JPH04191578A - Depressing valve - Google Patents

Depressing valve

Info

Publication number
JPH04191578A
JPH04191578A JP32150890A JP32150890A JPH04191578A JP H04191578 A JPH04191578 A JP H04191578A JP 32150890 A JP32150890 A JP 32150890A JP 32150890 A JP32150890 A JP 32150890A JP H04191578 A JPH04191578 A JP H04191578A
Authority
JP
Japan
Prior art keywords
valve
pressure
fluid
spool
chamber
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
JP32150890A
Other languages
Japanese (ja)
Inventor
Yoshio Imada
今田 義夫
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.)
NICHIWA SANGYO KK
Original Assignee
NICHIWA SANGYO KK
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 NICHIWA SANGYO KK filed Critical NICHIWA SANGYO KK
Priority to JP32150890A priority Critical patent/JPH04191578A/en
Publication of JPH04191578A publication Critical patent/JPH04191578A/en
Pending legal-status Critical Current

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Abstract

PURPOSE:To release the excessive load action applied to each place of a device by forming a low pressure acting surface on the downstream side of a depressing valve piece engaged with a valve seat formed at the valve chamber side opened port part of a through hole for the communication between the outside and the valve chamber and forming a relief passage which is opened in the state where a valve spool operates. CONSTITUTION:A valve seat 4 is formed at the valve chamber side opened port part of a through hole 3, and a low pressure acting surface 6 is formed on the downstream side of a depressing valve piece 5 engaged with the valve seat 4, and a coil spring 8 which applies elasticity in the valve seat 4 direction is installed on a valve spool 7. A relief passage 9 is formed so as to be opened in the state where the valve spool 7 is operated to a set position, and a passage 10 for allowing the inflow and discharge of the fluid in a back part chamber 2' in which the valve spool in a valve chamber 2 is interposed is formed. When the fluid pressure of the fluid which flows from the through hole 3 exceeds a set pressure, the valve spool 7 operates, against a coil spring 8, and the fluid which flows in from the through hole 3 flows into the valve chamber 2, and the valve spool 7 operates to the position where the relief passage 9 is opened.

Description

【発明の詳細な説明】 [産業上の利用分野] 本発明は、集中潤滑装置を構成する部分装置に関し、主
管によって配設された分配弁に対する流体供給と、この
流体供給側主管内の脱圧との交番作用を付与することに
よって流体を吐出することのできる脱圧応動型分配シス
テム装置に装備すべき脱圧弁に関する。
Detailed Description of the Invention [Industrial Application Field] The present invention relates to a partial device constituting a centralized lubrication system, and relates to fluid supply to a distribution valve provided by a main pipe and depressurization in the main pipe on the fluid supply side. The present invention relates to a pressure relief valve to be installed in a pressure relief responsive distribution system device capable of discharging fluid by applying alternating action with the pressure relief valve.

[従来の技術〕 従来の脱圧弁機構の原理は、流体供給源から供給された
供給主管内の流体の流れが停止することにより1、すな
わち加圧現象から減圧現象への移行時に、該主管内に連
通する系の適所に装備された当該脱圧弁が作用するよう
になっている。逆の表現をすれば、流体の供給作用が持
続する限り脱圧しないのである。従って、上記従来の脱
圧弁機構によれば、流体供給後、その供給を停止しなけ
れば脱圧しない。そして、その停止機能としては、■ 
主管の系の圧力を検出する手段を備え、必要量の流体供
給が終了したことを検出してその流体供給ポンプの駆動
を停止するか、 ■ 実験値に基づく設定時間(タイマー)で制御して、
流体供給を停止することが必要である。
[Prior Art] The principle of a conventional pressure relief valve mechanism is that when the flow of fluid in the main supply pipe supplied from the fluid supply source stops, 1. In other words, at the time of transition from a pressurization phenomenon to a depressurization phenomenon, the flow of fluid in the main supply pipe is stopped. The pressure relief valve is installed at an appropriate location in the system communicating with the system. In other words, as long as the fluid supply action continues, the pressure will not be released. Therefore, according to the above-mentioned conventional pressure relief valve mechanism, the pressure is not relieved unless the supply is stopped after the fluid is supplied. The stop function is ■
Either it is equipped with a means to detect the pressure in the main pipe system and stops driving the fluid supply pump when it detects that the required amount of fluid has been supplied, or it is controlled by a set time (timer) based on experimental values. ,
It is necessary to stop the fluid supply.

そしてその必要条件を充たそうとすれば、■ 上記■の
圧力検出方式によれば、流体供給のイしターパルを制御
するタイマーの他に、主管内の圧力を検出するセンサー
と、その検出された設定圧を信号として、モータ等圧力
源の作動を停止するための制御装置を必要とする。
In order to meet these requirements, ■According to the pressure detection method described in ■ above, in addition to the timer that controls the initial pulse of fluid supply, there is also a sensor that detects the pressure inside the main pipe, and a sensor that detects the pressure inside the main pipe. A control device is required to stop the operation of a pressure source such as a motor using the set pressure as a signal.

■ 上記■の時間制御方式によれば、流体供給のインタ
ーバルを制御するタイマーの他に、モータ等圧力源の作
動を停止するための別のタイマーを必要とする。
(2) According to the time control method (2) above, in addition to the timer that controls the interval of fluid supply, another timer is required to stop the operation of a pressure source such as a motor.

また、これら従来の脱圧弁とその制御方式によれば、 1 上記■■の方式においては、まず第一に、流体供給
のインターバルを制御するタイマーを設ける他に、主管
回路の圧力を検出するセンサーと云う異質の補助装置を
装備しなければならず、その生産コストに多大な影響を
与える。
Furthermore, according to these conventional pressure relief valves and their control methods, 1. In the method described in ■■ above, first of all, in addition to providing a timer to control the interval of fluid supply, a sensor is installed to detect the pressure in the main pipe circuit. It is necessary to equip the machine with a different kind of auxiliary equipment, which has a great impact on the production cost.

しかも主管が著しく長いばあい、その主管のに流側と下
流側との管内圧力が、管内抵抗によって異なることから
、圧力検出のセンサーを装備する位置次第で誤動作を生
じることとなる。
Furthermore, if the main pipe is extremely long, the internal pressures on the upstream and downstream sides of the main pipe will differ depending on the internal resistance, which can lead to malfunctions depending on the position of the pressure detection sensor.

なお、前記の管内抵抗から生じる管内の圧力差と、この
圧力差によって生じる当該脱圧応動型分配システムの誤
動作は、年間の四季の温度変化にかかわる流体の粘度変
化によっても発生することとなり、その対策は容易では
ない。
It should be noted that the pressure difference inside the pipe caused by the above-mentioned resistance inside the pipe and the malfunction of the pressure-responsive distribution system caused by this pressure difference are also caused by changes in the viscosity of the fluid related to temperature changes in the four seasons of the year. Countermeasures are not easy.

2、上記従来の■■の方式においては、圧力供給源のモ
ータの駆動インターバルを設定するタイマーを要するこ
とは基より、その駆動/流体供給時間をもタイマーによ
り制御することかd、該モータの駆動を停止するための
タイマーは、実験値に従って長めに設定する必要があり
、そこには作動時間の大きなロスが生じる。
2. In the conventional method (■■) above, not only is a timer required to set the driving interval of the motor of the pressure supply source, but also the driving/fluid supply time must be controlled by the timer. The timer for stopping the drive needs to be set to a longer time according to experimental values, which results in a large loss of operating time.

なお、このロス時間の作動中は、圧力供給源のモータに
対して不要な負荷を与えるばかりでなく、当該脱圧応動
型分配システムの装置の各所に、不要な負荷を与えるこ
ととなり、装置の耐用期間にかかわる支障を与えること
がある。
During the operation during this loss time, not only is an unnecessary load applied to the motor of the pressure supply source, but also an unnecessary load is applied to various parts of the device of the depressurization response type distribution system, causing damage to the device. It may cause problems related to the service life.

[発明が解決しようとする問題点] この発明は、前記従来の脱圧弁とその制御方式にかかわ
る問題点に鑑みなされたものである。
[Problems to be Solved by the Invention] The present invention has been made in view of the problems associated with the conventional pressure relief valve and its control system.

そして本発明は、その用途上比較的に問題の少ない上記
■■で説明の制御方式、つまり流体供給のインターバル
を制御するとともに、モータ等圧力源の作動を停止する
だめのタイマー制御方式を基本型として開発されたもの
であるが、上記の従来方式の作動上のロス時間において
装置の各所に与える過剰の負荷の作用を解消することを
主目的としてなされたものである。
The present invention is based on the control method described in ■■ above, which has relatively few problems in terms of its application, that is, the timer control method that controls the interval of fluid supply and stops the operation of pressure sources such as motors. The main purpose of this method was to eliminate the excessive load applied to various parts of the device during the operational loss time of the conventional method described above.

[問題点を解決するための手段] 本発明は、上記の問題解決のために、第1図および第2
図に示すとおり、本体lと、この本体内に形成された弁
室2と、前記本体の外部と弁室とを連通ずる通孔3と、
該通孔の弁室側開口部に形成された弁座4と、この弁座
と係合する脱圧弁子5を形成するとともに該脱圧弁子の
下流側に低圧作用面6を形成していて前記弁室内に摺動
自在に装備された弁スプール7と、該弁スプールに対し
て前記弁座4方向に弾性を付与するコイルバネ8と、前
記弁スプールが設定位置まで作動した状態で開口するよ
うに設けられたリリーフ通路9と、前記弁室2の弁スプ
ールを介在した背部室2°内の流体の出入りを許容する
だめの通路IOとより構成し、主管内の設定圧に応動し
て脱圧作用を供し、脱圧作用を生起した後は、リリーフ
弁としての作用を供するようにしたことを特徴とする。
[Means for Solving the Problems] In order to solve the above-mentioned problems, the present invention has the following features:
As shown in the figure, a main body 1, a valve chamber 2 formed within the main body, and a through hole 3 that communicates the outside of the main body with the valve chamber,
A valve seat 4 is formed at the valve chamber side opening of the through hole, a pressure relief valve 5 is formed to engage with the valve seat, and a low pressure acting surface 6 is formed on the downstream side of the pressure relief valve. A valve spool 7 that is slidably installed in the valve chamber, a coil spring 8 that imparts elasticity to the valve spool in the direction of the valve seat 4, and a coil spring 8 that opens when the valve spool is operated to a set position. It consists of a relief passage 9 provided in the valve spool of the valve chamber 2 and a reservoir passage IO that allows fluid to enter and exit the back chamber 2° through the valve spool of the valve chamber 2. It is characterized in that it provides a pressure action and, after the pressure release action has occurred, it provides an action as a relief valve.

[発明の作用] この発明は、前記に基づき構成するから、次の作用と機
能が得られる。
[Actions of the Invention] Since the present invention is constructed based on the above, the following actions and functions can be obtained.

脱圧応動型分配システムの主管回路と直結する通孔3よ
り流入した流体圧が、本発明脱圧弁の設定圧を越えると
、脱圧弁子5の一次側に面した受圧面に作用する設定圧
により、弁スプール7がコイルバネ8に抗して作動する
When the fluid pressure flowing in from the through hole 3 directly connected to the main pipe circuit of the pressure relief responsive distribution system exceeds the set pressure of the pressure relief valve of the present invention, the set pressure acts on the pressure receiving surface facing the primary side of the pressure relief valve 5. As a result, the valve spool 7 operates against the coil spring 8.

前記作動により、通孔3より流入した流体は、弁室2に
向けて流入する。該流入流体は弁スプール7の低圧作用
面6にその圧力を持続的に付与する。この低圧作用面6
の受圧作用により、前記弁スプールは、−層大きな作動
トルクを得、リリーフ通路9が開口する位置まで作動す
る。
Due to the above operation, the fluid that has flowed in through the through hole 3 flows toward the valve chamber 2 . The incoming fluid continuously applies its pressure to the low pressure working surface 6 of the valve spool 7. This low pressure working surface 6
Due to the pressure-receiving action of , the valve spool obtains a larger operating torque and operates to the position where the relief passage 9 opens.

前記脱圧弁子5の受圧面と弁スプールの低圧作用面6と
の比率は、一般にl:20〜1:30程度に設定される
。また、前記脱圧弁子5の受圧面と、コイルバネ8のト
ルクとの関係は、前記脱圧弁子5の受圧面に対してl 
Okg〜15kgの圧力作用が生じた時に、前記弁スプ
ール7を前記コイルバネ8のトルクに抗して作動するよ
うに設定することにより、−数的用途に供することがで
きる。そして、低圧作用面6の面積と、前記コイルバネ
8の弾性トルクとの関係は、前記低圧作用面6におよそ
0.5kg〜0.3kg程度の圧力が作用する状態で、
前述のリリーフ通路9が開口する位置まで作動し、かつ
その位置を保持するように設定する。
The ratio of the pressure receiving surface of the pressure relief valve 5 to the low pressure acting surface 6 of the valve spool is generally set to about 1:20 to 1:30. Further, the relationship between the pressure receiving surface of the pressure relief valve 5 and the torque of the coil spring 8 is l with respect to the pressure receiving surface of the pressure relief valve 5.
By setting the valve spool 7 to actuate against the torque of the coil spring 8 when a pressure effect of 10 kg to 15 kg occurs, it is possible to serve numerical applications. The relationship between the area of the low pressure acting surface 6 and the elastic torque of the coil spring 8 is as follows when a pressure of approximately 0.5 kg to 0.3 kg acts on the low pressure acting surface 6.
It is set to operate to the position where the aforementioned relief passage 9 opens and to maintain that position.

なお、前記の弁スプール7の作動状態で主管内への流体
供給が継続しているばあい、同主管内の流体圧力は、前
述のリリーフ通路9が開口する圧力を設定圧として、そ
の設定された脱圧状態を維持する。
In addition, when the fluid supply into the main pipe continues with the valve spool 7 in operation, the fluid pressure in the main pipe is set to the pressure at which the relief passage 9 opens. Maintain a depressurized state.

一方、流体の供給を停止すれば、流体供給回路内の流体
圧は低下し、これに伴ってこの脱圧弁の弁室2内の圧力
も低下する。この圧力低下により、弁スプール7は、コ
イルバネ8の弾性トルクにより原位置に押し戻され、次
の脱圧作用に備える状態となる。この作用の過程で、前
記弁室内の流体は、該弁室の内面と前記弁スプールの外
周面との間の間隙を通り、弁スプールの背部室2°に移
送される。
On the other hand, if the supply of fluid is stopped, the fluid pressure in the fluid supply circuit decreases, and the pressure in the valve chamber 2 of the pressure relief valve decreases accordingly. Due to this pressure drop, the valve spool 7 is pushed back to its original position by the elastic torque of the coil spring 8, and becomes ready for the next pressure relief operation. In the course of this action, the fluid in the valve chamber is transferred to the back chamber 2° of the valve spool through the gap between the inner surface of the valve chamber and the outer peripheral surface of the valve spool.

この発明の脱圧弁は、上述のとおり作用するから、■設
定された解放圧の10kg以上で脱圧動作を生起し、こ
の脱圧後は、流体供給の停止までの間、■0.5kg〜
0.3kg程度の低圧状態を保ってリリーフ作用を供す
る。
Since the pressure relief valve of the present invention operates as described above, (1) the pressure relief operation occurs when the set release pressure is 10 kg or more, and after this pressure relief, (1) the pressure release operation is performed until the fluid supply is stopped;
It maintains a low pressure state of about 0.3 kg and provides a relief effect.

本発明は以上の作用により、脱圧後において、流体供給
系の不要な流体圧による負荷の作用を解消する機能が得
られる。
Due to the above-described effects, the present invention provides a function of eliminating the load caused by unnecessary fluid pressure on the fluid supply system after the pressure is removed.

なお、上記の設定されるべき脱圧のための解放圧■、お
よび脱圧後に該脱圧状態を維持するための設定低圧■、
およびそれらを設定するための構成に関しては、使用す
る流体または粘張体の粘度や粘度等により、本発明構成
の要旨に基づき、適宜調整して設定する。
In addition, the above-mentioned release pressure (■) to be set for depressurization, and set low pressure (■) to maintain the depressurized state after depressurization,
The configuration for setting them is appropriately adjusted and set based on the gist of the configuration of the present invention, depending on the viscosity and viscosity of the fluid or viscous body used.

〔実施例1 第2図の実施例について、前記の「問題を解決するため
の手段4を補足する構造部分について説明する。
[Embodiment 1] Regarding the embodiment shown in FIG. 2, a structural part that supplements the above-mentioned "Means for Solving the Problem 4" will be explained.

本体lには、図の上部より中クリされ、その上部に閉塞
部材11を嵌着して形成された弁室2(および2′)を
構成している。
A valve chamber 2 (and 2') is formed in the main body 1 by opening a hole in the upper part of the figure and fitting a closing member 11 into the upper part.

この弁室2と、流体供給系とを連通ずる通孔3は、同流
体供給系の所定の位置に螺着して止めるために設けられ
たのねじ12の軸心部に設けられている。
A through hole 3 through which the valve chamber 2 and the fluid supply system are communicated is provided at the axial center of a screw 12 provided to be screwed into a predetermined position of the fluid supply system.

この通孔3の弁室2側の開口部、つまり弁室の低部には
密着性に富む素材でなるスリーブ14を嵌合装着し、そ
の芯部に弁座4を形成している。
A sleeve 14 made of a highly adhesive material is fitted into the opening of the through hole 3 on the side of the valve chamber 2, that is, the lower part of the valve chamber, and the valve seat 4 is formed at the core of the sleeve 14.

一方この弁座に係合する位置の弁スプール7の端部には
、部材15が嵌着され、該部材には脱圧弁子(5)が保
持されている。この実施例において、同脱圧弁子はWA
球(5′)が用いられている。
On the other hand, a member 15 is fitted to the end of the valve spool 7 at a position that engages with the valve seat, and a pressure relief valve (5) is held in the member. In this embodiment, the pressure relief valve is WA
A ball (5') is used.

なお、リリーフ通路9および通路lOは、図の左右に各
1個設けており、流体作用の均衡を取る設計になってい
る。また、閉塞部材11には、取り付けねじを設けてい
て、この脱圧弁を装備する集中潤滑装置の適所に固定す
るようにしている。
Note that one relief passage 9 and one passage IO are provided on the left and right sides of the figure, and the design is such that the fluid action is balanced. Further, the closing member 11 is provided with a mounting screw so that it can be fixed in place in a central lubrication system equipped with this pressure relief valve.

この発明は、上記の実施例に基づき実施できるから前述
の作用と機能が得られる。すなわち、この脱圧弁を脱圧
応動型の集中潤滑装置の流体供給系に装備すれば、次の
機能が得られる。
Since the present invention can be implemented based on the above-described embodiments, the above-described effects and functions can be obtained. That is, if this pressure relief valve is installed in the fluid supply system of a pressure relief response type centralized lubrication system, the following functions can be obtained.

その流体供給主管より、流体供給系に配設された単数ま
たは複数、あるいは多数の脱圧応動型分配弁に対して流
体の供給がなされ、該脱圧応動型分配弁のすべてに設定
された容量の流体が充満した後は、同流体供給系の流体
圧が上昇する。この圧力上昇が、本脱圧弁の設定圧に達
すれば、前述の作用説明のとおり弁スプール7が動作し
、脱圧作用を供する。そしてそれ以後に供給される流体
は、リリーフ通路9よりリリーフされ、この流体供給系
の作用圧を極低圧の微圧に変位する。
Fluid is supplied from the main fluid supply pipe to one, multiple, or multiple depressurization-responsive distribution valves installed in the fluid supply system, and the capacity set for all of the depressurization-responsive distribution valves. After the fluid is filled, the fluid pressure of the fluid supply system increases. When this pressure rise reaches the set pressure of the pressure relief valve, the valve spool 7 operates as described above and provides a pressure relief effect. The fluid supplied thereafter is relieved from the relief passage 9, changing the working pressure of this fluid supply system to an extremely low pressure.

この流体供給系の微圧状態は、その流体供給を停止する
まで保持される。
This low pressure state of the fluid supply system is maintained until the fluid supply is stopped.

[発明の効果] 本発明は、上記の機能を供するから、次の効果がある。[Effect of the invention] Since the present invention provides the above functions, it has the following effects.

1、流体供給系の圧力を感知して動作する脱圧弁子5の
機能により、該流体供給系に配備した分配弁に対する流
体供給量が充分に達したことを自己検知し、不要な供給
流体の圧力を速やかに脱圧しることかできるから、流体
の分配作用を速やかに生起するとともに、配備された分
配弁を初め流体供給の各所に対する過剰な圧力の付与を
解消できる効果がある。
1. The pressure relief valve 5, which operates by sensing the pressure in the fluid supply system, self-detects when the fluid supply amount to the distribution valve installed in the fluid supply system has reached a sufficient level, and removes unnecessary supply fluid. Since the pressure can be quickly released, the fluid distribution action can be quickly generated, and there is an effect that excessive pressure can be eliminated from being applied to various parts of the fluid supply including the distributing valve provided.

2、上記効果には、流体供給時間の設定に関し、余裕を
持って長(することに支障が生じない効果が伴う。この
効果に伴って、その流体供給時間を停止するためのタイ
マーの設定時間は、配備する分配弁の個数および設定さ
れるべき吐出7 量に関する適応範囲を著しく拡大した
タイマー設定が許容される。
2. The above effect is accompanied by the effect that there is no problem in setting the fluid supply time with a margin. Along with this effect, the setting time of the timer to stop the fluid supply time is also increased. This allows timer settings that significantly expand the applicable range regarding the number of dispensing valves to be installed and the discharge amount to be set.

3、本発明の脱圧弁を装備したばあい、上記のとおり流
体供給時間を長くすることに弊害が伴わないから、配備
する分配弁の数や吐出量の設定許容範囲を著しく広範囲
に想定し、使用条件の範囲を大きく調整して実用化する
ことに関して支障が生じない。すなわち、流体の粘度変
化や配管の長さ等に応じた現地調整等の必要のない集中
潤滑装置を提供できる効果がある。
3. When equipped with the pressure relief valve of the present invention, there is no harm in lengthening the fluid supply time as described above, so the number of distributing valves to be installed and the allowable setting range of the discharge amount can be assumed to be extremely wide. There is no problem in putting it into practical use by greatly adjusting the range of usage conditions. In other words, it is possible to provide a centralized lubrication system that does not require on-site adjustment depending on changes in fluid viscosity, pipe length, etc.

なお、上記の調整不要の装置を提供できることは、従来
そのような調整不良のために生じた誤動作や給油不良等
の問題解決の顕著な手段になるものとして評価できる効
果が得られる。
It should be noted that the ability to provide the above-mentioned adjustment-free device has an effect that can be evaluated as a significant means for solving problems such as malfunctions and poor lubrication that conventionally occurred due to such poor adjustment.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の原理を表し、そのA図は通常の状態を
示す簡略図、同B図は脱圧状態を示す簡略図、第2図は
本発明の実施例を示す縦断面図である。 l・・・本体      2・・・弁室3・・・通孔 
     4・・・弁座5・・・脱圧弁子    6・
・・低圧作用面7・・・弁スプール   8・・・コイ
ルバネ9・・・リリーフ通路  IO・・・通路+1・
・・閉塞部材 14・・・スリーブ 15・・・部材 → 手続補正書 平成 3年 6月18日 平成2年特許願第 321508号 2、発明の名称 3、補正をする者 、事件との関係  特許出願人 郵便番号 732 、 住所 広島市東区愛宕町2番の9号 平成3年3月12日 (発進口) 5、補正の対象
Figure 1 represents the principle of the present invention, Figure A is a simplified diagram showing a normal state, Figure B is a simplified diagram showing a depressurized state, and Figure 2 is a longitudinal sectional view showing an embodiment of the present invention. be. l...Body 2...Valve chamber 3...Through hole
4...Valve seat 5...Pressure relief valve 6.
...Low pressure working surface 7...Valve spool 8...Coil spring 9...Relief passage IO...Passage +1.
...Closing member 14...Sleeve 15...Member → Procedural amendment June 18, 1991 Patent application No. 321508, 1990 2, Title of invention 3, Person making the amendment, Relationship to the case Patent Applicant postal code: 732 Address: No. 2-9, Atago-cho, Higashi-ku, Hiroshima City March 12, 1991 (Departure gate) 5. Subject of amendment

Claims (1)

【特許請求の範囲】[Claims] 本体1と、この本体内に形成された弁室2と、前記本体
の外部と弁室とを連通する通孔3と、該通孔の弁室側開
口部に形成された弁座4と、この弁座と係合する脱圧弁
子5を形成するとともに該脱圧弁子の下流側に低圧作用
面6を形成していて前記弁室内に摺動自在に装備された
弁スプール7と、該弁スプールに対して前記弁座4方向
に弾性を付与するコイルバネ8と、前記弁スプールが設
定位置まで作動した状態で開口するように設けられたリ
リーフ通路9と、前記弁室2の弁スプールを介在した背
部室2’内の流体の出入りを許容するための通路10と
から成る構造を特徴とする、脱圧弁。
A main body 1, a valve chamber 2 formed within the main body, a through hole 3 communicating the outside of the main body and the valve chamber, and a valve seat 4 formed at an opening on the valve chamber side of the through hole. A valve spool 7 which forms a pressure relief valve 5 that engages with the valve seat and forms a low pressure working surface 6 on the downstream side of the pressure relief valve and is slidably mounted in the valve chamber; A coil spring 8 that imparts elasticity to the spool in the direction of the valve seat 4, a relief passage 9 provided to open when the valve spool is operated to a set position, and a valve spool of the valve chamber 2 are interposed. A pressure relief valve characterized by a structure consisting of a passage 10 for allowing fluid to enter and exit the back chamber 2'.
JP32150890A 1990-11-26 1990-11-26 Depressing valve Pending JPH04191578A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP32150890A JPH04191578A (en) 1990-11-26 1990-11-26 Depressing valve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP32150890A JPH04191578A (en) 1990-11-26 1990-11-26 Depressing valve

Publications (1)

Publication Number Publication Date
JPH04191578A true JPH04191578A (en) 1992-07-09

Family

ID=18133351

Family Applications (1)

Application Number Title Priority Date Filing Date
JP32150890A Pending JPH04191578A (en) 1990-11-26 1990-11-26 Depressing valve

Country Status (1)

Country Link
JP (1) JPH04191578A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010237862A (en) * 2009-03-30 2010-10-21 Keihin Corp Pressure reducing valve for gas

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010237862A (en) * 2009-03-30 2010-10-21 Keihin Corp Pressure reducing valve for gas

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