JP2006181862A - Regeneration method of existing pipe - Google Patents

Regeneration method of existing pipe Download PDF

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JP2006181862A
JP2006181862A JP2004377667A JP2004377667A JP2006181862A JP 2006181862 A JP2006181862 A JP 2006181862A JP 2004377667 A JP2004377667 A JP 2004377667A JP 2004377667 A JP2004377667 A JP 2004377667A JP 2006181862 A JP2006181862 A JP 2006181862A
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pipe
existing pipe
hole
existing
spiral
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JP4619111B2 (en
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Yasushi Kitayama
康 北山
Akihiko Takatani
明彦 高谷
Hiroshi Sugawara
宏 菅原
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Sekisui Chemical Co Ltd
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Sekisui Chemical Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To ensure desired design strength by avoiding the adhesion failure of an existing pipe 2 and a spiral pipe 5 or the deformation of the spiral pipe 5 if high external water pressure is applied to the existing pipe 2 from its outer diameter side before a back-filling material 7 is cured in a regeneration method of the existing pipe 2 employing the so-called pipe making simultaneous back-filling system. <P>SOLUTION: The through-hole (center hole of a through-hole member 15) reaching at least the inner surface of the existing pipe 2 from the inner surface side of the spiral pipe 5 is provided to the spiral pipe 5 formed in a pipe making process and the layer of the back-filling material 7. In this case, for example, if a crack is formed to a part of the existing pipe 2, external water penetrates into the layer of the back-filling material 7 on an inner diameter side from the crack of the existing pipe 2 according to circumstances when the external water pressure to the existing pipe 2 is raised accompanied by a rise in the water level of the ground water or the like in the vicinity of the existing pipe 2 but, since the penetrated external water is allowed to flow out to the inner diameter side of the spiral pipe 5 from the through-hole, the external water is hardly mixed with the back-filling material 7. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、例えば下水道管、上水道管、ガス管、農業用水管等、地中に埋設される管渠(既設管)の内面に長尺な帯状体を螺旋状に嵌合しつつその両側縁部を接合して製管しながら、この螺旋管と既設管との間に裏込め材を注入して既設管を更生する方法に関する。   The present invention, for example, a sewer pipe, a water pipe, a gas pipe, an agricultural water pipe, and the like, while a long belt-like body is helically fitted to the inner surface of a pipe wall (existing pipe) buried in the ground, The present invention relates to a method of rehabilitating an existing pipe by injecting a backfilling material between the spiral pipe and the existing pipe while joining the parts.

既設管が老朽化あるいは亀裂等の破損が発生したような場合に、既設管を更生する。従来の既設管更生方法として、例えば製管同時裏込め方式のSPR工法が知られている(例えば、特許文献1参照。)。   Rehabilitate existing pipes when the existing pipes are old or broken. As a conventional existing pipe rehabilitation method, for example, an SPR method using a pipe making simultaneous back-in method is known (for example, see Patent Document 1).

この方法は、例えば実施形態に用いた図2及び図3に示すように、既設管2内に設置された製管機20によって、既設管2の内面に可撓性を有する長尺な帯状体(プロファイル)5aを螺旋状に嵌合しつつその両側縁部を接合して螺旋管(更生管)5を作成しながら、既設管2と螺旋管5との間の隙間6に製管機20の注入ノズル28を挿入してモルタル等の裏込め材7を注入充填し、裏込め材7を一定の養生期間を経て硬化させることにより既設管2と螺旋管5とを一体化するものである。
特公平3−48392号公報
For example, as shown in FIG. 2 and FIG. 3 used in the embodiment, this method uses a pipe making machine 20 installed in the existing pipe 2 to form a long strip having flexibility on the inner surface of the existing pipe 2. (Profile) A pipe making machine 20 is formed in the gap 6 between the existing pipe 2 and the spiral pipe 5 while the spiral pipe (rehabilitated pipe) 5 is formed by fitting both side edges of the 5a in a spiral shape. The existing pipe 2 and the spiral pipe 5 are integrated by inserting a filling nozzle 28 and filling and filling the backfilling material 7 such as mortar and curing the backfilling material 7 after a predetermined curing period. .
Japanese Patent Publication No. 3-48392

例えば、上記従来例のように既設管2を更生してから裏込め材7が硬化するまでの間に、既設管2近傍の地下水等の水位が上昇して、既設管2に高外水圧が付与されることがある。そのような状況において、仮に既設管2に亀裂が発生していると、前記外水が前記亀裂部分から既設管内径側に浸入することがあり、既設管2に対する螺旋管5の接着不良が起こるおそれがある。また、前記既設管2の外径側からかかる外水圧によって裏込め材7が流動することがあって、螺旋管5が変形するおそれがある。   For example, as in the above-described conventional example, the level of groundwater or the like in the vicinity of the existing pipe 2 rises from the time when the existing pipe 2 is renewed until the backfilling material 7 is cured, and a high external water pressure is applied to the existing pipe 2. May be granted. In such a situation, if a crack is generated in the existing pipe 2, the outside water may enter the existing pipe inner diameter side from the cracked portion, resulting in poor adhesion of the spiral pipe 5 to the existing pipe 2. There is a fear. Further, the backfill material 7 may flow due to the external water pressure from the outer diameter side of the existing pipe 2, and the spiral pipe 5 may be deformed.

本発明は、いわゆる製管同時裏込め式の既設管の更生方法において、万一、裏込め材の硬化前に既設管外径側から高外水圧が付与された場合でも、既設管と螺旋管との接着不良や螺旋管の変形を回避できるようにして、所望の設計強度を確保することを目的としている。   The present invention is a method of rehabilitating an existing pipe of the so-called pipe making simultaneous backfilling type, even if a high external water pressure is applied from the outside diameter of the existing pipe before the backfilling material is cured, the existing pipe and the spiral pipe It is intended to ensure a desired design strength by avoiding poor adhesion and deformation of the helical tube.

本発明に係る既設管の更生方法は、地中に埋設される管渠(既設管)の内面に長尺な帯状体を螺旋状に嵌合しつつその両側縁部を接合して製管しながら、この螺旋管と既設管との間に裏込め材を注入して既設管を更生する方法であって、前記製管過程において、その形成した螺旋管および裏込め材の層に、螺旋管の内面側から少なくとも既設管内面に至る通孔を設けることを特徴としている。   The method of rehabilitating an existing pipe according to the present invention is to produce a pipe by joining a long strip-like body in a spiral shape to the inner surface of a pipe burial (existing pipe) buried in the ground, and joining both side edges thereof. However, it is a method of injecting a backfilling material between the spiral tube and the existing tube to rehabilitate the existing tube, and in the pipe making process, the spiral tube and the backfilling material layer are formed in the spiral tube. A through hole extending from the inner surface side to at least the inner surface of the existing pipe is provided.

この場合、例えば前記既設管の一部に亀裂が発生していると、既設管近傍の地下水等の水位上昇に伴い既設管に対する外水圧が上昇したときに、当該外水が前記既設管の亀裂から内径側の裏込め材の層に浸入することがあるが、そのとき、この浸入した外水が前記通孔から螺旋管の内径側に流出されるので、裏込め材に外水が混入しにくくなる。しかも、外水圧も前記通孔から螺旋管の内径側にリークされるので、新たに設置した螺旋管が変形することが抑制または防止される。   In this case, for example, if a crack is generated in a part of the existing pipe, the external water is cracked in the existing pipe when the external water pressure is increased with respect to the existing pipe due to a rise in the level of groundwater or the like in the vicinity of the existing pipe. May penetrate into the backfilling material layer on the inner diameter side, but at this time, since the infiltrated outside water flows out from the through hole to the inner diameter side of the spiral tube, the outside water is mixed into the backfilling material. It becomes difficult. Moreover, since the external water pressure is also leaked from the through hole to the inner diameter side of the spiral tube, deformation of the newly installed spiral tube is suppressed or prevented.

上記更生方法において、前記通孔は、前記既設管の外面側に届く位置まで設けることが
できる。
In the rehabilitation method, the through hole can be provided up to a position reaching the outer surface side of the existing pipe.

この場合、例えば既設管の近傍の地下水等の水位上昇に伴い既設管に対する外水圧が上昇したときに、当該外水圧が前記通孔から螺旋管の内径側にリークされる。これにより、既設管が外水圧によって変形することが抑制または防止される。   In this case, for example, when the external water pressure with respect to the existing pipe rises with the rise in the level of groundwater or the like in the vicinity of the existing pipe, the external water pressure leaks from the through hole to the inner diameter side of the spiral pipe. This suppresses or prevents the existing pipe from being deformed by the external water pressure.

上記更生方法において、前記裏込め材の養生後に前記通孔を閉塞することができる。   In the rehabilitation method, the through hole can be closed after the backfill material is cured.

また、前記通孔は、前記既設管の径方向に沿って貫通するように穿孔された孔からなるものとすることができる。   Moreover, the said through-hole shall consist of a hole drilled so that it may penetrate along the radial direction of the said existing pipe.

さらに、前記通孔は、前記既設管の径方向に沿って貫通する状態に取り付けられる通孔部材の中心孔とされたものとすることができる。   Furthermore, the said through-hole shall be made into the center hole of the through-hole member attached in the state penetrated along the radial direction of the said existing pipe.

本発明に係る既設管の更生方法によれば、万一、裏込め材の硬化前に既設管に高外水圧が付与された場合でも、既設管と螺旋管との接着不良や螺旋管の変形を回避できるようにして、所望の設計強度を確保することができる。   According to the method for rehabilitating an existing pipe according to the present invention, even if a high external water pressure is applied to the existing pipe before the backfill material is cured, poor adhesion between the existing pipe and the helical pipe or deformation of the helical pipe Thus, a desired design strength can be ensured.

以下、本発明の実施形態を図1から図5に示して説明する。これらの図において、1は土壌であり、この土壌1の内部には、既設管2が地表面と略平行に埋設されており、この土壌1の地表面から鉛直方向下向きに伸びて既設管2に連通連結される立坑3,4が設けられている。   Hereinafter, embodiments of the present invention will be described with reference to FIGS. In these drawings, 1 is soil, and an existing pipe 2 is embedded in the soil 1 substantially parallel to the ground surface. The existing pipe 2 extends downward from the ground surface of the soil 1 in the vertical direction. The vertical shafts 3 and 4 are connected to each other.

既設管2が例えば老朽化あるいは亀裂等の破損が発生した場合に、強度復元、流下性能向上、耐摩耗性向上を図るために、既設管2を更生する。既設管2は、例えば断面形状が円形、矩形、馬蹄形等いろいろあるが、この実施形態では円形としている。   When the existing pipe 2 is damaged, for example, due to aging or cracking, the existing pipe 2 is renewed in order to restore strength, improve flow-down performance, and improve wear resistance. The existing pipe 2 has various cross-sectional shapes such as a circular shape, a rectangular shape, and a horseshoe shape, and is circular in this embodiment.

次に、既設管2の更生方法を詳細に説明する。この実施形態では、製管同時裏込め方式のSPR工法を採用している。   Next, a method for rehabilitating the existing pipe 2 will be described in detail. In this embodiment, the SPR method using the simultaneous backfilling method is adopted.

この製管同時裏込め方式のSPR工法では、要するに、既設管2の内面に可撓性を有する長尺な帯状体(プロファイル)5aを螺旋状に嵌合しつつその両側縁部を接合して螺旋管(更生管)5を作成しながら、既設管2と螺旋管5との間の隙間6にモルタル等の裏込め材7を注入充填し、裏込め材7を一定の養生期間を経て硬化させることにより既設管2と螺旋管5とを一体化する。   In this SPR method using the simultaneous backfilling method of pipe making, in short, a long strip (profile) 5a having flexibility is helically fitted to the inner surface of the existing pipe 2 and both side edges thereof are joined. While creating the spiral tube (rehabilitated tube) 5, the backfill material 7 such as mortar is injected and filled into the gap 6 between the existing tube 2 and the spiral tube 5, and the backfill material 7 is cured after a certain curing period. As a result, the existing pipe 2 and the spiral pipe 5 are integrated.

ここでは、帯状体5aは、例えば硬質塩化ビニル、ポリエチレン、ポリプロピレン等の合成樹脂とされる。裏込め材7は、モルタル等とされ、その注入時には、高粘度な状態となるように適宜の水セメント比に設定される。   Here, the belt-like body 5a is made of a synthetic resin such as hard vinyl chloride, polyethylene, or polypropylene. The backfill material 7 is mortar or the like, and is set to an appropriate water cement ratio so as to be in a highly viscous state when injected.

この更生方法では、図1に示すように、製管機20、プロファイルドラム21、モルタル供給機22を用いるので、これらを簡単に説明する。   In this rehabilitation method, as shown in FIG. 1, since a pipe making machine 20, a profile drum 21, and a mortar feeder 22 are used, these will be briefly described.

製管機20は、既設管2の内面に帯状体5aを螺旋状に嵌合しつつその両側縁部を接合して螺旋管5を作成するとともに、既設管2と螺旋管5との間の隙間6にモルタル等の裏込め材7を注入充填することが可能に構成されたもので、公知のものを用いることができる。この製管機20には、帯状体5aを接合する接合機(図示省略)を備えており、この接合機は、台車25上に搭載されている駆動装置26により駆動される。この駆動装置2
6は、油圧式、空気圧式、電動式のいずれであってもよく、螺旋管成形方向の到達側の立坑4近傍に配置されている発電機27から電力が供給される。
The pipe making machine 20 creates the spiral tube 5 by joining the side edges of the strip 5a to the inner surface of the existing tube 2 in a spiral manner and creating the spiral tube 5 between the existing tube 2 and the spiral tube 5. The gap 6 can be filled with a backfilling material 7 such as mortar, and a known material can be used. The pipe making machine 20 is provided with a joining machine (not shown) for joining the strips 5 a, and this joining machine is driven by a drive device 26 mounted on a carriage 25. This drive device 2
6 may be any of a hydraulic type, a pneumatic type, and an electric type, and electric power is supplied from a generator 27 arranged in the vicinity of the shaft 4 on the arrival side in the spiral tube forming direction.

プロファイルドラム21は、帯状体5aとしてのプロファイルを巻回したものであり、中心側から取り出される中出し式タイプになっている。外出しタイプであってもかまわない。このプロファイルドラム21は、螺旋管成形方向の発進側の立坑3近傍に配置されている。   The profile drum 21 is obtained by winding a profile as the belt-like body 5a, and is a medium type that is taken out from the center side. It may be a go-out type. The profile drum 21 is arranged in the vicinity of the shaft 3 on the starting side in the spiral tube forming direction.

モルタル供給機22は、図2に示すように、モルタルを一定量ずつ押し出すものであり、その押し出し量は任意に調整できるようになっている。このモルタル供給機22は、台車25上に搭載されており、製管機20の注入ノズル28にホース29を介して接続されている。   As shown in FIG. 2, the mortar feeder 22 extrudes mortar by a fixed amount, and the amount of extrusion can be adjusted arbitrarily. This mortar supply machine 22 is mounted on a carriage 25 and is connected to an injection nozzle 28 of the pipe making machine 20 via a hose 29.

台車25は、図1の矢印で示すように、製管機20と共に既設管2内を螺旋管成形方向に移動される。但し、地上に固定配置されるものであってもよい。   As indicated by the arrow in FIG. 1, the carriage 25 is moved in the spiral pipe forming direction in the existing pipe 2 together with the pipe making machine 20. However, it may be fixedly arranged on the ground.

なお、上記実施形態では、プロファイルドラム21、発電機27を地上に配置しているが、図示していないが、既設管2内に台車上等に搭載して製管機20と共に移動できるようにしてもよい。   In the above embodiment, the profile drum 21 and the generator 27 are arranged on the ground. However, although not shown, the profile drum 21 and the generator 27 are mounted on the carriage in the existing pipe 2 so that they can move together with the pipe making machine 20. May be.

そして、この実施形態では、上述した製管過程において、その形成した螺旋管5にその内面側から既設管2外面に至る設置孔10を、螺旋管成形方向の所定間隔おきに設けるようにしている。   In this embodiment, in the pipe making process described above, the formed helical tube 5 is provided with installation holes 10 extending from the inner surface side to the outer surface of the existing tube 2 at predetermined intervals in the helical tube forming direction. .

この設置孔10には、通孔部材15が装着されている。この通孔部材15は、例えばウイープホールと呼ばれるものとすることができ、図5に示すように、円筒形の筒本体16と、筒本体16の一端側に装着されるソケット17と、ソケット17に装着される蓋18とを有する構成である。この蓋18が螺旋管5の内径側に配置される。   A through-hole member 15 is attached to the installation hole 10. The through-hole member 15 can be called, for example, a weep hole. As shown in FIG. 5, as shown in FIG. 5, a cylindrical tube body 16, a socket 17 attached to one end side of the tube body 16, and a socket 17 And a lid 18 to be mounted. The lid 18 is disposed on the inner diameter side of the spiral tube 5.

蓋18は、円筒形であり、逆止弁としての構造になっている。つまり、蓋18の内径には、閉塞部18aが設けられており、この閉塞部18aの例えば一ヶ所に軸方向に貫通する貫通孔18bが設けられており、この閉塞部18aの一側面に貫通孔18bを塞ぐようにゴム材からなる弁体19がビス等の止め具14により取り付けられている。   The lid 18 is cylindrical and has a structure as a check valve. In other words, a closed portion 18a is provided on the inner diameter of the lid 18, and a through hole 18b penetrating in the axial direction is provided at, for example, one location of the closed portion 18a. A valve body 19 made of a rubber material is attached by a stopper 14 such as a screw so as to close the hole 18b.

この蓋18では、その閉塞部18aの他側の空気圧または水圧が上昇したときに、この圧力が前記貫通孔18bを通じて弁体19に作用するために、この圧力が所定値以上になると弁体19を止め具14の取り付け部分を支点として弾性揺動して貫通孔18bを開放することになり、前記圧力や外水を閉塞部18aの一側へリークすることになる。但し、閉塞部18aの一側の空気圧または水圧が上昇したときには、弁体19が閉塞部18aに押し付けられるので、この弁体19が貫通孔18bを閉塞することになる。   In this lid 18, when the air pressure or water pressure on the other side of the closed portion 18a rises, this pressure acts on the valve body 19 through the through hole 18b. Will be elastically swung with the attachment portion of the stopper 14 as a fulcrum to open the through hole 18b, and the pressure and outside water will leak to one side of the blocking portion 18a. However, when the air pressure or water pressure on one side of the closing portion 18a rises, the valve body 19 is pressed against the closing portion 18a, so that the valve body 19 closes the through hole 18b.

つまり、筒本体16の中心孔と貫通孔18bとが、請求項に記載の通孔を構成している。   That is, the center hole of the cylinder main body 16 and the through-hole 18b constitute the through-hole described in the claims.

以上説明したような方法によれば、例えば既設管2の近傍の地下水等の水位上昇に伴い既設管2に対する外水圧Fが上昇したときに、当該外水圧Fが通孔部材15から螺旋管5の内径側にリークされる。これにより、既設管2が外水圧Fによって変形することが抑制または防止される。したがって、既設管2および螺旋管5を含む更生管全体として所望の設計強度を確保することができる。   According to the method described above, for example, when the external water pressure F with respect to the existing pipe 2 rises due to an increase in the level of groundwater or the like in the vicinity of the existing pipe 2, the external water pressure F is transmitted from the through-hole member 15 to the spiral pipe 5. It leaks to the inner diameter side of. As a result, the existing pipe 2 is suppressed or prevented from being deformed by the external water pressure F. Therefore, a desired design strength can be ensured for the entire rehabilitation pipe including the existing pipe 2 and the helical pipe 5.

なお、上述したように、逆止弁付きの蓋18を設けていれば、既設管2の更生後において螺旋管5内部を通る水の水位が上昇したときに、この水が通孔部材15を経て既設管2の外径側へ漏洩することを防止できる。   As described above, if the lid 18 with a check valve is provided, when the water level passing through the inside of the spiral pipe 5 rises after the existing pipe 2 is regenerated, the water passes through the through-hole member 15. Through this, leakage to the outer diameter side of the existing pipe 2 can be prevented.

以下、本発明の他の実施形態を説明する。   Hereinafter, other embodiments of the present invention will be described.

(1)上記通孔部材15を用いずに、単に設置孔10を開けただけでもかまわない。この場合、設置孔10が請求項に記載の通孔となり、部品点数ならびに取り付け作業を削減できる。但し、裏込め材7の養生後に前記設置孔10を上述したような逆止弁付きの蓋18あるいは通常の閉蓋等で閉塞するのが望ましい。   (1) The installation hole 10 may be simply opened without using the through-hole member 15. In this case, the installation hole 10 becomes the through-hole described in the claims, and the number of parts and installation work can be reduced. However, it is desirable to close the installation hole 10 with the lid 18 with a check valve as described above or a normal lid after curing the backfill material 7.

(2)図6に示すように、帯状体5aの設置過程において設置した螺旋管5に、その内面側から既設管2内面に至る設置孔10を設けてもよい。この設置孔10には、図5に示したような通孔部材15が装着される。但し、通孔部材15を用いずに、単に設置孔10を開けただけでもかまわない。   (2) As shown in FIG. 6, the installation hole 10 extending from the inner surface side to the inner surface of the existing tube 2 may be provided in the spiral tube 5 installed in the installation process of the band-shaped body 5 a. A through-hole member 15 as shown in FIG. However, the installation hole 10 may be simply opened without using the through-hole member 15.

この例によれば、例えば既設管2の一部に亀裂2aが発生していると、例えば既設管2近傍の地下水等の水位上昇に伴い既設管2に対する外水圧が上昇したときに、当該外水が既設管2の亀裂2aから内径側の裏込め材7の層に浸入することがあるが、そのとき、この浸入した外水が通孔部材15から螺旋管5の内方に流出されるので、裏込め材7に外水が混入しにくくなる。しかも、外水圧も通孔部材15から螺旋管5内部にリークされるので、新たに設置した螺旋管5が変形することが抑制または防止される。   According to this example, for example, if a crack 2a occurs in a part of the existing pipe 2, for example, when the external water pressure on the existing pipe 2 rises due to an increase in the level of groundwater or the like in the vicinity of the existing pipe 2, Although water may enter the layer of the backfilling material 7 on the inner diameter side from the crack 2 a of the existing pipe 2, at this time, the entered outside water flows out from the through-hole member 15 to the inside of the spiral pipe 5. Therefore, it becomes difficult for outside water to mix into the backfill material 7. Moreover, since the external water pressure is also leaked from the through-hole member 15 into the spiral tube 5, the newly installed spiral tube 5 is suppressed or prevented from being deformed.

本発明に係る既設管の更生方法の一実施形態で、作業の様子を示す説明図である。It is explanatory drawing which shows the mode of work in one Embodiment of the rehabilitation method of the existing pipe | tube which concerns on this invention. 製管同時裏込め方法による既設管の更生方法の説明図であり、製管機を正面より見た図である。It is explanatory drawing of the rehabilitation method of the existing pipe by the pipe making simultaneous backfilling method, and is the figure which looked at the pipe making machine from the front. 製管同時裏込め方法による既設管の更生方法の説明図であり、製管機部分を示す一部破断した状態の斜視図である。It is explanatory drawing of the rehabilitation method of the existing pipe | tube by the pipe making simultaneous backfilling method, and is a perspective view of the partially broken state which shows a pipe making machine part. 図1の(4)−(4)線断面の矢視図である。It is an arrow view of the (4)-(4) line cross section of FIG. 図4の通孔部材を示す分解斜視図である。It is a disassembled perspective view which shows the through-hole member of FIG. 本発明に係る既設管の更生方法の他の実施形態で、図4に対応する図である。FIG. 5 is a view corresponding to FIG. 4 in another embodiment of the existing pipe rehabilitation method according to the present invention.

符号の説明Explanation of symbols

2 既設管(管渠)
5 螺旋管(更生管)
5a 帯状体(プロファイル)
7 裏込め材
10 設置孔
15 通孔部材
18 蓋
20 製管機

2 Existing pipe (pipe)
5 Spiral tube (rehabilitation tube)
5a Band (profile)
7 Backfilling material 10 Installation hole 15 Through-hole member 18 Lid 20 Pipe making machine

Claims (5)

地中に埋設される管渠(既設管)の内面に長尺な帯状体を螺旋状に嵌合しつつその両側縁部を接合して製管しながら、この螺旋管と既設管との間に裏込め材を注入して既設管を更生する方法であって、
前記製管過程において、その形成した螺旋管および裏込め材の層に、螺旋管の内面側から少なくとも既設管内面に至る通孔を設けることを特徴とする既設管の更生方法。
Between the spiral pipe and the existing pipe, a long belt-like body is helically fitted to the inner surface of the pipe burial (existing pipe) buried in the ground, and both side edges are joined to produce a pipe. Injecting backfill material into the existing pipe to rehabilitate existing pipes,
A method for rehabilitating an existing pipe, characterized in that, in the pipe making process, a through hole extending from the inner surface side of the spiral tube to at least the inner surface of the existing tube is provided in the formed spiral tube and backfill material layer.
前記通孔は、前記既設管の外面側に届く位置まで設けられていることを特徴とする請求項1記載の既設管の更生方法。   The method for rehabilitating an existing pipe according to claim 1, wherein the through hole is provided up to a position reaching the outer surface side of the existing pipe. 前記裏込め材の養生後に前記通孔を閉塞することを特徴とする請求項1または2記載の既設管の更生方法。   The method for rehabilitating an existing pipe according to claim 1 or 2, wherein the through hole is closed after curing the backfill material. 前記通孔は、前記既設管の径方向に沿って貫通するように穿孔された孔からなることを特徴とする請求項1から3のいずれかに記載の既設管の更生方法。   The said through-hole consists of a hole drilled so that it may penetrate along the radial direction of the said existing pipe, The rehabilitation method of the existing pipe in any one of Claim 1 to 3 characterized by the above-mentioned. 前記通孔は、前記既設管の径方向に沿って貫通する状態に取り付けられる通孔部材の中心孔とされることを特徴とする請求項1から3のいずれかに記載の既設管の更生方法。

The said through-hole is made into the center hole of the through-hole member attached in the state penetrated along the radial direction of the said existing pipe, The rehabilitation method of the existing pipe in any one of Claim 1 to 3 characterized by the above-mentioned. .

JP2004377667A 2004-12-27 2004-12-27 Rehabilitation of existing pipes Active JP4619111B2 (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009185852A (en) * 2008-02-05 2009-08-20 Yoshika Kk Existing pipe repairing method
JP2010264622A (en) * 2009-05-13 2010-11-25 Sekisui Chem Co Ltd Method for forming renovated pipe
JP2019019505A (en) * 2017-07-13 2019-02-07 積水化学工業株式会社 Tunnel rehabilitation method and rock bolt
JP6858386B1 (en) * 2020-08-12 2021-04-14 日本ノーディッグテクノロジー株式会社 Deformation prevention device for rehabilitation pipes and rehabilitation methods for existing pipes

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JPH02154891A (en) * 1988-12-05 1990-06-14 Sekisui Chem Co Ltd Boring method for branch pipe opening section after lining in pipe
JPH0687160A (en) * 1992-09-08 1994-03-29 Sekisui Chem Co Ltd Method of stopping water at branch joint after existing main pipe is lined
JP2001159476A (en) * 1999-09-22 2001-06-12 Sekisui Chem Co Ltd Lining construction method for existing pipe passage

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02154891A (en) * 1988-12-05 1990-06-14 Sekisui Chem Co Ltd Boring method for branch pipe opening section after lining in pipe
JPH0687160A (en) * 1992-09-08 1994-03-29 Sekisui Chem Co Ltd Method of stopping water at branch joint after existing main pipe is lined
JP2001159476A (en) * 1999-09-22 2001-06-12 Sekisui Chem Co Ltd Lining construction method for existing pipe passage

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009185852A (en) * 2008-02-05 2009-08-20 Yoshika Kk Existing pipe repairing method
JP2010264622A (en) * 2009-05-13 2010-11-25 Sekisui Chem Co Ltd Method for forming renovated pipe
JP2019019505A (en) * 2017-07-13 2019-02-07 積水化学工業株式会社 Tunnel rehabilitation method and rock bolt
JP7010610B2 (en) 2017-07-13 2022-01-26 積水化学工業株式会社 Tunnel rehabilitation method and lock bolt
JP6858386B1 (en) * 2020-08-12 2021-04-14 日本ノーディッグテクノロジー株式会社 Deformation prevention device for rehabilitation pipes and rehabilitation methods for existing pipes
JP2022032424A (en) * 2020-08-12 2022-02-25 日本ノーディッグテクノロジー株式会社 Deformation prevention device of regeneration pipe and regeneration method of existing pipe

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