WO2022022456A1 - Vanne de remplissage de liquide contenant du gaz - Google Patents

Vanne de remplissage de liquide contenant du gaz Download PDF

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Publication number
WO2022022456A1
WO2022022456A1 PCT/CN2021/108424 CN2021108424W WO2022022456A1 WO 2022022456 A1 WO2022022456 A1 WO 2022022456A1 CN 2021108424 W CN2021108424 W CN 2021108424W WO 2022022456 A1 WO2022022456 A1 WO 2022022456A1
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WO
WIPO (PCT)
Prior art keywords
valve
cavity
sealing
gas
sleeve
Prior art date
Application number
PCT/CN2021/108424
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English (en)
Chinese (zh)
Inventor
沈军
高擎宇
张虎
Original Assignee
江苏新美星包装机械股份有限公司
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Publication of WO2022022456A1 publication Critical patent/WO2022022456A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67CCLEANING, FILLING WITH LIQUIDS OR SEMILIQUIDS, OR EMPTYING, OF BOTTLES, JARS, CANS, CASKS, BARRELS, OR SIMILAR CONTAINERS, NOT OTHERWISE PROVIDED FOR; FUNNELS
    • B67C3/00Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus; Filling casks or barrels with liquids or semiliquids
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus
    • B67C3/06Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus using counterpressure, i.e. filling while the container is under pressure
    • B67C3/10Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus using counterpressure, i.e. filling while the container is under pressure preliminary filling with inert gases, e.g. carbon dioxide
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67CCLEANING, FILLING WITH LIQUIDS OR SEMILIQUIDS, OR EMPTYING, OF BOTTLES, JARS, CANS, CASKS, BARRELS, OR SIMILAR CONTAINERS, NOT OTHERWISE PROVIDED FOR; FUNNELS
    • B67C3/00Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus; Filling casks or barrels with liquids or semiliquids
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus
    • B67C3/22Details
    • B67C3/26Filling-heads; Means for engaging filling-heads with bottle necks
    • B67C3/2614Filling-heads; Means for engaging filling-heads with bottle necks specially adapted for counter-pressure filling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67CCLEANING, FILLING WITH LIQUIDS OR SEMILIQUIDS, OR EMPTYING, OF BOTTLES, JARS, CANS, CASKS, BARRELS, OR SIMILAR CONTAINERS, NOT OTHERWISE PROVIDED FOR; FUNNELS
    • B67C3/00Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus; Filling casks or barrels with liquids or semiliquids
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus
    • B67C3/22Details
    • B67C3/28Flow-control devices, e.g. using valves
    • B67C3/282Flow-control devices, e.g. using valves related to filling level control

Definitions

  • the invention relates to the technical field of filling equipment, in particular to a filling valve.
  • Gaseous liquids such as cola, beer, etc.
  • gas-containing liquid filling first, inject gas into the bottle first, and then fill; second, extract the air from the bottle first, and then inject gas into the bottle , followed by filling.
  • These two different filling processes usually require two different filling valves, which brings a lot of inconvenience to production.
  • the technical problem to be solved by the present invention is to provide a gas-containing liquid filling valve, which can be applied to at least two different filling processes for filling production and has wide applicability.
  • the first technical scheme adopted by the present invention is:
  • a gas-containing liquid filling valve comprising a valve body and a valve stem, the valve body is provided with a valve cavity, the bottom of the valve body is provided with a valve port, the valve port is located below the valve cavity, the valve The rod extends in the up-down direction and is arranged in the valve cavity so as to be relatively movable in the up-down direction, the valve rod has a return air passage extending through the up-down direction, the valve cavity is connected with a liquid inlet pipe, and the valve body It has a valve opening state and a valve closing state that are switched by the up and down movement of the valve stem. When the valve is in the open state, the valve cavity and the valve port communicate with each other; when the valve is in the closed state, the valve port is connected to the valve.
  • the valve cavities are separated from each other, a buffer cavity is provided on the top of the valve body, the buffer cavity is located above the valve cavity on the valve body, and the buffer cavity and the valve cavity are not communicated with each other, The upper end of the valve rod is located in the buffer cavity, and the upper port of the air return channel is communicated with the buffer cavity.
  • the filling valve also includes a valve body that is connected to the buffer cavity.
  • a gas switch valve connected to and used for filling gas into the cache cavity, the filling valve further includes a negative pressure switch valve and an exhaust switch valve respectively arranged on the valve body, the negative pressure switch The valve is connected to the negative pressure chamber through a negative pressure pipeline, and the exhaust switch valve is connected to the exhaust chamber through an exhaust pipeline. Two ports on the device, one of which is communicated with the valve port, and the other port is respectively connected with the negative pressure switch valve and the exhaust switch valve.
  • the exhaust passage extends in an up-down direction on the valve body, a lower port of the exhaust passage is always communicated with the valve port, and an upper port of the exhaust passage is respectively connected to the negative
  • the pressure switch valve and the exhaust switch valve are connected.
  • the upper part of the valve body is further provided with a drive cavity
  • the buffer cavity, the drive cavity and the valve cavity are distributed on the valve body in order from top to bottom and are not communicated with each other.
  • the valve installation further includes a power mechanism for driving the valve rod to move up and down, the power mechanism at least includes a piston fixed on the valve rod, and the piston is set in the driving cavity.
  • a sealing blocking structure for sealing and blocking the driving cavity and the buffer cavity is further provided between the valve stem and the valve body, and the sealing blocking structure includes a sealing member and a guide sleeve, the sealing member is made of a flexible material and is fixed on the valve stem, and the inner peripheral portion of the sealing member is sealed with the outer peripheral portion of the valve stem, and the guide sleeve is fixed
  • the outer peripheral part of the upper part of the guide sleeve is sealed with the valve body, and the outer peripheral part of the sealing member is fixed on the upper part of the guide sleeve and is connected with the
  • the guide sleeves are sealedly arranged, and a buffer space is formed between the sealing member and the guide sleeve, the buffer space and the buffer cavity are not communicated with each other, and the piston is connected to the inner wall of the drive cavity.
  • the outer wall of the guide sleeve can move up and down respectively.
  • the sealing member includes an annular sealing sleeve, and a sealing body disposed outside the sealing sleeve, the sealing sleeve is fixedly disposed on the valve stem, and the sealing sleeve is The inner peripheral part of the valve stem and the outer peripheral part of the valve stem are mutually sealed, and the upper part of the guide sleeve is provided with a guide sleeve partition part, and the guide sleeve partition part is gradually opened radially outward from bottom to top.
  • the outer peripheral part of the sealing body is fixedly and relatively sealedly arranged on the upper part of the dividing part of the guide sleeve.
  • the top of the guide sleeve partition is fixedly embedded in the inner wall of the valve body, the top of the guide sleeve partition is provided with an annular sealing groove, and the sealing body has an annular sealing groove.
  • the bottom of the outer end has a downwardly protruding sealing protrusion, the sealing body is embedded between the guide sleeve partition and the valve inner wall, and the sealing protrusion is sealingly embedded in the sealing groove middle.
  • the sealing body is integrally provided with the sealing sleeve, and the sealing body extends radially outward from the outer peripheral portion of the sealing sleeve in an arc-shaped bending manner.
  • the sealing and blocking structure further includes a shaft sleeve fixedly sleeved on the valve stem, the shaft sleeve is located below the sealing member, and the guide sleeve can be sleeved relatively slidably On the outer peripheral portion of the shaft sleeve, a retaining ring is fixedly formed at the lower part of the shaft sleeve, the retaining ring is located in the driving cavity, and the piston is fixed above the retaining ring.
  • a fixing sleeve is threadedly connected to the top of the valve stem, and the sealing member is axially compressed between the fixing sleeve and the shaft sleeve.
  • a corrugated sleeve is sleeved on the outer periphery of the valve stem, the corrugated sleeve is always located in the valve cavity, and the lower end of the corrugated sleeve is fixed on the valve stem
  • the lower part is mutually sealed with the outer peripheral wall of the valve stem, the upper end of the corrugated sleeve is formed with a sealing ring, and the sealing ring is arranged in a sealing manner with the inner peripheral wall of the valve body, so that the The driving chamber and the valve chamber are isolated from each other and not communicated with each other.
  • the valve stem has an initial position and a valve closing position on a movement path in the up-down direction, and when the valve stem is in the initial position, the valve body is in an open state; The valve stem is in the valve closing position, and the valve body is in the valve closing state.
  • the valve stem is converted from the initial position to the valve closing position, the valve stem is in the power mechanism. Under the action, it moves downward synchronously with the piston.
  • the power mechanism further includes an elastic member that provides a force required for the upward movement of the piston, the piston is arranged in the driving chamber and divides the driving chamber into upper parts that are not communicated with each other A driving cavity and a lower driving cavity, the elastic member is arranged in the lower driving cavity, and a gas pipeline for connecting the upper driving cavity and a compressed gas source is also provided on the valve body.
  • the elastic member is a spring
  • a spring seat is provided in the lower driving cavity
  • the upper and lower ends of the spring act on the bottom of the piston and the spring seat respectively, and the spring always There is a tendency to drive the piston upwards.
  • a retaining ring is fixed on the bottom of the piston, a shaft sleeve is fixed on the valve stem, the retaining ring and the shaft sleeve are fixed to each other, and the upper end of the spring is pressed against the bottom of the retaining ring.
  • the gas pipeline is communicated with the compressed air source through a solenoid valve, and when the valve body is switched from the valve-open state to the valve-closed state, the compressed air sequentially passes through the The solenoid valve and the gas pipeline enter the upper drive chamber, so that the piston drives the valve stem to move downward under the action of the pressure difference and reaches the valve closing position from the initial position; when the valve body During the transition from the closed valve state to the open valve state, the compressed air in the upper drive chamber is discharged out through the gas pipeline and the solenoid valve in turn, so that the piston is in the elastic state. The force of the component drives the valve stem to move downward and from the valve closing position to the initial position.
  • a limiting ring is arranged in the upper driving cavity, and when the valve rod moves upward to the initial position, the piston upwardly abuts on the limiting ring.
  • the second technical scheme adopted by the present invention is:
  • a gas-containing liquid filling valve comprises: a valve body, a valve cavity is arranged in the valve body, a valve port is provided at the bottom of the valve body, a valve stem is arranged in the valve cavity, and the valve stem can move up and down to drive the valve body to be in the position between the valve port and the valve port.
  • a drive cavity and a cache cavity are provided, the valve cavity, the drive cavity and the cache cavity are sealed and separated from each other in turn, the upper end of the valve stem extends into the cache cavity, the upper port of the return air passage is communicated with the cache cavity, and the valve body is provided with an exhaust gas
  • the lower port of the exhaust channel is connected with the valve port, the upper end of the exhaust channel is respectively connected with the negative pressure switch valve and the exhaust switch valve arranged on the valve body, and the negative pressure switch valve is connected with the negative pressure through the negative pressure pipeline.
  • the cavity is communicated, the exhaust switch valve is communicated with the exhaust cavity through the exhaust pipeline, the valve body outside the buffer cavity is provided with a gas switch valve, and
  • the upward and downward movement of the valve stem is driven by a power mechanism
  • the power mechanism includes: a piston arranged in the drive chamber, the piston divides the drive chamber into an upper drive chamber and a lower drive chamber that are sealed and isolated from each other, the piston Connected with the valve stem, a spring and a spring seat are arranged in the lower drive chamber, the spring seat is fixed at the bottom of the lower drive chamber, and the upper and lower ends of the spring act on the bottom of the piston and the spring seat respectively; the spring always has the function of driving the piston to drive the valve.
  • a limiting ring is arranged in the upper driving chamber, and the piston is blocked by the limiting ring when the piston drives the valve rod to move upward to the initial position, and the valve body is in the valve-open state at this time.
  • a shaft sleeve is fixed on the upper end of the valve stem, a guide sleeve is fixed on the outside of the shaft sleeve, and a retaining ring is fixed on the bottom of the piston, the retaining ring is fixed with the shaft sleeve, and the upper end of the spring presses
  • the block acts on the bottom of the retaining ring, the inner and outer sides of the piston are sealed with the inner wall of the driving chamber and the outer wall of the guide sleeve respectively, and the piston can move up and down on the inner wall of the driving chamber and the outer wall of the guide sleeve.
  • the sealing partition structure between the buffer cavity and the driving cavity includes: a sealing member made of a flexible material between the buffer cavity and the driving cavity is sealed and separated, and the structure of the sealing member comprises: an annular seal There is a sealing body outside the sealing sleeve, the sealing sleeve is installed on the valve stem above the shaft sleeve, and the valve stem on the top of the sealing sleeve is provided with a fixing sleeve, the fixing sleeve and the valve stem are threadedly fixed, and the fixing sleeve seals the sealing sleeve.
  • the outer end of the sealing body is sealed and fixed with the inner wall of the valve; the upper end of the guide sleeve is connected with a guide sleeve partition, and the guide sleeve partition is from bottom to top, and gradually outward from the guide sleeve to the valve inner wall.
  • the open bell mouth shape, the upper end of the sealing sleeve is sealed and embedded on the inner wall of the valve body, and a buffer space is formed between the sealing body and the partition part of the guide sleeve.
  • a sealing groove is provided at the top of the dividing part of the guide sleeve embedded in the inner wall of the valve body, a sealing bump is provided at the bottom of the outer end of the sealing body, and the sealing body is sealingly embedded in the dividing part of the guiding sleeve and the valve body. between the walls, and the sealing bump is sealed and embedded in the sealing groove.
  • a corrugated sleeve is sleeved on the valve stem in the valve cavity, the upper end of the corrugated sleeve forms a sealing ring, the sealing ring is sealed on the inner wall of the valve body, and the lower end of the corrugated sleeve is connected to the valve stem. The outer wall of the lower end of the seal is connected.
  • the lower end of the valve stem gradually becomes thinner.
  • the invention has the following advantages: the gas-containing liquid filling valve can realize two different filling processes according to actual needs, has a wide application range, greatly improves the flexibility of use, and effectively reduces the cost of filling production enterprises. Cost of production.
  • the filling valve has an ingenious structure and good sealing effect, which can greatly improve the filling quality and product quality.
  • Fig. 1 is the structural representation of a kind of gas-containing liquid filling valve of the present invention
  • FIG. 2 is a schematic diagram of the arrangement of the negative pressure switch valve, the exhaust switch valve and the gas switch valve;
  • FIG. 3 is an enlarged schematic structural diagram of part A in FIG. 1 .
  • valve body 11- valve cavity; 12- valve port; 13- liquid inlet pipe; 14- exhaust channel;
  • 3-drive cavity 31-piston; 311-upper drive cavity; 312-lower drive cavity; 32-spring; 33-spring seat; 34-gas pipeline; 35-limiting retaining ring;
  • a gas-containing liquid filling valve includes a valve body 1 and a valve stem 2.
  • a valve cavity 11 is arranged in the valve body 1, and a valve port 12 is opened at the bottom of the valve body 1.
  • the rod 2 extends in the up-down direction and is arranged in the valve cavity 11 so as to be relatively movable in the up-down direction.
  • the valve rod 2 has a return air passage 21 extending through the up-down direction.
  • the valve cavity 11 is connected to the liquid inlet pipe 13 for sending the valve cavity 11 to supply liquid for filling.
  • the valve body 1 has an open state and a closed state which are switched by the up and down movement of the valve stem 2. When the valve is in the open state, the valve cavity 11 and the valve port 12 communicate with each other; when the valve is in the closed state, the valve cavity 11 and the valve The ports 12 are separated from each other.
  • the top of the valve body 1 is provided with a buffer cavity 4 and a drive cavity 3 .
  • the buffer cavity 4 , the drive cavity 3 and the valve cavity 11 are distributed in sequence from top to bottom and are sealed off from each other and not communicated with each other.
  • the upper end of the valve rod 2 protrudes into the buffer chamber 4 , and the upper port of the return air passage 21 communicates with the buffer chamber 4 .
  • the lower end of the valve stem 2 gradually becomes thinner.
  • the filling valve also includes a negative pressure switch valve 7 and an exhaust switch valve 6 respectively arranged on the valve body 1.
  • the negative pressure switch valve 7 communicates with the negative pressure chamber 72 through a negative pressure pipeline 71, and the exhaust switch valve 6 passes through
  • the exhaust pipe 61 is communicated with the exhaust chamber 8
  • the valve body 1 is provided with an exhaust passage 14
  • the exhaust passage 14 has two ports at different ends in its own length direction, one of which is communicated with the valve port 12 .
  • the other port is respectively connected with the negative pressure switch valve 7 and the exhaust switch valve 6 .
  • the exhaust passage 14 extends in the up-down direction on the valve body 1 , the lower port of the exhaust passage 14 is always communicated with the valve port 12 , and the upper port of the exhaust passage 14 is respectively connected with the negative pressure switch.
  • the valve 7 and the exhaust opening and closing valve 6 are connected.
  • a gas switch valve 9 is also provided on the valve body 1 outside the buffer chamber 4 , and the gas switch valve 9 communicates with the gas chamber 10 through a filling pipeline 91 .
  • the filling valve also includes a power mechanism for driving the valve rod 2 to move up and down.
  • the power mechanism includes a piston 31 arranged in the driving chamber 3.
  • the valve rod 2 has an initial position and a valve closing position on the movement path in the up and down direction. , the valve stem 2 is in the initial position, the valve body 1 is in the valve open state; when the valve stem 2 is in the valve closing position, the valve body 1 is in the valve closing state, the piston 31 is relatively fixedly connected with the valve stem 2, when the valve stem 2 is in the valve closing state During the transition from the initial position to the closed valve position, the valve rod 2 moves downward synchronously with the piston 31 under the action of the power mechanism.
  • the power mechanism further includes an elastic member for providing the force required for the upward movement of the piston 31.
  • the elastic member is specifically a spring 32.
  • the piston 31 divides the driving chamber 3 into an upper driving chamber 311 and a lower driving chamber 311 and a lower portion that are sealed and isolated from each other.
  • the drive cavity 312, the bottom of the lower drive cavity 312 is fixedly provided with a spring seat 33, the upper and lower ends of the spring 32 act on the bottom of the piston 31 and the spring seat 33 respectively, the spring 32 always has the function of driving the piston 31 to drive the valve stem 2 to move upward. trend to the initial position.
  • the valve body 1 is also provided with a gas pipeline 34 for connecting the upper drive chamber 311 and the compressed gas source.
  • the gas pipeline 34 communicates with the compressed gas source through a solenoid valve (not shown in the figure).
  • valve body 1 When the valve body 1 is switched from the closed valve state to the open valve state, the compressed air in the upper drive chamber 311 is discharged through the gas pipeline 34 and the solenoid valve in turn, so that the piston 31 is driven by the force of the spring 32
  • the valve stem 2 moves downward to reach the initial position from the closed valve position.
  • the upper drive chamber 311 is provided with a limit stop ring 35.
  • the piston 31 drives the valve stem 2 to move upward to the initial position, it is blocked by the limit stop ring 35. At this time, the valve body 1 is in an open state.
  • the limiting ring 35 plays a very good limiting role.
  • the sealing barrier structure includes a shaft sleeve 22, The sealing member 5 and the guide sleeve 23, wherein the sealing member 5 is made of a flexible material, and the sealing member 5 is fixed on the valve stem 2, and the inner peripheral portion of the sealing member 5 is sealed with the outer peripheral portion of the valve stem 2.
  • the shaft sleeve 22 is fixedly sleeved on the upper end of the valve stem 2, the guide sleeve 23 is fixedly installed on the valve body 1 and can be relatively slidably sleeved on the outer periphery of the shaft sleeve 22, and the lower part of the shaft sleeve 22 is fixed
  • a retaining ring 24 is formed in the ground, the retaining ring 24 is fixed on the shaft sleeve 22 or integrally provided with the shaft sleeve 22, the piston 31 is fixed above the retaining ring 24, and the spring 32 abuts against the bottom of the retaining ring 24. Acts on the piston 31 .
  • the inner and outer sides of the piston 31 are sealed against the inner wall of the drive chamber 3 and the outer wall of the guide sleeve 23 respectively.
  • the piston 31 can move up and down on the inner wall of the drive chamber 3 and the outer wall of the guide sleeve 23 respectively.
  • the upper outer peripheral portion of the guide sleeve 23 is sealed with the valve body 1 , the outer peripheral portion of the sealing member 5 is fixed on the upper portion of the guide sleeve 23 and is sealed with the guide sleeve 23 , and the sealing member 5 is sealed with the guide sleeve 23 .
  • a buffer space 6 is formed between the sleeves 23 , and the buffer space 6 is not communicated with the buffer cavity 4 .
  • the sealing member 5 includes an annular sealing sleeve 51 and a sealing body 52 disposed outside the sealing sleeve 51 .
  • the portion extends radially outward in an arc-shaped curve.
  • the sealing sleeve 51 is fixedly sleeved on the valve stem 2 , and the inner peripheral portion of the sealing sleeve 51 and the outer peripheral portion of the valve stem 2 are mutually sealed.
  • the sealing sleeve 51 is located above the shaft sleeve 22 .
  • the top of the valve stem 2 is also threadedly connected with a fixing sleeve 25 , and the sealing sleeve 51 is pressed between the shaft sleeve 22 and the fixing sleeve 25 .
  • the upper part of the guide sleeve 23 has a guide sleeve partition part 231.
  • the guide sleeve partition part 231 is in the shape of a bell mouth which is gradually opened from the bottom to the top and is gradually opened from the guide sleeve 23 to the inner wall of the valve cavity 11.
  • the upper end seal is embedded in the inner wall of the valve body 1, the top of the guide sleeve partition 231 is provided with an annular sealing groove 232, and the bottom of the outer end of the sealing body 52 has a ring of sealing bumps 521 protruding downward.
  • the outer end of 52 is sealingly embedded between the guide sleeve partition 231 and the inner wall of the valve body 1, and the sealing protrusion 521 is sealingly embedded in the sealing groove 232, so that the outer end of the sealing body 52 and the outer end of the top of the guide sleeve 23 are sealed. Reliable sealing is maintained between the ends, with a stable and good sealing effect.
  • the aforementioned buffer space 6 is formed between the sealing body 52 and the guide sleeve partition 231 .
  • the sealing member 5 made of flexible material realizes the state that the buffer chamber 4 and the drive chamber 3 are always kept sealed and separated during the movement of the valve stem 2; the sealing body 52 will be deformed by the gas pressure in the buffer chamber 4, and the buffer space 6 provides room for deformation of the sealing body 52 .
  • valve cavity 11 and the drive cavity 3 are separated in the following way: the outer periphery of the valve stem 2 is sleeved with a corrugated sleeve 26, the corrugated sleeve 26 is always located in the valve cavity 11, and the corrugated sleeve is The lower end portion of the bellows 26 is fixed on the lower part of the valve stem 2 and is mutually sealed with the outer peripheral wall of the valve stem 2 . It is sealed and arranged so that the drive chamber 3 and the valve chamber 11 are isolated from each other and not communicated with each other. The use of the corrugated sleeve 26 can effectively ensure the sealing separation between the valve cavity 11 and the driving cavity 3 during the movement of the valve stem 2 .
  • the gas in the gaseous liquid is usually carbon dioxide.
  • the working principle and process of the filling valve of this embodiment are briefly described below by taking the filling of carbon dioxide as an example.
  • the gas in the gas chamber 10 is carbon dioxide, and the carbon dioxide in the gas chamber 10 enters the buffer chamber 4 through the filling pipeline 91 and the gas switch valve 9 .
  • the first filling process injecting carbon dioxide into the bottle 20 first, and then filling
  • the specific process is as follows:
  • the valve body 1 is in the closed valve state. After the bottle 20 to be filled is clamped and pressed against the bottom of the valve port 12 by the bottle clamping mechanism 30, the gas switch valve 9 is opened, and the carbon dioxide in the gas chamber 10 is filled in sequence.
  • the pipeline 91, the gas switch valve 9, the buffer chamber 4, and the air return channel 21 enter the bottle 20.
  • the valve stem 2 moves upward to make the valve body 1 switch to the open valve state, and the material liquid passes through the liquid inlet pipe. 13.
  • the valve cavity 11 and the valve port 12 enter into the bottle 20 for filling. During the filling process, the gas in the bottle 20 flows back into the buffer chamber 4 from the air return channel 21 .
  • the valve stem 2 acts so that the valve body 1 is in a closed state, the gas switch valve 9 is closed, the exhaust switch valve 6 is opened, and the gas in the bottle 20 and the valve port is closed. Then, the gas is discharged into the exhaust chamber 8 through the exhaust pipe 61, and the gas in the exhaust chamber 8 is discharged to the outside, thereby completing the filling work in the bottle. The gas is discharged through the exhaust chamber 8 to prevent the external gas from entering the filling equipment and causing pollution, thereby greatly improving the cleanliness of the filling and ensuring the quality of the filling products.
  • the second filling process extract the gas in the bottle 20 first, then inject carbon dioxide into the bottle, and then carry out filling
  • the specific process is as follows:
  • the valve body 1 is in the closed valve state. After the bottle 20 to be filled is clamped and pressed against the bottom of the valve port 12 by the bottle clamping mechanism 30, the negative pressure switch valve 7 is opened. Under the action of the negative pressure device, the bottle 20 The gas in the bottle enters into the negative pressure chamber 72 through the exhaust channel 14, the negative pressure switch valve 7, and the negative pressure pipeline 71 in turn, so as to empty the gas in the bottle. The purpose of this is to improve the product quality and effectively prolong the product preserve period. After that, the negative pressure switch valve 7 is closed, the gas switch valve 9 is opened, and the carbon dioxide in the gas chamber 10 enters the bottle 20 through the filling pipeline 91, the gas switch valve 9, the buffer chamber 4, and the return gas channel 21 in sequence.
  • valve stem 2 moves upward to open the valve, and the liquid enters the bottle through the liquid inlet pipe 13, the valve cavity 11 and the valve port 12, so as to carry out filling.
  • the gas in the bottle 20 returns from The air passage 21 flows back into the buffer chamber 4 .
  • the valve stem 2 acts so that the valve body 1 is in a closed state, the gas switch valve 9 is closed, the exhaust switch valve 6 is opened, and the inside of the bottle 20 and the valve port 12 are closed.
  • the gas is discharged into the exhaust chamber 8 through the exhaust pipeline 61 and then discharged to the outside, thereby completing the filling work in the bottle.
  • the gas-containing liquid filling valve of the present invention has ingenious structure and good sealing effect, and can greatly improve the filling quality and product quality.
  • the gas-containing liquid filling valve can realize two different filling processes according to actual needs, has a wide range of applications, greatly improves the flexibility of use, and effectively reduces production costs for filling production enterprises.

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Filling Or Discharging Of Gas Storage Vessels (AREA)
  • Filling Of Jars Or Cans And Processes For Cleaning And Sealing Jars (AREA)

Abstract

L'invention concerne une vanne de remplissage de liquide contenant du gaz, la vanne comprenant un corps de vanne (1) et une tige de vanne (2). Une chambre d'entraînement (3) et une chambre tampon (4) sont agencées séquentiellement dans le corps de vanne au niveau de la partie supérieure d'une chambre de vanne (11) de bas en haut ; la chambre de vanne, la chambre d'entraînement et la chambre tampon sont séquentiellement isolées et séparées les unes des autres ; l'extrémité supérieure de la tige de vanne s'étend dans la chambre tampon ; un orifice supérieur d'un canal de retour d'air (21) est en communication avec la chambre tampon ; le corps de vanne est pourvu d'un canal d'évacuation d'air (14) ; un orifice inférieur du canal d'évacuation d'air est en communication avec un orifice de vanne (12) ; l'extrémité supérieure du canal d'évacuation d'air est respectivement reliée à une vanne de commutation à pression négative (7) et à une vanne de commutation d'évacuation d'air (6) disposées sur le corps de vanne ; la vanne de commutation à pression négative est en communication avec une chambre à pression négative (72) au moyen d'une conduite de pression négative (71) ; la vanne de commutation d'évacuation d'air est en communication avec une chambre d'évacuation d'air (8) au moyen d'une conduite d'évacuation d'air (61) ; une vanne de commutation de gaz (9) est disposée sur le corps de vanne à l'extérieur de la chambre tampon ; la vanne de commutation de gaz est en communication avec une chambre de gaz (10) au moyen d'une conduite de remplissage (91). La vanne de remplissage de liquide contenant du gaz peut réaliser deux processus de remplissage selon les besoins réels, améliorant ainsi la flexibilité d'utilisation.
PCT/CN2021/108424 2020-07-31 2021-07-26 Vanne de remplissage de liquide contenant du gaz WO2022022456A1 (fr)

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