JP2016169762A - Inner surface engaging joint, engaging auxiliary tool and engaging method - Google Patents

Inner surface engaging joint, engaging auxiliary tool and engaging method Download PDF

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JP2016169762A
JP2016169762A JP2015048342A JP2015048342A JP2016169762A JP 2016169762 A JP2016169762 A JP 2016169762A JP 2015048342 A JP2015048342 A JP 2015048342A JP 2015048342 A JP2015048342 A JP 2015048342A JP 2016169762 A JP2016169762 A JP 2016169762A
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gear
joint
receiving port
engaging
push bolt
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JP6579765B2 (en
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山本 雅之
Masayuki Yamamoto
雅之 山本
冨田 直岐
Naoki Tomita
直岐 冨田
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Kurimoto Ltd
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Kurimoto Ltd
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Abstract

PROBLEM TO BE SOLVED: To improve efficiency of an engaging work at an inner engaging joint and reduce working load.SOLUTION: This invention relates to an inner surface engaging joint in which a seal member 5 is compressed in a pipe axis direction and closely contacted with an inner circumferential surface of a socket 1 and an outer circumferential surface of an insertion port 2. A pressing mechanism Pof the seal member 5 includes a pushing ring 52, a pushing bolt 11 screwed into the pushing ring 52 and an engaging rod 21 held between a head part 12 of the pushing bolt 11 and a step surface 4 of the socket 1. The head part 12 of the pushing bolt 11 is formed into a gear shape and a shaft protrusion 13 protruded at one end surface of the head part 12 or the engaging rod 21 is rotatably fitted to a shaft hole 22 formed at the other end surface. The gear of the auxiliary tool A is engaged with the head part 12 of the pushing bolt 11 under a state in which the other end of the engaging rod 21 is abutted against the step surface 4, a tool engaging shaft 36 of the auxiliary tool A is rotated by a rotary tool W and the seal member 5 is compressed in a pipe axis direction through the pushing ring 52 as the pushing bolt 11 is screwed out.SELECTED DRAWING: Figure 5

Description

この発明は、水道等の管路における受口と挿し口の内面接合継手と、その接合に使用する補助工具及びこれを使用した接合方法に関するものである。   The present invention relates to an inner joint of a receiving port and an insertion port in a pipe such as a water supply, an auxiliary tool used for the joining, and a joining method using the auxiliary tool.

水道等の管路を構成するダクタイル鋳鉄管のうち、呼び径が800mm程度以上のものを接合する場合、管内に作業員が入って接合作業を行う内面接合継手が採用され(下記特許文献1参照)、このような内面接合継手として、U形やUS形が規定されている。   Among ductile cast iron pipes constituting pipes such as water pipes, when joining pipes with a nominal diameter of about 800 mm or more, an inner surface joint joint is employed in which an operator enters the pipe and performs the joining work (see Patent Document 1 below) ), U type and US type are defined as such an internally bonded joint.

一例として、US形内面接合継手の施工手順を、図7に基づいて説明する。この内面接合継手では、まず、図7(a)に示すように、受口1に挿し口2を挿入する。受口1の内周面には、開口側から奥側へかけて次第に拡径するテーパー面3と、その奥側に位置して内径が大径から小径へ変化する段面4とが形成されている。   As an example, the construction procedure of the US-type inner joint is described with reference to FIG. In this inner joint, first, as shown in FIG. 7A, the insertion port 2 is inserted into the receiving port 1. On the inner peripheral surface of the receiving port 1 are formed a tapered surface 3 that gradually increases in diameter from the opening side to the back side, and a step surface 4 that is located on the back side and whose inner diameter changes from a large diameter to a small diameter. ing.

そして、管内での作業により、受口1の内周面と挿し口2の外周面との間に、ゴム輪を用いたシール材5を挿入すると共に、シール材5を圧縮するための押圧機構Pとして、シール材5と段面4との間に割り輪51と押輪52とを嵌め入れる。割り輪51及び押輪52は、周方向に複数割りされており、施工時に分割部分を接合する。 And the press mechanism for compressing the sealing material 5 while inserting the sealing material 5 using a rubber ring between the inner peripheral surface of the receiving port 1 and the outer peripheral surface of the insertion port 2 by the operation | work in a pipe | tube. As P 2 , the split wheel 51 and the push wheel 52 are fitted between the sealing material 5 and the step surface 4. The split wheel 51 and the push wheel 52 are divided into a plurality in the circumferential direction, and the divided portions are joined at the time of construction.

これに先立ち、押輪52には、押しボルト53を管軸方向に延びるねじ穴に、段面4への対向面からねじ込んだ状態としておく。押しボルト53は、頭部に凹所54を有するものとし、周方向に複数本配置する。   Prior to this, the pusher wheel 52 is in a state where the push bolt 53 is screwed into the screw hole extending in the tube axis direction from the surface facing the step surface 4. The push bolt 53 has a recess 54 in the head, and a plurality of push bolts 53 are arranged in the circumferential direction.

次に、全ての押しボルト53のうち、3本に1本程度のものについて、図7(b)に示すように、押輪52のねじ穴に対するねじ込みを戻し、ねじの突出量を増加させるねじ出しを行い、押輪52及び割り輪51をシール材5に押し付けるように移動させる。   Next, of all the push bolts 53, about one in three, as shown in FIG. 7 (b), unscrewing into the threaded hole of the pusher wheel 52 to increase the protruding amount of the screw. And the pusher wheel 52 and the split wheel 51 are moved so as to press against the sealing material 5.

これに伴い、他の押しボルト53の頭部と段面4の隙間が拡大されるので、これらの押しボルト53を、図7(c)に示すように、頭部の凹所54と段面4との間に継ぎ棒56を挟入した状態で、ねじ出しを行う方向へ回転させ、押輪52及び割り輪51をテーパー面3の方向へ移動させて、シール材5を管軸方向に強く圧縮する。   Along with this, the gap between the head of the other push bolt 53 and the step surface 4 is enlarged, so that these push bolts 53 are connected to the recess 54 of the head and the step surface as shown in FIG. 4, with the joint rod 56 interposed therebetween, the screw is rotated in the screwing direction, the pusher wheel 52 and the split wheel 51 are moved in the direction of the tapered surface 3, and the sealing material 5 is strongly strengthened in the tube axis direction. Compress.

そして、先にねじ出ししていた押しボルト53を押輪52に一旦ねじ込み、上記と同様に継ぎ棒56を挟入した後、再びねじ出し方向へ回転させ、全ての押しボルト53によって、シール材5が均等に圧縮されるようにする。   Then, the push bolt 53 previously screwed is once screwed into the push wheel 52, and the joint rod 56 is inserted in the same manner as described above, and then rotated again in the screwing direction. To be evenly compressed.

このような作業により、シール材5が受口1のテーパー面3と挿し口2の外周面とに密着し、受口1と挿し口2との間が止水される。   By such an operation, the sealing material 5 comes into close contact with the tapered surface 3 of the receiving port 1 and the outer peripheral surface of the insertion port 2, and the water between the receiving port 1 and the insertion port 2 is stopped.

また、この内面接合継手では、受口1の内周面のテーパー面3より開口端側に突部6が形成され、さらに、受口1から挿し口2を抜け止めするため、挿し口2の外周面に突部7が形成されると共に、受口1の内周面の環状溝にロックリング8が嵌入され、ロックリング8はセットボルト9で係止されている。   Further, in this inner surface joint, a protrusion 6 is formed on the opening end side from the tapered surface 3 of the inner peripheral surface of the receiving port 1, and further, the insertion port 2 is prevented from coming off from the receiving port 1. A protrusion 7 is formed on the outer peripheral surface, and a lock ring 8 is fitted into an annular groove on the inner peripheral surface of the receiving port 1, and the lock ring 8 is locked by a set bolt 9.

実公昭63−9828号公報Japanese Utility Model Publication No. 63-9828

しかしながら、上記のような内面接合継手では、押しボルト53の頭部と受口1の段面4の隙間が狭小であることから、押しボルト53を回転させる際、電動インパクトレンチやラチェットレンチを使用することができず、スパナを頻繁に掛け替えながら少しずつ回す必要があり、非常に効率が悪いという問題がある。また、このような作業を、作業員は狭隘な管内で不自然な姿勢をとりながら行う必要があり、作業員の肉体的な負荷が大きいという問題がある。   However, since the gap between the head of the push bolt 53 and the stepped surface 4 of the receiving port 1 is narrow in the inner joint as described above, an electric impact wrench or a ratchet wrench is used when the push bolt 53 is rotated. There is a problem that it is very inefficient because it is necessary to rotate the wrench little by little while frequently changing the spanner. In addition, there is a problem that the worker is required to perform such an operation while taking an unnatural posture in a narrow pipe, and the physical load of the worker is large.

そこで、この発明は、内面接合継手における接合作業の効率を向上させ、作業負荷を軽減することを課題とする。   Therefore, an object of the present invention is to improve the efficiency of joining work in an inner joint and reduce the work load.

上記のような課題を解決するため、この発明は、受口に挿し口が挿入された管継手のシール性を確保するため、受口の内周に内径が大径から小径へ変化する段面が形成され、受口の内周面と挿し口の外周面との間に弾性を有する環状のシール材が介在し、シール材と段面との間に押圧機構が嵌入され、押圧機構の管軸方向への延伸に伴い、シール材が段面の反対側へ押圧され、管軸方向に圧縮されて、受口の内周面と挿し口の外周面とに密着するようにした内面接合継手において、前記押圧機構は、シール材と受口の段面との間に嵌入された押輪、受口の段面に対向する押輪の端面から管軸方向に延びるねじ穴にねじ込まれた押しボルト及び押しボルトの頭部と受口の段面との間に挟入された継ぎ棒から成り、押しボルトの頭部は歯車状とされ、その頭部又は継ぎ棒の一方の端面に突設された軸突起が他方に形成された軸穴に回動自在に嵌合し、継ぎ棒の他端が受口の段面に当接した状態で、押しボルトのねじ出しに伴い、押輪を介しシール材が管軸方向に圧縮されるようにしたのである。   In order to solve the problems as described above, the present invention provides a stepped surface in which the inner diameter changes from a large diameter to a small diameter on the inner periphery of the receiving port in order to ensure the sealing performance of the pipe joint in which the inserting port is inserted into the receiving port. An annular sealing material having elasticity is interposed between the inner peripheral surface of the receiving port and the outer peripheral surface of the insertion port, and a pressing mechanism is inserted between the sealing material and the step surface. Along with the extension in the axial direction, the sealing material is pressed to the opposite side of the step surface and compressed in the tube axis direction so as to be in close contact with the inner peripheral surface of the receiving port and the outer peripheral surface of the insertion port The pressing mechanism includes a press ring fitted between the sealing material and the step surface of the receiving port, a push bolt screwed into a screw hole extending in the tube axis direction from the end surface of the press wheel facing the step surface of the receiving port, and It consists of a connecting rod inserted between the head of the push bolt and the stepped surface of the receiving port, and the head of the push bolt has a gear shape. The shaft projection protruding from one end surface of the head or the connecting rod is rotatably fitted in the shaft hole formed on the other, and the other end of the connecting rod contacts the step surface of the receiving port. In this state, as the push bolt is unscrewed, the seal material is compressed in the tube axis direction via the push ring.

この内面接合継手の接合作業を管内で行うには、前記押しボルトの歯車状となった頭部に補助工具の歯車を噛合させ、補助工具の歯車を回転工具で回して、押しボルトによりシール材が圧縮されるようにする。   In order to perform the joining operation of the inner surface joint joint in the pipe, the gear of the auxiliary tool is engaged with the head of the push bolt gear, the gear of the auxiliary tool is rotated with a rotary tool, and the sealing material is pressed by the push bolt. To be compressed.

このような接合方法に使用する補助工具は、手で把持する柄部を備えたホルダーの先端側に歯車取付部が形成され、歯車取付部には、柄部側に位置する1個の第一歯車と、これに噛合してホルダーの先端側に位置する2個の第二歯車とが回動自在に軸支され、第一歯車は、その中心から延びる工具係合軸を有し、2個の第二歯車は、前記押圧機構の押しボルトの歯車状となった頭部が挟み込まれて噛合する配置とされ、工具係合軸を回し第一歯車を回転させると、2個の第二歯車が回転し、第二歯車に噛合した押しボルトが回転する構成とすればよい。   In the auxiliary tool used for such a joining method, a gear mounting portion is formed on the distal end side of a holder having a handle portion to be gripped by hand, and the gear mounting portion has one first position located on the handle portion side. A gear and two second gears meshed with the gear and positioned on the tip end side of the holder are pivotally supported. The first gear has a tool engagement shaft extending from the center thereof, and two The second gear is arranged such that the head of the pressing mechanism of the pressing mechanism which is a gear of the pressing bolt is sandwiched and meshed, and when the tool engaging shaft is rotated and the first gear is rotated, the two second gears And the push bolt meshed with the second gear rotates.

この発明に係る内面接合継手では、補助工具を使用することにより、電動インパクトレンチやラチェットレンチ等の回転工具を用いて、押しボルトを回転させ、押輪及び割り輪を介しシール材を圧縮することができるので、スパナを頻繁に掛け替えながら押しボルトを回す必要がなくなり、接合作業を効率的に行うことができ、狭い管内における作業負荷が軽減される。   In the inner surface joint according to the present invention, by using an auxiliary tool, a rotary bolt such as an electric impact wrench or a ratchet wrench can be used to rotate the push bolt and compress the sealing material via the push ring and the split ring. Therefore, it is not necessary to turn the push bolt while frequently changing the spanner, the joining work can be performed efficiently, and the work load in a narrow pipe is reduced.

この発明の実施形態に係る内面接合継手に使用する押圧機構の(a)押しボルトを示す斜視図、(b)継ぎ棒を示す斜視図(A) A perspective view showing a push bolt of a pressing mechanism used for an inner surface joint according to an embodiment of the present invention, and (b) a perspective view showing a connecting rod. 同上の補助工具の(a)裏側を示す斜視図、(b)表側を示す斜視図(A) Perspective view showing back side of auxiliary tool same as above, (b) Perspective view showing front side 同上のUS形内面接合継手の施工手順における(a)押圧機構の嵌入時の初期状態、(b)一部の押しボルトの仮ねじ出し状態を示すそれぞれ管軸方向断面図(A) Initial state at the time of insertion of the pressing mechanism in the construction procedure of the US-type inner joint joint same as above, (b) A cross-sectional view in the tube axis direction showing a temporary unscrewing state of some of the pressing bolts. 同上の押しボルトと補助工具の噛合状態を示す拡大斜視図The expansion perspective view which shows the meshing state of a push bolt same as the above and an auxiliary tool 同上の管内での回転工具による押しボルトのねじ出し作業を示す切欠斜視図Notched perspective view showing unscrewing work of push bolt with rotating tool in the pipe 同上のUS形内面接合継手の施工手順における継ぎ棒を挟入したねじ出し状態を示す管軸方向断面図Cross-sectional view in the direction of the tube axis showing the unscrewed state with the joint rod inserted in the construction procedure of the US-type inner joint as above 従来のUS形内面接合継手の施工手順における(a)押圧機構の嵌入時の初期状態、(b)一部の押しボルトの仮ねじ出し状態、(c)継ぎ棒を挟入したねじ出し状態を示すそれぞれ管軸方向断面図(A) Initial state at the time of insertion of the pressing mechanism, (b) Temporary unscrewing state of some of the push bolts, (c) Unscrewing state with the joint rod inserted, in the construction procedure of the conventional US type inner joint joint Each tube axis direction sectional view shown

以下、この発明の実施形態を添付図面に基づいて説明する。   Embodiments of the present invention will be described below with reference to the accompanying drawings.

この内面接合継手は、施工完了時に、図6に示す状態となるものであり、受口1と挿し口2の間を止水するシール材5を管軸方向へ圧縮する機構として、図7に示す従来の押圧機構Pに換えて、押圧機構Pが採用されている。押圧機構Pは、周方向に複数割りされた割り輪51及び押輪52と、受口1の段面4に対向する押輪52の端面から管軸方向に延びるねじ穴にねじ込まれた押しボルト11と、押しボルト11の頭部12と受口1の段面4との間に挟入された継ぎ棒21とから構成される。 This inner joint is in the state shown in FIG. 6 at the completion of construction. As a mechanism for compressing the sealing material 5 that stops water between the receiving port 1 and the insertion port 2 in the direction of the tube axis, FIG. Instead of the conventional pressing mechanism P 2 shown, a pressing mechanism P 1 is employed. The pressing mechanism P 1 includes a split wheel 51 and a press wheel 52 that are divided into a plurality of portions in the circumferential direction, and a push bolt 11 that is screwed into a screw hole that extends in the tube axis direction from the end surface of the press wheel 52 that faces the step surface 4 of the receiving port 1. And a joint rod 21 sandwiched between the head 12 of the push bolt 11 and the step surface 4 of the receiving port 1.

図1(a)に示すように、押しボルト11の頭部12は、通常のボルトの頭部よりも大きく、外周が歯車状に加工され、その頭部12の端面中央部には、軸線方向へ短い円柱状の軸突起13が突設されている。また、押しボルト11のねじ軸部と頭部12の間の首部14は、微調整時等、スパナが掛けられるように六角形状とされている。   As shown in FIG. 1 (a), the head 12 of the push bolt 11 is larger than the head of a normal bolt, and the outer periphery is machined into a gear shape. A short cylindrical shaft protrusion 13 is provided to protrude. Further, the neck portion 14 between the screw shaft portion of the push bolt 11 and the head portion 12 has a hexagonal shape so that a spanner can be applied during fine adjustment or the like.

また、図1(b)に示すように、継ぎ棒21の一端には、内周が円周面とされた軸穴22が形成され、軸穴22には、押しボルト11の軸突起13が回動自在に嵌められるようになっている。   As shown in FIG. 1B, a shaft hole 22 having an inner periphery that is a circumferential surface is formed at one end of the joint rod 21, and the shaft protrusion 13 of the push bolt 11 is formed in the shaft hole 22. It is designed to be pivotably fitted.

なお、軸穴22は、有底のものを図示しているが、継ぎ棒21の軸方向全長にわたって貫通していてもよい。また、押しボルト11に軸突起13を設け、継ぎ棒21に軸穴22を設けているが、押しボルト11に軸穴を設け、継ぎ棒21に軸突起を設けてもよい。   The shaft hole 22 is illustrated as having a bottom, but the shaft hole 22 may penetrate the entire length of the connecting rod 21 in the axial direction. Further, although the shaft projection 13 is provided on the push bolt 11 and the shaft hole 22 is provided on the joint rod 21, the shaft bolt may be provided on the push bolt 11 and the shaft projection may be provided on the joint rod 21.

さらに、この内面接合継手の接合作業においては、図2に示すような補助工具Aを使用する。補助工具Aは、スパナ状の外観を呈するホルダー31をベース部材とし、ホルダー31には、手で把持する柄部32の先端側に歯車取付部33が形成されている。歯車取付部33は、先端側へかけて幅が広がった後、若干幅が狭まり、先割れ状となっている。   Further, in the joining operation of the inner surface joint, an auxiliary tool A as shown in FIG. 2 is used. The auxiliary tool A uses a holder 31 having a wrench-like appearance as a base member, and the holder 31 has a gear attachment portion 33 formed on the distal end side of a handle portion 32 to be gripped by hand. The gear mounting portion 33 is narrowed slightly after being widened toward the distal end side, and has a tip crack shape.

歯車取付部33には、柄部32側に位置する1個の第一歯車34と、これに噛合してホルダー31の先端側に位置する2個の第二歯車35とが回動自在に軸支されている。第一歯車34は、その中心部から延びる工具係合軸36を有し、2個の第二歯車35は、互いに間隔をあけて、ホルダー31の先割れ部分に臨むように配置されている。工具係合軸36は、六角形状とされているので、電動インパクトレンチやラチェットレンチ等、種々のボルト締結用工具のソケットを係合させることができる。   In the gear mounting portion 33, one first gear 34 located on the handle portion 32 side and two second gears 35 meshed with the first gear 34 and located on the distal end side of the holder 31 are pivotably pivoted. It is supported. The first gear 34 has a tool engagement shaft 36 extending from the center thereof, and the two second gears 35 are arranged so as to face the cracked portion of the holder 31 with a space therebetween. Since the tool engagement shaft 36 has a hexagonal shape, various sockets for bolt fastening tools such as an electric impact wrench and a ratchet wrench can be engaged.

このような補助工具Aを使用して押圧機構Pによる内面接合継手の接合作業を管内で行うには、まず、図3(a)に示すように、受口1に挿し口2を挿入した状態で、シール材5を受口1の内周のテーパー面3と挿し口2の外周面との間に挿入する。 To perform the bonding operation of such inner surface bonded joint by the pressing mechanism P 1 using the support tool A in the tube, as shown in FIG. 3 (a), was inserted insert port 2 in socket 1 In this state, the sealing material 5 is inserted between the tapered surface 3 on the inner periphery of the receiving port 1 and the outer peripheral surface of the insertion port 2.

次に、押圧機構Pを構成するため、押輪52のねじ穴に受口1の段面4への対向面から押しボルト11をねじ込んだ状態として、割り輪51及び押輪52を、シール材5と段面4との間に順次嵌め入れる。割り輪51及び押輪52は、周方向に複数割りされているので、施工時に分割部分を接合する。 Next, in order to constitute the pressing mechanism P 1 , the split ring 51 and the pressing wheel 52 are attached to the sealing material 5 in a state in which the pressing bolt 11 is screwed into the screw hole of the pressing wheel 52 from the surface facing the stepped surface 4 of the receiving port 1. And the stepped surface 4 are sequentially inserted. Since the split wheel 51 and the push wheel 52 are divided into a plurality in the circumferential direction, the divided portions are joined at the time of construction.

次に、全ての押しボルト11のうち、3本に1本程度のものについて、図3(b)に示すように、ねじ出しを行い、軸突起13を受口1の段面4に当接させて、押輪52及び割り輪51を受口1のテーパー面3の方向へ移動させる。   Next, of all the push bolts 11, about one in three is unscrewed and the shaft protrusion 13 is brought into contact with the step surface 4 of the receiving port 1 as shown in FIG. Thus, the pusher wheel 52 and the split wheel 51 are moved in the direction of the tapered surface 3 of the receiving port 1.

このとき、図4に示すように、押しボルト11の歯車状となった頭部12を、補助工具Aの2個の第二歯車35に挟まれるようにして噛合させ、工具係合軸36を電動インパクトレンチやラチェットレンチ等の回転工具Wで回し、第一歯車34を回転させると、2個の第二歯車35が第一歯車34と逆方向に回転し、第二歯車35に噛合した押しボルト11が第一歯車34と同方向に回転する。   At this time, as shown in FIG. 4, the gear-shaped head 12 of the push bolt 11 is engaged with the two second gears 35 of the auxiliary tool A so that the tool engaging shaft 36 is engaged. When the first gear 34 is rotated by rotating with a rotary tool W such as an electric impact wrench or a ratchet wrench, the two second gears 35 rotate in the opposite direction to the first gear 34 and are engaged with the second gear 35. The bolt 11 rotates in the same direction as the first gear 34.

なお、図3(b)に示す状態で、押しボルト11が回転する際、軸突起13の端面が段面4に接触回転するが、軸突起13は、頭部12の歯車状部分よりも小径となっているので、回転抵抗が著しく大きくなることがない。   3B, when the push bolt 11 rotates, the end surface of the shaft protrusion 13 rotates in contact with the stepped surface 4, but the shaft protrusion 13 has a smaller diameter than the gear-shaped portion of the head 12. Therefore, the rotational resistance is not significantly increased.

このように一部の押しボルト11を回転させると、他の押しボルト11の頭部12と段面4の間の隙間が拡大されるので、図5及び図6に示すように、この隙間に継ぎ棒21を挟入して、押しボルト11の軸突起13を継ぎ棒21の軸穴22に嵌合させ、押しボルト11の頭部12を補助工具Aの2個の第二歯車35に噛合させた状態で、工具係合軸36を回転工具Wで回して、押しボルト11のねじ出しを行い、押輪52及び割り輪51を受口1のテーパー面3の方向へ移動させて、シール材5を管軸方向に圧縮する。   When some of the push bolts 11 are rotated in this way, the gap between the head 12 and the step surface 4 of the other push bolts 11 is enlarged. As shown in FIG. 5 and FIG. The joint rod 21 is inserted, the shaft projection 13 of the push bolt 11 is fitted into the shaft hole 22 of the joint rod 21, and the head 12 of the push bolt 11 is engaged with the two second gears 35 of the auxiliary tool A. In this state, the tool engaging shaft 36 is rotated with the rotary tool W to unscrew the push bolt 11, and the pusher wheel 52 and the split wheel 51 are moved in the direction of the tapered surface 3 of the receiving port 1, and the sealing material 5 is compressed in the tube axis direction.

そして、先にねじ出ししていた押しボルト11の頭部12を補助工具Aの2個の第二歯車35に噛合させ、工具係合軸36を回転工具Wで回して、この押しボルト11を押輪52に一旦ねじ込み、上記と同様に継ぎ棒21を挟入した後、押しボルト11を再びねじ出し方向へ回転させ、全ての押しボルト11によって、シール材5を、受口1のテーパー面3の小径側へ規定量(ダクタイル鉄管協会による規定)まで押し込み、管軸方向に圧縮して、受口1のテーパー面3と挿し口2の外周面とに密着させると、施工完了となる。   Then, the head 12 of the push bolt 11 previously screwed is engaged with the two second gears 35 of the auxiliary tool A, and the tool engaging shaft 36 is rotated by the rotary tool W, and the push bolt 11 is moved. After screwing into the pusher wheel 52 and inserting the joint rod 21 in the same manner as described above, the push bolt 11 is rotated again in the screwing direction, and the seal material 5 is tapered by the taper surface 3 of the receiving port 1 by all the push bolts 11. When a predetermined amount (specified by the Ductile Iron Pipe Association) is pushed into the small-diameter side, compressed in the tube axis direction and brought into close contact with the tapered surface 3 of the receiving port 1 and the outer peripheral surface of the insertion port 2, the construction is completed.

上記のような内面接合継手では、補助工具Aを使用することにより、電動インパクトレンチやラチェットレンチ等の回転工具Wを用いて、押しボルト11を回転させ、押輪52及び割り輪51を介しシール材5を圧縮することができるので、従来のように、スパナを頻繁に掛け替えながら押しボルトを回す必要がなくなり、接合作業を効率的に行うことができ、狭い管内における作業負荷が軽減される。   In the above-mentioned inner joint, the auxiliary tool A is used to rotate the push bolt 11 using a rotary tool W such as an electric impact wrench or a ratchet wrench, and the sealing material via the pusher wheel 52 and the split wheel 51. 5 can be compressed, so that it is not necessary to rotate the push bolt while frequently changing the spanner as in the prior art, the joining work can be performed efficiently, and the work load in a narrow pipe is reduced.

なお、押しボルト11を回転させる補助工具は、図2に示すようなものに限られず、押しボルト11の頭部12に噛合する歯車とこれを回転させる回転工具用の工具係合軸を有するものであれば、他の構成のものであってもよい。   The auxiliary tool for rotating the push bolt 11 is not limited to the one shown in FIG. 2, but has a gear that meshes with the head 12 of the push bolt 11 and a tool engagement shaft for the rotary tool that rotates the gear. Any other configuration may be used.

1 受口
2 挿し口
3 テーパー面
4 段面
5 シール材
6,7 突部
8 ロックリング
11 押しボルト
12 頭部
13 軸突起
14 首部
21 継ぎ棒
22 軸穴
31 ホルダー
32 柄部
33 歯車取付部
34 第一歯車
35 第二歯車
36 工具係合軸
51 割り輪
52 押輪
A 補助工具
押圧機構
W 回転工具
DESCRIPTION OF SYMBOLS 1 Receiving port 2 Inserting port 3 Tapered surface 4 Step surface 5 Seal material 6, 7 Protrusion part 8 Lock ring 11 Push bolt 12 Head part 13 Shaft protrusion 14 Neck part 21 Joint rod 22 Shaft hole 31 Holder 32 Handle part 33 Gear attachment part 34 First gear 35 Second gear 36 Tool engagement shaft 51 Split wheel 52 Press wheel A Auxiliary tool P 1 Press mechanism W Rotating tool

Claims (3)

受口(1)に挿し口(2)が挿入された管継手のシール性を確保するため、受口(1)の内周に内径が大径から小径へ変化する段面(4)が形成され、受口(1)の内周面と挿し口(2)の外周面との間に弾性を有する環状のシール材(5)が介在し、シール材(5)と段面(4)との間に押圧機構(P1)が嵌入され、押圧機構(P1)の管軸方向への延伸に伴い、シール材(5)が段面(4)の反対側へ押圧され、管軸方向に圧縮されて、受口(1)の内周面と挿し口(2)の外周面とに密着するようにした内面接合継手において、
前記押圧機構(P1)は、シール材(5)と受口(1)の段面(4)との間に嵌入された押輪(52)、受口(1)の段面(4)に対向する押輪(52)の端面から管軸方向に延びるねじ穴にねじ込まれた押しボルト(11)及び押しボルト(11)の頭部(12)と受口(1)の段面(4)との間に挟入された継ぎ棒(21)から成り、
押しボルト(11)の頭部(12)は歯車状とされ、その頭部(12)又は継ぎ棒(21)の一方の端面に突設された軸突起(13)が他方に形成された軸穴(22)に回動自在に嵌合し、
継ぎ棒(21)の他端が受口(1)の段面(4)に当接した状態で、押しボルト(11)のねじ出しに伴い、押輪(52)を介しシール材(5)が管軸方向に圧縮されるようにしたことを特徴とする内面接合継手。
In order to ensure the sealing performance of the fitting with the insertion port (2) inserted into the receiving port (1), a step surface (4) is formed on the inner periphery of the receiving port (1) where the inner diameter changes from a large diameter to a small diameter. An annular sealing material (5) having elasticity is interposed between the inner peripheral surface of the receiving port (1) and the outer peripheral surface of the insertion port (2), and the sealing material (5) and the step surface (4) The pressing mechanism (P 1 ) is inserted between the sealing member (5) and the sealing material (5) is pressed to the opposite side of the step surface (4) as the pressing mechanism (P 1 ) extends in the tube axis direction. In the inner surface joint joint that is compressed into the inner peripheral surface of the receiving port (1) and the outer peripheral surface of the insertion port (2),
The pressing mechanism (P 1 ) includes a push ring (52) inserted between the sealing material (5) and the step surface (4) of the receiving port (1), and a step surface (4) of the receiving port (1). A push bolt (11) screwed into a screw hole extending in the tube axis direction from the end face of the opposed presser wheel (52), a head (12) of the push bolt (11), and a step surface (4) of the receiving port (1) Consisting of a connecting rod (21) sandwiched between
The head (12) of the push bolt (11) has a gear shape, and a shaft projection (13) projecting from one end face of the head (12) or the connecting rod (21) is formed on the other. Fits in the hole (22) so that it can rotate freely.
With the other end of the connecting rod (21) in contact with the stepped surface (4) of the receiving port (1), the seal material (5) is removed via the push ring (52) as the push bolt (11) is unscrewed. An inner surface joint joint characterized by being compressed in the tube axis direction.
請求項1に記載の内面接合継手の接合作業を管内で行う接合方法であって、押しボルト(11)の歯車状となった頭部(12)に補助工具(A)の歯車を噛合させ、補助工具(A)の歯車を回転工具(W)で回して、押しボルト(11)によりシール材(5)が圧縮されるようにする内面接合継手の接合方法。   A joining method for performing the joining operation of the inner joint according to claim 1 in a pipe, wherein the gear of the auxiliary tool (A) is engaged with the gear-shaped head (12) of the push bolt (11), A method for joining an inner surface joint, wherein the gear of the auxiliary tool (A) is rotated by the rotary tool (W) so that the seal material (5) is compressed by the push bolt (11). 請求項2に記載の内面接合継手の接合方法に使用される補助工具(A)であって、手で把持する柄部(32)を備えたホルダー(31)の先端側に歯車取付部(33)が形成され、歯車取付部(33)には、柄部(32)側に位置する1個の第一歯車(34)と、これに噛合してホルダー(31)の先端側に位置する2個の第二歯車(35)とが回動自在に軸支され、第一歯車(34)は、その中心から延びる工具係合軸(36)を有し、2個の第二歯車(35)は、前記押圧機構(P1)の押しボルト(11)の歯車状となった頭部(12)が挟み込まれて噛合する配置とされ、工具係合軸(36)を回し第一歯車(34)を回転させると、2個の第二歯車(35)が回転し、第二歯車(35)に噛合した押しボルト(11)が回転するようにした内面接合継手の接合用補助工具。 It is an auxiliary tool (A) used for the joining method of the internally joined joint according to claim 2, wherein a gear mounting portion (33) is provided on the tip side of a holder (31) having a handle portion (32) gripped by hand. ) Is formed, and the gear mounting portion (33) has one first gear (34) positioned on the handle portion (32) side, and is meshed with the first gear (34) and positioned on the tip end side of the holder (31). The second gear (35) is rotatably supported, and the first gear (34) has a tool engagement shaft (36) extending from the center thereof, and the two second gears (35). Is arranged such that the gear-shaped head (12) of the pressing bolt (11) of the pressing mechanism (P 1 ) is sandwiched and meshed, and the tool engaging shaft (36) is turned to rotate the first gear (34). ), The two second gears (35) are rotated, and the push bolt (11) meshed with the second gear (35) is rotated.
JP2015048342A 2015-03-11 2015-03-11 Joining method and joining auxiliary tool for inner surface joint Expired - Fee Related JP6579765B2 (en)

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CN112033483A (en) * 2020-09-03 2020-12-04 中国石油化工股份有限公司 Steam flow measuring device and steam injection pipeline using same

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JPH0628472U (en) * 1992-09-08 1994-04-15 株式会社クボタ Pipe joint joining device

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CN110485531A (en) * 2019-04-28 2019-11-22 杭州萧宏建设环境集团有限公司 A kind of underground sewage disposal system pipeline
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