JP3635725B2 - 3-way solenoid valve - Google Patents

3-way solenoid valve Download PDF

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Publication number
JP3635725B2
JP3635725B2 JP18948895A JP18948895A JP3635725B2 JP 3635725 B2 JP3635725 B2 JP 3635725B2 JP 18948895 A JP18948895 A JP 18948895A JP 18948895 A JP18948895 A JP 18948895A JP 3635725 B2 JP3635725 B2 JP 3635725B2
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JP
Japan
Prior art keywords
valve
valve seat
port
way solenoid
solenoid 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.)
Expired - Fee Related
Application number
JP18948895A
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Japanese (ja)
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JPH0893953A (en
Inventor
野 敏 宏 前
橋 知 彦 舩
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.)
Aisin Corp
Original Assignee
Aisin Seiki Co Ltd
Aisin 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 Aisin Seiki Co Ltd, Aisin Corp filed Critical Aisin Seiki Co Ltd
Priority to JP18948895A priority Critical patent/JP3635725B2/en
Publication of JPH0893953A publication Critical patent/JPH0893953A/en
Application granted granted Critical
Publication of JP3635725B2 publication Critical patent/JP3635725B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Description

【0001】
【発明の属する技術分野】
この出願の発明は、車両用液圧ブレーキ装置のブレーキ液圧制御弁などに使用される三方向電磁弁に関するものである。
【0002】
【従来の技術】
近年、電磁弁の技術分野においても構成部品点数の削減によるコストの引き下げが行われている。WO93−8051号公報には、二方向電磁弁において、ボデーの段付シリンダ孔の小径部内に弁座部材を挿入した後、小径部の端部の周囲をかしめることにより弁座部材をボデーに対してシール状態に固定すること、電磁石の固定鉄心の膨径端部および固定鉄心を挿入したスリーブの膨径端部を段付シリンダ孔の中径部内に挿入した後、中径部の端部の周囲をかしめることにより固定鉄心およびスリーブをボデーに対してシール状態に固定することが開示されている。かかる技術によれば、ボデーと弁座部材との間のシール部材やボデーと固定鉄心およびスリーブとの間のシール部材が不要となる。
【0003】
【発明が解決しようとする課題】
しかしながら、上記従来装置は、弁体が弁座部材から離脱している状態での流量特性や弁体が弁座に着座した状態でのシール特性が規格を満たしているか否かの検査を電磁弁組立体の状態でしか行えないものであり、検査の作業性が良いとは言えず、また不合格の場合には電磁弁組立体全体が廃棄処分となり、不経済であると言う問題がある。
【0004】
この出願の発明は、シール部材を用いることなく弁座部材をボデーに対してシール状態に固定するとともに、弁座部材と弁体との間のシール性や弁体が弁座部材から離脱した状態での流量の検査が容易であり、組立が容易である三方向電磁弁を提供することを目的とする。
【0005】
【課題を解決するための手段】
上記の目的に従うこの出願の発明に係る三方向電磁弁は、請求項1に記載したように、段付シリンダ孔とこの段付シリンダ孔の一端部、中間部および他端部にそれぞれ連通する第1のポート、第2のポートおよび第3のポートとが形成されているボデーと、前記中間部内に配置され且つ前記ボデーに固定されており、前記第1のポートと前記第2のポートを連通するための第1の通孔を中心部に有している第1の弁座部材と、前記中間部内に配置され且つ前記ボデーに固定されており、前記第2のポートと前記第3のポートを連通するための第2の通孔を中心部に有している第2の弁座部材と、前記両弁座部材の間に配置されており、前記両弁座部材の各々の縮径部が内側に圧入されているスペーサと、前記スペーサの内側に配置されており、前記両通孔の何れか一方を選択的に閉鎖させるための弁体と、前記弁体を前記第2の通孔を閉鎖させるように付勢する付勢部材と、前記他端部内に配置されていて前記弁体を前記付勢部材の付勢に抗して前記第1の通孔を閉鎖させるように押動するためのロッドと、前記ロッドに結合した可動鉄心を含んでおり、電気コイルへの通電により前記ロッドを推進させる電磁石と、前記両弁座部材、前記スペーサおよび前記弁体の組立体を前記中間部内に挿入した後に前記中間部の端部の周囲部分をかしめることにより形成され、前記各弁座部材を前記ボデーに対してシール状態に固定する止め部を備えたものである。
【0006】
上記の如き構成の三方向電磁弁において、請求項2〜5に記載したように、付勢部材を両弁座部材の何れか一方部材の内部に配置してその一端で直接弁体に当接させ、更に、付勢部材を線材にて形成したスプリングとしてその一端に弁体に当接させるピン状部を設け、更には、スプリングの他端の環状部をガイド部材に設けた環状溝に係止させることにより、組立作業の容易化および小型化を図ることができる。
【0007】
また、構成部品の種類を少なくしてコスト低減を図るため、請求項6に記載したように、前記両弁座部材が同一の形状および寸法を有したものとすることが好ましい。
【0008】
上記の如き構成の三方向電磁弁において、電磁石の電気コイルに通電しない常態では、前記付勢部材により前記弁体が前記第1の弁座部材から離脱させられて前記第1の通孔を開き且つ前記第2の弁座部材に接触させられて前記第2の通孔を閉鎖するため、前記第1のポートが前記第2のポートに連通し且つ前記第2のポートと前記第3のポートとが遮断される。電磁石の電気コイルに通電すると、前記ロッドが推進されて前記弁体が前記第2の弁座部材から離脱させられて前記第2の通孔を開き且つ前記第1の弁座部材に接触させられて前記第1の通孔を閉鎖するため、前記第2のポートが前記第3のポートに連通し且つ前記第2のポートと前記第1のポートとが遮断される。
【0009】
前記止め部により前記各弁座部材を前記ボデーに対してシール状態に固定するため、シール部材は不要である。
【0010】
前記両弁座部材、前記スペーサおよび前記弁体は組立体となっているため、これらを前記中間部内に挿入する作業は容易であり、この組立体を前記小径部に挿入する前段階で各弁座部材と弁体との間のシール性や弁体が弁座部材から離脱した状態での流量の検査を行うことができるので、検査の作業性も良く、また検査に不合格の場合にはこの組立体のみを廃棄処分にすれば足りるので経済的に生産できる。
【0011】
【発明の実施の形態】
この出願の発明に係る三方向電磁弁の実施形態を図面に基づいて説明する。
【0012】
図1は、実施形態1の縦断面を示す。図1において、11は金属製のボデーであり、上下方向の軸線を有する段付シリンダ孔12と、この段付シリンダ孔12の小径の一端部12aに連通する第1のポート13と、段付シリンダ孔12の中径の中間部12bに連通する第2のポート14と、段付シリンダ孔12の大径の他端部12cに連通する第3のポート15が形成されている。
【0013】
段付シリンダ孔12の他端部12cの上方膨径部内には、電磁石16の固定鉄心17の下方膨径部と非磁性体製のスリーブ18の下方テーパ部が配置されており、スリーブ18のテーパ部とボデー11のテーパ部との間に止めリング19を圧入することにより固定鉄心17およびスリーブ18がボデー11に固定され且つスリーブ18とボデー11との間がシールされている。
【0014】
電磁石16は、スリーブ18内の可動鉄心20と、可動鉄心20を上方へ付勢する線材製のコイル状のスプリング21と、スリーブ18の外側を囲むように配置されている電気コイル22と、磁性体製のヨーク部材23,24を含む。
【0015】
図1〜図3に示されるように、段付シリンダ孔12の中間部12b内には、金属製の第1の弁座部材25、金属製の第2の弁座部材26、金属製のスペーサ27および球状の金属製の弁体28の組立体29が配置されている。弁座部材25および26は同一の形状および寸法を有するものであり、弁座部材25および26は通孔25aおよび26aをそれぞれ中心部に有している。弁座部材25および26の縮径部25bおよび26bはスペーサ27の内側に圧入されている。スペーサ27は、弁座部材25および26の外径よりも若干小さい外径を有しており、段付シリンダ孔12の中間部12bの周面との間に環状の通路30を形成する。また弁体28が位置する部分の内径から外径に達する放射溝27aを3本有している。通路30と放射溝27aにより、組立体29の周方向の位置がどのようであっても第2ポート14と通孔25a,26aとの連通が確保される。
【0016】
組立体29を中間部12b内に挿入した後、中間部12bの上端部の周囲部分をかしめることにより形成された止め部11aにより、弁座部材25の下面と中間部12bの下端面との間がシールされ、弁座部材26の上端部外周と止め部11aとの間がシールされ、両弁座部材25,26がボデー11に固定される。
【0017】
段付シリンダ孔12の一端部12a内には、スプリング31の力により弁体28を上方へ付勢する付勢部材32が上下動自在に配置されており、弁体28を付勢部材32の付勢に抗して下方へ押動させるロッド33が段付シリンダ孔12の他端部12c内に配置されている。このロッド33は電磁石16の可動鉄心20と結合されており、電気コイル22が通電された場合には電磁石16により下方へ推進させられる。段付シリンダ孔12の他端部12c内には、ロッド33をガイドするガイド34とこれを固定する止めリング35が配置されている。止めリング35は他端部12cの周壁をかしめることにより固定されている。
【0018】
次に作用を説明する。電磁石16の電気コイル22に通電しない常態では、付勢部材32により弁体28が弁座部材25から離脱させられて通孔25aを開き且つ弁座部材26に接触させられて通孔26aを閉鎖するため、ポート13がポート14に連通し且つポート14とポート15とが遮断される。電磁石16の電気コイル22に通電すると、ロッド33が下方へ推進されて弁体28が弁座部材26から離脱させられて通孔26aを開き且つ弁座部材25に接触させられて通孔25aを閉鎖するため、ポート14がポート15に連通し且つポート14とポート13とが遮断される。
【0019】
図4は、実施形態2の縦断面の一部を示す。実施形態1に対する実施形態2の相違点は、第2の弁座部材26とスペーサを一体化した点と弁座部材25内に収容された線材製のコイル状のスプリング36が弁体28を直接付勢する点にある。スプリング34はその上端にピン状部36aを有し、このピン状部36aで弁体28に当接し、またその下端の環状部36bを弁座部材25に形成された環状溝25cに係止されている。
【0020】
尚、スプリング36の代わりに、板材製の付勢部材を使用しても良い。
【0021】
【発明の効果】
以上に説明したように、この出願の発明によれば、シール部材を用いることなく弁座部材をボデーに対してシール状態に固定するとともに、弁座部材と弁体との間のシール性や弁体が弁座部材から離脱した状態での流量の検査が容易であり、組立が容易である三方向電磁弁を提供することができる。
【図面の簡単な説明】
【図1】この出願の発明に係る三方向電磁弁の実施形態1の縦断面図である。
【図2】図1の要部の拡大図である。
【図3】要部の分解斜視図である。
【図4】この出願の発明に係る三方向電磁弁の実施形態2の縦断面図である。
【符号の説明】
11・・・ボデー
11a・・・止め部
12・・・段付シリンダ孔
13,14,15・・・ポート
16・・・電磁石
25,26・・・弁座部材
27・・・スペーサ
28・・・弁体
29・・・組立体
32・・・付勢部材
33・・・ロッド
36・・・付勢部材
[0001]
BACKGROUND OF THE INVENTION
The invention of this application relates to a three-way electromagnetic valve used for a brake hydraulic pressure control valve of a hydraulic brake device for a vehicle.
[0002]
[Prior art]
In recent years, costs have been reduced by reducing the number of components in the technical field of solenoid valves. In WO 93-8051, in a two-way solenoid valve, after inserting a valve seat member into a small diameter portion of a stepped cylinder hole of a body, the valve seat member is made into a body by caulking around the end of the small diameter portion. After fixing the expanded end of the fixed core of the electromagnet and the expanded end of the sleeve into which the fixed core is inserted into the intermediate diameter of the stepped cylinder hole, the end of the intermediate diameter is fixed. It is disclosed that the fixed iron core and the sleeve are fixed to the body in a sealed state by caulking the periphery of the body. According to this technique, a sealing member between the body and the valve seat member and a sealing member between the body, the fixed iron core, and the sleeve are not necessary.
[0003]
[Problems to be solved by the invention]
However, the above-mentioned conventional device performs an inspection to check whether the flow characteristics when the valve body is detached from the valve seat member and the seal characteristics when the valve body is seated on the valve seat satisfy the standards. This can only be done in the state of the assembly, and it cannot be said that the workability of the inspection is good, and if it fails, there is a problem that the whole solenoid valve assembly is disposed of and is uneconomical.
[0004]
In the invention of this application, the valve seat member is fixed in a sealed state with respect to the body without using a seal member, and the sealability between the valve seat member and the valve body and the state in which the valve body is detached from the valve seat member It is an object of the present invention to provide a three-way solenoid valve that can be easily inspected for flow rate and can be easily assembled.
[0005]
[Means for Solving the Problems]
The three-way solenoid valve according to the invention of the present application in accordance with the above object is, as described in claim 1, a stepped cylinder hole and a first portion, an intermediate portion, and the other end portion of the stepped cylinder hole that communicate with each other. A body in which one port, a second port, and a third port are formed, and is disposed in the intermediate portion and fixed to the body, and communicates the first port and the second port A first valve seat member having a first through hole in the center, a second valve seat member disposed in the intermediate portion and fixed to the body, the second port and the third port A second valve seat member having a second through hole at the center for communicating with the valve seat member, and a reduced diameter portion of each of the two valve seat members. A spacer that is press-fitted inside, and is arranged inside the spacer. A valve body for selectively closing either one of the two through holes, a biasing member for biasing the valve body to close the second through hole, and the other end portion. A rod for pushing the valve body so as to close the first through-hole against the urging force of the urging member, and a movable iron core coupled to the rod, an electromagnet for propelling the rod by energization of the said two valve seat member, by caulking the peripheral portion of the end portion of the intermediate portion after the assembly of said spacer and said valve body is inserted into the middle portion It is formed and provided with the stop part which fixes each said valve-seat member in the sealing state with respect to the said body.
[0006]
In the three-way solenoid valve configured as described above, as described in claims 2 to 5, the urging member is disposed inside one of the two valve seat members and directly contacts the valve body at one end thereof. Furthermore, a pin-shaped part that contacts the valve body is provided at one end of the urging member as a spring formed of a wire rod, and the annular part at the other end of the spring is further engaged with an annular groove provided in the guide member. By stopping, assembly work can be facilitated and reduced in size.
[0007]
Further, in order to reduce the cost by reducing the types of components, it is preferable that both the valve seat members have the same shape and dimensions as described in claim 6.
[0008]
In the three-way solenoid valve configured as described above, in a normal state where no electric coil is energized, the urging member causes the valve body to be detached from the first valve seat member to open the first through hole. And the first port communicates with the second port and contacts the second valve seat member to close the second through hole, and the second port and the third port. And are cut off. When the electric coil of the electromagnet is energized, the rod is propelled to disengage the valve body from the second valve seat member, open the second through hole, and contact the first valve seat member. In order to close the first through hole, the second port communicates with the third port, and the second port and the first port are blocked.
[0009]
Since each valve seat member is fixed in a sealed state with respect to the body by the stopper, a seal member is unnecessary.
[0010]
Since both the valve seat member, the spacer, and the valve body are an assembly, it is easy to insert them into the intermediate portion , and each stage before the assembly is inserted into the small diameter portion. Since the sealing performance between the valve seat member and the valve body and the flow rate when the valve body is detached from the valve seat member can be inspected, the workability of the inspection is good, and when the inspection fails Can be produced economically because only this assembly needs to be disposed of.
[0011]
DETAILED DESCRIPTION OF THE INVENTION
An embodiment of a three-way solenoid valve according to the invention of this application will be described with reference to the drawings.
[0012]
FIG. 1 shows a longitudinal section of the first embodiment. In FIG. 1, 11 is a metal body, a stepped cylinder hole 12 having an axis in the vertical direction, a first port 13 communicating with one end portion 12a of the stepped cylinder hole 12, and a stepped cylinder hole. A second port 14 that communicates with the middle diameter intermediate portion 12 b of the cylinder hole 12 and a third port 15 that communicates with the large diameter other end portion 12 c of the stepped cylinder hole 12 are formed.
[0013]
A lower expanded portion of the fixed iron core 17 of the electromagnet 16 and a lower tapered portion of a non-magnetic sleeve 18 are arranged in the upper expanded portion of the other end portion 12 c of the stepped cylinder hole 12. By inserting a retaining ring 19 between the taper portion and the taper portion of the body 11, the fixed iron core 17 and the sleeve 18 are fixed to the body 11 and the space between the sleeve 18 and the body 11 is sealed.
[0014]
The electromagnet 16 includes a movable iron core 20 in the sleeve 18, a coiled spring 21 made of a wire material that urges the movable iron core 20 upward, an electric coil 22 arranged so as to surround the outside of the sleeve 18, and a magnetic Body yoke members 23 and 24 are included.
[0015]
As shown in FIGS. 1 to 3, a metal first valve seat member 25, a metal second valve seat member 26, and a metal spacer are disposed in the intermediate portion 12 b of the stepped cylinder hole 12. 27 and an assembly 29 of spherical metal valve bodies 28 are arranged. The valve seat members 25 and 26 have the same shape and dimensions, and the valve seat members 25 and 26 have through holes 25a and 26a in the center. The reduced diameter portions 25 b and 26 b of the valve seat members 25 and 26 are press-fitted inside the spacer 27. The spacer 27 has an outer diameter that is slightly smaller than the outer diameters of the valve seat members 25 and 26, and forms an annular passage 30 between the spacer 27 and the peripheral surface of the intermediate portion 12 b of the stepped cylinder hole 12. Further, there are three radiation grooves 27a that reach the outer diameter from the inner diameter of the portion where the valve body 28 is located. The passage 30 and the radiation groove 27a ensure communication between the second port 14 and the through holes 25a and 26a regardless of the circumferential position of the assembly 29.
[0016]
After the assembly 29 is inserted into the intermediate portion 12b, the stopper 11a formed by caulking the peripheral portion of the upper end portion of the intermediate portion 12b causes the lower surface of the valve seat member 25 and the lower end surface of the intermediate portion 12b to The space is sealed, the space between the outer periphery of the upper end portion of the valve seat member 26 and the stopper portion 11 a is sealed, and both valve seat members 25 and 26 are fixed to the body 11.
[0017]
A biasing member 32 that biases the valve body 28 upward by the force of the spring 31 is disposed in the one end portion 12a of the stepped cylinder hole 12 so as to be movable up and down. A rod 33 that is pushed downward against the bias is disposed in the other end portion 12 c of the stepped cylinder hole 12. The rod 33 is coupled to the movable iron core 20 of the electromagnet 16 and is pushed downward by the electromagnet 16 when the electric coil 22 is energized. In the other end 12c of the stepped cylinder hole 12, a guide 34 for guiding the rod 33 and a stop ring 35 for fixing the guide 34 are disposed. The retaining ring 35 is fixed by caulking the peripheral wall of the other end portion 12c.
[0018]
Next, the operation will be described. In a normal state where the electric coil 22 of the electromagnet 16 is not energized, the urging member 32 causes the valve body 28 to be detached from the valve seat member 25 to open the through hole 25a and to contact the valve seat member 26 to close the through hole 26a. Therefore, the port 13 communicates with the port 14 and the port 14 and the port 15 are blocked. When the electric coil 22 of the electromagnet 16 is energized, the rod 33 is pushed downward, the valve body 28 is detached from the valve seat member 26 to open the through hole 26a, and is brought into contact with the valve seat member 25 to pass through the through hole 25a. To close, port 14 communicates with port 15 and ports 14 and 13 are blocked.
[0019]
FIG. 4 shows a part of a longitudinal section of the second embodiment. The difference between the second embodiment and the second embodiment is that the second valve seat member 26 and the spacer are integrated, and a coiled spring 36 made of wire housed in the valve seat member 25 directly connects the valve body 28. It is in the point to be energized. The spring 34 has a pin-shaped portion 36 a at the upper end thereof, abuts against the valve body 28 by the pin-shaped portion 36 a, and the annular portion 36 b at the lower end thereof is locked in an annular groove 25 c formed in the valve seat member 25. ing.
[0020]
Instead of the spring 36, an urging member made of a plate material may be used.
[0021]
【The invention's effect】
As described above, according to the invention of this application, the valve seat member is fixed in a sealed state with respect to the body without using the seal member, and the sealing property and valve between the valve seat member and the valve body are fixed. It is possible to provide a three-way solenoid valve that is easy to inspect for the flow rate when the body is detached from the valve seat member and is easy to assemble.
[Brief description of the drawings]
FIG. 1 is a longitudinal sectional view of a first embodiment of a three-way solenoid valve according to the invention of this application.
FIG. 2 is an enlarged view of a main part of FIG.
FIG. 3 is an exploded perspective view of a main part.
FIG. 4 is a longitudinal sectional view of Embodiment 3 of a three-way solenoid valve according to the invention of this application.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 11 ... Body 11a ... Stop part 12 ... Stepped cylinder hole 13, 14, 15 ... Port 16 ... Electromagnet 25, 26 ... Valve seat member 27 ... Spacer 28 ...・ Valve 29 ... Assembly 32 ... Biasing member 33 ... Rod 36 ... Biasing member

Claims (5)

段付シリンダ孔とこの段付シリンダ孔の一端部、中間部および他端部にそれぞれ連通する第1のポート、第2のポートおよび第3のポートとが形成されているボデーと、前記中間部内に配置され且つ前記ボデーに固定されており、前記第1のポートと前記第2のポートを連通するための第1の通孔を中心部に有している第1の弁座部材と、前記中間部内に配置され且つ前記ボデーに固定されており、前記第2のポートと前記第3のポートを連通するための第2の通孔を中心部に有している第2の弁座部材と、前記両弁座部材の間に配置されており、前記両弁座部材の各々の縮径部が内側に圧入されているスペーサと、前記スペーサの内側に配置されており、前記両通孔の何れか一方を選択的に閉鎖させるための弁体と、前記弁体を前記第2の通孔を閉鎖させるように付勢する付勢部材と、前記他端部内に配置されていて前記弁体を前記付勢部材の付勢に抗して前記第1の通孔を閉鎖させるように押動するためのロッドと、前記ロッドに結合した可動鉄心を含んでおり、電気コイルへの通電により前記ロッドを推進させる電磁石と、前記両弁座部材、前記スペーサおよび前記弁体の組立体を前記中間部内に挿入した後に前記中間部の端部の周囲部分をかしめることにより形成され、前記各弁座部材を前記ボデーに対してシール状態に固定する止め部を備えた三方向電磁弁。A body in which a stepped cylinder hole and a first port, a second port, and a third port communicating with one end portion, an intermediate portion, and the other end portion of the stepped cylinder hole are formed; and in the intermediate portion And a first valve seat member having a first through hole at the center for communicating the first port and the second port, and fixed to the body, A second valve seat member disposed in an intermediate portion and fixed to the body, and having a second through hole for communicating the second port and the third port at a central portion; The spacers are disposed between the valve seat members, and the respective diameter-reduced portions of the valve seat members are press-fitted inside, and the spacers are disposed inside the spacers. A valve body for selectively closing one of the valves, and the valve body in the second A biasing member that biases the hole to be closed, and a valve member disposed in the other end portion to push the valve body against the biasing of the biasing member so as to close the first through hole. A rod for moving, a movable iron core coupled to the rod, an electromagnet for propelling the rod by energizing an electric coil, and the assembly of the valve seat members, the spacer and the valve body is formed by caulking the peripheral portion of the end portion of the intermediate portion after insertion into the middle part, three-way solenoid valve having a stopper portion fixed to the sealing state the respective valve seat member relative to said body. 請求項1に記載の三方向電磁弁であって、前記両弁座部材が同一の形状および寸法を有していることを特徴とする三方向電磁弁。The three-way solenoid valve according to claim 1, wherein the both valve seat members have the same shape and dimensions. 請求項1に記載の三方向電磁弁であって、前記付勢部材が前記両弁座部材の何れか一方部材の内部に収容されており、その一端で前記弁体に直接当接されていることを特徴とする三方向電磁弁。2. The three-way solenoid valve according to claim 1, wherein the urging member is accommodated in one of the two valve seat members, and is in direct contact with the valve body at one end thereof. A three-way solenoid valve characterized by that. 請求項3に記載の三方向電磁弁であって、前記付勢部材が線材で形成されたスプリングであり、その一端に前記弁体と当接するピン状部を有していることを特徴とする三方向電磁弁。4. The three-way solenoid valve according to claim 3, wherein the biasing member is a spring formed of a wire, and has a pin-like portion that comes into contact with the valve body at one end thereof. Three-way solenoid valve. 請求項4に記載の三方向電磁弁であって、前記付勢部材の他端の環状部が前記一方部材に形成された環状溝に係止されていることを特徴とする三方向電磁弁。5. The three-way solenoid valve according to claim 4, wherein an annular portion at the other end of the biasing member is engaged with an annular groove formed in the one member.
JP18948895A 1994-07-28 1995-07-25 3-way solenoid valve Expired - Fee Related JP3635725B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP18948895A JP3635725B2 (en) 1994-07-28 1995-07-25 3-way solenoid valve

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
JP6-177214 1994-07-28
JP17721494 1994-07-28
JP18948895A JP3635725B2 (en) 1994-07-28 1995-07-25 3-way solenoid valve

Publications (2)

Publication Number Publication Date
JPH0893953A JPH0893953A (en) 1996-04-12
JP3635725B2 true JP3635725B2 (en) 2005-04-06

Family

ID=26497838

Family Applications (1)

Application Number Title Priority Date Filing Date
JP18948895A Expired - Fee Related JP3635725B2 (en) 1994-07-28 1995-07-25 3-way solenoid valve

Country Status (1)

Country Link
JP (1) JP3635725B2 (en)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3930872B2 (en) 2004-06-17 2007-06-13 株式会社カワサキプレシジョンマシナリ Valve device
JP2006118629A (en) * 2004-10-22 2006-05-11 Denso Corp Solenoid valve module
JP2009156312A (en) * 2007-12-26 2009-07-16 Nachi Fujikoshi Corp Solenoid valve
JP5903845B2 (en) * 2011-11-22 2016-04-13 アイシン精機株式会社 solenoid valve
JP6199648B2 (en) * 2013-07-31 2017-09-20 株式会社ケーヒン Solenoid valve
JP6169452B2 (en) * 2013-09-13 2017-07-26 株式会社ケーヒン Pressure fluid control device

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