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KR900004903Y1 - Automatic valve - Google Patents

Automatic valve Download PDF

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Publication number
KR900004903Y1
KR900004903Y1 KR2019880000546U KR880000546U KR900004903Y1 KR 900004903 Y1 KR900004903 Y1 KR 900004903Y1 KR 2019880000546 U KR2019880000546 U KR 2019880000546U KR 880000546 U KR880000546 U KR 880000546U KR 900004903 Y1 KR900004903 Y1 KR 900004903Y1
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KR
South Korea
Prior art keywords
pressure
inlet
chamber
water
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
Application number
KR2019880000546U
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Korean (ko)
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KR890016465U (en
Inventor
김영국
Original Assignee
김영국
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Filing date
Publication date
Application filed by 김영국 filed Critical 김영국
Priority to KR2019880000546U priority Critical patent/KR900004903Y1/en
Publication of KR890016465U publication Critical patent/KR890016465U/en
Application granted granted Critical
Publication of KR900004903Y1 publication Critical patent/KR900004903Y1/en
Expired legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/12Actuating devices; Operating means; Releasing devices actuated by fluid
    • F16K31/36Actuating devices; Operating means; Releasing devices actuated by fluid in which fluid from the circuit is constantly supplied to the fluid motor
    • F16K31/38Actuating devices; Operating means; Releasing devices actuated by fluid in which fluid from the circuit is constantly supplied to the fluid motor in which the fluid works directly on both sides of the fluid motor, one side being connected by means of a restricted passage and the motor being actuated by operating a discharge from that side
    • F16K31/385Actuating devices; Operating means; Releasing devices actuated by fluid in which fluid from the circuit is constantly supplied to the fluid motor in which the fluid works directly on both sides of the fluid motor, one side being connected by means of a restricted passage and the motor being actuated by operating a discharge from that side the fluid acting on a diaphragm
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K24/00Devices, e.g. valves, for venting or aerating enclosures
    • F16K24/04Devices, e.g. valves, for venting or aerating enclosures for venting only

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Self-Closing Valves And Venting Or Aerating Valves (AREA)

Abstract

내용 없음.No content.

Description

자동 개폐밸브Auto shut off valve

제1도는 본 고안의 폐구상태 단면도.1 is a cross-sectional view of the closed state of the present invention.

제2도는 본 고안의 개구상태 단면도.2 is a cross-sectional view of the open state of the present invention.

* 도면의 주요부분에 대한 부호의 설명* Explanation of symbols for main parts of the drawings

1 : 유입구 2 : 밸브본체1: inlet 2: valve body

3 : 다이아프램 4 : 배압실3: diaphragm 4: back pressure chamber

5 : 유입실 6 : 연결관5: inflow chamber 6: connector

7 : 조절나봉 8 : 스프링7: adjusting rod 8: spring

9 : 변체 10 : 연속배출밸브9: Variant 10: Continuous discharge valve

본 고안은 압축공기를 저장하는 압축공기 탱크에 응축되어 가라앉은 물을 자동으로 배수시키는 자동 개폐밸브에 관한 것이다.The present invention relates to an automatic shut-off valve for automatically draining the condensed water in the compressed air tank for storing the compressed air.

일반적으로 공푸렛샤로부터 공급되는 압축공기에는 수분이 포함되어 있으므로 압축공기탱크에 압축공기를 저장시키면 압력과 온도의 저하로 공기 중에 포함된 수분이 응축되어 물로 변해 압축공기 탱크의 저부에 가라앉게 된다.Generally, since compressed air supplied from an air purifier includes moisture, storing compressed air in a compressed air tank causes condensation of moisture contained in the air due to a decrease in pressure and temperature, thereby converting it into water and sinking to the bottom of the compressed air tank.

그러므로 일정량의 물이 탱크 내에 저장되면 이를 밖으로 배수시켜야 되는바 종래에는 물의 저장량을 일일이 확인하거나 아니면 짐작으로 드레인을 수공으로 개구시켜 물을 배수시키는 비능률적인 방법을 사용하여 왔다.Therefore, when a certain amount of water is stored in a tank, it must be drained out. Conventionally, an inefficient method of draining water by manually opening a drain or guessing water has been used.

따라서 일일이 저장량을 확인하고 수공으로 드레인을 개폐해야 하는 불편과 번거러움이 수반될 뿐 아니라 배수시기를 놓치면 저장량의 과다로 물이 압축공기의 배출과 동시에 배출되어 공기를 사용하는 물품 및 사용기구 등을 버리게 되는 폐단이 있었다.Therefore, not only is it inconvenient and hassle to check the storage amount and open and close the drain by hand, but also if the drainage time is missed, the water is discharged at the same time as the discharge of the compressed air due to the excessive amount of storage, and discards the goods and utensils using the air. There was a discontinuance.

본 고안은 이와 같은 점을 감안하여 일정압력의 물이 저장되면 수압에 의거 변체를 자동으로 개구시켜 물을 배출시키고 설정압력 이하로 떨어지면 다시 변체를 차단시키므로서 개폐작동을 자동으로 할 수 있게 한 것인데 이를 첨부도면에 의거 상술하면 다음과 같다.The present invention is to allow the automatic opening and closing operation by automatically opening the deformed body by the water pressure when the water of a certain pressure is stored in order to discharge the water and when the water falls below the set pressure to shut off the deformed body again. When described in detail based on the accompanying drawings as follows.

유입구(1)가 저면에 형성된 밸브본체(2)의 내부에 다이아프램(3)을 설치하여 배압실(4)과 유입실(5)로 각각 구획 형성하되 연결관(6)으로 연통 시키고 다이아프램(3)의 상면에는 탄압력 조절나봉(7)으로 탄압력이 조절되는 스프링(8)을 설치하여 스프링(8)에 의한 하향탄지력으로 다이아프램(3) 저면에 부착시킨 변체(9)가 유입구(1)를 개폐자재되게 하며 배압실(4)에는 미량을 연속적으로 배출하는 공지의 연속 배출밸브(10)를 연결시켜서 되는 것이다.The diaphragm 3 is installed inside the valve body 2 formed at the bottom of the inlet 1 so as to be divided into the back pressure chamber 4 and the inlet chamber 5, respectively, and the diaphragm communicates with the connecting pipe 6. On the upper surface of the (3) is installed a spring (8) for adjusting the pressure pressure by the pressure pressure adjustment rod (7) and the deformable body (9) attached to the bottom surface of the diaphragm (3) by the downward coalescing force by the spring (8) The inlet 1 is opened and closed, and the back pressure chamber 4 is connected to a known continuous discharge valve 10 continuously discharging a small amount.

도면중 미설명부호 11은 압축 공기탱크이다.In the figure, reference numeral 11 denotes a compressed air tank.

이와 같이된 본 고안은 밸브본체(2)를 압축공기탱크(11)의 하부에 연결시켜 사용하는 것으로 압축공기탱크(11)내에 응축수가 저장되면 응축수는 유입구(1)로 유입되어 밸브본체(2)의 유입실(5)로 유입되려하나 유입구(1)가 변체(9)에 의해 차단되어 있으므로 유입실(5)로 유입되지 않고 압축공기탱크(11)내에 저장되어 응축수의 증가에 따라 점차적으로 수압 및 공기압이 증가하게 된다.The present invention as described above is used by connecting the valve body 2 to the lower portion of the compressed air tank 11, when condensed water is stored in the compressed air tank 11, the condensed water is introduced into the inlet (1) and the valve body (2) However, since the inlet 1 is blocked by the deformable body 9, the inlet 1 is blocked by the deformable body 9 and is not stored in the inlet chamber 5 but is stored in the compressed air tank 11 and gradually increases as the condensate increases. Hydraulic and pneumatic pressures increase.

이 상태에서 응축수의 수압이 변체(9)를 탄압하고 있는 스프링(8)의 탄압력보다 높아지면 변체(9)가 수압에 의해 위로 상승되어 제2도와 같이 유입구(1)를 개구시키게 되므로 응축수는 순간적으로 유입실(5)로 유입되고 유입실(5)에 응축수가 충만되면 응축수는 연결관(6)을 통해 상부의 배압실(4)로 송급되는바 배압실(4)의 수압이 유입실(5)과 동일하거나 아니면 유입실(5)보다 높아지면 변체(9)가 원상태인 제1도와 같이 하강되어 유입구(1)를 다시 폐쇄시키게 되고 배압실(4)에 충만된 응축수는 일측에 연결한 공지의 스크류밸브와 같은 연속배출밸브(10)를 통해 미량이 연속적으로 배출되어지는 것이다.In this state, if the water pressure of the condensate is higher than the pressure of the spring 8 holding the deformed body 9, the deformed body 9 is lifted up by the water pressure to open the inlet 1 as shown in FIG. Instantly flows into the inlet chamber 5 and when the inlet chamber 5 is filled with condensate, the condensate is fed to the upper back pressure chamber 4 through the connecting pipe 6 bar pressure of the back pressure chamber 4 is the inlet chamber If it is the same as (5) or higher than the inlet chamber (5), the deformed body (9) is lowered as shown in FIG. 1 as the original state to close the inlet (1) again, and the condensate filled in the back pressure chamber (4) is connected to one side. Trace amount is continuously discharged through the continuous discharge valve 10, such as a known screw valve.

이와 같은 과정은 하나의 싸이클을 설명한 것으로서 압축공기탱크(11)내에 저장된 응축수의 수압이 다시 높아지면 변체(9)의 상승으로 유입구(1)가 개구되어 응축수를 유입실(5)을 유입시키고 이는 다시 배압실(4)의 연속배출밸브(10)를 통해 밖으로 배출되는 작동이 반복해서 이루어지므로 사람이 일일이 작동하지 않아도 자동으로 개폐작업이 이루어져 응축수를 자동을 배출하게 되는 것이다.This process is described as a cycle, when the water pressure of the condensate stored in the compressed air tank 11 is increased again, the inlet (1) is opened by the rise of the deformed body (9) to introduce the condensate into the inlet chamber (5) Since the operation discharged out again through the continuous discharge valve 10 of the back pressure chamber (4) is made repeatedly, even if a person does not operate one by one automatically opens and closes to discharge the condensate automatically.

이와 같이 본 고안은 수압력, 공기압에 의해 자동으로 개폐작업을 연속 반복해서 실시하므로 사람이 일일이 확인해보아야 하는 종래의 불편과 번거러움이 해소되는 효과가 있다.In this way, the present invention has the effect of eliminating the inconvenience and hassle of the conventional that the person must check every day because the automatic opening and closing operation repeatedly by the water pressure, air pressure.

Claims (1)

유입구(1)가 저면에 형성된 밸브본체(2)의 내부에 다이아프램(3)을 설치하여 배압실(4)과 유입실(5)로 각각 구획 형성하되 연결관(6)으로 연통시키고 다이아프램(3)의 상면에는 탄압력 조절나봉(7)으로 탄압력이 조절되는 스프링(8)을 설치하여 스프링(8)에 의한 하향탄지력으로 다이아프램(3) 저면에 부착시킨 변체(9)가 유입구(1)를 개폐자재되게 하며 배압실(4)에는 미량을 연속으로 배출하는 공지의 연속배출밸브(10)를 연결시켜서 되는 자동 개폐밸브.The diaphragm 3 is installed inside the valve body 2 formed at the bottom of the inlet 1 so as to be divided into the back pressure chamber 4 and the inlet chamber 5, respectively, and communicate with the connecting pipe 6. On the upper surface of the (3) is installed a spring (8) for adjusting the pressure pressure by the pressure pressure adjustment rod (7) and the deformable body (9) attached to the bottom surface of the diaphragm (3) by the downward coalescing force by the spring (8) Automatic opening and closing valve to connect the inlet (1) to open and close and to connect the known continuous discharge valve 10 for continuously discharging a small amount to the back pressure chamber (4).
KR2019880000546U 1988-01-22 1988-01-22 Automatic valve Expired KR900004903Y1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR2019880000546U KR900004903Y1 (en) 1988-01-22 1988-01-22 Automatic valve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR2019880000546U KR900004903Y1 (en) 1988-01-22 1988-01-22 Automatic valve

Publications (2)

Publication Number Publication Date
KR890016465U KR890016465U (en) 1989-08-19
KR900004903Y1 true KR900004903Y1 (en) 1990-05-31

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ID=19271700

Family Applications (1)

Application Number Title Priority Date Filing Date
KR2019880000546U Expired KR900004903Y1 (en) 1988-01-22 1988-01-22 Automatic valve

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KR (1) KR900004903Y1 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR980001739A (en) * 1996-06-20 1998-03-30 이정민 Plastic stopper with the ability to remove fermented gases
KR100460575B1 (en) * 1996-06-28 2005-04-06 주식회사 이노팩 Fermentation Gas Release Stopper
KR101454812B1 (en) * 2014-04-07 2014-11-04 김판곤 Drain valve of condensed water

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR980001739A (en) * 1996-06-20 1998-03-30 이정민 Plastic stopper with the ability to remove fermented gases
KR100460575B1 (en) * 1996-06-28 2005-04-06 주식회사 이노팩 Fermentation Gas Release Stopper
KR101454812B1 (en) * 2014-04-07 2014-11-04 김판곤 Drain valve of condensed water

Also Published As

Publication number Publication date
KR890016465U (en) 1989-08-19

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A201 Request for examination
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Patent event code: UA01011R08D

Patent event date: 19880122

UA0201 Request for examination

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Comment text: Request for Examination of Application

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Patent event date: 19900428

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Patent event code: UE07011S01D

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