JP5389419B2 - Vacuum pump device - Google Patents

Vacuum pump device Download PDF

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JP5389419B2
JP5389419B2 JP2008292230A JP2008292230A JP5389419B2 JP 5389419 B2 JP5389419 B2 JP 5389419B2 JP 2008292230 A JP2008292230 A JP 2008292230A JP 2008292230 A JP2008292230 A JP 2008292230A JP 5389419 B2 JP5389419 B2 JP 5389419B2
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air
compressed air
tank
ejector
suction
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JP2010116900A (en
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雄一 藤川
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Tlv Co Ltd
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Tlv Co Ltd
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本発明は、大気圧以下の真空状態の流体を吸引することができる真空ポンプ装置に関する。  The present invention relates to a vacuum pump device capable of sucking a fluid in a vacuum state below atmospheric pressure.

真空ポンプ装置は、エゼクタとタンクと循環ポンプを組み合わせて、タンク内の水を循環ポンプを駆動してエゼクタに供給することによって、エゼクタの吸込室で吸引力を発生して、真空状態の流体を吸引することができるものである。  The vacuum pump device combines an ejector, a tank, and a circulation pump, and drives the circulation pump to supply the water in the tank to the ejector, thereby generating a suction force in the suction chamber of the ejector and generating a vacuum fluid. It can be sucked.

この真空ポンプ装置においては、循環ポンプを駆動するために電動モータを使用しなければならず、電動モータを使用することのできない箇所、例えは、化学プラントにおける防爆地域、ではこの真空ポンプ装置を設置できない問題があった。
特開2008−196434
In this vacuum pump device, an electric motor must be used to drive the circulation pump, and this vacuum pump device is installed in places where an electric motor cannot be used, for example, in an explosion-proof area of a chemical plant. There was a problem that could not be done.
JP2008-196434

解決しようとする課題は、電気モータを使用することなく、従って、防爆地域でも設置することのできる真空ポンプ装置を提供することである。   The problem to be solved is to provide a vacuum pump device which can be installed in an explosion-proof area without using an electric motor.

本発明は、大気圧以下の真空状態の流体を吸引することができるものにおいて、圧縮空気を溜め置く圧縮空気タンクを配置して、当該圧縮空気タンクに圧縮空気供給管を接続すると共に、圧縮空気タンクの出口側に圧縮空気を駆動流体とする空気エゼクタを接続して、当該空気エゼクタの吸込室を吸引流体源と連通したものである。   The present invention is capable of sucking a fluid in a vacuum state at atmospheric pressure or lower. In the present invention, a compressed air tank for storing compressed air is disposed, and a compressed air supply pipe is connected to the compressed air tank. An air ejector using compressed air as a driving fluid is connected to the outlet side of the tank, and the suction chamber of the air ejector is communicated with a suction fluid source.

本発明の真空ポンプ装置は、圧縮空気タンクの出口側に空気エゼクタを接続したことにより、圧縮空気タンクから空気エゼクタに供給される高圧の圧縮空気によって空気エゼクタの吸込室に吸引力を発生することができ、従って、電動モータを用いる必要がない。   The vacuum pump device of the present invention generates suction force in the suction chamber of the air ejector by high-pressure compressed air supplied from the compressed air tank to the air ejector by connecting the air ejector to the outlet side of the compressed air tank. Therefore, it is not necessary to use an electric motor.

空気エゼクタとしては従来から使用されているものを用いることができ、ノズルと、吸引口を設けた吸込室、及び、ディフューザ部とで構成されるエゼクタを用いることができる。   A conventionally used air ejector can be used, and an ejector including a nozzle, a suction chamber provided with a suction port, and a diffuser portion can be used.

図1において、圧縮空気タンク1と、この圧縮空気タンク1に接続した圧縮空気供給管3と、2台の空気エゼクタ2,4、及び、吸引流体源と連通した吸引流体管5とで真空ポンプ装置を構成する。   In FIG. 1, a vacuum pump includes a compressed air tank 1, a compressed air supply pipe 3 connected to the compressed air tank 1, two air ejectors 2 and 4, and a suction fluid pipe 5 communicating with a suction fluid source. Configure the device.

圧縮空気供給管3には、圧縮空気タンク1へ供給する圧縮空気量を制御するための制御弁6を取り付ける。圧縮空気タンク1から空気エゼクタ2,4へと連通する管路7にも、制御弁8を取り付ける。   A control valve 6 for controlling the amount of compressed air supplied to the compressed air tank 1 is attached to the compressed air supply pipe 3. A control valve 8 is also attached to a pipe line 7 communicating from the compressed air tank 1 to the air ejectors 2 and 4.

空気エゼクタ2,4は、それぞれ、ノズル部を内蔵した吸込室17,18と、ディフューザ19,20とで構成する。吸込室17,18の側方には、吸込室17,18で吸引する流体の流入する吸引流体管5を連通する。   Each of the air ejectors 2 and 4 includes suction chambers 17 and 18 having a nozzle portion and diffusers 19 and 20. The suction fluid pipe 5 into which the fluid sucked in the suction chambers 17 and 18 flows is communicated with the sides of the suction chambers 17 and 18.

空気エゼクタ2と4の間には三方切換弁26を介在する。空気エゼクタ2の出口側は、三方切換弁26と、分岐した二方切換弁27とにそれぞれ連通する。 A three-way switching valve 26 is interposed between the air ejectors 2 and 4. The outlet side of the air ejector 2 communicates with the three-way switching valve 26 and the branched two-way switching valve 27.

空気エゼクタ2,4は、圧縮空気タンク1から供給される高圧空気によって吸込室17,18で所定の吸引力を発生するものであり、吸引流体管5からの流体を吸引することができるものである。 The air ejectors 2 and 4 generate a predetermined suction force in the suction chambers 17 and 18 by the high-pressure air supplied from the compressed air tank 1 and can suck the fluid from the suction fluid pipe 5. is there.

空気エゼクタ2,4の出口側は、逆止弁28と出口管11によって、それぞれ圧縮空気タンク1の下部に一体に形成した排気タンク9と連通する。排気タンク9の側面には、流入してきた圧縮空気を外部へ排除する圧縮空気排除管10を接続すると共に、排気タンク9の下面には、流入してきた液体だけを外部へ排除する液体排除管12を接続する。液体排除管12には、液体だけを自動的に外部へ排出し、圧縮空気は排出することのないエアートラップ13を取り付ける。  The outlet sides of the air ejectors 2 and 4 communicate with the exhaust tank 9 integrally formed at the lower part of the compressed air tank 1 by the check valve 28 and the outlet pipe 11. Connected to the side of the exhaust tank 9 is a compressed air evacuation pipe 10 that excludes inflowing compressed air to the outside, and a liquid evacuation pipe 12 that excludes only the inflowing liquid to the outside on the lower surface of the exhaust tank 9 Connect. An air trap 13 that automatically discharges only the liquid and does not discharge compressed air is attached to the liquid exclusion pipe 12.

圧縮空気タンク1の圧縮空気は、空気エゼクタ2,4の吸込室17,18に内蔵されたノズル部へ供給され、このノズル部で駆動空気は絞られて高速流となることによって、吸引力を発生して吸引流体管5から流体を吸引する。吸引された流体は駆動空気と混合されてディフューザ19,20を通って出口管11から排気タンク9へ供給される。   The compressed air in the compressed air tank 1 is supplied to the nozzle portions built in the suction chambers 17 and 18 of the air ejectors 2 and 4, and the driving air is squeezed by the nozzle portions to become a high-speed flow, thereby reducing the suction force. The generated fluid is sucked from the suction fluid pipe 5. The sucked fluid is mixed with the driving air and supplied to the exhaust tank 9 from the outlet pipe 11 through the diffusers 19 and 20.

空気エゼクタ2,4の吸引流体管5から吸入する流体量が多い場合は、二方切換弁27を開弁すると共に、三方切換弁26を操作して、吸引流体管5と吸込室18を連通することによって、2つの空気エゼクタ2,4の接続位置が並列状態となり、双方の空気エゼクタ2,4で吸引流体管5を介して多量の流体を吸入することができる。   When the amount of fluid sucked from the suction fluid pipes 5 of the air ejectors 2 and 4 is large, the two-way switching valve 27 is opened and the three-way switching valve 26 is operated to connect the suction fluid pipe 5 and the suction chamber 18. By doing so, the connection positions of the two air ejectors 2 and 4 are in a parallel state, and a large amount of fluid can be sucked through the suction fluid pipe 5 by both the air ejectors 2 and 4.

吸引流体管5から吸入する流体量が少ない場合は、二方切換弁27を閉弁すると共に、三方切換弁26を操作して、空気エゼクタ2の出口側と空気エゼクタ4の吸込室18を連通することによって、2つの空気エゼクタ2,4の接続位置が直列状態となり、吸引流体管5から空気エゼクタ2の吸込室17へ吸入された流体が、三方切換弁26を通って他方の空気エゼクタ4の吸込室18へ吸入され、出口管11から排気タンク9へ排出される。 When the amount of fluid sucked from the suction fluid pipe 5 is small, the two-way switching valve 27 is closed and the three-way switching valve 26 is operated to connect the outlet side of the air ejector 2 and the suction chamber 18 of the air ejector 4. By doing so, the connection positions of the two air ejectors 2 and 4 are in series, and the fluid sucked from the suction fluid pipe 5 into the suction chamber 17 of the air ejector 2 passes through the three-way switching valve 26 and the other air ejector 4. Are sucked into the suction chamber 18 and discharged from the outlet pipe 11 to the exhaust tank 9.

圧縮空気タンク1から空気エゼクタ2,4へ供給される圧縮空気によって真空を発生させることで、電動モータ等の電気駆動源を不要とすることができる。   By generating a vacuum with compressed air supplied from the compressed air tank 1 to the air ejectors 2 and 4, an electric drive source such as an electric motor can be eliminated.

本発明の真空ポンプ装置の実施例を示す構成図。The block diagram which shows the Example of the vacuum pump apparatus of this invention.

符号の説明Explanation of symbols

1 圧縮空気タンク
2 空気エゼクタ
3 圧縮空気供給管
4 空気エゼクタ
5 吸引流体管
9 排気タンク
10 圧縮空気排除管
11 出口管
12 液体排除管
13 エアートラップ
17,18 吸込室
19,20 ディフューザ
26 三方切換弁
27 二方切換弁
DESCRIPTION OF SYMBOLS 1 Compressed air tank 2 Air ejector 3 Compressed air supply pipe 4 Air ejector 5 Suction fluid pipe 9 Exhaust tank 10 Compressed air exclusion pipe 11 Outlet pipe 12 Liquid exclusion pipe 13 Air traps 17, 18 Suction chambers 19, 20 Diffuser 26 Three-way switching valve 27 Two-way selector valve

Claims (1)

縮空気を溜め置く圧縮空気タンクを配置して、
前記圧縮空気タンクに圧縮空気供給管を接続すると共に、
前記圧縮空気タンクの出口側に圧縮空気を駆動流体とする空気エゼクタを接続して、
前記空気エゼクタの吸込室を吸引流体源と連通し
前記空気エゼクタの出口側を排気タンクと連通し、
前記空気エゼクタを2台配置して、
第1空気エゼクタの出口側と前記排気タンクとを連通するか否かを切り換える第1切換弁を配置し、
前記第1空気エゼクタの出口側と第2空気エゼクタの吸込室とを連通するか、又は、前記吸引流体源と前記第2空気エゼクタの吸込室とを連通するかを切り換える第2切換弁を配置し、
前記排気タンクの側面に、流入してきた圧縮空気を外部へ排除する圧縮空気排除管を接続し、
前記排気タンクの下部に、流入してきた液体を自動的に外部へ排出し、前記圧縮空気を排出しないエアートラップを取り付けたこと
を特徴とする真空ポンプ装置。
Place the compressed air tank to put pooled compressed air,
A compressed air supply pipe connected to the compressed air tank;
The compressed air to the outlet side of the compressed air tank connected to the air ejector to drive fluid,
It communicates with the aspiration fluid source inlet chamber of the air ejector,
The outlet side of the air ejector communicates with an exhaust tank,
Two air ejectors are arranged,
A first switching valve for switching whether or not the outlet side of the first air ejector communicates with the exhaust tank;
A second switching valve is provided for switching between communication between the outlet side of the first air ejector and the suction chamber of the second air ejector or communication between the suction fluid source and the suction chamber of the second air ejector. And
Connected to the side surface of the exhaust tank is a compressed air exhaust pipe that excludes the compressed air that has flowed into the outside.
A vacuum pump device , wherein an air trap that automatically discharges the flowing liquid to the outside and does not discharge the compressed air is attached to a lower portion of the exhaust tank .
JP2008292230A 2008-11-14 2008-11-14 Vacuum pump device Expired - Fee Related JP5389419B2 (en)

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JP2008292230A JP5389419B2 (en) 2008-11-14 2008-11-14 Vacuum pump device

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Application Number Priority Date Filing Date Title
JP2008292230A JP5389419B2 (en) 2008-11-14 2008-11-14 Vacuum pump device

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JP2010116900A JP2010116900A (en) 2010-05-27
JP5389419B2 true JP5389419B2 (en) 2014-01-15

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106255828A (en) * 2014-05-01 2016-12-21 阿特利耶博世股份有限公司 Pumping method in pumping system and vacuum pump system

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0693999A (en) * 1992-09-09 1994-04-05 Tokyo Seimitsu Co Ltd Negative pressure applying method and negative pressure applying device
JP2002257099A (en) * 2001-02-27 2002-09-11 Honda Motor Co Ltd Vacuum producing device
JP2008196434A (en) * 2007-02-15 2008-08-28 Tlv Co Ltd Vacuum pump device

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