JP2010144788A - Check valve cartridge - Google Patents

Check valve cartridge Download PDF

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JP2010144788A
JP2010144788A JP2008320919A JP2008320919A JP2010144788A JP 2010144788 A JP2010144788 A JP 2010144788A JP 2008320919 A JP2008320919 A JP 2008320919A JP 2008320919 A JP2008320919 A JP 2008320919A JP 2010144788 A JP2010144788 A JP 2010144788A
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valve
seal
cartridge
seal member
check valve
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JP5252633B2 (en
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Keiichi Nakai
敬一 中井
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Kitz Corp
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Kitz Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a cartridge check valve capable of maintaining high sealing performance when a reverse flow is prevented for a long term by securing sealing performance while preventing back leakage when the valve is closed. <P>SOLUTION: The check valve cartridge includes a valve element 6 which is brought into contact with an annular sealing member 4 provided in a cartridge body 1 with a valve box 2 and a disk holder 3 by a resilient force of a spring 5 in the flow direction. The check valve cartridge forms a seal storing part 8 for storing a sealing member 4 by the valve box 2 and the disk holder 3. The sealing member 4 is formed of a clamping part 11 of a clamping and storing range D<SB>1</SB>stored in the sealing storing part 8 and a swollen section 12 of a swollen range D<SB>2</SB>swollen into the flow passage 7. An inclined surface part 22 provided in the valve element 6 is brought into contact with the swollen section 12 of the sealing member 4 to seal. A primary side of the swollen section 12 is brought into contact with a vertical surface 16 of the valve box 2. An inclined part 10 formed in the clamping and storing range D<SB>1</SB>of the sealing member 4 is brought into contact with a tapered surface 9 provided in a deep side of the sealing storing part 8. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、例えば、ボールバルブ等の流路に内蔵されて流体の逆止機能を発揮する逆止弁カートリッジに関する。   The present invention relates to a check valve cartridge that is built into a flow path such as a ball valve and exhibits a check function of fluid.

従来より、この種の逆止弁カートリッジは、ボールバルブ等の二次側に内蔵されて流体の逆流を防ぎ、また、ボールバルブ等に対して着脱可能になっていることにより保守や交換が可能になっている。この種の逆止弁カートリッジとして、例えば、特許文献1のカートリッジ式逆止弁や、特許文献2の逆止弁取付構造に開示されたものがある。これらの逆止弁カートリッジでは、通常、ゴム製のジスクシートがジスクホルダと弁箱との間に装着された構造になっている。ジスクシートは、内径側にリップ形状の弁座部を有しており、この弁座部に対して内部に装着された弁体が二次側の流体により圧接して、逆止時の水密性が確保されるようになっている。   Conventionally, this type of check valve cartridge is built in the secondary side of a ball valve, etc. to prevent backflow of fluid, and can be maintained and replaced by being removable from the ball valve etc. It has become. Examples of this type of check valve cartridge include those disclosed in the cartridge type check valve of Patent Document 1 and the check valve mounting structure of Patent Document 2. These check valve cartridges usually have a structure in which a rubber disc sheet is mounted between a disc holder and a valve box. The disc seat has a lip-shaped valve seat part on the inner diameter side, and the valve body mounted inside is pressed against the valve seat part by the fluid on the secondary side, so that the water tightness at the time of non-return is obtained. It is to be secured.

そして、この逆止弁の逆止時には、流体がジスクシートとカートリッジ本体との間から漏れる、いわゆる、裏漏れが発生するおそれがある。その対策として、ジスクシートは、予めジスクホルダと弁箱との間に押し潰されてこれらに密着した状態で装着されている。また、特許文献3においては、突起部位を有する2つの装着部材にジスクシートが挟着され、装着部材を締付けて突起部位をジスクシートに食い込ませることでシール部材の水密性を高める構造になっている。   At the time of check of this check valve, there is a risk that fluid leaks from between the disc sheet and the cartridge body, so-called back leakage. As a countermeasure, the disc sheet is mounted in a state in which it is crushed between the disc holder and the valve box in advance and in close contact therewith. In Patent Document 3, a disc sheet is sandwiched between two mounting members each having a protruding portion, and the sealing member is tightened so that the protruding portion bites into the disc sheet, thereby improving the water tightness of the seal member.

特開昭59−37375号公報JP 59-37375 A 特開2007−170630号公報JP 2007-170630 A 特開2006−119100号公報JP 2006-119100 A

しかしながら、特許文献1、2においては、ジスクシートがジスクホルダと弁箱との間に装着され、また、同文献3においては、ジスクシートが装着部材の間に挟まれて、これらのジスクシートが常に潰された状態になっているため、ゴム素材の圧縮永久歪によって弾性力が低下してシール性が失われることがある。これにより、同文献1〜3の逆止弁カートリッジは、ジスクシートの裏側から経年的に裏漏れが発生するおそれがある。   However, in Patent Documents 1 and 2, the disc sheet is mounted between the disc holder and the valve box, and in Patent Document 3, the disc sheet is sandwiched between mounting members, and these disc sheets are always crushed. Since it is in a state, the elastic force may be reduced by the compression set of the rubber material, and the sealing performance may be lost. As a result, the check valve cartridges of the literatures 1 to 3 may cause back leakage over time from the back side of the disk seat.

また、このような挟着構造によりシール部材を装着すると、弁体によりリップ形状の弁座部が外側に押し出されるため、弁体の開閉回数が増えると弁体の接触によって弁座部に劣化が生じることがある。弁体は軸方向に移動して弁座部に接触するため、弁体の一部が劣化した場合でも逆止動作時にはこの弁座部に対して弁体が均等に接触できなくなり水密性を確保することが難しくなる。   In addition, when the sealing member is mounted with such a sandwich structure, the valve seat pushes the lip-shaped valve seat portion outward, so that the valve seat portion deteriorates due to contact of the valve body when the number of opening and closing of the valve body increases. May occur. Since the valve element moves in the axial direction and contacts the valve seat, even if a part of the valve element deteriorates, the valve element cannot contact the valve seat evenly during check operation, ensuring water tightness. It becomes difficult to do.

本発明は、従来の課題点を解決するために開発したものであり、その目的とするところは、弁閉時における裏漏れを防止しつつ、密封性を確保して長期に渡って逆止め時の高シール性を維持できる逆止弁カートリッジを提供することにある。   The present invention has been developed in order to solve the conventional problems, and the object of the present invention is to prevent the back leakage when the valve is closed, while ensuring the sealing property and for the long-term check. It is an object of the present invention to provide a check valve cartridge capable of maintaining a high sealing performance.

前記目的を達成するため、請求項1に係る発明は、弁箱とジスクホルダとから成るカートリッジ本体内に設けた環状のシール部材にスプリングの流路方向への弾発力で当接する弁体を設けた逆止弁カートリッジにおいて、弁箱とジスクホルダとによりシール部材を収容するシール収容部を形成し、シール部材は、シール収容部に収容する挟持収容領域の挟持部と流路内へ膨出させた膨出領域の膨出部とからなり、弁体に設けた傾斜面部をシール部材の膨出部に当接シールさせると共に、膨出部の一次側を前記弁箱の垂直面に当接させ、シール収容部の奥部側に設けたテーパ面にシール部材の挟持収容領域に形成した傾斜部を当接させた逆止弁カートリッジである。   In order to achieve the above-mentioned object, the invention according to claim 1 is provided with a valve body that abuts on an annular seal member provided in a cartridge body comprising a valve box and a disc holder by an elastic force in a spring flow direction. In the check valve cartridge, the valve housing and the disc holder form a seal housing portion that houses the seal member, and the seal member is expanded into the sandwiching portion of the sandwiching housing region that is housed in the seal housing portion and into the flow path. A bulging portion of the bulging region, and abutting and sealing the inclined surface portion provided on the valve body to the bulging portion of the seal member, and bringing the primary side of the bulging portion into contact with the vertical surface of the valve box, This is a check valve cartridge in which an inclined portion formed in a holding housing area of the seal member is brought into contact with a tapered surface provided on the back side of the seal housing portion.

請求項2に係る発明は、シール部材の挟持収容領域の挟持部は、常時においてシール収容部内に押し潰されることなく装着されている逆止弁カートリッジである。   The invention according to claim 2 is the check valve cartridge in which the clamping portion of the clamping housing area of the seal member is always mounted without being crushed in the seal housing portion.

請求項3に係る発明は、シール部材の傾斜部の角度を弁体の傾斜面部の角度より僅かに小さくした逆止弁カートリッジである。   The invention according to claim 3 is the check valve cartridge in which the angle of the inclined portion of the seal member is slightly smaller than the angle of the inclined surface portion of the valve body.

請求項4に係る発明は、膨出部の二次側外周に傾斜面を設け、この傾斜面を、弁体の傾斜面部と略直交する角度に形成した逆止弁カートリッジである。   The invention according to claim 4 is a check valve cartridge in which an inclined surface is provided on the secondary side outer periphery of the bulging portion, and the inclined surface is formed at an angle substantially orthogonal to the inclined surface portion of the valve body.

請求項1に係る発明によると、逆流圧により弁体の傾斜面部がシール部材の膨出部に当接シールしたときに、シール部材が弁箱の垂直面とテーパ面とに当接し、この相乗効果によって確実にシール部材と弁箱との間からの裏漏れを防止でき、密封性を確保して長期に渡って高シール性を確保できる逆止弁カートリッジを提供できる。   According to the first aspect of the present invention, when the inclined surface portion of the valve body abuts against the bulging portion of the seal member due to the backflow pressure, the seal member abuts on the vertical surface and the tapered surface of the valve box, and this synergistic effect is obtained. According to the effect, it is possible to reliably prevent back leakage from between the seal member and the valve box, and it is possible to provide a check valve cartridge capable of ensuring sealing performance and ensuring high sealing performance over a long period of time.

請求項2に係る発明によると、挟持部が変形したり劣化したりすることが防がれ、弁体とシール部材とのシール時における裏漏れ防止機能を保持できる。   According to the invention which concerns on Claim 2, it can prevent that a clamping part deform | transforms or deteriorates, and can maintain the back-leakage prevention function at the time of sealing with a valve body and a sealing member.

請求項3に係る発明によると、クサビ作用を働かせながら傾斜部をテーパ面に当接させることができ、シール部材とシール収容部との密着シール性を向上させて裏漏れを防ぐことが可能である。   According to the invention of claim 3, the inclined portion can be brought into contact with the taper surface while the wedge action is exerted, and the tight sealability between the seal member and the seal housing portion can be improved to prevent back leakage. is there.

請求項4に係る発明によると、膨出部が変形することを防ぐことができ、弁体とシール部材とを強く密着させて水密性を向上できる。また、弁体からシール部材に力が加わる際に、この力を傾斜面によってガイドさせながら伝達させることができ、シール収容部に対してより強くシール部材を密着させて裏漏れを防止できる。   According to the invention which concerns on Claim 4, it can prevent that a bulging part deform | transforms and can make a valve body and a sealing member closely_contact | adhere closely, and can improve watertightness. Further, when force is applied from the valve body to the seal member, this force can be transmitted while being guided by the inclined surface, and the seal member can be tightly adhered to the seal housing portion to prevent back leakage.

以下に、本発明における逆止弁カートリッジの実施形態を図面に基づいて詳細に説明する。
図1、4においては、本発明の逆止弁カートリッジの好ましい一例を示している。カートリッジ本体1は、弁箱2とジスクホルダ3とからなっている。そして、このカートリッジ本体1内にはシール部材4と、スプリング5と、弁体6とが設けられ、弁体6がスプリング5のカートリッジ本体1における流路7方向(ジスクホルダ3から弁箱2に向かう方向)への弾発力によりシール部材4に当接する構造になっている。また、弁箱2とジスクホルダ3とにより、シール収容部8が設けられ、このシール収容部8にシール部材4が収容されている。
Embodiments of a check valve cartridge according to the present invention will be described below in detail with reference to the drawings.
1 and 4 show a preferred example of the check valve cartridge of the present invention. The cartridge main body 1 includes a valve box 2 and a disk holder 3. The cartridge body 1 is provided with a seal member 4, a spring 5, and a valve body 6. The valve body 6 is directed toward the flow path 7 of the spring 5 in the cartridge body 1 (from the disk holder 3 toward the valve box 2). The seal member 4 is in contact with the elastic force in the direction). The valve housing 2 and the disk holder 3 provide a seal housing portion 8 in which the seal member 4 is housed.

シール収容部8は、奥部側(外径側)にテーパ面9が設けられ、このテーパ面9には後述するようにシール部材4の傾斜部10が当接可能になっている。シール収容部8内径側には突状部17が形成され、この突状部17にシール部材4が係合することでこのシール部材4がシール収容部8から容易に外れないようになっている。このため、シール部材4がシール収容部8から自然に脱落することが防がれている。   The seal accommodating portion 8 is provided with a tapered surface 9 on the back side (outer diameter side), and an inclined portion 10 of the seal member 4 can come into contact with the tapered surface 9 as will be described later. A projecting portion 17 is formed on the inner diameter side of the seal housing portion 8, and the seal member 4 is not easily detached from the seal housing portion 8 by engaging the seal member 4 with the projecting portion 17. . For this reason, the seal member 4 is prevented from falling off from the seal accommodating portion 8 naturally.

シール部材4は、ゴム等の弾性変形可能な材料により環状に形成され、挟持部11と膨出部12とからなっている。挟持部11は、シール収容部8に収容される挟持収容領域Dに設けられ、また、膨出部12は、流路7内に膨出させた膨出領域Dに設けられている。更に、挟持部11の挟持収容領域Dにおいては外径側に傾斜部10が形成され、一方、膨出部12においては一次側にシール面14が形成されている。 The seal member 4 is formed in an annular shape by an elastically deformable material such as rubber, and includes a sandwiching portion 11 and a bulging portion 12. The sandwiching portion 11 is provided in the sandwiching accommodation region D 1 accommodated in the seal housing portion 8, and the bulging portion 12 is provided in the bulging region D 2 bulged in the flow path 7. Further, in the clamping receiving region D 1 of the clamping portion 11 inclined portion 10 is formed on the outer diameter side, whereas, the sealing surface 14 is formed on the primary side in the bulging portion 12.

また、挟持部11は、常時においてシール収容部8に押し潰されることなく装着されている。ここで、常時とは、カートリッジ本体1において、1.流体が一次側(弁箱2側)から二次側(ジスクホルダ3側)に向かって流れ込む、いわゆる正圧が加わることで弁開状態となる時、或は、2.流体が止まるなど、弁体6がスプリング5の弾発力のみによりシール部材4に当接し、弁体6を境に一次側と二次側との差圧が無くなる、いわゆる無圧状態において弁閉状態となる時をいう。   Moreover, the clamping part 11 is always mounted in the seal housing part 8 without being crushed. Here, “always” means that in the cartridge main body 1. 1. When the valve is opened by applying so-called positive pressure, in which fluid flows from the primary side (valve box 2 side) toward the secondary side (disk holder 3 side); The valve body 6 comes into contact with the seal member 4 only by the elastic force of the spring 5 such as when the fluid stops, and the valve is closed in a so-called no-pressure state where the differential pressure between the primary side and the secondary side disappears with the valve body 6 as a boundary. The time when it becomes a state.

一方、膨出部12の二次側外周には傾斜面15が形成され、この傾斜面15は、後述するように弁体6の傾斜面部22と略直交する交差角度αに傾斜している。
シール部材4は、図3の一点鎖線に示すように、膨出部12を形成することなく断面略矩形状に形成するようにしてもよい。この場合、矩形形状の頂点付近が弁体6とのシール部位となる。
On the other hand, an inclined surface 15 is formed on the secondary side outer periphery of the bulging portion 12, and the inclined surface 15 is inclined at an intersecting angle α substantially orthogonal to the inclined surface portion 22 of the valve body 6 as will be described later.
The seal member 4 may be formed to have a substantially rectangular cross section without forming the bulging portion 12 as shown by a one-dot chain line in FIG. In this case, the vicinity of the apex of the rectangular shape is a seal portion with the valve body 6.

弁体6は、弁部20と装着杆21とを有し、このうち、弁部20には傾斜面部22が設けられている。この傾斜面部22は、シール部材4の膨出部12に当接シール可能になっている。この場合、傾斜面部22の流路7の方向から傾斜した角度をθとすると、この角度θは、弁体6がシール部材4を押す力Fの分力Fをテーパ面9に指向させる点から、弁体6の軸心方向に対して30〜50°の範囲、好ましくは、35〜45°の範囲に設定させるようにすることがよく、本実施形態においては、約40°に設定している。仮に、角度θがこの範囲以外であると、分力Fがジスクホルダ3の先方側や、弁箱2の突状部分に遮られてしまうおそれがあるため望ましいことではない。 The valve body 6 includes a valve portion 20 and a mounting rod 21, and the valve portion 20 is provided with an inclined surface portion 22. The inclined surface portion 22 can contact and seal against the bulging portion 12 of the seal member 4. In this case, if the angle of the inclined surface portion 22 inclined from the direction of the flow path 7 is θ 1 , the angle θ 1 is directed to the tapered surface 9 by the component force F 1 of the force F that the valve body 6 pushes the seal member 4. In view of the above, it is preferable to set a range of 30 to 50 °, preferably a range of 35 to 45 ° with respect to the axial direction of the valve body 6, and in this embodiment, about 40 °. It is set. If the angle θ 1 is outside this range, the component force F 1 may be blocked by the tip of the disk holder 3 or the protruding portion of the valve box 2, which is not desirable.

また、図3に示すように、本実施形態においては、この傾斜面部22に対してシール部材4の流路7の方向から傾斜した角度θを、弁体6の傾斜面部22の角度θよりも僅かに小さく設けている。これにより、逆止弁カートリッジは、分力Fによりシール部材4をテーパ面9における始点9aに近づくにつれて強く密着させる、いわゆる、クサビ作用を発揮することが可能になっており、角度θ=角度θとした場合よりも強い密着シール性を発揮している。角度θは、弁体6の軸心方向に対して25〜50°の範囲、好ましくは、30〜40°の範囲であることが望ましく、本実施形態においては、約35°に設定されている。角度θがこの範囲を超えると、シール部材4をテーパ面9に密着させる力が低下したり、上述したクサビ作用が得られなくなることがあるため望ましいことではない。 As shown in FIG. 3, in the present embodiment, an angle θ 2 inclined from the direction of the flow path 7 of the seal member 4 with respect to the inclined surface portion 22 is set to an angle θ 1 of the inclined surface portion 22 of the valve body 6. It is provided slightly smaller than. As a result, the check valve cartridge can exhibit a so-called wedge action in which the seal member 4 is strongly adhered by the component force F 1 as it approaches the starting point 9a on the tapered surface 9, and the angle θ 1 = exhibit their strong adhesion sealability than when the angle theta 2. The angle θ 2 is desirably in the range of 25 to 50 °, preferably in the range of 30 to 40 ° with respect to the axial direction of the valve body 6. In the present embodiment, the angle θ 2 is set to about 35 °. Yes. If the angle θ 2 exceeds this range, the force for bringing the seal member 4 into close contact with the tapered surface 9 may be reduced, or the above-described wedge action may not be obtained, which is not desirable.

また、本実施形態においては、傾斜面15と弁体6の傾斜面部22とが成す交差角度αはこれらが略直交するように設定されている。この交差角度αは、90°以外であってもよく、例えば、90〜120°の範囲としてもよい。この場合、交差角度αが90°よりも小さいと、弁体6による押圧力に耐えきれずに膨出部12が流路7側に倒れて水密性を確保しにくくなり、また、交差角度αが120°よりも大きいと、分力Fがテーパ面9に向かって発生し難しくなって裏漏れが生じるおそれがあるため注意が必要となる。 In the present embodiment, the crossing angle α formed by the inclined surface 15 and the inclined surface portion 22 of the valve body 6 is set so that they are substantially orthogonal. The intersection angle α may be other than 90 °, and may be in the range of 90 to 120 °, for example. In this case, when the crossing angle α is smaller than 90 °, the bulging portion 12 falls to the flow path 7 side without being able to withstand the pressing force by the valve body 6, and it becomes difficult to ensure watertightness. If the angle is larger than 120 °, the component force F 1 is generated toward the tapered surface 9 and becomes difficult to cause back leakage.

更に、シール部材4のシール面14の内径は、ジスクホルダ3の内径よりも小径に設定されている。これにより、弁体6によって押されたシール部材4を、弁箱2に設けた垂直面16に当接させて確実に受けることができ、シール部材4がせん断破壊することが防止される。   Further, the inner diameter of the seal surface 14 of the seal member 4 is set to be smaller than the inner diameter of the disk holder 3. Thereby, the sealing member 4 pushed by the valve body 6 can be reliably received by contacting the vertical surface 16 provided in the valve box 2, and the sealing member 4 is prevented from being sheared.

一方、弁体6の装着杆21においては、端部外周側に突起部25、端部側に割り溝26が設けられている。装着杆21は、割り溝26により縮径方向に変形可能であり、突起部25を全体の外径よりも縮径した状態で後述するジスクホルダ3に形成した孔部3aに装入できるようになっている。   On the other hand, the mounting rod 21 of the valve body 6 is provided with a protrusion 25 on the outer peripheral side of the end and a split groove 26 on the end. The mounting rod 21 can be deformed in the diameter-reducing direction by the split groove 26, and can be inserted into a hole 3a formed in the disk holder 3 to be described later in a state where the projection 25 is reduced in diameter than the entire outer diameter. ing.

なお、カートリッジ本体1において、図3に示すように、弁箱2のジスクホルダ3装着側は環状に突設形成され、この突設部位の内周側に環状凹部30が形成され、この環状凹部30内に、ジスクホルダ3に設けた環状凸部31が嵌合可能になっている。更に、環状凹部30の内周面には、環状の係合凸部32が形成されている。また、図2に示すように、弁箱2には、ボールシート33を装着可能な装着凹部34が形成されている。更に、弁箱2の外周側には、装着溝35が形成され、この装着溝35にはシール用のOリング36が装着されている。   In the cartridge body 1, as shown in FIG. 3, the disc holder 3 mounting side of the valve box 2 is formed to project in an annular shape, and an annular recess 30 is formed on the inner peripheral side of the projecting portion. Inside, the annular convex part 31 provided in the disk holder 3 can be fitted. Further, an annular engagement convex portion 32 is formed on the inner peripheral surface of the annular concave portion 30. As shown in FIG. 2, the valve box 2 is formed with a mounting recess 34 in which a ball seat 33 can be mounted. Further, a mounting groove 35 is formed on the outer peripheral side of the valve box 2, and a sealing O-ring 36 is mounted in the mounting groove 35.

一方、ジスクホルダ3は、前記弁箱2への取付け用の上記環状凸部31と、弁体6の装着杆21を装入するための孔部3aを有する装着部37とを有し、環状凸部31と装着部37とは、外周縁側で複数のリブ38によって接続されている。また、リブ38とリブ38との間には開口部38aが形成されており、この開口部38aを介して流体が流れるようになっている。更に、環状凸部31の外周側には弁箱2の係合凸部32が係合可能な係合凹部39が形成され、この係合凹部39に係合凸部32を係合させることにより、ジスクホルダ3と弁箱2とを一体化できるようになっている。   On the other hand, the disc holder 3 has the annular convex portion 31 for attachment to the valve box 2 and a mounting portion 37 having a hole portion 3a for inserting the mounting rod 21 for the valve body 6, and the annular convex portion. The portion 31 and the mounting portion 37 are connected by a plurality of ribs 38 on the outer peripheral side. An opening 38a is formed between the rib 38 and the rib 38, and a fluid flows through the opening 38a. Further, an engagement concave portion 39 that can engage with the engagement convex portion 32 of the valve box 2 is formed on the outer peripheral side of the annular convex portion 31, and the engagement convex portion 32 is engaged with the engagement concave portion 39. The disc holder 3 and the valve box 2 can be integrated.

係合凸部32と係合凹部39との係合により、弁箱2とジスクホルダ3との相対的な位置、例えば、図3において、弁箱2における係合凸部32の先端面32aから、ジスクホルダ3における環状凸部31の先端面31aまでの軸方向の距離Tが一定に決まるように設定している。これにより、ジスクホルダ3における環状凸部31の先端面31aと、弁箱との間に形成されるシール収容部8において、軸方向の厚さT1が一定に決まる。   Due to the engagement between the engagement convex part 32 and the engagement concave part 39, the relative position between the valve box 2 and the disc holder 3, for example, from the front end surface 32a of the engagement convex part 32 in the valve box 2 in FIG. The axial distance T to the tip surface 31a of the annular protrusion 31 in the disk holder 3 is set to be fixed. Thereby, in the seal accommodating part 8 formed between the front end surface 31a of the annular convex part 31 in the disk holder 3 and the valve box, the axial thickness T1 is determined to be constant.

このシール収容部8における軸方向の厚さT1は、シール部材4の挟持部11における、先端面4aから後端面4bまでの軸方向の厚さT2と略同じか、やや長く形成されている。これにより、シール部材4の挟持部11は、シール収容部8に押し潰されることなく装着されている。図示しないが、弁箱2とジスクホルダ3とは、上記の位置関係で一体化されれば、係合部と係合凹部との位置関係が逆になっていてもよく、また、弁箱2とジスクホルダ3とを螺着によって一体化する構造であってもよい。   The axial thickness T1 of the seal housing portion 8 is substantially the same as or slightly longer than the axial thickness T2 from the front end surface 4a to the rear end surface 4b of the clamping portion 11 of the seal member 4. Thereby, the clamping part 11 of the seal member 4 is attached to the seal accommodating part 8 without being crushed. Although not shown, if the valve box 2 and the disk holder 3 are integrated in the above positional relationship, the positional relationship between the engaging portion and the engaging concave portion may be reversed. A structure in which the disk holder 3 is integrated by screwing may be used.

弁体6をカートリッジ本体1内に装着する場合には、弁体6を突起部25側を縮径させた状態で孔部3aに貫通させるように装着してジスクホルダ3に取付けるようにする。そして、突起部25側を元の状態に戻すことにより、この突起部25が孔部3aの縁に引っ掛かって抜け止めされる。このことにより、弁部20と装着部37との間にスプリング5が弾発状態で装着され、通常時には、弁体6がスプリング5の弾発方向に付勢した状態になっている。そして、ジスクホルダ3と、弁体6と、スプリング5とを予めユニットとして一体することができ、組立作業時における簡便化を図ることが可能になっている。   When the valve body 6 is mounted in the cartridge body 1, the valve body 6 is mounted so as to pass through the hole 3 a with the diameter of the projection 25 reduced, and is attached to the disc holder 3. Then, by returning the projecting portion 25 side to the original state, the projecting portion 25 is caught by the edge of the hole 3a and is prevented from coming off. As a result, the spring 5 is mounted in a resilient state between the valve portion 20 and the mounting portion 37, and the valve body 6 is normally biased in the resilient direction of the spring 5. And the disk holder 3, the valve body 6, and the spring 5 can be integrated as a unit beforehand, and simplification at the time of an assembly operation can be achieved.

次に、本発明の逆止弁カートリッジをボールバルブに内蔵した例を説明する。
図2においては、カートリッジ本体1をボールバルブ40内に内蔵した状態を示している。
ボールバルブ40は、ボデー41と接続体42とを有し、このボデー41と接続体42とは螺着により一体化されている。ボデー41と接続体42とを一体化すると、一次側流路43と二次側流路44とが本体内部に構成される。また、ボデー41内には2つのボールシート33、33に保持された状態でボール弁体46が装着され、このボール弁体46は、ステム47を介してハンドル48により回転可能になっている。
Next, an example in which the check valve cartridge of the present invention is built in a ball valve will be described.
FIG. 2 shows a state in which the cartridge body 1 is built in the ball valve 40.
The ball valve 40 includes a body 41 and a connection body 42, and the body 41 and the connection body 42 are integrated by screwing. If the body 41 and the connection body 42 are integrated, the primary side flow path 43 and the secondary side flow path 44 will be comprised in a main body. A ball valve body 46 is mounted in the body 41 while being held by two ball seats 33, 33, and the ball valve body 46 can be rotated by a handle 48 via a stem 47.

カートリッジ本体1は、二次側のボールシート33を装着凹部34に嵌め込むようにしながらボデー41内に挿入され、また、リブ38を接続体の内側に形成された取付部49に取付けるようにし、この状態でボデー41と接続体42とを螺子込むことによりボールバルブ40内の所定位置に配設される。このとき、弁箱2は、弁体6が装着されたジスクホルダ3をボデー41内に装着する役割と、ボールシート33をボデー41内の適切な位置に装着する役割とを有しており、このことによって部品点数と組込み工数を削減することが可能になっている。   The cartridge body 1 is inserted into the body 41 so that the secondary ball seat 33 is fitted into the mounting recess 34, and the rib 38 is attached to an attachment portion 49 formed on the inner side of the connection body. In this state, the body 41 and the connecting body 42 are screwed to be disposed at a predetermined position in the ball valve 40. At this time, the valve box 2 has a role of mounting the disc holder 3 to which the valve body 6 is mounted in the body 41 and a role of mounting the ball seat 33 at an appropriate position in the body 41. This makes it possible to reduce the number of parts and the number of assembly steps.

カートリッジ本体1の組み込み後には、ボール弁体46がボールシート33、33によりシール状態に保持された状態で回転可能となり、また、Oリング36がボデー内の所定位置にシールすることでカートリッジ本体1とボデー41とがシールされる。   After the cartridge main body 1 is assembled, the ball valve body 46 can be rotated while being held in a sealed state by the ball seats 33 and 33, and the O-ring 36 is sealed at a predetermined position in the body, whereby the cartridge main body 1 And the body 41 are sealed.

上記のカートリッジ本体1を内蔵したボールバルブ40は、例えば、給水配管において水道用メータユニットとメータユニットの二次側に配管を介して接続される給湯器との間に配置され、流体が給湯器からメータユニット側に逆流するのを防止する。
なお、本発明のカートリッジ本体1は、他のバルブやメータユニットに内蔵してもよく、メータユニットの二次側に内蔵配置される場合には、メータユニットに装着した水道用メータ内に水が逆流することが防がれる。この場合、弁箱2において、ボールシート用の装着凹部34は不要である。
The ball valve 40 incorporating the cartridge main body 1 is disposed, for example, between a water meter unit in a water supply pipe and a water heater connected to the secondary side of the meter unit via the pipe, and fluid is supplied to the water heater. To prevent back flow from the meter unit side.
The cartridge main body 1 of the present invention may be built in another valve or meter unit. When the cartridge main body 1 is built in the secondary side of the meter unit, water is put in the water meter attached to the meter unit. Backflow is prevented. In this case, the mounting recess 34 for the ball seat is unnecessary in the valve box 2.

続いて、本発明の逆止弁カートリッジの上記実施形態における作用を説明する。
図2に示すようにカートリッジ本体1がボールバルブ40内に内蔵された状態において、ボールバルブ40内に流体が流れない無圧力時には、弁体6がスプリング5の弾発付勢力によりシール部材4側に押圧され、傾斜面部22が膨出部12に当接して弁体6が着座した状態になっている。この状態において、シール部材4の膨出部12は、傾斜面15等により強度が保たれていることもあり、弁体6の押圧力による変形はわずかであり、この押圧力が挟持部11に伝達される割合は極めて小さい。これに加えて、シール部材4の挟持部11が弁体6に押し潰されることの無い状態で装着されているため、この挟持部11に圧縮永久歪が生じることが防がれる。このため、このシール部材4全体の弾性が長期に渡って維持される。
Then, the effect | action in the said embodiment of the non-return valve cartridge of this invention is demonstrated.
As shown in FIG. 2, in the state where the cartridge main body 1 is built in the ball valve 40, the valve body 6 is moved to the seal member 4 side by the elastic urging force of the spring 5 when no fluid flows in the ball valve 40. The inclined surface portion 22 is in contact with the bulging portion 12 and the valve body 6 is seated. In this state, the bulging portion 12 of the seal member 4 may be maintained in strength by the inclined surface 15 and the like, and the deformation due to the pressing force of the valve body 6 is slight, and this pressing force is applied to the clamping portion 11. The proportion transmitted is very small. In addition, since the clamping part 11 of the seal member 4 is mounted without being crushed by the valve body 6, it is possible to prevent the permanent compression of the clamping part 11 from occurring. For this reason, the elasticity of the whole sealing member 4 is maintained over a long period of time.

図5に示すように、この状態から、ボールバルブ40の一次側流路43より流路7を介してカートリッジ本体1に流体が流れ込み、このカートリッジ本体1に正圧が加わると、弁体6がこの流体圧によりスプリング5の弾発付勢力に抗して流れ方向に押されてシール部材4から離間する。そして、この離間によって流体が開口部38aから二次側流路44へと流れる。その際、スプリング5は、ジスクホルダ3と弁体6との間に収縮した状態になる。このときにも、挟持部11は押し潰されることが防がれている。   As shown in FIG. 5, from this state, when fluid flows into the cartridge body 1 from the primary flow path 43 of the ball valve 40 via the flow path 7 and positive pressure is applied to the cartridge body 1, the valve body 6 This fluid pressure is pushed in the flow direction against the elastic biasing force of the spring 5 and is separated from the seal member 4. Then, the fluid flows from the opening 38 a to the secondary channel 44 by this separation. At that time, the spring 5 is contracted between the disc holder 3 and the valve body 6. Also at this time, the clamping part 11 is prevented from being crushed.

一方、図2に示すように、ボールバルブ40の二次側流路44より逆流圧が発生した場合には、この二次側の流体圧力によって弁体6が弁閉方向に移動してシール部材4に密着する。その際、弁体6は、無圧力時の状態よりも高い圧力でシール部材4に接触し、弁体6とシール部材4とは、水密性が確保された状態でシールする。   On the other hand, as shown in FIG. 2, when a back flow pressure is generated from the secondary side flow path 44 of the ball valve 40, the valve body 6 moves in the valve closing direction by the secondary side fluid pressure, and the seal member 4 is in close contact. At that time, the valve body 6 comes into contact with the seal member 4 at a pressure higher than that in the non-pressure state, and the valve body 6 and the seal member 4 are sealed in a state where water tightness is ensured.

このとき、弁体6の傾斜面部22がシール部材4の膨出部12を押圧する力Fにより、膨出部12の一次側のシール面14が弁箱2の垂直面16に密接する。この密接により、シール部材4と弁箱2との間をシールする。ここで、力Fによってシール面14が垂直面16に密接することによって生じる反力(図示せず)は、シール部材4内部を外径側に伝達し、挟持部11側に及ぶ。   At this time, the sealing surface 14 on the primary side of the bulging portion 12 comes into close contact with the vertical surface 16 of the valve box 2 by the force F that the inclined surface portion 22 of the valve body 6 presses the bulging portion 12 of the sealing member 4. By this close contact, the seal member 4 and the valve box 2 are sealed. Here, a reaction force (not shown) generated when the seal surface 14 comes into close contact with the vertical surface 16 by the force F is transmitted to the outer diameter side inside the seal member 4 and reaches the holding portion 11 side.

また、力Fの分力F1は、直接、挟持部11に伝達し、傾斜部10の中心方向に向かって作用し、シール部材4の傾斜部10がシール収容部8の奥部側のテーパ面9に密接する。この密接によって、更にシール部材4と弁箱2との間をシールする。   Further, the component force F1 of the force F is directly transmitted to the sandwiching portion 11 and acts toward the center of the inclined portion 10, and the inclined portion 10 of the seal member 4 is a tapered surface on the back side of the seal housing portion 8. Close to 9. This close contact further seals between the seal member 4 and the valve box 2.

このように、逆流圧が発生した場合に初めてシール部材4のシール面14と弁箱2の垂直面16とのシール、及びシール部材4の傾斜部10とシール収容部8のテーパ面9とのシールという、二ヶ所のシールが可能となり、シール部材4と弁箱2との隙間が塞がれ、裏漏れの発生を防ぐことができる。   Thus, the seal between the seal surface 14 of the seal member 4 and the vertical surface 16 of the valve box 2 and the inclined portion 10 of the seal member 4 and the taper surface 9 of the seal housing portion 8 are not detected until the backflow pressure is generated. Sealing at two locations, called seals, is possible, the gap between the seal member 4 and the valve box 2 is closed, and the occurrence of back leakage can be prevented.

更には、シール部材4の挟持部11には、力Fの分力F1と、シール面14が垂直面16に密接することによって生じる外径方向への反力が及ぶことにより、シール面14と垂直面16との密接と、傾斜部10とテーパ面9との密接とによる相乗効果が働き、優れたシール性を発揮することができる。   Furthermore, the pinching portion 11 of the seal member 4 is subjected to the component force F1 of the force F and the reaction force in the outer diameter direction caused by the seal surface 14 being in close contact with the vertical surface 16, thereby A synergistic effect due to the close contact with the vertical surface 16 and the close contact between the inclined portion 10 and the tapered surface 9 works, and an excellent sealing property can be exhibited.

この場合、膨出部12の耐久性を向上させるために、シール部材4の図示しない肉厚(径方向の幅)を厚くしてこのシール部材4の内径側を流路側に突出させるようにすると、シール面14と垂直面16とが流体に曝された状態になりこの部分のシール性が低下しやすくなるが、上記した傾斜部10とテーパ面9とによってシール面14と垂直面16とのシール性が向上し、シール性の低下をカバーすることができる。しかも、傾斜部10とテーパ面9との密接シール位置は、シール面14と垂直面16との密接位置よりも外径側にあって流体が直接接触しない位置に設けられているため、逆流時における傾斜部10とテーパ面9との密接シール状態が確保され、裏漏れが確実に防がれる。   In this case, in order to improve the durability of the bulging portion 12, the sealing member 4 is made thick (not shown) (in the radial direction) so that the inner diameter side of the sealing member 4 protrudes toward the flow path. The sealing surface 14 and the vertical surface 16 are exposed to the fluid, and the sealing performance of this portion is likely to deteriorate. However, the inclined portion 10 and the tapered surface 9 described above cause the sealing surface 14 and the vertical surface 16 to be separated from each other. The sealing property is improved, and the deterioration of the sealing property can be covered. In addition, the close seal position between the inclined portion 10 and the tapered surface 9 is provided on the outer diameter side of the close position between the seal surface 14 and the vertical surface 16 so that the fluid is not in direct contact. In this way, a tight seal between the inclined portion 10 and the tapered surface 9 is ensured, and back leakage is reliably prevented.

また、シール部材4の傾斜部10の角度θを弁体6の傾斜面部22の角度θよりも僅かに小さくしているので、クサビ作用の働きにより傾斜部10の略法線方向に生じる分力Fをテーパ面9により効率的に受けることができる。そのため、傾斜部10とテーパ面9との密着力をより増大させて裏漏れを防止できる。
ここで、「略法線方向」とは、弁体6とシール部材4とのシール点Pを起点とし、このシール点Pと、ジスクホルダ3の先端側及び弁箱2の突状部位の先端側をそれぞれ結んだ角度βの範囲で示される方向をいう。
Further, since the angle θ 2 of the inclined portion 10 of the seal member 4 is slightly smaller than the angle θ 1 of the inclined surface portion 22 of the valve body 6, it is generated in a substantially normal direction of the inclined portion 10 due to the action of the wedge. The component force F 1 can be efficiently received by the tapered surface 9. Therefore, the adhesion between the inclined portion 10 and the tapered surface 9 can be further increased to prevent back leakage.
Here, the “substantially normal direction” refers to the seal point P between the valve body 6 and the seal member 4 as a starting point, and the seal point P and the tip side of the disc holder 3 and the protruding portion of the valve box 2. Is the direction indicated by the range of angle β.

また、傾斜面15を弁体6の傾斜面部22と略直交する角度に形成しているので、膨出部12に分力Fが加わったときに、この分力Fが膨出部12が変形しようとする方向に加わることが防がれる。これにより、シール部材4が劣化したり変形したりすることが防がれ、このシール部材4に対して常に弁体6が均等に密接してシール性が確保される。また、傾斜面15は、分力Fをテーパ面9に伝達しやすくするためのガイドとしても機能している。 Further, since the inclined surface 15 is formed in a substantially orthogonal angle and inclined surface portion 22 of the valve element 6, when the swelling portion 12 binary force F 1 is applied, the component force F 1 is bulging portion 12 Is prevented from being applied in the direction of deformation. As a result, the seal member 4 is prevented from being deteriorated or deformed, and the valve body 6 is always in close contact with the seal member 4 to ensure sealing performance. The inclined surface 15 also functions as a guide for facilitating the transmission of the component force F 1 to the tapered surface 9.

本発明の逆止弁カートリッジを示した断面図である。It is sectional drawing which showed the non-return valve cartridge of this invention. 図1の逆止弁カートリッジを装着したボールバルブを示した断面図である。It is sectional drawing which showed the ball valve which mounted | wore with the non-return valve cartridge of FIG. 図1のA部拡大図である。It is the A section enlarged view of FIG. 本発明の逆止弁カートリッジの分離斜視図である。It is a separation perspective view of the check valve cartridge of the present invention. 図1の逆止弁カートリッジが動作した状態を示す断面図である。It is sectional drawing which shows the state which the non-return valve cartridge of FIG. 1 act | operated.

符号の説明Explanation of symbols

1 カートリッジ本体
2 弁箱
3 ジスクホルダ
4 シール部材
5 スプリング
7 流路
6 弁体
8 シール収容部
9 テーパ面
10 傾斜部
11 挟持部
12 膨出部
14 シール面
15 傾斜面
16 垂直面
22 傾斜面部
挟持収容領域
膨出領域
θ、θ 角度
1 cartridge body 2 valve box 3 Jisukuhoruda 4 sealing member 5 spring 7 passage 6 valve body 8 sealing container 9 tapered surface 10 inclined portions 11 sandwiching portion 12 bulging portion 14 sealing surface 15 inclined surface 16 vertical surface 22 inclined surface D 1 Holding area D 2 bulging area θ 1 , θ 2 angle

Claims (4)

弁箱とジスクホルダとから成るカートリッジ本体内に設けた環状のシール部材にスプリングの流路方向への弾発力で当接する弁体を設けた逆止弁カートリッジにおいて、前記弁箱とジスクホルダとによりシール部材を収容するシール収容部を形成し、前記シール部材は、前記シール収容部に収容する挟持収容領域の挟持部と前記流路内へ膨出させた膨出領域の膨出部とからなり、前記弁体に設けた傾斜面部を前記シール部材の膨出部に当接シールさせると共に、前記膨出部の一次側を前記弁箱の垂直面に当接させ、前記シール収容部の奥部側に設けたテーパ面に前記シール部材の挟持収容領域に形成した傾斜部を当接させたことを特徴とする逆止弁カートリッジ。   In the check valve cartridge provided with a valve body that comes into contact with an annular sealing member provided in a cartridge body composed of a valve box and a disk holder by a spring force in the flow direction of the spring, the valve box and the disk holder are sealed. Forming a seal accommodating portion for accommodating a member, and the seal member includes a sandwiching portion of a sandwiching accommodating region accommodated in the seal accommodating portion and a bulging portion of a bulging region bulged into the flow path, The inclined surface portion provided on the valve body is abutted and sealed against the bulging portion of the seal member, and the primary side of the bulging portion is abutted against the vertical surface of the valve box, and the back side of the seal housing portion A check valve cartridge, wherein an inclined portion formed in a holding housing area of the seal member is brought into contact with a tapered surface provided on the check valve. 前記シール部材の挟持収容領域の挟持部は、常時において前記シール収容部内に押し潰されることなく装着されている請求項1に記載の逆止弁カートリッジ。   The check valve cartridge according to claim 1, wherein the clamping portion of the clamping housing area of the seal member is mounted without being crushed in the seal housing portion at all times. 前記シール部材の傾斜部の角度を前記弁体の傾斜面部の角度より僅かに小さくした請求項1又は2に記載の逆止弁カートリッジ。   The check valve cartridge according to claim 1 or 2, wherein an angle of the inclined portion of the seal member is slightly smaller than an angle of the inclined surface portion of the valve body. 前記膨出部の二次側外周に傾斜面を設け、この傾斜面を、前記弁体の傾斜面部と略直交する角度に形成した請求項1乃至3の何れか1項に記載の逆止弁カートリッジ。   The check valve according to any one of claims 1 to 3, wherein an inclined surface is provided on a secondary side outer periphery of the bulging portion, and the inclined surface is formed at an angle substantially orthogonal to the inclined surface portion of the valve body. cartridge.
JP2008320919A 2008-12-17 2008-12-17 Check valve cartridge Active JP5252633B2 (en)

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KR101392775B1 (en) * 2012-09-25 2014-05-08 최수용 Valve
CN103883767A (en) * 2014-04-22 2014-06-25 张筱秋 Flange joint two-plate flow guide zinc alloy perpendicular one-way valve
KR102097490B1 (en) * 2019-06-11 2020-04-06 (주)한국시바우라 메카트로닉스 Check valve
CN114436195A (en) * 2021-12-23 2022-05-06 广州侍美科技有限公司 On-off valve and liquid taking assembly
JP7486702B2 (en) 2019-10-11 2024-05-20 株式会社光明製作所 non-return valve

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KR200476451Y1 (en) * 2013-05-09 2015-03-05 강민석 gas saver

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KR101392775B1 (en) * 2012-09-25 2014-05-08 최수용 Valve
CN103883767A (en) * 2014-04-22 2014-06-25 张筱秋 Flange joint two-plate flow guide zinc alloy perpendicular one-way valve
KR102097490B1 (en) * 2019-06-11 2020-04-06 (주)한국시바우라 메카트로닉스 Check valve
JP7486702B2 (en) 2019-10-11 2024-05-20 株式会社光明製作所 non-return valve
CN114436195A (en) * 2021-12-23 2022-05-06 广州侍美科技有限公司 On-off valve and liquid taking assembly
CN114436195B (en) * 2021-12-23 2024-04-05 广州侍美科技有限公司 On-off valve and liquid taking assembly

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