WO2018133495A1 - Récipient de mélange de soluté et de liquide, et procédé de production - Google Patents

Récipient de mélange de soluté et de liquide, et procédé de production Download PDF

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Publication number
WO2018133495A1
WO2018133495A1 PCT/CN2017/109110 CN2017109110W WO2018133495A1 WO 2018133495 A1 WO2018133495 A1 WO 2018133495A1 CN 2017109110 W CN2017109110 W CN 2017109110W WO 2018133495 A1 WO2018133495 A1 WO 2018133495A1
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WIPO (PCT)
Prior art keywords
solute
cover
liquid
groove
ring
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Application number
PCT/CN2017/109110
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English (en)
Chinese (zh)
Inventor
付佳琦
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付佳琦
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Application filed by 付佳琦 filed Critical 付佳琦
Publication of WO2018133495A1 publication Critical patent/WO2018133495A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23PMETAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
    • B23P21/00Machines for assembling a multiplicity of different parts to compose units, with or without preceding or subsequent working of such parts, e.g. with programme control
    • B23P21/004Machines for assembling a multiplicity of different parts to compose units, with or without preceding or subsequent working of such parts, e.g. with programme control the units passing two or more work-stations whilst being composed
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D51/00Closures not otherwise provided for
    • B65D51/24Closures not otherwise provided for combined or co-operating with auxiliary devices for non-closing purposes
    • B65D51/28Closures not otherwise provided for combined or co-operating with auxiliary devices for non-closing purposes with auxiliary containers for additional articles or materials
    • B65D51/2807Closures not otherwise provided for combined or co-operating with auxiliary devices for non-closing purposes with auxiliary containers for additional articles or materials the closure presenting means for placing the additional articles or materials in contact with the main contents by acting on a part of the closure without removing the closure, e.g. by pushing down, pulling up, rotating or turning a part of the closure, or upon initial opening of the container
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/32Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents for packaging two or more different materials which must be maintained separate prior to use in admixture
    • B65D81/3205Separate rigid or semi-rigid containers joined to each other at their external surfaces
    • B65D81/3211Separate rigid or semi-rigid containers joined to each other at their external surfaces coaxially and provided with means facilitating admixture

Definitions

  • the invention belongs to the field of loading containers for liquids such as beverages, and the like, and particularly relates to a mixed container of solute and liquid and a production method thereof.
  • a gas is filled in the above-mentioned liquid: a refilled beverage water dispenser is disclosed in Chinese Patent Application No.: 200310117311.8; another technique such as manual dispensing of a foaming and/or aerated beverage as disclosed in the patent application No.
  • the device is used for pressurizing the liquid by the back pressure of the high pressure gas bottle, so that the liquid gas is mixed, and the main use thereof is in the field of liquid dispensing, in order to solve the above-mentioned product of the liquid gas mixing device and not for the individual consumer, and not It is convenient to carry, inconvenient for consumers to use, high in manufacturing cost, complicated in structure and poor in applicability.
  • the solution of a liquid-gas mixing container described in 2016211549939 is small in size and convenient to carry, simple in operation and low in cost, but needs to be perfected: the outer surface is divided into three sections, the interface is many, and the looseness is not stable enough; the liquid outlet is used
  • the common cap of the threaded connection is inconvenient to open and close; the connection between the connecting member and the gas container is easy to loosen and fall during the process of rotating the gas container to pressurize or stop the pressure of the pressure outlet pipe, and the connecting member and the gas container are connected. If the connection is a wave-shaped chute, it is more difficult to disassemble.
  • the wavy chute in the connecting member does not have an outlet to slide the protrusion on the boss; only a single gas container can store and release the solute, and no other can store the solute. The place.
  • the object of the present invention is to provide a solute and liquid mixing container and a production method thereof, which not only has a two-stage design, but also makes the connection more stable, and the opening and closing of the bottle cap is convenient, the connection between the connecting member and the solute tank is not easy to fall, and the solute tank It is easy to install, use and separate.
  • the solute tank it can store the space for releasing solute, which can meet the independent storage of different solutes.
  • the main technical solution of the present invention is to provide a mixing container of a solute and a liquid, comprising a liquid container and a connecting member, the liquid container is provided with a liquid outlet and a mixing port, and the liquid outlet is detachably connected with the bottle a cap or cap assembly, the communicating member is a tubular structure including an upper opening and a lower opening, the mixing port is in sealing communication with the upper opening of the communicating member, wherein the mixing port is provided with a solute refining assembly for entering the liquid container
  • the first solute or the second solute needs to be refined by the solute refining component to be more and more dissolved in the liquid in the liquid container, and the communicating member is provided with the top cavity with the upper opening.
  • a partition with a bottom opening of the lower opening the partition is provided with a first one-way valve
  • the top chamber is provided with a solute cover which is sleeved outside the first one-way valve
  • the bottom cavity of the connecting member passes through the sliding rail
  • the component can be moved up and down to have a solute tank, the first solute is stored in the solute lid, the second solute is stored in the solute tank, and the top of the solute lid is provided with a through hole, and the solute tank is disposed on the solute tank.
  • a one-way valve contacts and connects Pressure outlet tube.
  • the upper opening of the connecting member is a nozzle of the inner tube to which the top end of the partition is connected, and the top end of the ring is provided in the mixing port
  • the solute refining assembly comprises a gas refining sheet close to the bottom of the top side and the gas is placed Refining the sealing ring at the bottom of the sheet
  • the solute cover is disposed in the inner tube and the top surface of the solute cover is closely attached to the sealing ring
  • the solute cover comprises a cavity-shaped upper cover with the cavity facing downward and is fixed in the upper cover and sleeved in the first a split cover outside the one-way valve
  • the split cover is provided with a plurality of split holes, so that the second solute passing through the first check valve can be uniformly scattered from the plurality of directions in the solute cover through the split hole, and the gas is refined.
  • the sheet is a ceramic refining sheet or a microporous refining sheet, which can refine the pressure gas into microbubble air, increase the contact area of the gas with the liquid, and can be most dissolved in the liquid, the outer diameter of the sealing ring and the gas refining sheet.
  • the outer diameter and the inner diameter of the mixing port are the same.
  • the slide rail assembly includes a hole groove provided in a side wall of the connecting member and a slidable plug protruding from the solute cover, wherein the hole groove comprises a longitudinal strip-shaped notch provided at the lower opening edge of the connecting member, and one end
  • the inverted U-shaped groove communicating with the end of the notch and the other end of the inverted U-shaped groove are connected with the inclined hole groove, and the free end of the inclined hole groove is closer to the first one-way valve than the other end, when the second solute needs to be transmitted through the solute
  • the solute tank moves up close to the solute cover while the pressure outlet pipe contacts and communicates with the first one-way valve, the solute tank
  • the second solute therein enters the solute cap and passes through the through hole and the solute refining assembly together with the first solute to be dissolved in the liquid in the liquid container.
  • the solute tank comprises a top cover provided with a pressure outlet pipe, an annular seal sleeve sealed outside the top cover, a hollow can body and a bottom cover fixed at the bottom end of the can body, and the top end of the can body is sealedly connected with the bottom of the sealing member
  • the shape of the longitudinal section of the bottom cover is an upward curved shape, and the size of the bottom cover is greater than or equal to the size of the lower opening of the connecting member, so that the bottom cover can cover the lower opening of the connecting member, and the bottom cover edge card is moved after the solute can is moved up.
  • the lower opening of the connecting member is not moved upward, so that the bending of the bottom cover is increased, and the elastic deformation is generated.
  • the inner ring of the sealing member is provided with a ring, and the bottom of the ring is connected with the bottom of the inner ring of the sealing member, and an opening groove is formed between the ring and the inner ring wall of the sealing member, and the upper end surface of the top cover is arranged around the pressure outlet pipe.
  • the bottom edge of the lower end of the top cover is provided with a ring of first and last connecting fixing grooves to insert the ring.
  • the top cover is inserted into the fixing groove, and then the bottom of the expansion groove is widened to be stuck at the bottom of the ring to enhance the sealing property, and the sealing member is placed in a solid mold groove before the expansion groove bottom is extended.
  • the inner support seal prevents damage to the seal when the bottom of the expansion tank is extended.
  • the bottom edge of the sealing member is provided with at least one groove connecting the first end and the tail.
  • the top end of the can body is provided with a corresponding rib formed in the groove and welded and fixed, so that the sealing property of the connection between the can body and the sealing member can satisfy the high-pressure storage solute.
  • the can body and the bottom cover are integrally formed and molded.
  • the first solute and the second solute each comprise a gas, a liquid, a volatile solid, a liquid-soluble solid particle or a combination of particles and a non-reactive one
  • the volatile solid includes dry ice
  • the liquid is liquefied under high pressure.
  • Gas, gas includes oxygen, carbon dioxide, nitrogen, helium and hydrogen.
  • the first solute also includes hydrogen stone, effervescent tablets, fruit and vegetable granules, seasoning granules, tea leaves and coffee powder, which can release hydrogen in water, and can be stored in a liquid container.
  • Red wine, solute tank can store oxygen, so that oxygen can enter the red wine to accelerate the hangover.
  • the solute lid contains effervescent tablets, fruit and vegetable granules, seasoning granules, tea and coffee powder, the solute refining component can be removed and used separately. section.
  • the liquid in the liquid container When in use, the liquid in the liquid container will permeate through the solute refining component under gravity to enter the solute cap until the force is balanced.
  • the liquid in the liquid container is water
  • the solute cap is infiltrated with water and reacts with the hydrogen stone to release the hydrogen partially dissolved in the water permeated in the solute cap, and then the second solute oxygen enters the solute cap through the first one-way valve to increase the gas pressure, and part of the oxygen and hydrogen are dissolved in the solute.
  • the refinement of the chemical component enters the liquid container and dissolves in the liquid.
  • the hydrogen gas has anti-oxidation and reduction power. Drinking water containing hydrogen and dissolved oxygen can help the human body absorb more energy and eliminate peroxygen free radicals. Various lesions can be improved and reduced.
  • the bottom cover is provided with a second one-way valve, which can supplement the second solute in the solute tank, is convenient for recycling, has low carbon environment, and the bottom cover is provided with a plurality of reinforcing ribs to make the solute tank more stable, and the bottom cover edge is provided with a groove.
  • the bottom cover is not easily attached to the table top.
  • the connecting member outer sleeve is provided with a tubular rotating member, and the top end of the rotating member extends inwardly with a ring-shaped sealing edge, and the sealing edge is inserted into the gap between the connecting member and the liquid container, and the inner wall of the rotating member is arranged
  • the utility model has a longitudinal strip-shaped sliding groove corresponding to the notch, the protruding column is slidably inserted into the sliding slot through the inclined hole groove, and the rotating member is twisted in the direction of the free end of the inclined hole groove, and the protruding column is driven from the inclined hole by the sliding groove
  • the stud is moved upwards in the chute, so that the solute tank moves up close to the solute cap while the pressure outlet pipe contacts and communicates with the first check valve, and the high pressure storage in the solute tank
  • the two solute enters into the solute cap together with the second solute and passes through the through hole and the solute refining component to be dissolved in the liquid in the liquid
  • the inner wall of the rotating member is provided with a limiting strip
  • the outer wall of the connecting member is provided with a slidable slot for inserting the finite strip, which limits the rotation of the rotating member relative to the connecting member and can satisfy the displacement of the protruding post in the slot.
  • the edge of the bottom cover is provided with a track that cooperates with the bottom of the rotating member, so that the rotating member rotates smoothly and the life is increased.
  • the pressure outlet pipe is an aerosol valve installed on the top of the gas cylinder.
  • the cap assembly includes a bottle mouth, an air inlet assembly and a locking assembly threadedly connected to the liquid outlet, and the bottle mouth is provided with a bottle cap through the buckle assembly, and the buckle assembly comprises a groove and a bottle provided on the outer wall of the bottle mouth a card strip inserted into the cover, the free end of the bottle mouth is provided with a mouth of the bottle mouth, and an outlet cross valve is arranged in the mouth of the bottle mouth, and a sealing plug which is inserted into the mouth of the bottle mouth is fixed in the bottle cap
  • the locking assembly includes a recess provided in the groove and a protrusion corresponding to the recess provided on the card strip, and the air inlet assembly includes an air inlet hole and an air inlet hole provided in the bottle mouth
  • the intake cross valve, the air intake component can facilitate the suction of the liquid at the mouth of the bottle when the liquid container is a hard material, and balance the air pressure inside and outside the liquid container.
  • the locking assembly comprises a locking rib provided on the outer wall of the mouth of the bottle mouth and a locking seat provided in the bottle cap.
  • the locking seat is an arc-shaped locking bar which protrudes inwardly from four tops fixed in the bottle cap. A cavity structure that surrounds it.
  • the air inlet assembly includes an air inlet hole provided on the bottle mouth and a ring-shaped sheet sleeved outside the liquid outlet cross valve, and the sheet covers the bottom of the air inlet hole.
  • a method for producing a mixed container of a solute and a liquid which first uses a mold to produce all the members described above according to the connection relationship described above, and when assembling the solute tank, firstly fits the seal member thereto.
  • the solid mold groove supports the seal to prevent the seal from being damaged by force.
  • the top cover is placed on the ring of the seal, and the top cover is applied downward to insert the ring into the fixing groove, and finally the expansion groove is inserted.
  • the bottom support is clamped to the bottom of the ring, and then the seal with the top cover is placed on the can body so that the rib is embedded in the corresponding groove and the top end of the rib is welded or glued to the bottom of the groove, and the can body is
  • the bottom cover is integrally formed.
  • the invention has the beneficial effects that not only the two-stage design makes the connection more stable, but also the opening and closing of the bottle cap is convenient, the connection between the connecting piece and the solute tank is not easy to fall, and the installation, use and separation of the solute tank are simple, and the solute tank is removed. There is also a space for storing dissolved solutes, which can be used for independent storage of different solutes.
  • Embodiment 1 is a schematic structural view of Embodiment 1 of the present invention.
  • FIG. 2 is an exploded view of Embodiment 1 of the present invention
  • Figure 3 is an exploded view of the rotary member, the communication member and the solute tank of Embodiment 1 of the present invention
  • Figure 4 is an exploded view of the solute cover and the solute refining assembly of Embodiment 1 of the present invention
  • Figure 5 is an exploded view of a solute tank according to Embodiment 1 of the present invention.
  • Figure 6 is a cross-sectional view of the lower portion of Embodiment 1 of the present invention.
  • Figure 7 is a schematic view of a bottle mouth and a bottle cap according to Embodiment 1 of the present invention, wherein a is a bottle cap and b is a bottle mouth.
  • Figure 8 is a schematic view of a bottle mouth and a bottle cap according to Embodiment 2 of the present invention, wherein c is a bottle cap, and d is a bottle mouth,
  • Figure 9 is a schematic view of a bottle mouth and a bottle cap according to Embodiment 3 of the present invention, wherein e is a bottle cap and f is a bottle mouth,
  • Figure 10 is a schematic view showing the structure of a liquid container and a bottle cap according to Embodiment 4 of the present invention.
  • liquid container 1 communication member 2, liquid outlet 3, mixing port 4, solute tank 5, first check valve 6, through hole 7, pressure outlet pipe 8, inner tube 9, top edge 10, sealing ring 11.
  • Gas refining sheet 12, upper cover 13, partition 14, shunt cover 15, shunt hole 16, hole groove 17, notch 171, inverted U-shaped hole groove 172, inclined hole groove 173, stud 18, top cover 19 , expansion groove 191, fixing groove 192, sealing member 20, ring 201, clamping groove 202, groove 203, can body 21, bottom cover 22, second check valve 23, reinforcing rib 24, rib 25, rotating member 26, edge sealing 261, chute 262, limiting strip 263, limiting groove 27, rail 28, bottle mouth 29, groove 291, recess 292, liquid cross valve 293, air inlet 294, intake cross valve 295, sheet 296, bottle cap 30, strip 301, bump 302, sealing plug 303, lock strip 304, solute lid 31, notch 32, mouth opening 33, locking rib 34.
  • a mixed container of solute and liquid described in this embodiment includes a liquid container 1 and a communicating member 2, and the liquid container 1 is provided with a liquid outlet 3 and a mixing port 4, and a liquid outlet 3
  • the detachable connection has a cap assembly
  • the communicating member 2 is a tubular structure including an upper opening and a lower opening
  • the mixing port 4 is in sealing communication with the upper opening of the communicating member 2, wherein the mixing port 4 is provided with a fine solute
  • the component is such that the first solute or the second solute entering the liquid container 1 is first refined by the solute refining component to be more quickly dissolved in the liquid in the liquid container 1, and the connecting member 2 is provided
  • the connecting member 2 is isolated as a top chamber having an upper opening and a partition 14 having a lower opening, the partition is provided with a first one-way valve 6, and the top chamber is provided with a movable sleeve disposed on the first one-way valve
  • the solute cover 31 outside the 6 is connected to the solute tank
  • the upper opening of the communicating member 2 is a nozzle of the inner tube 9 connected to the top end of the partition plate 14.
  • the mixing port 4 is provided with a ring-shaped top edge 10, and the solute refining assembly includes A gas refining sheet 12 abutting against the bottom of the top edge 10 and a sealing ring 11 disposed at the bottom of the gas refining sheet 12, the solute cover 31 is disposed in the inner tube 9 and the top end surface of the solute lid 31 is closely attached to the sealing ring 11, the solute
  • the cover 31 includes a cavity-shaped upper cover 13 with a cavity facing downward, and a diverting cover 15 fixed in the upper cover 13 and sleeved outside the first one-way valve 6.
  • the diverting cover 15 is provided with a plurality of diverting holes 16 for
  • the second solute from the one-way valve 6 can be uniformly dispersed from the plurality of directions in the solute cover 31 through the splitting hole 16, and the gas refining sheet 12 is a ceramic refining sheet or a microporous refining sheet capable of introducing a pressurized gas.
  • the microbubble air is refined to increase the contact area of the gas with the liquid, and is most soluble in the liquid.
  • the outer diameter of the seal ring 11, the outer diameter of the gas refining sheet 12, and the inner diameter of the mixing port 4 are the same.
  • the slide rail assembly includes a hole groove 17 provided in a side wall of the communicating member 2, and a slidable plug 18 which is slidably inserted into the hole groove 17 and the hole groove 17 includes a connecting member. 2, a longitudinal strip-shaped notch 171 provided at the lower opening edge, an inverted U-shaped hole 172 having one end communicating with the end of the notch 171, and an inclined hole groove 173 communicating with the other end of the inverted U-shaped hole 172, the free end of the inclined hole groove 173 The other end is adjacent to the first check valve 6.
  • the boss 18 is pulled to slide from the other end of the inclined hole 173 to the free end thereof.
  • the solute tank 5 moves up close to the solute cover 31 while the pressure outlet pipe 8 is in contact with and communicates with the first check valve 6, and the second solute in the solute tank 5 enters the solute cover 31 and passes through the through hole 7 together with the first solute.
  • the solute refining assembly is further dissolved in the liquid in the liquid container 1.
  • the solute tank 5 includes a top cover 19 provided with a pressure outlet pipe 8, an annular seal 20 sleeved outside the top cover 19, a hollow can body 21 and a bottom end fixed to the can body 21.
  • the bottom cover 22, the top end of the can body 21 is sealingly connected with the bottom of the sealing member 20.
  • the shape of the longitudinal section of the bottom cover 22 is an upward curved shape, and the size of the bottom cover 22 is greater than or equal to the size of the lower opening of the connecting member 2, so that the bottom is
  • the cover 22 can cover the lower opening of the connecting member 2, and after the solute tank 5 is moved up, the edge of the bottom cover 22 is caught on the lower opening of the connecting member 2 without moving upward, so that the bending of the bottom cover 22 is increased, and elastic deformation occurs.
  • the solute tank 5 moves downwardly under the action of gravity, the elastic force of the pressure outlet pipe 8, and the elastic force of the bottom cover 22, so that the pressure outlet pipe 8 is separated from the first check valve 6 to stop the solute.
  • the second solute in the tank 5 enters the solute cover 31.
  • the inner ring of the sealing member 20 is sleeved with a ring 201 , and the bottom of the ring is connected with the bottom of the inner ring of the sealing member 20 , and an opening is formed between the ring 201 and the inner wall of the sealing member 20 .
  • An upward clamping groove 202, an upper end surface of the top cover 19 is provided around the pressure outlet pipe 8 with a first end of the expansion groove 191, and a lower end edge of the top cover 19 is provided with a ring of end-to-end communication slots 192 for inserting the ring 201.
  • the top cover 19 is placed on the ring 201 of the sealing member 20, and the top cover 19 is applied downward to the ring 201. Inserted in the fixing groove 192, and then the bottom of the expansion groove 191 is widened to be stuck at the bottom of the ring 201 to enhance the sealing property. Before the bottom of the expansion groove 191 is extended, the sealing member 20 needs to be placed in a solid mold groove corresponding thereto. The support seal 20 prevents the seal 20 from being damaged when the bottom of the expansion groove 191 is stretched.
  • the bottom edge of the sealing member 20 is provided with at least one end of the groove 203 communicating with the first end, and the top end of the can body 21 is provided with a rib 25 correspondingly embedded in the groove 203 and welded and fixed, so that the can body 21
  • the sealing property of the connection with the sealing member 20 can meet the requirements of the high-pressure storage solute, and the can body 21 and the bottom cover 22 are integrally formed and molded.
  • the first solute and the second solute each comprise a gas, a liquid, a volatile solid, a liquid-soluble solid particle or a combination of particles and a non-reactive one
  • the volatile solid includes dry ice
  • the liquid is liquefied under high pressure.
  • Gas, gas includes oxygen, carbon dioxide, nitrogen, helium and hydrogen.
  • the first solute also includes hydrogen stone, effervescent tablets, fruit and vegetable granules, seasoning granules, tea leaves and coffee powder, which can release hydrogen in water.
  • solute tank 5 can store oxygen, so that oxygen can enter the red wine to accelerate the hangover.
  • the solute cover 31 contains effervescent tablets, fruit and vegetable granules, seasoning granules, tea and coffee powder, the solute refining component can be removed separately. Use the rest of the section.
  • the liquid in the liquid container 1 When in use, the liquid in the liquid container 1 will permeate through the solute refining assembly under gravity to enter the solute cover 31 until the force is balanced.
  • the first solute is hydrogen stone and the second solute is oxygen
  • the liquid in the liquid container 1 is In the case of water, the solute cover 31 is infiltrated with water and reacts with the hydrogen stone to release the hydrogen partially dissolved in the water permeated in the solute cover 31, and then the second solute oxygen enters the solute cover 31 through the first check valve 6 to increase the gas pressure thereof. Both oxygen and hydrogen are dissolved in the liquid of the solute cover 31.
  • oxygen and hydrogen are introduced into the liquid container 1 through the refinement of the solute refining module under high pressure, and the hydrogen has anti-oxidation reducing power, and the drinking water contains hydrogen.
  • dissolved oxygen water can help the body absorb more energy, while eliminating peroxygen free radicals, so that the body's various lesions can be improved and reduced.
  • the bottom cover 22 is provided with a second one-way valve 23, which can supplement the second solute in the solute tank 5, and is convenient to follow.
  • the ring is utilized, and the carbon cover is low-carbon, and the bottom cover 22 is provided with a plurality of reinforcing ribs 24 to make the solute tank 5 more stable.
  • the bottom cover 22 is provided with a notch 32 at the edge thereof, and the bottom cover is not easily adsorbed on the table top.
  • the connecting member 2 is provided with a tubular rotating member 26, and a top end of the rotating member 26 extends inwardly with a ring-shaped sealing edge 261, and the sealing edge 261 is movably inserted in the connecting member 2 and
  • the inner wall of the rotating member 26 is provided with a longitudinal strip-shaped sliding groove 262 corresponding to the notch 171.
  • the protruding post 18 is slidably inserted into the sliding groove 262 through the inclined hole groove 173, and is inclined to the inclined hole.
  • the groove 173 twists the rotating member 26 in the direction of the free end, and the boss 18 slides from the other end of the inclined hole groove 173 to the free end thereof while being driven by the sliding groove 262, and at the same time, the protruding post 18 moves upward in the sliding groove 262, so that the solute tank 5 Upwardly approaching the solute cover 31 while the pressure outlet pipe 8 is in contact with and communicating with the first check valve 6, the second solute stored in the high pressure reservoir in the solute tank 5 enters the solute cover 31 and passes through the through hole 7 together with the second solute.
  • the solute refining unit is further dissolved in the liquid in the liquid container 1, and when an external force is not applied to the rotating member 26, the downward elastic force of the pressure outlet pipe 8, the gravity of the solute tank 5, and the elastic force of the bottom cover 22 act together to cause the solute tank 5 to Move down, at this time, the stud 18 slides from the free end of the inclined hole groove 173 to the other end thereof and drives the rotating member 26
  • the other end of the inclined hole groove 173 communicates with the inverted U-shaped hole groove 172, so that the protrusion 18 does not easily slide down into the notch 171, so that the solute tank 5 is separated from the communicating member 2, when the solute tank 5 needs to be taken out
  • the bottom of the solute tank 5 applies a force to push it up and twists the rotating member 26 toward the other end of the inclined hole 173, so that the stud 18 enters the notch 171 through the inverted U-shaped hole 172 and slides out, so that the solute tank 5 is detached from the communicating member 2 .
  • the inner wall of the rotating member 26 is provided with a limiting strip 263.
  • the outer wall of the connecting member 2 is provided with a slidable slot 263 for inserting the finite strip 263, which limits the rotation of the rotating member 26 relative to the connecting member 2 and can satisfy the protruding post. The displacement of 18 within the slot 17.
  • a rail 28 that cooperates with the bottom of the rotating member 26 is disposed at the edge of the bottom cover 22 to smoothly rotate the rotating member 26 and increase the life.
  • the pressure outlet pipe 8 is an aerosol valve installed on the top of the gas cylinder.
  • the cap assembly includes a bottle mouth 29 threadedly connected to the liquid outlet 3, an air inlet assembly and a locking assembly.
  • the bottle mouth 29 is sleeved with a bottle cap 30 through a buckle assembly, and the buckle assembly includes
  • the outer wall of the bottle mouth 29 is provided with a groove 291 and a strip 301 which is inserted into the bottle cover 30 and is inserted into the bottle 291.
  • the mouth end 29 of the bottle mouth 29 is provided with a mouth opening 33, and the bottle mouth 33 is provided with a liquid outlet.
  • the cross valve 293 is fixed in the bottle cap 30 with a sealing plug 303 that is movably inserted into the mouth of the bottle.
  • the locking assembly includes a recess 292 provided in the recess 291 and a recess formed in the strip 301. 292 mating bump 302, the air intake assembly includes an air inlet 294 provided in the bottle mouth 29 and an air intake cross valve 295 provided in the air inlet hole.
  • the air intake assembly can be conveniently used when the liquid container 1 is a hard material. The mouth of the bottle sucks out the liquid and balances the air pressure inside and outside the liquid container 1.
  • a method for producing a mixed container of a solute and a liquid which first produces all the members described above by a mold according to the above-mentioned connection relationship, and when assembling the solute tank 5, firstly places the seal 20 with The solid mold slot supporting the sealing member 20 prevents the sealing member 20 from being damaged by force, and then places the top cover 19 on the ring 201 of the sealing member 20, and applies a downward force to the top cover 19 to insert the ring 201 In the fixing groove 192, the bottom of the expansion groove 191 is finally enlarged to be caught at the bottom of the ring 201, and then the sealing member 20 assembled with the top cover 19 is placed on the can body 21 so that the rib 25 is embedded in the corresponding groove 203.
  • the top end of the rib 25 is welded or glued to the bottom of the groove 203, and the can body 21 and the bottom cover 22 are integrally formed.
  • this embodiment is the same as the other parts of Embodiment 1, except that the locking assembly includes a locking rib 34 provided on the outer wall of the mouth of the bottle mouth 33 and a locking seat provided in the bottle cap 30.
  • the lock seat is a cavity-shaped structure surrounded by four arcuate lock bars 304 that are fixed inwardly from the top of the cap 30.
  • this embodiment is the same as the other parts of Embodiment 1, except that the air intake assembly includes an air inlet hole 294 provided in the bottle mouth 29 and a ring-shaped sheet sleeved outside the liquid outlet cross valve 293. 296, thin Sheet 296 covers the bottom of intake aperture 294.
  • this embodiment is the same as the other parts of Embodiment 1, except that the liquid outlet 3 is detachably connected to the bottle cap 30, and the connection method is a screw connection.
  • the invention not only has a two-stage design, but also makes the connection more stable, and the opening and closing of the bottle cap is convenient, the connection between the connecting piece and the solute tank is not easy to fall, and the installation, use and separation of the solute tank are simple, and the solute tank is additionally provided. It can store the space for releasing solute and can meet the independent storage of different solutes.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closures For Containers (AREA)

Abstract

L'invention concerne un récipient de mélange de soluté et de liquide et un procédé de production, le récipient de mélange de soluté et de liquide comportant un récipient de liquide (1) et un élément de communication (2), dans lequel le récipient de liquide (1) comporte une sortie de liquide (3) et un orifice de mélange (4), la sortie de liquide (3) est reliée de façon détachable à un bouchon de bouteille (30) et à un ensemble bouchon de bouteille, l'élément de communication (2) est d'une structure tubulaire comportant une ouverture supérieure et une ouverture inférieure, l'orifice de mélange (4) communique avec l'ouverture supérieure de l'élément de communication (2) de manière étanche, un ensemble de raffinage de soluté est mis en œuvre dans l'orifice de mélange (4), l'élément de communication (2) comporte, à l'intérieur, une plaque de séparation (14) qui sépare l'élément de communication (2) en une cavité supérieure ayant une ouverture supérieure et une cavité inférieure ayant une ouverture inférieure, la plaque de séparation (14) comporte une première valve unidirectionnelle (6), un bouchon de soluté (31) gainé de manière mobile à l'extérieur de la première valve unidirectionnelle (6) est mise en œuvre à l'intérieur de la cavité supérieure, un réservoir de soluté (5) en mesure de se déplacer vers le haut et vers le bas à travers un rail coulissant est relié dans la cavité inférieure de l'élément de communication (2), un premier soluté est stocké dans le bouchon de soluté (31), un deuxième soluté est stocké à haute pression dans le réservoir de soluté (5), le bouchon de soluté (31) comporte un trou traversant (7), et le réservoir de soluté (5) comporte un tuyau d'évacuation de gaz sous pression (8) en mesure d'entrer en contact et de communiquer avec la première valve unidirectionnelle (6) une fois que le réservoir de soluté (5) s'est déplacé vers le haut. La conception à deux étages rend la connexion plus stable, la connexion entre l'élément de communication et le réservoir de soluté ne se détache pas facilement, et deux espaces en mesure de stocker et de libérer un soluté sont mis en œuvre, ce qui permet un stockage indépendant de différents solutés.
PCT/CN2017/109110 2017-01-20 2017-11-02 Récipient de mélange de soluté et de liquide, et procédé de production WO2018133495A1 (fr)

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CN108013753A (zh) * 2018-01-16 2018-05-11 张毅蔚 手压腔及水壶
CN110419951B (zh) * 2019-08-30 2021-10-15 佛山市艾诗摩尔网络科技有限公司 一种煮茶器的泡茶方法
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CN111731640B (zh) * 2020-06-16 2022-05-06 海宁萃智智能机器人有限公司 一种使用干冰破膜的固液分离瓶

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