JPH0835945A - Oxygen concentration detector in oil-system dry cleaner - Google Patents

Oxygen concentration detector in oil-system dry cleaner

Info

Publication number
JPH0835945A
JPH0835945A JP6191251A JP19125194A JPH0835945A JP H0835945 A JPH0835945 A JP H0835945A JP 6191251 A JP6191251 A JP 6191251A JP 19125194 A JP19125194 A JP 19125194A JP H0835945 A JPH0835945 A JP H0835945A
Authority
JP
Japan
Prior art keywords
oxygen concentration
valve
pipe
compressed air
compression air
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
JP6191251A
Other languages
Japanese (ja)
Other versions
JP3416828B2 (en
Inventor
Shigeki Sanpei
重樹 三瓶
Kiyonori Kuroki
清教 黒木
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.)
Tokyo Sensen Kikai Seisakusho Co Ltd
Original Assignee
Tokyo Sensen Kikai Seisakusho 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 Tokyo Sensen Kikai Seisakusho Co Ltd filed Critical Tokyo Sensen Kikai Seisakusho Co Ltd
Priority to JP19125194A priority Critical patent/JP3416828B2/en
Publication of JPH0835945A publication Critical patent/JPH0835945A/en
Application granted granted Critical
Publication of JP3416828B2 publication Critical patent/JP3416828B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

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  • Accessory Of Washing/Drying Machine, Commercial Washing/Drying Machine, Other Washing/Drying Machine (AREA)
  • Investigating Or Analyzing Non-Biological Materials By The Use Of Chemical Means (AREA)

Abstract

PURPOSE:To easily and quickly calibration a densitometer by providing a compression air supply valve at a specific position and supplying compression air to an oxygen densitometer via the valve. CONSTITUTION:A compression air generator 19 is started by turning on an operation switch and a compression air valve 30 and an exhaust valve 18 open. The compression air reaches a branch pipe 33 through a pipe 31, the valve 30, and a pipe 32. The compression air is prevented from flowing to a washing bath 1 by a check valve 5, enters a chamber 2 via a pipe 7 for mounting the oxygen concentration meter, a check valve 8, and a pipe 9, and is unloaded from the chamber 2. Through this process, an oxygen concentration meter 13 contacts the compression air and is exposed to the atmosphere. The compression air is used to quickly expose the meter 13 to air, thus automatically performing calibration by the internal mechanism when the meter 13 results in an error. After a certain amount of time, the valves 30 and 18 are closed by a timer, thus periodically, quickly, and easily calibrating the meter 13.

Description

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

【0001】[0001]

【産業上の利用分野】この発明は、石油系ドライクリー
ナにおける酸素濃度検出装置に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an oxygen concentration detector for a petroleum dry cleaner.

【0002】[0002]

【従来の技術】ドライクリーニングにおいては、石油系
溶剤を使用しているものがある。しかし、石油系溶剤
は、その引火点が約41℃と低いため、引火しやすく、
石油系溶剤を使用した石油系ドライクリーナにおいて
は、被洗物の静電気による火花や、被洗物内の金属製品
と金属製の内胴との圧接による火花によって、溶剤ガス
に引火し、溶剤ガスが爆発するおそれがある。このよう
な爆発事故を防止するために、石油系ドライクリーナに
おいては、真空ポンプ等によって洗浄・乾燥系統を減圧
して酸素を少なくし、かつ、窒素供給装置から洗浄・乾
燥系統に窒素を注入して、洗浄・乾燥系統の酸素濃度
(体積%)を、爆発の危険のない11%以下に設定して
いる。そして、洗浄・乾燥系統の酸素濃度を常時、把握
するために、石油系ドライクリーナに酸素濃度検出装置
を設置し、酸素濃度が爆発の危険のある11%を超える
と、警報を発するとともに、運転を停止するように、そ
の運転を制御している。したがって、酸素濃度の管理
は、極めて重要である。
2. Description of the Related Art In dry cleaning, some petroleum-based solvents are used. However, since petroleum-based solvents have a low flash point of about 41 ° C, they easily ignite,
In petroleum-based dry cleaners that use petroleum-based solvents, the solvent gas is ignited by sparks caused by static electricity on the object to be washed May explode. In order to prevent such an explosion accident, in a petroleum dry cleaner, the cleaning / drying system is decompressed by a vacuum pump to reduce oxygen, and nitrogen is injected from the nitrogen supply device into the cleaning / drying system. Therefore, the oxygen concentration (volume%) of the cleaning / drying system is set to 11% or less, where there is no danger of explosion. And, in order to constantly grasp the oxygen concentration of the cleaning / drying system, an oxygen concentration detector is installed in the petroleum dry cleaner, and when the oxygen concentration exceeds 11%, which is a danger of explosion, an alarm is issued and operation is performed. Its operation is controlled so as to stop. Therefore, the control of oxygen concentration is extremely important.

【0003】酸素濃度検出装置は、図2、3に示すよう
に、洗浄槽1とチャンバ2との間に設けられた、パイプ
3、冷却器4、逆止弁5、圧送管6、酸素濃度計取付パ
イプ7、逆止弁8、パイプ9、エアピストン10、エア
シリンダ11及びブラケット12からなる外部気体通路
と、該外部気体通路の途中、すなわち酸素濃度計取付パ
イプ7に取り付けられた酸素濃度計13とから構成され
ている。
As shown in FIGS. 2 and 3, the oxygen concentration detecting device includes a pipe 3, a cooler 4, a check valve 5, a pressure feeding pipe 6, an oxygen concentration, which is provided between the cleaning tank 1 and the chamber 2. An external gas passage consisting of a meter mounting pipe 7, a check valve 8, a pipe 9, an air piston 10, an air cylinder 11, and a bracket 12, and an oxygen concentration attached to the oxygen concentration meter mounting pipe 7 in the middle of the external gas passage. It is composed of 13 in total.

【0004】エアピストン10をエアシリンダ11によ
り往復させて、洗浄槽1内の気体を、パイプ3により吸
い込み、冷却水入口4A、冷却水出口4Bを備えた冷却
器4によって冷却、除湿し、酸素濃度計取付パイプ7、
パイプ9を介して乾燥系統のチャンバ2内に逆止弁5及
び逆止弁8によって一方向にのみ送り出している。酸素
濃度計13は、酸素濃度計取付パイプ7を通過する気体
に触れて、酸素濃度を検出する。エアピストン10、エ
アシリンダ11によって気体を強制循環させるのは、酸
素濃度が変化する気体を迅速に検出するためであり、冷
却器4によって吸い込んだ気体を冷却、除湿するのは、
酸素濃度計13に結露が生じると、酸素濃度を正確に検
出することができないので、結露の発生を防止するため
である。乾燥系統は、洗浄槽(外胴・内胴)1、チャン
バ2、リントフィルター14、ファン15、クーラー1
6、ヒーター17から構成され、乾燥工程ではヒーター
17を、クールダウン工程ではクーラー16を作動させ
て、乾燥系統の空気を加熱、冷却している。乾燥工程ま
たはクールダウン工程が終了した後は、被洗物を出し入
れする扉(図示せず)を開くと、ファン15が自動的に
作動し、同時にチャンバ2に設けられた排気弁18も開
き、扉より室内空気を吸い込み、排気弁18より大気に
排出して、作業環境への溶剤ガスの流出を防止してい
る。
The air piston 10 is reciprocated by the air cylinder 11, the gas in the cleaning tank 1 is sucked by the pipe 3, and is cooled and dehumidified by the cooler 4 having the cooling water inlet 4A and the cooling water outlet 4B. Concentrator mounting pipe 7,
The check valve 5 and the check valve 8 feed the stuff in only one direction into the chamber 2 of the drying system through the pipe 9. The oximeter 13 touches the gas passing through the oximeter mounting pipe 7 to detect the oxygen concentration. The gas is forcibly circulated by the air piston 10 and the air cylinder 11 in order to quickly detect the gas whose oxygen concentration changes, and the gas sucked by the cooler 4 is cooled and dehumidified.
This is because if the dew condensation occurs in the oxygen concentration meter 13, the oxygen concentration cannot be accurately detected, so that the dew condensation is prevented. The drying system is a washing tank (outer body / inner body) 1, chamber 2, lint filter 14, fan 15, cooler 1.
6, the heater 17 is operated, and the heater 17 is operated in the drying process and the cooler 16 is operated in the cool down process to heat and cool the air in the drying system. After the drying process or the cool down process is completed, when a door (not shown) for loading and unloading the object to be washed is opened, the fan 15 automatically operates, and at the same time, the exhaust valve 18 provided in the chamber 2 is also opened. The indoor air is sucked in through the door and discharged into the atmosphere through the exhaust valve 18 to prevent the solvent gas from flowing out into the working environment.

【0005】なお、図2において、19は圧縮空気発生
装置、20は窒素発生装置、21は窒素タンク、22は
窒素投入弁である。
In FIG. 2, 19 is a compressed air generator, 20 is a nitrogen generator, 21 is a nitrogen tank, and 22 is a nitrogen injection valve.

【0006】[0006]

【発明が解決しようとする課題】この従来技術において
は、酸素濃度計13は、酸素濃度計取付パイプ7に取り
付けられ、減圧、窒素の注入の工程が繰り返される雰囲
気に接している。このため、酸素濃度の管理の重要性か
らして酸素濃度計13を定期的に点検し、較正するとき
には、酸素濃度計取付パイプ7から取り外して、酸素濃
度計13を大気に晒す必要がある。したがって、酸素濃
度計13の較正は、容易ではなく、時間がかかるという
課題がある。なお、酸素濃度計13は、大気に晒される
ことによって、酸素濃度(体積%)20.9%の大気に
接していることになり、その誤差がある場合、その内部
機構によって自動的に較正される。
In this prior art, the oximeter 13 is attached to the oximeter attachment pipe 7 and is in contact with the atmosphere in which the steps of depressurization and nitrogen injection are repeated. Therefore, when the oxygen concentration meter 13 is regularly inspected and calibrated due to the importance of managing the oxygen concentration, it is necessary to remove it from the oxygen concentration meter attachment pipe 7 and expose the oxygen concentration meter 13 to the atmosphere. Therefore, calibration of the oximeter 13 is not easy and takes time. Note that the oximeter 13 is in contact with the atmosphere having an oxygen concentration (volume%) of 20.9% by being exposed to the atmosphere, and if there is an error, it is automatically calibrated by its internal mechanism. It

【0007】この発明は、このような従来技術の課題を
解決する目的でなされたものである。
The present invention has been made for the purpose of solving the problems of the prior art.

【0008】[0008]

【課題を解決するための手段】上記課題を解決するため
の手段を、実施例に対応する図1を用いて以下、説明す
る。この発明は、圧縮空気給気弁30を酸素濃度計13
の前の外部気体通路に分岐して設け、圧縮空気を圧縮空
気給気弁30を介して酸素濃度計13に供給し、排気弁
18を介してチャンバ2外に排出したものである。
Means for solving the above problems will be described below with reference to FIG. 1 corresponding to the embodiment. According to the present invention, the compressed air supply valve 30 is installed in the oxygen concentration meter 13
The compressed air is supplied to the oxygen concentration meter 13 via the compressed air supply valve 30 and discharged to the outside of the chamber 2 via the exhaust valve 18.

【0009】[0009]

【作用】このように構成されたものにおいては、圧縮空
気給気弁30及び排気弁18を開くことによって、酸素
濃度計13は短時間で大気に晒される。
With the above arrangement, the oxygen concentration meter 13 is exposed to the atmosphere in a short time by opening the compressed air supply valve 30 and the exhaust valve 18.

【0010】[0010]

【実施例】図1は、この発明の一実施例を示す図であ
る。図1において、30は圧縮空気給気弁である。圧縮
空気給気弁30の一端は、パイプ31を介して圧縮空気
発生装置19に接続されている。圧縮空気給気弁30の
他端は、パイプ32を介して外部気体通路を構成する圧
送管6と酸素濃度計取付パイプ7の間に設けられた分岐
管33に接続されている。これにより、圧縮空気給気弁
30は、酸素濃度計13の前の外部気体通路に分岐して
設けられている。
1 is a diagram showing an embodiment of the present invention. In FIG. 1, 30 is a compressed air supply valve. One end of the compressed air supply valve 30 is connected to the compressed air generator 19 via a pipe 31. The other end of the compressed air supply valve 30 is connected via a pipe 32 to a branch pipe 33 provided between the pressure feed pipe 6 and the oximeter mounting pipe 7 that form an external gas passage. Thereby, the compressed air supply valve 30 is provided so as to branch to the external gas passage in front of the oximeter 13.

【0011】圧縮空気給気弁30及び排気弁18は、自
動弁で構成され、その制御回路は、操作スイッチの操作
によって圧縮空気給気弁30及び排気弁18は同時に開
き、一定時限後、同時に閉じるように構成されている。
操作スイッチは、較正専用でも良いし、または、石油系
ドライクリーナ始動用でもよい。前者の場合は、操作ス
イッチの「入」操作によって圧縮空気発生装置19を始
動させる必要があるが、後者の場合は、通常、圧縮空気
発生装置19は始動する。
The compressed air supply valve 30 and the exhaust valve 18 are constituted by automatic valves, and the control circuit thereof is such that the compressed air supply valve 30 and the exhaust valve 18 are opened at the same time by the operation of the operation switch, and after a certain period of time, simultaneously. It is configured to close.
The operating switch may be dedicated to calibration or may be for starting a petroleum-based dry cleaner. In the former case, it is necessary to start the compressed air generating device 19 by the "ON" operation of the operation switch, but in the latter case, the compressed air generating device 19 is usually started.

【0012】操作スイッチの「入」操作によって、圧縮
空気発生装置19は始動するとともに、圧縮空気給気弁
30及び排気弁18は開く。圧縮空気は、パイプ31、
圧縮空気給気弁30、パイプ32を通って分岐管33に
至る。そして、圧縮空気は、洗浄槽1への流入は逆止弁
5によって阻止され、酸素濃度計取付パイプ7、逆止弁
8、パイプ9を通ってチャンバ2内に入り、排気弁18
から、チャンバ2外に排出される。この過程を通じて、
酸素濃度計13は、圧縮空気に接し、大気に晒されるこ
とになる。圧縮空気を利用するのは、短時間で大気に晒
さすためである。
The compressed air generator 19 is started and the compressed air supply valve 30 and the exhaust valve 18 are opened by the "ON" operation of the operation switch. Compressed air is pipe 31,
The compressed air supply valve 30 and the pipe 32 reach the branch pipe 33. Then, the compressed air is blocked from flowing into the cleaning tank 1 by the check valve 5, passes through the oxygen concentration meter mounting pipe 7, the check valve 8 and the pipe 9 into the chamber 2, and the exhaust valve 18
Is discharged from the chamber 2. Through this process,
The oxygen concentration meter 13 comes into contact with compressed air and is exposed to the atmosphere. The compressed air is used because it is exposed to the atmosphere in a short time.

【0013】酸素濃度計13は、大気に晒されることに
よって、誤差がある場合、その内部機構によって自動的
に較正される。一定時限後、図示しないタイマーの動作
によって圧縮空気給気弁30及び排気弁18は閉じる。
操作スイッチが石油系ドライクリーナ始動用である場合
は、その始動に当たって、常に酸素濃度計13は自動的
に較正され、その後に次の工程に入るので、機器に対す
る信頼性も増大する。
The oximeter 13 is automatically calibrated by its internal mechanism if there is an error due to exposure to the atmosphere. After a certain period of time, the compressed air supply valve 30 and the exhaust valve 18 are closed by the operation of a timer (not shown).
When the operation switch is for starting a petroleum-based dry cleaner, the oximeter 13 is always calibrated automatically at the time of starting, and the next step is performed thereafter, so that the reliability of the equipment is also increased.

【0014】このように、圧縮空気給気弁30及び排気
弁18を開くことによって、酸素濃度計13は短時間で
大気に晒される。したがって、酸素濃度計13の定期的
較正は、極めて容易である。
As described above, by opening the compressed air supply valve 30 and the exhaust valve 18, the oximeter 13 is exposed to the atmosphere in a short time. Therefore, periodic calibration of the oximeter 13 is extremely easy.

【0015】[0015]

【発明の効果】以上説明してきたように、この発明は、
圧縮空気給気弁を酸素濃度計の前の外部気体通路に分岐
して設け、圧縮空気を前記圧縮空気給気弁を介して前記
酸素濃度計に供給し、排気弁を介して前記チャンバ外に
排出したものである。それゆえ、圧縮空気給気弁及び排
気弁を開くことによって、短時間で酸素濃度計は大気に
晒される。したがって、この発明によれば、酸素濃度計
の較正を簡単かつ短時間で行うことができるという効果
が得られる。
As described above, the present invention is
A compressed air supply valve is provided by branching to an external gas passage in front of the oxygen concentration meter, compressed air is supplied to the oxygen concentration meter via the compressed air supply valve, and then out of the chamber via an exhaust valve. It has been discharged. Therefore, by opening the compressed air supply valve and the exhaust valve, the oximeter is exposed to the atmosphere in a short time. Therefore, according to the present invention, it is possible to calibrate the oximeter easily and in a short time.

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

【図1】この発明の一実施例を示す系統図である。FIG. 1 is a system diagram showing an embodiment of the present invention.

【図2】従来技術を示す系統図である。FIG. 2 is a system diagram showing a conventional technique.

【図3】従来技術を示す詳細構成図である。FIG. 3 is a detailed configuration diagram showing a conventional technique.

【符号の説明】[Explanation of symbols]

13 酸素濃度計 18 排気弁 30 圧縮空気給気弁 13 Oxygen concentration meter 18 Exhaust valve 30 Compressed air supply valve

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 洗浄槽と乾燥系統のチャンバとの間に外
部気体通路を設け、該外部気体通路の途中に酸素濃度計
を取り付け、該酸素濃度計によって洗浄・乾燥系統内の
酸素の濃度を検出する石油系ドライクリーナにおける酸
素濃度検出装置において、圧縮空気給気弁を酸素濃度計
の前の外部気体通路に分岐して設け、圧縮空気を前記圧
縮空気給気弁を介して前記酸素濃度計に供給し、排気弁
を介して前記チャンバ外に排出したことを特徴とする石
油系ドライクリーナにおける酸素濃度検出装置
1. An external gas passage is provided between a cleaning tank and a chamber of a drying system, an oxygen concentration meter is attached in the middle of the external gas passage, and the oxygen concentration in the cleaning / drying system is measured by the oxygen concentration meter. In an oxygen concentration detection device for a petroleum dry cleaner for detection, a compressed air supply valve is provided by branching to an external gas passage in front of the oxygen concentration meter, and compressed air is supplied through the compressed air supply valve to the oxygen concentration meter. Of the oxygen concentration in a petroleum dry cleaner, characterized in that the oxygen concentration is supplied to the chamber and discharged to the outside of the chamber through an exhaust valve.
【請求項2】 圧縮空気給気弁及び排気弁を自動弁で構
成し、操作スイッチの操作によって前記両弁が同時に開
き、一定時限後、同時に閉じる請求項1の石油系ドライ
クリーナにおける酸素濃度検出装置
2. The oxygen concentration detection in a petroleum-based dry cleaner according to claim 1, wherein the compressed air supply valve and the exhaust valve are automatic valves, both of which are opened simultaneously by operating an operation switch, and are closed at the same time after a certain period of time. apparatus
JP19125194A 1994-07-22 1994-07-22 Oxygen concentration detector for petroleum dry cleaner Expired - Fee Related JP3416828B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP19125194A JP3416828B2 (en) 1994-07-22 1994-07-22 Oxygen concentration detector for petroleum dry cleaner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP19125194A JP3416828B2 (en) 1994-07-22 1994-07-22 Oxygen concentration detector for petroleum dry cleaner

Publications (2)

Publication Number Publication Date
JPH0835945A true JPH0835945A (en) 1996-02-06
JP3416828B2 JP3416828B2 (en) 2003-06-16

Family

ID=16271428

Family Applications (1)

Application Number Title Priority Date Filing Date
JP19125194A Expired - Fee Related JP3416828B2 (en) 1994-07-22 1994-07-22 Oxygen concentration detector for petroleum dry cleaner

Country Status (1)

Country Link
JP (1) JP3416828B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11225746B2 (en) 2018-08-27 2022-01-18 Ecolab Usa Inc. System and technique for extracting particulate-containing liquid samples without filtration

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11225746B2 (en) 2018-08-27 2022-01-18 Ecolab Usa Inc. System and technique for extracting particulate-containing liquid samples without filtration
US11739460B2 (en) 2018-08-27 2023-08-29 Ecolab Usa Inc. System and technique for extracting particulate-containing liquid samples without filtration

Also Published As

Publication number Publication date
JP3416828B2 (en) 2003-06-16

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