JP2011169426A - Flow control valve - Google Patents

Flow control valve Download PDF

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JP2011169426A
JP2011169426A JP2010035170A JP2010035170A JP2011169426A JP 2011169426 A JP2011169426 A JP 2011169426A JP 2010035170 A JP2010035170 A JP 2010035170A JP 2010035170 A JP2010035170 A JP 2010035170A JP 2011169426 A JP2011169426 A JP 2011169426A
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core
fluid pipe
perforation
peripheral surface
control valve
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JP5596366B2 (en
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Yoichiro Hoshino
洋一郎 星野
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Cosmo Koki Co Ltd
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Cosmo Koki Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a flow control valve maintaining passage intercepting property without requiring work time for surface machining of an inner peripheral surface of a borehole. <P>SOLUTION: The flow control valve 10 intercepting a passage of a fluid pipe 1 includes a case 2 hermetically covering the outer periphery of the fluid pipe 1 while communicating with the borehole Q bored in the fluid pipe 1, and a valve element 5 operated through the borehole Q within the case 2 by the rotation of a non-rising rotary screw 4. A core 40 of substantially cylindrical body capable of operating the valve element 5 through the inside is hermetically fitted to the inner peripheral surface of the borehole Q, and an abutting part 40b hermetically abutting on the valve element 5 is provided on the surface of the core 40. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、流体管に穿設された穿孔に連通し流体管の外周を密封状に被覆したケースと、非上昇の回転ネジの回転によりケース内にて穿孔を介して動作する弁体とを有し、流体管の流路を遮断可能な制流弁に関する。   The present invention includes a case that communicates with a perforation formed in a fluid pipe and covers the outer periphery of the fluid pipe in a sealed manner, and a valve element that operates through the perforation in the case by rotation of a non-lifting rotary screw. The present invention relates to a flow control valve that can shut off a flow path of a fluid pipe.

従来の制流弁は、ケース内にて穿孔を介し動作する弁体の表面が、流体管の内周面に密封状に当接し、更に流体管の内周面に連続する穿孔の内周面にも密封状に当接することで、流体管の流路を遮断している(例えば、特許文献1参照)。   In the conventional control valve, the inner peripheral surface of the perforation in which the surface of the valve element that operates through the perforation in the case comes into contact with the inner peripheral surface of the fluid pipe in a sealing manner and is continuous with the inner peripheral surface of the fluid pipe. In addition, the flow path of the fluid pipe is blocked by abutting in a sealed manner (see, for example, Patent Document 1).

特開2008−95795号公報(第7頁、第2図)JP 2008-95795 A (page 7, FIG. 2)

しかしながら、特許文献1にあっては、穿設加工により穿孔の内周面若しくは周縁に鋭利な部分が発生する場合があり、弁体動作の度に、弁体の表面が穿孔の穿孔面に繰り返し摺接することで、弁体の表面に傷が生じてしまい、流体管の流路遮断時の密封性を維持できない虞があるという問題がある。特に、流体管が金属製管の場合は、穿設加工による穿孔面に鋭利な部分が発生し易く、前述した虞が高まる。   However, in Patent Document 1, there is a case where a sharp portion is generated on the inner peripheral surface or the peripheral edge of the perforation due to the drilling process, and the surface of the valve body is repeatedly formed on the perforated surface of the perforation every time the valve body is operated. Due to the sliding contact, there is a problem that the surface of the valve body is damaged, and there is a possibility that the sealing performance at the time of shutting off the flow path of the fluid pipe cannot be maintained. In particular, when the fluid pipe is a metal pipe, a sharp portion is likely to be generated on the drilled surface by the drilling process, and the above-described possibility increases.

本発明は、このような問題点に着目してなされたもので、穿孔の内周面の表面加工に作業手間をかけることなく、流路の遮断性を維持できる制流弁を提供することを目的とする。   The present invention has been made paying attention to such problems, and provides a flow control valve that can maintain the blocking performance of the flow path without spending work on the surface processing of the inner peripheral surface of the perforation. Objective.

前記課題を解決するために、本発明の制流弁は、
流体管に穿設された穿孔に連通し該流体管の外周を密封状に被覆したケースと、非上昇の回転ネジの回転により前記ケース内にて前記穿孔を介し操作される弁体とを有し、前記流体管の流路を遮断可能な制流弁であって、
前記穿孔の内周面に、略筒状体であって内部を介し前記弁体を操作可能なコアが密封状に嵌設されており、該コアの表面に、前記弁体と密封状に当接する当接部が設けられていることを特徴としている。
この特徴によれば、ケース内にて流体管に穿設された穿孔を介して操作される弁体が、穿孔に直接に当接することなく、穿孔の内周面に密封状に嵌設されたコアの当接部に密封状に当接することで、穿孔との間の密封性を確保し流体管の流路を確実に遮断できる。
In order to solve the above-mentioned problem,
A case in which the outer periphery of the fluid pipe is hermetically covered, and a valve body that is operated through the perforation in the case by rotation of a non-raising rotary screw. And a flow control valve capable of blocking the flow path of the fluid pipe,
A core, which is a substantially cylindrical body and capable of operating the valve body through the inside, is fitted in a sealed manner on the inner peripheral surface of the perforation, and the core is contacted with the valve body in a sealed manner. It is characterized in that an abutting portion that comes into contact is provided.
According to this feature, the valve body operated through the perforation formed in the fluid pipe in the case is fitted in a sealed manner on the inner peripheral surface of the perforation without directly contacting the perforation. By sealingly contacting the contact portion of the core, sealing performance between the core and the perforation can be ensured, and the flow path of the fluid pipe can be reliably blocked.

本発明の制流弁は、
前記ケースに、前記穿孔の内周面に嵌設された前記コアの移動を防止する移動防止部が設けられていることを特徴としている。
この特徴によれば、移動防止部が穿孔の内周面に嵌設されたコアの移動を防止しているため、コアの内部を介して弁体を操作しても、弁体の操作に伴いコアが動いてしまうことがなく、穿孔の密封状態を維持できる。
The control valve of the present invention is
The case is characterized in that a movement preventing portion for preventing movement of the core fitted on the inner peripheral surface of the perforation is provided.
According to this feature, since the movement preventing portion prevents the movement of the core fitted on the inner peripheral surface of the perforation, even if the valve body is operated through the inside of the core, The core does not move, and the sealed state of the perforations can be maintained.

本発明の制流弁は、
前記コアは、前記流体管の外周面に係止する係止部を有しており、前記移動防止部は、前記係止部を前記流体管の外周面との間で挟む移動防止位置に配設されることを特徴としている。
この特徴によれば、流体管の外周面に係止するコアの係止部を利用して、移動防止部を、流体管外周面との間で係止部を挟む移動防止位置に配設するだけで、コアを移動防止できる。
The control valve of the present invention is
The core has a locking portion that locks to the outer peripheral surface of the fluid pipe, and the movement preventing portion is disposed at a movement preventing position that sandwiches the locking portion with the outer peripheral surface of the fluid pipe. It is characterized by being installed.
According to this feature, the movement preventing portion is disposed at a movement preventing position that sandwiches the locking portion with the outer peripheral surface of the fluid pipe by using the locking portion of the core that is locked to the outer peripheral surface of the fluid pipe. Only the core can be prevented from moving.

本発明の制流弁は、
前記移動防止部は、前記穿孔に嵌設されるコアから退避する退避位置と、前記移動防止位置との間を、移動可能に設けられていることを特徴としている。
この特徴によれば、コアを穿孔に嵌設する際には、移動防止部を退避位置に退避させることで、コアの移動を防止する移動防止部により干渉されることなく、コアを嵌設できる。
The control valve of the present invention is
The movement preventing part is provided so as to be movable between a retreat position for retreating from a core fitted in the perforation and the movement preventing position.
According to this feature, when the core is fitted into the perforation, the core can be fitted without being interfered by the movement preventing portion that prevents the movement of the core by retracting the movement preventing portion to the retracted position. .

本発明の制流弁は、
前記移動防止部は、前記ケースの外方から螺挿可能に設けられたネジであることを特徴としている。
この特徴によれば、移動防止部をケースの外方から容易に移動させることができるばかりか、移動防止部をネジとすることで汎用性が高まる。
The control valve of the present invention is
The movement preventing portion is a screw provided so as to be screwable from the outside of the case.
According to this feature, the movement preventing part can be easily moved from the outside of the case, and versatility is enhanced by using the movement preventing part as a screw.

実施例における制水弁の分岐管を組付けた状態を示す一部断面図である。It is a partial cross section figure which shows the state which assembled | attached the branch pipe of the water control valve in an Example. 流体管に穿孔を穿設した状態を示す断面図である。It is sectional drawing which shows the state which perforated | pierced the fluid pipe | tube. 穿孔にコアを嵌設した状態を示す断面図である。It is sectional drawing which shows the state which fitted the core in perforation. (a)は、コアの一部断面図であり、(b)は、コアの一部断面側面図である。(A) is a partial sectional view of a core, (b) is a partial sectional side view of a core. 制水弁が流路を開放した状態を示す断面図である。It is sectional drawing which shows the state which the water control valve opened the flow path. 図5と同じく側断面図である。FIG. 6 is a side sectional view similar to FIG. 5. 制水弁が流路を遮断した状態を示す断面図である。It is sectional drawing which shows the state which the water control valve interrupted | blocked the flow path. 図7と同じく側断面図である。FIG. 8 is a side sectional view similar to FIG. 7.

本発明に係る制流弁を実施するための形態を実施例に基づいて以下に説明する。   EMBODIMENT OF THE INVENTION The form for implementing the control valve which concerns on this invention is demonstrated below based on an Example.

実施例に係る制流弁につき、図1から図8を参照して説明する。図5ないし図8に示されるように、本発明の制流弁としての制水弁10は、主として、内部を上水が流れる流体管1の上部に穿設された上面視略円形の穿孔Qに連通し流体管1の外周を水密に被覆したケース2と、回転ネジ4の回転によりケース2内にて上下動、すなわち回転ネジ4の軸方向に操作される仕切弁である弁体5とを有し、後述のように流体管1の管路を遮断する。   The control valve according to the embodiment will be described with reference to FIGS. As shown in FIGS. 5 to 8, the water control valve 10 as the control valve of the present invention is mainly a perforation Q having a substantially circular shape in a top view formed in the upper part of the fluid pipe 1 through which clean water flows. A case 2 in which the outer periphery of the fluid pipe 1 is covered in a watertight manner, and a valve body 5 which is a gate valve operated in the vertical direction in the case 2 by the rotation of the rotary screw 4, that is, the axial direction of the rotary screw 4. And shuts off the conduit of the fluid pipe 1 as will be described later.

本実施例の流体管1は、断面視略円形状に形成された金属製管から成り、内周面がモルタル層で被覆されている。また、本実施例では流体管1内の流体は上水であるが、流体管の内部を流れる流体は必ずしも上水に限らず、例えば工業用水であってもよいし、また気体や気液混合状態の流体が流れる流体管であっても構わない。   The fluid pipe 1 of the present embodiment is made of a metal pipe formed in a substantially circular shape in cross section, and the inner peripheral surface is covered with a mortar layer. Further, in the present embodiment, the fluid in the fluid pipe 1 is clean water, but the fluid flowing in the fluid pipe is not necessarily limited to clean water, and may be industrial water, for example, or a gas or gas-liquid mixture It may be a fluid pipe through which a fluid in a state flows.

流体管1の外周面に固定に取付けられるケース2は、いわゆる割T字管であって、流体管1の管軸と略直交する上下方向の内空部を備えた分岐管12及び弁蓋3と、流体管1の外周の下側を被覆するフランジ11と、からなる。以下、制水弁10の流体管1への組付け工程順に説明する。   The case 2 fixedly attached to the outer peripheral surface of the fluid pipe 1 is a so-called split T-shaped pipe, and has a branch pipe 12 and a valve lid 3 having an inner space in the vertical direction substantially perpendicular to the pipe axis of the fluid pipe 1. And a flange 11 covering the lower side of the outer periphery of the fluid pipe 1. Hereinafter, it demonstrates in order of the assembly | attachment process to the fluid pipe | tube 1 of the water control valve 10. FIG.

図1に示されるように、先ず分岐管12とフランジ11とを、流体管1を挟む位置で対向させ、流体管1の長手方向に沿って配置された複数のボルト・ナット13により締結する。ここで、後述する穿設により流体管1内からの溢水が生じないよう、穿孔Qの外周に沿ったゴムリング22が、分岐管12の内面と流体管1の外面との間に介設されている。そして、流体管1にフランジ11、分岐管12を取付けた後に、分岐管12内に水圧を加えることで、流体管1の外面と分岐管12の内面との間隙の水密性を適宜確認してもよい。   As shown in FIG. 1, first, the branch pipe 12 and the flange 11 are opposed to each other at a position sandwiching the fluid pipe 1, and are fastened by a plurality of bolts and nuts 13 arranged along the longitudinal direction of the fluid pipe 1. Here, a rubber ring 22 along the outer periphery of the perforation Q is interposed between the inner surface of the branch pipe 12 and the outer surface of the fluid pipe 1 so that overflow from the inside of the fluid pipe 1 does not occur due to drilling described later. ing. Then, after attaching the flange 11 and the branch pipe 12 to the fluid pipe 1, water pressure is applied to the branch pipe 12 to appropriately check the water tightness of the gap between the outer surface of the fluid pipe 1 and the inner face of the branch pipe 12. Also good.

また、流体管1の管軸方向に対向する分岐管12の所定箇所に、分岐管12の管壁を貫通する雌ネジ孔12b,12bが形成されるとともに、各雌ネジ孔12bに、後述するコア40の移動を防止する移動防止部としてのネジ45が、分岐管12の外方からの螺挿により移動可能に、且つ分岐管12にパッキンを介し密封状に設けられている。各雌ネジ孔12bは、分岐管12の外方から内方に向けて、斜下方を向くように形成されている。   In addition, female screw holes 12b and 12b penetrating the tube wall of the branch pipe 12 are formed at predetermined locations of the branch pipe 12 facing the pipe axis direction of the fluid pipe 1, and each female screw hole 12b will be described later. A screw 45 as a movement preventing portion for preventing the movement of the core 40 is movable by screwing from the outside of the branch pipe 12, and is provided in a sealed manner on the branch pipe 12 via a packing. Each female screw hole 12b is formed to face obliquely downward from the outside of the branch pipe 12 to the inside.

次に、分岐管12の上フランジ12aに、図示しない弁体を介し穿孔装置(図示略)を水密に接続する。前記穿孔装置は、分岐管12内に連通する内部空間を有した連通部材と、前記連通部材内に設けられ流体管1に穿孔Qを穿設するカッタ部材と、から構成されており、前記カッタ部材を、前記連通部材そして分岐管12内を介し流体管1の外面にアプローチし、図2に示されるように、流体管1の管壁を貫通した穿孔Qを穿設する。   Next, a perforation apparatus (not shown) is connected to the upper flange 12a of the branch pipe 12 through a valve body (not shown) in a watertight manner. The perforating apparatus is composed of a communication member having an internal space communicating with the inside of the branch pipe 12, and a cutter member provided in the communication member and perforating the fluid pipe 1 with a perforation Q. The member is approached to the outer surface of the fluid pipe 1 through the communication member and the branch pipe 12, and a perforation Q penetrating the pipe wall of the fluid pipe 1 is formed as shown in FIG.

前記穿孔装置による穿孔Qの穿設後、穿孔装置に替えて、分岐管12の上フランジ12aに、図示しない弁体を介しコア40の取付装置(図示略)を水密に接続する。前記取付装置は、分岐管12内に連続する内部空間を有した連続部材と、前記連続部材内に設けられコア40を穿孔Qに向けて嵌合し設置する設置部材と、から構成されており、コア40を着脱自在に取付けた前記設置部材を、前記連続部材そして分岐管12内を介し流体管1の外面にアプローチし、図3に示されるように、コア40を穿孔Qの内周面に亘り当接するように嵌合させる。   After drilling the perforation Q by the perforating device, a mounting device (not shown) for the core 40 is connected to the upper flange 12a of the branch pipe 12 via a valve body (not shown) in a watertight manner instead of the perforating device. The attachment device is composed of a continuous member having an internal space continuous in the branch pipe 12, and an installation member provided in the continuous member for fitting and installing the core 40 toward the perforation Q. Then, the installation member with the core 40 detachably attached is approached to the outer surface of the fluid pipe 1 through the continuous member and the inside of the branch pipe 12, and as shown in FIG. It is made to fit so that it may contact | abut over.

コア40を前記設置部材により穿孔Qに向けてアプローチする際には、各ネジ45は分岐管12の外方に螺出することで、穿孔Qに嵌設されるコア40から当接せずに退避する退避位置に配置されている。   When approaching the core 40 toward the perforation Q by the installation member, each screw 45 is screwed out of the branch pipe 12 so that it does not come into contact with the core 40 fitted in the perforation Q. Arranged at the retreat position for retreat.

コア40について詳述すると、図4(a),(b)に示されるように、コア40は、略L字形状の断面が延設された芯材41と、この芯材41の全表面を被覆した弾性部材42とから成り、穿設により露出した流体管の金属素地を防錆するための防錆コアであって、穿孔Qと略同径の外周面を備え、両端部が連通開口した略筒状体である。コア40の表面である内周面と、後端側に連続するテーパ面とは、後述のように弁体5と密封状に当接する当接部40bとして設けられている。コア40の後端部に、穿孔Qよりも大径に張り出した係止部40aが形成されており、コア40の先端部は、断面視略円形状の流体管1に穿設された穿孔Qの内周面形状に沿うように、周方向に曲線形状に形成されている。   The core 40 will be described in detail. As shown in FIGS. 4A and 4B, the core 40 includes a core member 41 having a substantially L-shaped cross section and an entire surface of the core member 41. A rust-proof core comprising a coated elastic member 42 for rusting a metal base of a fluid pipe exposed by drilling, and having an outer peripheral surface having substantially the same diameter as the pierced Q, with both ends communicating open. It is a substantially cylindrical body. The inner peripheral surface that is the surface of the core 40 and the tapered surface that continues to the rear end side are provided as contact portions 40b that contact the valve body 5 in a sealing manner as will be described later. A locking portion 40a projecting larger in diameter than the perforation Q is formed at the rear end of the core 40, and the front end of the core 40 has a perforation Q drilled in the fluid pipe 1 having a substantially circular shape in cross section. It is formed in the curve shape in the circumferential direction so that the inner peripheral surface shape may be followed.

図3に示されるように、コア40は、その外周面が流体管1の金属素地が露出した穿孔Qの内周面に周方向に亘り密接するとともに、係止部40aの下面が穿孔Q周縁である流体管1の外周面に当接する嵌合位置に於いて、穿孔Qに嵌設される。   As shown in FIG. 3, the core 40 has its outer peripheral surface closely in contact with the inner peripheral surface of the perforated Q where the metal substrate of the fluid pipe 1 is exposed in the circumferential direction, and the lower surface of the locking portion 40a is the peripheral edge of the perforated Q. In the fitting position where the fluid pipe 1 is in contact with the outer peripheral surface, the perforation Q is fitted.

次に、各ネジ45を、分岐管12内方に向けて螺入することで、ネジ45の先端部を係止部40aの上面に当接させコア40の移動を防止する移動防止位置に移動させる(図3白抜矢印参照)。すなわち、ネジ45を移動防止位置に移動させ、コア40の係止部40aを、流体管1の外周面とネジ45の先端部との間で挟むことで、コア40の前記嵌合位置からの移動が防止される。   Next, each screw 45 is screwed inwardly into the branch pipe 12 to move to a movement preventing position where the tip of the screw 45 is brought into contact with the upper surface of the locking portion 40a to prevent the core 40 from moving. (See the white arrow in FIG. 3). That is, the screw 45 is moved to the movement preventing position, and the engaging portion 40a of the core 40 is sandwiched between the outer peripheral surface of the fluid pipe 1 and the tip end portion of the screw 45, so that the core 40 is moved away from the fitting position. Movement is prevented.

図5,6に示されるように、分岐管12の上フランジ12aに弁蓋3を密封状に組付ける。弁蓋3は分岐管12の内径より小径の外径を有しており、弁蓋3の下部は、分岐管12の内周面に沿って嵌挿されている。弁蓋3の底面と下部外周面は、分岐管12の内上面と内周面にそれぞれ当接されており、この当接面の水密性を高くするよう、弁蓋3下部の外周面に可撓性材質のOリング19が設けられる。また弁蓋3を定置させるよう、リング状のフランジ9が弁蓋3に挿入され、固定ボルト16で位置固定を行いながら、ボルト・ナット14でフランジ9と分岐管12とを締結する。また、弁蓋3の頂部には挿通孔32が穿設されている。   As shown in FIGS. 5 and 6, the valve lid 3 is assembled in a sealed manner on the upper flange 12 a of the branch pipe 12. The valve lid 3 has an outer diameter smaller than the inner diameter of the branch pipe 12, and the lower part of the valve lid 3 is fitted along the inner peripheral surface of the branch pipe 12. The bottom surface and the lower outer peripheral surface of the valve lid 3 are in contact with the inner upper surface and the inner peripheral surface of the branch pipe 12, respectively, and the outer peripheral surface of the lower portion of the valve lid 3 is possible to increase the water tightness of the contact surface. A flexible material O-ring 19 is provided. Further, a ring-shaped flange 9 is inserted into the valve lid 3 so that the valve lid 3 is fixed, and the flange 9 and the branch pipe 12 are fastened with bolts and nuts 14 while fixing the position with the fixing bolt 16. An insertion hole 32 is formed in the top of the valve lid 3.

回転ネジ4は、弁蓋3の挿通孔32に回転自在に貫通して、上端部を弁蓋3の外部に突出して取り付けられている。押え板33は、弁蓋3の上端面に図示しないボルトで固定され、回転ネジ4の抜出しを阻止する。上記構成により、回転ネジ4はケース2に対し正逆両方向に回転自在であるが上下動はない。4bは、回転ネジ4の上端部を除いて略全長に亘ってその周面が螺設されたネジ部である。ネジこま25は、後述する弁体5の上端部に形成されたガイド溝21に嵌合されるとともに、ネジ部4bに螺合されており、回転ネジ4の上端部に形成された回転操作部4aを回転させると、それに応じてネジ部4bが回転することにより、ネジこま25に追随して弁体5が上下動可能となる。   The rotating screw 4 is rotatably attached to the insertion hole 32 of the valve lid 3 and has an upper end projecting from the valve lid 3 so as to protrude. The holding plate 33 is fixed to the upper end surface of the valve lid 3 with a bolt (not shown) and prevents the rotation screw 4 from being pulled out. With the above configuration, the rotating screw 4 is rotatable in both forward and reverse directions with respect to the case 2 but does not move up and down. Reference numeral 4b denotes a screw portion having a circumferential surface screwed over substantially the entire length except for the upper end portion of the rotary screw 4. The screw top 25 is fitted in a guide groove 21 formed in the upper end portion of the valve body 5 to be described later, and is screwed into the screw portion 4 b, and a rotation operation portion formed in the upper end portion of the rotary screw 4. When the 4a is rotated, the screw portion 4b is rotated accordingly, so that the valve body 5 can be moved up and down following the screw top 25.

図5に示されるように、弁体5は、鋳物や鋼材などにより形成された弁本体6と、ゴム部として弾性体より形成されるゴム体7とから成る。弁本体6は、回転ネジ4のネジ部4bを挿入する挿入孔31が形成された基部6aと、基部6aから延設され流体管1の穿孔Qを閉塞する蓋部6bと、流体管1の上下流側に対向配置するように基部6aから延設された一対の弁板部6c、6cから成る。   As shown in FIG. 5, the valve body 5 includes a valve main body 6 formed of a casting or steel material, and a rubber body 7 formed of an elastic body as a rubber portion. The valve body 6 includes a base portion 6a in which an insertion hole 31 into which the screw portion 4b of the rotary screw 4 is inserted, a lid portion 6b extending from the base portion 6a and closing the perforation Q of the fluid pipe 1, and the fluid pipe 1 It consists of a pair of valve-plate parts 6c and 6c extended from the base 6a so that it may oppose on the upstream and downstream sides.

また、弁本体6の基部6aにおける上下流側の外面に、上下方向に沿った鍔部8、8が、ケース2を構成する弁蓋3若しくは分岐管12の内面に上下方向に設けられた溝部(図示略)内に摺接可能に延設されている。   Further, on the outer surface on the upstream / downstream side of the base portion 6a of the valve body 6, the flange portions 8 and 8 along the vertical direction are provided in the vertical direction on the inner surface of the valve lid 3 or the branch pipe 12 constituting the case 2. (Not shown) extends in a slidable manner.

ゴム体7は、一対の弁板部6c、6cの対向面間に挟持されるとともに、管軸方向視弁板部6cより径方向に膨出して、弁板部6c、6c、蓋部6bそして基部6aの略全表面を被覆して形成され、流体管1の内周面及び穿孔Qの周面に沿って水密に当接するように成っている。また、弁板部6cは、弁板部6cの略全表面(図示斜線部)に塗布された離型剤を介してゴム体7により被覆されており、この離型剤により弁板部6cとゴム体7との互いの密着が防止されている。   The rubber body 7 is sandwiched between the opposed surfaces of the pair of valve plate portions 6c, 6c, and bulges in the radial direction from the tube-axis-direction valve plate portion 6c, so that the valve plate portions 6c, 6c, the lid portion 6b, and It is formed so as to cover substantially the entire surface of the base 6a, and is in watertight contact with the inner peripheral surface of the fluid pipe 1 and the peripheral surface of the perforation Q. Further, the valve plate portion 6c is covered with a rubber body 7 via a release agent applied to substantially the entire surface (shaded portion in the figure) of the valve plate portion 6c. The close contact with the rubber body 7 is prevented.

このようにすることで、ゴム体7が、離型剤により弁板部6cに対して密着していないため、回転ネジ4の回転により弁体5を流体管1に向かって仕切り動作する際に(図5参照)、流体管1の内周面に追随して弾性変形し易い。特に、ゴム体7が、上下流側に対向配置された弁板部6c、6cにより挟持されているため、ゴム体7の上下流側に向けての膨出は拘束され、径方向、即ち流体管1の内周面に向かって膨出し、流体管1の内周面に亘って十分に水密性を維持できる。   By doing so, since the rubber body 7 is not in close contact with the valve plate portion 6c by the release agent, when the valve body 5 is partitioned toward the fluid pipe 1 by the rotation of the rotating screw 4, (Refer to FIG. 5), it is easy to elastically deform following the inner peripheral surface of the fluid pipe 1. In particular, since the rubber body 7 is sandwiched between the valve plate portions 6c and 6c disposed opposite to the upstream and downstream sides, the bulging toward the upstream and downstream sides of the rubber body 7 is restricted, and the radial direction, that is, the fluid It swells toward the inner peripheral surface of the pipe 1, and the water tightness can be sufficiently maintained over the inner peripheral surface of the fluid pipe 1.

上記構成を有する制水弁10の機能を説明すると、図5ないし図8に示すように、制水弁10は、非上昇の回転ネジ4の回転により、鍔部8、8が、ケース2内面に設けられた前記した溝部の内側壁(図示略)と当接することで自身の回転を止めつつ、ネジ部4bに螺合されたネジこま25とともにケース2内部を上下動されるようになっており、弁体5をケース2内で上昇させた場合に、回転ネジ4の一部を挿入孔31内に収容できるように成っている(図5,6参照)。   The function of the water control valve 10 having the above configuration will be described. As shown in FIGS. 5 to 8, the water control valve 10 is configured such that the flanges 8 and 8 are brought into contact with the inner surface of the case 2 by the rotation of the non-raising rotary screw 4. The inside of the case 2 is moved up and down together with the screw top 25 screwed into the screw portion 4b while stopping its rotation by abutting against the inner wall (not shown) of the groove portion provided in the above. When the valve body 5 is raised in the case 2, a part of the rotating screw 4 can be accommodated in the insertion hole 31 (see FIGS. 5 and 6).

また、弁体5をケース2内で下降させた場合に、弁板部6c、6cの対向面間に挟持されるとともに管軸方向視弁板部6cより径方向に膨出したゴム体7が、流体管1の内周面に周方向に沿って密封状に当接するとともに、蓋部6bを被覆したゴム体7が、流体管1の穿孔Qに嵌設されたコア40の内周面に沿って密封状に当接することで、流体管1の管路を遮断する。   Further, when the valve body 5 is lowered in the case 2, the rubber body 7 that is sandwiched between the opposed surfaces of the valve plate portions 6c and 6c and bulges in the radial direction from the valve-axis direction valve plate portion 6c is formed. The rubber body 7 that seals against the inner circumferential surface of the fluid pipe 1 along the circumferential direction and covers the lid portion 6 b is formed on the inner circumferential surface of the core 40 that is fitted in the perforation Q of the fluid pipe 1. A pipe line of the fluid pipe 1 is blocked by abutting in a sealed manner along the pipe.

以上、説明したように、穿孔Qの内周面に、略筒状体であって内部を介し弁体5を操作可能なコア40が密封状に嵌設されており、コア40の弾性部材42の表面に、弁体5と密封状に当接する当接部40bが設けられていることで、ケース2内にて流体管1に穿設された穿孔Qを介して操作される弁体5が、穿孔Qに直接に当接することなく、穿孔Qの内周面に密封状に嵌設されたコア40の当接部40bに密封状に当接することで、穿孔Qとの間の密封性を確保し流体管1の流路を確実に遮断できる。   As described above, the core 40 which is a substantially cylindrical body and can operate the valve body 5 through the inside is sealed and fitted on the inner peripheral surface of the perforation Q, and the elastic member 42 of the core 40 is provided. Since the contact portion 40b that comes into contact with the valve body 5 in a sealing manner is provided on the surface of the valve body 5, the valve body 5 operated through the perforation Q formed in the fluid pipe 1 in the case 2 is provided. By sealingly contacting the abutting portion 40b of the core 40 fitted in a sealing manner on the inner peripheral surface of the perforation Q without directly abutting on the perforation Q, a sealing property between the perforation Q can be obtained. The flow path of the fluid pipe 1 can be reliably cut off.

また、ケース2の分岐管12に、穿孔Qの内周面に嵌設されたコア40の移動を防止する移動防止部としてのネジ45が設けられていることで、ネジ45が穿孔Qの内周面に嵌設されたコア40の移動を防止しているため、コア40の内部を介して弁体5を操作しても、弁体5の操作に伴いコア40が動いてしまうことがなく、穿孔Qの密封状態を維持できる。   Further, the branch pipe 12 of the case 2 is provided with a screw 45 as a movement preventing portion for preventing the movement of the core 40 fitted on the inner peripheral surface of the perforation Q. Since the movement of the core 40 fitted on the peripheral surface is prevented, even if the valve body 5 is operated via the inside of the core 40, the core 40 does not move with the operation of the valve body 5. The sealed state of the perforations Q can be maintained.

また、流体管1の外周面に係止するコア40の係止部40aを利用して、ネジ45を、流体管1外周面との間で係止部40aを挟む移動防止位置に配設するだけで、コア40を移動防止できる。   Further, the screw 45 is disposed at a movement preventing position that sandwiches the locking portion 40a with the outer peripheral surface of the fluid pipe 1 by using the locking portion 40a of the core 40 that is locked to the outer peripheral surface of the fluid pipe 1. Only the core 40 can be prevented from moving.

更に、コア40を穿孔Qに嵌設する際には、ネジ45を前述した退避位置に退避させることで、コア40の移動を防止するネジ45により干渉されることなく、コア40を嵌設できる。   Further, when the core 40 is fitted into the perforation Q, the core 40 can be fitted without being interfered by the screw 45 that prevents the movement of the core 40 by retracting the screw 45 to the retracted position described above. .

また、本発明の移動防止部が、ケース2の外方から螺挿可能に設けられたネジ45であることで、移動防止部をケース2の外方から容易に移動させることができるばかりか、移動防止部をネジ45とすることで汎用性が高まる。   Further, since the movement preventing portion of the present invention is the screw 45 provided so as to be screwable from the outside of the case 2, the movement preventing portion can be easily moved from the outside of the case 2, By using the screw 45 as the movement preventing portion, versatility is enhanced.

以上、本発明の実施例を図面により説明してきたが、具体的な構成はこれら実施例に限られるものではなく、本発明の要旨を逸脱しない範囲における変更や追加があっても本発明に含まれる。   Although the embodiments of the present invention have been described with reference to the drawings, the specific configuration is not limited to these embodiments, and modifications and additions within the scope of the present invention are included in the present invention. It is.

例えば、前記実施例では、制流弁としての制水弁10の弁体5は、ケース2内で回転ネジ4の軸方向に操作される仕切弁であったが、本発明の弁体は、流体管の流路の遮断時にコアの当接部と密封状に当接する構成を有していれば、例えば軸回りに回転操作されることで流路を遮断するいわゆるバタフライ弁等であってもよい。   For example, in the above embodiment, the valve body 5 of the water control valve 10 as the flow control valve is a gate valve operated in the axial direction of the rotary screw 4 in the case 2, but the valve body of the present invention is As long as it has a configuration that comes into contact with the contact portion of the core in a sealed manner when the flow path of the fluid pipe is shut off, for example, a so-called butterfly valve that shuts off the flow path by being rotated around an axis may be used. Good.

また例えば、前記実施例では、流体管1が金属製の管であって、コア40が流体管1に穿設された穿孔Qを防錆する防錆コアであるが、流体管の材質若しくはコアの用途は必ずしも本実施例に限られず、例えば流体管が塩ビ管等の樹脂製の管であるとともに、コアが前記樹脂製の管に穿設された穿孔の周囲を強度補強する用途で設けられるコアであっても構わない。   Further, for example, in the above-described embodiment, the fluid pipe 1 is a metal pipe, and the core 40 is a rust-proof core that rusts the perforation Q formed in the fluid pipe 1. The use of is not necessarily limited to the present embodiment, and for example, the fluid pipe is a resin pipe such as a vinyl chloride pipe, and the core is provided for the purpose of reinforcing the strength of the periphery of the perforation formed in the resin pipe. The core may be used.

また例えば、前記実施例では、移動防止部としてネジ45がケース2外方から螺挿可能に設けられているが、例えば移動防止部として板形状等の係止片が、コアの上面を係止可能に設けられていてもよい。   Further, for example, in the embodiment, the screw 45 is provided as a movement preventing portion so as to be screwable from the outside of the case 2, but for example, a plate-like locking piece is used as the movement preventing portion to lock the upper surface of the core. It may be provided.

更に例えば、前記実施例では、移動防止部としてネジ45が、穿孔Qに嵌設されるコア40から退避する待避位置と、穿孔Qに嵌設されたコア40の移動を防止する移動防止位置との間を移動可能に設けられているが、例えば移動防止部が、当初から前記移動防止位置に固設されており、コアが、前記移動防止位置に於ける移動防止部との干渉を避けながら、穿孔に嵌設されてもよい。   Further, for example, in the above-described embodiment, the screw 45 as the movement preventing portion is retracted from the core 40 fitted in the perforation Q, and the movement preventing position for preventing the movement of the core 40 fitted in the perforation Q. For example, the movement prevention unit is fixed to the movement prevention position from the beginning, and the core avoids interference with the movement prevention unit at the movement prevention position. It may be fitted in the perforation.

1 流体管
2 ケース
4 回転ネジ
5 弁体
7 ゴム体
10 制水弁(制流弁)
12 分岐管
12b 雌ネジ孔
40 コア
40a 係止部
40b 当接部
45 ネジ(移動防止部)
1 Fluid pipe 2 Case 4 Rotating screw 5 Valve body 7 Rubber body 10 Water control valve (control valve)
12 branch pipe 12b female screw hole 40 core 40a locking part 40b contact part 45 screw (movement preventing part)

Claims (5)

流体管に穿設された穿孔に連通し該流体管の外周を密封状に被覆したケースと、非上昇の回転ネジの回転により前記ケース内にて前記穿孔を介し操作される弁体とを有し、前記流体管の流路を遮断可能な制流弁であって、
前記穿孔の内周面に、略筒状体であって内部を介し前記弁体を操作可能なコアが密封状に嵌設されており、該コアの表面に、前記弁体と密封状に当接する当接部が設けられていることを特徴とする制流弁。
A case in which the outer periphery of the fluid pipe is hermetically covered, and a valve body that is operated through the perforation in the case by rotation of a non-raising rotary screw. And a flow control valve capable of blocking the flow path of the fluid pipe,
A core, which is a substantially cylindrical body and capable of operating the valve body through the inside, is fitted in a sealed manner on the inner peripheral surface of the perforation, and the core is contacted with the valve body in a sealed manner. A flow control valve characterized in that a contact portion is provided.
前記ケースに、前記穿孔の内周面に嵌設された前記コアの移動を防止する移動防止部が設けられていることを特徴とする請求項1に記載の制流弁。   2. The flow control valve according to claim 1, wherein the case is provided with a movement preventing portion that prevents movement of the core fitted on the inner peripheral surface of the perforation. 前記コアは、前記流体管の外周面に係止する係止部を有しており、前記移動防止部は、前記係止部を前記流体管の外周面との間で挟む移動防止位置に配設されることを特徴とする請求項2に記載の制流弁。   The core has a locking portion that locks to the outer peripheral surface of the fluid pipe, and the movement preventing portion is disposed at a movement preventing position that sandwiches the locking portion with the outer peripheral surface of the fluid pipe. The flow control valve according to claim 2, wherein the flow control valve is provided. 前記移動防止部は、前記穿孔に嵌設されるコアから退避する退避位置と、前記移動防止位置との間を、移動可能に設けられていることを特徴とする請求項3に記載の制流弁。   The said movement prevention part is provided so that it can move between the retreat position which retracts | saves from the core fitted by the said perforation, and the said movement prevention position, The flow control of Claim 3 characterized by the above-mentioned. valve. 前記移動防止部は、前記ケースの外方から螺挿可能に設けられたネジであることを特徴とする請求項4に記載の制流弁。   The flow restricting valve according to claim 4, wherein the movement preventing portion is a screw provided so as to be screwable from the outside of the case.
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JP2012013162A (en) * 2010-07-01 2012-01-19 Cosmo Koki Co Ltd Flow control valve of fluid pipe
EP3385581A4 (en) * 2016-12-21 2019-03-20 Jae Hyun Kim Gate valve having disk replacement structure
KR102236819B1 (en) * 2019-12-04 2021-04-06 이호건 Watertight protection passage with integrated structure

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JP2012013162A (en) * 2010-07-01 2012-01-19 Cosmo Koki Co Ltd Flow control valve of fluid pipe
EP3385581A4 (en) * 2016-12-21 2019-03-20 Jae Hyun Kim Gate valve having disk replacement structure
KR102236819B1 (en) * 2019-12-04 2021-04-06 이호건 Watertight protection passage with integrated structure

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