference of a tubular joint body 21, a tightening nut 22 screwed into the male screw of the joint body 21, and a metal connecting pipe P inserted into the joint body 21. A cylindrical metal ferrule (clamping ring) 23 and a tapered surface 25 formed in the inner periphery of the joint body 21 so as to gradually expand outward in the axial direction. 4 is provided with a diameter reducing means for pressing the ferrule 23 in the diameter reducing direction, and the ferrule 23 pressed by the diameter reducing means is reduced in diameter while being plastically deformed. Thus, the configuration is such that the outer periphery of the connection pipe P is tightened in a form that is in close contact with the airtight / watertight state.

特開2006−207795号公報JP 2006-207795 A

上記管継手は図4における右半分の状態図に示すように、予め、継手本体21に対しフェルール23を挿入してセットし、次いで締付ナット22を継手本体21の雄ねじに螺合させて仮組みされている。
この管継手に接続管Pを接続する際には、継手本体21に手作業により接続管Pをこの先端側端部P−1の最先端が継手本体21の内奥の管端ストッパー部26に当たるまで挿入する。この後、スパナなどの工具で締付ナット22を回転させて本締めすることで、図4における左半分の状態図に示すようにフェルール23の先端側部23aを接続管Pに食込ませて接続管Pの抜止めとシールを行い、接続作業を終えるというものである。
As shown in the state diagram of the right half of FIG. 4, the pipe joint is previously set by inserting a ferrule 23 into the joint body 21 and then screwing the tightening nut 22 into the male thread of the joint body 21. It is assembled.
When connecting the connecting pipe P to this pipe joint, the leading end of the distal end side end P-1 of the connecting pipe P hits the pipe end stopper 26 inside the joint main body 21 by hand. Insert until Thereafter, by rotating the tightening nut 22 with a tool such as a spanner and finally tightening, the tip side portion 23a of the ferrule 23 is bitten into the connecting pipe P as shown in the state diagram of the left half in FIG. The connection pipe P is retained and sealed, and the connection work is completed.

しかしながら、上記管継手は、接続管Pをこれの先端側端部P−1の最先端が継手本体21内の管端ストッパー部26に当たるまで挿入してから締付ナット22を本締めするので、締付ナット22を本締めするに伴い、フェルール23の先端側部23aが接続管Pに食込み、その食い込み状態が維持される。接続管Pの先端側端部P‐1は、フェルール23の先端側部23aの食込み箇所より先端側に位置するため、軸方向の圧縮荷重(座屈荷重)を受けるまま管端ストッパー部26に向けて押されることとなる。これにより、接続管Pの先端側端部P−1は、図4中の破線Fで示すように、径方向外方へ膨らむような変位が加えられる。しかしながら、接続管Pの先端側端部P−1が継手本体21のテーパ面25より内奥に位置し、接続管Pの外径と略同じ内径の内周面27に当接することにより、このような変位は抑制され、その結果、締付ナット22の締付トルクが高トルクになる。このため、天井裏などのように狭隘な場所においては、スパナ等工具による締付ナット22の締付作業を著しく困難にし、作業性を低下するという問題があった。   However, since the pipe joint inserts the connecting pipe P until the tip end portion P-1 of the pipe end contacts the pipe end stopper portion 26 in the joint body 21, the fastening nut 22 is finally tightened. As the tightening nut 22 is finally tightened, the tip side portion 23a of the ferrule 23 bites into the connecting pipe P, and the biting state is maintained. Since the distal end portion P-1 of the connection pipe P is located on the distal end side from the biting position of the distal end side portion 23a of the ferrule 23, the distal end portion P-1 of the connection pipe P is formed on the tube end stopper portion 26 while receiving an axial compressive load (buckling load). It will be pushed towards. Thereby, as shown by the broken line F in FIG. 4, the distal end side end portion P-1 of the connecting pipe P is displaced so as to bulge outward in the radial direction. However, the distal end P-1 of the connecting pipe P is located inward from the tapered surface 25 of the joint body 21, and is brought into contact with the inner peripheral surface 27 having an inner diameter substantially the same as the outer diameter of the connecting pipe P. Such a displacement is suppressed, and as a result, the tightening torque of the tightening nut 22 becomes high. For this reason, in a narrow place such as the back of the ceiling, there is a problem that the tightening operation of the tightening nut 22 with a tool such as a spanner is extremely difficult and the workability is lowered.

本発明は、上記問題を解決するためになされたものであって、その目的とするところは、上記のようなフェルールを用いる形態の管継手において、接続管の抜止め、シール性を確保し得ながら、スパナ等の工具による締付けトルクの軽減・低減化を図り得て、天井裏などのように狭い場所でも小さい締付トルクで締付け作業が容易に行える管継手を提供することにある。   The present invention has been made in order to solve the above-mentioned problems, and the object of the present invention is to ensure the prevention of connection pipe sealing and sealing performance in a pipe joint using the ferrule as described above. However, it is an object of the present invention to provide a pipe joint that can reduce or reduce the tightening torque by a tool such as a spanner and can easily perform the tightening operation with a small tightening torque even in a narrow place such as a ceiling.

請求項1に記載の発明について、発明の内容を理解し易くするために、図1〜図3に付した符号を参照して説明する。
請求項1記載の発明は、接続管Pの先端側端部P−1が差し込まれる受口部4およびこの受口部4の内奥に設けられた管端ストッパー部5を有する継手本体1と、この継手本体1の受口部4の外周に設けた雄ねじ11にねじ込み結合されかつ接続管Pの外周に遊嵌される締付ナット2と、継手本体1の受口部4の内部に配され、接続管Pの外周に嵌合する円筒形状のフェルール3と、を備えており、受口部4の管端ストッパー部5より軸方向外方側の内周に、フェルール3の先端側部3aの当接により該先端部に縮径作用を加える第1のテーパ面7が軸方向外方に向かって漸次拡がり状に形成されており、締付ナット2の内周に、雄ねじ11に螺合する雌ねじ13と、この雌ねじ13の軸方向外端側に設けられるフェルール押圧段部14が形成され、フェルール押圧段部14が締付ナット2の螺進に伴ってフェルール3の後端部3bを軸方向内方へ押し込むことで該フェルール3の先端側部3aが第1のテーパ面7と接続管Pの外周との隙間に食い込んで接続管Pの外周と第1のテーパ面7に気密・水密状態に密着するようにしている管継手において、
前記受口部4における第1のテーパ面7の窄まり側端7aと管端ストッパー部5との間の第1の内周面6には、接続管Pの先端側端部P−1の径方向外方への変位を許容するための接続管逃がし用凹部12が形成されており、
前記接続管逃がし用凹部の半径が、前記第1のテーパ面の窄まり側端における前記第1のテーパ面の半径より大きいことに特徴を有するものである。
In order to make it easier to understand the contents of the invention, the invention described in claim 1 will be described with reference to the reference numerals attached to FIGS.
The invention according to claim 1 includes a joint body 1 having a receiving portion 4 into which a distal end side end portion P-1 of a connecting pipe P is inserted and a tube end stopper portion 5 provided in the inner portion of the receiving portion 4. The tightening nut 2 screwed and coupled to the external thread 11 provided on the outer periphery of the receiving portion 4 of the joint body 1 and loosely fitted on the outer periphery of the connection pipe P, and the receiving portion 4 of the joint body 1 are arranged inside the receiving portion 4. And a cylindrical ferrule 3 fitted to the outer periphery of the connection pipe P, and on the inner periphery on the axially outward side from the pipe end stopper portion 5 of the receiving port 4, the tip side portion of the ferrule 3 A first taper surface 7 for reducing the diameter of the tip portion by abutting 3a is formed to gradually expand outward in the axial direction, and is screwed onto the male screw 11 on the inner periphery of the tightening nut 2. A mating female screw 13 and a ferrule pressing step 14 provided on the axially outer end side of the female screw 13 are formed. The ferrule pressing step portion 14 pushes the rear end portion 3b of the ferrule 3 inward in the axial direction along with the screwing of the tightening nut 2, so that the front end side portion 3a of the ferrule 3 and the first tapered surface 7 are In a pipe joint that bites into the gap between the outer periphery of the connection pipe P and adheres to the outer periphery of the connection pipe P and the first tapered surface 7 in an airtight / watertight state,
On the first inner peripheral surface 6 between the narrowed side end 7a of the first tapered surface 7 and the tube end stopper portion 5 in the receiving portion 4, the tip side end portion P-1 of the connecting pipe P is provided. A connecting pipe escape recess 12 is formed to allow displacement outward in the radial direction .
The connecting pipe escape recess is characterized in that the radius is larger than the radius of the first tapered surface at the narrow side end of the first tapered surface .

上記構成によると、締付ナット2を継手本体1に締め付けると、フェルール押圧段部14がフェルール3の後端部3bを軸方向内方へ押し込んで、該フェルール3の先端側部3aが第1のテーパ面7により径方向内方に押圧されて縮径変形を加えられながら第1のテーパ面7と接続管Pの外周との隙間に食い込むため、この食い込みにより、接続管Pが継手本体1から抜け止めされた状態に接続される。また、フェルール3の先端側端部3aが継手本体1の第1のテーパ面7と接続管Pの外周との隙間に食い込むことにより、接続管Pの外周と第1のテーパ面7とに気密・水密状に密着し、継手本体1と接続管Pの隙間がシールされる。   According to the above configuration, when the tightening nut 2 is tightened to the joint body 1, the ferrule pressing step portion 14 pushes the rear end portion 3b of the ferrule 3 inward in the axial direction, and the front end side portion 3a of the ferrule 3 is first. Since the first tapered surface 7 and the outer periphery of the connecting pipe P are bitten while being pressed inward in the radial direction by the tapered surface 7, the connecting pipe P is connected to the joint body 1 by this biting. It is connected to the state where it is prevented from coming off. Further, the distal end side portion 3 a of the ferrule 3 bites into the gap between the first tapered surface 7 of the joint body 1 and the outer periphery of the connecting pipe P, so that the outer periphery of the connecting pipe P and the first tapered surface 7 are hermetically sealed. -It adheres in a watertight manner and seals the gap between the joint body 1 and the connecting pipe P.

とくに、受口部4における第1のテーパ面7の窄まり側端7aと管端ストッパー部5との間の第1の内周面6には、接続管逃がし用凹部12を形成しているので、締付ナット22を本締めするに伴い、フェルール3の先端側部3aが接続管Pに食込み、この食い込み状態のまま、接続管Pの先端側端部P−1が、軸方向の圧縮荷重(座屈荷重)を受けつつ管端ストッパー部45に向けて押される。これに伴い、接続管Pの先端側端部P−1は、図4中の破線Fで示すような径方向外方へ膨らむ形に変位が加えられて接続管逃がし用凹部12内に嵌まり込み、前記先端側端部P−1の径方向外方への変位が許容される(図1における左半分の状態図、図2における左半分の状態図、図3における左半分の状態図を参照)。したがって、締付ナット2の締付トルクが小さくて済み、天井裏などのように狭い場所でも、また柄の短いスパナ等でも締付け作業が円滑に且つ容易に行うことができる。
そして、上記した接続管Pの先端側端部P−1の変位は、受口部4における第1のテーパ面7の窄まり側端7aと管端ストッパー部5との間に形成した接続管逃がし用凹部12に吸収されるので、接続管Pの上記した抜止めやシールに影響を及ぼすことはなく、接続管Pの上記した抜止めやシール性を確保できる。
In particular, a connecting pipe escape recess 12 is formed on the first inner peripheral surface 6 between the narrowed end 7 a of the first tapered surface 7 and the pipe end stopper 5 in the receiving port 4. Therefore, as the tightening nut 22 is finally tightened, the distal end side portion 3a of the ferrule 3 bites into the connecting pipe P, and the leading end side end portion P-1 of the connecting pipe P is compressed in the axial direction in this biting state. It is pushed toward the tube end stopper 45 while receiving a load (buckling load). Accordingly, the distal end side end portion P-1 of the connecting pipe P is displaced into a shape that bulges outward in the radial direction as shown by a broken line F in FIG. 4 and fits into the connecting pipe escape recess 12. The distal end portion P-1 is allowed to move radially outward (the left half state diagram in FIG. 1, the left half state diagram in FIG. 2, the left half state diagram in FIG. 3). reference). Therefore, the tightening torque of the tightening nut 2 can be small, and the tightening operation can be performed smoothly and easily even in a narrow place such as the back of a ceiling or a spanner with a short handle.
The displacement of the distal end side end P-1 of the connection pipe P described above is caused by the connection pipe formed between the narrow end 7a of the first tapered surface 7 and the pipe end stopper portion 5 in the receiving port 4. Since it is absorbed by the escape recess 12, the above-described retaining and sealing of the connecting pipe P are not affected, and the above-described retaining and sealing performance of the connecting pipe P can be secured.

本発明に係る管継手は、請求項2に記載のように、受口部4の軸方向外側開口端の内周に、フェルール3の後端部3bの当接により該後端部3bに縮径作用を加える第2のテーパ面9を軸方向外方に向かって漸次拡がり状に形成するという構成を採用することができる。これによると、締付ナット2の螺進に伴い、フェルール3の先端側部3aが第1のテーパ面7と接続管Pの外周との隙間に楔状に食い込み終える直前に、フェルール3の後端部3bが第2のテーパ面9により径方向内方に押圧されて縮径変形を加えられるため、フェルール3の後端部3bが接続管Pの外周に気密・水密状態に密着したシール状態が得られる。すなわち、前記フェルール3の先端側部3aによるシールと共に二重シールされる状態が得られる。   As described in claim 2, the pipe joint according to the present invention is contracted to the rear end portion 3b by the contact of the rear end portion 3b of the ferrule 3 on the inner periphery of the axially outer opening end of the receiving portion 4. It is possible to adopt a configuration in which the second tapered surface 9 to which the radial action is applied is formed so as to gradually expand outward in the axial direction. According to this, as the tightening nut 2 is screwed, the rear end of the ferrule 3 immediately before the front end side portion 3a of the ferrule 3 finishes biting into the gap between the first tapered surface 7 and the outer periphery of the connecting pipe P. Since the portion 3b is pressed inward in the radial direction by the second tapered surface 9 and is subjected to diameter reduction deformation, there is a sealed state in which the rear end portion 3b of the ferrule 3 is in close contact with the outer periphery of the connection pipe P in an airtight / watertight state. can get. In other words, a double-sealed state is obtained together with the seal by the tip side portion 3a of the ferrule 3.

本発明によれば、受口部における第1のテーパ面の窄まり側端と管端ストッパー部との間の第1の内周面に接続管逃がし用凹部を形成して、この接続管逃がし用凹部で接続管の先端側端部の径方向外方への変位を許容するので、接続管の抜止め、シール性を確保し得ながら、天井裏などのように狭い場所でも小さい締付トルクで締付け作業が容易に行えるという利点がある。   According to the present invention, the connection pipe escape recess is formed on the first inner peripheral surface between the narrow side end of the first taper surface and the pipe end stopper portion in the receiving portion, and this connection pipe relief is formed. The concave part allows the distal end of the connecting pipe to move radially outward, so that the connecting pipe can be prevented from being pulled out and the sealing performance can be secured. There is an advantage that the tightening work can be easily performed.

本発明の一実施例を示す管継手の半欠截断面図である。1 is a half-broken cross-sectional view of a pipe joint showing an embodiment of the present invention. 他の実施例を示す管継手の半欠截断面図である。FIG. 6 is a half cutaway cross-sectional view of a pipe joint showing another embodiment. 更に他の実施例を示す管継手の半欠截断面図である。FIG. 6 is a half cutaway cross-sectional view of a pipe joint showing still another embodiment. 従来例の管継手の半欠截断面図である。It is a half notched cross-sectional view of a conventional pipe joint.

本発明の好適な実施例について、図面に基づき説明する。図1における右半分は締付ナットの仮締め状態図を、左半分は締付ナットの本締め完了時の状態図をそれぞれ示している。図1において、本発明に係る管継手は、継手本体1、締付ナット2、およびフェルール3を備える。この管継手により接続される接続管Pは銅管やステンレス管等の金属製、または樹脂製からなる。   Preferred embodiments of the present invention will be described with reference to the drawings. The right half in FIG. 1 shows a temporary tightening state diagram of the tightening nut, and the left half shows a state diagram when the tightening nut is fully tightened. In FIG. 1, the pipe joint according to the present invention includes a joint body 1, a tightening nut 2, and a ferrule 3. The connecting pipe P connected by this pipe joint is made of a metal such as a copper pipe or a stainless pipe, or a resin.

図1に示すように、継手本体1は筒状に形成され、これの両端部に接続管Pの先端側端部P−1が差し込まれる受口部4が開口されている。この受口部4の内奥には、その軸方向内側から外側に向かって順に、環状の管端ストッパー部5と、この管端ストッパー部5よりも大きい内径でストッパー部5の軸方向両側に形成される第1の内周面6と、この第1の内周面6の軸方向外側端から軸方向外方に向かって漸次拡がり状に形成される第1のテーパ面7と、この第1のテーパ面7の軸方外方端に連続して軸方向外方へ真直ぐにかつ第1の内周面6より大きい内径に形成される第2の内周面8と、受口部4の軸方向外側開口端の内周であって第2の内周面8の軸方向外側端から軸方向外方に向かって漸次拡がり状に形成される第2のテーパ面9が備えられている。第2のテーパ面9の勾配は第1のテーパ面7よりも大きく設定されている。継手本体1の外周における軸方向中間位置にはスパナ等工具が掛けられる多角形の工具掛け部10が張り出し形成され、受口部7の外周に対応する位置には雄ねじ11が形成されている。   As shown in FIG. 1, the joint body 1 is formed in a cylindrical shape, and a receiving portion 4 into which the distal end side end portion P-1 of the connecting pipe P is inserted is opened at both ends thereof. In the inner part of the receiving part 4, in the order from the inner side to the outer side in the axial direction, an annular pipe end stopper part 5 and an inner diameter larger than the pipe end stopper part 5 on both axial sides of the stopper part 5. A first inner peripheral surface 6 to be formed, a first tapered surface 7 formed in a gradually expanding shape from the outer end in the axial direction of the first inner peripheral surface 6 toward the outer side in the axial direction; A second inner peripheral surface 8 that is continuous with the axial outer end of the first tapered surface 7 and that has an inner diameter larger than that of the first inner peripheral surface 6, and a receiving portion 4. The second tapered surface 9 is formed so as to gradually expand from the axially outer end of the second inner peripheral surface 8 toward the axially outer side. . The gradient of the second tapered surface 9 is set larger than that of the first tapered surface 7. A polygonal tool hooking portion 10 on which a tool such as a spanner is hung is formed at an intermediate position in the axial direction on the outer periphery of the joint body 1, and a male screw 11 is formed at a position corresponding to the outer periphery of the receiving portion 7.

受口部4における第1のテーパ面7の窄まり側端7aと管端ストッパー部5との間の第1の内周面6には、接続管Pの先端側端部P−1の径方向外方への変位を許容するための接続管逃がし用凹部12が形成されている。接続管逃がし用凹部12は、図1に示すように、断面形状が直線状に形成されており、締付ナット2が本締めされる前、すなわち受口部4内に差し込まれた接続管Pの先端側端部P−1の変位前において、この接続管Pの先端側端部P−1の外周面との間に接続管Pの先端側端部P−1の径方向外方への変位を許容するための撓み空間を形成するものである。接続管Pの中心(受口部4の中心)から接続管逃がし用凹部12の内面上の点に至る線分の長さ(接続管逃がし用凹部12の半径)d1は、変位前の接続管Pの半径d2よりも大きく設定している。接続管逃がし用凹部12の半径は、第1のテーパ面7の窄まり側端7aにおける第1のテーパ面7の半径より大きい。 In the first inner peripheral surface 6 between the narrowed side end 7a of the first tapered surface 7 and the tube end stopper portion 5 in the receiving port portion 4, the diameter of the distal end side end portion P-1 of the connection pipe P is provided. A connecting pipe escape recess 12 is formed to allow displacement outward in the direction. As shown in FIG. 1, the connecting pipe relief recess 12 has a straight cross-sectional shape, and is connected to the connecting pipe P inserted into the receiving port 4 before the fastening nut 2 is finally tightened. Before the distal end portion P-1 is displaced, the distal end portion P-1 of the connecting pipe P is radially outward from the outer peripheral surface of the distal end portion P-1 of the connecting pipe P. A bending space for allowing displacement is formed. The length of the line segment from the center of the connection pipe P (the center of the receiving port 4) to a point on the inner surface of the connection pipe escape recess 12 (the radius of the connection pipe escape recess 12) d1 is the connection pipe before displacement. It is set larger than the radius d2 of P. The radius of the connecting pipe escape recess 12 is larger than the radius of the first tapered surface 7 at the narrowed end 7 a of the first tapered surface 7.

一方、締付ナット2は、これの内周に継手本体1の雄ねじ11に螺合する雌ねじ13と、この雌ねじ13の軸方向外端側に軸心と直交するよう径方向内方に向けて設けられるフェルール押圧段部14と、このフェルール押圧段部14よりも軸方向外方に、接続管Pを挿入可能な接続管挿入部15とを備えている。接続管挿入部15は、図1に示すように、断面形状が直線状に形成されている。   On the other hand, the tightening nut 2 has a female screw 13 that engages with the male screw 11 of the joint body 1 on the inner periphery thereof, and is directed radially inward so as to be orthogonal to the axial center on the axially outer end side of the female screw 13. A ferrule pressing step 14 is provided, and a connecting pipe insertion portion 15 into which the connecting pipe P can be inserted is provided on the outer side in the axial direction than the ferrule pressing step 14. As shown in FIG. 1, the connecting pipe insertion portion 15 has a linear cross-sectional shape.

締付ナット2の雌ねじ13には、減摩層(図示省略、以下同じ)が形成されている。減摩層は、有機又は無機のバインダー中に二硫化モリブデン粉末を分散させた塗料タイプの減摩材を前記所定箇所に焼付塗装することにより形成することができる。また、減摩層は、フッ素樹脂等の減摩材を塗装したり、あるいはクロムめっきを施したりすることによっても形成することができる。このような減摩層は、締付ナット2のフェルール押圧段部14にも形成されている。   The internal thread 13 of the tightening nut 2 is formed with an anti-friction layer (not shown, the same applies hereinafter). The antifriction layer can be formed by baking and painting a paint type antifriction material in which molybdenum disulfide powder is dispersed in an organic or inorganic binder. Further, the anti-friction layer can be formed by coating an anti-friction material such as a fluororesin or applying chrome plating. Such an anti-friction layer is also formed on the ferrule pressing step 14 of the tightening nut 2.

フェルール3は、継手本体1の第2の内周面8の内径より少し小さい外径寸法を有し、かつ接続管Pの外径よりも少し大きい内径寸法を有する円筒形状に形成される。フェルール3の先端側部3aの外周は先窄まり状のテーパ面16に形成され、後端部3bは断面円形に形成されている。このフェルール3は真鍮やステンレスなど金属製であって、ステンレス製のフェルール3は銅管又はステンレス管からなる接続管Pに対応でき、真鍮製のフェルール3は銅管からなる接続管Pに対応できる。   The ferrule 3 is formed in a cylindrical shape having an outer diameter that is slightly smaller than the inner diameter of the second inner peripheral surface 8 of the joint body 1 and an inner diameter that is slightly larger than the outer diameter of the connecting pipe P. The outer periphery of the front end side portion 3a of the ferrule 3 is formed as a tapered tapered surface 16, and the rear end portion 3b is formed in a circular cross section. The ferrule 3 is made of metal such as brass or stainless steel. The stainless steel ferrule 3 can correspond to a connection pipe P made of a copper tube or a stainless steel pipe, and the brass ferrule 3 can correspond to a connection pipe P made of a copper tube. .

次に、接続管Pを接続するひとつの要領について説明する。予め、図1における右半分に示すように、継手本体1の受口部4内にフェルール3をこれの先端側部3aから挿入するとともに、締付ナット2の雌ねじ13を継手本体1の雄ねじ11に螺合させて仮組みする。その際、フェルール3の先端側部3aの外周に先窄まり状のテーパ面16を形成しているので、受口部4内から第1のテーパ面7に亘って挿入し易い。この仮組み状態では、フェルール3の先端側部3aの最先端が継手本体1の第1のテーパ面7に当接するとともに、後端部3bが受口部4から後方外部へ突出する。また、締付ナット2のフェルール押圧段部14は、フェルール3の断面円形の後端部3bの円周の一部に、線接触状態に当接する。締付ナット2の先端面2aは、継手本体1の工具掛け部10の一側端面10aよりも後方に離間した位置にある。   Next, one point for connecting the connecting pipe P will be described. As shown in the right half in FIG. 1, the ferrule 3 is inserted into the receiving port 4 of the joint body 1 from the distal end side 3 a in advance, and the female screw 13 of the tightening nut 2 is inserted into the male screw 11 of the joint body 1. Screw together to temporarily assemble. At this time, since the tapered surface 16 having a tapered shape is formed on the outer periphery of the distal end side portion 3 a of the ferrule 3, it is easy to insert from the inside of the receiving portion 4 to the first tapered surface 7. In this temporarily assembled state, the tip end of the front end side portion 3a of the ferrule 3 abuts on the first tapered surface 7 of the joint body 1, and the rear end portion 3b protrudes rearward from the receiving portion 4. Further, the ferrule pressing step portion 14 of the tightening nut 2 comes into contact with a part of the circumference of the rear end portion 3 b of the ferrule 3 with a circular cross section in a line contact state. The front end surface 2 a of the tightening nut 2 is located at a position separated rearward from the one side end surface 10 a of the tool hook 10 of the joint body 1.

次いで、このように仮組みした管継手において、接続管Pの先端側端部P−1を締付ナット2から継手本体1の受口部4内に差し込む。このとき、接続管Pの先端側端部P−1が、締付ナット2、フェルール3、第1の内周面6の接続管逃がし用凹部12を順に通過して管端ストッパー部5に当たるまで差し込む。しかる後、継手本体1の工具掛け部10にスパナ等工具を掛けて該継手本体1を回り止め状態にしたうえで、締付ナット2を別のスパナ等工具で締付け方向に回転させて本締めする。すると、締付ナット2が螺進し、図1における左半分に示すように、締付ナット2の先端面2aが工具掛け部10の一側端面10aに当接すると同時に、フェルール押圧段部14が受口部4の外側端面4aに当接する。締付ナット2の雌ねじ13に減摩層が形成されているので、雌ねじ13と雄ねじ11の接触面同士の摩擦を低減でき、柄の短いスパナ等でも小さい操作力で容易に締付ナット2を回すことができて作業性に優れる。   Subsequently, in the pipe joint temporarily assembled in this way, the tip end part P-1 of the connection pipe P is inserted into the receiving part 4 of the joint body 1 from the tightening nut 2. At this time, until the distal end side end P-1 of the connection pipe P passes through the connection nut relief recess 12 of the tightening nut 2, the ferrule 3, and the first inner peripheral surface 6 in order, and hits the pipe end stopper 5 Plug in. After that, a tool such as a spanner is hung on the tool hook 10 of the joint body 1 to prevent the joint body 1 from rotating, and then the tightening nut 2 is rotated in the tightening direction with another tool such as a spanner and finally tightened. To do. Then, the tightening nut 2 is screwed, and as shown in the left half of FIG. 1, the front end surface 2 a of the tightening nut 2 comes into contact with the one side end surface 10 a of the tool hook 10, and at the same time, the ferrule pressing step portion 14. Comes into contact with the outer end surface 4 a of the receiving portion 4. Since the anti-friction layer is formed on the internal thread 13 of the tightening nut 2, the friction between the contact surfaces of the internal thread 13 and the external thread 11 can be reduced, and the tightening nut 2 can be easily attached with a small operating force even with a short spanner or the like. It can be turned and has excellent workability.

この締付ナット2の螺進に伴い、フェルール押圧段部14によりフェルール3の後端部3bが軸方向内方へ押し込まれることで、該フェルール3が軸方向内方へ推進され、該フェルール3の先端側部3aが第1のテーパ面7により径方向内方に押圧されて縮径変形を加えられながら第1のテーパ面7と接続管Pの外周との隙間に楔状に食い込んで行って、接続管Pの外周と第1のテーパ面7とに気密・水密状態に密着する。また、フェルール3の先端側部3aが第1のテーパ面7と接続管Pの外周との隙間に楔状に食い込み終える直前に、フェルール3の後端部3bが第2のテーパ面9により径方向内方に押圧されて縮径変形を加えられるため、フェルール3の後端部3bが接続管Pの外周に気密・水密状態に密着する。   As the tightening nut 2 is screwed, the rear end portion 3b of the ferrule 3 is pushed inward in the axial direction by the ferrule pressing step portion 14, whereby the ferrule 3 is propelled inward in the axial direction. The distal end side portion 3a is pressed radially inward by the first taper surface 7 and is subjected to a diameter-reducing deformation so as to bite into the gap between the first taper surface 7 and the outer periphery of the connecting pipe P. The outer periphery of the connecting pipe P and the first tapered surface 7 are in close contact with each other in an airtight / watertight state. Further, immediately before the front end side portion 3 a of the ferrule 3 finishes being wedged into the gap between the first tapered surface 7 and the outer periphery of the connecting pipe P, the rear end portion 3 b of the ferrule 3 is radiated in the radial direction by the second tapered surface 9. Since it is pressed inward to reduce its diameter, the rear end 3b of the ferrule 3 is in close contact with the outer periphery of the connecting pipe P in an airtight and watertight state.

また、締付ナット2のフェルール押圧段部14がフェルール3の後端部3bに線接触しているため、締付ナット2がフェルール3に対して滑り易く、フェルール3の後端部3bに対し空回りしながら該フェルール3を押し込むことができる。すなわち、締付ナット3の回転力がフェルール3を介して接続管Pに伝わり難く、締付ナット2の締め付け時に接続管Pが共回りするのをよく防止できる。また、締付ナット2のフェルール押圧段部14に減摩層が形成されているため、フェルール3の後端部3bに対し線接触させることと相俟って更に滑り易く、接続管Pの共回り防止をより確実に行うことができる。   Further, since the ferrule pressing step portion 14 of the tightening nut 2 is in line contact with the rear end portion 3b of the ferrule 3, the tightening nut 2 is easily slidable with respect to the ferrule 3, and with respect to the rear end portion 3b of the ferrule 3. The ferrule 3 can be pushed in while idling. That is, the rotational force of the tightening nut 3 is not easily transmitted to the connection pipe P through the ferrule 3, and the connection pipe P can be well prevented from rotating together when the tightening nut 2 is tightened. Further, since the anti-friction layer is formed on the ferrule pressing step portion 14 of the tightening nut 2, it is further slippery coupled with the line contact with the rear end portion 3 b of the ferrule 3, and the connecting pipe P is shared. It is possible to prevent rotation more reliably.

このように、締付ナット2の締め付けによりフェルール3の先端側部3aが縮径変形しながら第1のテーパ面7と接続管Pの外周との隙間に食い込むことにより、接続管Pが継手本体1の受口部4から抜け止めされた状態に接続される。また、フェルール3の先端側部3aが第1のテーパ面7と接続管Pの外周との隙間に食い込んで行って、接続管Pの外周と第1のテーパ面7とに気密・水密状態に密着することにより、フェルール3の内周と接続管Pの外周との隙間およびフェルール3の外周と継手本体1の第1のテーパ面7との隙間が気密・水密状にシールされる。また、フェルール3の後端部3bの内周が接続管Pの外周に気密・水密状に密着するとともに、該後端部3bの外周が第2のテーパ面9に気密状に密着したシール状態が得られる。すなわち、前記フェルール3の先端側部3aによるシールと共に二重シールされる状態が得られる。   In this way, when the tightening nut 2 is tightened, the distal end side portion 3a of the ferrule 3 is deformed in a reduced diameter and bites into the gap between the first tapered surface 7 and the outer periphery of the connecting pipe P, so that the connecting pipe P becomes the joint body. 1 is connected in a state of being prevented from being detached from the receiving portion 4. Further, the tip side portion 3a of the ferrule 3 bites into the gap between the first taper surface 7 and the outer periphery of the connection pipe P so that the outer periphery of the connection pipe P and the first taper surface 7 are in an airtight / watertight state. By closely contacting, the clearance between the inner periphery of the ferrule 3 and the outer periphery of the connecting pipe P and the clearance between the outer periphery of the ferrule 3 and the first tapered surface 7 of the joint body 1 are sealed in an airtight and watertight manner. Further, the inner periphery of the rear end portion 3b of the ferrule 3 is in airtight / watertight contact with the outer periphery of the connecting pipe P, and the outer periphery of the rear end portion 3b is in airtight contact with the second tapered surface 9 Is obtained. In other words, a double-sealed state is obtained together with the seal by the tip side portion 3a of the ferrule 3.

また、締付ナット22を本締めするに伴い、フェルール23の先端側部23aが接続管Pに食込み、この食い込み状態のまま接続管Pの先端側端部P−1が、軸方向の圧縮荷重(座屈荷重)を受けつつ管端ストッパー部26に向けて押される。これにより、接続管Pの先端側端部P−1が、図4中の破線Fで示すような径方向外方へ膨らむ形の変位が加えられると、図1における左半分の状態図に示すように、接続管Pの先端側端部P−1が接続管逃がし用凹部12に嵌り込んで接続管Pの先端側端部P−1の径方向外方への変位が許容される。したがって、締付ナット2の締付トルクが小さくて済み、天井裏などのように狭い場所でも、また柄の短いスパナ等でも締付け作業が円滑に且つ容易に行うことができる。
さらに、接続管Pの先端側端部P−1の変位は、受口部4における第1のテーパ面7の窄まり側端7aと管端ストッパー部5との間に形成した接続管逃がし用凹部12に吸収されるので、接続管Pの上記した抜止めやシールに影響を及ぼすことはなく、接続管Pの上記した抜止めやシール性を確保できる。
Further, as the tightening nut 22 is fully tightened, the distal end side portion 23a of the ferrule 23 bites into the connection pipe P, and the distal end side end portion P-1 of the connection pipe P is compressed in the axial direction in this biting state. While being subjected to (buckling load), it is pushed toward the tube end stopper portion 26. Thereby, when the displacement of the shape which the front end side end part P-1 of the connection pipe P expands radially outward as shown by the broken line F in FIG. 4 is shown in the state diagram of the left half in FIG. As described above, the distal end portion P-1 of the connecting pipe P is fitted into the connecting pipe escape recess 12 so that the distal end end portion P-1 of the connecting pipe P is allowed to move radially outward. Therefore, the tightening torque of the tightening nut 2 can be small, and the tightening operation can be performed smoothly and easily even in a narrow place such as the back of a ceiling or a spanner with a short handle.
Further, the displacement of the distal end portion P-1 of the connection pipe P is for releasing the connection pipe formed between the narrow end 7a of the first taper surface 7 in the receiving port 4 and the tube end stopper portion 5. Since it is absorbed by the concave portion 12, it does not affect the above-described retaining and sealing of the connecting pipe P, and the above-described retaining and sealing performance of the connecting pipe P can be ensured.

なお、上記実施例では、接続管逃がし用凹部12は、図1に示すように、断面形状が直線状に形成されているが、このような形状に限られることはなく、例えば、図2に示すように、凹円弧形状に形成されていてもよいし、図3に示すように、「く」の字形状に形成されていてもよい。これら接続管逃がし用凹部12の半径は、第1のテーパ面7の窄まり側端7aにおける第1のテーパ面7の半径より大きい。
また、上記実施例ではフェルール3の後端部3bは断面円形に形成されているが、このような形状に限られることはなく、例えば、少なくともフェルール押圧段部14に線接触する頂点と、接続管Pの外周に当接する頂点とを有する多角形に形成されていてもよい。この場合、第2のテーパ面9は、そのテーパ面9に当接する頂点をも有する多角形断面の後端部に形成することが好適である。なお、第2のテーパ面9は、必ずしも必要でない。また、受け口部4は、継手本体1の少なくとも一端部に設けられていればよい。さらに、減摩層は、雄ねじ11だけに形成されていてもよいし、雄ねじ11,雌ねじ13の両方に形成されていてもよい。
In the above embodiment, the connecting pipe relief recess 12 has a linear cross-sectional shape as shown in FIG. 1, but is not limited to such a shape. For example, FIG. As shown, it may be formed in a concave arc shape, or may be formed in a “<” shape as shown in FIG. 3. The radius of the connecting pipe escape recess 12 is larger than the radius of the first tapered surface 7 at the narrowed end 7 a of the first tapered surface 7.
In the above embodiment, the rear end 3b of the ferrule 3 is formed in a circular cross section. However, the shape is not limited to such a shape. For example, at least a vertex that makes line contact with the ferrule pressing step 14 and a connection You may form in the polygon which has the vertex contact | abutted on the outer periphery of the pipe | tube P. FIG. In this case, it is preferable that the second tapered surface 9 is formed at the rear end portion of the polygonal cross section having an apex that abuts against the tapered surface 9. The second tapered surface 9 is not always necessary. Further, the receiving port 4 may be provided at least at one end of the joint body 1. Further, the anti-friction layer may be formed only on the male screw 11, or may be formed on both the male screw 11 and the female screw 13.

また、上記実施例では、継手本体1が同径ソケットタイプ、すなわち、同径の接続管同士を接続可能なタイプである場合について説明したが、継手本体1の構造はこれに限られることはなく、例えば、異なる径の管同士を接続可能な異径ソケットタイプであってもよい。
さらに、本発明は、上記継手本体1が図示例のソケットタイプ以外に、エルボあるいはT型等である場合にも同様に適用できる。
Moreover, in the said Example, although the joint main body 1 demonstrated the case where it was the same diameter socket type, ie, the type which can connect the connection pipes of the same diameter, the structure of the joint main body 1 is not restricted to this. For example, a different-diameter socket type that can connect tubes having different diameters may be used.
Further, the present invention can be similarly applied to the case where the joint body 1 is an elbow or a T type other than the socket type shown in the drawing.

P 接続管
P−1 先端側端部
1 継手本体
2 締付ナット
3 フェルール
3a フェルールの先端側部
3b フェルールの後端部
4 受口部
5 管端ストッパー部
6 第1の内周面
7 第1のテーパ面
8 第2の内周面
9 第2のテーパ面
11 雄ねじ
12 接続管逃がし用凹部
13 雌ねじ
14 フェルール押圧段部
P connecting pipe P-1 tip side end portion 1 joint body 2 clamping nut 3 ferrule 3a tip end side portion of ferrule 3b rear end portion of ferrule 4 receiving portion 5 pipe end stopper portion 6 first inner peripheral surface 7 first Taper surface 8 second inner peripheral surface 9 second taper surface 11 male screw 12 connecting pipe relief recess 13 female screw 14 ferrule pressing step

Claims (2)

金属製の接続管の先端側端部が差し込まれる受口部およびこの受口部の内奥に設けられた管端ストッパー部を有する継手本体と、この継手本体の前記受口部の外周に設けた雄ねじにねじ込み結合されかつ前記接続管の外周に遊嵌される締付ナットと、前記継手本体の受口部の内部に配され、前記接続管の外周に嵌合する円筒形状のフェルールと、を備えており、
前記受口部の管端ストッパー部より軸方向外方側の内周に、前記フェルールの先端側部の当接により該先端部に縮径作用を加える第1のテーパ面が軸方向外方に向かって漸次拡がり状に形成されており、
前記締付ナットの内周に、前記雄ねじに螺合する雌ねじと、この雌ねじの軸方向外端側に設けられるフェルール押圧段部とが形成され、前記フェルール押圧段部が前記締付ナットの螺進に伴って前記フェルールの後端部を軸方向内方へ押し込むことで該フェルールの先端側部が前記第1のテーパ面と前記接続管外周との隙間に食い込んで前記接続管外周と前記第1のテーパ面に気密状態に密着するようにしている管継手において、
前記受口部における前記第1のテーパ面の窄まり側端と前記管端ストッパー部との間の第1の内周面には、前記接続管の一端部の径方向外方への変位を許容するための接続管逃がし用凹部が形成されており、
前記接続管逃がし用凹部の半径が、前記第1のテーパ面の窄まり側端における前記第1のテーパ面の半径より大きいことを特徴とする、管継手。
A joint body having a receiving portion into which a distal end side end portion of a metal connecting pipe is inserted and a tube end stopper portion provided inside the receiving portion, and provided on an outer periphery of the receiving portion of the joint body A tightening nut that is screwed into a male screw and is loosely fitted to the outer periphery of the connection pipe, a cylindrical ferrule that is disposed inside the receiving portion of the joint body and is fitted to the outer periphery of the connection pipe, With
A first taper surface that applies a diameter reducing action to the distal end portion by abutment of the distal end side portion of the ferrule is formed axially outwardly on the inner periphery of the receiving end portion on the axially outer side from the tube end stopper portion. It is formed to gradually expand toward the
A female screw that is screwed to the male screw and a ferrule pressing step provided on the axially outer end side of the female screw are formed on the inner periphery of the tightening nut, and the ferrule pressing step is screwed on the tightening nut. The rear end portion of the ferrule is pushed inward in the axial direction as it advances, so that the front end side portion of the ferrule bites into the gap between the first tapered surface and the outer periphery of the connection tube, and the outer periphery of the connection tube and the first In a pipe joint that is in close contact with the taper surface of 1 in an airtight state,
On the first inner peripheral surface between the narrowed side end of the first tapered surface and the tube end stopper portion in the receiving port portion, a radially outward displacement of one end portion of the connection tube is provided. A recess for connecting pipe escape to allow is formed ,
The pipe joint according to claim 1, wherein a radius of the connecting pipe escape recess is larger than a radius of the first tapered surface at a narrowed end of the first tapered surface .
前記受口部の軸方向外側開口端の内周に、前記フェルールの後端部の当接により該後端部に縮径作用を加える第2のテーパ面が軸方向外方に向かって漸次拡がり状に形成されている、請求項1記載の管継手。   On the inner periphery of the axially outer opening end of the receiving portion, a second taper surface that applies a diameter reducing action to the rear end portion by contact of the rear end portion of the ferrule gradually expands outward in the axial direction. The pipe joint according to claim 1, which is formed in a shape.
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