JP5969736B2 - Thermally responsive steam trap - Google Patents

Thermally responsive steam trap Download PDF

Info

Publication number
JP5969736B2
JP5969736B2 JP2011157342A JP2011157342A JP5969736B2 JP 5969736 B2 JP5969736 B2 JP 5969736B2 JP 2011157342 A JP2011157342 A JP 2011157342A JP 2011157342 A JP2011157342 A JP 2011157342A JP 5969736 B2 JP5969736 B2 JP 5969736B2
Authority
JP
Japan
Prior art keywords
diaphragm
lead
out path
valve
outlet passage
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.)
Active
Application number
JP2011157342A
Other languages
Japanese (ja)
Other versions
JP2013024270A (en
Inventor
智行 藤田
智行 藤田
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 JP2011157342A priority Critical patent/JP5969736B2/en
Publication of JP2013024270A publication Critical patent/JP2013024270A/en
Application granted granted Critical
Publication of JP5969736B2 publication Critical patent/JP5969736B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Temperature-Responsive Valves (AREA)

Description

本発明は、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、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熱応動式スチームトラップに関し、特に多量の復水を排出できる多量用の熱応動式スチームトラップに関する。 The present invention uses a temperature control element including a medium that is heated and cooled by steam and condensate and expands and contracts according to the temperature, and automatically discharges condensate generated in various steam-using devices and steam pipes. The present invention relates to a responsive steam trap, and more particularly to a heat responsive steam trap that can discharge a large amount of condensed water.

従来の熱応動式スチームトラップは、例えば特許文献1に開示されている。これは、弁ケーシングで入口と、入口に連通する弁室と、第1導出路及び第2導出路を介して弁室に連通する出口を形成し、第1ダイヤフラム及び第2ダイヤフラムの間の内部空間に膨脹媒体を封入し、第1ダイヤフラムを開弁方向に付勢する弾性部材を設けた温度制御機素を第1導出路及び第2導出路の間に配置し、膨脹媒体の膨脹収縮による第1ダイヤフラム及び第2ダイヤフラムの変位によって第1導出路及び第2導出路を開閉するようにしたものである。 A conventional thermally responsive steam trap is disclosed in Patent Document 1, for example. This forms an inlet in the valve casing, a valve chamber communicating with the inlet, and an outlet communicating with the valve chamber via the first outlet passage and the second outlet passage, and is provided between the first diaphragm and the second diaphragm. A temperature control element provided with an elastic member for enclosing the expansion medium in the space and urging the first diaphragm in the valve opening direction is disposed between the first lead-out path and the second lead-out path, and is caused by expansion and contraction of the expansion medium. The first lead-out path and the second lead-out path are opened and closed by the displacement of the first diaphragm and the second diaphragm.

特開平8−312891号公報JP-A-8-312891

上記従来の熱応動式スチームトラップは、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て先ず第2ダイヤフラムが第2導出路を閉止し続いて第1ダイヤフラムが第1導出路を閉止し、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て先ず第1ダイヤフラムが第1導出路を開口し続いて第2ダイヤフラムが第2導出路を開口することにより、温度制御機素によって第1導出路及び第2導出路を開閉するので、排出容量を大きくでき、多量の復水を排出できるという優れたものであるが、膨脹媒体が収縮して内部空間の内圧が減少したときに、第1導出路を開口した第1ダイヤフラムのみが更に開弁方向に変位して第2ダイヤフラムが第2導出路を開口できない場合は多量の復水を排出できないという問題点があった。 In the conventional thermoresponsive steam trap, when a high-temperature fluid having a predetermined temperature or more flows into the valve chamber, the expansion medium expands, the second diaphragm first closes the second lead-out path, and the first diaphragm continues to the first diaphragm. When the first lead-out path is closed and a low-temperature fluid having a predetermined temperature or less flows in, the expansion medium contracts, the first diaphragm opens the first lead-out path, and then the second diaphragm opens the second lead-out path. As a result, the first lead-out path and the second lead-out path are opened and closed by the temperature control element, so that the discharge capacity can be increased and a large amount of condensate can be discharged. When the internal pressure of the space decreases, if only the first diaphragm that opens the first lead-out path is further displaced in the valve opening direction and the second diaphragm cannot open the second lead-out path, a large amount of condensate cannot be discharged. problem There was.

したがって本発明が解決しようとする課題は、第1ダイヤフラム及び第2ダイヤフラムが確実に夫々第1導出路及び第2導出路を開口することのできる熱応動式スチームトラップを提供することである。 Therefore, the problem to be solved by the present invention is to provide a thermally responsive steam trap in which the first diaphragm and the second diaphragm can reliably open the first lead-out path and the second lead-out path, respectively.

上記の課題を解決するために、本発明の熱応動式スチームトラップは、弁ケーシングで入口と、入口に連通する弁室と、第1導出路及び第2導出路を介して弁室に連通する出口を形成し、第1ダイヤフラム及び第2ダイヤフラムの間の内部空間に膨脹媒体を封入し、第1ダイヤフラムを開弁方向に付勢する弾性部材を設け、第1導出路を開口した第1ダイヤフラム及び第2導出路を開口した第2ダイヤフラムの開弁方向への所定以上の変位を規制するストッパ部材を第1ダイヤフラム及び第2ダイヤフラムの間の内部空間に設けた温度制御機素を第1導出路及び第2導出路の間に配置し、膨脹媒体の膨脹収縮による第1ダイヤフラム及び第2ダイヤフラムの変位によって第1導出路及び第2導出路を開閉するようにしたものである。 In order to solve the above-mentioned problems, the thermally responsive steam trap of the present invention communicates with the valve chamber via the inlet through the valve casing, the valve chamber communicating with the inlet, the first outlet passage and the second outlet passage. A first diaphragm that forms an outlet, encloses an expansion medium in an internal space between the first diaphragm and the second diaphragm, provides an elastic member that urges the first diaphragm in the valve opening direction, and opens the first outlet passage And a first temperature control element in which a stopper member that restricts a predetermined displacement or more in the valve opening direction of the second diaphragm that opens the second lead-out path is provided in the internal space between the first diaphragm and the second diaphragm. The first lead-out path and the second lead-out path are opened and closed by the displacement of the first diaphragm and the second diaphragm due to the expansion and contraction of the expansion medium.

本発明によれば、第1導出路を開口した第1ダイヤフラム及び第2導出路を開口した第2ダイヤフラムの開弁方向への所定以上の変位を規制するストッパ部材を第1ダイヤフラム及び第2ダイヤフラムの間の内部空間に設けたものであるので、一方の導出路を開口した一方のダイヤフラムのみが更に開弁方向に変位することを防止でき、第1ダイヤフラム及び第2ダイヤフラムが確実に夫々第1導出路及び第2導出路を開口することができるという効果を奏する。 According to the present invention, the first diaphragm and the second diaphragm are stopper members for restricting a predetermined displacement or more in the valve opening direction of the first diaphragm that opens the first lead-out path and the second diaphragm that opens the second lead-out path. Therefore, it is possible to prevent only one of the diaphragms opening one of the outlet passages from being further displaced in the valve opening direction, and the first diaphragm and the second diaphragm are surely each of the first diaphragm and the first diaphragm. There is an effect that the lead-out path and the second lead-out path can be opened.

本発明の実施の形態に係わる熱応動式スチームトラップの断面図である。It is sectional drawing of the thermally responsive steam trap concerning embodiment of this invention.

以下、本発明の実施の形態について、図1を参照して説明する。本体1と端部材2をボルト(図示せず)で結合して、内部に弁室3を有する弁ケーシングが形成される。端部材2には入口4が形成され、本体1には入口4と同軸上の出口5が形成されている。入口4は本体1に形成された流入通路6,7を通して弁室3に連通している。 Hereinafter, an embodiment of the present invention will be described with reference to FIG. The main body 1 and the end member 2 are connected with bolts (not shown) to form a valve casing having a valve chamber 3 therein. An inlet 4 is formed in the end member 2, and an outlet 5 coaxial with the inlet 4 is formed in the main body 1. The inlet 4 communicates with the valve chamber 3 through inflow passages 6 and 7 formed in the main body 1.

弁室3と出口5の間の隔壁部に、第1導出路8を開けた第1弁座部材9と、第2導出路10を開けた第2弁座部材11が同軸上にねじ結合されている。弁室3は第1及び第2の導出路8,10から隔壁部の外側を通して出口5に連通している。 A first valve seat member 9 having a first lead-out path 8 and a second valve seat member 11 having a second lead-out path 10 opened are coaxially screwed to a partition wall between the valve chamber 3 and the outlet 5. ing. The valve chamber 3 communicates with the outlet 5 from the first and second lead-out paths 8 and 10 through the outside of the partition wall.

第1弁座部材9と第2弁座部材11の間に、温度制御機素12が配置され、ばね13で保持されている。温度制御機素12は、第1及び第2のダイヤフラム14,15の間に中央に開口を有するストッパ部材21を介在させて夫々の外周縁を固着し、第1及び第2のダイヤフラム14,15の間に形成した内部空間に膨脹媒体16を封入したものである。ストッパ部材21は第1導出路8を開口した第1ダイヤフラム14及び第2導出路10を開口した第2ダイヤフラム15の開弁方向への所定以上の変位を規制する。膨脹媒体16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。第1及び第2のダイヤフラム14,15には夫々中央に第1及び第2の導出路8,10を開閉する弁部材17,18が固着されている。また第1及び第2のダイヤフラム14,15の外周縁には、中央に弁部材17,18が出入する開口が開けられた壁部材19,20の外周縁が固着されている。そして第1ダイヤフラム14を開弁方向に付勢する弾性部材としてのコイルばね23が第1弁座部材9と第1ダイヤフラム14の間に配置されている。 A temperature control element 12 is disposed between the first valve seat member 9 and the second valve seat member 11 and is held by a spring 13. The temperature control element 12 has a stopper member 21 having an opening in the center between the first and second diaphragms 14 and 15 to fix the outer peripheral edges thereof, and the first and second diaphragms 14 and 15. The expansion medium 16 is sealed in the internal space formed between the two. The stopper member 21 restricts a predetermined displacement or more in the valve opening direction of the first diaphragm 14 opening the first lead-out path 8 and the second diaphragm 15 opening the second lead-out path 10. The expansion medium 16 is formed of water, a liquid having a lower boiling point than water, or a mixture thereof. Valve members 17 and 18 for opening and closing the first and second lead-out paths 8 and 10 are fixed to the first and second diaphragms 14 and 15 at the centers, respectively. The outer peripheral edges of the wall members 19 and 20 having an opening through which the valve members 17 and 18 enter and exit are fixed to the outer peripheral edges of the first and second diaphragms 14 and 15. A coil spring 23 as an elastic member that biases the first diaphragm 14 in the valve opening direction is disposed between the first valve seat member 9 and the first diaphragm 14.

上記の熱応動式スチームトラップの動作は下記の通りである。弁室3内に流入してくる流体の温度が高い場合、第1及び第2のダイヤフラム14,15の間の内部空間に封入した膨脹媒体16が膨脹して内部空間の内圧が増大し、先ず第2ダイヤフラム15が第2弁座部材11側に変位して弁部材18で第2導出路10を閉止し、続いて第1ダイヤフラム14が第1弁座部材9側に変位して弁部材17で第1導出路8を閉止する。 The operation of the heat-responsive steam trap is as follows. When the temperature of the fluid flowing into the valve chamber 3 is high, the expansion medium 16 enclosed in the internal space between the first and second diaphragms 14 and 15 expands to increase the internal pressure of the internal space. The second diaphragm 15 is displaced toward the second valve seat member 11 and the second lead-out path 10 is closed by the valve member 18, and then the first diaphragm 14 is displaced toward the first valve seat member 9 and the valve member 17. Then, the first lead-out path 8 is closed.

弁室3内の温度が放熱等によって低下したり弁室3内に流入してくる流体の温度が低い場合は、膨脹媒体16が収縮して内部空間の内圧が減少し、先ず第1ダイヤフラム14が第1弁座部材9から遠ざかり弁部材17が第1導出路8を開口し、続いて第2ダイヤフラム15が第2弁座部材11から遠ざかり弁部材18が第2導出路10を開口する。 When the temperature in the valve chamber 3 decreases due to heat dissipation or the like, or the temperature of the fluid flowing into the valve chamber 3 is low, the expansion medium 16 contracts and the internal pressure in the internal space decreases. First, the first diaphragm 14 However, the valve member 17 opens away from the first valve seat member 9 and opens the first outlet passage 8, and then the second diaphragm 15 moves away from the second valve seat member 11 and the valve member 18 opens the second outlet passage 10.

本発明は、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、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熱応動式スチームトラップに利用することができる。 The present invention uses a temperature control element including a medium that is heated and cooled by steam and condensate and expands and contracts according to the temperature, and automatically discharges condensate generated in various steam-using devices and steam pipes. Can be used for responsive steam traps.

1 本体
2 端部材
3 弁室
4 入口
5 出口
8 第1導出路
10 第2導出路
12 温度制御機素
14 第1ダイヤフラム
15 第2ダイヤフラム
16 膨脹媒体
21 ストッパ部材
23 コイルばね
DESCRIPTION OF SYMBOLS 1 Main body 2 End member 3 Valve chamber 4 Inlet 5 Outlet 8 1st outlet path 10 2nd outlet path 12 Temperature control element 14 1st diaphragm 15 2nd diaphragm 16 Expansion medium 21 Stopper member 23 Coil spring

Claims (1)

弁ケーシングで入口と、前記入口に連通する弁室と、第1導出路及び第2導出路を介して前記弁室に連通する出口とが形成されており、第1ダイヤフラム及び第2ダイヤフラムの間の内部空間全体に同一の膨脹媒体封入されており、第1ダイヤフラムを開弁方向に付勢する弾性部材設けられており、前記内部空間の前記第1ダイヤフラム側と前記第2ダイヤフラム側とを連通する開口を有するとともに、前記第1導出路を開口した前記第1ダイヤフラム及び前記第2導出路を開口した前記第2ダイヤフラムの夫々の開弁方向への所定以上の変位を規制するストッパ部材を前記第1ダイヤフラム及び前記第2ダイヤフラムの間の前記内部空間に設けた温度制御機素前記第1導出路及び前記第2導出路の間に配置されており、前記膨脹媒体の膨脹収縮による前記第1ダイヤフラム及び前記第2ダイヤフラムの変位によって前記第1導出路及び前記第2導出路を開閉するようにしたことを特徴とする熱応動式スチームトラップ。 An inlet in the valve housing, a valve chamber communicating with the inlet, and an outlet communicating with said valve chamber through the first outlet passage and the second outlet passage are the formation, between the first diaphragm and the second diaphragm The same expansion medium is enclosed in the entire interior space of the first space, and an elastic member that urges the first diaphragm in the valve opening direction is provided , and the first diaphragm side and the second diaphragm side of the inner space are provided. And a stopper member that restricts displacement of the first diaphragm that opens the first lead-out path and the second diaphragm that opens the second lead-out path in a valve opening direction more than a predetermined amount. wherein the temperature controller element provided in the inner space is disposed between the first outlet path and the second outlet passage between said first diaphragm and said second diaphragm, said expansion medium Wherein by deflation first diaphragm and said second diaphragm thermally responsive type steam trap which is characterized in that so as to open and close the first outlet passage and the second outlet passage by the displacement of the.
JP2011157342A 2011-07-19 2011-07-19 Thermally responsive steam trap Active JP5969736B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2011157342A JP5969736B2 (en) 2011-07-19 2011-07-19 Thermally responsive steam trap

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2011157342A JP5969736B2 (en) 2011-07-19 2011-07-19 Thermally responsive steam trap

Publications (2)

Publication Number Publication Date
JP2013024270A JP2013024270A (en) 2013-02-04
JP5969736B2 true JP5969736B2 (en) 2016-08-17

Family

ID=47782872

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2011157342A Active JP5969736B2 (en) 2011-07-19 2011-07-19 Thermally responsive steam trap

Country Status (1)

Country Link
JP (1) JP5969736B2 (en)

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2835674B2 (en) * 1993-01-14 1998-12-14 株式会社テイエルブイ Thermo-responsive steam trap
JP3381115B2 (en) * 1995-03-15 2003-02-24 株式会社テイエルブイ Thermo-responsive steam trap
JP3381120B2 (en) * 1995-05-15 2003-02-24 株式会社テイエルブイ Thermo-responsive steam trap

Also Published As

Publication number Publication date
JP2013024270A (en) 2013-02-04

Similar Documents

Publication Publication Date Title
JP5643570B2 (en) Thermally responsive steam trap
JP5969736B2 (en) Thermally responsive steam trap
JP5643557B2 (en) Thermally responsive steam trap
JP5643558B2 (en) Thermally responsive steam trap
JP5922934B2 (en) Thermally responsive steam trap
JP3381120B2 (en) Thermo-responsive steam trap
JP3381115B2 (en) Thermo-responsive steam trap
JP3341187B2 (en) Thermo-responsive steam trap
JP2008202622A (en) Heat responding steam trap
JP5629527B2 (en) Thermally responsive steam trap
JP4115821B2 (en) Thermally responsive steam trap
JP5254089B2 (en) Thermally responsive steam trap
JP4372485B2 (en) Thermally responsive steam trap
JP5932359B2 (en) Thermally responsive steam trap
JP5806496B2 (en) Thermally responsive steam trap
JP5411592B2 (en) Thermally responsive steam trap
JP4515613B2 (en) Thermally responsive steam trap
JP5791317B2 (en) Thermally responsive steam trap
JP3381121B2 (en) Thermo-responsive steam trap
JP5411621B2 (en) Thermally responsive steam trap
JP5783556B2 (en) Thermally responsive steam trap
JP4294414B2 (en) Thermally responsive steam trap
JPH08247389A (en) Thermal reaction type steam trap
JP2009019732A (en) Heat response type steam trap
JP2879521B2 (en) Thermo-responsive steam trap

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20140605

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20150313

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20150407

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20150604

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20151201

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20151210

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20160705

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20160708

R150 Certificate of patent or registration of utility model

Ref document number: 5969736

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250