JP4567350B2 - Pipe fitting - Google Patents

Pipe fitting Download PDF

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JP4567350B2
JP4567350B2 JP2004058133A JP2004058133A JP4567350B2 JP 4567350 B2 JP4567350 B2 JP 4567350B2 JP 2004058133 A JP2004058133 A JP 2004058133A JP 2004058133 A JP2004058133 A JP 2004058133A JP 4567350 B2 JP4567350 B2 JP 4567350B2
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tube
sealing material
pipe
inner cylinder
layer
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JP2005249015A (en
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敬介 菅原
豊 吉田
孝章 木下
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株式会社ベンカン・ジャパン
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本発明は,流体用の管継手であって,薄肉の小口径金属管の外面に樹脂被覆を施した二層管の接続を容易,かつ,確実にした管継手に関するものである。   The present invention relates to a pipe joint for fluids, and relates to a pipe joint that facilitates and reliably connects a two-layer pipe having a resin coating on the outer surface of a thin-walled small-diameter metal pipe.

従来,薄肉の小口径金属管の外面に樹脂被覆を施した二層管用の流体用プレス式管継手としては,図4,図5,図6に示すWO98/11377号公報に記載のものが知られている。   Conventionally, as a press-type pipe joint for fluid for a two-layer pipe in which the outer surface of a thin-walled small-diameter metal pipe is coated with resin, the one described in WO98 / 11377 shown in FIGS. 4, 5, and 6 is known. It has been.

しかし,図4の管継手40を用いる場合には,当該二層管41の樹脂被覆42を剥ぎ取る必要があり,また,樹脂被覆42を剥ぎ取るとき,刃物を使用するため,管継手40のパッキンが当たる薄肉金属管43の外面に傷がついてしまい,流体が漏れる恐れがある。また,樹脂被覆42を剥ぎ取るとき,薄肉金属管43を破壊してしまう恐れもあり,施工が容易であるとはいえない。また,樹脂被覆42の剥ぎ取りが不完全であると接液部に樹脂が残ってしまい,樹脂微片が流体中に混入する恐れがある。また,薄肉金属管43がプレスにより必要以上の変形をしないように,プレスの際には,金属製の補強コア44を挿入する必要があり,手間がかかってしまう。   However, when the pipe joint 40 of FIG. 4 is used, it is necessary to peel off the resin coating 42 of the two-layer pipe 41, and when the resin coating 42 is peeled off, a blade is used. There is a possibility that the outer surface of the thin metal tube 43 to which the packing hits will be damaged and the fluid may leak. Further, when the resin coating 42 is peeled off, the thin metal tube 43 may be destroyed, and it cannot be said that the construction is easy. In addition, if the resin coating 42 is not completely removed, the resin may remain in the liquid contact portion, and resin fines may be mixed into the fluid. Further, it is necessary to insert a metal reinforcing core 44 at the time of pressing so that the thin metal tube 43 is not deformed more than necessary by the pressing.

また,図5の管継手40は,金属のストッパ45付きの筒部46に二層管41を挿入し,筒部46の末端部47を工具でカシメることでシール性を得ると同時に二層管41の耐引き抜き力を得ようとするするものである。しかしながら,この方法では,二層管41の薄肉金属管43と樹脂被覆42の間に流体が浸入し,薄肉金属管43からの樹脂被覆42の剥離を助長する要因となる。施工の際に,二層管41の管端部と管継手40ストッパ45の合わせ目にシリコンシーラント等を塗布し,流体の浸入を防ぐ方法もあるが,これとても完全ではない。さらに,二層管41の内側に薄肉金属管43の必要以上の変形を防止する補強コア等が存在しないため,二層管41引き抜き力が生じたとき,二層管41が窄まり,抜け易くなる恐れがある。   Further, the pipe joint 40 of FIG. 5 has a double-layer pipe 41 inserted into a cylindrical portion 46 with a metal stopper 45, and the end portion 47 of the cylindrical portion 46 is crimped with a tool to obtain a sealing property and at the same time An attempt is made to obtain the pull-out resistance of the tube 41. However, in this method, a fluid enters between the thin metal tube 43 and the resin coating 42 of the two-layer tube 41, which is a factor that promotes peeling of the resin coating 42 from the thin metal tube 43. At the time of construction, there is a method of applying a silicone sealant or the like at the joint between the pipe end of the double-layer pipe 41 and the pipe joint 40 stopper 45 to prevent the ingress of fluid, but this is not perfect. Further, since there is no reinforcing core or the like that prevents the thin metal tube 43 from being deformed more than necessary inside the double-layer tube 41, the double-layer tube 41 is easily squeezed when the double-layer tube 41 is pulled out. There is a fear.

そして,図6の管継手40は,管継手40を内面シールとし,管継手40を二層管41に挿入し,二層管41の外側に外筒48を嵌合してカシメ,外筒49,二層管41,及び,管継手40先端部に設けたパッキン49を押圧し,外筒48を変形させ,シール性と引き抜き阻止力を得るようにしている。しかし,この構造では大きな引き抜き阻止力を得ることはできず,耐引き抜き力が劣ってしまう。   6, the pipe joint 40 is used as an inner surface seal, the pipe joint 40 is inserted into the two-layer pipe 41, and the outer cylinder 48 is fitted to the outside of the two-layer pipe 41 so that the caulking and outer cylinder 49 are fitted. The packing 49 provided at the tip of the two-layer pipe 41 and the pipe joint 40 is pressed to deform the outer cylinder 48 so as to obtain a sealing property and a pull-out preventing force. However, with this structure, a large pulling-in preventing force cannot be obtained, and the pull-out resistance is inferior.

また,特開平2001−295974号公報には,管継手を,管の端部に挿入される挿入筒部にテーパ状突起を設けると共にシール材を装着する凹周溝を設けた継手本体と締付環体とから構成し,挿入筒部に管を挿入して締付環体を取り付けると,挿入筒部のテーパ状突起が管内面に食い込み,管の抜け止めをするようにしたものが開示されている。しかしながら,このような鋭利なテーパ状突起では,薄肉の小口径金属管の外面に樹脂被覆を施した二層管を装着した場合,薄い金属管に亀裂を生じさせ,二層管本来の持つ性能を発揮できない恐れがある。
WO98/11377号公報(図1,図2,図3) 特開2001−295974号公報(0014,図1)
Japanese Patent Application Laid-Open No. 2001-295974 discloses that a pipe joint is tightened with a joint body provided with a tapered protrusion on an insertion tube portion inserted into an end portion of the tube and a concave circumferential groove for mounting a sealing material. An annular body is disclosed in which when a tube is inserted into an insertion cylinder and a tightening ring is attached, a tapered protrusion on the insertion cylinder bites into the inner surface of the pipe to prevent the tube from coming off. ing. However, with such sharp tapered protrusions, when a thin double-layer pipe with a resin coating is attached to the outer surface of a thin-walled small-diameter metal pipe, the thin metal pipe is cracked, and the inherent performance of the double-layer pipe You may not be able to demonstrate.
WO98 / 11377 (FIGS. 1, 2 and 3) JP 2001-295974 A (0014, FIG. 1)

そこで,本発明は,薄肉の小口径金属管の外面に樹脂被覆を施した二層管,好ましくは,0.08mmから0.2mm程度の厚さの薄肉の金属管の外面に樹脂被覆を施した外径が14mmから30mm程度である二層管用の継手であって,接続が容易であり,かつ,シール性が確実であって,高度の耐引き抜き力を有するプレス式の管継手の提供を目的とするものである。   Accordingly, the present invention provides a two-layer tube in which the outer surface of a thin-walled small-diameter metal tube is coated with a resin, and preferably the outer surface of a thin-walled metal tube having a thickness of about 0.08 mm to 0.2 mm. Providing a press-type pipe joint that is a joint for a two-layer pipe having an outer diameter of about 14 mm to 30 mm, that is easy to connect, has a reliable sealing property, and has a high pull-out resistance. It is the purpose.

また,本発明は,接続する二層管が確実に挿入されているいることを目視により確認できるようにするとともに,工具による管継手に対するプレス位置を一定にするガイド機能を持たせ,さらに,締め付け不足が生じないようにしたプレス式の管継手の提供を目的とするものである。   In addition, the present invention provides a guide function that makes it possible to visually confirm that the double-layer pipe to be connected is securely inserted, and to keep the press position relative to the pipe joint by a tool, An object of the present invention is to provide a press-type pipe joint in which there is no shortage.

また,本発明は,接続される二層管の金属管がプレスにより変形する際に,金属管を損傷することがないようにしたプレス式の管継手の提供を目的とするものである。   Another object of the present invention is to provide a press-type pipe joint that prevents the metal pipe from being damaged when the metal pipe of the connected double-layer pipe is deformed by the press.

さらに,本発明は,プレスによるシーリング材の損傷を防止するとともに,シーリング材を装着しやすくしたプレス式の管継手の提供を目的とするものである。   Another object of the present invention is to provide a press-type pipe joint that prevents the sealing material from being damaged by the press and facilitates the mounting of the sealing material.

上記の目的を達成するための本発明の構成は,薄肉の小口径金属管の外面に樹脂被覆を施した二層管を外嵌し得る外径を有する継手本体に突設された内筒部と,内筒部の外面の溝に装着されたシーリング材と,内筒部外面に連設されたなだらかな曲面をもつ数条の山形の凹凸部と,継手本体に係止されたリングと,前記リングにより保持された外筒部と,を備え,前記内筒部と前記外筒部との間に前記二層管が挿入された状態で、前記外筒部が外側からプレスされると、前記二層管の内側の金属管が前記内筒部、前記シーリング材及び前記凹凸部に押圧され、前記内筒部の凹凸部に沿って前記二層管の金属管が変形するものである。 The configuration of the present invention for achieving the above object is to provide an inner tube portion projecting from a joint body having an outer diameter capable of fitting a two-layer tube having a resin coating on the outer surface of a thin-walled small-diameter metal tube. A sealing material mounted in a groove on the outer surface of the inner cylinder, a number of angled irregularities having a smooth curved surface continuously provided on the outer surface of the inner cylinder, a ring locked to the joint body, An outer cylinder portion held by the ring, and when the outer cylinder portion is pressed from the outside in a state where the two-layer tube is inserted between the inner cylinder portion and the outer cylinder portion, A metal tube inside the two-layer tube is pressed by the inner cylinder portion, the sealing material, and the uneven portion, and the metal tube of the two-layer tube is deformed along the uneven portion of the inner cylinder portion .

また,本発明は,前項の管継手において,外筒部を保持するために継手本体の基端側に係止したリング側面に二層管の挿入を目視し得る窓部を設けると共に該リングの外径を外筒部の外径より大きくしたものである。 Further, the present invention provides a pipe joint according to the preceding paragraph , wherein a window portion is provided on the side of the ring that is locked to the base end side of the joint body in order to hold the outer cylinder portion, and a double-layer pipe can be visually observed. Is made larger than the outer diameter of the outer cylinder portion.

また,本発明は,前々項又は前項のいずれかの管継手において,内筒部外面の山形の凹凸部の頂部及び谷部の開き角を100度を超える鈍角とし,かつ,凹凸部の頂部をなめらかな曲面としたものである。   Further, the present invention provides the pipe joint according to any one of the preceding paragraphs or the preceding paragraphs, wherein the peak of the chevron-shaped uneven part and the valley part on the outer surface of the inner cylinder part have an obtuse angle exceeding 100 degrees, and the top part of the uneven part. Is a smooth curved surface.

さらに,本発明は,前々々項から前項のいずれかの管継手において,シーリング材を装着する内筒部の溝が,その断面が溝底部は管軸に対して平行であり,壁部は管軸には垂直の面をなし,流体の圧力によりシーリング材が押し付けられる壁面はシーリング材断面中心から壁面に対し引いた垂線が交わる点から外側へずれたところから始まる曲面とし,圧力によりシーリング材が押し付けられる壁面の真向かいの壁面はシーリング材断面中心より、やや内側から始まり内筒部外面に連なる曲面をなすようにしたものである。   Further, according to the present invention, in the pipe joint according to any one of the preceding paragraphs to the preceding paragraph, the groove of the inner cylinder portion to which the sealing material is attached has a cross section whose groove bottom is parallel to the tube axis, and the wall portion is The pipe shaft has a vertical surface, and the wall on which the sealing material is pressed by the pressure of the fluid is a curved surface starting from the point where the perpendicular drawn from the center of the cross section of the sealing material intersects the wall and then outwards. The wall surface directly opposite to the wall surface to be pressed is a curved surface that starts slightly inside from the center of the cross section of the sealing material and continues to the outer surface of the inner cylinder part.

上記の構成により,本発明は,二層管の内側に内筒部が挿入されるように二層管を外筒部の内側に挿入し,外筒部の上から工具によりプレスすることで,二層管の内面がシーリング材を押圧してシール性を確実にするとともに,内筒部の山形の凹凸部に沿って二層管の金属管が変形することによって,高度の耐引き抜き力を得ることができる。   With the above configuration, the present invention inserts the double-layer tube inside the outer tube portion so that the inner tube portion is inserted inside the double-layer tube, and presses it with a tool from above the outer tube portion. The inner surface of the double-layer tube presses the sealing material to ensure sealing performance, and the metal tube of the double-layer tube deforms along the chevron-shaped uneven portion of the inner cylinder, thereby obtaining a high pull-out resistance. be able to.

また,本発明は,外筒部を保持するために継手本体に係止したリング側面に二層管の挿入を目視し得る窓部を設けることにより,二層管が確実に挿入されているいることを目視により確認することができるのに加えて,リングの端部にプレス工具の側面を当てることで、プレス工具による継手に対するプレス位置を一定にするガイド機能を持たせることができ,さらに,該リングの外径を外筒部のプレス工具の開き間隔より大きくすることにより,工具がリングを噛み込むことによる締め付け不足を防止することができる。   Further, according to the present invention, the double-layer pipe is securely inserted by providing a window portion on the side surface of the ring that is locked to the joint body to hold the outer cylinder portion so that the double-layer pipe can be visually observed. In addition to being able to confirm this visually, it is possible to provide a guide function for keeping the press position relative to the joint by the press tool by applying the side of the press tool to the end of the ring. By making the outer diameter of the ring larger than the opening interval of the press tool in the outer cylinder portion, insufficient tightening due to the tool biting the ring can be prevented.

そして,本発明は,内筒部外面の山形の凹凸部の頂部及び谷部の開き角を100度を超える鈍角とし,かつ,凹凸部の頂部をなめらかな曲面とすれば,接続される二層管の金属管がプレスにより変形する際に,金属管を損傷することがない。   Then, the present invention provides two layers to be connected if the opening angle of the top and bottom of the chevron-shaped uneven part on the outer surface of the inner cylinder part is an obtuse angle exceeding 100 degrees, and the top part of the uneven part is a smooth curved surface. The metal tube is not damaged when the metal tube is deformed by pressing.

そして,本発明は,シーリング材を装着する内筒部の溝が,その断面が溝底部は管軸に対して平行であり,壁部は管軸には垂直の面をなし,流体の圧力によりシーリング材が押し付けられる壁面はシーリング材断面中心から壁面に対し引いた垂線が交わる点から外側へずれたところから始まる曲面とし,圧力によりシーリング材が押し付けられる壁面の真向かいの壁面はシーリング材断面中心より、やや内側から始まり内筒部外面に連なる曲面をなすようにすることにより,二層管の挿入時の,また,二層管の内圧による,シーリング材の少量の移動および変形時に,シーリング材に傷をつけることを防止することができるとともに内筒部へのシーリング材の装着を容易に行うことができる。   According to the present invention, the groove of the inner cylinder portion to which the sealing material is mounted has a cross section whose parallel to the tube axis is the bottom of the groove, and the wall portion is perpendicular to the tube axis. The wall on which the sealing material is pressed is a curved surface starting from the point where the perpendicular drawn to the wall from the center of the cross section of the sealing material intersects, and the wall directly opposite the wall on which the sealing material is pressed by the pressure is from the center of the cross section of the sealing material By making a curved surface that starts from the inside and continues to the outer surface of the inner cylinder, it becomes a sealing material when a double-layer pipe is inserted or when a small amount of the sealing material moves or deforms due to the internal pressure of the double-layer pipe. It is possible to prevent damage and to easily attach the sealing material to the inner cylinder portion.

以下,図面を参照して本発明の実施の形態を説明する。   Embodiments of the present invention will be described below with reference to the drawings.

図1に示した例は,継手本体1に段部2を介して薄肉の金属管3の外面に樹脂被覆4を施した二層管5が外嵌し得る外径の内筒部6を突設し,この内筒部5の適箇所に適数条の溝7を設け,この溝7にシーリング材8を装着し,段部2に寄せて内筒部6外面になだらかな曲面をもつ数条の山形の凹凸部9を連設してある。継手本体1の段部2後方には,側面に前記二層管3の挿入を目視し得る窓部10を設けたリング11が回動自在に係止されており,このリング11の内面には前記二層管5に外嵌される外筒部12が保持されている。   In the example shown in FIG. 1, an inner cylinder portion 6 having an outer diameter that can fit a two-layer pipe 5 having a resin coating 4 on the outer surface of a thin metal pipe 3 is protruded from a joint body 1 via a stepped portion 2. A number of grooves 7 are provided at appropriate locations on the inner cylinder 5, and a sealing material 8 is attached to the grooves 7, and the outer cylinder 6 has a gently curved surface on the outer surface of the step 2. A mountain-shaped uneven portion 9 is continuously provided. A ring 11 provided with a window portion 10 on the side surface where the insertion of the two-layer pipe 3 can be visually observed is pivotally locked behind the step portion 2 of the joint body 1. An outer cylinder portion 12 that is externally fitted to the double-layer tube 5 is held.

二層管5は,0.08mmから0.2mm程度の厚さの薄肉の金属管3の外面に樹脂被覆4を施した外径が14mmから30mm程度のものが好ましい。   The double-layered tube 5 is preferably a thin metal tube 3 having a thickness of about 0.08 mm to 0.2 mm and having an outer diameter of about 14 mm to 30 mm.

そして,前記リング11の外径は,継手本体1の外筒部12のプレス工具13の開き間隔より若干大きく形成し,プレス工具13で外筒部12をプレスする際に,プレス工具13がリング11を噛み込むことがないようにしてプレス工具13がリング11を噛み込むことによる締め付け不足を防止しているとともに,リング11の端部にプレス工具13の側面を当てることで、プレス工具13による管継手に対するプレス位置を一定にするガイド機能を持たせるている。   The outer diameter of the ring 11 is formed to be slightly larger than the opening interval of the press tool 13 of the outer cylinder portion 12 of the joint body 1, and when the press tool 13 presses the outer cylinder portion 12, the press tool 13 11 is prevented from being bitten by the press tool 13 so that the ring 11 does not bite, and the side of the press tool 13 is applied to the end of the ring 11 so that the press tool 13 A guide function is provided to keep the press position relative to the pipe joint constant.

また,継手本体1の内筒部6外面の山形の凹凸部9の頂部及び谷部の開き角を100度を超える鈍角とし,かつ,凹凸部9の頂部をなめらかな曲面としてあり,接続される二層管5の金属管3がプレスにより変形する際に,金属管3を損傷することがないよう配慮している。   Further, the opening angle of the top and bottom of the chevron-shaped uneven part 9 on the outer surface of the inner cylinder part 6 of the joint body 1 is an obtuse angle exceeding 100 degrees, and the top part of the uneven part 9 is a smooth curved surface and is connected. When the metal tube 3 of the double-layer tube 5 is deformed by pressing, consideration is given so that the metal tube 3 is not damaged.

さらに,シーリング材8を装着する継手本体1の内筒部6の溝7が,その断面が溝底部は管軸に対して平行であり,壁部は管軸には垂直の面をなし,流体の圧力によりシーリング材8が押し付けられる壁面はシーリング材8断面中心から壁面に対し引いた垂線が交わる点から外側へずれたところから始まる曲面とし,圧力によりシーリング材8が押し付けられる壁面の真向かいの壁面はシーリング材8断面中心より、やや内側から始まり継手本体1の内筒部6外面に連なる曲面をなすようにしてあり,こうすることによって,二層管5の挿入時の,また,二層管5の内圧による,シーリング材8の少量の移動および変形時に,シーリング材8に傷をつけることを防止するようにするとともに継手本体1の内筒部6へのシーリング材8の装着を容易に行うことができるようにしている。   Further, the groove 7 of the inner cylinder part 6 of the joint body 1 to which the sealing material 8 is mounted has a cross section whose groove bottom part is parallel to the pipe axis, and whose wall part is perpendicular to the pipe axis. The wall on which the sealing material 8 is pressed by the pressure of the surface is a curved surface starting from the point where the perpendicular drawn from the center of the cross section of the sealing material 8 intersects the wall, and the wall directly opposite the wall on which the sealing material 8 is pressed by the pressure Has a curved surface that starts slightly inside from the center of the cross-section of the sealing material 8 and continues to the outer surface of the inner cylindrical portion 6 of the joint body 1. By doing so, the two-layer tube 5 is inserted when the two-layer tube 5 is inserted. When the sealing material 8 is moved and deformed in a small amount by the internal pressure 5, the sealing material 8 is prevented from being damaged and the sealing material 8 is attached to the inner tube portion 6 of the joint body 1. So that can be done to ease.

次に,この管継手の使用を図2及び図3を参照して説明する。   Next, the use of this pipe joint will be described with reference to FIGS.

まず,二層管5を,継手本体1の内筒部5に外嵌するとともに継手本体1の外筒部12に内嵌するように段部2に当接するまで挿入する。このとき,リング11の窓部10から,二層管5の管端部が段部2に当接するまで挿入されていること,つまり,二層管5が正しくプレス位置まで挿入されているいることを目視により確認することができる。次に,プレス工具13の側面をリング11の端部に当てて開き,継手本体1の外筒部12にあてがい(図2参照),プレス工具13で継手本体1の外筒部12をプレスする。このとき,二層管5の金属管3は変形して継手本体1の内筒部5に密着するが,内筒部5内面の山形の凹凸部9はなだらかな曲面をしており,このため,二層管5の金属管3を損傷する恐れはほとんどない。特に,上記のように,内筒部5内面の山形の凹凸部9の頂部及び谷部の開き角を100度を超える鈍角とし,かつ,凹凸部9の頂部をなめらかな曲面としてある場合には,二層管5の金属管3を損傷する恐れはなく,高度な耐引き抜き力を得ることができる。尚,図中符号14は外筒部12のプレス痕である。   First, the double-layer pipe 5 is inserted until it is fitted on the inner cylinder portion 5 of the joint body 1 and is in contact with the step portion 2 so as to be fitted on the outer cylinder portion 12 of the joint body 1. At this time, it is inserted from the window portion 10 of the ring 11 until the tube end portion of the double-layer tube 5 comes into contact with the step portion 2, that is, the double-layer tube 5 is correctly inserted to the press position. Can be visually confirmed. Next, the side surface of the press tool 13 is opened against the end of the ring 11, applied to the outer tube portion 12 of the joint body 1 (see FIG. 2), and the outer tube portion 12 of the joint body 1 is pressed with the press tool 13. . At this time, the metal tube 3 of the double-layer tube 5 is deformed and is in close contact with the inner tube portion 5 of the joint body 1, but the chevron-like uneven portion 9 on the inner surface of the inner tube portion 5 has a gentle curved surface. , There is almost no risk of damaging the metal tube 3 of the double-layer tube 5. In particular, as described above, when the angle of the top and bottom of the chevron-shaped uneven part 9 on the inner surface of the inner cylinder part 5 is an obtuse angle exceeding 100 degrees and the top of the uneven part 9 is a smooth curved surface , There is no fear of damaging the metal tube 3 of the double-layer tube 5, and a high pull-out resistance can be obtained. In the figure, reference numeral 14 denotes a press mark of the outer cylinder portion 12.

比較のため,500mm以上の長さの二層管5の両端に上記例と,内筒部6外面に上記の山形の凹凸部9を設ないものを取り付け,これをチャックにより固定した試験体に空圧0.2MPa を加え,アムスラー型万能試験機で漏れが発生するまで引き抜く引き抜き試験を行った。引張速度は2mm/min である。結果は表1の通りで,上記の山形の凹凸部9により高度の耐引き抜き力が得られることが確認された。   For comparison, the above-mentioned example is attached to both ends of a double-layered tube 5 having a length of 500 mm or more, and a test body in which the above-described chevron-like uneven portion 9 is not provided on the outer surface of the inner cylinder portion 6 is fixed to a test body by a chuck. A pulling test was conducted by applying air pressure of 0.2 MPa and pulling out with an Amsler universal testing machine until leakage occurred. The tensile speed is 2 mm / min. The results are as shown in Table 1, and it was confirmed that a high pull-out resistance was obtained by the above-described chevron-shaped uneven portion 9.

本発明を実施した1例の半断面図。The half sectional view of one example which carried out the present invention. 図1の例をプレス工具で外筒部をプレスする前の状態における半断面図。The half cross-sectional view in the state before pressing the outer cylinder part with the example of FIG. 1 with a press tool. 図1の例をプレス工具で外筒部をプレスした状態における半断面図。The half cross-sectional view in the state which pressed the outer cylinder part with the example of FIG. 1 with the press tool. 従来の管継手の半断面図。The half sectional view of the conventional pipe joint. 図4と異なる従来の管継手の半断面図。The half sectional view of the conventional pipe joint different from FIG. 図4,図5と異なる従来の管継手の半断面図。The half sectional view of the conventional pipe joint different from FIG. 4, FIG.

符号の説明Explanation of symbols

1 継手本体
2 段部
3 金属管
4 樹脂被覆 5 二層管
6 内筒部
7 溝
8 シーリング材
9 山形の凹凸部
10 窓部
11 リング 12 外筒部
13 プレス工具
14 プレス痕

40 管継手
41 二層管
42 樹脂被覆
43 薄肉金属管
44 補強コア
45 ストッパ
46 筒部
47 筒部の末端部
48 外筒
49 パッキン
DESCRIPTION OF SYMBOLS 1 Joint body 2 Step part 3 Metal pipe 4 Resin coating 5 Double-layer pipe 6 Inner cylinder part 7 Groove
8 Sealing material
9 Uneven part of Yamagata
10 windows
11 Ring 12 Outer tube
13 Press tool 14 Press mark

40 Pipe joint 41 Double-layer pipe 42 Resin coating 43 Thin metal pipe 44 Reinforcement core 45 Stopper 46 Tube portion 47 End portion of tube portion 48 Outer tube 49 Packing

Claims (4)

薄肉の小口径金属管の外面に樹脂被覆を施した二層管を外嵌し得る外径を有する継手本体に突設された内筒部と,内筒部の外面の溝に装着されたシーリング材と,内筒部外面に連設されたなだらかな曲面をもつ数条の山形の凹凸部と,継手本体に係止されたリングと,前記リングにより保持された外筒部と,を備え、
前記内筒部と前記外筒部との間に前記二層管が挿入された状態で,前記外筒部が外側からプレスされると,前記二層管の内側の金属管が前記内筒部,前記シーリング材及び前記凹凸部に押圧され,前記内筒部の凹凸部に沿って前記二層管の金属管が変形することを特徴とする管継手。
An inner cylinder projecting from a joint body with an outer diameter that can fit a two-layer pipe with a resin coating on the outer surface of a thin-walled small-diameter metal tube, and a seal mounted in a groove on the outer surface of the inner cylinder A plurality of chevron-shaped irregularities having a smooth curved surface continuously provided on the outer surface of the inner cylinder part, a ring locked to the joint body, and an outer cylinder part held by the ring ,
When the outer tube portion is pressed from the outside in a state where the two-layer tube is inserted between the inner tube portion and the outer tube portion, the metal tube inside the two-layer tube is moved to the inner tube portion. The pipe joint is characterized in that the metal pipe of the two-layer tube is deformed along the concave and convex portions of the inner cylinder portion by being pressed by the sealing material and the concave and convex portions .
外筒部を保持するために継手本体の基端側に係止したリング側面に二層管の挿入を目視し得る窓部を設けると共に該リングの外径を外筒部の外径より大きくしたことを特徴とする請求項1に記載の管継手。 A window portion is provided on the side of the ring that is locked to the base end side of the joint body to hold the outer cylinder portion , and the outer diameter of the ring is larger than the outer diameter of the outer cylinder portion. The pipe joint according to claim 1, wherein 内筒部外面の山形の凹凸部の頂部及び谷部開き角を100度を超える鈍角とし,かつ,凹凸部の頂部をなめらかな曲面とした請求項1または請求項2に記載の管継手。 The pipe joint according to claim 1 or 2, wherein the top and bottom opening angles of the chevron-shaped uneven part on the outer surface of the inner cylinder part are obtuse angles exceeding 100 degrees, and the top part of the uneven part is a smooth curved surface. シーリング材を装着する内筒部の溝が,その断面が溝底部は管軸に対して平行であり,壁部は管軸には垂直の面をなし,流体の圧力によりシーリング材が押し付けられる壁面はシーリング材断面中心から壁面に対し引いた垂線が交わる点から外側へずれたところから始まる曲面とし,圧力によりシーリング材が押し付けられる壁面の真向かいの壁面はシーリング材断面中心より、やや内側から始まり内筒部外面に連なる曲面をなすようにした請求項1から請求項3のいずれかに記載の管継手。 The groove of the inner cylinder part to which the sealing material is mounted has a cross-section that is parallel to the tube axis at the bottom of the groove, the wall is a surface perpendicular to the tube axis, and the wall surface on which the sealing material is pressed by the fluid pressure Is a curved surface that starts from the point where the perpendicular drawn from the center of the cross section of the sealing material intersects to the outside, and the wall directly opposite the wall on which the sealing material is pressed by the pressure starts slightly inside from the center of the cross section of the sealing material. The pipe joint according to any one of claims 1 to 3, wherein the pipe joint is formed into a curved surface that is continuous with the outer surface of the cylindrical portion.
JP2004058133A 2004-03-02 2004-03-02 Pipe fitting Expired - Lifetime JP4567350B2 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5430988B2 (en) * 2009-03-23 2014-03-05 未来工業株式会社 Fluid fitting device

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS55122584U (en) * 1979-02-22 1980-08-30
JPH01127124A (en) * 1987-11-12 1989-05-19 Bridgestone Furootec Kk Joining method for joint of metallic tubes
JP2001027375A (en) * 1999-07-16 2001-01-30 Higashio Mech Co Ltd Joint for resin pipe
JP2001295974A (en) * 2000-02-07 2001-10-26 Higashio Mech Co Ltd Pipe joint

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS55122584U (en) * 1979-02-22 1980-08-30
JPH01127124A (en) * 1987-11-12 1989-05-19 Bridgestone Furootec Kk Joining method for joint of metallic tubes
JP2001027375A (en) * 1999-07-16 2001-01-30 Higashio Mech Co Ltd Joint for resin pipe
JP2001295974A (en) * 2000-02-07 2001-10-26 Higashio Mech Co Ltd Pipe joint

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