JP2000145992A - Check valve and water discharge structure for bath tub water receiver - Google Patents

Check valve and water discharge structure for bath tub water receiver

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Publication number
JP2000145992A
JP2000145992A JP10321959A JP32195998A JP2000145992A JP 2000145992 A JP2000145992 A JP 2000145992A JP 10321959 A JP10321959 A JP 10321959A JP 32195998 A JP32195998 A JP 32195998A JP 2000145992 A JP2000145992 A JP 2000145992A
Authority
JP
Japan
Prior art keywords
float
check valve
water
bathtub
float valve
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP10321959A
Other languages
Japanese (ja)
Inventor
Shunji Masuo
俊二 増尾
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Inax Corp
Original Assignee
Inax Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Inax Corp filed Critical Inax Corp
Priority to JP10321959A priority Critical patent/JP2000145992A/en
Publication of JP2000145992A publication Critical patent/JP2000145992A/en
Pending legal-status Critical Current

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  • Check Valves (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a check valve capable of surely preventing a reverse flow and also cutting off even the circulation of gas. SOLUTION: In a check valve 18 having a float valve element 19 disposed in a float room 4 and adapted to prevent the reverse flow of fluids from a downstream to an upstream, the float bottom surface of the float valve element 19 is seated on an outflow port 8, and the size of the float bottom surface is larger than the sectional area of the outflow port 8. Thus, since the float valve element 19 is seated around the outflow port 8 to close the same in a usual standby state, the circulation of gas is cut off. Regarding a reverse flow, since the float valve element 19 is raised according to the entering amount of reverse flowing water and a inflow port 12 is closed soon, the reverse flow is prevented.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、液体の逆流を防止
すると共に、気体については上流側から又は下流側から
のいずれの流れであってもこれを遮断することのできる
逆止弁及びこれを利用した浴槽水水受の排水構造に関す
るものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a check valve capable of preventing backflow of liquid and shutting off any flow of gas from upstream or downstream. It relates to the drainage structure of the bathtub water receiver used.

【0002】[0002]

【従来の技術】従来において、上流側から下流側へ流れ
る水等の流体についてはこれを通過させ、下流側から上
流側へ逆流する水等の流体についてはこれを阻止する逆
止弁として、図4〜図6のそれぞれ図(A)及び図
(B)に示す球型、かさ型、逆かさ型のものがある。こ
れらの各逆止弁1〜3は、いずれもフロート室4内に配
設されたフロート弁体5〜7を有し、流出口8側に環状
の着座部9が設けられている。この着座部9は、流出口
8の周囲から複数本の支持部材10によって支持されて
おり、上流側から下流側へ水等が流れているときは、フ
ロート弁体5〜7は流体の勢いによって当該環状の着座
部9へ押し付けられて着座し、流出口8との間に所定の
間隙(流路)11を確保している(図4〜図6の各図
(A)を参照)。従って、水等の流体は、流入口12か
らフロート室4へ入り、着座状態のフロート弁体5〜7
と流出口8との間に形成される前記流路11を通って流
出口8へ流れ込み、下流側へと排出される。
2. Description of the Related Art Conventionally, as a check valve, a fluid such as water flowing from an upstream side to a downstream side is passed therethrough, and a fluid such as water flowing back from a downstream side to an upstream side is blocked. 4 to 6 include a spherical type, a bulk type, and an inverted shape shown in FIGS. Each of these check valves 1 to 3 has a float valve element 5 to 7 arranged in the float chamber 4, and an annular seating portion 9 is provided on the outlet 8 side. The seat portion 9 is supported by a plurality of support members 10 from around the outlet 8. When water or the like flows from the upstream side to the downstream side, the float valve bodies 5 to 7 are driven by the force of the fluid. The seat is pressed against the annular seating portion 9 to secure a predetermined gap (flow path) 11 between the annular seating portion 9 and the outflow port 8 (see FIGS. 4 to 6A). Therefore, fluid such as water enters the float chamber 4 from the inflow port 12 and the float valves 5 to 7 in the seated state.
The fluid flows into the outlet 8 through the flow path 11 formed between the fluid and the outlet 8, and is discharged downstream.

【0003】一方、下流側から水等の流体が逆流してき
た場合は、図4〜図6の各図(B)に示すように、この
逆流水のフロート室4への侵入によってフロート弁体5
〜7が押し上げられ、やがてフロート弁体5〜7の上部
の一部が流入口12を閉塞し、逆流を防止している。
On the other hand, when a fluid such as water flows backward from the downstream side, as shown in FIGS. 4 to 6B, the float valve element 5
7 are pushed up, and a part of the upper portions of the float valve elements 5 to 7 closes the inflow port 12 to prevent backflow.

【0004】また従来において、このような逆止弁1〜
3は、図7に示す、浴槽水の循環追焚き機能を備えた浴
槽装置の水受を排水する装置に利用されている。循環追
焚き機能を備えた浴槽装置は、浴槽水を循環させる系路
の途中に追焚き釜を設けており、浴槽水の温度が低下す
ると、浴槽水を循環させて追焚き釜で再加熱し、所望す
る温度に温めている。この循環系路と浴槽13との接続
は、浴槽13の循環口に取り付けられる金具14によっ
て行われている。ところが、この取付金具14は、浴槽
13を設置した後に浴槽13内から循環口を通じて取り
付けなければならず、その取り付けが不十分になること
があり、漏水するおそれがあった。
Conventionally, such check valves 1 to
Numeral 3 is used in a device shown in FIG. 7 for draining a water receiver of a bathtub device having a function of recirculating bathtub water. The bath tub device with the circulation reheating function is equipped with a reheating tank in the middle of the system for circulating the bath water, and when the temperature of the bath water drops, the bath water is circulated and reheated by the reheating tank. Warm to the desired temperature. The connection between the circulation path and the bathtub 13 is made by a metal fitting 14 attached to a circulation port of the bathtub 13. However, the mounting bracket 14 must be mounted through the circulation port from inside the bathtub 13 after the installation of the bathtub 13, and the mounting may be insufficient, and there is a risk of water leakage.

【0005】そのため、従来では仮に漏水が発生した場
合であっても、これを排水できるように、循環口取付金
具14の下方に水受15を設置し、洗場16の下面の排
水トラップ17へ連通接続していた。そして、その途中
に、前述した逆止弁1〜3のいずれかを配設し、排水ト
ラップ17側から水受15側へ逆流が生じないようにし
ていた。
[0005] Therefore, conventionally, even if a leak occurs, a water receiver 15 is installed below the circulation port mounting bracket 14 so that the water can be drained, and the drainage trap 17 is provided to a drain trap 17 on the lower surface of the washing place 16. Communication was established. Further, any one of the above-described check valves 1 to 3 is disposed in the middle thereof so that the backflow does not occur from the drain trap 17 side to the water receiver 15 side.

【0006】[0006]

【発明が解決しようとする課題】ところが、図4及び図
5に示す従来の逆止弁1及び2の場合は、フロート弁体
5及び6の形状が球型又は円錐状であるため、同図の各
図(B)に示すように、水等の流体が逆流してきた場合
に、フロート弁体5及び6がふらつき、中心を維持する
精度に劣り、流入口12とフロート弁体5及び6との接
合(着座姿勢)がいびつになることがあった。そのた
め、流入口12とフロート弁体5及び6との間に、部分
的に隙間ができることがあり、逆流を完全に阻止できな
い場合があった。このことは、逆流する流体の圧力が微
圧である場合に顕著であった。
However, in the case of the conventional check valves 1 and 2 shown in FIGS. 4 and 5, since the shape of the float valve bodies 5 and 6 are spherical or conical, they are not shown in FIG. As shown in each figure (B), when the fluid such as water flows backward, the float valve bodies 5 and 6 fluctuate, and the accuracy of maintaining the center is poor, and the inflow port 12 and the float valve bodies 5 and 6 Joint (seated posture) was sometimes distorted. Therefore, a gap may be partially formed between the inflow port 12 and the float valve bodies 5 and 6, and the backflow may not be completely prevented in some cases. This was remarkable when the pressure of the fluid flowing backward was very small.

【0007】また図6に示す従来の逆止弁3の場合は、
同図の図(B)に示すように、フロート弁体7が逆かさ
型であるため、逆かさ部分に上流側からの汚れが付着
し、やがて流入口12との接合に際し、その周囲の一部
に間隙が形成され、やはり逆流を阻止できない場合があ
った。
In the case of the conventional check valve 3 shown in FIG.
As shown in FIG. 3B, since the float valve element 7 is of an upside down type, dirt from the upstream side adheres to the upside down portion, and when the float valve body 7 is joined to the inflow port 12, the surrounding area becomes short. In some cases, a gap was formed in the portion, and the backflow could not be prevented.

【0008】更に、前記従来の逆止弁3はいずれの場合
も、気体の流通に対してはフロート弁体5〜7自体がフ
ロートとして機能することがなく、気体を自由に流通さ
せていた。
Further, in each of the above-mentioned conventional check valves 3, the float valves 5 to 7 themselves do not function as floats for the flow of gas, and the gas flows freely.

【0009】そのため、このような逆流防止機能に問題
があり、また気体を自由に流通させる従来の逆止弁1〜
3を用いた図7の浴槽水水受の排水設備では、排水トラ
ップ17からの汚水が逆止弁1〜3を通過して水受15
へ流れ、オーバーフローして浴槽13の背面側と建物躯
体との間の床等を腐らせる虞れがあった。しかも、入浴
使用中における排水トラップ17からの蒸気が、前記逆
止弁1〜3を自由に通過して水受15から浴槽13の背
面側へ流出し、やはり建物躯体との間の床等を湿らせる
という問題があった。
[0009] Therefore, there is a problem in such a backflow prevention function, and the conventional non-return valves 1 to 1 that allow gas to flow freely.
7 using the tub 3 in FIG. 7, the sewage from the drain trap 17 passes through the check valves 1 to 3 and receives the water from the tub 15.
There is a risk of overflowing and overflowing, causing the floor and the like between the back side of the bathtub 13 and the building frame to rot. In addition, the steam from the drain trap 17 during bathing freely passes through the check valves 1 to 3 and flows out of the water receiver 15 to the back side of the bathtub 13, thus also removing the floor between the building frame and the like. There was the problem of moistening.

【0010】また寒冷地等の凍結の虞れがある地方で
は、排水トラップ17等の水が溜まる部材には保温材を
巻いたりしてトラップ内の封水が凍結しないようにして
いる。ところが、建物躯体の壁面を通じて浴槽13の背
面側へ伝わる冷気及び循環釜との浴槽13との循環系路
からの伝熱等により伝わる冷気により、浴槽13の背面
側と建物躯体との間の空気が冷却され、この冷気が前記
逆止弁1〜3を通過して排水トラップ17内の封水を凍
結させ、排水トラップ17を損壊させる虞れがあった。
In a region where there is a risk of freezing, such as a cold region, a heat insulating material is wrapped around a water trapping member such as the drain trap 17 so that the water sealed in the trap is not frozen. However, due to the cool air transmitted to the back side of the bathtub 13 through the wall surface of the building frame and the cool air transmitted by the heat transfer from the circulation system path to the bathtub 13 with the circulation pot, the air between the back side of the bathtub 13 and the building frame is generated. The cold air passes through the check valves 1 to 3 and freezes the water sealed in the drain trap 17, possibly damaging the drain trap 17.

【0011】[0011]

【課題を解決するための手段】本発明は従来の前記課題
に鑑みてこれを改良除去したものであって、逆流を確実
に防止でき、また気体の流通をも遮断することのできる
逆止弁及びこれを利用した浴槽水水受の排水構造を提供
せんとするものである。
DISCLOSURE OF THE INVENTION The present invention has been made in view of the above-mentioned problems and has been improved and eliminated. The check valve can surely prevent a backflow and can also shut off gas flow. And a drainage structure for receiving a bath water from the bath.

【0012】而して、前記課題を解決するために本発明
が採用した請求項1の手段は、フロート室にフロート弁
体を配置し、流体の下流側から上流側への逆流を防止す
る弁体において、フロート弁体のフロート底面を流出口
へ着座し得る構造とし、フロート底面の大きさを流出口
の断面積よりも大きくしたことを特徴とする逆止弁であ
る。通常は、フロート弁体が流出口を閉塞しているの
で、気体の流通は遮断されている。また逆流に対して
は、フロート弁体が逆流水の侵入量に応じて上昇し、や
がて流入口を閉塞するので、逆流を防止することも可能
である。
According to the first aspect of the present invention, there is provided a valve for arranging a float valve in a float chamber to prevent backflow of fluid from a downstream side to an upstream side. The check valve has a structure in which a float bottom surface of the float valve body can be seated at an outlet, and a size of the float bottom surface is larger than a cross-sectional area of the outlet. Normally, the flow of gas is shut off because the float valve plugs the outlet. Further, with respect to the backflow, the float valve body rises according to the amount of inflow of the backflow water, and eventually closes the inflow port, so that the backflow can be prevented.

【0013】本発明が採用した請求項2の手段は、浴槽
外部の循環口取付金具の水受と排水トラップとを配管接
続し、その中間に請求項1に記載の逆止弁を配設したこ
とを特徴とする浴槽水水受の排水構造である。逆流防止
機能に加えて、気体の流通を遮断することができるの
で、排水トラップ側から水蒸気が浴槽背面側へ回り込ん
だり、また浴槽背面側の冷気が排水トラップ内へ入り込
んで封水を凍結させることもない。
According to a second aspect of the present invention, the water receiving and drainage traps of the circulation port mounting bracket outside the bathtub are connected by piping, and the check valve according to the first aspect is disposed between the two. It is a drainage structure of a bathtub water receiver. In addition to the backflow prevention function, the flow of gas can be shut off, so that water vapor spills from the drain trap side to the backside of the bathtub, and cool air on the backside of the bathtub enters the drainage trap and freezes the sealed water. Not even.

【0014】本発明が採用した請求項3の手段は、浴槽
外部の循環口取付金具の水受と浴室洗場とを配管接続
し、その中間に請求項1に記載の逆止弁を配設したこと
を特徴とする浴槽水水受の排水構造である。この発明に
おいては、浴室内の蒸気が浴槽背面側へ回り込むことが
なく、また浴槽背面側の冷気が浴室内へ流入することも
ない。
According to a third aspect of the present invention, there is provided a check valve according to the first aspect of the present invention, wherein a water receiver of a circulation port mounting bracket outside the bathtub and a bathroom washing place are connected by piping. It is a drainage structure of the bathtub water receiver which has been characterized. In the present invention, the steam in the bathroom does not flow to the back of the bathtub, and the cool air on the back of the bathtub does not flow into the bathroom.

【0015】[0015]

【発明の実施の形態】以下に、本発明の構成を図面に示
す発明の実施の形態に基づいて説明すると次の通りであ
る。なお、従来の場合と同一符号は同一部材である。図
1は本発明の一実施の形態に係る逆止弁18を示す概略
縦断面図であり、図(A)は待機状態の時の縦断面図、
図(B)は逆流時の縦断面図である。この実施の形態に
係る逆止弁18は、フロート弁体19の底面の面積が流
出口8の開口面積よりも大きくなるように設定されてお
り、待機状態の時は、フロート弁体19はその底面を流
出口8へ着座させてこれを閉塞するようにしている。フ
ロート弁体19の周囲には、複数の翼部材20が放射状
に取り付けられている。翼部材20は、フロート弁体1
9が傾いたときに、フロート室4の内周面と接合して心
ズレを起こさないようにするためのものであり、自動調
心作用を有している。また流体は、翼部材20どうしの
間を通過することが可能である。フロート弁体19の上
面には、ゴムパッキン21が取り付けられており、逆流
時に流入口12の周囲天井に密着してこれを閉塞するこ
とができるようになされている。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The configuration of the present invention will be described below with reference to the embodiments of the invention shown in the drawings. The same reference numerals as those in the conventional case denote the same members. FIG. 1 is a schematic longitudinal sectional view showing a check valve 18 according to one embodiment of the present invention, and FIG. 1 (A) is a longitudinal sectional view in a standby state.
FIG. 7B is a longitudinal sectional view at the time of backflow. The check valve 18 according to this embodiment is set so that the area of the bottom surface of the float valve body 19 is larger than the opening area of the outflow port 8, and the float valve body 19 is in the standby state. The bottom surface is seated on the outlet 8 to close it. A plurality of wing members 20 are radially mounted around the float valve element 19. The wing member 20 includes the float valve body 1
When it is inclined, it joins with the inner peripheral surface of the float chamber 4 to prevent the misalignment, and has a self-aligning action. Further, the fluid can pass between the wing members 20. A rubber packing 21 is attached to the upper surface of the float valve body 19 so that the rubber valve 21 can be in close contact with the surrounding ceiling of the inflow port 12 and can be closed at the time of backflow.

【0016】このように構成された逆止弁18は、待機
状態の時は、同図の図(A)に示すように、フロート弁
体19の底面が流出口8に着座してこれを閉塞してい
る。そのため、気体の流通を遮断することが可能であ
る。なお、流出口8からフロート室4へ流入しようとす
る気体に対しては、フロート弁体19の重量がその流入
を遮断する錘としての役目を有しているので、気体の圧
力等を勘案してその重量を決定すればよい。流入口12
からフロート室4へ流入する気体の場合は、その圧力は
フロート弁体4の底面を流出口8へ押し付けるように作
用するので、その重量を特に考慮する必要はない。
When the check valve 18 thus configured is in a standby state, the bottom surface of the float valve body 19 sits on the outflow port 8 and closes it, as shown in FIG. are doing. Therefore, it is possible to cut off the gas flow. The weight of the float valve body 19 serves as a weight for blocking the inflow of the gas flowing into the float chamber 4 from the outlet 8. What is necessary is just to determine the weight. Inlet 12
In the case of gas flowing into the float chamber 4 from above, its pressure acts so as to press the bottom surface of the float valve body 4 against the outlet 8, so that it is not necessary to particularly consider the weight.

【0017】このような待機状態から水等の液体が流入
口12からフロート室4へ流入すると、フロート弁体1
9はフロート室4へ溜まった水の量に応じて浮力が生じ
て浮き上がり、流出口8を開放する。そのため、フロー
ト室4から流出口8を通じて水が排出される。以後は、
フロート弁体19が上昇を繰り返し、同様にして水の排
出を行う。
When a liquid such as water flows into the float chamber 4 from the inflow port 12 from such a standby state, the float valve 1
Numeral 9 generates buoyancy in accordance with the amount of water accumulated in the float chamber 4 and rises to open the outlet 8. Therefore, water is discharged from the float chamber 4 through the outlet 8. After that,
The float valve body 19 repeats ascending, and discharges water similarly.

【0018】また水等の逆流時には、同図の図(B)に
示すように、流出口8からフロート室4へ逆流して侵入
してきた水の水位の上昇によってフロート弁体19が浮
き上がり、やがてゴムパッキン21が流入口12の周囲
に密着してこれを閉塞するようになる。そのため、水は
行き場を失い、逆流が阻止される。
At the time of backflow of water or the like, as shown in FIG. 2B, the float valve body 19 rises due to the rise in the water level of the water flowing backward from the outlet 8 into the float chamber 4 and entering the float chamber 4. The rubber packing 21 comes into close contact with the periphery of the inflow port 12 and closes it. Therefore, the water loses its place and the backflow is prevented.

【0019】図2は、本発明の別の実施の形態に係る逆
止弁22を示すものである。この逆止弁22は、フロー
ト弁体19の底面にもゴムパッキン21を配設したもの
である。従って、待機状態の時はフロート弁体19の自
重によってゴムパッキン21が流出口8の周囲に密着
し、これを閉塞している。その他の構成並びに作用効果
は、前記図1に示す場合と同じであり、ここでの説明は
省略する。
FIG. 2 shows a check valve 22 according to another embodiment of the present invention. The check valve 22 has a rubber packing 21 disposed on the bottom surface of the float valve body 19. Therefore, in the standby state, the rubber packing 21 adheres to the periphery of the outflow port 8 due to its own weight of the float valve body 19 and closes it. The other configuration and operation and effect are the same as those in the case shown in FIG. 1 described above, and description thereof will be omitted.

【0020】図3は、本発明の図1及び図2に示す逆止
弁18又は22を浴槽水水受の排水構造に適用した場合
を示すものであり、図(A)は水受15の排水系路23
が排水トラップ17へ連通接続された場合、図(B)は
水受15の排水系路23が浴室洗場16へ連通接続され
た場合の概略縦断面図である。図(A)に示すように、
逆止弁機能に優れ、気体の流通を遮断することのできる
逆止弁18又は22を排水系路23の途中に配設するこ
とにより、排水トラップ17からの汚水が逆止弁18又
は22を通過して水受15へ逆流することがなくなる。
そのため、浴槽13の背面側と建物躯体との間の床等が
逆流水によって腐敗する等の問題は起こり得ない。ま
た、入浴中における排水トラップ17からの蒸気が、逆
止弁18又は22を通過して水受15側へ抜け出ること
もなく、浴槽13の背面側を湿らす等の問題もない。こ
のことは、寒冷地等の凍結の虞れがある地方の場合であ
っても、建物躯体の壁面を通じて浴槽13の背面側へ伝
わる冷気等により、浴槽13の背面側と建物躯体との間
の空気が冷却されても、この冷気の流通が前記逆止弁1
8又は22によって遮断されるので、排水トラップ17
側へ流入することがなく、排水トラップ17内の封水の
凍結による損壊等も起こり得ない。
FIG. 3 shows a case where the check valve 18 or 22 shown in FIGS. 1 and 2 of the present invention is applied to a drainage structure of a bathtub water receiver, and FIG. Drainage channel 23
(B) is a schematic longitudinal sectional view when the drainage passage 23 of the water receiver 15 is connected to the bathroom washing place 16. As shown in FIG.
By arranging the check valve 18 or 22 which is excellent in the check valve function and can shut off the gas flow in the middle of the drainage passage 23, the sewage from the drain trap 17 causes the check valve 18 or 22 to pass through. It does not flow back to the water receiver 15 after passing through.
Therefore, a problem such as the floor between the back side of the bathtub 13 and the building frame being rotten by backflow water cannot occur. Further, the steam from the drain trap 17 during bathing does not pass through the check valve 18 or 22 and escapes to the water receiver 15 side, and there is no problem such as wetting the back side of the bathtub 13. This means that even in a region where there is a risk of freezing, such as in a cold region, the cold air transmitted to the back side of the bathtub 13 through the wall surface of the building frame causes a gap between the backside of the bathtub 13 and the building frame. Even when the air is cooled, the flow of the cool air is controlled by the check valve 1.
8 or 22, the drain trap 17
The water does not flow to the side, and damage due to freezing of the sealed water in the drain trap 17 cannot occur.

【0021】このことは、同図の図(B)に示す浴槽水
水受の排水構造の場合でも同じである。即ち、浴室洗場
16からの水の逆流を確実に防止でき、また浴室洗場1
6からの蒸気の逆流及び浴槽背面側からの浴室洗場16
への冷気の侵入を確実に阻止することが可能である。
This is the same in the case of the drainage structure of the bathtub water receiver shown in FIG. That is, the backflow of water from the bathroom washroom 16 can be reliably prevented, and the bathroom washroom 1
Backflow of steam from 6 and bathroom washroom 16 from the back of the bathtub
It is possible to reliably prevent cold air from entering the air.

【0022】[0022]

【発明の効果】以上説明したように本発明にあっては、
フロート室にフロート弁体を配置し、流体の下流側から
上流側への逆流を防止する弁体において、フロート弁体
のフロート底面を流出口へ着座し得る構造とし、フロー
ト底面の大きさを流出口の断面積よりも大きくしたか
ら、通常の待機状態では、フロート弁体が流出口の周囲
に着座してこれを閉塞することになる。そのため、気体
の流通が遮断される。また逆流に対しては、フロート弁
体が逆流水の侵入量に応じて上昇し、やがて流入口を閉
塞するので、逆流を防止することも可能である。
As described above, in the present invention,
A float valve body is arranged in the float chamber to prevent the backflow of fluid from the downstream side to the upstream side. Since the cross-sectional area is larger than the outlet, in a normal standby state, the float valve body sits around the outlet and closes the outlet. Therefore, the flow of gas is shut off. Further, with respect to the backflow, the float valve body rises according to the amount of inflow of the backflow water, and eventually closes the inflow port, so that the backflow can be prevented.

【0023】また本発明にあっては、浴槽外部の循環口
取付金具の水受と排水トラップとを配管接続し、その中
間に前記の逆止弁を配設している。これにより、逆流防
止機能に加えて、気体の流通を遮断することができるの
で、排水トラップ側から水蒸気が浴槽背面側へ回り込ん
だり、また浴槽背面側の冷気が排水トラップ内へ入り込
んで封水を凍結させることもない。
In the present invention, the water receiver and the drain trap of the circulation port mounting bracket outside the bathtub are connected by piping, and the above-mentioned check valve is disposed in the middle of the pipe. As a result, in addition to the backflow prevention function, the flow of gas can be shut off, so that water vapor spills from the drain trap side to the back of the bath tub, and cool air on the back side of the bath tub enters the drain trap to seal water. Also does not freeze.

【0024】更に、本発明にあっては、浴槽外部の循環
口取付金具の水受と浴室洗場とを配管接続し、その中間
に前記の逆止弁を配設している。この発明の場合は、逆
流防止機能に加えて、浴室内の蒸気が浴槽背面側へ回り
込むことがなく、また浴槽背面側の冷気が浴室内へ流入
することもない。
Further, according to the present invention, the water receiver of the circulation port mounting bracket outside the bathtub and the bathroom washing place are connected by piping, and the above-mentioned check valve is disposed in the middle thereof. In the case of the present invention, in addition to the backflow preventing function, the vapor in the bathroom does not flow to the back of the bathtub, and the cool air on the back of the bathtub does not flow into the bathroom.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の一実施の形態に係る逆止弁を示す概略
縦断面図であり、図(A)は待機状態の時の縦断面図、
図(B)は逆流時の縦断面図である。
FIG. 1 is a schematic longitudinal sectional view showing a check valve according to one embodiment of the present invention, and FIG. 1 (A) is a longitudinal sectional view in a standby state;
FIG. 7B is a longitudinal sectional view at the time of backflow.

【図2】本発明の別の実施の形態に係る逆止弁の概略縦
断面図である。
FIG. 2 is a schematic longitudinal sectional view of a check valve according to another embodiment of the present invention.

【図3】本発明に係る逆止弁を適用した浴槽水水受の排
水構造を示す縦断面図であり、図(A)は水受と排水ト
ラップとを結ぶ排水系路の途中へ配設した場合、図
(B)は水受と浴室洗場とを結ぶ排水系路の途中へ配設
した場合である。
FIG. 3 is a longitudinal sectional view showing a drainage structure of a bathtub water drainage to which the check valve according to the present invention is applied, and FIG. 3 (A) is provided in the middle of a drainage passage connecting a water sink and a drainage trap. In this case, FIG. (B) shows a case where the device is provided in the middle of a drainage system connecting the water receiver and the bathroom washroom.

【図4】従来の球型の逆止弁を示すものであり、図
(A)は通常時の縦断面図、図(B)は逆流時の縦断面
図である。
4A and 4B show a conventional spherical check valve, wherein FIG. 4A is a vertical cross-sectional view during normal operation, and FIG. 4B is a vertical cross-sectional view during reverse flow.

【図5】従来のかさ型の逆止弁を示すものであり、図
(A)は通常時の縦断面図、図(B)は逆流時の縦断面
図である。
5A and 5B show a conventional bulk type check valve. FIG. 5A is a vertical cross-sectional view at normal time, and FIG. 5B is a vertical cross-sectional view at reverse flow.

【図6】従来の逆かさ型の逆止弁を示すものであり、図
(A)は通常時の縦断面図、図(B)は逆流時の縦断面
図である。
6A and 6B show a conventional inverted upside-down check valve, in which FIG. 6A is a vertical cross-sectional view at normal time, and FIG. 6B is a vertical cross-sectional view at reverse flow.

【図7】従来の浴槽水水受の排水構造を示す概略縦断面
図である。
FIG. 7 is a schematic longitudinal sectional view showing a conventional drainage structure of a bathtub water receiver.

【符号の説明】[Explanation of symbols]

4…フロート室 8…流出口 12…流入口 13…浴槽 14…循環口取付金具 15…水受 16…浴室洗場 17…排水トラッ
プ 18…逆止弁 19…フロート弁
体 20…翼部材 21…ゴムパッキ
ン 22…逆止弁 23…排水系路
DESCRIPTION OF SYMBOLS 4 ... Float room 8 ... Outlet 12 ... Inlet 13 ... Bathtub 14 ... Circulation port mounting bracket 15 ... Water receiver 16 ... Bathroom washroom 17 ... Drain trap 18 ... Check valve 19 ... Float valve body 20 ... Wing member 21 Rubber packing 22 ... check valve 23 ... drainage passage

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】フロート室にフロート弁体を配置し、流体
の下流側から上流側への逆流を防止する弁体において、
フロート弁体のフロート底面を流出口へ着座し得る構造
とし、フロート底面の大きさを流出口の断面積よりも大
きくしたことを特徴とする逆止弁。
1. A valve body for disposing a float valve body in a float chamber to prevent a backflow of fluid from a downstream side to an upstream side.
A check valve characterized in that the float bottom surface of the float valve body can be seated on the outlet, and the size of the float bottom surface is larger than the cross-sectional area of the outlet.
【請求項2】浴槽外部の循環口取付金具の水受と排水ト
ラップとを配管接続し、その中間に請求項1に記載の逆
止弁を配設したことを特徴とする浴槽水水受の排水構
造。
2. A bathtub water receiver according to claim 1, wherein a water receiver of a circulation port mounting bracket outside the bathtub and a drain trap are connected by piping, and the check valve according to claim 1 is disposed in between. Drainage structure.
【請求項3】浴槽外部の循環口取付金具の水受と浴室洗
場とを配管接続し、その中間に請求項1に記載の逆止弁
を配設したことを特徴とする浴槽水水受の排水構造。
3. A bathtub water receiver, wherein the water receiver of the circulation port mounting bracket outside the bathtub and the bathroom washing place are connected by piping, and the check valve according to claim 1 is disposed in the middle thereof. Drainage structure.
JP10321959A 1998-11-12 1998-11-12 Check valve and water discharge structure for bath tub water receiver Pending JP2000145992A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10321959A JP2000145992A (en) 1998-11-12 1998-11-12 Check valve and water discharge structure for bath tub water receiver

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10321959A JP2000145992A (en) 1998-11-12 1998-11-12 Check valve and water discharge structure for bath tub water receiver

Publications (1)

Publication Number Publication Date
JP2000145992A true JP2000145992A (en) 2000-05-26

Family

ID=18138345

Family Applications (1)

Application Number Title Priority Date Filing Date
JP10321959A Pending JP2000145992A (en) 1998-11-12 1998-11-12 Check valve and water discharge structure for bath tub water receiver

Country Status (1)

Country Link
JP (1) JP2000145992A (en)

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003052561A (en) * 2001-08-10 2003-02-25 Toto Ltd Structure for water-receiving tray
KR100481916B1 (en) * 2002-05-08 2005-04-13 이중호 Check valve for opening and closing of cold and warm water purifier
JP2007244802A (en) * 2006-03-20 2007-09-27 Koji Okuda Water-resistant breathable footwear
FR2905745A1 (en) * 2006-09-13 2008-03-14 Inergy Automotive Systems Res Fuel e.g. petrol, tank`s venting system for motor vehicle, has check valve forced in closed position of opening by float at level of fuel, where float straightens arm and support to stop deformation of valve when level attains certain limit
WO2008031830A1 (en) * 2006-09-13 2008-03-20 Inergy Automotive Systems Research (Société Anonyme) Liquid tank venting system
JP2016061413A (en) * 2014-09-19 2016-04-25 株式会社テイエルブイ Float type check valve
WO2016123331A1 (en) * 2015-01-28 2016-08-04 Green Drain Inc. Sliding skirt valve
JP2017194068A (en) * 2016-04-18 2017-10-26 株式会社テイエルブイ Backflow prevention device

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003052561A (en) * 2001-08-10 2003-02-25 Toto Ltd Structure for water-receiving tray
JP4640689B2 (en) * 2001-08-10 2011-03-02 Toto株式会社 Water tray structure
KR100481916B1 (en) * 2002-05-08 2005-04-13 이중호 Check valve for opening and closing of cold and warm water purifier
JP2007244802A (en) * 2006-03-20 2007-09-27 Koji Okuda Water-resistant breathable footwear
FR2905745A1 (en) * 2006-09-13 2008-03-14 Inergy Automotive Systems Res Fuel e.g. petrol, tank`s venting system for motor vehicle, has check valve forced in closed position of opening by float at level of fuel, where float straightens arm and support to stop deformation of valve when level attains certain limit
WO2008031830A1 (en) * 2006-09-13 2008-03-20 Inergy Automotive Systems Research (Société Anonyme) Liquid tank venting system
CN101523098B (en) * 2006-09-13 2013-03-27 因勒纪汽车系统研究公司 Liquid tank venting system
US8485215B2 (en) 2006-09-13 2013-07-16 Inergy Automotive Systems Research (S.A.) Liquid tank venting system
JP2016061413A (en) * 2014-09-19 2016-04-25 株式会社テイエルブイ Float type check valve
WO2016123331A1 (en) * 2015-01-28 2016-08-04 Green Drain Inc. Sliding skirt valve
JP2017194068A (en) * 2016-04-18 2017-10-26 株式会社テイエルブイ Backflow prevention device

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