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JP4167791B2 - Stop cock with strainer with flow adjustment function - Google Patents

Stop cock with strainer with flow adjustment function Download PDF

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Publication number
JP4167791B2
JP4167791B2 JP2000078621A JP2000078621A JP4167791B2 JP 4167791 B2 JP4167791 B2 JP 4167791B2 JP 2000078621 A JP2000078621 A JP 2000078621A JP 2000078621 A JP2000078621 A JP 2000078621A JP 4167791 B2 JP4167791 B2 JP 4167791B2
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Prior art keywords
strainer
valve seat
cap
flow path
water
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JP2001262673A (en
Inventor
明 西岡
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株式会社三栄水栓製作所
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Description

【0001】
【発明の属する技術分野】
本発明は、流量調整機能を付加したストレーナを内蔵した止水栓に関するものである。
【0002】
【従来の技術】
上記のストレーナを内蔵した止水栓(以下、ストレーナ付き止水栓と言う。)は、例えば水洗トイレの貯水タンクへの給水管途中などに設けられるもので、図6に示す構成のものが広く採用されている。
【0003】
この図6において、図中の41は給水用と吐水用の管部42,43を備えた栓本体、44は栓本体41に内蔵された筒状のストレーナ、45は栓本体41に螺着されたストレーナキャップで、ストレーナ44を保持するための環状の凹部46と、外部操作用の円板工具(一般にはコインが利用される。)の差し込み溝47が形成されている。
【0004】
48は止水を含む流量調整用の弁機構で、キャップ45の軸線と同芯状の流路を有する弁座49を、栓本体41に対してストレーナ内蔵部の上流側に形成すると共に、この弁座49とキャップ45との間に、キャップ45の軸線と同芯状の雌ねじ部50を形成し、かつ、この雌ねじ部50に螺着の栓棒51の一端側に、弁座流路を下流側から閉栓可能な流量調整弁体52を保持する一方、栓棒51の他端側を、Oリングによる水封手段53を介してキャップ中央部の抜き孔54に挿通し、更に、止水を含む流量調整を外部操作で行えるように、ドライバーなどの工具の差し込み溝55を栓棒51の他端側の面部に形成して成る。
【0005】
56は逆止弁機構で、ストレーナ内蔵部の下流側に形成された弁座57と、この弁座57の流路を下流側から閉栓可能な弁体58と、この弁体58の弁棒59をスライド可能に保持するキャップ60と、弁体57を閉栓方向に付勢するスプリング61とから成る。
【0006】
【発明が解決しようとする課題】
上記構成のストレーナ付き止水栓において、ストレーナ44の交換やクリーニングなどを行う際には、コイン形状の円板工具とドライバーなどの工具とを用意して、先ずは栓棒51を締め込んで、弁座49の流路を弁体52で閉じ、次いでストレーナキャップ45を取り外して、ストレーナ44を抜き出すのであるが、往々にして弁体52による弁座49の閉栓操作を失念して、いきなりストレーナキャップ45を取り外すことがあり、この際、水圧が強いことから、元栓を閉じないことには、キャップ45を基に戻すことは殆ど不能であって、衣服を濡らしたり、周りを水浸しにしてしまう問題があった。
【0007】
また、ストレーナ44のクリーニングなどを終えて、キャップ45を元に戻した際には、当然ながら栓棒51を操作して、通水のための弁座流路の開栓作業を要したのである。
【0008】
本発明は、かゝる実情に鑑みて成されたものであって、その目的は、ストレーナの取り出しに際しての閉栓の操作が不要で、従って、周りを不測に水浸しにする事故が生じず、しかも、ストレーナを元に戻した際の開栓の操作も不要にした取り扱い面で好適な流量調整機能を付加したストレーナ付きの止水栓を提供する点にある。
【0009】
【課題を解決するための手段】
本発明による流量調整機能を付加したストレーナ付き止水栓は、水導出管部を備えた栓本体に、弁座と、スプリングの付勢力によって弁座流路を上流側から閉栓するスライド弁体とを内蔵すると共に、栓本体の弁座下流側で且つ弁座流路に連通するよう水導出管部の吐水口に至る流路途中に、筒状のストレーナを弁座の流路中心と同芯状に内蔵し、更に、このストレーナを外部操作によって軸線方向に移動させて、ストレーナの筒状端部を弁座または弁座まわりの栓本体部分に当接させるキャップを、水封手段を介して栓本体に螺着し、かつ、このキャップの水封状態での往復移動に伴って、往動時に前記スライド弁体を前記スプリングの付勢力に抗して上流側に移動させ、前記弁座流路を開栓し復動時には前記スプリングの付勢力によって前記スライド弁体を下流側に移動させ、前記弁座流路を閉栓させるよう構成され、
さらに、前記キャップの中央部に、このキャップを貫通させる状態で、水封手段を介して外部操作可能にネジ部材を螺着し、かつ、このネジ部材の栓本体内部側に、開栓状態において水導出管部の吐水口に至る流路の流量を調整する流量調整部を外部に抜け出し不能に設けて成る点に特徴がある(請求項1)。
【0010】
上記の特徴構成によれば、必要に応じてストレーナを取り出す際に、栓本体からストレーナキャップを取り外すと、取り外し完了前のキャップ水封の状態で、弁体がスプリングの付勢力によって自動的に閉栓されることから、従来のような閉栓の失念による水浸しの事故などが確実に防止される。
【0011】
また、ストレーナを元に戻す際の栓本体に対するキャップの螺着に伴って、弁体が自動的に開栓されることから、本発明のストレーナ付き止水栓によれば、水浸しの事故防止などに加えて、止水のための閉栓ならびに通水のための開栓の作業が一切不要となる。
【0012】
【0013】
【0014】
【発明の実施の形態】
以下、本発明の実施の形態を図面に基づいて説明する。図1〜図4は参考例を示している。図5は、本発明の一実施形態に係る流量調整機能を付加したストレーナ付き止水栓を示す。
図1は流量調整機能を備えていないストレーナ付き止水栓1を示す断面図、図2はストレーナの取り出し状態を示す止水栓1の断面図である。
【0015】
これらの図において、図中の2は栓本体で、雄ねじ部3が形成された水導入管部4と、雌ねじ部5が形成されたキャップ装着管部6とを、同芯状に有すると共に、両管部4,6の途中に、流路中心を水導入管部4の流路中心に直交させる状態で、雄ねじ部7を備えた水導出管部8を連設して成る。
【0016】
キャップ装着管部6の端部側内面には、雌ねじ部5の谷径よりも大径のストレート管部9が形成されており、水導出管部7の連設部よりも上流側の水導入管部4の内面には、2個の段部a,bを形成するために、弁体内蔵管部10よりも小径の管部11が上流側に、かつ、弁体内蔵管部10よりも大径の管部12が下流側に、それぞれ形成されており、更に、大径管部12の下流側部分には雌ねじ部13が形成されている。
【0017】
14は止水用のOリングcを備えた弁座、15は弁座流路を上流側から閉栓するスライド弁体(以下、単に弁体という)で、弁座14の弁シートに当接するOリングdを備えている。16は弁体15を弁座14側に向けて付勢するスプリングで、このスプリング16を段部aと弁体14との間に位置させるように、スプリング16と弁体15とを、この順に水導入管部4に内蔵し、次いで弁体15を、これの上流側端部を段部bに当接させるように、雌ねじ部13に螺着している。
【0018】
17は筒状のストレーナで、多数の小孔eが形成された金属製(錆にくいステンレスが好適であるが、材質は不問であり、以下、同じ。)の筒体18と、この筒体18まわりの金属製の筒状メッシュ19とによって、ストレーナ本体20を形成すると共に、このストレーナ本体20の一端側(弁座13側)に金属製のリング21を設け、かつ、ストレーナ本体20の他端側に、外周面部に環状の突起fを膨出した合成樹脂製のリング22を設けて成る。
【0019】
このストレーナ17は、弁座14の下流側で且つ弁座流路iに連通するよう水導出管部の吐水口に至る流路途中に、弁座14の流路中心と同芯状に内蔵される。
【0020】
23はストレーナキャップで、キャップ装着管部6の雌ねじ部5に螺着される雄ねじ部24と、キャップ装着管部6のストレート管部8に対する水封手段(例えばOリング)25を保持するための環状凹部26と、筒状のストレーナ17の嵌合保持凹部27、及び、外部操作用の円板工具の差し込み溝28が形成されている。
【0021】
上記のストレーナ17を栓本体2に内蔵するに際して、環状突起fを弾性変形させる状態で、ストレーナ17の端部リング22をストレーナキャップ23の凹部27に圧入し、ストレーナ17とキャップ23とを一体化させて、ストレーナ17をキャップ装着管部6に挿通し、かつ、キャップ23を雄ねじ部に螺着する。
【0022】
従って、ストレーナ17は、キャップ23の軸線方向への往復移動に伴って一体に移動するのであって、キャップ23の締め込み方向の往動によって、一端側の金属製リング21が弁座14まわりの栓本体部分2Aに当接(弁座14を当接対象にしてもよい。)するように構成されている。
【0023】
そして、弁座14の流路下流側に突出してリング21側に屈曲する突出部材30を弁体15に連設する一方、この突出部材30の屈曲部hに下流側から係止する係止部材31を、ストレーナ17の金属製リング21に連設してあり、前記屈曲部hと係止部材31とスプリング16とによってキャップ23の往復移動に伴って弁体15を開閉させることがてきる。
【0024】
上記構成のストレーナ付き止水栓1において、弁体15による弁座流路の閉栓状態で、水封手段25によるキャップ装着管部6の水封が保持されるように、キャップ装着管部6に対する水封手段25の水封のストロークLを、弁体15による弁座流路の開閉ストロークL1よりも大に設定しており、従って、ストレーナ17の交換やクリーニングなど、ストレーナ17を栓本体2の外部に取り出す際に、コイン形状の円板工具を溝28に差し込んで、キャップ23を締め込み方向とは逆方向に復動させると、屈曲部hに対する係止部材31の係止位置が下流側に移動して、ストレーナキャップ23の取り外し完了前に、すなわちキャップ水封の状態で、スプリング16の付勢力により、弁座14の流路が弁体15によって自動的に閉栓されることになる。
【0025】
一方、ストレーナ17を一体に保持したキャップ23をキャップ装着管部6に螺着すると、このキャップ23の締め込み方向の往動に伴って、ストレーナ17のリング21に連設した係止部材31が突出部材30の屈曲部hに係止し、更なるキャップ23の往動に伴って、弁体15がスプリング16の付勢力に抗して上流側にスライドし、弁座14の流路が開栓されるのであって、最終的には、ストレーナ17のリング21が栓本体部分2Aに着座する。
【0026】
要約すれば、栓本体2からのストレーナ17の取り出しに伴って、取り出し完了前に弁座流路が自動的に閉栓され、栓本体2へのストレーナ17の装着に伴って弁座流路が開栓されるのであって、従来のストレーナ付き止水栓に比較して、不測な水浸しの事故防止はもとより、止水のための閉栓ならびに通水のための開栓の作業が一切不要となり、取り扱い面で好適なストレーナ付き止水栓1が提供される。
【0027】
また、図3に示すストレーナ付き止水栓1は、弁体15に連設されてキャップ23に当接する突出部材32を備えている。また、図4に示すストレーナ付き止水栓1は、キャップ23に連設されて弁体15に係止する押圧部材33を備えている。
【0028】
図5は、本発明の一実施形態に係る流量調整機能を付加したストレーナ付き止水栓1’を示している。なお、図5において、図1〜図4に示した符号と同一のものは、同一又は相当物である。
この止水栓1’は、図1に示した構成のストレーナ付き止水栓1を用いて、これのキャップ23の中央部に、このキャップ23を貫通させる状態で、例えばOリングによる水封手段34を介してネジ部材35を螺着すると共に、このネジ部材35の一端側の栓本体2内部に、流量調整37を外部に抜け出し不能に設け、かつ、ネジ部材35の他端側に、このネジ部材35を外部操作するためのドライバーなどの工具の差し込み溝38を形成して成る。
【0029】
上記構成の流量調整機能を付加したストレーナ付き止水栓1’において、図1,2に示した屈曲部hと係止部材31に代えて図3及び図4に示した突出部材32及び押圧部材33をそれぞれ装備可能であ。この際、図3では、弁体15に連設の突出部材32を流量調整部37に当接させるようにし、図4では、弁体15に係止する押圧部材33を流量調整部37に連設するものとする。
【0030】
【発明の効果】
以上説明したように、本発明によれば、水浸しの事故防止はもとより、止水のための閉栓ならびに通水のための開栓の作業が一切不要な、取り扱い面で好適な流量調整の機能が付加されたストレーナ付き止水栓が提供される。
【図面の簡単な説明】
【図1】 参考例として示すストレーナ付き止水栓の断面図である。
【図2】 ストレーナの取り出し状態を示す前記ストレーナ付き止水栓の断面図である。
【図3】 別の参考例として示すストレーナ付き止水栓の断面図である。
【図4】 更に別の参考例として示すストレーナ付き止水栓の断面図である。
【図5】 本発明の一実施形態に係る流量調整機能を付加したストレーナ付き止水栓の断面図である。
【図6】 従来例のストレーナ付き止水栓の断面図である。
【符号の説明】
1’…流量調整機能を付加したストレーナ付き止水栓、2…栓本体、14…弁座、15…スライド弁体、16…スプリング、17…ストレーナ、23…キャップ、25,34…水封手段、30,32…突出部材、31…係止部材、35…ネジ部材、37…流量調整部、i…弁座流路、j…吐水口に至る流路
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a water stop cock incorporating a strainer to which a flow rate adjusting function is added .
[0002]
[Prior art]
A stop cock with a built-in strainer (hereinafter referred to as a stop cock with a strainer) is provided, for example, in the middle of a water supply pipe to a water storage tank of a flush toilet. It has been adopted.
[0003]
In FIG. 6, reference numeral 41 in the figure is a plug body provided with pipe portions 42 and 43 for water supply and water discharge, 44 is a cylindrical strainer incorporated in the plug body 41, and 45 is screwed to the plug body 41. The strainer cap is formed with an annular recess 46 for holding the strainer 44 and an insertion groove 47 for a disk tool for external operation (generally coins are used).
[0004]
48 is a valve mechanism for adjusting the flow rate including water stop, and a valve seat 49 having a flow path concentric with the axis of the cap 45 is formed on the upstream side of the strainer built-in portion with respect to the plug body 41. A female thread portion 50 concentric with the axis of the cap 45 is formed between the valve seat 49 and the cap 45, and a valve seat flow path is formed on one end side of the plug rod 51 screwed to the female thread portion 50. While holding the flow regulating valve body 52 that can be closed from the downstream side, the other end side of the plug bar 51 is inserted into a hole 54 at the center of the cap through a water sealing means 53 by an O-ring, The insertion groove 55 for a tool such as a screwdriver is formed on the surface of the other end side of the plug bar 51 so that the flow rate adjustment including
[0005]
A check valve mechanism 56 is a valve seat 57 formed on the downstream side of the strainer built-in portion, a valve body 58 capable of closing the flow path of the valve seat 57 from the downstream side, and a valve rod 59 of the valve body 58. The slidable cap 60 and the spring 61 that urges the valve body 57 in the closing direction.
[0006]
[Problems to be solved by the invention]
In the stop cock with a strainer having the above-described configuration, when replacing or cleaning the strainer 44, a coin-shaped disk tool and a tool such as a screwdriver are prepared, and the stopper bar 51 is first tightened. The flow path of the valve seat 49 is closed by the valve body 52, and then the strainer cap 45 is removed and the strainer 44 is pulled out. However, the operation of closing the valve seat 49 by the valve body 52 is often forgotten. Since the water pressure is strong at this time, it is almost impossible to return the cap 45 to the base unless the main stopper is closed, and the clothes get wet or the surroundings are immersed in water. was there.
[0007]
Further, when the cleaning of the strainer 44 and the like were finished and the cap 45 was returned to the original position, the plug rod 51 was naturally operated to open the valve seat channel for water flow. .
[0008]
The present invention has been made in view of such circumstances, and its purpose is to eliminate the need for a capping operation when the strainer is taken out. Further, the present invention is to provide a water stop cock with a strainer to which a flow rate adjustment function suitable for handling in which the operation of opening the plug when the strainer is returned to an original state is unnecessary is added .
[0009]
[Means for Solving the Problems]
A water stop cock with a strainer to which a flow rate adjusting function according to the present invention is added includes a valve body, a slide valve body that plugs a valve seat flow path from an upstream side by a biasing force of a spring, on a plug body having a water outlet pipe portion. The cylindrical strainer is concentric with the center of the valve seat flow path in the middle of the flow path leading to the water outlet of the water outlet pipe section so as to communicate with the valve seat flow path on the downstream side of the valve seat of the stopper body. Furthermore, a cap for moving the strainer in the axial direction by an external operation and bringing the cylindrical end of the strainer into contact with the valve seat or the plug body portion around the valve seat is provided via a water sealing means. As the cap is reciprocated in the water-sealed state, the slide valve body is moved upstream against the biasing force of the spring during the forward movement, and the valve seat flow by the biasing force of the spring at the time of backward movement and unplugging the road Serial slide valve element is moved to the downstream side, the valve seat flow path is configured so as to plugging,
Further, a screw member is screwed into the central portion of the cap so as to be externally operable through a water sealing means in a state where the cap is penetrated, and in the plug body inside of the screw member in the open state. The present invention is characterized in that a flow rate adjusting portion for adjusting the flow rate of the flow path leading to the water discharge port of the water outlet pipe portion is provided outside so as not to come out .
[0010]
According to the above characteristic configuration, when the strainer is removed as necessary, when the strainer cap is removed from the plug body, the valve body is automatically closed by the biasing force of the spring in the cap water-sealed state before the removal is completed. Therefore, it is possible to surely prevent a water immersion accident caused by forgetting to close the plug as in the prior art.
[0011]
In addition, since the valve body is automatically opened along with the screwing of the cap to the plug body when the strainer is returned to the original, the water stop cock with the strainer according to the present invention prevents accidents such as flooding. In addition, it is not necessary to perform plugging for stopping water and opening for passing water.
[0012]
[0013]
[0014]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, embodiments of the present invention will be described with reference to the drawings. 1 to 4 show a reference example. FIG. 5 shows a water stop cock with a strainer to which a flow rate adjusting function is added according to an embodiment of the present invention.
FIG. 1 is a cross-sectional view showing a stop cock with strainer 1 that does not have a flow rate adjusting function, and FIG. 2 is a cross-sectional view of the stop cock 1 showing a state in which the strainer is taken out.
[0015]
In these figures, 2 in the figure is a plug body, which has a water introduction pipe part 4 in which a male thread part 3 is formed and a cap mounting pipe part 6 in which a female thread part 5 is formed in a concentric shape, In the middle of both pipe parts 4 and 6, a water outlet pipe part 8 having a male thread part 7 is continuously provided in a state where the flow path center is orthogonal to the flow path center of the water introduction pipe part 4.
[0016]
A straight pipe portion 9 having a diameter larger than the valley diameter of the female screw portion 5 is formed on the inner surface of the end portion side of the cap mounting pipe portion 6, and water is introduced upstream of the continuous portion of the water outlet pipe portion 7. In order to form two step portions a and b on the inner surface of the pipe portion 4, a pipe portion 11 having a smaller diameter than the valve body built-in pipe portion 10 is located upstream and more than the valve body built-in pipe portion 10. Large-diameter pipe portions 12 are respectively formed on the downstream side, and a female screw portion 13 is formed on the downstream side portion of the large-diameter pipe portion 12.
[0017]
14 is a valve seat provided with an O-ring c for water stop, 15 is a slide valve body (hereinafter simply referred to as a valve body) for closing the valve seat flow path i from the upstream side, and abuts against the valve seat of the valve seat 14. An O-ring d is provided. A spring 16 biases the valve body 15 toward the valve seat 14, and the spring 16 and the valve body 15 are arranged in this order so that the spring 16 is positioned between the stepped portion a and the valve body 14. Then, the valve body 15 is screwed into the female screw portion 13 so that the upstream end portion thereof is brought into contact with the step portion b.
[0018]
Reference numeral 17 denotes a cylindrical strainer, which is made of a metal having a large number of small holes e (stainless stainless steel is preferable, but the material is not limited and the same applies hereinafter), and the cylindrical body 18. A strainer main body 20 is formed by the surrounding metal cylindrical mesh 19, a metal ring 21 is provided on one end side (the valve seat 13 side) of the strainer main body 20, and the other end of the strainer main body 20 is provided. On the side, a synthetic resin ring 22 having an annular protrusion f bulged on the outer peripheral surface portion is provided.
[0019]
This strainer 17 is concentric with the flow path center of the valve seat 14 in the middle of the flow path j that reaches the water outlet of the water outlet pipe portion 8 so as to communicate with the valve seat flow path i on the downstream side of the valve seat 14. Built in.
[0020]
Reference numeral 23 denotes a strainer cap for holding a male screw part 24 screwed into the female screw part 5 of the cap mounting pipe part 6 and a water sealing means (for example, an O-ring) 25 for the straight pipe part 8 of the cap mounting pipe part 6. An annular recess 26, a fitting holding recess 27 of the cylindrical strainer 17, and an insertion groove 28 for a disk tool for external operation are formed.
[0021]
When the strainer 17 is built in the plug body 2, the end ring 22 of the strainer 17 is press-fitted into the recess 27 of the strainer cap 23 with the annular protrusion f elastically deformed, and the strainer 17 and the cap 23 are integrated. Then, the strainer 17 is inserted into the cap mounting tube portion 6, and the cap 23 is screwed to the male screw portion 5 .
[0022]
Therefore, the strainer 17 moves integrally with the reciprocating movement of the cap 23 in the axial direction, and the metal ring 21 on one end side moves around the valve seat 14 by the forward movement of the cap 23 in the tightening direction. It is configured to abut against the plug body portion 2A (the valve seat 14 may be a contact object).
[0023]
Then, a protruding member 30 that protrudes downstream of the valve seat 14 and bends toward the ring 21 is connected to the valve body 15, and a locking member that locks the bent portion h of the protruding member 30 from the downstream side. 31 is connected to the metal ring 21 of the strainer 17, and the valve body 15 can be opened and closed with the reciprocating movement of the cap 23 by the bent portion h, the locking member 31 and the spring 16.
[0024]
In the stop cock with strainer 1 having the above-described configuration, the cap mounting tube portion 6 is sealed with respect to the cap mounting tube portion 6 by the water sealing means 25 in the closed state of the valve seat flow path by the valve body 15. The water sealing stroke L of the water sealing means 25 is set to be larger than the opening / closing stroke L1 of the valve seat flow path by the valve body 15. Therefore, the strainer 17 is replaced with the plug body 2 by replacing or cleaning the strainer 17. When the coin-shaped disk tool is inserted into the groove 28 when taking out outside and the cap 23 is moved backward in the direction opposite to the tightening direction, the locking position of the locking member 31 with respect to the bent portion h is the downstream side. And the flow path of the valve seat 14 is automatically closed by the valve body 15 by the urging force of the spring 16 before the strainer cap 23 is completely removed, that is, in a cap-sealed state. It becomes door.
[0025]
On the other hand, when the cap 23 holding the strainer 17 integrally is screwed to the cap mounting tube portion 6, the locking member 31 connected to the ring 21 of the strainer 17 is connected with the forward movement of the cap 23 in the tightening direction. The valve body 15 slides upstream against the urging force of the spring 16 as the cap 23 further moves forward, and the flow path of the valve seat 14 opens. Finally, the ring 21 of the strainer 17 is seated on the plug body portion 2A.
[0026]
In summary, as the strainer 17 is removed from the plug body 2, the valve seat flow path is automatically closed before the removal is completed, and as the strainer 17 is attached to the plug body 2, the valve seat flow path is opened. a of being stoppered, as compared with the conventional strainer with stopcock, unforeseen a waterlogged accident prevention, as well as the work of unplugging for plugging and passing water for the water stop is Ri unnecessary and Do no , suitable strainer with stopcock 1 in handling surface Ri taken is provided.
[0027]
Further, the stop cock with strainer 1 shown in FIG. 3 includes a protruding member 32 that is connected to the valve body 15 and contacts the cap 23 . The strainer-equipped stop cock 1 shown in FIG. 4 includes a pressing member 33 that is connected to the cap 23 and engages with the valve body 15 .
[0028]
Figure 5 is a flow rate adjusting function strainer with stop cock 1 by adding a 'according to an embodiment of the present invention shows. In FIG. 5, the same reference numerals as those shown in FIGS. 1 to 4 are the same or equivalent.
This stop cock 1 ' uses a stop cock with a strainer having the configuration shown in FIG. 1, and a water sealing means by, for example, an O-ring in a state in which the cap 23 passes through the center of the cap 23. with screwing the screw member 35 through the 34, the plug body 2 inside the one end side of the screw member 35, provided so as not to escape the flow amount adjustment unit 37 to the outside, and, on the other end of the screw member 35 A screw insertion groove 38 for a tool such as a screwdriver for externally operating the screw member 35 is formed.
[0029]
In the stop cock 1 ' with a strainer to which the flow rate adjusting function having the above configuration is added , the protruding member 32 and the pressing member shown in FIGS. 3 and 4 instead of the bent portion h and the locking member 31 shown in FIGS. 33 Ru can be equipped der respectively. In this case, in FIG. 3, the protruding member 32 of the continuously arranged in the valve body 15 so as to abut against the flow rate adjustment part 3 7, in FIG. 4, a flow rate adjusting portion pressing member 33 for locking the valve body 15 It shall be connected to 37.
[0030]
【The invention's effect】
As described above, according to the present invention, as well the soggy accident prevention, work unplugging for plugging and water flow for waterproofing is not required at all, features of the preferred flow rate adjustment handling surface A water stop cock with a strainer to which is added is provided.
[Brief description of the drawings]
FIG. 1 is a cross-sectional view of a water stop cock with a strainer shown as a reference example .
2 is a cross-sectional view of the strainer with stop cock showing the extraction state of the strainer.
FIG. 3 is a cross-sectional view of a water stop cock with a strainer shown as another reference example .
FIG. 4 is a cross-sectional view of a water stop cock with a strainer shown as still another reference example .
FIG. 5 is a cross-sectional view of a water stop cock with a strainer to which a flow rate adjusting function is added according to an embodiment of the present invention .
FIG. 6 is a cross-sectional view of a water stop cock with a strainer of a conventional example.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 '... Water stop cock with a strainer which added the flow control function, 2 ... Plug body, 14 ... Valve seat, 15 ... Slide valve body, 16 ... Spring, 17 ... Strainer, 23 ... Cap, 25, 34 ... Water sealing means , 3 0,32 ... projecting member, 31 ... engaging member, 35 ... screw member, 3 7 ... flow rate adjustment section, i ... valve seat passage, the flow path to the j ... spout.

Claims (1)

水導出管部を備えた栓本体に、弁座と、スプリングの付勢力によって弁座流路を上流側から閉栓するスライド弁体とを内蔵すると共に、栓本体の弁座下流側で且つ弁座流路に連通するよう水導出管部の吐水口に至る流路途中に、筒状のストレーナを弁座の流路中心と同芯状に内蔵し、更に、このストレーナを外部操作によって軸線方向に移動させて、ストレーナの筒状端部を弁座または弁座まわりの栓本体部分に当接させるキャップを、水封手段を介して栓本体に螺着し、かつ、このキャップの水封状態での往復移動に伴って、往動時に前記スライド弁体を前記スプリングの付勢力に抗して上流側に移動させ、前記弁座流路を開栓し復動時には前記スプリングの付勢力によって前記スライド弁体を下流側に移動させ、前記弁座流路を閉栓させるよう構成され、
さらに、前記キャップの中央部に、このキャップを貫通させる状態で、水封手段を介して外部操作可能にネジ部材を螺着し、かつ、このネジ部材の栓本体内部側に、開栓状態において水導出管部の吐水口に至る流路の流量を調整する流量調整部を外部に抜け出し不能に設けて成ることを特徴とする流量調整機能を付加したストレーナ付き止水栓。
The plug body provided with the water outlet pipe portion incorporates a valve seat and a slide valve body for closing the valve seat flow path from the upstream side by the biasing force of the spring, and at the downstream side of the valve body and the valve seat. A cylindrical strainer is built in the middle of the flow path of the water outlet pipe section so as to communicate with the flow path, concentrically with the flow path center of the valve seat, and this strainer is axially operated by an external operation. Move the cap so that the cylindrical end of the strainer contacts the valve seat or the plug body around the valve seat, and screw it onto the plug body via the water sealing means. with the reciprocation, to move to the upstream side against the slide valve body during the forward scan the biasing force of the spring, the slide by the biasing force of the spring at the time of backward movement by unplugging the valve seat passage valve element is moved to the downstream side, by plugging the valve seat passage Is configured,
Further, a screw member is screwed into the central portion of the cap so as to be externally operable through a water sealing means in a state where the cap is penetrated, and in the plug body inside of the screw member in the open state. A water stop cock with a strainer to which a flow rate adjusting function is added , characterized in that a flow rate adjusting unit for adjusting the flow rate of the flow path leading to the water discharge port of the water outlet pipe portion is provided outside .
JP2000078621A 2000-03-21 2000-03-21 Stop cock with strainer with flow adjustment function Expired - Fee Related JP4167791B2 (en)

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JP2008255660A (en) * 2007-04-04 2008-10-23 Inax Corp Toilet bowl flushing device
JP5012289B2 (en) * 2007-07-30 2012-08-29 Toto株式会社 Stopcock device
JP2009186014A (en) * 2009-03-31 2009-08-20 Toto Ltd Stop cock device

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