JP5416464B2 - Exhaust valve - Google Patents

Exhaust valve Download PDF

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JP5416464B2
JP5416464B2 JP2009099382A JP2009099382A JP5416464B2 JP 5416464 B2 JP5416464 B2 JP 5416464B2 JP 2009099382 A JP2009099382 A JP 2009099382A JP 2009099382 A JP2009099382 A JP 2009099382A JP 5416464 B2 JP5416464 B2 JP 5416464B2
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float
hole
valve chamber
valve
outlet
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JP2010249232A (en
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利行 関
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Tlv Co Ltd
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本発明は、配管に水を送り込むときに開弁して配管内の空気を排気し、排気が終われば閉弁し、また配管系の圧力が低下して真空状態となったときに開弁して外部空気を導入することにより真空状態を破壊する排気弁に関する。 The present invention opens the valve when water is fed into the pipe, exhausts the air in the pipe, closes when the exhaust is finished, and opens when the pressure in the piping system drops to a vacuum state. The present invention relates to an exhaust valve that breaks a vacuum state by introducing external air.

従来の排気弁は、例えば特許文献1に開示されている。これは、ケーシングで下部に流入口が開口し上部に流出口が開口した弁室を形成し、弁室と流出口の間に弁座を形成し、弁室内壁に内側に突出したリブを形成し、リブの内側に有底のほぼ円筒形状で底部に内外を連通する通孔を設けたフロート受けを固定し、フロート受け内にフロートを自由状態で配したものである。この排気弁は、先ず配管に水を送り込むときにはフロートが弁座から離座して降下した開弁状態であり、流入口から弁室内に流入してくる配管内の空気をリブの間の空間からフロート受け上端を通して及び通孔からフロート受け内を通して流出口に排気する。そして排気が終わって配管内の水が流入口から弁室内に流入してくると、リブの間の空間からフロート受け上端を通して及び通孔を通してフロート受け内に流入する水によってフロートが浮上して弁座に着座し閉弁する。また配管系の圧力が低下して真空状態となったときにはフロートが弁座から離座して降下し、流出口から弁室内に流入してくる外部空気をフロート受け内から通孔を通して及びフロート受け上端からリブの間の空間を通して流入口から配管内に導入することにより真空状態を破壊する。 A conventional exhaust valve is disclosed in Patent Document 1, for example. This is a casing that forms a valve chamber with an inlet opening in the lower part and an outlet opening in the upper part, forming a valve seat between the valve chamber and the outlet, and forming a rib protruding inward on the valve chamber wall. Then, a float receiver having a substantially cylindrical shape with a bottom on the inside of the rib and having a through hole communicating with the inside and the outside at the bottom is fixed, and the float is arranged in a free state in the float receiver. This exhaust valve is in an open state where the float is separated from the valve seat and lowered when water is first fed into the pipe. Exhaust through the upper end of the float receiver and through the inside of the float receiver to the outlet. Then, when the exhaust is finished and the water in the pipe flows into the valve chamber from the inlet, the float floats by the water flowing into the float receiver from the space between the ribs through the float receiver upper end and through the through hole. Sit on the seat and close the valve. In addition, when the pressure in the piping system drops to a vacuum state, the float moves away from the valve seat and descends, and external air flowing into the valve chamber from the outlet is passed through the through hole and through the float receiver. The vacuum state is broken by introducing into the pipe from the inlet through the space between the upper end and the rib.

実公昭53−1622号公報Japanese Utility Model Publication No. 53-1622

上記従来の排気弁は、真空状態を破壊するときにフロートが充分に降下せず、半開状態になったりあるいは小刻みな開閉弁を繰り返すために、真空破壊能力が小さく真空破壊に時間がかかると言う問題点があった。これは、流出口から弁室内に流入する外部空気の大半が直進してフロート受け内に入り、フロート受け内に入った外部空気が通孔を通過しきれないために、フロート受け内のフロート下方の圧力が上昇し、フロートが浮き上がるためである。 In the conventional exhaust valve, when the vacuum state is broken, the float does not drop sufficiently, and the valve is half open, or the on-off valve is repeated little by little, so the vacuum breaking ability is small and it takes time to break the vacuum. There was a problem. This is because most of the external air that flows into the valve chamber from the outlet goes straight into the float receiver, and the outside air that has entered the float receiver cannot pass through the through hole. This is because the float pressure rises and the float rises.

したがって本発明が解決しようとする課題は、真空破壊能力が大きく速やかに真空破壊できる排気弁を提供することである。 Therefore, the problem to be solved by the present invention is to provide an exhaust valve that has a large vacuum breaking capability and can be quickly broken.

上記の課題を解決するために、本発明の排気弁は、ケーシングで下部に流入口が開口し上部に流出口が開口した弁室を形成し、弁室と流出口の間に弁座を形成し、弁室内壁に内側に突出したリブを形成し、リブの内側に有底のほぼ円筒形状で底部に内外を連通する通孔を設けたフロート受けを配し、フロート受け内にフロートを自由状態で配したものにおいて、フロート受けの底部に内外を連通する第2通孔を設け、フロート受けを弾性部材で流出口側に付勢して配置すると共にフロート受けが流出口側に変位したときに第2通孔を閉口する開閉部材を設け、流出口から弁室内に流入する外部空気の勢いでフロート受けが弾性部材に抗して流入口側に変位すると共に第2通孔を開口することを特徴とするものである。 In order to solve the above-described problems, the exhaust valve of the present invention forms a valve chamber having an inlet opening at the bottom and an outlet opening at the upper portion of the casing, and a valve seat is formed between the valve chamber and the outlet. In addition, a rib that protrudes inward is formed on the valve chamber wall, and a float receiver that has a bottomed, almost cylindrical shape with a through hole that communicates the inside and outside is arranged inside the rib. When the float receiver is provided with a second through hole at the bottom of the float receiver, and the float receiver is urged toward the outlet by an elastic member, and the float receiver is displaced toward the outlet. An opening / closing member for closing the second through hole is provided, and the float receiver is displaced toward the inlet side against the elastic member by the force of the external air flowing into the valve chamber from the outlet and opens the second through hole. It is characterized by.

本発明によれば、流出口から弁室内に流入する外部空気の勢いでフロート受けが弾性部材に抗して流入口側に変位すると共に第2通孔を開口するものであるので、フロート受け内に入った外部空気が通孔及び第2通孔を通して素早く流入口側へ導入され、フロート受け内のフロート下方の圧力が上昇することを防止する。そのため、真空破壊能力が大きく速やかに真空破壊できるという効果を奏する。 According to the present invention, the float receiver is displaced toward the inlet side against the elastic member by the force of the external air flowing into the valve chamber from the outlet, and opens the second through hole. The outside air that has entered is quickly introduced to the inlet side through the through hole and the second through hole, and the pressure below the float in the float receiver is prevented from rising. Therefore, there is an effect that the vacuum breaking ability is large and the vacuum breaking can be performed quickly.

本発明の実施の形態に係わる排気弁の断面図である。It is sectional drawing of the exhaust valve concerning embodiment of this invention.

以下、本発明の実施の形態について、図1を参照して説明する。本体1に蓋2をボルトで締結して内部に弁室3を有するケーシングを形成する。本体1の下部に流入口4を形成し、蓋2の上部に流出口5を形成する。蓋2に弁座6を間に挟んで取付部材7をネジで固定する。本体1は弁室3の内壁に内側に突出した複数のリブ9を一体に有し、リブ9の内側に有底のほぼ円筒形状のフロート受け10を配置する。フロート受け10はその底部に内外を連通する小さな開口面積の通孔11と通孔11よりも開口面積の大きな第2通孔8を有する。フロート受け10内に球形のフロート12を自由状態で配置する。 Hereinafter, an embodiment of the present invention will be described with reference to FIG. A lid 2 is fastened to the main body 1 with a bolt to form a casing having a valve chamber 3 therein. An inlet 4 is formed in the lower part of the main body 1, and an outlet 5 is formed in the upper part of the lid 2. The attachment member 7 is fixed with screws with the valve seat 6 interposed between the lid 2 and the valve seat 6. The main body 1 integrally has a plurality of ribs 9 protruding inwardly on the inner wall of the valve chamber 3, and a bottomed substantially cylindrical float receiver 10 is disposed inside the ribs 9. The float receiver 10 has a through hole 11 having a small opening area communicating with the inside and the outside and a second through hole 8 having a larger opening area than the through hole 11 at the bottom thereof. A spherical float 12 is placed in a free state in the float receiver 10.

本体1は流入口4の内壁に内側に突出した複数のリブ14を介した取付部材15を一体に有する。取付部材15に開閉部材16をねじ結合し、ロックナット17で緩止めを行う。開閉部材16はフロート受け10内に位置する上端の円板部18がフロート受け10の第2通孔8を開閉する。フロート受け10はフロート受け10の下部と弁室3の底壁との間に配置した弾性部材としてのコイルバネ13により流出口5側に付勢して開閉部材16の円板部18で係止して配置する。フロート受け10は流入口4から弁室3内に空気や水が流入するときは開閉部材16の円板部18で係止され第2通孔8が閉口されているが、真空破壊時には流出口5から弁室3内に流入する外部空気の勢いでコイルバネ13に抗して流入口4側に変位し第2通孔8が開口されリブ9の段部19で係止される。 The main body 1 integrally has an attachment member 15 via a plurality of ribs 14 protruding inwardly on the inner wall of the inlet 4. An opening / closing member 16 is screwed to the mounting member 15, and is loosened with a lock nut 17. In the opening / closing member 16, the upper circular plate portion 18 located in the float receiver 10 opens and closes the second through hole 8 of the float receiver 10. The float receiver 10 is urged toward the outflow port 5 by a coil spring 13 as an elastic member disposed between the lower portion of the float receiver 10 and the bottom wall of the valve chamber 3, and is locked by the disk portion 18 of the opening / closing member 16. Arrange. The float receiver 10 is locked by the disk portion 18 of the opening / closing member 16 when the air or water flows into the valve chamber 3 from the inlet 4 and the second through hole 8 is closed. 5 is displaced toward the inlet 4 side against the coil spring 13 by the momentum of the external air flowing into the valve chamber 3, and the second through hole 8 is opened and locked by the step portion 19 of the rib 9.

上記実施例の排気弁の動作は下記の通りである。先ず配管に水を送り込むときにはフロート受け10はコイルバネ13の付勢力により流出口5側に付勢され開閉部材16の円板部18で係止され第2通孔8が閉口され、フロート12は弁座6から離座して降下し開閉部材16の円板部18に載った開弁状態である。これにより、弁室3内に流入してくる配管内の空気をリブ9の間の空間からフロート受け10上端を通して及び通孔11からフロート受け10内を通して流出口5に排気する。 The operation of the exhaust valve of the above embodiment is as follows. First, when water is fed into the pipe, the float receiver 10 is urged toward the outflow port 5 by the urging force of the coil spring 13 and is locked by the disc portion 18 of the opening / closing member 16 so that the second through hole 8 is closed. The valve is in a valve-opened state in which it is separated from the seat 6 and lowered and placed on the disk portion 18 of the opening / closing member 16. Thereby, the air in the pipe flowing into the valve chamber 3 is exhausted from the space between the ribs 9 through the upper end of the float receiver 10 and through the through hole 11 into the outlet 5 to the outlet 5.

そして排気が終わって配管内の水が流入口4から弁室3内に流入してくると、フロート12はリブ9の間の空間からフロート受け10上端を通して及び通孔11を通してフロート受け10内に流入する水によって浮上して弁座6に着座し閉弁する。これにより、水の漏出を防止する。配管系の圧力が低下して真空状態となったときにはフロート受け10は流出口5から弁室3内に流入する外部空気の勢いでコイルバネ13に抗して流入口4側に変位し第2通孔8が開口されリブ9の段部19で係止され、フロート12は弁座6から離座して降下し開閉部材16の円板部18に載った開弁状態となる。これにより、弁室3内に流入してくる外部空気をフロート受け10上端からリブ9の間の空間を通して及びフロート受け10内から通孔11と第2通孔8を通して流入口4から配管内に導入することにより真空状態を破壊する。このとき、フロート受け10内に入った外部空気が通孔11及び第2通孔8を通して素早く流入口4側へ導入され、フロート受け10内のフロート12下方の圧力が上昇することが防止されるので、真空破壊能力が大きく速やかに真空破壊できる。 When the exhaust is finished and water in the pipe flows into the valve chamber 3 from the inlet 4, the float 12 enters the float receiver 10 from the space between the ribs 9 through the upper end of the float receiver 10 and through the through hole 11. It floats by the inflowing water, sits on the valve seat 6 and closes. This prevents leakage of water. When the pressure in the piping system is reduced to a vacuum state, the float receiver 10 is displaced to the inlet 4 side against the coil spring 13 by the force of the external air flowing into the valve chamber 3 from the outlet 5 to the second passage. The hole 8 is opened and locked by the step portion 19 of the rib 9, and the float 12 is separated from the valve seat 6 and descends to be in a valve-opened state on the disk portion 18 of the opening / closing member 16. As a result, the external air flowing into the valve chamber 3 passes through the space between the upper end of the float receiver 10 and the rib 9 and from the inside of the float receiver 10 through the through hole 11 and the second through hole 8 into the pipe. The vacuum state is broken by introducing. At this time, the external air that has entered the float receiver 10 is quickly introduced to the inlet 4 side through the through hole 11 and the second through hole 8, and the pressure below the float 12 in the float receiver 10 is prevented from rising. Therefore, the vacuum breaking ability is large and can be quickly broken.

本発明は、配管に水を送り込むときに開弁して配管内の空気を排気し、排気が終われば閉弁し、また配管系の圧力が低下して真空状態となったときに開弁して外部空気を導入することにより真空状態を破壊する排気弁に利用することができる。 The present invention opens the valve when water is fed into the pipe, exhausts the air in the pipe, closes when the exhaust is finished, and opens when the pressure in the piping system drops to a vacuum state. Thus, it can be used as an exhaust valve for breaking the vacuum state by introducing external air.

1 本体
2 蓋
3 弁室
4 流入口
5 流出口
6 弁座
8 第2通孔
9 リブ
10 フロート受け
11 通孔
12 フロート
13 コイルバネ
16 開閉部材
18 円板部
DESCRIPTION OF SYMBOLS 1 Main body 2 Lid 3 Valve chamber 4 Inlet 5 Outlet 6 Valve seat 8 2nd through-hole 9 Rib 10 Float receptacle 11 Through-hole 12 Float 13 Coil spring 16 Opening / closing member 18 Disk part

Claims (1)

ケーシングで下部に流入口が開口し上部に流出口が開口した弁室を形成し、前記弁室と前記流出口の間に弁座を形成し、前記弁室内壁に内側に突出したリブを形成し、前記リブの内側に有底のほぼ円筒形状で底部に内外を常時連通する通孔を設けたフロート受けを配し、前記フロート受け内にフロートを自由状態で配したものにおいて、
前記フロート受けの底部に内外を連通する第2通孔を設け、
前記フロート受けを弾性部材で前記流出口側に付勢して配置すると共に
前記フロート受けが前記流出口側に変位したときに前記フロート受けを係止することにより前記第2通孔を閉口する円板部を前記フロート受け内に有する開閉部材を前記ケーシングに固定して設け、
前記流出口から前記弁室内に流入する外部空気の勢いで前記フロート受けが前記弾性部材に抗して前記流入口側に変位すると共に
前記円板部が前記フロート受けの係止を解除することにより前記第2通孔を開口する
ことを特徴とする排気弁。

Outlet at the top and opening the inlet at the bottom in the casing to form a valve chamber having an opening, and a valve seat between the valve chamber and the outlet port, the ribs protruding inwardly into the valve chamber wall formed, arranged substantially float received in which a hole which always communicates the inside and outside on the bottom in the cylindrical bottomed inside the rib, in that arranged floating in a free state in the receptacle the float,
A second through hole is provided at the bottom of the float receiver for communicating inside and outside;
Together arranged to urge the outlet side the float receiving an elastic member
Provided by fixing the closing member having a disk portion which closes the second hole by locking the float receiving when said float receiving is displaced to the outlet side into receiving said float to said casing ,
With receiving the float momentum of the external air flowing into the valve chamber from the outlet port is displaced to the inlet side against the elastic member
The exhaust valve, wherein the disk portion opens the second through hole by releasing the lock of the float receiver .

JP2009099382A 2009-04-15 2009-04-15 Exhaust valve Expired - Fee Related JP5416464B2 (en)

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JP2009099382A JP5416464B2 (en) 2009-04-15 2009-04-15 Exhaust valve

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JP2010249232A JP2010249232A (en) 2010-11-04
JP5416464B2 true JP5416464B2 (en) 2014-02-12

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5431034B2 (en) * 2009-06-15 2014-03-05 株式会社テイエルブイ Exhaust valve
JP5553681B2 (en) * 2010-05-14 2014-07-16 株式会社テイエルブイ Exhaust valve
JP5666938B2 (en) * 2011-02-16 2015-02-12 株式会社テイエルブイ Exhaust valve

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62110334U (en) * 1985-12-25 1987-07-14
JP2001173824A (en) * 1999-12-15 2001-06-29 Tlv Co Ltd Air release valve
JP4648079B2 (en) * 2005-05-13 2011-03-09 株式会社テイエルブイ Exhaust valve

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