JP5467000B2 - safety valve - Google Patents

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JP5467000B2
JP5467000B2 JP2010131012A JP2010131012A JP5467000B2 JP 5467000 B2 JP5467000 B2 JP 5467000B2 JP 2010131012 A JP2010131012 A JP 2010131012A JP 2010131012 A JP2010131012 A JP 2010131012A JP 5467000 B2 JP5467000 B2 JP 5467000B2
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valve
spring
diaphragm
pressure
case
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重樹 武部
悠二郎 中島
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Rinnai Corp
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本発明は、温水機器の流体配管等に取り付けられる安全弁に関する。   The present invention relates to a safety valve attached to a fluid pipe or the like of a hot water device.

従来、この種の安全弁として、特許文献1に開示された逃し弁がある。図9、図10に示すように、この逃し弁100は、湯沸器等の配管に接続する接続口110と大気開放する排水口111とを具備する弁箱101と、弁箱101内における排水口111と通じる逃し口113を開閉する弁体121と、弁体121を設けたダイヤフラム102と、弁体121の閉弁方向にダイヤフラム102を付勢する作動バネ104とを備える。作動バネ104は、弁箱101の上端に組付けたバネケース114内に収容され、支点側となる一端がバネケース114の上端に配置した作動部材106のバネ支持座140に支持され、作用点側となる他端がダイヤフラム102の上面に設けたダイヤフラム押え103に受け止められている。作動部材106は、バネケース114内の上部のネジ溝114aにネジ部105aを螺合固定した調整ネジ105に対して移動自在に支持されている。また、バネケース114の上端には加圧室Kを形成したブロック170が組付けられ、加圧室K内には水道水圧力により移動する駆動部材Dが作動部材106の上面と衝合するように設けられている。   Conventionally, there is a relief valve disclosed in Patent Document 1 as this type of safety valve. As shown in FIGS. 9 and 10, the relief valve 100 includes a valve box 101 having a connection port 110 connected to a pipe such as a water heater and a drain port 111 opened to the atmosphere, and drainage in the valve box 101. The valve body 121 which opens and closes the relief port 113 connected with the opening | mouth 111, the diaphragm 102 which provided the valve body 121, and the action | operation spring 104 which urges | biases the diaphragm 102 in the valve closing direction of the valve body 121 are provided. The operating spring 104 is accommodated in a spring case 114 assembled to the upper end of the valve box 101, and one end on the fulcrum side is supported by a spring support seat 140 of the operating member 106 disposed on the upper end of the spring case 114, The other end is received by a diaphragm presser 103 provided on the upper surface of the diaphragm 102. The operating member 106 is supported so as to be movable with respect to an adjustment screw 105 in which a screw portion 105a is screwed and fixed to an upper screw groove 114a in the spring case 114. Further, a block 170 having a pressurizing chamber K is assembled to the upper end of the spring case 114, and a driving member D that moves due to tap water pressure abuts the upper surface of the operating member 106 in the pressurizing chamber K. Is provided.

そして、この逃し弁100によれば、加圧室K内に水道水が導入されない状態では、図9に示すように、作動バネ104のバネ圧により作動部材106のバネ支持座140が調整ネジ105の下面に当接する位置に押し上げられるので、作動バネ104のバネ荷重は、調整ネジ105による圧力(低圧側)に設定される。一方、図10に示すように、加圧室K内に水道水を導入して水道水圧により駆動部材Dを下降させると、作動部材106が下降して作動バネ104が押し縮められるので、作動バネ104のバネ荷重は、調整ネジ105で設定した圧力(低圧側)よりも高圧側に設定される。   According to the relief valve 100, in the state where tap water is not introduced into the pressurizing chamber K, the spring support seat 140 of the operating member 106 is adjusted by the spring pressure of the operating spring 104 as shown in FIG. Therefore, the spring load of the operating spring 104 is set to the pressure (on the low pressure side) by the adjustment screw 105. On the other hand, as shown in FIG. 10, when the tap water is introduced into the pressurizing chamber K and the drive member D is lowered by the tap water pressure, the actuating member 106 is lowered and the actuating spring 104 is compressed. The spring load 104 is set to a higher pressure side than the pressure (low pressure side) set by the adjusting screw 105.

特開平6−259142号公報Japanese Patent Laid-Open No. 6-259142

従来の逃し弁100は、上述のように作動バネ104のバネ荷重を高圧側と低圧側とに変更可能とするが、そのためには、加圧室Kを形成したブロック170を設けたり、また加圧室Kに水道水を導入するための機構を設ける必要がある等、構成が複雑であった。しかも、高圧側での作動バネ104のバネ荷重は、水道水圧に依存するため、大幅にバネ荷重を変更することができなかった。なお、バネケース114内の調整ネジ105の螺入量を調節することにより作動バネ104のバネ荷重を変更することも考えられるが、この逃し弁100を組み立てる際に調整ネジ105を回動させて作動バネ104のバネ荷重を設定し、組立て後にはその設定圧力が固定となるため、組立て後の逃し弁100において調整ネジ105で作動バネ104のバネ荷重を調節することは困難であった(特許文献1の段落0003を参照。)。   The conventional relief valve 100 can change the spring load of the operating spring 104 between the high pressure side and the low pressure side as described above. For this purpose, a block 170 in which a pressurizing chamber K is formed is provided, or an additional pressure is applied. The structure is complicated, for example, it is necessary to provide a mechanism for introducing tap water into the pressure chamber K. In addition, since the spring load of the operating spring 104 on the high pressure side depends on the tap water pressure, the spring load cannot be changed significantly. Although it is conceivable to change the spring load of the operating spring 104 by adjusting the screwing amount of the adjusting screw 105 in the spring case 114, the adjusting screw 105 is rotated when the relief valve 100 is assembled. Since the spring load of the spring 104 is set and the set pressure is fixed after assembly, it is difficult to adjust the spring load of the operating spring 104 with the adjusting screw 105 in the relief valve 100 after assembly (Patent Literature). 1 paragraph 0003).

本発明は、上記事情に鑑みてなされたものであり、簡単な構造で容易に高圧側と低圧側に作動バネのバネ荷重を大幅に変更可能とする安全弁を提供することを課題とする。   This invention is made | formed in view of the said situation, and makes it a subject to provide the safety valve which can change the spring load of an action | operation spring easily to a high voltage | pressure side and a low voltage | pressure side easily with a simple structure.

本発明に係る安全弁は、
二つの口部を備えた弁箱と、
弁箱内を第1の口部に通じる一次室と第2の口部に通じる二次室とに区画するダイヤフラムと、
ダイヤフラムに設けたダイヤフラム押さえと、
一次室と二次室とを連通する弁孔と、
ダイヤフラムに設けて弁孔を開閉自在とする弁体と、
ダイヤフラム押さえに受け止められてダイヤフラムを付勢して一次室内の圧力上昇によりダイヤフラムが応動して弁体が開弁する圧力の設定を行う作動バネとを備え、
弁箱は、ダイヤフラムを収容するダイヤフラムケースと、作動バネを収容し作動バネの支点側となる端部を支持するバネケースとにより構成され、
バネケースは、ダイヤフラムケースに対して作動バネのバネ圧方向に移動可能に螺合接続されている安全弁であって、
一次室側に配置された弁体から延設されてダイヤフラム押さえに貫通形成したガイド孔を挿通して二次室側へ突出する弁棒と、
弁棒の二次室側の配置部分に外挿されて弁体を弁孔の閉弁方向に付勢する弁バネと、
弁棒の二次室側の端部に対向されて弁棒の端部と所定間隔を隔てて配設する調圧軸と、
バネケースに設けられて調圧軸を収容する調圧部とを備え、
調圧部は、バネケースにおけるダイヤフラムケースと対向した接続口に取り付けられて調圧軸を収容した筒体を有し、
筒体は、バネケースに対して調圧軸が弁棒の端部に接近・離間する方向に移動可能に螺合接続されているものである。
The safety valve according to the present invention is:
A valve box with two mouths;
A diaphragm that divides the inside of the valve box into a primary chamber that communicates with the first port and a secondary chamber that communicates with the second port;
A diaphragm holder provided on the diaphragm;
A valve hole communicating the primary chamber and the secondary chamber;
A valve body provided on the diaphragm to open and close the valve hole;
An operating spring that is received by the diaphragm holder and urges the diaphragm to set the pressure at which the diaphragm is actuated by the pressure rise in the primary chamber and the valve body opens,
The valve box is composed of a diaphragm case that accommodates the diaphragm, and a spring case that accommodates the operating spring and supports the end on the fulcrum side of the operating spring,
The spring case is a safety valve screwed to the diaphragm case so as to be movable in the spring pressure direction of the operating spring ,
A valve rod that extends from the valve body arranged on the primary chamber side and passes through a guide hole formed through the diaphragm presser and projects to the secondary chamber side;
A valve spring that is extrapolated to the arrangement portion of the valve stem on the secondary chamber side and biases the valve body in the valve-closing direction;
A pressure regulating shaft facing the end of the valve stem on the secondary chamber side and disposed at a predetermined interval from the end of the valve stem;
A pressure adjusting portion that is provided in the spring case and accommodates the pressure adjusting shaft;
The pressure adjusting unit has a cylindrical body that is attached to the connection port facing the diaphragm case in the spring case and accommodates the pressure adjusting shaft.
The cylinder is screwed and connected to the spring case so that the pressure adjusting shaft can move in a direction in which the pressure adjusting shaft approaches or separates from the end of the valve stem .

上記構成より、作動バネを収容するバネケースをダイヤフラムケースに対して移動させることにより、バネケースの移動量に応じて作動バネが伸縮される。例えば、バネケースを回動させてダイヤフラムケースに対して高くなるように移動させると、バネケースの移動量に応じて作動バネが自身のバネ圧により伸長する。これにより、ダイヤフラムに作用する作動バネのバネ荷重が弱くなり低圧側の圧力設定とすることができる。一方、バネケースを回動させてダイヤフラムケースに対して低くなるように移動させると、バネケースの移動量に応じて作動バネがバネケースにより押し縮められる。これにより、ダイヤフラムに作用する作動バネのバネ荷重が強くなり高圧側の圧力設定とすることができる。このように、安全弁の組立て後でもバネケースを回動させるだけの簡単な操作によってダイヤフラムに作用する作動バネのバネ荷重を低圧側と高圧側とに容易に圧力設定することができる。しかも、バネケースの移動量に応じて作動バネのバネ荷重を低圧側から高圧側まで大幅に変更することができる。   With the above configuration, the operating spring is expanded or contracted according to the amount of movement of the spring case by moving the spring case that houses the operating spring with respect to the diaphragm case. For example, when the spring case is rotated and moved so as to be higher than the diaphragm case, the operating spring is extended by its own spring pressure according to the amount of movement of the spring case. As a result, the spring load of the operating spring acting on the diaphragm becomes weak, and the pressure can be set on the low pressure side. On the other hand, when the spring case is rotated and moved so as to be lower than the diaphragm case, the operating spring is compressed by the spring case according to the amount of movement of the spring case. As a result, the spring load of the operating spring acting on the diaphragm is increased, and the pressure can be set on the high pressure side. As described above, even after the safety valve is assembled, the spring load of the operating spring acting on the diaphragm can be easily set to the low pressure side and the high pressure side by a simple operation of simply rotating the spring case. Moreover, the spring load of the operating spring can be significantly changed from the low pressure side to the high pressure side according to the amount of movement of the spring case.

上記安全弁では、一次室側の圧力上昇により作動バネのバネ圧に抗してダイヤフラムが二次室側へ変位して弁体の弁棒が調圧軸に当接すると、更なるダイヤフラムの変位によって弁体が開弁される。これにより、弁孔を通じて一次室側の超過圧力が二次室側へ逃されて一次室側の圧力上昇が解消される。一方、一次室側が負圧化すると、二次室の圧力(大気圧)により弁孔を通じて弁バネのバネ圧に抗して弁体が開弁される。これにより、弁孔を通じて二次室から一次室へ大気圧が吸引されて一次室側の負圧が解消される。このような安全弁における作動バネのバネ荷重を変更するためバネケースをダイヤフラムケースに対して移動させると、バネケースと一緒に調圧部も移動して調圧軸と弁棒との間隔が変更されてしまう。   In the above safety valve, when the diaphragm is displaced to the secondary chamber side against the spring pressure of the operating spring due to the pressure increase on the primary chamber side, and the valve stem of the valve body contacts the pressure adjusting shaft, the displacement of the diaphragm further The valve body is opened. Thereby, the excess pressure on the primary chamber side is released to the secondary chamber side through the valve hole, and the pressure increase on the primary chamber side is eliminated. On the other hand, when the primary chamber side becomes negative pressure, the valve element is opened against the spring pressure of the valve spring through the valve hole by the pressure (atmospheric pressure) of the secondary chamber. Thereby, atmospheric pressure is attracted | sucked from a secondary chamber to a primary chamber through a valve hole, and the negative pressure by the side of a primary chamber is eliminated. If the spring case is moved with respect to the diaphragm case in order to change the spring load of the operating spring in such a safety valve, the pressure adjusting unit moves together with the spring case, and the distance between the pressure adjusting shaft and the valve stem is changed. .

しかるに、上記構成によれば、調圧部は、バネケースにおけるダイヤフラムケースと対向した接続口に取り付けられて調圧軸を収容した筒体を有し、筒体は、バネケースに対して調圧軸が弁棒の端部との間隔を調節自在に螺合接続されているので、バネケースをダイヤフラムケースに対して高くなるように移動させた場合は、調圧部の筒体を回動させてバネケースの移動量分だけバネケースに対して低くなるように移動させることができる。また、バネケースをダイヤフラムケースに対して低くなるように移動させた場合は、調圧部の筒体を回動させてバネケースの移動量分だけバネケースに対して高くなるように移動させることができる。 However, according to the above configuration, the pressure adjusting unit has a cylindrical body that is attached to the connection port facing the diaphragm case in the spring case and accommodates the pressure adjusting shaft , and the cylindrical body has the pressure adjusting shaft with respect to the spring case. Since the distance from the end of the valve stem is threadably connected, when the spring case is moved so as to be higher than the diaphragm case, the cylinder of the pressure adjusting unit is rotated to rotate the spring case. The moving amount can be lowered with respect to the spring case. In addition, when the spring case is moved so as to be lower than the diaphragm case, the cylinder of the pressure adjusting unit can be rotated and moved so as to be higher than the spring case by the amount of movement of the spring case.

このように、調圧部の筒体をバネケースに対して移動可能とすることにより、弁棒と調圧軸との間隔をバネケースの移動前後で同一に保持することができる。従って、弁体が開弁する低圧側と高圧側の圧力設定をバネケースの移動量分だけに応じて設定することができる。また、バネケースの移動前後においてダイヤフラムケースに対して調圧部の高さを同一高さに保持することができる。従って、安全弁としての高さをバネケースの移動前後で同一高さに保持することができ、周辺部と干渉を起こす等の不都合もない。さらには、調圧部の筒体の移動によっても一次室の超過圧力により弁体が開弁する圧力の設定を調節できるので、圧力設定を低圧側から高圧側まで大幅に変更することができる。 Thus, by making the cylinder of the pressure adjusting unit movable relative to the spring case, the distance between the valve rod and the pressure adjusting shaft can be kept the same before and after the movement of the spring case. Therefore, the pressure settings on the low pressure side and the high pressure side at which the valve element opens can be set according to the amount of movement of the spring case only. Further, the height of the pressure adjusting portion can be kept the same as that of the diaphragm case before and after the movement of the spring case. Accordingly, the height of the safety valve can be maintained at the same height before and after the movement of the spring case, and there is no inconvenience such as interference with the peripheral portion. Furthermore, since the setting of the pressure at which the valve element opens due to the excess pressure in the primary chamber can be adjusted also by the movement of the cylinder of the pressure adjusting unit, the pressure setting can be changed significantly from the low pressure side to the high pressure side.

上記安全弁において、
調圧軸は、筒体内に収容された調圧ナットに対して弁棒の端部との間隔を調節自在に螺合接続されていることが望ましい。
In the above safety valve,
It is desirable that the pressure adjusting shaft is screwed and connected to the pressure adjusting nut accommodated in the cylinder so that the distance between the pressure adjusting shaft and the end of the valve stem can be adjusted.

これによれば、バネケースの移動量に応じて調圧軸を回動して移動させて弁棒の端部との間隔を調節することができ、バネケースの移動前後で弁棒と調圧軸との間隔を同一に保持することができる。従って、弁体が開弁する低圧側と高圧側の圧力設定をバネケースの移動量分だけに応じて設定することができる。さらには、調圧軸の移動によっても一次室の超過圧力により弁体が開弁する圧力の設定を調節できるので、圧力設定を低圧側から高圧側まで大幅に変更することができる。   According to this, the pressure adjusting shaft can be rotated and moved in accordance with the amount of movement of the spring case to adjust the distance from the end of the valve stem. Can be kept the same. Therefore, the pressure settings on the low pressure side and the high pressure side at which the valve element opens can be set according to the amount of movement of the spring case only. Furthermore, since the setting of the pressure at which the valve element opens due to the excess pressure in the primary chamber can be adjusted by the movement of the pressure adjusting shaft, the pressure setting can be significantly changed from the low pressure side to the high pressure side.

以上のように、本発明によれば、安全弁の組立て後でもバネケースを回動させて移動させるだけで作動バネのバネ荷重を低圧側と高圧側とに容易に圧力設定することができ、しかも、バネケースの移動量に応じて作動バネのバネ荷重を低圧側から高圧側まで大幅に変更することができる。   As described above, according to the present invention, the spring load of the operating spring can be easily set to the low pressure side and the high pressure side by simply rotating and moving the spring case even after the safety valve is assembled, The spring load of the operating spring can be significantly changed from the low pressure side to the high pressure side according to the amount of movement of the spring case.

実施形態による安全弁の閉弁状態を示す断面図である。It is sectional drawing which shows the valve closing state of the safety valve by embodiment. 実施形態による安全弁の外観を示す上面図である。It is a top view which shows the external appearance of the safety valve by embodiment. 手動レバーを起立保持した強制開弁状態を示す断面図である。It is sectional drawing which shows the forced valve opening state which hold | maintained the manual lever upright. 一次側の圧力上昇時における開弁状態を示す断面図である。It is sectional drawing which shows the valve opening state at the time of the pressure rise of a primary side. 一次側の負圧時における開弁状態を示す断面図である。It is sectional drawing which shows the valve opening state at the time of the primary side negative pressure. バネケースを高く移動させて作動バネのバネ荷重が低圧側に圧力設定された状態を示す断面図である。It is sectional drawing which shows the state which moved the spring case highly and the spring load of the action | operation spring was pressure-set to the low voltage | pressure side. バネケースを低く移動させて作動バネのバネ荷重が高圧側に圧力設定された状態を示す断面図である。It is sectional drawing which shows the state which moved the spring case low and the spring load of the action | operation spring was set to the high voltage | pressure side. 他の実施形態による安全弁の閉弁状態を示す断面図である。It is sectional drawing which shows the valve closing state of the safety valve by other embodiment. 従来の逃し弁において作動バネのバネ荷重が低圧側に圧力設定された状態を示す断面図である。It is sectional drawing which shows the state by which the spring load of the action | operation spring was set to the low pressure side in the conventional relief valve. 従来の逃し弁において作動バネのバネ荷重が高圧側に圧力設定された状態を示す断面図である。It is sectional drawing which shows the state by which the spring load of the action | operation spring was set to the high voltage | pressure side in the conventional relief valve.

以下に、本発明の実施の形態について添付図面を参照しながら説明する。
図1に示すように、実施形態による安全弁1は、二つの口部13,15を直角に形成した弁箱10と、弁箱10内を第1の口部13に通じる一次室14と第2の口部15に通じる二次室16とに区画形成するダイヤフラム2と、ダイヤフラム2に結合されたダイヤフラム押さえ3と、ダイヤフラム押さえ3に形成されて一次室14と二次室16とを連通する弁孔34と、一次室14側に配置されて弁孔34を開閉自在とする弁体5と、ダイヤフラム2を一次室14側へ付勢して一次室14内の圧力上昇によりダイヤフラム2が応動して弁体5が開弁する圧力の設定を行う作動バネ4とを備える。
Embodiments of the present invention will be described below with reference to the accompanying drawings.
As shown in FIG. 1, the safety valve 1 according to the embodiment includes a valve box 10 in which two ports 13 and 15 are formed at right angles, a primary chamber 14 that communicates with the first port 13 in the valve box 10, and a second chamber. A diaphragm 2 that is partitioned into a secondary chamber 16 that communicates with the mouth portion 15 of the first diaphragm 15, a diaphragm retainer 3 that is coupled to the diaphragm 2, and a valve that is formed in the diaphragm retainer 3 and communicates the primary chamber 14 and the secondary chamber 16. The hole 34, the valve body 5 that is disposed on the primary chamber 14 side so that the valve hole 34 can be opened and closed, and the diaphragm 2 is urged toward the primary chamber 14 to increase the pressure in the primary chamber 14 so that the diaphragm 2 responds. And an operating spring 4 for setting the pressure at which the valve body 5 opens.

弁箱10の第1の口部13は温水機器の流体配管や流体容器等に接続され、第2の口部15は大気開放されている。弁箱10は、ダイヤフラム2を収容するダイヤフラムケース11と、作動バネ4を収容し作動バネ4の支点側となる端部を天井面18で支持するバネケース12とを備えている。なお、弁箱10は、樹脂又は金属により形成されている。   The first mouth portion 13 of the valve box 10 is connected to a fluid piping or a fluid container of a hot water device, and the second mouth portion 15 is open to the atmosphere. The valve box 10 includes a diaphragm case 11 that accommodates the diaphragm 2, and a spring case 12 that accommodates the operating spring 4 and supports the end portion on the fulcrum side of the operating spring 4 with the ceiling surface 18. The valve box 10 is made of resin or metal.

ダイヤフラムケース11は、上側部11Aと下側部11Bとを有し、これら上側部11Aと下側部11Bがダイヤフラム2の外縁部を挟持するように組み付けられている。ダイヤフラムケース11におけるダイヤフラム2の配設部側が大径部17aとなっており、この大径部17aに連設された段部17bにダイヤフラム2の一次室14側への移動を所定位置で停止させるための複数の凸部17cが周上に突設されている。これらの凸部17cには、ダイヤフラム2における一次室14側に対面する下面に一体形成された金属製の環状の座金23が当接される。   The diaphragm case 11 has an upper part 11A and a lower part 11B, and the upper part 11A and the lower part 11B are assembled so as to sandwich the outer edge part of the diaphragm 2. The diaphragm case 11 in the diaphragm case 11 has a large-diameter portion 17a. The step 17b connected to the large-diameter portion 17a stops the movement of the diaphragm 2 toward the primary chamber 14 at a predetermined position. A plurality of convex portions 17c for projecting are provided on the circumference. A metal annular washer 23 integrally formed on the lower surface of the diaphragm 2 facing the primary chamber 14 is brought into contact with the convex portions 17c.

バネケース12は、ダイヤフラムケース11の上側部11Aに設けた結合口11xに取り付けられている。バネケース12の下部の外面とダイヤフラムケースの結合口11xとにはネジ溝12a,11aが設けられており、バネケース12は、ダイヤフラムケース11に対して作動バネ4のバネ圧方向に移動可能に螺合接続されている。   The spring case 12 is attached to a coupling port 11x provided in the upper portion 11A of the diaphragm case 11. Screw grooves 12a and 11a are provided in the outer surface of the lower part of the spring case 12 and the coupling opening 11x of the diaphragm case. The spring case 12 is screwed to the diaphragm case 11 so as to be movable in the spring pressure direction of the operating spring 4. It is connected.

ダイヤフラム押さえ3は、ダイヤフラム2の二次室16側に対面する上面に形成されている。ダイヤフラム2はゴム製のシートからなり、ダイヤフラム押さえ3は樹脂製であり、これらダイヤフラム2とダイヤフラム押さえ3とは、射出成形の二色成形法等で一体形成した一部品として構成されている。ダイヤフラム押さえ3の外周部には、作動バネ4の作用点側となる端部を受け止める凹溝31が環状に形成されており、この凹溝31とバネケース12の天井面18との間に作動バネ4が圧縮状態に配設されている。これにより、圧縮状態の作動バネ4のバネ圧によりダイヤフラム2が一次室14側へ付勢される。従って、バネケース12のダイヤフラムケース11に対する高さを決めることにより、ダイヤフラム2へ作用する作動バネ4のバネ荷重を設定することができる。   The diaphragm retainer 3 is formed on the upper surface of the diaphragm 2 facing the secondary chamber 16 side. The diaphragm 2 is made of a rubber sheet, and the diaphragm retainer 3 is made of resin. The diaphragm 2 and the diaphragm retainer 3 are configured as one part integrally formed by a two-color molding method of injection molding or the like. On the outer periphery of the diaphragm retainer 3, a concave groove 31 is formed in an annular shape for receiving an end on the working point side of the operating spring 4, and the operating spring is interposed between the concave groove 31 and the ceiling surface 18 of the spring case 12. 4 is arranged in a compressed state. As a result, the diaphragm 2 is urged toward the primary chamber 14 by the spring pressure of the operating spring 4 in the compressed state. Therefore, by determining the height of the spring case 12 with respect to the diaphragm case 11, the spring load of the operating spring 4 acting on the diaphragm 2 can be set.

ダイヤフラム押さえ3の中央には、ダイヤフラム2の中心孔21を貫通して一次室14側へ突出する筒部32が一体形成されている。筒部32は、中央部に設けたガイド孔33と、ガイド孔33の周囲に設けた複数の弁孔34とを有する。筒部32には、ガイド孔33を延長するように二次室16側へ突出するガイド筒35が一体形成されている。そして、複数の弁孔34を開閉自在とする弁体5が一次室14側に配置され、この弁体5から延設された弁棒51がガイド孔33を挿通して二次室16内へ突出されている。弁体5と弁棒51とは、射出成形等で一体成形により形成した樹脂製の一部品で構成されている。   At the center of the diaphragm retainer 3, a cylindrical portion 32 that penetrates the center hole 21 of the diaphragm 2 and projects toward the primary chamber 14 is integrally formed. The cylinder portion 32 has a guide hole 33 provided in the center portion and a plurality of valve holes 34 provided around the guide hole 33. A guide cylinder 35 that protrudes toward the secondary chamber 16 so as to extend the guide hole 33 is integrally formed in the cylinder portion 32. A valve body 5 that allows opening and closing of the plurality of valve holes 34 is disposed on the primary chamber 14 side, and a valve rod 51 extending from the valve body 5 passes through the guide hole 33 and enters the secondary chamber 16. It is protruding. The valve body 5 and the valve stem 51 are constituted by a single resin part formed by integral molding such as injection molding.

弁棒51には、作動バネ4よりも弾性力の弱い弁バネ52が外装されており、弁バネ52の一端がガイド筒35の外周に受け止められ、他端が弁棒51の上端付近に外嵌されたスナップリング53に受け止められている。このようにして、弁バネ52がスナップリング53とダイヤフラム押さえ3との間に圧縮状態に配設され、この弁バネ52のバネ圧により弁棒51を二次室16側へ引き込んで弁体5が弁孔34を閉じる閉弁方向に付勢される。   The valve stem 51 is provided with a valve spring 52 that is less elastic than the operating spring 4. One end of the valve spring 52 is received on the outer periphery of the guide cylinder 35, and the other end is located near the upper end of the valve stem 51. It is received by the snap ring 53 fitted. In this way, the valve spring 52 is disposed in a compressed state between the snap ring 53 and the diaphragm retainer 3, and the valve rod 51 is drawn into the secondary chamber 16 side by the spring pressure of the valve spring 52, so that the valve element 5 Is urged in the valve closing direction to close the valve hole 34.

弁体5は、弁棒51の軸線に対し垂直方向に延びた円盤部54と、円盤部54の外周端からダイヤフラム2との対向側に突出する筒状の周壁部55とを有する。この弁体5の周壁部55の先端55aは、先細りに形成されており、この周壁部55の先端55aがダイヤフラム2の下面を弁座22(シール面)として着離自在に当接される。弁体5の周壁部55の先端55aが先細り形状となっているので、ダイヤフラム2に強く圧接させることができ、その結果、弁体5とダイヤフラム2間のシール性能が向上される。   The valve body 5 includes a disk portion 54 that extends in a direction perpendicular to the axis of the valve stem 51, and a cylindrical peripheral wall portion 55 that protrudes from the outer peripheral end of the disk portion 54 to the opposite side of the diaphragm 2. The distal end 55a of the peripheral wall portion 55 of the valve body 5 is formed to be tapered, and the distal end 55a of the peripheral wall portion 55 is brought into contact with the lower surface of the diaphragm 2 so as to be freely attached and detached. Since the front end 55a of the peripheral wall portion 55 of the valve body 5 is tapered, it can be strongly pressed against the diaphragm 2, and as a result, the sealing performance between the valve body 5 and the diaphragm 2 is improved.

また、ガイド孔33の内径が弁棒51の外径と略同径(弁棒51の外径と同じか少し大径)に設定されている。これにより、弁棒51がガイド孔33の軸線方向に真っ直ぐに安定して挿通支持されるので、弁棒51に形成する弁体5の姿勢が弁座22をなすダイヤフラム面に対して傾くことなく平行に保持されて弁体5によるシール性能が一層安定して発揮される。   Further, the inner diameter of the guide hole 33 is set to be substantially the same as the outer diameter of the valve stem 51 (same as or slightly larger than the outer diameter of the valve stem 51). Thereby, the valve stem 51 is inserted and supported straight and stably in the axial direction of the guide hole 33, so that the posture of the valve body 5 formed on the valve stem 51 is not inclined with respect to the diaphragm surface forming the valve seat 22. The sealing performance by the valve body 5 is more stably exhibited by being held in parallel.

バネケース12の上部には、調圧部6が設けられている。調圧部6は、バネケース12の上部壁に設けた接続口12xに取り付けられた筒体61と、筒体61内に摺動自在に収容された調圧ナット62と、調圧ナット62に螺合接続されて筒体61の底部の貫通孔64から二次室16内へ突出させた調圧軸63とを備える。筒体61の側壁下部の外面とバネケース12の接続口12xとにはネジ溝6a,12bが設けられており、筒体61は、バネケース12に対して調圧軸63が弁棒51の端部に接近・離間する方向に移動可能に螺合接続されている。   On the upper part of the spring case 12, a pressure adjusting unit 6 is provided. The pressure adjusting unit 6 includes a cylindrical body 61 attached to a connection port 12 x provided on the upper wall of the spring case 12, a pressure adjusting nut 62 slidably accommodated in the cylindrical body 61, and a screw on the pressure adjusting nut 62. A pressure regulating shaft 63 that is connected and protrudes from the through hole 64 at the bottom of the cylindrical body 61 into the secondary chamber 16 is provided. Screw grooves 6 a and 12 b are provided on the outer surface of the lower side wall of the cylinder 61 and the connection port 12 x of the spring case 12, and the cylinder 61 is configured such that the pressure adjusting shaft 63 is the end of the valve stem 51 with respect to the spring case 12. Are screwed together so as to be movable in the direction of approaching and separating.

調圧軸63は、シール材65により貫通孔64の水密性を確保した状態で貫通孔64に摺動自在に挿通されている。調圧軸63は、弁棒51の二次室16側の端部に対向されてこの弁棒51の端部との間隔を調節自在に配設されている。調圧軸63の上部の外面にはネジ溝63aが形成されており、調圧ナット62のネジ溝62aに螺合されている。筒体61内の底部にはリング状の押え板66が取り付けられ、この押え板66と調圧ナット62の下面に形成した環状凹部62bとの間に調圧バネ67が圧縮状態に配設されている。   The pressure adjusting shaft 63 is slidably inserted into the through hole 64 in a state in which the water tightness of the through hole 64 is secured by the sealing material 65. The pressure adjusting shaft 63 is opposed to the end portion of the valve rod 51 on the secondary chamber 16 side, and is disposed so that the distance from the end portion of the valve rod 51 can be adjusted. A screw groove 63 a is formed on the outer surface of the upper portion of the pressure adjusting shaft 63, and is screwed into the screw groove 62 a of the pressure adjusting nut 62. A ring-shaped pressing plate 66 is attached to the bottom of the cylinder 61, and a pressure adjusting spring 67 is disposed in a compressed state between the pressing plate 66 and an annular recess 62b formed on the lower surface of the pressure adjusting nut 62. ing.

筒体61の上部の外面に全周にわたって凹部61aが連続形成され、この凹部61aと調圧ナット62の上部に形成した鍔部62bの上面との間に断面コ字状のアーム68を取り付け、調圧軸63及び調圧ナット62が抜け止め状態に保持されている。図2をも参照して、アーム68の上端部は、上方に屈曲形成された一対の舌片68aを有し、これら舌片68a間に手動レバー7が割りピン70によって上下回動自在に取り付けられている。   A recess 61a is continuously formed over the entire outer surface of the upper portion of the cylindrical body 61, and an arm 68 having a U-shaped cross section is attached between the recess 61a and the upper surface of the flange portion 62b formed on the upper portion of the pressure adjusting nut 62. The pressure adjusting shaft 63 and the pressure adjusting nut 62 are held in a retaining state. Referring also to FIG. 2, the upper end portion of arm 68 has a pair of tongue pieces 68a bent upward, and manual lever 7 is attached between these tongue pieces 68a by a split pin 70 so as to be vertically rotatable. It has been.

手動レバー7は、常時は調圧軸63に直交する横向き姿勢に配置されており、この手動レバー7を上方又は下方へ回動させると、手動レバー7の前部に垂下形成した操作片71により調圧ナット62の鍔部62bの上面が下方へ押し込まれる。これにより、調圧ナット62とともに調圧軸63が下方に移動して弁棒51を一次室14側へ移動させることにより、弁体5が強制的に開弁される。そして、手動レバー7による調圧ナット62への押圧力を解除することにより、調圧バネ67の弾性力により調圧軸63が後退し、弁バネ52の弾性力により弁体5がダイヤフラム2に着座して閉弁状態に復帰する。   The manual lever 7 is normally disposed in a lateral posture orthogonal to the pressure adjusting shaft 63. When the manual lever 7 is rotated upward or downward, an operation piece 71 formed to hang from the front of the manual lever 7. The upper surface of the flange 62b of the pressure adjusting nut 62 is pushed downward. Accordingly, the pressure adjusting shaft 63 moves downward together with the pressure adjusting nut 62 to move the valve rod 51 toward the primary chamber 14, thereby forcibly opening the valve body 5. Then, by releasing the pressing force applied to the pressure adjusting nut 62 by the manual lever 7, the pressure adjusting shaft 63 is retracted by the elastic force of the pressure adjusting spring 67, and the valve body 5 is moved to the diaphragm 2 by the elastic force of the valve spring 52. Sit down and return to the closed state.

また、図3に示すように、手動レバー7を押し上げて調圧ナット62上に起立させて調圧ナット62を押し下げ状態に保持すれば、上記同様に、弁体5がダイヤフラム2から離脱した強制開弁状態に保持される。この強制開弁状態を解除するには、手動レバー7を押し倒して元の横向き姿勢に戻すと弁体5は閉弁状態に復帰する。   Further, as shown in FIG. 3, if the manual lever 7 is pushed up to stand on the pressure adjusting nut 62 and the pressure adjusting nut 62 is held in the pressed down state, the valve body 5 is forcibly separated from the diaphragm 2 as described above. The valve is kept open. In order to cancel the forced valve opening state, when the manual lever 7 is pushed down to return to the original lateral orientation, the valve body 5 returns to the valve closing state.

手動レバー7が横向き姿勢にあるときに、手動レバー7の先端近傍に形成された開口部72からドライバー等の工具を差し込んで調圧軸63の上端に設けた溝部63bに係合させ、調圧軸63を回動させて調圧軸63の調圧ナット62への螺入量を調節することにより、調圧軸63と弁棒51との間の間隔を調節することができる。従って、配管内等の一次側の超過圧力を逃すときの圧力設定を高圧側とするか低圧側とするかは、作動バネ4によるバネ荷重により決定できるが、そのときの圧力設定値を調圧軸63の下端と弁棒51の上端との間の間隔を適宜に接近又は離間することで調節することができる。   When the manual lever 7 is in the horizontal posture, a tool such as a screwdriver is inserted through an opening 72 formed near the tip of the manual lever 7 and is engaged with a groove 63b provided at the upper end of the pressure adjusting shaft 63. By rotating the shaft 63 and adjusting the screwing amount of the pressure adjusting shaft 63 into the pressure adjusting nut 62, the distance between the pressure adjusting shaft 63 and the valve stem 51 can be adjusted. Accordingly, whether the pressure setting for releasing the excess pressure on the primary side in the piping or the like is set to the high pressure side or the low pressure side can be determined by the spring load by the operating spring 4, but the pressure setting value at that time is regulated. The distance between the lower end of the shaft 63 and the upper end of the valve stem 51 can be adjusted by appropriately approaching or separating.

次に、上記構成の安全弁1の動作を説明する。
図1とともに図4を参照して、一次室14側に接続する配管等の内圧が設定圧力以上に上昇した場合、一次室14内の圧力上昇により、作動バネ4のバネ圧に抗してダイヤフラム2が二次室16側へ変位する。このとき、弁体5も弁座22となるダイヤフラム2に着座した状態でダイヤフラム2と一緒に移動する。そして、弁体5と一体の弁棒51が調圧軸63に当接すると、これよりも更に二次室16側へ変位するダイヤフラム2によって弁体5がダイヤフラム2より離脱して開弁し(図4参照)、弁孔34を介して一次室14側の超過圧力相当分の流体を二次室16側へ逃がす。これにより、一次室14内の圧力が設定値まで降下すると、作動バネ4のバネ圧により、ダイヤフラム2が一次室14側へ変位し、弁体5が弁座22となるダイヤフラム2に着座し閉弁する。以上により、配管内等の圧力の異常上昇が防止される。
Next, the operation of the safety valve 1 configured as described above will be described.
Referring to FIG. 1 and FIG. 4, when the internal pressure of the pipe connected to the primary chamber 14 side rises above the set pressure, the diaphragm rises against the spring pressure of the operating spring 4 due to the pressure increase in the primary chamber 14. 2 is displaced to the secondary chamber 16 side. At this time, the valve body 5 also moves together with the diaphragm 2 while being seated on the diaphragm 2 serving as the valve seat 22. When the valve rod 51 integrated with the valve body 5 comes into contact with the pressure adjusting shaft 63, the valve body 5 is separated from the diaphragm 2 and opened by the diaphragm 2 which is further displaced toward the secondary chamber 16. 4), the fluid corresponding to the excess pressure on the primary chamber 14 side is released to the secondary chamber 16 side through the valve hole 34. As a result, when the pressure in the primary chamber 14 drops to a set value, the diaphragm 2 is displaced toward the primary chamber 14 by the spring pressure of the operating spring 4, and the valve body 5 is seated on the diaphragm 2 that becomes the valve seat 22 and is closed. I speak. As described above, an abnormal increase in pressure in the pipe or the like is prevented.

一方、図1とともに図5を参照して、一次室14側に接続する配管内等が負圧化した場合、外部に連通している二次室16内の大気圧よりも一次室14内の圧力が降下(負圧)する。すると、弁孔34を通じて二次室16の圧力(大気圧)により弁バネ52のバネ圧に抗して弁体5を一次室14側へ押圧し、弁体5が弁座22となるダイヤフラム2から離脱して開弁し(図5参照)、弁孔34を介して二次室16から一次室14内に大気圧が吸引される。これにより、配管内等の負圧化が解消され一次室14内の圧力が設定値まで上昇すると、弁バネ52のバネ圧により、弁体5が弁座22となるダイヤフラム2に着座し閉弁する。以上により、配管内等の負圧化が防止される。このようにして、一次側の配管内等の圧力が異常上昇した場合のみならず負圧化した場合でも、素早く設定圧力に復帰させることができる。   On the other hand, referring to FIG. 5 together with FIG. 1, when the pressure in the pipe connected to the primary chamber 14 side becomes negative, the pressure in the primary chamber 14 is higher than the atmospheric pressure in the secondary chamber 16 communicating with the outside. Pressure drops (negative pressure). Then, the valve body 5 is pressed toward the primary chamber 14 against the spring pressure of the valve spring 52 by the pressure (atmospheric pressure) of the secondary chamber 16 through the valve hole 34, and the valve body 5 serves as the valve seat 22. And the valve is opened (see FIG. 5), and atmospheric pressure is sucked from the secondary chamber 16 into the primary chamber 14 through the valve hole 34. As a result, when the negative pressure in the piping or the like is eliminated and the pressure in the primary chamber 14 rises to a set value, the valve body 5 is seated on the diaphragm 2 serving as the valve seat 22 by the spring pressure of the valve spring 52 and the valve is closed. To do. As a result, negative pressure in the pipe or the like is prevented. In this way, it is possible to quickly return to the set pressure not only when the pressure in the primary side pipe or the like abnormally increases but also when the pressure becomes negative.

ところで、バネケース12は、ダイヤフラムケース11に対して作動バネ4のバネ圧方向に移動可能にネジ溝11a,12aによって螺合接続されている。これにより、作動バネ4を収容するバネケース12をダイヤフラムケース11に対して移動させることにより、バネケース12の移動量に応じて作動バネ4が伸縮される。   By the way, the spring case 12 is screwed and connected to the diaphragm case 11 by screw grooves 11a and 12a so as to be movable in the spring pressure direction of the operating spring 4. Accordingly, the operating spring 4 is expanded and contracted according to the amount of movement of the spring case 12 by moving the spring case 12 that houses the operating spring 4 with respect to the diaphragm case 11.

図6に示すように、例えば、バネケース12を回動させてダイヤフラムケース11に対して高くなるように移動させると、バネケース12の移動量に応じて作動バネ4が自身のバネ圧により伸長する。これにより、ダイヤフラム2に作用する作動バネ4のバネ荷重が弱くなり低圧側の圧力設定とすることができる。一方、図7に示すように、バネケース12を回動させてダイヤフラムケース11に対して低くなるように移動させると、バネケース12の移動量に応じて作動バネ4がバネケース12により押し縮められる。これにより、ダイヤフラム2に作用する作動バネ4のバネ荷重が強くなり高圧側の圧力設定とすることができる。   As shown in FIG. 6, for example, when the spring case 12 is rotated and moved so as to be higher than the diaphragm case 11, the operating spring 4 is extended by its own spring pressure according to the amount of movement of the spring case 12. As a result, the spring load of the operating spring 4 acting on the diaphragm 2 becomes weak, and the pressure on the low pressure side can be set. On the other hand, as shown in FIG. 7, when the spring case 12 is rotated and moved so as to be lower than the diaphragm case 11, the operating spring 4 is compressed by the spring case 12 according to the amount of movement of the spring case 12. As a result, the spring load of the operating spring 4 acting on the diaphragm 2 is increased, and the pressure can be set on the high pressure side.

このように、安全弁1の組立て後においてもバネケース12を回動させるだけの簡単な操作によってダイヤフラム2に作用する作動バネ4のバネ荷重を低圧側と高圧側とに容易に圧力設定することができる。しかも、バネケース12の移動量に応じて作動バネ4のバネ荷重を低圧側から高圧側まで大幅に変更することができる。   As described above, even after the safety valve 1 is assembled, the spring load of the operating spring 4 acting on the diaphragm 2 can be easily set to the low pressure side and the high pressure side by a simple operation of simply rotating the spring case 12. . Moreover, the spring load of the operating spring 4 can be significantly changed from the low pressure side to the high pressure side according to the amount of movement of the spring case 12.

ここで、安全弁1における作動バネ4のバネ荷重を変更するためバネケース12をダイヤフラムケース11に対して移動させると、バネケース12と一緒に調圧部6も移動して調圧軸63と弁棒51との間隔が変更されてしまう。しかるに、調圧部6は、バネケース12に対して調圧軸63が弁棒51の端部との間隔を調節自在にネジ溝6a,12aによって螺合接続されている。従って、バネケース12をダイヤフラムケース11に対して高くなるように移動させた場合は、調圧部6を回動させてバネケース12の移動量分だけバネケース12に対して低くなるように移動させることができる(図6参照)。また、バネケース12をダイヤフラムケース11に対して低くなるように移動させた場合は、調圧部6を回動させてバネケース12の移動量分だけバネケース12に対して高くなるように移動させることができる(図7参照)。   Here, when the spring case 12 is moved with respect to the diaphragm case 11 in order to change the spring load of the operating spring 4 in the safety valve 1, the pressure adjusting unit 6 is moved together with the spring case 12, and the pressure adjusting shaft 63 and the valve stem 51 are moved. The interval between and will be changed. However, in the pressure adjusting unit 6, the pressure adjusting shaft 63 is screwed and connected to the spring case 12 by screw grooves 6 a and 12 a so that the distance from the end of the valve rod 51 can be adjusted. Therefore, when the spring case 12 is moved so as to be higher than the diaphragm case 11, the pressure adjusting unit 6 is rotated so as to be lowered relative to the spring case 12 by the amount of movement of the spring case 12. Yes (see FIG. 6). Further, when the spring case 12 is moved so as to be lower than the diaphragm case 11, the pressure adjusting unit 6 is rotated and moved so as to be higher than the spring case 12 by the amount of movement of the spring case 12. Yes (see FIG. 7).

このように、調圧部6をバネケース12に対して移動可能とすることにより、弁棒51と調圧軸63との間隔をバネケース12の移動前後で同一に保持することができる。従って、弁体5が開弁する低圧側と高圧側の圧力設定をバネケース12の移動量分だけに応じて設定することができる。また、バネケース12の移動前後においてダイヤフラムケース11に対して調圧部6の高さを同一高さに保持することができる。従って、安全弁1としての高さをバネケース12の移動前後で同一高さに保持することができ、周辺部と干渉を起こす等の不都合もない。   Thus, by making the pressure adjusting unit 6 movable with respect to the spring case 12, the distance between the valve stem 51 and the pressure adjusting shaft 63 can be kept the same before and after the movement of the spring case 12. Accordingly, the pressure settings on the low pressure side and the high pressure side at which the valve body 5 opens can be set according to the amount of movement of the spring case 12 only. In addition, the height of the pressure adjusting unit 6 can be maintained at the same height with respect to the diaphragm case 11 before and after the movement of the spring case 12. Therefore, the height of the safety valve 1 can be maintained at the same height before and after the movement of the spring case 12, and there is no inconvenience such as interference with the peripheral portion.

また、調圧軸63は、調圧部6において弁棒51の端部との間隔を調節自在に調圧ナット62に螺合接続されているので、バネケース12の移動量に応じて調圧軸63を回動させて弁棒51の端部との間隔を調節することができ、バネケース12の移動前後で弁棒51と調圧軸63との間隔を同一に保持することができる。このようにしても、弁体5が開弁する低圧側と高圧側の圧力設定をバネケース12の移動量分だけに応じて設定することができる。   Further, since the pressure adjusting shaft 63 is screwed to the pressure adjusting nut 62 so that the interval between the pressure adjusting portion 6 and the end of the valve rod 51 can be adjusted, the pressure adjusting shaft 63 is adjusted according to the amount of movement of the spring case 12. The distance between the valve rod 51 and the end of the valve rod 51 can be adjusted by rotating 63, and the distance between the valve rod 51 and the pressure regulating shaft 63 can be kept the same before and after the movement of the spring case 12. Even in this way, the pressure settings on the low pressure side and the high pressure side at which the valve body 5 opens can be set according to the amount of movement of the spring case 12 only.

さらに、バネケース12を移動させて作動バネ4のバネ荷重を低圧側又は高圧側へ変更するとともに、調圧部6や調圧軸63を移動させて弁棒51と調圧軸63との間隔を調節することにより、一次室14側の超過圧力に対する開弁時の圧力設定を低圧側から高圧側まで一層大幅に変更することができる。   Further, the spring case 12 is moved to change the spring load of the operating spring 4 to the low pressure side or the high pressure side, and the pressure adjusting unit 6 or the pressure adjusting shaft 63 is moved to increase the distance between the valve stem 51 and the pressure adjusting shaft 63. By adjusting, the pressure setting at the time of opening the valve with respect to the excess pressure on the primary chamber 14 side can be changed more greatly from the low pressure side to the high pressure side.

(他の実施形態)
図8に示すように、他の実施形態は、一次室14側の超過圧力を逃すための安全弁1Xを構成するものである。この安全弁1Xは、ダイヤフラムケース11に二つの口部13,15が設けられ、第2の口部15に通じる二次室16に弁孔となる環状凸口部19が設けられている。この環状凸口部19に着座して開閉自在とする弁体5は、ダイヤフラム2の下面に一体形成されている。バネケース12は、ダイヤフラム2を二次室16側へ付勢する作動バネ4が収容され、ダイヤフラムケース11の結合口11xにネジ溝11a,12aによって螺合接続されている。従って、この安全弁1Xによっても、バネケース12を回動させて移動させるだけで作動バネ4のバネ荷重を低圧側と高圧側とに容易に圧力設定することができ、しかも、バネケース12の移動量に応じて作動バネ4のバネ荷重を低圧側から高圧側まで大幅に変更することができる。なお、図8に示した他の実施形態の安全弁1Xには、調圧部は設けられていないが、図8において図1と同一符号で示す部分は、上記実施形態の安全弁(図1)で説明したものと同一又は相当するものである。
(Other embodiments)
As shown in FIG. 8, other embodiment comprises the safety valve 1X for releasing the excess pressure by the side of the primary chamber 14. As shown in FIG. In the safety valve 1 </ b> X, two openings 13 and 15 are provided in the diaphragm case 11, and an annular convex opening 19 serving as a valve hole is provided in the secondary chamber 16 that communicates with the second opening 15. The valve body 5 that is seated on the annular convex portion 19 and can be opened and closed is integrally formed on the lower surface of the diaphragm 2. The spring case 12 accommodates an operating spring 4 that urges the diaphragm 2 toward the secondary chamber 16, and is screwed and connected to the coupling port 11 x of the diaphragm case 11 by screw grooves 11 a and 12 a. Therefore, also with this safety valve 1X, the spring load of the operating spring 4 can be easily set to the low pressure side and the high pressure side only by rotating and moving the spring case 12, and the amount of movement of the spring case 12 can be increased. Accordingly, the spring load of the operating spring 4 can be significantly changed from the low pressure side to the high pressure side. The safety valve 1X of the other embodiment shown in FIG. 8 is not provided with a pressure adjusting unit, but the part indicated by the same reference numeral in FIG. 1 in FIG. 8 is the safety valve (FIG. 1) of the above embodiment. It is the same as or equivalent to what has been described.

1,1X 安全弁
2 ダイヤフラム
3 ダイヤフラム押さえ
4 作動バネ
5 弁体
6 調圧部
6a,11a,12a,12b ネジ溝
7 手動レバー
10 弁箱
11 ダイヤフラムケース
11x 結合口
12 バネケース
12x 接合口
13,15 口部
14 一次室
16 二次室
33 ガイド孔
34 弁孔
51 弁棒
52 弁バネ
63 調圧軸
1, 1X Safety valve 2 Diaphragm 3 Diaphragm retainer 4 Actuating spring 5 Valve element 6 Pressure adjusting part 6a, 11a, 12a, 12b Screw groove 7 Manual lever 10 Valve box 11 Diaphragm case 11x Connection port 12 Spring case 12x Joint port 13, 15 Portion 14 Primary chamber 16 Secondary chamber 33 Guide hole 34 Valve hole 51 Valve rod 52 Valve spring 63 Pressure regulating shaft

Claims (2)

二つの口部を備えた弁箱と、
弁箱内を第1の口部に通じる一次室と第2の口部に通じる二次室とに区画するダイヤフラムと、
ダイヤフラムに設けたダイヤフラム押さえと、
一次室と二次室とを連通する弁孔と、
ダイヤフラムに設けて弁孔を開閉自在とする弁体と、
ダイヤフラム押さえに受け止められてダイヤフラムを付勢して一次室内の圧力上昇によりダイヤフラムが応動して弁体が開弁する圧力の設定を行う作動バネとを備え、
弁箱は、ダイヤフラムを収容するダイヤフラムケースと、作動バネを収容し作動バネの支点側となる端部を支持するバネケースとにより構成され、
バネケースは、ダイヤフラムケースに対して作動バネのバネ圧方向に移動可能に螺合接続されている安全弁であって、
一次室側に配置された弁体から延設されてダイヤフラム押さえに貫通形成したガイド孔を挿通して二次室側へ突出する弁棒と、
弁棒の二次室側の配置部分に外挿されて弁体を弁孔の閉弁方向に付勢する弁バネと、
弁棒の二次室側の端部に対向されて弁棒の端部と所定間隔を隔てて配設する調圧軸と、
バネケースに設けられて調圧軸を収容する調圧部とを備え、
調圧部は、バネケースにおけるダイヤフラムケースと対向した接続口に取り付けられて調圧軸を収容した筒体を有し、
筒体は、バネケースに対して調圧軸が弁棒の端部に接近・離間する方向に移動可能に螺合接続されている安全弁。
A valve box with two mouths;
A diaphragm that divides the inside of the valve box into a primary chamber that communicates with the first port and a secondary chamber that communicates with the second port;
A diaphragm holder provided on the diaphragm;
A valve hole communicating the primary chamber and the secondary chamber;
A valve body provided on the diaphragm to open and close the valve hole;
An operating spring that is received by the diaphragm holder and urges the diaphragm to set the pressure at which the diaphragm is actuated by the pressure rise in the primary chamber and the valve body opens,
The valve box is composed of a diaphragm case that accommodates the diaphragm, and a spring case that accommodates the operating spring and supports the end on the fulcrum side of the operating spring,
The spring case is a safety valve screwed to the diaphragm case so as to be movable in the spring pressure direction of the operating spring ,
A valve rod that extends from the valve body arranged on the primary chamber side and passes through a guide hole formed through the diaphragm presser and projects to the secondary chamber side;
A valve spring that is extrapolated to the arrangement portion of the valve stem on the secondary chamber side and biases the valve body in the valve-closing direction;
A pressure regulating shaft facing the end of the valve stem on the secondary chamber side and disposed at a predetermined interval from the end of the valve stem;
A pressure adjusting portion that is provided in the spring case and accommodates the pressure adjusting shaft;
The pressure adjusting unit has a cylindrical body that is attached to the connection port facing the diaphragm case in the spring case and accommodates the pressure adjusting shaft.
The cylinder body is a safety valve that is screwed and connected to the spring case so that the pressure adjusting shaft can move in the direction of approaching and separating from the end of the valve stem .
請求項1に記載の安全弁において、
調圧軸は、筒体内に収容された調圧ナットに対して弁棒の端部との間隔を調節自在に螺合接続されている安全弁。
The safety valve according to claim 1,
The pressure adjusting shaft is a safety valve that is screwed and connected to the pressure adjusting nut accommodated in the cylinder so that the distance between the pressure adjusting shaft and the end of the valve rod can be adjusted.
JP2010131012A 2010-06-08 2010-06-08 safety valve Expired - Fee Related JP5467000B2 (en)

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