CN204284916U - A kind of pressurized container charges uses equipment - Google Patents
A kind of pressurized container charges uses equipment Download PDFInfo
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- CN204284916U CN204284916U CN201420587753.2U CN201420587753U CN204284916U CN 204284916 U CN204284916 U CN 204284916U CN 201420587753 U CN201420587753 U CN 201420587753U CN 204284916 U CN204284916 U CN 204284916U
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- booster pump
- pneumatic booster
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Abstract
The utility model relates to a kind of pressurized container and charges with equipment, treat in gas filling bottle for liquid in source of the gas gas cylinder is charged, equipment comprises Pneumatic booster pump, this Pneumatic booster pump steam inlet connects admission line, admission line is used for being connected with source of the gas gas cylinder, admission line arranges air inlet shut-off valve and boost gauge, Pneumatic booster pump air outlet connects outlet pipe, outlet pipe is used for connection and treats gas filling bottle, outlet pipe arranges outlet shut-off valve and delivery gauge, Pneumatic booster pump also connects compressed air line, compressed air line is for connecting pressurized air, compressed air line is provided with compressed air pressure regulating valve and compressed-air manometer.Compared with prior art, the utility model has that the speed of charging is easy to control, noise is little, be easy to advantages such as safeguarding, safe and reliable.
Description
Technical field
The utility model relates to a kind of apparatus for filling, especially relates to a kind of pressurized container and charges and use equipment.
Background technique
At present, numerous gas-filled pumps of market are all use motor to drive, and this makes easily to occur the bad control of the speed that charges in the course of the work, easily causes the bottle temperature by charging too high; In the course of the work, noise is large for motor, and will often carry out adding wet goods maintenance.
Meanwhile, in aeration process, can not control aeration speed and pressure monitor, cause occurring that aeration does not meet the demands pressure, or exceed the situations such as setting pressure, safety reliability is poor.
Model utility content
The purpose of this utility model be exactly provide a kind of in order to overcome defect that above-mentioned prior art exists and charge that speed is easy to control, noise is little, be easy to safeguard, safe and reliable pressurized container charges and uses equipment.
The purpose of this utility model can be achieved through the following technical solutions:
A kind of pressurized container charges with equipment, treat in gas filling bottle for liquid in source of the gas gas cylinder is charged, described equipment comprises Pneumatic booster pump, this Pneumatic booster pump steam inlet connects admission line, admission line is used for being connected with source of the gas gas cylinder, admission line arranges air inlet shut-off valve and boost gauge, Pneumatic booster pump air outlet connects outlet pipe, outlet pipe is used for connection and treats gas filling bottle, outlet pipe arranges outlet shut-off valve and delivery gauge, Pneumatic booster pump also connects compressed air line, compressed air line is for connecting pressurized air, compressed air line is provided with compressed air pressure regulating valve and compressed-air manometer.
Described outlet pipe is also provided with exhaust branch pipe, exhaust branch pipe is provided with floss hole shut-off valve.
Described exhaust branch pipe is arranged on the rear of outlet shut-off valve and delivery gauge.
Described air inlet shut-off valve, boost gauge, outlet shut-off valve, delivery gauge, compressed air pressure regulating valve and compressed-air manometer are all integrated on same control panel.
Described boost gauge is arranged between air inlet shut-off valve and Pneumatic booster pump.
Described delivery gauge is arranged between outlet shut-off valve and Pneumatic booster pump.
Described compressed-air manometer is arranged between compressed air pressure regulating valve and Pneumatic booster pump.
Pressurized container of the present utility model charges and is made up of critical pieces such as Pneumatic booster pump, three pieces of pressure gauges, pressure regulator valve, shut-off valves with equipment, low-pressure gas can be pressurized to required pressure by Pneumatic booster pump.Three pieces of pressure gage measuring range scopes are respectively: boost gauge (0-3500psig), fill delivery gauge (0-6000psig), compressed-air manometer (0-1.6Mpa).Core component is Pneumatic booster pump, and the safety valve of outfit is when pressure is higher than setting value, and this safety valve can automatic pressure-relieving.Compressed air pressure regulating valve on control panel, can regulate compressed-air actuated pressure as requested, and then controls to charge speed.
Compared with prior art, the utility model has the following advantages and beneficial effect:
One, being easy to control and charging speed: owing to have employed Pneumatic booster pump, can control to charge speed by regulating the driving pressure of pneumatic drive pump, thus guarantee can not be too high by the gas cylinder temperature charged.
Two, noise is little: because Pneumatic booster pump is less than the noise of machine operation, and the noise of all equipment when carrying out charging operation is also smaller.
Three, easy care: because clean reproducible power source one pressurized air that Pneumatic booster pump adopts, so this driven pump is easy to safeguard than the motor adopted on the market.
Four, safe and reliable: due to this equipment adopt be pressurized air as power source, and pressurized air we have can by safety valve, pressure regulator valve ensures its Security.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 be control panel and each pressure gauge and valve schematic diagram is set.
Embodiment
Below in conjunction with the drawings and specific embodiments, the utility model is described in detail.
Embodiment
A kind of pressurized container charges with equipment, as shown in Figure 1, treat in gas filling bottle for liquid in source of the gas gas cylinder is charged, equipment comprises Pneumatic booster pump 1, this Pneumatic booster pump 1 suction port connects admission line 2, admission line 2 is for being connected with source of the gas gas cylinder, admission line 2 arranges air inlet shut-off valve 3 and boost gauge 4, Pneumatic booster pump 1 air outlet connects outlet pipe 5, outlet pipe 5 treats gas filling bottle for connecting, outlet pipe 5 arranges outlet shut-off valve 6 and delivery gauge 7, Pneumatic booster pump 1 also connects compressed air line 8, compressed air line 8 is for connecting pressurized air, compressed air line 8 is provided with compressed air pressure regulating valve 9 and compressed-air manometer 10.Outlet pipe 5 is also provided with exhaust branch pipe 11, exhaust branch pipe 11 is provided with floss hole shut-off valve 12.Exhaust branch pipe 11 is arranged on the rear of outlet shut-off valve 6 and delivery gauge 7.Boost gauge 4 is arranged between air inlet shut-off valve 3 and Pneumatic booster pump 1.Delivery gauge 7 is arranged between outlet shut-off valve 6 and Pneumatic booster pump 1.Compressed-air manometer 10 is arranged between compressed air pressure regulating valve 9 and Pneumatic booster pump 1.
As shown in Figure 2, air inlet shut-off valve 3, boost gauge 4, outlet shut-off valve 6, delivery gauge 7, compressed air pressure regulating valve 9 and compressed-air manometer 10 are all integrated on same control panel 13.
In the present embodiment, adopt the driven pump from haskel company of the U.S., the pressure ratio of this pump is 60pa+ps, and maximum air displacement can reach 1801L/min.
Be described for slide gas cylinder, the pressurized container of the present embodiment charges and is presented below by equipment use mode:
By all valve closings, dioxide bottle is connected with admission line 2, and regulates pressure to 450psig the pressure regulator valve on dioxide bottle, will treat that gas filling bottle is connected with outlet pipe 5.Slowly open air inlet shut-off valve 3, observe boost gauge 4, guarantee that suction pressure is at below 500psig, more slowly open outlet shut-off valve 6 and gas cylinder on charge valve, now, carbon dioxide can enter and treat gas filling bottle.After pressure balance, open the pressurized air shut-off valve on compressed air line 8, and slowly regulate compressed air pressure regulating valve 9, regulate suction booster to suitable speed (being less than 50psig/sec), until the weight that handbook requires.Pull down the dioxide bottle on admission line 2, be replaced by nitrogen bottle, the same pressure that regulates is to 450psig, and what regulate gas-filled pump charges speed, will treat that gas filling bottle charges required pressure.Afterwards, turn off treat gas filling bottle charge valve, turn off the valve of nitrogen bottle, slowly open floss hole shut-off valve 12, by emptying for the residue gas cylinder in equipment.So far, charging of gas cylinder is completed.Turn off all valves.
Above-mentioned is can understand for ease of those skilled in the art and use model utility to the description of embodiment.Person skilled in the art obviously easily can make various amendment to these embodiments, and General Principle described herein is applied in other embodiments and need not through performing creative labour.Therefore, the utility model is not limited to above-described embodiment, and those skilled in the art, according to announcement of the present utility model, do not depart from improvement that the utility model category makes and amendment all should within protection domain of the present utility model.
Claims (7)
1. a pressurized container charges with equipment, treat in gas filling bottle for liquid in source of the gas gas cylinder is charged, it is characterized in that, described equipment comprises Pneumatic booster pump (1), this Pneumatic booster pump (1) suction port connects admission line (2), admission line (2) is for being connected with source of the gas gas cylinder, admission line (2) arranges air inlet shut-off valve (3) and boost gauge (4), Pneumatic booster pump (1) air outlet connects outlet pipe (5), outlet pipe (5) treats gas filling bottle for connecting, outlet pipe (5) arranges outlet shut-off valve (6) and delivery gauge (7), Pneumatic booster pump (1) also connects compressed air line (8), compressed air line (8) is for connecting pressurized air, compressed air line (8) is provided with compressed air pressure regulating valve (9) and compressed-air manometer (10).
2. a kind of pressurized container according to claim 1 charges with equipment, it is characterized in that, described outlet pipe (5) is also provided with exhaust branch pipe (11), exhaust branch pipe (11) is provided with floss hole shut-off valve (12).
3. a kind of pressurized container according to claim 2 charges with equipment, it is characterized in that, described exhaust branch pipe (11) is arranged on the rear of outlet shut-off valve (6) and delivery gauge (7).
4. a kind of pressurized container according to claim 1 charges with equipment, it is characterized in that, described air inlet shut-off valve (3), boost gauge (4), outlet shut-off valve (6), delivery gauge (7), compressed air pressure regulating valve (9) and compressed-air manometer (10) are all integrated on same control panel (13).
5. a kind of pressurized container according to claim 1 charges with equipment, and it is characterized in that, described boost gauge (4) is arranged between air inlet shut-off valve (3) and Pneumatic booster pump (1).
6. a kind of pressurized container according to claim 1 charges with equipment, it is characterized in that, described delivery gauge (7) is arranged between outlet shut-off valve (6) and Pneumatic booster pump (1).
7. a kind of pressurized container according to claim 1 charges with equipment, and it is characterized in that, described compressed-air manometer (10) is arranged between compressed air pressure regulating valve (9) and Pneumatic booster pump (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420587753.2U CN204284916U (en) | 2014-10-11 | 2014-10-11 | A kind of pressurized container charges uses equipment |
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CN201420587753.2U CN204284916U (en) | 2014-10-11 | 2014-10-11 | A kind of pressurized container charges uses equipment |
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CN204284916U true CN204284916U (en) | 2015-04-22 |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105179928A (en) * | 2015-09-25 | 2015-12-23 | 芜湖宏强船舶设备有限公司 | Oxygen filling device |
CN105351742A (en) * | 2015-09-24 | 2016-02-24 | 芜湖宏强船舶设备有限公司 | Oxygen filling method |
CN107339606A (en) * | 2017-08-17 | 2017-11-10 | 丹阳市方蓝气体设备有限公司 | A kind of charging system for changing pressure |
-
2014
- 2014-10-11 CN CN201420587753.2U patent/CN204284916U/en active Active
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105351742A (en) * | 2015-09-24 | 2016-02-24 | 芜湖宏强船舶设备有限公司 | Oxygen filling method |
CN105351742B (en) * | 2015-09-24 | 2018-05-18 | 芜湖宏强船舶设备有限公司 | Oxygen filling method |
CN105179928A (en) * | 2015-09-25 | 2015-12-23 | 芜湖宏强船舶设备有限公司 | Oxygen filling device |
CN105179928B (en) * | 2015-09-25 | 2018-05-18 | 芜湖宏强船舶设备有限公司 | Oxygen filling device |
CN107339606A (en) * | 2017-08-17 | 2017-11-10 | 丹阳市方蓝气体设备有限公司 | A kind of charging system for changing pressure |
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