JPH0727291A - Heat-response type steam trap - Google Patents

Heat-response type steam trap

Info

Publication number
JPH0727291A
JPH0727291A JP19892393A JP19892393A JPH0727291A JP H0727291 A JPH0727291 A JP H0727291A JP 19892393 A JP19892393 A JP 19892393A JP 19892393 A JP19892393 A JP 19892393A JP H0727291 A JPH0727291 A JP H0727291A
Authority
JP
Japan
Prior art keywords
valve
diaphragm
temperature
valve seat
lower wall
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.)
Granted
Application number
JP19892393A
Other languages
Japanese (ja)
Other versions
JP2884306B2 (en
Inventor
Tadashi Koike
正 小池
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.)
TLV Co Ltd
Original Assignee
TLV Co Ltd
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 TLV Co Ltd filed Critical TLV Co Ltd
Priority to JP19892393A priority Critical patent/JP2884306B2/en
Publication of JPH0727291A publication Critical patent/JPH0727291A/en
Application granted granted Critical
Publication of JP2884306B2 publication Critical patent/JP2884306B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Abstract

PURPOSE:To provide a heat-response type steam trap which can rapidly discharge a large amount of fluid of low temperature in the starting operation. CONSTITUTION:In the system where an outer circumferential edge of a first and second diaphragms 14, 18 are fixed between an upper and lower wall members 11, 19, the expansion medium 15 is enclosed in a storing chamber 13 between the upper wall member 11 and the first diaphragm 14, and a temperature control element 9 connecting a valve member 16 to the second diaphragm 18 is arranged in a valve chamber 3 communicating with an inlet 4, a coil spring 4 to hold the temperature control element 9 at a stepped part 25 of a mounting member 22 is provided, and the lower wall member 19 is formed of the bimetal. When the temperature is low, the lower wall member 19 is deformed against the coil spring 24 so that the valve member 16 may be separated from a valve seat member 7.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、各種蒸気使用機器や蒸
気配管で発生する復水を自動的に排出するスチ―ムトラ
ップに関し、特に、蒸気と復水で加熱冷却されその温度
に応じて膨脹収縮する媒体を含む温度制御機素を用い
て、所望温度以下の復水を系外へ排出する熱応動式スチ
―ムトラップに関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a steam trap that automatically discharges condensate generated in various steam-using devices and steam pipes, and in particular, it is heated and cooled by steam and condensate and expands according to its temperature. The present invention relates to a heat-actuated steam trap that discharges condensed water below a desired temperature to the outside of a system by using a temperature control element containing a contracting medium.

【0002】[0002]

【従来の技術】熱応動式スチ―ムトラップの基本的構成
は、例えば、特公昭60−46318号公報から公知で
ある。当該公報から理解されるように、上下二つの皿状
壁部材の間にダイヤフラムの外周縁を固着して上壁部材
とダイヤフラムとの間の内部空間に膨脹媒体を封入しダ
イヤフラムに弁部材を連結した温度制御機素を、入口の
連通する弁室内に配置し、膨脹媒体の膨脹収縮を利用し
て、ダイヤフラムを介して弁部材を駆動し、これによっ
て、弁室と出口とを連通する導出路を有する弁座部材
に、弁部材を離着座せしめるようにしたものである。
2. Description of the Related Art The basic structure of a heat-actuated steam trap is known, for example, from Japanese Patent Publication No. 60-46318. As understood from the publication, the outer peripheral edge of the diaphragm is fixed between the upper and lower dish-shaped wall members, the expansion medium is enclosed in the internal space between the upper wall member and the diaphragm, and the valve member is connected to the diaphragm. The temperature control element is placed in the valve chamber that communicates with the inlet, and the expansion / contraction of the expansion medium is used to drive the valve member through the diaphragm, and thereby the discharge path that communicates the valve chamber with the outlet. The valve seat member having the above-mentioned structure allows the valve member to be seated on and off.

【0003】弁室内に所定温度以上の高温流体が流入し
てくると、膨脹媒体が膨脹し、ダイヤフラムを閉弁方向
に変位せしめて弁部材を弁座部材に着座せしめ、導出路
を閉止する。これによって、蒸気の排出を防止する。所
定温度以下の低温流体が流入してくると、膨脹媒体が収
縮し、弁室内の流体圧力によってダイヤフラムが開弁方
向に変位せしめられて弁部材が弁座部材から離座し、導
出路を開ける。これによって、復水や空気を系外へ排出
する。
When a high temperature fluid having a temperature higher than a predetermined temperature flows into the valve chamber, the expansion medium expands to displace the diaphragm in the valve closing direction so that the valve member is seated on the valve seat member and the outlet passage is closed. This prevents the discharge of steam. When a low-temperature fluid below a predetermined temperature flows in, the expansion medium contracts, the fluid pressure in the valve chamber causes the diaphragm to be displaced in the valve opening direction, the valve member separates from the valve seat member, and the lead-out path is opened. . As a result, condensed water and air are discharged outside the system.

【0004】[0004]

【発明が解決しようとする課題】しかしながら、このよ
うな様式の熱応動式スチ―ムトラップにあっては、始動
時に多量に溜っている低温流体の排出に時間が掛かる問
題がある。これは、始動時には膨脹媒体が収縮し、弁部
材が弁座部材から離座して導出路を開いているのである
が、弁部材と弁座部材との隙間が狭いために、多量の低
温流体を排出するためには時間が掛かるためである。
However, in the heat-actuated steam trap of this type, there is a problem that it takes time to discharge a large amount of low temperature fluid accumulated at the time of starting. This is because the expansion medium contracts at startup and the valve member separates from the valve seat member to open the lead-out path.However, since the gap between the valve member and the valve seat member is narrow, a large amount of low temperature fluid is present. This is because it takes time to discharge.

【0005】従って本発明の技術的課題は、始動時に弁
部材と弁座部材との隙間を大きくすることによって、多
量の低温流体を素早く排出できる熱応動式スチムトラッ
プを得ることである。
Therefore, a technical object of the present invention is to obtain a thermally actuated steam trap capable of quickly discharging a large amount of low-temperature fluid by increasing the clearance between the valve member and the valve seat member at the time of starting.

【0006】[0006]

【課題を解決する為の手段】上記の技術的課題を解決す
る為に講じた本発明の技術的手段は、弁ケ―シングで入
口と弁室と出口を形成し、導出路を有する弁座部材を弁
室と出口との間に配置し、上下二つの壁部材と、両壁部
材の間に外周縁を固着したダイヤフラムと、上壁部材と
ダイヤフラムとの間に封入した膨脹媒体と、ダイヤフラ
ムに連結した弁部材とから成る温度制御機素を弁室内に
配置し、膨脹媒体の膨脹収縮によるダイヤフラムの変位
によって弁部材を弁座部材に離着座せしめて導出路を開
閉するものにおいて、温度制御機素を弁室内の定位置に
保持する弾性部材を設けると共に、下壁部材を温度応動
部材で形成し、低温時に弁部材を弁座部材から離間せし
めるように下壁部材が弾性部材に抗して変形することを
特徴とするものである。
The technical means of the present invention taken to solve the above technical problems is a valve seat having an outlet, a valve casing forming an inlet, a valve chamber and an outlet. A member disposed between the valve chamber and the outlet, two upper and lower wall members, a diaphragm whose outer peripheral edge is fixed between the two wall members, an expansion medium enclosed between the upper wall member and the diaphragm, and a diaphragm A temperature control element consisting of a valve member connected to the valve is arranged in the valve chamber, and the valve member is seated on and off the valve seat member by the displacement of the diaphragm due to expansion and contraction of the expansion medium to open and close the outlet path. An elastic member for holding the element at a fixed position in the valve chamber is provided, and the lower wall member is formed of a temperature responsive member, and the lower wall member resists the elastic member so as to separate the valve member from the valve seat member at a low temperature. It is characterized by deforming That.

【0007】[0007]

【作用】上記の技術的手段の作用は下記の通りである。
始動時、弁室内は低温であり、膨脹媒体は収縮し、弁部
材が弁座部材から離座して導出路を開けている。このと
き、温度応動部材で形成した下壁部材は弾性部材の付勢
力に抗して弁部材を弁座部材から離間せしめている。こ
れによって、弁部材と弁座部材との間に充分な排出流路
を確保でき、多量の低温流体を素早く排出することがで
きる。低温流体の排出によって流入流体の温度が高くな
ってくると、弾性部材の付勢力によって温度制御機素が
弁室内の定位置に保持され、弁部材と弁座部材との隙間
が通常の隙間にされる。以降は従来と同様に、膨脹媒体
の膨脹収縮によって、ダイヤフラムを介して弁部材を弁
座部材に離着座せしめ、導出路を開閉する。
The operation of the above technical means is as follows.
At start-up, the temperature inside the valve chamber is low, the expansion medium contracts, and the valve member separates from the valve seat member to open the outlet passage. At this time, the lower wall member formed of the temperature responsive member separates the valve member from the valve seat member against the biasing force of the elastic member. As a result, a sufficient discharge flow path can be secured between the valve member and the valve seat member, and a large amount of low temperature fluid can be quickly discharged. When the temperature of the inflowing fluid rises due to the discharge of the low temperature fluid, the biasing force of the elastic member holds the temperature control element in place in the valve chamber, and the gap between the valve member and the valve seat member becomes a normal gap. To be done. After that, similarly to the conventional case, the valve member is seated on and off the valve seat member through the diaphragm by the expansion and contraction of the expansion medium, and the outlet path is opened and closed.

【0008】[0008]

【実施例】上記の技術的手段の具体例を示す実施例を説
明する(図1と図2参照)。図1において、上ケ―シン
グ1と下ケ―シング2とをねじ結合して、内部に弁室3
を有する弁ケ―シングが形成される。上ケ―シング1に
入口4が、下ケ―シング2に出口5が形成される。弁室
3と出口5との間の隔壁6に、弁座部材7がねじ結合さ
れている。弁座部材7の中央に、弁室3と出口5とを連
通する貫通導出路8が形成されている。
EXAMPLE An example showing a concrete example of the above technical means will be described (see FIGS. 1 and 2). In FIG. 1, the upper casing 1 and the lower casing 2 are screwed to each other, and the valve chamber 3 is provided inside.
A valve casing is formed having An inlet 4 is formed in the upper casing 1 and an outlet 5 is formed in the lower casing 2. A valve seat member 7 is screwed to a partition wall 6 between the valve chamber 3 and the outlet 5. At the center of the valve seat member 7, a penetrating passage 8 that connects the valve chamber 3 and the outlet 5 is formed.

【0009】弁座部材7の上方に、温度制御機素9が位
置する。温度制御機素9は、注入口10を有する上壁部
材11と、注入口10を密封する栓部材12と、上壁部
材11との間に収容室13を形成する第1ダイヤフラム
14と、収容室13に密封した膨脹媒体15と、弁座部
材7に離着座して導出路8を開閉する弁部材16と、弁
部材16を環状部材17と共に固着する第2ダイヤフラ
ム18と、第1及び第2ダイヤフラム14,18の外周
縁を上壁部材11との間に挟んで固着する下壁部材19
と、上壁部材11に固着したストッパ―20とから成
る。膨脹媒体15は、水、水より沸点の低い液体、或い
はそれらの混合物で形成される。下壁部材19は温度応
動部材としてのバイメタルで形成され、低温時に図1の
ように変形し、高温時に図2のように変形する。下壁部
材19には複数の開口21が開けられている。
A temperature control element 9 is located above the valve seat member 7. The temperature control element 9 includes an upper wall member 11 having an injection port 10, a plug member 12 that seals the injection port 10, a first diaphragm 14 that forms a storage chamber 13 between the upper wall member 11, and a housing. The expansion medium 15 sealed in the chamber 13, the valve member 16 that is seated on and off the valve seat member 7 to open and close the lead-out path 8, the second diaphragm 18 that fixes the valve member 16 together with the annular member 17, and the first and first (2) Lower wall member 19 that holds the outer peripheral edges of the diaphragms 14 and 18 between the upper wall member 11 and the outer peripheral edges and fixes them
And a stopper 20 fixed to the upper wall member 11. The expansion medium 15 is formed of water, a liquid having a boiling point lower than that of water, or a mixture thereof. The lower wall member 19 is formed of bimetal as a temperature responsive member, and is deformed as shown in FIG. 1 at low temperature and as shown in FIG. 2 at high temperature. The lower wall member 19 has a plurality of openings 21.

【0010】温度制御機素9は、隔壁6と弁座部材7の
間に挟んで固定された有底円筒形状の取付部材22内に
収容され、スクリ―ン23と上壁部材11との間に配置
された弾性部材としての円錐状のコイルスプリング24
によって下方に付勢される。取付部材22の内面に形成
された段部25は、下壁部材19の外周下面が当たって
温度制御機素9を所定位置で保持する作用を成す。取付
部材21の周囲壁には両側に二つの流体通過窓26が開
けられている。
The temperature control element 9 is housed in a bottomed cylindrical mounting member 22 which is fixed by being sandwiched between the partition wall 6 and the valve seat member 7, and between the screen 23 and the upper wall member 11. Conical coil spring 24 as an elastic member arranged in
Is urged downward by. The step portion 25 formed on the inner surface of the mounting member 22 has a function of holding the temperature control element 9 at a predetermined position by hitting the outer peripheral lower surface of the lower wall member 19. Two fluid passage windows 26 are formed on both sides of the peripheral wall of the mounting member 21.

【0011】始動時、弁室3内は低温であり、膨脹媒体
15は収縮し、図1に示すように第2ダイヤフラム18
が弁室3内の流体圧力によって持上げられ、弁部材16
が弁座部材7から離座して導出路8を開けている。また
下壁部材19は大きく湾曲して内周下面が弁座部材7の
上面に当たり、コイルスプリング24に抗して外周下面
が取付部材22の段部25から浮き上がっている。これ
によって弁部材16と弁座部材7との隙間を大きくし、
充分な排出流路を確保して多量の低温流体を素早く排出
する。
At the time of start-up, the temperature inside the valve chamber 3 is low, the expansion medium 15 contracts, and the second diaphragm 18 as shown in FIG.
Is lifted by the fluid pressure in the valve chamber 3, and the valve member 16
Separates from the valve seat member 7 and opens the lead-out path 8. Further, the lower wall member 19 is largely curved so that the lower surface of the inner periphery contacts the upper surface of the valve seat member 7, and the lower surface of the outer periphery is lifted from the step portion 25 of the mounting member 22 against the coil spring 24. This increases the gap between the valve member 16 and the valve seat member 7,
Secure a sufficient discharge channel to quickly discharge a large amount of low temperature fluid.

【0012】低温流体の排出によって弁室3内に流入し
てくる流体の温度が高くなってくると、下壁部材19は
図2に示すように湾曲度合が小さくなり、温度制御機素
9がコイルスプリング24の付勢力によって下方に変位
せしめられ、下壁部材19の外周下面が段部25に当接
した位置で保持される。これによって弁部材16と弁座
部材7との隙間が通常の隙間にされる。そして以降は、
膨脹媒体15の膨脹収縮によって、弁部材16を弁座部
材7に離着座せしめ、導出路8を開閉する。
When the temperature of the fluid flowing into the valve chamber 3 becomes higher due to the discharge of the low temperature fluid, the lower wall member 19 becomes less curved as shown in FIG. It is displaced downward by the biasing force of the coil spring 24, and is held at the position where the outer peripheral lower surface of the lower wall member 19 abuts the step 25. As a result, the gap between the valve member 16 and the valve seat member 7 becomes a normal gap. And after that,
The expansion / contraction of the expansion medium 15 causes the valve member 16 to be seated on / separated from the valve seat member 7, and the outlet passage 8 is opened / closed.

【0013】[0013]

【発明の効果】本発明は下記の特有の効果を生じる。上
記のように本発明による熱応動式スチ―ムトラップは、
始動時の多量の低温流体を素早く排出できるので、蒸気
使用機器の立ち上げ時間を短縮でき、稼動率を上げるこ
とができる。
The present invention produces the following unique effects. As described above, the heat-actuated steam trap according to the present invention is
Since a large amount of low-temperature fluid can be quickly discharged at the time of start-up, it is possible to shorten the startup time of steam-using equipment and increase the operating rate.

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

【図1】本発明の実施例の熱応動式スチ―ムトラップの
低温時の作動状態を示す断面図である。
FIG. 1 is a cross-sectional view showing an operating state of a heat-actuated steam trap according to an embodiment of the present invention at a low temperature.

【図2】図1の状態から下壁部材が変形した状態を示す
断面図である。
FIG. 2 is a cross-sectional view showing a state in which the lower wall member is deformed from the state of FIG.

【符号の説明】[Explanation of symbols]

3 弁室 4 入口 5 出口 7 弁座部材 8 導出路 9 温度制御機素 11 上壁部材 14 第1ダイヤフラム 15 膨脹媒体 16 弁部材 18 第2ダイヤフラム 19 下壁部材 22 取付部材 24 コイルスプリング 25 段部 3 valve chamber 4 inlet 5 outlet 7 valve seat member 8 outlet path 9 temperature control element 11 upper wall member 14 first diaphragm 15 expansion medium 16 valve member 18 second diaphragm 19 lower wall member 22 mounting member 24 coil spring 25 step section

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 弁ケ―シングで入口と弁室と出口を形成
し、導出路を有する弁座部材を弁室と出口との間に配置
し、上下二つの壁部材と、両壁部材の間に外周縁を固着
したダイヤフラムと、上壁部材とダイヤフラムとの間に
封入した膨脹媒体と、ダイヤフラムに連結した弁部材と
から成る温度制御機素を弁室内に配置し、膨脹媒体の膨
脹収縮によるダイヤフラムの変位によって弁部材を弁座
部材に離着座せしめて導出路を開閉するものにおいて、
温度制御機素を弁室内の定位置に保持する弾性部材を設
けると共に、下壁部材を温度応動部材で形成し、低温時
に弁部材を弁座部材から離間せしめるように下壁部材が
弾性部材に抗して変形することを特徴とする熱応動式ス
チ―ムトラップ。
1. A valve casing forms an inlet, a valve chamber, and an outlet, and a valve seat member having a lead-out path is disposed between the valve chamber and the outlet. A temperature control element consisting of a diaphragm having an outer peripheral edge fixed between it, an expansion medium enclosed between the upper wall member and the diaphragm, and a valve member connected to the diaphragm is placed in the valve chamber to expand and contract the expansion medium. In which the valve member is seated on and off the valve seat member by the displacement of the diaphragm due to
An elastic member for holding the temperature control element at a fixed position in the valve chamber is provided, and the lower wall member is formed of a temperature responsive member, and the lower wall member is an elastic member so as to separate the valve member from the valve seat member at a low temperature. A thermo-responsive steam trap that is characterized by deforming against it.
JP19892393A 1993-07-15 1993-07-15 Thermo-responsive steam trap Expired - Fee Related JP2884306B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP19892393A JP2884306B2 (en) 1993-07-15 1993-07-15 Thermo-responsive steam trap

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP19892393A JP2884306B2 (en) 1993-07-15 1993-07-15 Thermo-responsive steam trap

Publications (2)

Publication Number Publication Date
JPH0727291A true JPH0727291A (en) 1995-01-27
JP2884306B2 JP2884306B2 (en) 1999-04-19

Family

ID=16399214

Family Applications (1)

Application Number Title Priority Date Filing Date
JP19892393A Expired - Fee Related JP2884306B2 (en) 1993-07-15 1993-07-15 Thermo-responsive steam trap

Country Status (1)

Country Link
JP (1) JP2884306B2 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011171308A (en) * 2011-04-08 2011-09-01 Toyota Motor Corp Fuel cell system
CN110848556A (en) * 2019-11-28 2020-02-28 邵玉强 Bimetallic strip trap

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011171308A (en) * 2011-04-08 2011-09-01 Toyota Motor Corp Fuel cell system
CN110848556A (en) * 2019-11-28 2020-02-28 邵玉强 Bimetallic strip trap

Also Published As

Publication number Publication date
JP2884306B2 (en) 1999-04-19

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