JP2009293732A - Pipe slipping-out preventive device - Google Patents

Pipe slipping-out preventive device Download PDF

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Publication number
JP2009293732A
JP2009293732A JP2008149291A JP2008149291A JP2009293732A JP 2009293732 A JP2009293732 A JP 2009293732A JP 2008149291 A JP2008149291 A JP 2008149291A JP 2008149291 A JP2008149291 A JP 2008149291A JP 2009293732 A JP2009293732 A JP 2009293732A
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stopper
outer tube
tube
engaging
inner tube
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JP2008149291A
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JP5108638B2 (en
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Yukihiro Shioda
享広 塩田
Tadao Kaneko
忠夫 金子
Tadashi Domon
忠 土門
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SOGO KIZAI KK
TOKYO FORMING KK
Tosetz Co Ltd
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SOGO KIZAI KK
TOKYO FORMING KK
Tosetz Co Ltd
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Priority to JP2008149291A priority Critical patent/JP5108638B2/en
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  • Quick-Acting Or Multi-Walled Pipe Joints (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a pipe slipping-out preventive device for easily attaching-detaching a stopper without fixing by welding, and easily attaching-detaching an inner pipe and an outer pipe. <P>SOLUTION: This pipe slipping-out preventive device has a projection part 14 projecting outside in the radial direction of the outer pipe 12, a recessed part 32 recessed inside in the radial direction of the inner pipe 30, and a stopper 40 installed in the outer pipe 12 in response to the projection part 14. The projection part 14 has a low projection part 16, an insertion hole 18, a high projection part 24, a projection part side engaging part (an engaging hole 20), and a running-on part 22 projecting higher than the low projection part 16. The stopper 40 has the outer side 42, the inner side 52, a first engaging part (an engaging part 58) and a second engaging part (the engaging side 48). When the inner pipe 30 moves in the direction for extracting the inner pipe 30 from the outer pipe 12 in a state of sandwiching the projection part 14 by the outer side 42 and the inner side 52, the first engaging part (the engaging part 58) engages the recessed part 32 of the inner pipe 30, and the second engaging part (the engaging side 48) engages with the projection part side engaging part of the projection part 14, to thereby check extraction. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、暖房用及び給湯用機器としてガスや化石燃料を用いた機器に接続される配管の抜け止め装置に関するものである。   The present invention relates to an apparatus for preventing a pipe connected to an apparatus using gas or fossil fuel as an apparatus for heating and hot water supply.

従来より暖房用や給湯用機器などには比較的熱効率が高いガスや化石燃料などが使用された燃焼機器が広く用いられてきている。近年では住宅の室内も高気密化してきており、このような燃焼機器の室内使用においては、充分な換気を行わなければならない。特に寒い北国の家屋や建物については長時間に渡ってそれらの機器を使用しなければならず、室内換気の重要性は極めて高いものである。   Conventionally, combustion equipment using gas or fossil fuel with relatively high thermal efficiency has been widely used for heating and hot water supply equipment. In recent years, the interior of houses has become highly airtight, and sufficient ventilation must be provided for the indoor use of such combustion equipment. Especially in cold northern homes and buildings, these devices must be used for a long time, and the importance of indoor ventilation is extremely high.

係る燃焼機器には外気の導入や給排気用の配管(給排気管)として、単配管或いは二重配管が、予め一定の長さに製作されたものを複数本接続して延長しているのが一般的である。このような施工方法で配管を延長した場合、何れかの接続部が外れて配管が抜け落ちたりしないように、通常各配管の接続部毎に配管の抜け止め装置が設けられている。   Such combustion equipment is extended by connecting a plurality of single pipes or double pipes that have been manufactured in advance to a certain length as pipes for supplying and exhausting outside air (supply and exhaust pipes). Is common. When a pipe is extended by such a construction method, a pipe retaining device is usually provided for each connecting part of each pipe so that any connecting part is not detached and the pipe is not dropped.

このような燃焼機器に設けられた配管の抜け止め装置として、一方の配管(外管)の受け口内に他の配管(内管)の挿入口側が差し込まれると、ロック部が挿入口の先端で押し上げられて、切り窓から当該切り窓の外に溶接固定され、逃げ空間とロック壁及びスライドガイドを形成したカバー内(逃げ空間)に収まる。更に内管の挿入口側が外管の受け口内に差し込まれると、ロック部の下に内管に形成した円周溝が合い、ロック部材の弾性作用でロック部が円周溝内に落ち込み内管と外管とがロックされる。   As a piping retaining device provided in such a combustion device, when the insertion port side of the other piping (inner tube) is inserted into the receiving port of one piping (outer tube), the lock part is at the tip of the insertion port. It is pushed up, welded and fixed from the cut window to the outside of the cut window, and fits in the escape space, the cover that forms the lock wall and the slide guide (the escape space). Further, when the inner tube insertion port side is inserted into the outer tube receiving port, the circumferential groove formed in the inner tube fits under the lock portion, and the lock portion falls into the circumferential groove by the elastic action of the lock member, and the inner tube And the outer tube are locked.

そして、内管と外管とに引き抜き方向の力が加わったとき、係合部がロック壁で押さえられ、これによりロック部にくさび効果が作用して、円周溝との嵌合関係が強化される。これにより、内管と外管とが接続部で抜け落ちてしまうのを防止していた。また、内管と外管と引き抜いて外す場合には、挿入口側を一旦押し込んで一緒にロック部材を後退させてロック部の係合部をロック壁から逃げ空間側に逃がす。そして、この状態で、ロック部材のストッパ操作部を指先で押さえ、挿入口側を引くことにより、ロック部が円周溝の縁に沿って持ち上げられて切り窓から逃げ空間内に収まり、そのまま両配管を相互に離間させることにより引き抜けるように構成していた。これにより、内管と外管とを容易に着脱できるように構成していた(特許文献1参照)。
特開2000−304182号公報
When a pulling force is applied to the inner tube and the outer tube, the engaging part is pressed by the lock wall, which causes a wedge effect on the locking part and strengthens the fitting relationship with the circumferential groove. Is done. As a result, the inner pipe and the outer pipe are prevented from falling off at the connecting portion. Further, when the inner tube and the outer tube are pulled out and removed, the insertion port side is pushed once and the lock member is retracted together to release the engagement portion of the lock portion from the lock wall to the escape space side. Then, in this state, by pressing the stopper operating portion of the lock member with the fingertip and pulling the insertion port side, the lock portion is lifted along the edge of the circumferential groove and is accommodated in the escape space from the cut window, and both The pipes are configured to be pulled out by being separated from each other. Thereby, it has comprised so that an inner pipe and an outer pipe can be attached or detached easily (refer patent document 1).
JP 2000-304182 A

しかしながら、内管と外管とを接続する従来の配管の抜け止め装置は、カバーを外管に溶接固定してからでは、スライドガイドと外管との隙間にロック部材を挿入することができなかった。そこで、スライドガイドと外管との隙間にロック部材を挿入した後、カバーを外管に溶接固定していた。このため、ロック部材が変形して、抜け止め装置の役割を果たさない場合には、外管から溶接したカバーを外し、再度ロック部材をスライドガイドと外管との隙間に挿入した後、カバーを外管に溶接固定しなければならないという手間のかかる問題があった。   However, the conventional piping retaining device for connecting the inner pipe and the outer pipe cannot insert the lock member into the gap between the slide guide and the outer pipe after the cover is welded and fixed to the outer pipe. It was. Therefore, after inserting the lock member into the gap between the slide guide and the outer tube, the cover is welded and fixed to the outer tube. For this reason, when the lock member is deformed and does not serve as a retaining device, the welded cover is removed from the outer tube, the lock member is inserted again into the gap between the slide guide and the outer tube, and then the cover is removed. There was a troublesome problem that the outer tube had to be fixed by welding.

本発明は、係る従来技術の課題を解決するために成されたものであり、溶接固定をしなくても簡単にストッパの着脱を行うことができ、且つ、内管と外管との着脱が容易に行うことができる配管の抜け止め装置を提供することを目的とする。   The present invention has been made to solve the problems of the related art. The stopper can be easily attached / detached without fixing by welding, and the inner tube and the outer tube can be attached / detached. An object of the present invention is to provide a piping retaining device that can be easily performed.

即ち、本発明の配管の抜け止め装置は、外管と、該外管の一端より当該外管内に挿入される内管と、外管の一端近傍に構成され、当該外管の半径方向外側に突出する突出部と、内管の外管内に挿入される側の端部に形成され、該内管の半径方向内側に陥没する凹陥部と、突出部に対応して外管に取り付けられる弾性を有したストッパとを備え、突出部は、低突出部と、該低突出部の外管一端側の側面に形成された挿入孔と、低突出部の外管一端側とは反対側に連続する高突出部と、低突出部に形成された突出部側係合部と、該突出部側係合部の高突出部側に位置して低突出部より高く突出する乗り上げ部とを有し、ストッパは、外辺と、該外辺一端の屈曲部にて連続して折り返された内辺と、該内辺の他端に構成された第1の係合部と、該第1の係合部よりも屈曲部側に位置して形成された第2の係合部とを有し、内辺が突出部の挿入孔から当該突出部内に進入し、外辺と内辺により突出部を挟んだ状態で外管に取り付けられ、外管より内管を引き抜く方向に当該内管が移動した場合、ストッパの内辺他端の第1の係合部が内管の凹陥部に係合し、且つ、第2の係合部が突出部の突出部側係合部に係合することで引き抜きが阻止されると共に、突出部の高突出部に内管の凹陥部が対応した状態で、外辺の他端が突出部の乗り上げ部に乗り上げる方向にストッパが移動された場合、該ストッパの内辺他端の第1の係合部は内管の凹陥部より離脱することを特徴とする。   That is, the pipe retaining device according to the present invention includes an outer tube, an inner tube inserted into the outer tube from one end of the outer tube, and one end of the outer tube. Protruding protrusions, a recess formed at the end of the inner tube that is inserted into the outer tube, and recessed inward in the radial direction of the inner tube, and an elasticity attached to the outer tube corresponding to the protruding portion. The protrusion has a low protrusion, an insertion hole formed in a side surface of the low protrusion on the one end side of the outer tube, and a side opposite to the one end of the outer tube of the low protrusion. A high projecting portion, a projecting portion side engaging portion formed in the low projecting portion, and a riding portion that is located on the high projecting portion side of the projecting portion side engaging portion and projects higher than the low projecting portion, The stopper includes an outer side, an inner side continuously folded at a bent portion at one end of the outer side, a first engaging portion configured at the other end of the inner side, A second engaging portion formed on the bent portion side of the engaging portion, and the inner side enters the protruding portion from the insertion hole of the protruding portion, and protrudes by the outer side and the inner side. When the inner tube moves in the direction in which the inner tube is pulled out from the outer tube, the first engaging portion at the other end of the inner side of the stopper is engaged with the recessed portion of the inner tube. And the second engaging portion is engaged with the protruding portion side engaging portion of the protruding portion to prevent the pulling out, and the concave portion of the inner tube corresponds to the high protruding portion of the protruding portion. Then, when the stopper is moved in the direction in which the other end of the outer side rides on the riding part of the protrusion, the first engaging part at the other end of the inner side of the stopper is disengaged from the recessed part of the inner tube. And

また、請求項2の発明の配管の抜け止め装置は、上記において、突出部の突出部側係合部は、低突出部の上面に形成された係合孔であり、ストッパの第2の係合部は、外辺より内辺側に突出する係合辺であって、外管より内管を引き抜く方向に当該内管が移動した場合、ストッパの係合辺が突出部の係合孔内に進入して係合することを特徴とする。   Further, in the pipe retaining device according to the second aspect of the present invention, in the above, the protruding portion side engaging portion of the protruding portion is an engaging hole formed in the upper surface of the low protruding portion, and the second engagement of the stopper. The joint portion is an engagement side that protrudes inward from the outer side. When the inner tube moves in a direction in which the inner tube is pulled out from the outer tube, the engagement side of the stopper is in the engagement hole of the protrusion. It is characterized by entering and engaging.

また、請求項3の発明の配管の抜け止め装置は、請求項2に加えて、ストッパは、外辺の他端部に形成され、先端側が内辺から離間する方向に傾斜した傾斜部と、内辺の他端部に形成され、外辺側に湾曲して先端が第1の係合部となる湾曲部とを有し、傾斜部が突出部の乗り上げ部に乗り上げる方向にストッパが移動された場合、湾曲部が高突出部の外管一端側の壁の内面に当接しながら当該高突出部内側に進入し、第1の係合部が凹陥部より離脱すると共に、高突出部の外管一端側の壁とストッパの傾斜部は、当該傾斜部の先端に向かう程、相互に離間することを特徴とする。   Further, in addition to claim 2, the pipe retaining device according to the invention of claim 3 is formed at the other end portion of the outer side, and the inclined portion inclined in the direction in which the tip side is separated from the inner side, The stopper is moved in a direction to be formed on the other end portion of the inner side, having a curved portion that curves to the outer side and has a tip that becomes the first engaging portion, and the inclined portion rides on the riding portion of the protruding portion. In this case, the curved portion enters the inside of the high protruding portion while contacting the inner surface of the wall on one end side of the outer tube of the high protruding portion, the first engaging portion is detached from the recessed portion, and the outside of the high protruding portion is The wall on the one end side of the tube and the inclined portion of the stopper are separated from each other toward the tip of the inclined portion.

また、請求項4の発明の配管の抜け止め装置は、請求項1において、突出部の突出部側係合部は、低突出部に凹陥形成された係合凹部であり、ストッパの第2の係合部は、内辺に形成された透孔であって、外管より内管を引き抜く方向に当該内管が移動した場合、突出部の係合凹部がストッパの透孔内に進入して係合することを特徴とする。   According to a fourth aspect of the present invention, there is provided the pipe retaining device according to the first aspect, wherein the protrusion-side engagement portion of the protrusion is an engagement recess formed as a recess in the low protrusion, The engaging portion is a through hole formed on the inner side. When the inner tube moves in a direction in which the inner tube is pulled out from the outer tube, the engaging concave portion of the protruding portion enters the through hole of the stopper. It is characterized by engaging.

また、請求項5の発明の配管の抜け止め装置は、請求項4において、ストッパは、外辺の他端部に形成され、先端側が内辺から離間する方向に傾斜した傾斜部と、該傾斜部の屈曲部側の外辺に形成され、内辺側に突出する突部とを有することを特徴とする。   According to a fifth aspect of the present invention, there is provided the pipe retaining device according to the fourth aspect, wherein the stopper is formed at the other end of the outer side, and the inclined portion is inclined in a direction in which the tip side is separated from the inner side. And a protruding portion that is formed on the outer side of the bent portion side and protrudes toward the inner side.

また、請求項6の発明の配管の抜け止め装置は、請求項4又は請求項5において、ストッパは、内辺の他端部に形成され、外辺側に湾曲して先端が第1の係合部となる湾曲部を有し、ストッパの透孔は湾曲部の屈曲部側の面まで延在しており、該透孔両側に位置する湾曲部の外辺とは反対側の面には、補強リブが形成されていることを特徴とする。   According to a sixth aspect of the present invention, in the pipe retaining device according to the fourth or fifth aspect, the stopper is formed at the other end of the inner side and is curved toward the outer side so that the tip is the first engagement. It has a curved part that becomes a joint part, and the through hole of the stopper extends to the surface on the bent part side of the curved part, and on the surface opposite to the outer side of the curved part located on both sides of the through hole A reinforcing rib is formed.

また、請求項7の発明の配管の抜け止め装置は、請求項1乃至請求項6の何れかにおいて、ストッパの屈曲部は湾曲していると共に、外管の挿入孔下縁には、当該外管の半径方向外側に突出する断面円弧状の案内部が形成され、外辺の他端が突出部の乗り上げ部に乗り上げる方向にストッパが移動された場合、当該ストッパの屈曲部が案内部の外管一端側とは反対側の湾曲面に対応することを特徴とする。   According to a seventh aspect of the present invention, there is provided the piping retaining device according to any one of the first to sixth aspects, wherein the bent portion of the stopper is curved, and the outer edge of the insertion hole of the outer tube is provided on the outer edge of the outer tube. When a guide portion having an arcuate cross section that protrudes outward in the radial direction of the tube is formed and the stopper is moved in a direction in which the other end of the outer side rides on the riding portion of the protruding portion, the bent portion of the stopper is outside the guide portion. It corresponds to the curved surface opposite to the one end side of the tube.

また、請求項8の発明の配管の抜け止め装置は、請求項1乃至請求項7の何れかにおいて、突出部は、外管と一体に突出形成されていると共に、凹陥部は内管の全周に渡って連続して形成されていることを特徴とする。   According to an eighth aspect of the present invention, there is provided the piping retaining device according to any one of the first to seventh aspects, wherein the projecting portion is formed integrally with the outer tube, and the recessed portion is the entire inner tube. It is characterized by being formed continuously over the circumference.

本発明によれば、外管と、該外管の一端より当該外管内に挿入される内管と、外管の一端近傍に構成され、当該外管の半径方向外側に突出する突出部と、内管の外管内に挿入される側の端部に形成され、該内管の半径方向内側に陥没する凹陥部と、突出部に対応して外管に取り付けられる弾性を有したストッパとを備え、突出部は、低突出部と、該低突出部の外管一端側の側面に形成された挿入孔と、低突出部の外管一端側とは反対側に連続する高突出部と、低突出部に形成された突出部側係合部と、該突出部側係合部の高突出部側に位置して低突出部より高く突出する乗り上げ部とを有し、ストッパは、外辺と、該外辺一端の屈曲部にて連続して折り返された内辺と、該内辺の他端に構成された第1の係合部と、該第1の係合部よりも屈曲部側に位置して形成された第2の係合部とを有し、内辺が突出部の挿入孔から当該突出部内に進入し、外辺と内辺により突出部を挟んだ状態で外管に取り付けられ、外管より内管を引き抜く方向に当該内管が移動した場合、ストッパの内辺他端の第1の係合部が内管の凹陥部に係合し、且つ、第2の係合部が突出部の突出部側係合部に係合することで引き抜きが阻止されると共に、突出部の高突出部に内管の凹陥部が対応した状態で、外辺の他端が突出部の乗り上げ部に乗り上げる方向にストッパが移動された場合、該ストッパの内辺他端の第1の係合部は内管の凹陥部より離脱するので、例えば、請求項2の如く、突出部の突出部側係合部は、低突出部の上面に形成された係合孔であり、ストッパの第2の係合部は、外辺より内辺側に突出する係合辺であって、外管より内管を引き抜く方向に当該内管が移動した場合、ストッパの係合辺が突出部の係合孔内に進入して係合するので、外管から内管が抜けてしまうのを確実に防止することができる。これにより、従来のロック部材のようにストッパが変形して配管の抜け止め装置の役割を果たさない場合に、外管から溶接したカバーを外し、再度ロック部材をスライドガイドと外管との隙間に挿入した後、カバーを外管に溶接固定するなどといった煩雑な手間が掛かることがない。従って、ストッパが変形した場合、傾斜部を手で持ち上げて係合辺を係合孔から離脱させ、外管の一端方向に移動させるだけでストッパを取り外して交換することができ、配管の抜け止め装置の利便性を大幅に向上させることができるようになるものである。   According to the present invention, an outer tube, an inner tube that is inserted into the outer tube from one end of the outer tube, a protrusion that is configured near one end of the outer tube and protrudes radially outward of the outer tube, The inner tube includes a recessed portion that is formed at an end portion of the inner tube that is inserted into the outer tube and is recessed radially inward of the inner tube, and a stopper having elasticity that is attached to the outer tube corresponding to the protruding portion. The protruding portion includes a low protruding portion, an insertion hole formed on a side surface of the low protruding portion on one end side of the outer tube, a high protruding portion continuous on the side opposite to the outer tube one end side of the low protruding portion, A protrusion portion engaging portion formed in the protrusion portion, and a riding portion that is located on the high protrusion portion side of the protrusion portion side engagement portion and protrudes higher than the low protrusion portion, and the stopper includes an outer side , An inner side continuously folded at a bent portion at one end of the outer side, a first engaging portion configured at the other end of the inner side, and bent more than the first engaging portion A second engaging portion formed on the side, the inner side enters the protruding portion from the insertion hole of the protruding portion, and the outer tube is sandwiched between the outer side and the inner side. When the inner tube moves in a direction in which the inner tube is pulled out from the outer tube, the first engagement portion at the other end of the inner side of the stopper is engaged with the recessed portion of the inner tube, and the second Pulling out is prevented by engaging the engaging portion with the protruding portion side engaging portion of the protruding portion, and the other end of the outer side is in a state where the recessed portion of the inner tube corresponds to the high protruding portion of the protruding portion. When the stopper is moved in the direction of riding on the riding part of the protruding part, the first engaging part at the other end of the inner side of the stopper is separated from the recessed part of the inner tube. The protruding portion side engaging portion of the portion is an engaging hole formed on the upper surface of the low protruding portion, and the second engaging portion of the stopper protrudes from the outer side to the inner side. When the inner tube moves in a direction in which the inner tube is pulled out from the outer tube, the engaging side of the stopper enters the engagement hole of the protrusion and engages. It is possible to reliably prevent the inner tube from coming off. This prevents the welded cover from being removed from the outer tube when the stopper is deformed and does not serve as a pipe retainer as in the case of the conventional lock member, and the lock member is again inserted into the gap between the slide guide and the outer tube. After the insertion, there is no troublesome work such as welding and fixing the cover to the outer tube. Therefore, when the stopper is deformed, the stopper can be removed and replaced simply by lifting the inclined part by hand to disengage the engaging side from the engaging hole and moving it toward one end of the outer tube. The convenience of the apparatus can be greatly improved.

また、請求項3の発明によれば、ストッパは、外辺の他端部に形成され、先端側が内辺から離間する方向に傾斜した傾斜部と、内辺の他端部に形成され、外辺側に湾曲して先端が第1の係合部となる湾曲部とを有し、傾斜部が突出部の乗り上げ部に乗り上げる方向にストッパが移動された場合、湾曲部が高突出部の外管一端側の壁の内面に当接しながら当該高突出部内側に進入し、第1の係合部が凹陥部より離脱すると共に、高突出部の外管一端側の壁とストッパの傾斜部は、当該傾斜部の先端に向かう程、相互に離間するので、外辺と内辺とを近接させようとするストッパの弾性力により、ストッパは傾斜部が乗り上げ部から降下し、且つ、湾曲部が高突出部内側から外管一端側に離脱する方向に自動的に移動させることができる。これにより、ストッパを外管に取り付けた状態で、当該ストッパの内辺先端の係合部を内管の凹陥部に確実に係合させることができるので、外管内に内管を差し込むだけで、ストッパは確実に抜け止め機能を奏するようになる。   According to the invention of claim 3, the stopper is formed at the other end portion of the outer side, and is formed at the inclined portion whose tip side is inclined in the direction away from the inner side and the other end portion of the inner side, When the stopper is moved in the direction in which the inclined part rides on the riding part of the protruding part, the curved part is outside the high protruding part. While coming into contact with the inner surface of the wall on the one end side of the tube, the inside of the high projecting portion enters, the first engaging portion is detached from the recessed portion, and the wall on the one end side of the outer tube of the high projecting portion and the inclined portion of the stopper As the tip of the inclined portion is further away from each other, the stopper is lowered from the riding portion by the elastic force of the stopper that attempts to bring the outer side and the inner side closer, and the curved portion is It can be automatically moved in the direction of detaching from the inner side of the high protrusion to the one end side of the outer tube. Thereby, in a state where the stopper is attached to the outer tube, the engaging portion of the inner side tip of the stopper can be reliably engaged with the recessed portion of the inner tube, so just by inserting the inner tube into the outer tube, The stopper surely functions to prevent it from coming off.

特に、ストッパの傾斜部は、当該傾斜部の先端に向かう程、相互に離間するようにしているので、ストッパの湾曲部が外管の他端方向で止まってしまうのを防止し、外管の一端方向に位置させておくことができると共に、第1の係合部を常時凹陥部に係合させておくことが可能となる。これにより、第1の係合部が内管の凹陥部に係合しない、或いは、第1の係合部が内管の凹陥部から離脱してしまうのを未然に防止することが可能となる。従って、外管内に挿入した内管が抜けてしまうなどといった不都合を確実に防止することができる。   In particular, since the inclined portions of the stopper are separated from each other toward the tip of the inclined portion, it is possible to prevent the curved portion of the stopper from stopping in the other end direction of the outer tube. While being able to position in one end direction, it becomes possible to always make the 1st engaging part engage with a recessed part. As a result, it is possible to prevent the first engaging portion from engaging with the recessed portion of the inner tube or the first engaging portion from being detached from the recessed portion of the inner tube. . Therefore, it is possible to reliably prevent inconveniences such as the inner tube inserted into the outer tube coming out.

また、請求項4の発明によれば、突出部の突出部側係合部は、低突出部に凹陥形成された係合凹部であり、ストッパの第2の係合部は、内辺に形成された透孔であって、外管より内管を引き抜く方向に当該内管が移動した場合、突出部の係合凹部がストッパの透孔内に進入して係合するので、係合凹部と透孔間のストッパ寸法を極めて短寸法にすることができる。これにより、外管より内管を引き抜く方向のストッパの強度を大幅に向上させることができる。従って、ストッパが変形して、外管内に挿入した内管が抜けてしまうなどといった不都合を確実に防止することができる。   According to the invention of claim 4, the protrusion-side engagement portion of the protrusion is an engagement recess formed in the low protrusion, and the second engagement portion of the stopper is formed on the inner side. When the inner tube moves in a direction in which the inner tube is pulled out from the outer tube, the engaging recess of the protruding portion enters and engages with the stopper through-hole. The stopper dimension between the through holes can be made extremely short. Thereby, the intensity | strength of the stopper of the direction which pulls out an inner pipe | tube from an outer pipe | tube can be improved significantly. Therefore, inconveniences such as the stopper being deformed and the inner tube inserted into the outer tube coming out can be reliably prevented.

また、請求項5の発明によれば、ストッパは、外辺の他端部に形成され、先端側が内辺から離間する方向に傾斜した傾斜部と、該傾斜部の屈曲部側の外辺に形成され、内辺側に突出する突部とを有するので、突部が突出部の乗り上げ部に乗り上げる方向にストッパが移動された場合、ストッパの内辺と外辺との離間距離を大きくすることが可能となる。これにより、離間した内辺と外辺とが狭まる付勢力を更に大きくすることができる。従って、ストッパの湾曲部が外管の他端方向で停止してしまうのを未然に阻止して、外管の一端方向に確実に位置させておくことができるので、第1の係合部が内管の凹陥部に係合しない、或いは、第1の係合部が内管の凹陥部から離脱してしまうのを未然に防止し、外管内に挿入した内管が抜けてしまうなどといった不都合を確実に防止することができる。   According to the invention of claim 5, the stopper is formed at the other end portion of the outer side, and the tip side is inclined in a direction away from the inner side, and the outer side of the inclined portion on the bent portion side. Since the protrusion is formed and protrudes toward the inner side, when the stopper is moved in the direction in which the protrusion rides on the riding part of the protrusion, the distance between the inner side and the outer side of the stopper should be increased. Is possible. Thereby, the urging | biasing force which the inner side and outer side which were spaced apart narrow can be enlarged further. Accordingly, it is possible to prevent the curved portion of the stopper from stopping in the direction of the other end of the outer tube, and to be surely positioned in the direction of the one end of the outer tube. Inconvenient in that it does not engage with the recessed portion of the inner tube, or prevents the first engaging portion from detaching from the recessed portion of the inner tube, and the inner tube inserted into the outer tube falls out. Can be reliably prevented.

また、請求項6の発明によれば、ストッパは、内辺の他端部に形成され、外辺側に湾曲して先端が第1の係合部となる湾曲部を有し、ストッパの透孔は湾曲部の屈曲部側の面まで延在しており、該透孔両側に位置する湾曲部の外辺とは反対側の面には、補強リブが形成されているので、湾曲部の変形応力を大幅に向上させることができる。これにより、内管と外管とに引き抜き方向の力が加わった場合に、ストッパの湾曲部が変形してしまうなどと言った不都合を防止することが可能となる。従って、ストッパにて外管内に挿入した内管が抜けてしまうのを確実に防止することができる。   According to the invention of claim 6, the stopper is formed at the other end portion of the inner side, has a curved portion that is curved toward the outer side and has a distal end serving as the first engaging portion. The hole extends to the surface of the bending portion on the bent portion side, and reinforcing ribs are formed on the surface opposite to the outer side of the bending portion located on both sides of the through hole. Deformation stress can be greatly improved. As a result, it is possible to prevent the inconvenience that the curved portion of the stopper is deformed when a force in the pulling direction is applied to the inner tube and the outer tube. Accordingly, it is possible to reliably prevent the inner tube inserted into the outer tube from being pulled out by the stopper.

また、請求項7の発明によれば、ストッパの屈曲部は湾曲していると共に、外管の挿入孔下縁には、当該外管の半径方向外側に突出する断面円弧状の案内部が形成され、外辺の他端が突出部の乗り上げ部に乗り上げる方向にストッパが移動された場合、当該ストッパの屈曲部が案内部の外管一端側とは反対側の湾曲面に対応するので、この湾曲面と屈曲部の湾曲形状を利用して、ストッパの外辺の他端を突出部の乗り上げ部に乗り上げる方向に移動させれば、そのままストッパの屈曲部を内管側に円滑に押し込むことができる。これにより、内辺の他端に構成された第1の係合部は、より内管から離間する方向に移動することになるので、より確実且つ容易に第1の係合部を凹陥部から高突出部内に離脱させることができる。   According to the invention of claim 7, the bent portion of the stopper is curved, and a guide portion having an arcuate cross section protruding outward in the radial direction of the outer tube is formed at the lower edge of the insertion hole of the outer tube. When the stopper is moved in a direction in which the other end of the outer side rides on the riding part of the protruding part, the bent part of the stopper corresponds to the curved surface on the opposite side to the one end side of the outer pipe of the guide part. By using the curved surface and the curved shape of the bent part, if the other end of the outer side of the stopper is moved in the direction to ride on the riding part of the protruding part, the bent part of the stopper can be smoothly pushed into the inner tube as it is. it can. As a result, the first engaging portion configured at the other end of the inner side moves in a direction further away from the inner tube, so that the first engaging portion can be more reliably and easily removed from the recessed portion. It can be separated into the high protrusion.

また、請求項8の発明によれば、突出部は、外管と一体に突出形成されていると共に、凹陥部は内管の全周に渡って連続して形成されているので、ストッパが内管周囲のどの位置でも内管と外管との抜け止め機能を奏することが可能となる。従って、配管の抜け止め装置の利便性を極めて向上させることができるようになる。   Further, according to the invention of claim 8, since the projecting portion is formed integrally with the outer tube and the recessed portion is formed continuously over the entire circumference of the inner tube, the stopper is It is possible to perform a function of preventing the inner tube and the outer tube from coming off at any position around the tube. Therefore, the convenience of the piping retaining device can be greatly improved.

本発明は、ストッパが変形して、抜け止め装置の役割を果たさない場合に、溶接固定をしなくても簡単にストッパの着脱を行えることを最も主要な特徴とする。溶接固定をしなくても簡単にストッパの着脱を行えるという目的を、外辺の他端部に形成され、先端側が内辺から離間する方向に傾斜した傾斜部と、内辺の他端部に形成され、外辺側に湾曲して先端が係合部となる湾曲部とを備えたストッパにより実現した。   The main feature of the present invention is that when the stopper is deformed and does not serve as a retaining device, the stopper can be easily attached and detached without welding. For the purpose of easily attaching and detaching the stopper without fixing by welding, it is formed on the other end part of the outer side, and the tip part is inclined to the direction away from the inner side and the other end part of the inner side. This was realized by a stopper provided with a curved portion that was formed and curved toward the outer side and the tip became an engaging portion.

次に、図面に基づき本発明の実施の形態を詳述する。図1は本発明の一実施例を示す配管の抜け止め装置10を備えた配管(外管12内に内管30が挿入される状態を示す)の斜視図、図2は外管12に形成した突出部14へストッパ40を挿入する状態を示す外管12の斜視図、図3は本発明の配管の抜け止め装置10を構成するストッパ40の正面図をそれぞれ示している。   Next, embodiments of the present invention will be described in detail with reference to the drawings. FIG. 1 is a perspective view of a pipe (showing a state where the inner pipe 30 is inserted into the outer pipe 12) provided with a pipe retaining device 10 according to an embodiment of the present invention, and FIG. The perspective view of the outer tube | pipe 12 which shows the state which inserts the stopper 40 in the protruding part 14 which was done, FIG. 3 has each shown the front view of the stopper 40 which comprises the removal prevention apparatus 10 of the piping of this invention.

本実施形態における配管の抜け止め装置10は、暖房用及び給湯用機器としてガスや化石燃料を用いた機器に接続される配管(内管30と外管12)が接続部で抜け落ちてしまうのを防止するためのもので、図1に示すように、突出部14を備えた外管12内に、凹陥部32を備えた内管30が挿入され、突出部14と凹陥部32とがストッパ40で係合されて抜け落ちないように構成している。   The piping retaining device 10 according to the present embodiment prevents the piping (the inner tube 30 and the outer tube 12) connected to a device using gas or fossil fuel as a heating or hot water supply device from falling off at the connecting portion. As shown in FIG. 1, the inner tube 30 having the recessed portion 32 is inserted into the outer tube 12 having the protruding portion 14, and the protruding portion 14 and the recessed portion 32 are connected to the stopper 40. It is configured so that it does not fall off when engaged.

該配管の抜け止め装置10は、外管12と一体に突出形成されている突出部14と、内管30と一体に凹陥形成された凹陥部32と、外管12内に挿入された内管30が抜けないように、外管12に形成した突出部14と内管30に形成した凹陥部32とに係合されるストッパ40とから構成されている。該外管12は、図2に示すように一端近傍に突出部14を備えており、この突出部14は外管12の半径方向外側に突出形成され、凹陥部32は内管30の半径方向内側に凹陥形成されている。この外管12及び内管30は、板厚約0.3mmのステンレス製の金属板にて円筒形に形成されている。尚、ストッパ40については後に詳しく説明する。   The pipe retaining device 10 includes a protruding portion 14 that is formed integrally with the outer tube 12, a recessed portion 32 that is formed integrally with the inner tube 30, and an inner tube that is inserted into the outer tube 12. The stopper 40 is configured to be engaged with the protruding portion 14 formed on the outer tube 12 and the recessed portion 32 formed on the inner tube 30 so as not to come off. As shown in FIG. 2, the outer tube 12 includes a protruding portion 14 in the vicinity of one end. The protruding portion 14 is formed to protrude outward in the radial direction of the outer tube 12, and the recessed portion 32 is formed in the radial direction of the inner tube 30. A recess is formed on the inside. The outer tube 12 and the inner tube 30 are formed in a cylindrical shape with a stainless steel metal plate having a thickness of about 0.3 mm. The stopper 40 will be described in detail later.

該突出部14は、低突出部16と高突出部24とか構成されており、低突出部16は幅約10.2mm(外管12の円周方向寸法)、高さ約1.0mm(突出寸法)、長さ約10.2mm(外管12の長手方向寸法)に形成されており、この低突出部16の一端側(外管12の内管30が挿入される側)の側面が開口して挿入孔18が形成されている。高突出部24は低突出部16に連続して突出形成されると共に、この高突出部24は、外管12の一端側とは反対側に形成され、低突出部16より約2倍の高さに突出形成されている。尚、挿入孔18は、低突出部16同様の幅約10.2mm、高さは低突出部16と同様の約1.0mmに形成されている。   The protrusion 14 includes a low protrusion 16 and a high protrusion 24. The low protrusion 16 has a width of about 10.2 mm (dimension in the circumferential direction of the outer tube 12) and a height of about 1.0 mm (protrusion). Dimension) and a length of about 10.2 mm (longitudinal dimension of the outer tube 12), and the side surface of one end side (the side where the inner tube 30 of the outer tube 12 is inserted) of the low protrusion 16 is open. Thus, an insertion hole 18 is formed. The high protrusion 24 is formed so as to protrude continuously from the low protrusion 16, and the high protrusion 24 is formed on the side opposite to one end side of the outer tube 12, and is approximately twice as high as the low protrusion 16. It is formed to protrude. The insertion hole 18 has a width of about 10.2 mm, which is the same as that of the low protrusion 16, and a height of about 1.0 mm, which is the same as that of the low protrusion 16.

低突出部16の上面には、当該低突出部16の内外を貫通する係合孔20(本発明の突出部側係合部に相当)が形成されており、この係合孔20の高突出部24側に位置して低突出部16より高く突出する乗り上げ部22が形成されている。係合孔20は、低突出部16の一端側と他端側(外管12の一端側方向と他端側方向)との略中心から乗り上げ部22まで形成されると共に、乗り上げ部22は、高突出部24と同等高さに形成されている。また、係合孔20と乗り上げ部22は、幅約3mmに形成され、低突出部16の幅方向(外管12の円周方向)略中心に位置して形成されている。   An engaging hole 20 (corresponding to the protruding portion side engaging portion of the present invention) penetrating the inside and outside of the low protruding portion 16 is formed on the upper surface of the low protruding portion 16. A ride-up portion 22 that is located on the side of the portion 24 and protrudes higher than the low protrusion portion 16 is formed. The engagement hole 20 is formed from the approximate center of one end side and the other end side (one end side direction and the other end side direction of the outer tube 12) of the low projecting portion 16 to the riding portion 22, and the riding portion 22 is It is formed at the same height as the high protrusion 24. Further, the engagement hole 20 and the riding-up portion 22 are formed to have a width of about 3 mm, and are formed at the approximate center of the width direction of the low protrusion 16 (circumferential direction of the outer tube 12).

また、高突出部24の低突出部16側には、傾斜壁26(図6に図示)が形成されており、この傾斜壁26は、乗り上げ部22の両側に形成されると共に、高突出部24の長手方向略中心から外管12の一端方向に行くに従って外管12の径中心方向に傾斜している。即ち、傾斜壁26は、高突出部24の最も突出している箇所から低突出部16間に形成されている。該高突出部24の低突出部16と反対側も、傾斜壁26同様低突出部16側から離間するに従って外管12の径中心方向に傾斜している。そして、この高突出部24は、当該高突出部24内にストッパ40の湾曲部56が位置して収まるように構成している。尚、28は、Oリング挿入突部で、このOリング挿入突部28に図示しないOリングが挿入され、このOリングによって外管12と内管30との隙間が閉塞される。   In addition, an inclined wall 26 (shown in FIG. 6) is formed on the low protruding portion 16 side of the high protruding portion 24, and the inclined wall 26 is formed on both sides of the riding portion 22, and the high protruding portion. The diameter of the outer tube 12 is inclined in the direction of the radial center from the substantially longitudinal center of 24 toward the one end of the outer tube 12. In other words, the inclined wall 26 is formed between the most protruding portion of the high protruding portion 24 and the low protruding portion 16. The side opposite to the low protrusion 16 of the high protrusion 24 is also inclined in the radial center direction of the outer tube 12 as it is separated from the low protrusion 16 side like the inclined wall 26. And this high protrusion part 24 is comprised so that the curved part 56 of the stopper 40 may be located in the said high protrusion part 24, and may be settled. Reference numeral 28 denotes an O-ring insertion protrusion, and an O-ring (not shown) is inserted into the O-ring insertion protrusion 28, and the gap between the outer tube 12 and the inner tube 30 is closed by the O-ring.

また、内管30には、当該内管30の半径方向内側に所定寸法陥没する凹陥部32が形成されており、この内管30の凹陥部32は当該内管30が外管12内に挿入される側の端部(内管30の他端)近傍の周囲全体に形成されている。この凹陥部32には、内管30の他端側に後述するストッパ40の係合部58が当接する係合壁34を備えている。詳しくは、凹陥部32の係合壁34は、内管30の他端近傍側に位置して当該内管30の長手方向に直交して形成されると共に、内管30の径中心方向に向かって形成されている。これにより、係合壁34に当接したストッパ40の係合部58が凹陥部32より離脱しないように構成されている。   Further, the inner tube 30 is formed with a recessed portion 32 that is recessed in a predetermined dimension radially inward of the inner tube 30, and the recessed portion 32 of the inner tube 30 is inserted into the outer tube 12 by the inner tube 30. It is formed in the whole circumference | surroundings near the edge part (other end of the inner pipe | tube 30) of the side to be done. The recessed portion 32 is provided with an engaging wall 34 against which an engaging portion 58 of a stopper 40 to be described later comes into contact with the other end side of the inner tube 30. Specifically, the engagement wall 34 of the recessed portion 32 is formed near the other end of the inner tube 30 and perpendicular to the longitudinal direction of the inner tube 30, and is directed toward the radial center of the inner tube 30. Is formed. Thus, the engaging portion 58 of the stopper 40 that is in contact with the engaging wall 34 is configured not to be detached from the recessed portion 32.

また、外管12内に内管30が挿入されて、当該外管12の突出部14(高突出部24)と内管30の凹陥部32とが対応した状態で、内管30の所定位置には、外管12の一端部が当接する位置決め突部36が半径方向外側に突出形成されている。即ち、外管12内に内管30が挿入されるとき、外管12の一端を内管30の位置決め突部36に当接させるだけで、外管12の高突出部24と内管30の凹陥部32とを対応させられるように構成している。これにより、外管12の高突出部24と内管30の凹陥部32との位置合わせが容易に行えるように構成している。   Further, the inner tube 30 is inserted into the outer tube 12, and the predetermined position of the inner tube 30 with the protruding portion 14 (high protruding portion 24) of the outer tube 12 and the recessed portion 32 of the inner tube 30 corresponding to each other. In addition, a positioning projection 36 with which one end of the outer tube 12 abuts is formed to project outward in the radial direction. That is, when the inner tube 30 is inserted into the outer tube 12, only the one end of the outer tube 12 is brought into contact with the positioning protrusion 36 of the inner tube 30. The concave portion 32 is configured to correspond to the concave portion 32. Thereby, the high protrusion part 24 of the outer tube | pipe 12 and the recessed part 32 of the inner tube | pipe 30 can be easily aligned.

一方、前記外管12の突出部14に対応してストッパ40(湾曲部56)が位置するように設けられており、このストッパ40は弾性を有し、熱に強く、錆び難い部材(例えば、板厚約0.4mmのステンレス、或いは、リン青銅などのバネ材)にて構成されている。即ち、ストッパ40が変形しないように内管30及び外管12よりも強度が強い金属板にて構成されている。該ストッパ40は、図3に示すように幅約10mmに形成されると共に、長さ約13.5mmの外辺42と、この外辺42の一端より連続して折り返された長さ約16.6mmの内辺52とから構成されている。該外辺42と内辺52は、ストッパ40の一端側に位置し、湾曲した屈曲部62の両側に連続して一体に形成されると共に、屈曲部62によって側面ヘアピン形状に形成されている。この場合、屈曲部62から延在し、前記突出部14の挿入孔18内に挿入される一方の辺を内辺52、他方の辺を外辺42と称す。   On the other hand, a stopper 40 (curved portion 56) is provided corresponding to the protruding portion 14 of the outer tube 12, and this stopper 40 has elasticity, is resistant to heat, and is not easily rusted (for example, Stainless steel having a plate thickness of about 0.4 mm or a spring material such as phosphor bronze). In other words, the stopper 40 is made of a metal plate that is stronger than the inner tube 30 and the outer tube 12 so as not to be deformed. As shown in FIG. 3, the stopper 40 is formed to have a width of about 10 mm, an outer side 42 having a length of about 13.5 mm, and a length of about 16. The inner side 52 of 6 mm is comprised. The outer side 42 and the inner side 52 are located on one end side of the stopper 40, are formed continuously and integrally on both sides of the bent portion 62, and are formed in a side hairpin shape by the bent portion 62. In this case, one side extending from the bent portion 62 and inserted into the insertion hole 18 of the projecting portion 14 is referred to as an inner side 52, and the other side is referred to as an outer side 42.

外辺42は、図4に示すように外辺本体44と、この外辺本体44の他端部に形成された傾斜部46と係合辺48(本発明の第2の係合部に相当)とを備えている。傾斜部46は、外辺本体44の先端側が内辺52から離間する方向に折れ曲がって傾斜した形状に形成されると共に、係合辺48は、傾斜部46に連続して係合孔20一端側(挿入孔18側)の低突出部16に係合可能に構成されている。尚、ストッパ40の屈曲部62側を一側、傾斜部46及び湾曲部56側を他側と称す。   As shown in FIG. 4, the outer side 42 includes an outer side main body 44, an inclined portion 46 formed at the other end of the outer side main body 44, and an engaging side 48 (corresponding to a second engaging portion of the present invention). ). The inclined portion 46 is formed in a shape in which the distal end side of the outer side main body 44 is bent and inclined in a direction away from the inner side 52, and the engaging side 48 is connected to the inclined portion 46 at one end side of the engaging hole 20. It is configured to be able to engage with the low protrusion 16 on the (insertion hole 18 side). The bent portion 62 side of the stopper 40 is referred to as one side, and the inclined portion 46 and the curved portion 56 side are referred to as the other side.

該係合辺48は、外辺本体44の幅方向略中央に位置して長さ約1.9mm、幅約2.5mmに形成されている。詳しくは、係合辺48は、外辺本体44の一部が打ち抜かれて、先端は内辺52側に延在すると共に、基部は傾斜部46と一体に接続されて前記傾斜部46と略一直線状態に形成されている。この傾斜部46と、前記高突出部24の低突出部16側に形成された傾斜壁26とは、Oリング挿入突部28方向に行くに従って拡開している(図9)。尚、Oリング挿入突部28方向に行くに従って傾斜部46と傾斜壁26とを拡開させている理由は後に詳しく説明する。   The engagement side 48 is located approximately in the center of the outer side main body 44 in the width direction and is formed with a length of about 1.9 mm and a width of about 2.5 mm. More specifically, the engaging side 48 is formed by punching a part of the outer side main body 44, the tip extends toward the inner side 52, and the base is integrally connected to the inclined part 46 so as to be substantially the same as the inclined part 46. It is formed in a straight line state. The inclined portion 46 and the inclined wall 26 formed on the low protruding portion 16 side of the high protruding portion 24 are expanded toward the O-ring insertion protruding portion 28 (FIG. 9). The reason why the inclined portion 46 and the inclined wall 26 are expanded in the direction of the O-ring insertion protrusion 28 will be described in detail later.

また、内辺52は、内辺本体54と、この内辺本体54の他端部に形成された湾曲部56と、内辺本体54に形成された透孔60(図5のみ図示)とを備えている(図4、図5)。湾曲部56は、内辺本体54の他端部が外辺42の傾斜部46方向に湾曲突出し、先端は傾斜部46から離間する方向に延在することにより形成されている。この湾曲部56の先端に係合部58(本発明の第1の係合部に相当)を形成している。尚、透孔60は、係合辺48の下端(外辺42側)を逃がすためのものである。   The inner side 52 includes an inner side main body 54, a curved portion 56 formed at the other end of the inner side main body 54, and a through hole 60 (only shown in FIG. 5) formed in the inner side main body 54. (Figs. 4 and 5). The bending portion 56 is formed by the other end portion of the inner side main body 54 protruding in the direction of the inclined portion 46 of the outer side 42 and the tip extending in a direction away from the inclined portion 46. An engaging portion 58 (corresponding to the first engaging portion of the present invention) is formed at the tip of the curved portion 56. The through hole 60 is for releasing the lower end (outer side 42 side) of the engaging side 48.

該係合部58は、内辺本体54よりも所定寸法下方に延在(この場合、内辺52を基準にして外辺42から離間方向に約1.8mm延在)している。内辺52と外辺42は平行、若しくは、ストッパ40の一端側(屈曲部62側)に対して他端側(傾斜部46及び傾斜部46側)が狭い形状(図4に点線で図示)に形成されている。そして、内辺52と外辺42の他端側が離間されると、当該内辺52と外辺42の他端側が近接する方向に弾性力が働くように構成されている。この係合部58は、前述した如き前記内管30に形成した凹陥部32内に係合されるものである。   The engaging portion 58 extends below a predetermined dimension from the inner side main body 54 (in this case, extends about 1.8 mm away from the outer side 42 with respect to the inner side 52). The inner side 52 and the outer side 42 are parallel, or the other end side (the inclined portion 46 and the inclined portion 46 side) is narrower than the one end side (the bent portion 62 side) of the stopper 40 (illustrated by a dotted line in FIG. 4). Is formed. And when the other end side of the inner side 52 and the outer side 42 is separated, the elastic force acts in the direction in which the other end side of the inner side 52 and the outer side 42 approaches. The engaging portion 58 is engaged in the recessed portion 32 formed in the inner tube 30 as described above.

次に、本実施例における配管の抜け止め装置10を用いた配管(内管30と外管12)の接続と引き抜きを図1、図2、図6、図7を参照して説明する。先ず、ストッパ40を外管12に挿着する。この場合ストッパ40の取り付け方は、図2に矢印で示すように外管12の低突出部16一端側側面に形成した挿入孔18内に、係合部58を挿入し、つづいて湾曲部56、内辺本体54を挿入して、外管12の突出部14にストッパ40を挿着する(図1、図6)。この状態で、外辺42の係合辺48は、低突出部16を乗り越え、係合孔20内に挿入される。   Next, connection and extraction of piping (the inner tube 30 and the outer tube 12) using the piping retaining device 10 in the present embodiment will be described with reference to FIGS. 1, 2, 6, and 7. FIG. First, the stopper 40 is inserted into the outer tube 12. In this case, the stopper 40 is attached by inserting the engaging portion 58 into the insertion hole 18 formed in the side surface of the one end side of the low projecting portion 16 of the outer tube 12 as indicated by an arrow in FIG. Then, the inner side main body 54 is inserted, and the stopper 40 is inserted into the protruding portion 14 of the outer tube 12 (FIGS. 1 and 6). In this state, the engagement side 48 of the outer side 42 gets over the low protrusion 16 and is inserted into the engagement hole 20.

次に、図1に矢印で示すように、内管30の他端側を外管12の一端より、当該外管12内に挿入すると共に、内管30に設けた位置決め突部36に外管12の一端を当接させる。この状態で、前述した如き外管12に形成した突出部14と、内管30に形成した凹陥部32とが対応した状態となって、ストッパ40の係合部58が、内管30に形成した凹陥部32内に入り込み、外管12と内管30とが接続部(外管12の一端部と内管30の他端部)で接続される(図6)。これにより、外辺本体44の略全体が外管12に当接した状態となり、内辺52の湾曲部56が傾斜部46に接触した状態となる。即ち、ストッパ40は、外管12の板厚を挟むように弾性作用が働く(傾斜部46及び湾曲部56にて突出部14の乗り上げ部22と、傾斜壁26に弾性力が働く)ように構成されている(図7)。   Next, as shown by an arrow in FIG. 1, the other end of the inner tube 30 is inserted into the outer tube 12 from one end of the outer tube 12, and the outer tube is inserted into the positioning projection 36 provided on the inner tube 30. One end of 12 is brought into contact. In this state, the protrusion 14 formed on the outer tube 12 as described above and the recessed portion 32 formed on the inner tube 30 correspond to each other, and the engaging portion 58 of the stopper 40 is formed on the inner tube 30. The outer tube 12 and the inner tube 30 are connected to each other at the connecting portion (one end portion of the outer tube 12 and the other end portion of the inner tube 30) (FIG. 6). As a result, substantially the entire outer side main body 44 is in contact with the outer tube 12, and the curved portion 56 of the inner side 52 is in contact with the inclined portion 46. That is, the stopper 40 has an elastic action so as to sandwich the thickness of the outer tube 12 (an elastic force acts on the rising portion 22 of the protruding portion 14 and the inclined wall 26 at the inclined portion 46 and the curved portion 56). It is configured (FIG. 7).

このとき、内管30には、当該内管30の周囲全体に凹陥部32を形成しており、内管30の全周囲のどの位置においても、外管12に形成した突出部14と、内管30周囲に形成した凹陥部32とを対応状態にさせることができる。これにより、内管30周囲の凹陥部32のどの位置にでも、ストッパ40の係合部58を入り込ませることができる。従って、内管30或いは外管12を回転させて、ストッパ40の係合部58を位置合わせする必要もなくなり、外管12と内管30との接続作業を極めて容易に行うことができるようになる。   At this time, the inner tube 30 is formed with a recessed portion 32 around the entire inner tube 30, and the protrusion 14 formed on the outer tube 12 and the inner tube 30 are located at any position around the inner tube 30. The recessed portion 32 formed around the tube 30 can be brought into a corresponding state. Thereby, the engaging portion 58 of the stopper 40 can be inserted into any position of the recessed portion 32 around the inner tube 30. Therefore, it is not necessary to rotate the inner tube 30 or the outer tube 12 to align the engaging portion 58 of the stopper 40, so that the connecting operation between the outer tube 12 and the inner tube 30 can be performed very easily. Become.

そして、外管12と内管30とが接続部で接続された状態で、図8に矢印で示すように、外管12と内管30とが離間する方向に移動(外管12より内管30を引き抜く方向に当該内管30が移動)させると、ストッパ40の内辺52他端の係合部58は、内管30の凹陥部32(係合壁34)に当接する。この状態で、外管12に形成した突出部14と、内管30に形成した凹陥部32とは対応状態から左右にずれる(Oリング挿入突部28と凹陥部32とが離間する方向にずれる)。これにより、ストッパ40の内辺52他端の係合部58が、内管30の凹陥部32内に係合し、外辺42の係合辺48が係合孔20内に進入して、低突出部16の係合孔20縁に係合する。即ち、ストッパ40によって外管12と内管30との引き抜きが阻止される。   Then, in a state where the outer tube 12 and the inner tube 30 are connected at the connecting portion, the outer tube 12 and the inner tube 30 move away from each other as indicated by arrows in FIG. When the inner tube 30 is moved in the direction of pulling out 30, the engaging portion 58 at the other end of the inner side 52 of the stopper 40 comes into contact with the recessed portion 32 (engaging wall 34) of the inner tube 30. In this state, the projecting portion 14 formed on the outer tube 12 and the recessed portion 32 formed on the inner tube 30 are shifted from the corresponding state to the left and right (the O-ring insertion projecting portion 28 and the recessed portion 32 are shifted in the direction of separating. ). As a result, the engaging portion 58 at the other end of the inner side 52 of the stopper 40 is engaged in the recessed portion 32 of the inner tube 30, and the engaging side 48 of the outer side 42 enters the engaging hole 20, Engage with the edge of the engagement hole 20 of the low protrusion 16. That is, the stopper 40 prevents the outer tube 12 and the inner tube 30 from being pulled out.

次に、ストッパ40の係合により外管12と内管30の引き抜きが阻止された状態から、外管12から内管30の取り外し方を図9、図10を参照して説明する。先ず、図9に示すように、内管30の位置決め突部36に外管12の一端を当接させて、外管12に形成した突出部14と、内管30に形成した凹陥部32とを対応させる。この状態で、傾斜部46と湾曲部56にて突出部14の乗り上げ部22と、傾斜壁26に弾性力が働いているストッパ40をOリング挿入突部28方向に押して移動させる。尚、内管30に位置決め突部36を設けていない場合には、目視にて外管12に形成した突出部14と、内管30に形成した凹陥部32とを対応させれば良い。   Next, how to remove the inner tube 30 from the outer tube 12 from the state where the outer tube 12 and the inner tube 30 are prevented from being pulled out by the engagement of the stopper 40 will be described with reference to FIGS. First, as shown in FIG. 9, one end of the outer tube 12 is brought into contact with the positioning protrusion 36 of the inner tube 30, and the projecting portion 14 formed on the outer tube 12 and the recessed portion 32 formed on the inner tube 30. To correspond. In this state, the sloped portion 46 and the curved portion 56 push the moving portion 22 of the projecting portion 14 and the stopper 40 whose elastic force is acting on the inclined wall 26 toward the O-ring insertion projecting portion 28 to move. When the positioning projection 36 is not provided on the inner tube 30, the protrusion 14 formed on the outer tube 12 and the recessed portion 32 formed on the inner tube 30 may be made to correspond to each other.

具体的には、ストッパ40をOリング挿入突部28方向に押して移動させて行くと、傾斜部46は乗り上げ部22に当接し、更にストッパ40をOリング挿入突部28方向に移動させて行くと、外管12(板厚)を挟むように弾性力が働いているストッパ40の傾斜部46は、乗り上げ部22に当接しながら、当該乗り上げ部22に乗り上げて行く。このとき、湾曲部56は、傾斜壁26の内面に当接(本発明の外管12一端側の壁の内面に当接に相当)しながらOリング挿入突部28方向(詳しくは、高突出部24の最も突出している方向)に移動して行く。   Specifically, when the stopper 40 is pushed and moved in the direction of the O-ring insertion protrusion 28, the inclined portion 46 comes into contact with the riding-up portion 22, and the stopper 40 is further moved in the direction of the O-ring insertion protrusion 28. Then, the inclined portion 46 of the stopper 40 that exerts an elastic force so as to sandwich the outer tube 12 (plate thickness) rides on the riding portion 22 while contacting the riding portion 22. At this time, the bending portion 56 is in contact with the inner surface of the inclined wall 26 (corresponding to contact with the inner surface of the wall on the one end side of the outer tube 12 of the present invention) and in the direction of the O-ring insertion protrusion 28 (specifically, highly protruding) The portion 24 moves in the most protruding direction.

そして、ストッパ40の屈曲部62を外管12の一端に押し付けた状態では、図10に示すように、ストッパ40の傾斜部46は乗り上げ部22に乗り上げ、湾曲部56は、ストッパ40の弾性力で傾斜壁26の最も突出している部分(高突出部24)、若しくは、高突出部24近傍に位置する。これにより、傾斜部46は、凹陥部32から外管12側に離脱して、突出部14の高突出部24内に位置して収まる。   In the state where the bent portion 62 of the stopper 40 is pressed against one end of the outer tube 12, the inclined portion 46 of the stopper 40 rides on the riding portion 22 and the bending portion 56 is elastic force of the stopper 40 as shown in FIG. 10. Therefore, it is located in the most protruding portion (high protruding portion 24) of the inclined wall 26 or in the vicinity of the high protruding portion 24. As a result, the inclined portion 46 is separated from the recessed portion 32 toward the outer tube 12 and is positioned and accommodated in the high protruding portion 24 of the protruding portion 14.

この状態で、外管12から内管30を離間させれば、ストッパ40の係合部58が内管30の凹陥部32(係合壁34)に引っ掛かることなく、引き抜くことができる。即ち、外管12内から内管30を引き抜く場合は、ストッパ40をOリング挿入突部28方向に移動して、当該ストッパ40の屈曲部62を外管12の一端に押し付けることにより、湾曲部56が高突出部24内に収納されるので、内管30の凹陥部32内からストッパ40の係合部58を容易に離脱させることができる。そして、この状態で、外管12内から内管30を離間させれば、係合部58が凹陥部32(係合壁34)に引っ掛かることなく、当該外管12内から内管30を容易に引き抜くことができる。   If the inner tube 30 is separated from the outer tube 12 in this state, the engaging portion 58 of the stopper 40 can be pulled out without being caught by the recessed portion 32 (engaging wall 34) of the inner tube 30. That is, when the inner tube 30 is pulled out from the outer tube 12, the stopper 40 is moved in the direction of the O-ring insertion protrusion 28, and the bent portion 62 of the stopper 40 is pressed against one end of the outer tube 12. Since 56 is accommodated in the high protrusion 24, the engaging portion 58 of the stopper 40 can be easily detached from the recessed portion 32 of the inner tube 30. If the inner tube 30 is separated from the outer tube 12 in this state, the inner tube 30 can be easily moved from the outer tube 12 without the engaging portion 58 being caught by the recessed portion 32 (engagement wall 34). Can be pulled out.

次に、ストッパ40の係合により外管12と内管30の引き抜きが阻止された状態では、外管12から内管30の取り外し操作を行わない限り、外管12内から内管30を引き抜くことができないという説明を図11、図12を参照して説明する。先ず、外管12内から内管30が抜けてしまう例を説明しておく。それは、傾斜部46と、高突出部24の低突出部16側に形成された傾斜壁26が、Oリング挿入突部28方向に行くに従って拡開せずに平行の場合である。   Next, in a state where the outer tube 12 and the inner tube 30 are prevented from being pulled out by the engagement of the stopper 40, the inner tube 30 is pulled out from the outer tube 12 unless the inner tube 30 is removed from the outer tube 12. The explanation that it is not possible will be described with reference to FIGS. First, an example in which the inner tube 30 comes off from the outer tube 12 will be described. This is a case where the inclined portion 46 and the inclined wall 26 formed on the low protruding portion 16 side of the high protruding portion 24 are parallel without expanding toward the O-ring insertion protruding portion 28.

即ち、内辺本体54と外辺本体44が平行な状態(図7矢印A間とB間)で、ストッパ40の係合部58が内管30の凹陥部32内に入り込んでいる場合、ストッパ40の係合部58が外管12の突出部14内(高突出部24内)に位置した状態においては、ストッパ40全体は、湾曲部56側が高突出部24内に入り外管12の半径方向外側に傾く(図11)ものの、内辺52と外辺42は平行状態である。また、湾曲部56が傾斜壁26に当接している状態で、ストッパ40がOリング挿入突部28方向に移動した場合でも、ストッパ40の係合部58が内管30の凹陥部32より離脱しても内辺52と外辺42は平行状態のままとなる。この場合、ストッパ40の他側(Oリング挿入突部28方向)は拡開していないので、当該ストッパ40には低突出部16方向へ復帰させる弾性力が働かず、ストッパ40の係合部58が内管30の凹陥部32内から離脱したままとなって、外管12内から内管30が抜けてしまう。   That is, when the inner side main body 54 and the outer side main body 44 are parallel (between arrows A and B in FIG. 7) and the engaging portion 58 of the stopper 40 enters the recessed portion 32 of the inner tube 30, the stopper In the state where the 40 engaging portions 58 are located in the protruding portion 14 (in the high protruding portion 24) of the outer tube 12, the entire stopper 40 enters the high protruding portion 24 on the curved portion 56 side, and the radius of the outer tube 12. Although tilted outward (FIG. 11), the inner side 52 and the outer side 42 are in a parallel state. Further, even when the stopper 40 moves in the direction of the O-ring insertion protrusion 28 with the curved portion 56 in contact with the inclined wall 26, the engaging portion 58 of the stopper 40 is detached from the recessed portion 32 of the inner tube 30. Even so, the inner side 52 and the outer side 42 remain parallel. In this case, since the other side of the stopper 40 (in the direction of the O-ring insertion protrusion 28) is not widened, the stopper 40 does not receive an elastic force for returning in the direction of the low protrusion 16 and the engaging portion of the stopper 40 58 remains detached from the inside of the recessed portion 32 of the inner tube 30, and the inner tube 30 comes out of the outer tube 12.

このように、傾斜壁26と傾斜部46とが平行な場合、ストッパ40の係合部58が内管30の凹陥部32内から離脱している状態で、ストッパ40が外管12(突出部14)に挿着されてしまった場合、ストッパ40には低突出部16方向へ復帰させる弾性力が働かずに、外管12から内管30が抜けてしまう不都合が発生してしまう。また、何らかの外力が加わり、ストッパ40が動いて、当該ストッパ40の係合部58が内管30の凹陥部32内から離脱した状態になった場合でも、ストッパ40には低突出部16方向へ復帰させる弾性力が働かず、係合部58は内管30の凹陥部32内に戻らないので、同様に外管12から内管30が抜けてしまう不都合が発生してしまう。   As described above, when the inclined wall 26 and the inclined portion 46 are parallel, the stopper 40 is in the state in which the engaging portion 58 of the stopper 40 is detached from the recessed portion 32 of the inner tube 30. 14), the stopper 40 does not have an elastic force for returning to the low protruding portion 16 direction, so that the inner tube 30 may be removed from the outer tube 12. Even when some external force is applied and the stopper 40 moves and the engaging portion 58 of the stopper 40 is disengaged from the recessed portion 32 of the inner tube 30, the stopper 40 moves toward the low protruding portion 16. Since the elastic force to be restored does not work and the engaging portion 58 does not return into the recessed portion 32 of the inner tube 30, the inconvenience that the inner tube 30 comes out from the outer tube 12 similarly occurs.

そこで、本発明では、前述した如き傾斜部46と傾斜壁26は、リング挿入突部28側に行くに従って拡開するように構成している(図9)。この場合、図12に示すようにストッパ40がOリング挿入突部28方向に移動し、湾曲部56が高突出部24内に位置して、ストッパ40の係合部58が内管30の凹陥部32より離脱した場合は、ストッパ40の他側(傾斜部46と凹陥部32)は、乗り上げ部22と傾斜壁26とによって拡開し、湾曲部56を低突出部16方向へ復帰させる弾性力が働く。これにより、拡開しているストッパ40の湾曲部56は、傾斜壁26によって高突出部24側から低突出部16方向に移動する弾性力が働く。従って、ストッパ40の係合部58を、内管30の凹陥部32から離脱した状態より、内管30の凹陥部32内に復帰させる、若しくは、復帰し易くさせることができる。   Therefore, in the present invention, the inclined portion 46 and the inclined wall 26 as described above are configured to expand toward the ring insertion protrusion 28 (FIG. 9). In this case, as shown in FIG. 12, the stopper 40 moves in the direction of the O-ring insertion protrusion 28, the bending portion 56 is positioned in the high protrusion 24, and the engaging portion 58 of the stopper 40 is recessed in the inner tube 30. When separated from the portion 32, the other side of the stopper 40 (the inclined portion 46 and the recessed portion 32) is expanded by the riding portion 22 and the inclined wall 26, and the elasticity that returns the curved portion 56 toward the low protruding portion 16. Power works. As a result, the curved portion 56 of the stopper 40 that is widened is subjected to an elastic force that moves in the direction of the low protrusion 16 from the high protrusion 24 by the inclined wall 26. Therefore, the engaging portion 58 of the stopper 40 can be returned into the recessed portion 32 of the inner tube 30 or easily returned from the state where the engaging portion 58 is detached from the recessed portion 32 of the inner tube 30.

即ち、ストッパ40がOリング挿入突部28方向に移動して、傾斜部46が突出部14の乗り上げ部22に乗り上げた場合、ストッパ40は他側が拡開される(傾斜部46と湾曲部56とが離間する)ので、拡開したストッパ40は狭まる方向の弾性力が増大して、Oリング挿入突部28方向に移動する負荷が大きくなる。また、突出部14の乗り上げ部22に乗り上げたストッパ40の傾斜部46を、乗り上げ部22から降りる方向(外管12の一端側)にストッパ40を移動させた場合、当該ストッパ40の傾斜部46と湾曲部56は狭まるので、ストッパ40をOリング挿入突部28から離間させる方向へ負荷は小さくなる。   That is, when the stopper 40 moves in the direction of the O-ring insertion protrusion 28 and the inclined portion 46 rides on the riding portion 22 of the protruding portion 14, the stopper 40 is expanded on the other side (the inclined portion 46 and the curved portion 56). Therefore, the elastic force in the narrowing direction of the expanded stopper 40 increases, and the load that moves in the direction of the O-ring insertion protrusion 28 increases. Further, when the stopper 40 is moved in a direction (one end side of the outer tube 12) that descends from the riding portion 22 on the inclined portion 46 that rides on the riding portion 22 of the protruding portion 14, the inclined portion 46 of the stopper 40. Since the bending portion 56 is narrowed, the load is reduced in the direction in which the stopper 40 is separated from the O-ring insertion protrusion 28.

これにより、湾曲部56を常時低突出部16側に位置させておくことができるようになるので、ストッパ40の内辺52他端の係合部58が、内管30の凹陥部32から離脱してしまうといった不都合を未然に防止することができる。従って、ストッパ40の弾性力により、係合部58を常時内管30の凹陥部32内に位置させておくことができるので、外管12内に挿入した内管30が抜けてしまうなどといった不都合を確実に防止することができる。   As a result, the curved portion 56 can always be positioned on the low protruding portion 16 side, so that the engaging portion 58 at the other end of the inner side 52 of the stopper 40 is detached from the recessed portion 32 of the inner tube 30. Inconveniences such as this can be prevented in advance. Therefore, the engaging portion 58 can always be positioned in the recessed portion 32 of the inner tube 30 due to the elastic force of the stopper 40, so that the inner tube 30 inserted into the outer tube 12 comes off. Can be reliably prevented.

他方、ストッパ40が変形して抜け止め装置の役割を果たさない場合、外管12から内管30を引き抜いた状態で、傾斜部46を手で持ち上げ、低突出部16に形成した係合孔20から係合辺48を離脱させ、そのままストッパ40を外管12の一端方向に移動させる。これにより、突出部14からストッパ40を外すことができる。後は、前述した如き外管12の低突出部16に形成した挿入孔18内に、変形せずに配管の抜け止めに不具合のない新たなストッパ40の係合部58から挿入し、つづいて湾曲部56も挿入して、外管12の突出部14に位置させれば、ストッパ40を突出部14に取り付けることができる。これにより、従来のように、溶接によりカバーを外す手間を省くことができ、極めて容易にストッパ40の着脱を行うことができる。   On the other hand, when the stopper 40 is deformed and does not serve as a retaining device, the inclined portion 46 is lifted by hand while the inner tube 30 is pulled out from the outer tube 12, and the engagement hole 20 formed in the low protruding portion 16 is formed. Then, the engagement side 48 is disengaged and the stopper 40 is moved in the direction of one end of the outer tube 12 as it is. Thereby, the stopper 40 can be removed from the protrusion 14. After that, it is inserted into the insertion hole 18 formed in the low projecting portion 16 of the outer tube 12 as described above from the engaging portion 58 of the new stopper 40 which is not deformed and has no problem in preventing the pipe from coming off. If the bending portion 56 is also inserted and positioned on the protruding portion 14 of the outer tube 12, the stopper 40 can be attached to the protruding portion 14. Thereby, it is possible to save the trouble of removing the cover by welding as in the prior art, and the stopper 40 can be attached and detached very easily.

このように、外管12と、該外管12の一端より当該外管12内に挿入される内管30と、外管12の一端近傍に構成され、当該外管12の半径方向外側に突出する突出部14と、内管30の外管12内に挿入される側の端部に形成され、該内管30の半径方向内側に陥没する凹陥部32と、突出部14に対応して外管12に取り付けられる弾性を有したストッパ40とを備え、突出部14は、低突出部16と、該低突出部16の外管12一端側の側面に形成された挿入孔18と、低突出部16の外管12一端側とは反対側に連続する高突出部24と、低突出部16に形成された係合孔20と、該係合孔20の高突出部24側に位置して低突出部16より高く突出する乗り上げ部22とを有し、ストッパ40は、外辺42と、該外辺42一端の屈曲部62にて連続して折り返された内辺52と、該内辺52の他端に構成された係合部58と、該係合部58よりも屈曲部62側に位置して形成された係合辺48とを有し、内辺52が突出部14の挿入孔18から当該突出部14内に進入し、外辺42と内辺52により突出部14を挟んだ状態で外管12に取り付けられ、外管12より内管30を引き抜く方向に当該内管30が移動した場合、ストッパ40の内辺52他端の係合部58が内管30の凹陥部32に係合し、且つ、係合辺48が突出部14の係合孔20に係合することで引き抜きが阻止されると共に、突出部14の高突出部24に内管30の凹陥部32が対応した状態で、外辺42の他端が突出部14の乗り上げ部22に乗り上げる方向にストッパ40が移動された場合、該ストッパ40の内辺52他端の係合部58は内管30の凹陥部32より離脱するので、外管12より内管30を引き抜く方向に当該内管30が移動した場合、ストッパ40の係合辺48が突出部14の係合孔20内に進入して係合するので、外管12から内管30が抜けてしまうのを確実に防止することができる。   In this manner, the outer tube 12, the inner tube 30 inserted into the outer tube 12 from one end of the outer tube 12, and the vicinity of one end of the outer tube 12, projecting outward in the radial direction of the outer tube 12. A projecting portion 14 that is formed on an end portion of the inner tube 30 that is inserted into the outer tube 12, and a concave portion 32 that is recessed inward in the radial direction of the inner tube 30, and an outer portion corresponding to the projecting portion 14. And a stopper 40 having elasticity attached to the tube 12, and the protruding portion 14 includes a low protruding portion 16, an insertion hole 18 formed on a side surface of the low protruding portion 16 on one end side of the outer tube 12, and a low protruding portion. A high projecting portion 24 that is continuous to the side opposite to one end side of the outer tube 12 of the portion 16, an engagement hole 20 formed in the low projecting portion 16, and the high projecting portion 24 side of the engagement hole 20. The stopper 40 has an outer side 42 and one end of the outer side 42. The inner side 52 continuously folded at the bent portion 62, the engaging portion 58 formed at the other end of the inner side 52, and the bent portion 62 side of the engaging portion 58 are formed. The inner side 52 enters the projection 14 from the insertion hole 18 of the projection 14, and the outer tube 12 is sandwiched between the outer side 42 and the inner side 52. When the inner tube 30 moves in the direction in which the inner tube 30 is pulled out from the outer tube 12, the engaging portion 58 at the other end of the inner side 52 of the stopper 40 engages with the recessed portion 32 of the inner tube 30, In addition, the engagement side 48 is engaged with the engagement hole 20 of the projecting portion 14 to prevent extraction, and the recessed portion 32 of the inner tube 30 corresponds to the high projecting portion 24 of the projecting portion 14. When the stopper 40 is moved in a direction in which the other end of the outer side 42 rides on the riding part 22 of the protrusion 14, Since the engaging portion 58 at the other end of the inner side 52 of the stopper 40 is disengaged from the recessed portion 32 of the inner tube 30, if the inner tube 30 moves in the direction of pulling out the inner tube 30 from the outer tube 12, Since the marginal edge 48 enters and engages in the engagement hole 20 of the projecting portion 14, it is possible to reliably prevent the inner tube 30 from coming off from the outer tube 12.

これにより、従来のロック部材のようにストッパ40が変形して配管の抜け止め装置10の役割を果たさない場合に、外管12から溶接したカバーを外し、再度ロック部材をスライドガイドと外管12との隙間に挿入した後、カバーを外管12に溶接固定するなどといった煩雑な手間も掛からない。従って、ストッパ40が変形した場合、傾斜部46を手で持ち上げて係合辺48を係合孔20から離脱させ、外管12の一端方向に移動させるだけでストッパ40を取り外して交換することができ、配管の抜け止め装置10の利便性を大幅に向上させることができる。   As a result, when the stopper 40 is deformed as in the conventional lock member and does not serve as the pipe retaining device 10, the welded cover is removed from the outer tube 12, and the lock member is again connected to the slide guide and the outer tube 12. After the insertion into the gap, there is no troublesome trouble such as fixing the cover to the outer tube 12 by welding. Therefore, when the stopper 40 is deformed, the stopper 40 can be removed and replaced simply by lifting the inclined portion 46 by hand to disengage the engagement side 48 from the engagement hole 20 and moving it toward the one end of the outer tube 12. The convenience of the pipe retaining device 10 can be greatly improved.

また、ストッパ40は、外辺42の他端部に形成され、先端側が内辺52から離間する方向に傾斜した傾斜部46と、内辺52の他端部に形成され、外辺42側に湾曲して先端が係合部58となる湾曲部56とを有し、傾斜部46が突出部14の乗り上げ部22に乗り上げる方向にストッパ40が移動された場合、湾曲部56が高突出部24の外管12一端側の壁の内面に当接しながら当該高突出部24内側に進入し、係合部58が凹陥部32より離脱すると共に、高突出部24の外管12一端側の壁とストッパ40の傾斜部46は、当該傾斜部46の先端に向かう程、相互に離間するので、外辺42と内辺52とを近接させようとするストッパ40の弾性力により、ストッパ40は傾斜部46が乗り上げ部22から降下し、且つ、湾曲部56が高突出部24内側から外管12一端側に離脱する方向に自動的に移動することになる。これにより、ストッパ40を外管12に取り付けた状態で、当該ストッパ40の内辺52先端の係合部は確実に内管30の凹陥部32に係合可能となるので、外管12内に内管30を差し込むことで、ストッパ40は確実に抜け止め機能を奏するようになる。   The stopper 40 is formed at the other end portion of the outer side 42, and the tip end side is inclined at a direction away from the inner side 52, and is formed at the other end portion of the inner side 52, and on the outer side 42 side. When the stopper 40 is moved in a direction in which the inclined portion 46 rides on the riding portion 22 of the protruding portion 14, the bending portion 56 becomes the high protruding portion 24. While entering the inner surface of the wall on the one end side of the outer tube 12, the inner portion enters the inside of the high protruding portion 24, and the engaging portion 58 is detached from the recessed portion 32. Since the inclined portions 46 of the stopper 40 are separated from each other toward the tip of the inclined portion 46, the stopper 40 is inclined by the elastic force of the stopper 40 trying to bring the outer side 42 and the inner side 52 closer to each other. 46 descends from the riding-up portion 22 and the bending portion 5 There will be automatically moved to the direction away the outer tube 12 one end of a high protrusion 24 inward. Thus, with the stopper 40 attached to the outer tube 12, the engaging portion at the tip of the inner side 52 of the stopper 40 can be reliably engaged with the recessed portion 32 of the inner tube 30. By inserting the inner tube 30, the stopper 40 reliably functions to prevent it from coming off.

特に、ストッパ40の傾斜部46は、当該傾斜部46の先端に向かう程、相互に離間するので、ストッパ40の湾曲部56が外管12の他端方向で止まってしまうのを防止し、外管12の一端方向に位置させておくことができると共に、係合部58を常時凹陥部32に係合させておくことが可能となる。従って、係合部58が内管30の凹陥部32に係合しない、或いは、係合部58が内管30の凹陥部32から離脱してしまうのを未然に防止することができるので、外管12内に挿入した内管30が抜けてしまうなどといった不都合を確実に防止することができる。   In particular, since the inclined portions 46 of the stopper 40 are separated from each other toward the tip of the inclined portion 46, the curved portion 56 of the stopper 40 is prevented from stopping in the other end direction of the outer tube 12. The tube 12 can be positioned in the one end direction, and the engaging portion 58 can be always engaged with the recessed portion 32. Therefore, it is possible to prevent the engaging portion 58 from engaging with the recessed portion 32 of the inner tube 30 or to disengage the engaging portion 58 from the recessed portion 32 of the inner tube 30. Inconveniences such as the inner tube 30 inserted into the tube 12 coming off can be reliably prevented.

また、ストッパ40の屈曲部62は湾曲していると共に、外管12の挿入孔18下縁には、当該外管12の半径方向外側に突出する断面円弧状の案内部が形成され、外辺42の他端が突出部14の乗り上げ部22に乗り上げる方向にストッパ40が移動された場合、当該ストッパ40の屈曲部62が案内部の外管12一端側とは反対側の湾曲面に対応するので、この湾曲面と屈曲部62の湾曲形状を利用して、ストッパ40の外辺42の他端を突出部14の乗り上げ部22に乗り上げる方向に移動させれば、そのままストッパ40の屈曲部62を内管30側に円滑に押し込むことができる。これにより、内辺52の他端に構成された係合部58は、より内管30から離間する方向に移動することになるので、より確実且つ容易に係合部58を凹陥部32から高突出部24内に離脱させることができる。   Further, the bent portion 62 of the stopper 40 is curved, and a guide portion having an arcuate cross section protruding outward in the radial direction of the outer tube 12 is formed at the lower edge of the insertion hole 18 of the outer tube 12. When the stopper 40 is moved in a direction in which the other end of the 42 rides on the riding portion 22 of the projecting portion 14, the bent portion 62 of the stopper 40 corresponds to the curved surface on the side opposite to the one end side of the outer tube 12 of the guide portion. Therefore, if the other end of the outer side 42 of the stopper 40 is moved in the direction of riding on the riding portion 22 of the protruding portion 14 by using the curved surface and the curved shape of the bent portion 62, the bent portion 62 of the stopper 40 is used as it is. Can be smoothly pushed into the inner tube 30 side. As a result, the engaging portion 58 formed at the other end of the inner side 52 moves further away from the inner tube 30, so that the engaging portion 58 can be more reliably and easily raised from the recessed portion 32. The protrusion 24 can be detached.

また、突出部14は、外管12と一体に突出形成されていると共に、凹陥部32は内管30の全周に渡って連続して形成されているので、ストッパ40が内管30周囲のどの位置においても内管30と外管12との抜け止め機能を奏することが可能となる。従って、配管の抜け止め装置10の利便性を極めて向上させることができる。   Further, since the protruding portion 14 is integrally formed with the outer tube 12 and the recessed portion 32 is continuously formed over the entire circumference of the inner tube 30, the stopper 40 is provided around the inner tube 30. At any position, it is possible to provide a function of preventing the inner tube 30 and the outer tube 12 from coming off. Therefore, the convenience of the piping retaining device 10 can be greatly improved.

次に、図13、図14には本発明の他の実施例の配管の抜け止め装置10を示している。該配管の抜け止め装置10は、前述の実施形態と略同じ構成を有している。以下、異なる部分について説明する。尚、前述の実施の形態と同じ部分にはこれと同じ符号を付し、説明を省略する。ここで、前記実施例1の構造では、ストッパ40の屈曲部62を外管12の一端に押し付けることにより、当該ストッパ40の湾曲部56を高突出部24内に収めて係合部58を内管30の凹陥部32より脱出させていたが、外管12は金属板にて円筒形に形成されているため、外管12の外側からはストッパ40の係合部58を視認できない。   Next, FIGS. 13 and 14 show a piping retaining device 10 according to another embodiment of the present invention. The piping retaining device 10 has substantially the same configuration as that of the above-described embodiment. Hereinafter, different parts will be described. The same parts as those in the above-described embodiment are denoted by the same reference numerals, and description thereof is omitted. Here, in the structure of the first embodiment, the bent portion 62 of the stopper 40 is pressed against one end of the outer tube 12 so that the curved portion 56 of the stopper 40 is accommodated in the high protruding portion 24 and the engaging portion 58 is moved into the inner portion. Although the outer tube 12 is formed in a cylindrical shape with a metal plate, the engaging portion 58 of the stopper 40 cannot be visually recognized from the outside of the outer tube 12.

そのため、屈曲部62を外管12の一端に押し付けただけでは、湾曲部56が高突出部24内に収まり、内管30の凹陥部32内より内辺52の係合部58が離脱しているか否か分かり難かった。そこで、実施例2の配管の抜け止め装置10は、図13、図14に示すように、外管12の挿入孔18下縁側に、当該外管12の半径方向外側に突出する断面円弧状の案内部27を形成している。この案内部27は、半径約0.8R、高さ約0.5mm、幅約5.0mmに形成されると共に、挿入孔18の幅方向略中心に位置して形成されている。   Therefore, if the bent portion 62 is simply pressed against one end of the outer tube 12, the curved portion 56 is accommodated in the high protruding portion 24, and the engaging portion 58 of the inner side 52 is detached from the recessed portion 32 of the inner tube 30. It was hard to tell if it was. Therefore, as shown in FIGS. 13 and 14, the pipe retaining device 10 according to the second embodiment has an arcuate cross-section projecting outward in the radial direction of the outer tube 12 on the lower edge side of the insertion hole 18 of the outer tube 12. A guide portion 27 is formed. The guide portion 27 is formed with a radius of about 0.8R, a height of about 0.5 mm, and a width of about 5.0 mm, and is formed at the approximate center of the insertion hole 18 in the width direction.

また、図15、図16に示すように、案内部27の挿入孔18側には、ストッパ40の屈曲部62と対応して接触させるための湾曲面27Aを備えている。該ストッパ40の屈曲部62は、案内部27の外管12一端側とは反対側の湾曲面27Aに対応させている。係るストッパ40の屈曲部62を、案内部27の湾曲面27Aに対応させているので、外辺42の他端(傾斜壁26)を突出部14の乗り上げ部22に乗り上げる方向にストッパ40を移動させれば、湾曲面27Aと屈曲部62の湾曲形状により、そのままストッパ40の屈曲部62を円滑に内管30側に押し込むことができる。   As shown in FIGS. 15 and 16, the insertion portion 18 side of the guide portion 27 is provided with a curved surface 27 </ b> A for contacting with the bent portion 62 of the stopper 40. The bent portion 62 of the stopper 40 corresponds to the curved surface 27A on the opposite side of the guide portion 27 from the one end side of the outer tube 12. Since the bent portion 62 of the stopper 40 corresponds to the curved surface 27A of the guide portion 27, the stopper 40 is moved in a direction in which the other end (inclined wall 26) of the outer side 42 rides on the riding portion 22 of the protruding portion 14. By doing so, the bent portion 62 of the stopper 40 can be smoothly pushed into the inner tube 30 side as it is due to the curved shape of the curved surface 27A and the bent portion 62.

即ち、ストッパ40の湾曲部56を高突出部24内に納めるには、外辺42の傾斜壁26を突出部14の乗り上げ部22に乗り上げる方向にストッパ40を移動させれば、図17の矢印で示すように、湾曲面27Aにストッパ40の屈曲部62を滑らせれば、ストッパ40の屈曲部62を図18点線で示す位置から実線で示すように内管30側に押し込むことができる。   That is, in order to fit the curved portion 56 of the stopper 40 in the high projecting portion 24, the stopper 40 is moved in the direction in which the inclined wall 26 of the outer side 42 rides on the riding portion 22 of the projecting portion 14. As shown in FIG. 18, if the bent portion 62 of the stopper 40 is slid on the curved surface 27 </ b> A, the bent portion 62 of the stopper 40 can be pushed into the inner tube 30 side from the position shown by the dotted line in FIG. 18 as shown by the solid line.

そして、ストッパ40による外管12と内管30との引き抜きの阻止は、外管12と内管30とが接続部で接続された状態(図17の湾曲面27Aにストッパ40の屈曲部62を滑らせ以前の状態)から、図19に矢印で示すように、外管12と内管30とが離間する方向に移動(外管12より内管30を引き抜く方向に当該内管30が移動)させると、ストッパ40の内辺52他端の係合部58は、内管30の凹陥部32(係合壁34)に当接する。この状態で、外管12に形成した突出部14と、内管30に形成した凹陥部32とは対応状態から左右にずれる(Oリング挿入突部28と凹陥部32とが離間する方向にずれる)。   The stopper 40 prevents the outer tube 12 and the inner tube 30 from being pulled out in a state where the outer tube 12 and the inner tube 30 are connected to each other at the connecting portion (the bent portion 62 of the stopper 40 is connected to the curved surface 27A in FIG. 17). As shown by an arrow in FIG. 19, the outer tube 12 and the inner tube 30 move away from each other (from the state before sliding) (the inner tube 30 moves in the direction in which the inner tube 30 is pulled out from the outer tube 12). Then, the engaging portion 58 at the other end of the inner side 52 of the stopper 40 comes into contact with the recessed portion 32 (engaging wall 34) of the inner tube 30. In this state, the projecting portion 14 formed on the outer tube 12 and the recessed portion 32 formed on the inner tube 30 are shifted from the corresponding state to the left and right (the O-ring insertion projecting portion 28 and the recessed portion 32 are shifted in a direction away from each other). ).

これにより、ストッパ40の内辺52他端の係合部58が、内管30の凹陥部32内に係合し、外辺42の係合辺48が係合孔20内に進入して、低突出部16の係合孔20縁に係合する。即ち、挿入孔18下縁に案内部27を形成した外管12であっても前述した実施例同様、ストッパ40によって外管12と内管30との引き抜きを阻止することができる。   As a result, the engaging portion 58 at the other end of the inner side 52 of the stopper 40 is engaged in the recessed portion 32 of the inner tube 30, and the engaging side 48 of the outer side 42 enters the engaging hole 20, Engage with the edge of the engagement hole 20 of the low protrusion 16. That is, even in the outer tube 12 in which the guide portion 27 is formed at the lower edge of the insertion hole 18, the pulling out of the outer tube 12 and the inner tube 30 can be prevented by the stopper 40 as in the above-described embodiment.

これにより、ストッパ40の内辺52他端に形成した係合部58を、より内管30から離間する方向に移動させることができるので、当該係合部58を凹陥部32からより確実且つ容易に高突出部24内に離脱させることができる。即ち、ストッパ40の屈曲部62を、湾曲面27Aから内管30側に押し込むだけで、湾曲部56を高突出部24内に収めることができるので、外管12の外側からストッパ40の係合部58が視認できなくても、内管30の凹陥部32内より内辺52の係合部58が離脱したのを確実に把握することができる。   Thereby, the engaging portion 58 formed at the other end of the inner side 52 of the stopper 40 can be moved further away from the inner tube 30, so that the engaging portion 58 can be more reliably and easily removed from the recessed portion 32. Can be separated into the high protrusion 24. That is, the curved portion 56 can be accommodated in the high protruding portion 24 simply by pushing the bent portion 62 of the stopper 40 toward the inner tube 30 side from the curved surface 27A. Even if the portion 58 cannot be visually recognized, it can be surely grasped that the engaging portion 58 of the inner side 52 is disengaged from the inside of the recessed portion 32 of the inner tube 30.

また、実施例1のような構造においても、ストッパ40の湾曲部56を容易且つ確実に高突出部14内に進入させることができるので、ストッパ40の内辺52他端に形成した係合部58を凹陥部32から確実に高突出部24内に離脱させることができる。尚、湾曲面27Aは、ストッパ40の屈曲部62を内管30側に円滑に押し込むことができれば、湾曲面27Aの一番高い箇所から挿入孔18下縁まで傾斜面としても差し支えない。   Also in the structure as in the first embodiment, the curved portion 56 of the stopper 40 can be easily and surely entered into the high protruding portion 14, so that the engaging portion formed at the other end of the inner side 52 of the stopper 40. 58 can be reliably detached from the recessed portion 32 into the high protruding portion 24. The curved surface 27A may be an inclined surface from the highest portion of the curved surface 27A to the lower edge of the insertion hole 18 as long as the bent portion 62 of the stopper 40 can be smoothly pushed into the inner tube 30 side.

このように、ストッパ40は、外辺42と内辺52の一端側に位置する湾曲した屈曲部62にて連続すると共に、外管12の挿入孔18下縁には、当該外管12の半径方向外側に突出する断面円弧状の案内部27が形成され、外辺42の他端が突出部14の乗り上げ部22に乗り上げる方向にストッパ40が移動した場合、当該ストッパ40の屈曲部62が案内部27の外管12一端側とは反対側の湾曲面27Aに対応するので、この湾曲面27Aと屈曲部62の湾曲形状を利用して、ストッパ40の外辺42の他端を突出部14の乗り上げ部22に乗り上げる方向に移動させれば、ストッパ40の屈曲部62は円滑に湾曲面27Aを内管30方向に滑り落ちて、そのまま屈曲部62を内管30側に押し込むことができる。これにより、ストッパ40の内辺52他端の係合部58は、より内管30から離間する方向に移動することになるので、より確実且つ容易に係合部58を凹陥部32から高突出部24内に離脱させることができる。   Thus, the stopper 40 is continuous with the curved bent portion 62 located on one end side of the outer side 42 and the inner side 52, and the radius of the outer tube 12 is provided at the lower edge of the insertion hole 18 of the outer tube 12. When the stopper 40 moves in a direction in which the other end of the outer side 42 rides on the riding portion 22 of the protruding portion 14, the bent portion 62 of the stopper 40 guides. Since it corresponds to the curved surface 27A opposite to one end side of the outer tube 12 of the portion 27, the other end of the outer side 42 of the stopper 40 is connected to the protruding portion 14 by utilizing the curved shape of the curved surface 27A and the bent portion 62. If it moves to the direction which rides on the climbing part 22, the bent part 62 of the stopper 40 can smoothly slide down the curved surface 27A toward the inner tube 30, and the bent part 62 can be pushed into the inner tube 30 side as it is. As a result, the engaging portion 58 at the other end of the inner side 52 of the stopper 40 moves further away from the inner tube 30, so that the engaging portion 58 can be more reliably and easily protruded from the recessed portion 32. It can be separated into the part 24.

他方、前述したように低突出部16の一端側に開口した挿入孔18を設けているので、挿入孔18部分の外管12の強度が弱くなるが、本実施の形態では、外管12の挿入孔18下縁側に、当該外管12の半径方向外側に突出する断面円弧状の案内部27を形成しているので、外管12の挿入孔18部分の強度を向上させることができる。これにより、ストッパ40の屈曲部62を、湾曲面27Aを滑らせて内管30方向に移動させる際、外管12が凹んでしまうなどと言った不都合を防止することができる。従って、外管12の凹みによりストッパ40の角度が変わり、ストッパ40の係合部58が内管30の凹陥部32(係合壁34)から脱出して、配管の抜け止め機能を果たさなくなってしまうなどと言った不都合を未然に阻止することができる。   On the other hand, since the insertion hole 18 opened on one end side of the low protrusion 16 is provided as described above, the strength of the outer tube 12 in the insertion hole 18 portion is weakened. Since the guide portion 27 having an arcuate cross section protruding outward in the radial direction of the outer tube 12 is formed on the lower edge side of the insertion hole 18, the strength of the insertion hole 18 portion of the outer tube 12 can be improved. Thereby, when the bent part 62 of the stopper 40 is moved in the direction of the inner tube 30 by sliding the curved surface 27A, it is possible to prevent the inconvenience that the outer tube 12 is recessed. Accordingly, the angle of the stopper 40 is changed by the recess of the outer tube 12, and the engaging portion 58 of the stopper 40 escapes from the recessed portion 32 (engagement wall 34) of the inner tube 30, so that it does not perform the function of preventing the pipe from coming off. It is possible to prevent inconveniences such as end.

次に、図20、図21、図22には本発明の他の実施例の配管の抜け止め装置10を示している。該配管の抜け止め装置10は、前述の実施形態と略同じ構成を有している。以下、異なる部分について説明する。尚、前述の実施の形態と同じ部分にはこれと同じ符号を付し、説明を省略する。該配管の抜け止め装置10は、前記実施例に対して外管12に一体に突出成形されている突出部14と、ストッパ40の一部を変更して、外管12より内管30を引き抜く方向の、ストッパ40の強度を大幅に向上している。   Next, FIGS. 20, 21, and 22 show a piping retaining device 10 according to another embodiment of the present invention. The piping retaining device 10 has substantially the same configuration as that of the above-described embodiment. Hereinafter, different parts will be described. The same parts as those in the above-described embodiment are denoted by the same reference numerals, and description thereof is omitted. The pipe retaining device 10 changes the protruding portion 14 integrally formed on the outer tube 12 and part of the stopper 40 with respect to the above embodiment, and pulls out the inner tube 30 from the outer tube 12. The strength of the stopper 40 in the direction is greatly improved.

即ち、突出部14は、図20、図21に示すように、前実施例の係合孔20の代わりに係合凹部64(本発明の突出部側係合部に相当)を設けている。この係合凹部64は、後述するストッパ40の乗り上げ突部66を逃がすためのもので、突出部14を構成する低突出部16の一部を外管12の径中心方向に凹陥することにより形成している。該係合凹部64は、図22に示すように低突出部16の一端側に開口した挿入孔18より少許離間した位置から高突出部24の所定寸法手前まで凹陥形成され、高突出部24側を開口している。そして、この開口下縁(外管12の径中心側)に、後述するストッパ40の透孔61が係合する係合端部65を構成している。   That is, as shown in FIGS. 20 and 21, the protruding portion 14 is provided with an engaging recess 64 (corresponding to the protruding portion side engaging portion of the present invention) instead of the engaging hole 20 of the previous embodiment. The engagement recess 64 is for releasing a riding protrusion 66 of the stopper 40 described later, and is formed by recessing a part of the low protrusion 16 constituting the protrusion 14 in the radial center direction of the outer tube 12. is doing. As shown in FIG. 22, the engaging recess 64 is recessed from a position slightly spaced from the insertion hole 18 opened on one end side of the low protrusion 16 to a predetermined dimension before the high protrusion 24, and is on the high protrusion 24 side. Is open. An engagement end 65 is formed on the lower edge of the opening (diameter central side of the outer tube 12) to engage with a through hole 61 of the stopper 40 described later.

また、ストッパ40は図23、図24に示すように、前実施例の外辺42の係合辺48の代わりに、乗り上げ突部66(本発明の突部に相当)を設けている。該乗り上げ突部66は、内辺52側に半球形に凹陥形成されると共に、この乗り上げ突部66の周縁は略外辺42に接して設けられている。詳しくは、乗り上げ突部66は、前実施例の係合辺48と傾斜部46同様に、傾斜部46から半球形状の乗り上げ突部66の頂点まで傾斜状態が延長されるように形成されている。この場合、乗り上げ突部66を半球形状に形成することにより、前実施例の係合辺48部分の強度を大幅に向上している。   Further, as shown in FIGS. 23 and 24, the stopper 40 is provided with a riding protrusion 66 (corresponding to the protrusion of the present invention) instead of the engaging side 48 of the outer side 42 of the previous embodiment. The climbing protrusion 66 is recessed in a hemispherical shape on the inner side 52 side, and the periphery of the climbing protrusion 66 is provided in contact with the outer side 42. Specifically, the climbing protrusion 66 is formed so that the inclined state is extended from the inclined portion 46 to the apex of the hemispherical riding protrusion 66 in the same manner as the engaging side 48 and the inclined portion 46 of the previous embodiment. . In this case, the strength of the engaging side 48 portion of the previous embodiment is significantly improved by forming the riding protrusion 66 in a hemispherical shape.

そして、ストッパ40は通常状態では、点線状態(外辺42と内辺52とが近接した状態)にあり、外辺42と内辺52とを離間させた状態(図中実線)では、所定の付勢力で、内辺52と外辺42とが近接するように弾性力が働くように構成されている。尚、ストッパ40の通常状態で、ストッパ40の乗り上げ突部66は係合凹部64内に突出している。また、乗り上げ突部66は、前実施例の係合辺48であっても差し支えない。この場合、係合辺48に図示しない補強リブを設るなどして、係合辺48が変形しないようにする必要がある。   The stopper 40 is in a dotted line state (a state where the outer side 42 and the inner side 52 are close to each other) in a normal state, and in a state where the outer side 42 and the inner side 52 are separated (solid line in the drawing), The urging force is configured so that an elastic force works so that the inner side 52 and the outer side 42 are close to each other. In the normal state of the stopper 40, the riding protrusion 66 of the stopper 40 protrudes into the engaging recess 64. Further, the riding-up protrusion 66 may be the engaging side 48 of the previous embodiment. In this case, it is necessary to prevent the engaging side 48 from being deformed by providing a reinforcing rib (not shown) on the engaging side 48.

また、ストッパ40の内辺52には、当該内辺52を貫通して透孔61(本発明の第2の係合部に相当)が設けられている。この透孔61は、縦長略矩形状(長さ約7.3mm、幅約4.0mm)に形成されており、一方の縁61Aを湾曲部56の略中心に位置して、そこから延在して他方の縁61Bを屈曲部62近傍に位置すると共に、ストッパ40の幅方向略中心に位置して形成されている。   Further, the inner side 52 of the stopper 40 is provided with a through hole 61 (corresponding to the second engagement portion of the present invention) that penetrates the inner side 52. The through hole 61 is formed in a substantially rectangular shape (length: about 7.3 mm, width: about 4.0 mm), and one edge 61 </ b> A is positioned substantially at the center of the curved portion 56 and extends therefrom. Thus, the other edge 61B is positioned in the vicinity of the bent portion 62 and is formed at the approximate center of the stopper 40 in the width direction.

また、ストッパ40の内辺52には補強リブ68が設けられている。該補強リブ68は、図25に示すように湾曲部56の変形を防止するためのもので、湾曲部56の屈曲部62側から係合部58方向に渡って形成されている。この補強リブ68は、湾曲部56が外辺42と反対側面方向に凹陥されることにより設けられると共に、補強リブ68は透孔61両側にそれぞれ設けられている。即ち、ストッパ40の係合部58が透孔61方向に押圧された場合に湾曲部56が屈曲しないように、透孔61両側に補強リブ68が設けられている。尚、補強リブ68は、図24、図25のみ図示している。   A reinforcing rib 68 is provided on the inner side 52 of the stopper 40. The reinforcing rib 68 is for preventing deformation of the bending portion 56 as shown in FIG. 25, and is formed from the bending portion 62 side of the bending portion 56 to the engaging portion 58. The reinforcing ribs 68 are provided by the concave portions 56 being recessed in the side surface direction opposite to the outer side 42, and the reinforcing ribs 68 are provided on both sides of the through holes 61. That is, the reinforcing ribs 68 are provided on both sides of the through hole 61 so that the bending portion 56 does not bend when the engaging portion 58 of the stopper 40 is pressed in the direction of the through hole 61. The reinforcing rib 68 is shown only in FIGS.

次に、本実施例における配管の抜け止め装置10を用いた配管(内管30と外管12)の接続を図26、図27、図28を参照して説明する。先ず、ストッパ40を外管12に挿着する。この場合ストッパ40の取り付け方は、図26に矢印で示すように外管12の低突出部16一端側側面に形成した挿入孔18内に、係合部58を挿入し、つづいて湾曲部56、内辺本体54を挿入して、外管12の突出部14にストッパ40を挿着する。この状態で、外辺42の乗り上げ突部66は、低突出部16を乗り越え、係合凹部64内に挿入される。   Next, connection of pipes (inner pipe 30 and outer pipe 12) using the pipe retaining device 10 in this embodiment will be described with reference to FIGS. 26, 27, and 28. FIG. First, the stopper 40 is inserted into the outer tube 12. In this case, the stopper 40 is attached in such a manner that the engaging portion 58 is inserted into the insertion hole 18 formed in the side surface on the one end side of the low projecting portion 16 of the outer tube 12 as shown by the arrow in FIG. Then, the inner side main body 54 is inserted, and the stopper 40 is inserted into the protruding portion 14 of the outer tube 12. In this state, the climbing protrusion 66 on the outer side 42 gets over the low protrusion 16 and is inserted into the engagement recess 64.

次に、図27に矢印で示すように、内管30の他端側を外管12の一端より、当該外管12内に挿入すると共に、内管30に設けた位置決め突部36に外管12の一端を当接させる。この状態で、図28に示すように外管12に形成した突出部14と、内管30に形成した凹陥部32とが対応した状態となって、ストッパ40の係合部58が、内管30に形成した凹陥部32内に入り込み、外管12と内管30とが接続部(外管12の一端部と内管30の他端部)で接続される。   Next, as indicated by an arrow in FIG. 27, the other end of the inner tube 30 is inserted into the outer tube 12 from one end of the outer tube 12, and the outer tube is inserted into the positioning protrusion 36 provided on the inner tube 30. One end of 12 is brought into contact. In this state, as shown in FIG. 28, the protruding portion 14 formed on the outer tube 12 and the recessed portion 32 formed on the inner tube 30 correspond to each other, and the engaging portion 58 of the stopper 40 is connected to the inner tube. The outer tube 12 and the inner tube 30 are connected to each other through a connecting portion (one end portion of the outer tube 12 and the other end portion of the inner tube 30).

係る内管30には、当該内管30の周囲全体に凹陥部32を形成しており、内管30の全周囲のどの位置においても、外管12に形成した突出部14と、内管30周囲に形成した凹陥部32とを対応状態にさせることができる。これにより、内管30周囲の凹陥部32のどの位置にでも、ストッパ40の係合部58を入り込ませることができる。従って、内管30或いは外管12を回転させて、ストッパ40の係合部58を位置合わせする必要もなくなり、外管12と内管30との接続作業を極めて容易に行うことができるようになる。   In the inner tube 30, a recessed portion 32 is formed around the inner tube 30, and the protruding portion 14 formed on the outer tube 12 and the inner tube 30 are located at any position around the inner tube 30. The recessed part 32 formed in the periphery can be made to correspond. Thereby, the engaging portion 58 of the stopper 40 can be inserted into any position of the recessed portion 32 around the inner tube 30. Therefore, it is not necessary to rotate the inner tube 30 or the outer tube 12 to align the engaging portion 58 of the stopper 40, so that the connecting operation between the outer tube 12 and the inner tube 30 can be performed very easily. Become.

また、外管12と内管30とが接続部で接続された状態では、内辺52に設けた透孔61内に突出部14の低突出部16に設けた係合凹部64が挿入された状態となる。この状態から、ストッパ40をOリング挿入突部28側に移動させると、乗り上げ突部66は突出部14の乗り上げ部22に乗り上げ、内辺52と外辺42とが離間する。即ち、内辺52と外辺42が離間すると、ストッパ40は付勢力で内辺52と外辺42とを近接させる。これにより、ストッパ40(乗り上げ突部66)が乗り上げ部22に乗り上げないように構成されている。   In addition, in a state where the outer tube 12 and the inner tube 30 are connected by the connecting portion, the engaging recess 64 provided in the low protruding portion 16 of the protruding portion 14 is inserted into the through hole 61 provided in the inner side 52. It becomes a state. From this state, when the stopper 40 is moved to the O-ring insertion protrusion 28 side, the riding protrusion 66 rides on the riding part 22 of the protrusion 14, and the inner side 52 and the outer side 42 are separated from each other. That is, when the inner side 52 and the outer side 42 are separated from each other, the stopper 40 brings the inner side 52 and the outer side 42 close to each other by a biasing force. Accordingly, the stopper 40 (the riding protrusion 66) is configured not to ride on the riding portion 22.

そして、外管12と内管30とが接続部で接続された状態で、図29に矢印で示すように、外管12と内管30とが離間する方向に移動(外管12より内管30を引き抜く方向に当該内管30が移動)させると、ストッパ40の内辺52他端の係合部58は、内管30の凹陥部32(係合壁34)に当接する。この状態で、外管12に形成した突出部14と、内管30に形成した凹陥部32とは対応状態から左右にずれる(Oリング挿入突部28と凹陥部32とが離間する方向にずれる)。   Then, in a state where the outer tube 12 and the inner tube 30 are connected at the connecting portion, the outer tube 12 and the inner tube 30 move away from each other as indicated by arrows in FIG. When the inner tube 30 is moved in the direction of pulling out 30, the engaging portion 58 at the other end of the inner side 52 of the stopper 40 comes into contact with the recessed portion 32 (engaging wall 34) of the inner tube 30. In this state, the projecting portion 14 formed on the outer tube 12 and the recessed portion 32 formed on the inner tube 30 are shifted from the corresponding state to the left and right (the O-ring insertion projecting portion 28 and the recessed portion 32 are shifted in a direction away from each other). ).

この場合、ストッパ40の内辺52他端の係合部58が、内管30の凹陥部32内に係合し、外管12突出部14の係合凹部64(係合端部65)が内辺52の透孔61内に進入する。詳しくは、外管12と内管30が離間する方向に移動すると、内管30(凹陥部32の係合壁34)は、湾曲部56先端の係合部58を、ストッパ40の屈曲部62方向に押し、外管12(係合凹部64の係合端部65)は、透孔61の一方の縁61Aを係合部58方向に押す。これにより、内管30と外辺42は、ストッパ40の湾曲部56部分で突っ張り、引き抜きが阻止されることとなる。この場合、ストッパ40には、湾曲部56に補強リブ68を設けているので、湾曲部56のへたりや、屈曲を防止して、湾曲部56の変形による内管30と外辺42との引き抜きを確実に阻止することができる。   In this case, the engaging portion 58 at the other end of the inner side 52 of the stopper 40 engages in the recessed portion 32 of the inner tube 30, and the engaging recess 64 (engaging end portion 65) of the protruding portion 14 of the outer tube 12. It enters the through hole 61 of the inner side 52. Specifically, when the outer tube 12 and the inner tube 30 move away from each other, the inner tube 30 (the engaging wall 34 of the recessed portion 32) causes the engaging portion 58 at the distal end of the curved portion 56 to be bent and the bent portion 62 of the stopper 40. The outer tube 12 (the engagement end portion 65 of the engagement recess 64) pushes one edge 61 </ b> A of the through hole 61 toward the engagement portion 58. As a result, the inner tube 30 and the outer side 42 are stretched at the curved portion 56 portion of the stopper 40 and are prevented from being pulled out. In this case, since the stopper 40 is provided with the reinforcing rib 68 on the bending portion 56, the bending of the bending portion 56 is prevented and the inner tube 30 and the outer side 42 are deformed by the deformation of the bending portion 56. Pulling out can be reliably prevented.

尚、係合端部65を高突出部24側に鋭角に形成すると共に、内管30凹陥部32の係合壁34下端(内管30の径中心側)を位置決め突部36よりも離間する方向に傾斜させても差し支えない。この場合、外管12と内管30とがストッパ40により引き抜きが阻止された状態で、外管12と内管30とを引き抜く方向に移動した場合、透孔61の一方の縁61Aは、係合端部65の乗り上げ部22側に付勢され、湾曲部56先端の係合部58は、係合壁34下端(内管30の径中心側)方向に付勢されることになるので、係合端部65とストッパ40の透孔61(一方の縁61A)、内管30凹陥部32の係合壁34下端とストッパ40の係合部58を外れ難くすることができる。   The engaging end portion 65 is formed at an acute angle toward the high protruding portion 24 side, and the lower end of the engaging wall 34 of the inner tube 30 recessed portion 32 (diameter center side of the inner tube 30) is separated from the positioning protrusion 36. It can be tilted in the direction. In this case, when the outer tube 12 and the inner tube 30 are moved in the direction in which the outer tube 12 and the inner tube 30 are pulled out while the stopper 40 prevents the outer tube 12 and the inner tube 30 from being pulled out, one edge 61A of the through hole 61 is engaged. Since the engagement portion 58 at the distal end of the bending portion 56 is urged toward the riding portion 22 side of the joint end portion 65, the engagement wall 34 is urged toward the lower end of the engagement wall 34 (diameter center side of the inner tube 30). The engagement end portion 65 and the through hole 61 (one edge 61A) of the stopper 40, the lower end of the engagement wall 34 of the inner tube 30 recessed portion 32, and the engagement portion 58 of the stopper 40 can be made difficult to come off.

次に、ストッパ40の係合により外管12と内管30の引き抜きが阻止された状態から、外管12から内管30の取り外し方を、図30を参照して説明する。先ず、図30に示すように、内管30の位置決め突部36に外管12の一端を当接させて、外管12に形成した突出部14と、内管30に形成した凹陥部32とを対応させる。この状態で、内辺52と外辺42とが相互に近接方向に弾性力が働いているストッパ40をOリング挿入突部28方向に押して移動させる。尚、内管30に位置決め突部36を設けていない場合には、目視にて外管12に形成した突出部14と、内管30に形成した凹陥部32とを対応させれば良い。   Next, how to remove the inner tube 30 from the outer tube 12 from the state where the outer tube 12 and the inner tube 30 are prevented from being pulled out by the engagement of the stopper 40 will be described with reference to FIG. First, as shown in FIG. 30, one end of the outer tube 12 is brought into contact with the positioning projection 36 of the inner tube 30, and the protruding portion 14 formed on the outer tube 12 and the recessed portion 32 formed on the inner tube 30. To correspond. In this state, the inner side 52 and the outer side 42 are moved by pushing the stopper 40 in which the elastic force is acting in the proximity direction to the O-ring insertion protrusion 28. When the positioning projection 36 is not provided on the inner tube 30, the protrusion 14 formed on the outer tube 12 and the recessed portion 32 formed on the inner tube 30 may be made to correspond to each other.

具体的には、ストッパ40をOリング挿入突部28方向に押して移動させて行くと、乗り上げ突部66は乗り上げ部22に当接し、更にストッパ40をOリング挿入突部28方向に移動させて行くと、外管12(板厚)を挟むように弾性力が働いているストッパ40の乗り上げ突部66は、乗り上げ部22に当接しながら、当該乗り上げ部22に乗り上げて行く。このとき、湾曲部56は、傾斜壁26の内面に当接(本発明の外管12一端側の壁の内面に当接に相当)しながらOリング挿入突部28方向(詳しくは、高突出部24の最も突出している方向)に移動して行く。   Specifically, when the stopper 40 is pushed and moved in the direction of the O-ring insertion protrusion 28, the riding protrusion 66 comes into contact with the riding part 22, and further, the stopper 40 is moved in the direction of the O-ring insertion protrusion 28. When going, the riding protrusion 66 of the stopper 40, which has an elastic force acting so as to sandwich the outer tube 12 (plate thickness), rides on the riding part 22 while being in contact with the riding part 22. At this time, the bending portion 56 is in contact with the inner surface of the inclined wall 26 (corresponding to contact with the inner surface of the wall on the one end side of the outer tube 12 of the present invention) and in the direction of the O-ring insertion protrusion 28 (specifically, highly protruding The portion 24 moves in the most protruding direction.

そして、ストッパ40の屈曲部62を外管12の一端に押し付けた状態では、ストッパ40の乗り上げ突部66は乗り上げ部22に乗り上げ、湾曲部56は、ストッパ40の弾性力で傾斜壁26の最も突出している部分(高突出部24)、若しくは、高突出部24近傍に位置する。これにより、傾斜部46は、凹陥部32から外管12側に離脱して、突出部14の高突出部24内に位置して収まる。即ち、前述した如きストッパ40の屈曲部62を、湾曲面27Aから内管30側に押し込むことにより、湾曲部56を高突出部24内に収めることができるので、外管12の外側からストッパ40の係合部58が視認できなくても、内管30の凹陥部32内より内辺52の係合部58が離脱したのを確実に把握することができる。   When the bent portion 62 of the stopper 40 is pressed against one end of the outer tube 12, the riding protrusion 66 of the stopper 40 rides on the riding portion 22, and the bending portion 56 is the most of the inclined wall 26 by the elastic force of the stopper 40. It is located in a protruding portion (high protruding portion 24) or in the vicinity of the high protruding portion 24. As a result, the inclined portion 46 is separated from the recessed portion 32 toward the outer tube 12 and is positioned and accommodated in the high protruding portion 24 of the protruding portion 14. That is, the bent portion 62 of the stopper 40 as described above is pushed into the inner tube 30 side from the curved surface 27A, so that the bent portion 56 can be accommodated in the high projecting portion 24. Even if the engaging portion 58 is not visible, it can be surely grasped that the engaging portion 58 of the inner side 52 has been detached from the recessed portion 32 of the inner tube 30.

この状態で、外管12から内管30を離間させれば、ストッパ40の係合部58が内管30の凹陥部32(係合壁34)に引っ掛かることなく、引き抜くことができる。即ち、外管12内から内管30を引き抜く場合は、ストッパ40をOリング挿入突部28方向に移動して、当該ストッパ40の屈曲部62を外管12の一端に押し付けることにより、湾曲部56が高突出部24内に収納されるので、内管30の凹陥部32内からストッパ40の係合部58を容易に離脱させることができる。そして、この状態で、外管12内から内管30を離間させれば、係合部58が凹陥部32(係合壁34)に引っ掛かることなく、当該外管12内から内管30を容易に引き抜くことができる。   If the inner tube 30 is separated from the outer tube 12 in this state, the engaging portion 58 of the stopper 40 can be pulled out without being caught by the recessed portion 32 (engaging wall 34) of the inner tube 30. That is, when the inner tube 30 is pulled out from the outer tube 12, the stopper 40 is moved in the direction of the O-ring insertion protrusion 28, and the bent portion 62 of the stopper 40 is pressed against one end of the outer tube 12. Since 56 is accommodated in the high protrusion 24, the engaging portion 58 of the stopper 40 can be easily detached from the recessed portion 32 of the inner tube 30. If the inner tube 30 is separated from the outer tube 12 in this state, the inner tube 30 can be easily moved from the outer tube 12 without the engaging portion 58 being caught by the recessed portion 32 (engagement wall 34). Can be pulled out.

このように、外管12より内管30を引き抜く方向に当該内管30が移動した場合、突出部14の係合凹部64をストッパ40の透孔61内に進入させて係合させることができるので、係合凹部64と透孔61間のストッパ40寸法を全実施例の外辺42の係合辺48から屈曲部62を介して内辺52端部の係合部58までの寸法に対して極めて短寸法にすることができる。これにより、外管12より内管30を引き抜く方向の、ストッパ40の強度を大幅に向上させることができる。従って、ストッパ40が変形して、外管12内に挿入した内管30が抜けてしまうなどといった不都合を確実に防止することが可能となる。   As described above, when the inner tube 30 moves in the direction in which the inner tube 30 is pulled out from the outer tube 12, the engaging recess 64 of the projecting portion 14 can enter and engage with the through hole 61 of the stopper 40. Therefore, the dimension of the stopper 40 between the engaging recess 64 and the through hole 61 is set to the dimension from the engaging side 48 of the outer side 42 to the engaging part 58 at the end of the inner side 52 through the bent portion 62 in all the embodiments. Can be made extremely short. Thereby, the intensity | strength of the stopper 40 of the direction which pulls out the inner pipe | tube 30 from the outer pipe | tube 12 can be improved significantly. Therefore, it is possible to surely prevent such a problem that the stopper 40 is deformed and the inner tube 30 inserted into the outer tube 12 is pulled out.

また、ストッパ40は、先端側が内辺52から離間する方向に傾斜した傾斜部46と、該傾斜部46の屈曲部62側の外辺42に形成されて、内辺52側に突出する乗り上げ突部66とを有するので、乗り上げ突部66が突出部14の乗り上げ部22に乗り上げる方向にストッパ40が移動された場合、ストッパ40の内辺52と外辺42との離間距離を大きくすることが可能となる。これにより、離間した内辺52と外辺42とが狭まる付勢力を更に大きくすることができる。この場合、ストッパ40の湾曲部56が外管12の他端方向で停止してしまうのを未然に阻止して、外管12の一端方向に確実に位置させておくことができるので、係合部58が内管30の凹陥部32に係合しない、或いは、係合部58が内管30の凹陥部32から離脱してしまうのを未然に防止することができる。これにより、外管12内に挿入した内管30が抜けてしまうなどといった不都合を確実に防止することができる。   Further, the stopper 40 is formed on an inclined portion 46 whose front end side is inclined in a direction away from the inner side 52 and an outer side 42 on the bent portion 62 side of the inclined portion 46, and a riding protrusion that protrudes toward the inner side 52 side. When the stopper 40 is moved in a direction in which the riding protrusion 66 rides on the riding part 22 of the protrusion 14, the distance between the inner side 52 and the outer side 42 of the stopper 40 can be increased. It becomes possible. Thereby, the urging | biasing force which the inner side 52 and the outer side 42 which were spaced apart narrow can be enlarged further. In this case, it is possible to prevent the curved portion 56 of the stopper 40 from stopping in the direction of the other end of the outer tube 12, and to be surely positioned in the direction of one end of the outer tube 12. It is possible to prevent the portion 58 from engaging with the recessed portion 32 of the inner tube 30 or the engagement portion 58 from being detached from the recessed portion 32 of the inner tube 30. Thereby, inconveniences such as the inner tube 30 inserted into the outer tube 12 coming off can be reliably prevented.

また、ストッパ40は、内辺52の他端部に形成され、外辺42側に湾曲して先端が係合部58となる湾曲部56を有し、ストッパ40の透孔61は湾曲部56の屈曲部62側の面まで延在している。そして、透孔61両側に位置する湾曲部56の外辺42とは反対側の面には、補強リブ68が外辺42とは反対方向に凹陥形成されているので、湾曲部56の変形応力を大幅に向上させることができる。これにより、内管30と外管12とに引き抜き方向の力が加わった場合に、ストッパ40の湾曲部56が変形してしまうなどと言った不都合を防止することができる。従って、外管12内に挿入した内管30が抜けてしまうのを確実に防止することができる。また、これ以外に前記実施例1、実施例2同様の効果を得ることができる。   The stopper 40 is formed at the other end portion of the inner side 52, has a curved portion 56 that is curved toward the outer side 42 and has a distal end serving as an engaging portion 58, and the through hole 61 of the stopper 40 has a curved portion 56. It extends to the surface of the bent portion 62 side. Further, since the reinforcing rib 68 is recessed in the opposite direction to the outer side 42 on the surface opposite to the outer side 42 of the curved part 56 located on both sides of the through hole 61, the deformation stress of the curved part 56 is reduced. Can be greatly improved. Accordingly, it is possible to prevent the inconvenience that the bending portion 56 of the stopper 40 is deformed when a force in the pulling direction is applied to the inner tube 30 and the outer tube 12. Therefore, it is possible to reliably prevent the inner tube 30 inserted into the outer tube 12 from being pulled out. In addition, the same effects as those of the first and second embodiments can be obtained.

尚、実施の形態では、配管の抜け止め装置10の形状や寸法或いは角度などを記載したが、配管の抜け止め装置10の要旨を逸脱しない範囲内で形状や寸法或いは角度などを変更しても良いのは言うまでもない。勿論本発明は、上記実施例のみに限定されるものではなく、この発明の趣旨を逸脱しない範囲で他の様々な変更を行っても本発明は有効である。   In the embodiment, the shape, size, or angle of the pipe retaining device 10 is described. However, even if the shape, dimension, angle, or the like is changed without departing from the gist of the pipe retaining device 10. Needless to say, it is good. Of course, the present invention is not limited to the above-described embodiments, and the present invention is effective even when various other modifications are made without departing from the spirit of the present invention.

本発明の一実施例を示す配管の抜け止め装置を備えた配管(外管内に内管が挿入される状態を示す)の斜視図である(実施例1)。BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a perspective view of a pipe (showing a state where an inner pipe is inserted into an outer pipe) provided with a pipe retaining device according to an embodiment of the present invention (Example 1). 外管に形成した突出部へストッパを挿入する状態を示す外管の斜視図である。It is a perspective view of an outer pipe which shows the state where a stopper is inserted in the projection part formed in the outer pipe. 本発明の配管の抜け止め装置を構成するストッパの正面図である。It is a front view of the stopper which comprises the piping prevention device of this invention. 同図3の配管の抜け止め装置を構成するストッパの側面図である。FIG. 4 is a side view of a stopper constituting the piping retaining device of FIG. 3. 同図3の配管の抜け止め装置を構成するストッパの背面図である。FIG. 4 is a rear view of a stopper constituting the piping retaining device of FIG. 3. ストッパが取り付けられて外管内に内管が挿入された状態を示す配管(内管と外辺)の縦断側面図である。It is a vertical side view of piping (an inner pipe and an outer side) which shows the state where the stopper was attached and the inner pipe was inserted in the outer pipe. 同図6のストッパが取り付けられて外管内に内管が挿入された状態の要部拡大図である。It is a principal part enlarged view of the state which the stopper of FIG. 6 was attached and the inner pipe was inserted in the outer pipe. ストッパの係合部が内辺の凹陥部に係合し、外辺の係合辺が係合孔内に進入して係合することにより外管内から内管が引き抜かれるのを阻止している状態を示す図である。The engaging portion of the stopper engages with the recessed portion on the inner side, and the engaging side on the outer side enters and engages with the engaging hole, thereby preventing the inner tube from being pulled out from the outer tube. It is a figure which shows a state. ストッパの説明図である。It is explanatory drawing of a stopper. 外管内から内管が引き抜ける状態(ストッパの係合部が内辺の凹陥部から離脱した状態)を示す図である。It is a figure which shows the state (state in which the engaging part of the stopper detach | leaved from the recessed part of an inner side) from which an inner pipe is pulled out from the inside of an outer pipe. 湾曲部先端の係合部が内管の凹陥部から離脱する状態まで挿入された状態で、ストッパの外辺と内辺とが平行なときの配管の抜け止めの説明図である。It is explanatory drawing of piping prevention when the outer side and inner side of a stopper are parallel in the state inserted until the engagement part of the bending part tip was removed from the recessed part of an inner pipe. 湾曲部先端の係合部が内管の凹陥部から離脱する状態まで挿入された状態で、ストッパの外辺と内辺とが拡開している状態のときの配管の抜け止めの説明図である。In the state where the engagement portion at the distal end of the bending portion is inserted until the engagement portion is disengaged from the recessed portion of the inner tube, the piping is prevented from coming off when the outer side and the inner side of the stopper are expanded. is there. 本発明の他の一実施例を示す配管の抜け止め装置を構成する配管(外管内に内管が挿入される状態を示す)の斜視図である(実施例2)。(Example 2) which is the perspective view of the piping (The state in which an inner tube is inserted in an outer tube | pipe) which comprises the piping retainer which shows other one Example of this invention. 本発明の他の一実施例を示す配管の抜け止め装置を構成する外管の要部の横断面図(拡大図)である。It is a cross-sectional view (enlarged view) of the main part of the outer pipe constituting the pipe retaining device showing another embodiment of the present invention. 本発明の他の一実施例を示す配管の抜け止め装置を構成する外管の要部の平面図(拡大図)である。It is a top view (enlarged view) of the principal part of the outer pipe which comprises the piping retainer which shows another one Example of this invention. 本発明の他の一実施例を示す配管の抜け止め装置を構成する外管の要部の縦断側面図(拡大図)である。It is a vertical side view (enlarged view) of the principal part of the outer pipe which comprises the piping retainer which shows another one Example of this invention. 内管に設けた湾曲面にストッパの屈曲部を滑らせて、ストッパの屈曲部を内管側に押し込み、ストッパの外辺に形成した湾曲部を高突出部内に納める図である。It is a figure which slides the bent part of a stopper on the curved surface provided in the inner pipe, pushes the bent part of the stopper into the inner pipe side, and stores the curved part formed in the outer side of the stopper in the high protruding part. ストッパの屈曲部を内管側に押し込み、ストッパの外辺に形成した係合部を内管の凹陥部内から円滑に離脱させる場合の説明図である。It is explanatory drawing in the case of pushing in the bending part of a stopper to the inner pipe side, and making the engaging part formed in the outer side of a stopper detach | leave smoothly from the inside of the recessed part of an inner pipe. ストッパの係合部が内辺の凹陥部に係合し、外辺の係合辺が係合孔内に進入して係合することにより外管内から内管が引き抜かれるのを阻止している状態を示す図である。The engaging portion of the stopper engages with the recessed portion on the inner side, and the engaging side on the outer side enters and engages with the engaging hole, thereby preventing the inner tube from being pulled out from the outer tube. It is a figure which shows a state. 本発明の他の一実施例を示す配管の抜け止め装置を構成する外管の要部の平面図(拡大図)である(実施例3)。(Example 3) which is a top view (enlarged view) of the principal part of the outer tube which comprises the piping retainer which shows other one Example of this invention. 本発明の他の一実施例を示す配管の抜け止め装置を構成する外管の要部の横断面図(拡大図)である。It is a cross-sectional view (enlarged view) of the main part of the outer pipe constituting the pipe retaining device showing another embodiment of the present invention. 本発明の他の一実施例を示す配管の抜け止め装置を構成する外管の要部の縦断側面図(拡大図)である。It is a vertical side view (enlarged view) of the principal part of the outer pipe which comprises the piping retainer which shows another one Example of this invention. 本発明の配管の抜け止め装置を構成するストッパの正面図である。It is a front view of the stopper which comprises the piping prevention device of this invention. 同図3の配管の抜け止め装置を構成するストッパの側面図である。FIG. 4 is a side view of a stopper constituting the piping retaining device of FIG. 3. 同図3の配管の抜け止め装置を構成するストッパの背面図である。FIG. 4 is a rear view of a stopper constituting the piping retaining device of FIG. 3. 外管に形成した突出部へストッパを挿入する状態を示す外管の斜視図である。It is a perspective view of an outer pipe which shows the state where a stopper is inserted in the projection part formed in the outer pipe. 本発明の他の実施例を示す配管の抜け止め装置を備えた配管(外管内に内管が挿入される状態を示す)の斜視図である。It is a perspective view of piping (showing the state where an inner pipe is inserted in an outer pipe) provided with a piping retaining device which shows other examples of the present invention. ストッパが取り付けられて外管内に内管が挿入された状態を示す配管(内管と外辺)の縦断側面図である。It is a vertical side view of piping (an inner pipe and an outer side) which shows the state where the stopper was attached and the inner pipe was inserted in the outer pipe. ストッパの係合部が内辺の凹陥部に係合し、外辺の透孔内に外管突出部の係合凹部が係合することにより外管内から内管が引き抜かれるのを阻止している状態を示す図である。The engaging portion of the stopper is engaged with the recessed portion on the inner side, and the engaging concave portion of the protruding portion of the outer tube is engaged with the through hole on the outer side to prevent the inner tube from being pulled out from the outer tube. FIG. 外管内から内管が引き抜ける状態(ストッパの係合部が内辺の凹陥部から離脱した状態)を示す図である。It is a figure which shows the state (state in which the engaging part of the stopper detach | leaved from the recessed part of an inner side) from which an inner pipe is pulled out from the inside of an outer pipe.

符号の説明Explanation of symbols

10 配管の抜け止め装置
12 外管
14 突出部
16 低突出部
18 挿入孔
20 係合孔(突出部側係合部)
22 乗り上げ部
24 高突出部
26 傾斜壁
27 案内部
27A 湾曲面
28 Oリング挿入突部
30 内管
32 凹陥部
34 係合壁
36 位置決め突部
40 ストッパ
42 外辺
44 外辺本体
46 傾斜部
48 係合辺(第2の係合部)
52 内辺
54 内辺本体
56 湾曲部
58 係合部(第1の係合部)
60 透孔(第2の係合部)
61 透孔(第2の係合部)
61A 一方の縁
61B 他方の縁
62 屈曲部
64 係合凹部(突出部側係合部)
65 係合端部
66 乗り上げ突部
68 補強リブ
DESCRIPTION OF SYMBOLS 10 Piping prevention device 12 Outer pipe 14 Protrusion part 16 Low protrusion part 18 Insertion hole 20 Engagement hole (projection part side engagement part)
DESCRIPTION OF SYMBOLS 22 Riding part 24 High protrusion part 26 Inclined wall 27 Guide part 27A Curved surface 28 O-ring insertion protrusion 30 Inner pipe 32 Recessed part 34 Engagement wall 36 Positioning protrusion 40 Stopper 42 Outer side 44 Outer side main body 46 Inclined part 48 Engagement Edge (second engaging part)
52 Inner side 54 Inner side main body 56 Bending part 58 Engaging part (first engaging part)
60 Through hole (second engaging portion)
61 Through hole (second engaging portion)
61A One edge 61B The other edge 62 Bent part 64 Engaging recess (projecting part side engaging part)
65 Engagement end 66 Riding protrusion 68 Reinforcement rib

Claims (8)

外管と、該外管の一端より当該外管内に挿入される内管と、前記外管の一端近傍に構成され、当該外管の半径方向外側に突出する突出部と、前記内管の前記外管内に挿入される側の端部に形成され、該内管の半径方向内側に陥没する凹陥部と、前記突出部に対応して前記外管に取り付けられる弾性を有したストッパとを備え、
前記突出部は、低突出部と、該低突出部の前記外管一端側の側面に形成された挿入孔と、前記低突出部の前記外管一端側とは反対側に連続する高突出部と、前記低突出部に形成された突出部側係合部と、該突出部側係合部の前記高突出部側に位置して前記低突出部より高く突出する乗り上げ部とを有し、
前記ストッパは、外辺と、該外辺一端の屈曲部にて連続して折り返された内辺と、該内辺の他端に構成された第1の係合部と、該第1の係合部よりも前記屈曲部側に位置して形成された第2の係合部とを有し、前記内辺が前記突出部の挿入孔から当該突出部内に進入し、前記外辺と内辺により前記突出部を挟んだ状態で前記外管に取り付けられ、
前記外管より前記内管を引き抜く方向に当該内管が移動した場合、前記ストッパの内辺他端の第1の係合部が前記内管の凹陥部に係合し、且つ、前記第2の係合部が前記突出部の突出部側係合部に係合することで引き抜きが阻止されると共に、
前記突出部の高突出部に前記内管の凹陥部が対応した状態で、前記外辺の他端が前記突出部の乗り上げ部に乗り上げる方向に前記ストッパが移動された場合、該ストッパの内辺他端の第1の係合部は前記内管の凹陥部より離脱することを特徴とする配管の抜け止め装置。
An outer tube, an inner tube that is inserted into the outer tube from one end of the outer tube, a protrusion that is configured near one end of the outer tube and protrudes radially outward of the outer tube, and the inner tube A recessed portion formed at an end portion on the side to be inserted into the outer tube and recessed inward in the radial direction of the inner tube; and a stopper having elasticity attached to the outer tube corresponding to the protruding portion;
The protruding portion includes a low protruding portion, an insertion hole formed in a side surface of the low protruding portion on one end side of the outer tube, and a high protruding portion continuous on the side of the low protruding portion opposite to the one end side of the outer tube. And a projecting portion side engaging portion formed in the low projecting portion, and a riding portion that is located on the high projecting portion side of the projecting portion side engaging portion and projects higher than the low projecting portion,
The stopper includes an outer side, an inner side continuously folded at a bent portion at one end of the outer side, a first engaging portion configured at the other end of the inner side, and the first engagement. A second engaging portion formed on the bent portion side with respect to the joint portion, and the inner side enters the protruding portion from the insertion hole of the protruding portion, and the outer side and the inner side Is attached to the outer tube with the protruding portion sandwiched therebetween,
When the inner tube moves in a direction in which the inner tube is pulled out from the outer tube, the first engaging portion at the other end of the inner side of the stopper engages with the recessed portion of the inner tube, and the second The engagement portion is engaged with the projecting portion side engaging portion of the projecting portion, so that the withdrawal is prevented,
When the stopper is moved in a direction in which the other end of the outer side rides on the riding part of the protruding part with the recessed part of the inner pipe corresponding to the high protruding part of the protruding part, the inner side of the stopper The piping retaining device, wherein the first engaging portion at the other end is separated from the recessed portion of the inner tube.
前記突出部の突出部側係合部は、前記低突出部の上面に形成された係合孔であり、
前記ストッパの第2の係合部は、前記外辺より内辺側に突出する係合辺であって、
前記外管より前記内管を引き抜く方向に当該内管が移動した場合、前記ストッパの係合辺が前記突出部の係合孔内に進入して係合することを特徴とする請求項1に記載の配管の抜け止め装置。
The protrusion-side engagement portion of the protrusion is an engagement hole formed on the upper surface of the low protrusion,
The second engaging portion of the stopper is an engaging side that protrudes inward from the outer side,
The engagement side of the stopper enters the engagement hole of the projecting portion and engages when the inner tube moves in a direction in which the inner tube is pulled out from the outer tube. Detaching device for piping as described.
前記ストッパは、前記外辺の他端部に形成され、先端側が前記内辺から離間する方向に傾斜した傾斜部と、前記内辺の他端部に形成され、前記外辺側に湾曲して先端が前記第1の係合部となる湾曲部とを有し、
前記傾斜部が前記突出部の乗り上げ部に乗り上げる方向に前記ストッパが移動された場合、前記湾曲部が前記高突出部の前記外管一端側の壁の内面に当接しながら当該高突出部内側に進入し、前記第1の係合部が前記凹陥部より離脱すると共に、
前記高突出部の前記外管一端側の壁と前記ストッパの傾斜部は、当該傾斜部の先端に向かう程、相互に離間することを特徴とする請求項2に記載の配管の抜け止め装置。
The stopper is formed at the other end of the outer side, the tip side is inclined in a direction away from the inner side, and the other end of the inner side is curved toward the outer side. A distal end has a curved portion serving as the first engaging portion;
When the stopper is moved in a direction in which the inclined portion rides on the riding portion of the projecting portion, the curved portion comes into contact with the inner surface of the wall on the one end side of the outer tube of the high projecting portion. Entering, the first engaging part is disengaged from the recessed part,
3. The piping retaining device according to claim 2, wherein the wall on the one end side of the outer pipe of the high protruding portion and the inclined portion of the stopper are separated from each other toward the tip of the inclined portion.
前記突出部の突出部側係合部は、前記低突出部に凹陥形成された係合凹部であり、
前記ストッパの第2の係合部は、前記内辺に形成された透孔であって、
前記外管より前記内管を引き抜く方向に当該内管が移動した場合、前記突出部の係合凹部が前記ストッパの透孔内に進入して係合することを特徴とする請求項1に記載の配管の抜け止め装置。
The protruding portion side engaging portion of the protruding portion is an engaging recess formed as a recess in the low protruding portion,
The second engaging portion of the stopper is a through hole formed in the inner side,
2. The engagement recess of the protrusion enters the through hole of the stopper and engages when the inner tube moves in a direction in which the inner tube is pulled out from the outer tube. Piping prevention device.
前記ストッパは、前記外辺の他端部に形成され、先端側が前記内辺から離間する方向に傾斜した傾斜部と、該傾斜部の前記屈曲部側の外辺に形成され、前記内辺側に突出する突部とを有することを特徴とする請求項4に記載の配管の抜け止め装置。   The stopper is formed at the other end portion of the outer side, and is formed at an inclined portion whose tip side is inclined in a direction away from the inner side, and an outer side on the bent portion side of the inclined portion, and the inner side 5. The piping retaining device according to claim 4, further comprising: a projecting portion projecting into the pipe. 前記ストッパは、前記内辺の他端部に形成され、前記外辺側に湾曲して先端が前記第1の係合部となる湾曲部を有し、前記ストッパの透孔は前記湾曲部の前記屈曲部側の面まで延在しており、該透孔両側に位置する前記湾曲部の前記外辺とは反対側の面には、補強リブが形成されていることを特徴とする請求項4又は請求項5に記載の配管の抜け止め装置。   The stopper is formed at the other end portion of the inner side, has a curved portion that is curved toward the outer side and has a tip that becomes the first engaging portion, and the through hole of the stopper is formed on the curved portion. The reinforcing rib is formed on a surface on the opposite side to the outer side of the curved portion that extends to the surface on the bent portion side and is located on both sides of the through hole. The piping retaining device according to claim 4 or 5. 前記ストッパの屈曲部は湾曲していると共に、前記外管の挿入孔下縁には、当該外管の半径方向外側に突出する断面円弧状の案内部が形成され、前記外辺の他端が前記突出部の乗り上げ部に乗り上げる方向に前記ストッパが移動された場合、当該ストッパの屈曲部が前記案内部の前記外管一端側とは反対側の湾曲面に対応することを特徴とする請求項1乃至請求項6の何れかに記載の配管の抜け止め装置。   The bent portion of the stopper is curved, and a guide portion having an arcuate cross section protruding outward in the radial direction of the outer tube is formed at the lower edge of the insertion hole of the outer tube, and the other end of the outer side is The bent portion of the stopper corresponds to a curved surface on the opposite side to the one end side of the outer tube of the guide portion when the stopper is moved in a direction to ride on the riding portion of the protruding portion. The piping retaining device according to any one of claims 1 to 6. 前記突出部は、前記外管と一体に突出形成されていると共に、前記凹陥部は前記内管の全周に渡って連続して形成されていることを特徴とする請求項1乃至請求項7の何れかに記載の配管の抜け止め装置。   The projecting portion is formed so as to project integrally with the outer tube, and the recessed portion is formed continuously over the entire circumference of the inner tube. The piping retaining device according to any one of the above.
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101729160B1 (en) * 2015-07-16 2017-04-21 김경석 Connection structure of duct
CN114498090A (en) * 2021-12-21 2022-05-13 平高集团有限公司 Connecting structure between conductive component and conductive piece

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62107189U (en) * 1985-12-25 1987-07-08
JPS6368591U (en) * 1986-10-23 1988-05-09
JPH01255790A (en) * 1988-04-06 1989-10-12 Toosetsu Kk Joining construction for new charge and exhaust cylinder
JPH0461239U (en) * 1990-09-27 1992-05-26
JPH08193681A (en) * 1995-01-17 1996-07-30 Toosetsu Kk Joining structure of intake/exhaust tube
JPH0953779A (en) * 1995-08-16 1997-02-25 Kiyousan Denki Kk One touch connecting structure using block joint
JPH09264527A (en) * 1996-03-27 1997-10-07 Hokuai:Kk Air supplying or air discharging pipe for gas equipment
JPH10253038A (en) * 1997-03-13 1998-09-25 Tokyo Forming Kk Pipe lock
JP2000161570A (en) * 1998-11-20 2000-06-16 Toosetsu Kk Pull-out prevention device for feed/exhaust pipe
JP2000304182A (en) * 1999-04-19 2000-11-02 Tosetz Co Ltd Dislocation-protection device for supply and exhaust pipe
JP2005030467A (en) * 2003-07-10 2005-02-03 Yamato Stainless:Kk Fall-out stopper and fall-out stopping method for air supply and exhaust pipe
JP2006009856A (en) * 2004-06-23 2006-01-12 Nippon Pipe System Kk Slipping-off prevention device for supply/exhaust pipe
JP2006153071A (en) * 2004-11-26 2006-06-15 Tosetz Co Ltd Air supply and exhaust pipe

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62107189U (en) * 1985-12-25 1987-07-08
JPS6368591U (en) * 1986-10-23 1988-05-09
JPH01255790A (en) * 1988-04-06 1989-10-12 Toosetsu Kk Joining construction for new charge and exhaust cylinder
JPH0461239U (en) * 1990-09-27 1992-05-26
JPH08193681A (en) * 1995-01-17 1996-07-30 Toosetsu Kk Joining structure of intake/exhaust tube
JPH0953779A (en) * 1995-08-16 1997-02-25 Kiyousan Denki Kk One touch connecting structure using block joint
JPH09264527A (en) * 1996-03-27 1997-10-07 Hokuai:Kk Air supplying or air discharging pipe for gas equipment
JPH10253038A (en) * 1997-03-13 1998-09-25 Tokyo Forming Kk Pipe lock
JP2000161570A (en) * 1998-11-20 2000-06-16 Toosetsu Kk Pull-out prevention device for feed/exhaust pipe
JP2000304182A (en) * 1999-04-19 2000-11-02 Tosetz Co Ltd Dislocation-protection device for supply and exhaust pipe
JP2005030467A (en) * 2003-07-10 2005-02-03 Yamato Stainless:Kk Fall-out stopper and fall-out stopping method for air supply and exhaust pipe
JP2006009856A (en) * 2004-06-23 2006-01-12 Nippon Pipe System Kk Slipping-off prevention device for supply/exhaust pipe
JP2006153071A (en) * 2004-11-26 2006-06-15 Tosetz Co Ltd Air supply and exhaust pipe

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101729160B1 (en) * 2015-07-16 2017-04-21 김경석 Connection structure of duct
CN114498090A (en) * 2021-12-21 2022-05-13 平高集团有限公司 Connecting structure between conductive component and conductive piece
CN114498090B (en) * 2021-12-21 2024-06-07 平高集团有限公司 Conductive component and connection structure between conductive pieces

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