WO2022111251A1 - 一种压力水壶 - Google Patents

一种压力水壶 Download PDF

Info

Publication number
WO2022111251A1
WO2022111251A1 PCT/CN2021/128732 CN2021128732W WO2022111251A1 WO 2022111251 A1 WO2022111251 A1 WO 2022111251A1 CN 2021128732 W CN2021128732 W CN 2021128732W WO 2022111251 A1 WO2022111251 A1 WO 2022111251A1
Authority
WO
WIPO (PCT)
Prior art keywords
air
kettle
pressure
hole
lid
Prior art date
Application number
PCT/CN2021/128732
Other languages
English (en)
French (fr)
Inventor
宋飞
Original Assignee
江门市伊科迈特电子科技有限公司
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 江门市伊科迈特电子科技有限公司 filed Critical 江门市伊科迈特电子科技有限公司
Publication of WO2022111251A1 publication Critical patent/WO2022111251A1/zh

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/4403Constructional details
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/46Dispensing spouts, pumps, drain valves or like liquid transporting devices

Definitions

  • the invention relates to the field of kettles, in particular to a pressure kettle.
  • the pressure kettle is a supporting appliance for the sparkling water machine.
  • the existing pressure kettle is generally provided with a nozzle on the lid.
  • the water can only be filled into half of the pressure kettle, and then the pressure kettle is suspended and hoisted on the sparkling water machine. , so that the gas nozzle on the sparkling water machine is connected to the lid of the pressure kettle, and the high-pressure carbon dioxide gas is sprayed vertically into the kettle through the nozzle on the lid, causing the high-pressure carbon dioxide gas to bounce back in the same direction when it contacts the bottom of the kettle, so that the subsequent carbon dioxide gas will rebound in the same direction.
  • the injection of gas causes interference and affects the air intake efficiency, and the carbon dioxide gas rushes into the pressure kettle to contact the air and then spray into the water, so that part of the carbon dioxide is directly retained in the cavity above the water surface, so that part of the carbon dioxide gas will not enter the water and water.
  • Dissolved to form carbonic acid the concentration of sparkling water is low, and it is impossible to measure the air pressure in the pressure kettle, so that the pressure in the pressure kettle may be too large or too small, and the quality of the produced sparkling water is not stable enough.
  • the purpose of the present invention is to provide a pressure kettle which can produce higher concentration of sparkling water and can accurately measure the air pressure in the kettle.
  • a pressure kettle comprising:
  • a kettle body the kettle body is provided with a kettle inner tank, an air inlet is arranged on the peripheral side of the kettle body, and a gas nozzle connector for connecting with the gas nozzle on the bubble water machine is arranged in the air inlet, and the kettle body is provided with a gas nozzle connector.
  • the inner wall of the inner bladder is provided with an air duct inclined towards the bottom of the inner bladder of the kettle, the end of the air duct is provided with a nozzle, and the top of the air duct and the air nozzle connector are connected through an air intake pipe;
  • a pot lid the bottom of the pot lid is provided with a lid joint part covering the pot body, the bottom of the lid joint part is provided with an air passage guide hole that penetrates to the top of the pot lid, and the inner wall of the air passage guide hole is provided with a A ring platform, the ring platform is provided with air guide holes whose size is smaller than the air channel guide hole, the bottom of the ring platform is provided with a detection gas path valve core for closing the air guide hole, and the bottom of the detection gas path valve core is provided with a The first reset device.
  • At least one set of pressure-stabilizing members is provided at the bottom of the lid joint, and the pressure-stabilizing member includes a pressure relief groove provided in the pot lid and a pressure relief groove provided at the bottom of the lid joint portion and connected to the pressure relief groove
  • the pressure relief groove is provided with an exhaust rod for blocking the guide hole, and the pressure relief groove is provided with a second reset device for driving the exhaust rod to move.
  • a vent hole is provided, and a vent hole communicated with the vent hole is provided on the outside of the pot cover.
  • the pot cover includes an outer cover and an upper cover arranged inside the outer cover, the cover joint is arranged at the bottom of the upper cover, the voltage regulator assembly is arranged on the upper cover, and the gas
  • the channel guide hole is arranged on the upper cover, a cavity is arranged between the upper cover and the inner surface of the outer cover, and the air diffusion hole is arranged on the outer cover and is located just above the air channel guide hole.
  • the two groups of pressure stabilizers are symmetrically arranged on both sides of the air path guide hole along the axis of the air path guide hole as the center.
  • the bottom surface of the pot lid is provided with a vent hole located on the outside of the pot body, the vent hole extends to the bottom of the cover portion, and the vent hole is provided with a vent hole for closing the vent hole.
  • the exhaust valve core, the top of the pot cover is provided with an exhaust button that drives the exhaust valve core to move, and the exhaust valve core is provided with a third reset device.
  • the exhaust hole includes a first channel and a second channel, the end of the first channel is located on the bottom surface of the pot lid and outside the pot body, and the second channel extends up and down through the pot lid to At the bottom of the cover part, the first channel is communicated with the side wall of the second channel, the exhaust button is located at the top of the second channel, and the peripheral side of the exhaust button is located above the first channel and connected to the side of the second channel.
  • the exhaust valve core is provided with a third reset device for driving the exhaust valve core to block the through hole.
  • a hollow support table is provided at the bottom of the second channel, and the third reset device is a first return spring abutting against the top of the support table and the bottom of the bottom of the exhaust valve core.
  • the bottom of the air button is provided with a second return spring abutting against the top of the air guide plate.
  • the height of the air guide tube from the bottom of the kettle liner is lower than half of the height of the kettle liner, and the angle between the air guide tube and the inner surface of the kettle liner is 30-60 degrees.
  • the air inlet is arranged at the bottom of the kettle body.
  • a one-way valve and a vortex flow guide member located between the one-way valve and the nozzle are arranged in the air conduit.
  • a positioning and installation slot is provided on the periphery of the cover portion, a positioning and installation protrusion matched with the positioning and installation slot is arranged on the outer periphery of the top of the pot body, and a positioning and installation slot is provided at the bottom of the pot body. guide groove.
  • the beneficial effects of the invention are as follows: when in use, the pot body is directly placed on the bubble water machine, so that the air nozzle connector on the pot body is connected with the air nozzle on the bubble water machine, and the high-pressure carbon dioxide in the bubble water machine passes through the air nozzle connector and the air nozzle.
  • the air intake pipe enters the air duct, and then sprays directly into the inner pot of the kettle through the nozzle on the air duct. Since the air duct is inclined on the side wall of the inner pot of the kettle, when the water is filled in the inner pot of the kettle, the water can directly pass through the guide.
  • the trachea makes the carbon dioxide contact the water for the first time when it is ejected along the trachea, and because of the inclined path, the carbon dioxide gas flow travels in the water for a longer stroke, and the carbon dioxide gas stays in the water for a longer time, and the carbon dioxide gas is not perpendicular to the kettle.
  • the bottom of the inner tank is flushed, so that the carbon dioxide flow will refract instead of rebound when it contacts the inner tank wall of the kettle, so as not to generate reverse pressure on the subsequent carbon dioxide entering the water, so that more carbon dioxide can be dissolved in the water, so that the same amount of carbon dioxide gas
  • the produced sparkling water has a higher concentration
  • the first reset device withstands the detection air passage valve core under normal circumstances to close the air guide hole.
  • the air pressure detection rod on the bubble water machine When making sparkling water, the air pressure detection rod on the bubble water machine is inserted into the air passage guide hole, and presses the detection air passage valve core, so that the detection air passage valve core moves down against the force of the reset device to open the air guide hole, so that the inside of the kettle can be opened.
  • the air pressure in the bottle is transmitted to the air pressure detection rod on the bubble water machine through the air guide channel and air guide hole between the detection air valve core and the air guide hole, so that the air pressure in the bottle can be accurately measured in real time, and then the air bubbles can be accurately measured.
  • the work of the water machine provides accurate feedback information, so that the quality of the produced sparkling water is more balanced and stable.
  • the bubble water machine stops rushing carbon dioxide gas into the kettle inner tank, and the air pressure detection rod is retracted.
  • the valve core of the detection gas path is reset under the action of the reset device to close the air guide hole, thereby preventing the pressure inside the kettle from overflowing. effect.
  • Fig. 1 is the structural representation of the preferred implementation method of the present invention
  • Fig. 2 is the A-A direction sectional structure schematic diagram of Fig. 1;
  • FIG. 3 is a schematic diagram of a cross-sectional structure in the direction B-B of FIG. 1;
  • Figure 4 is a schematic cross-sectional structure diagram of a pot lid in a preferred embodiment of the present invention.
  • FIG. 5 is a schematic diagram of an explosion structure of a preferred embodiment of the present invention.
  • FIG. 6 is a schematic diagram of the explosion structure of the upper cover in the preferred embodiment of the present invention.
  • the azimuth description such as the azimuth or position relationship indicated by up, down, front, rear, left, right, etc.
  • the azimuth description is based on the azimuth or position relationship shown in the drawings, only In order to facilitate the description of the present invention and simplify the description, it is not indicated or implied that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present invention.
  • the meaning of several is one or more, the meaning of multiple is two or more, greater than, less than, exceeding, etc. are understood as not including this number, above, below, within, etc. are understood as including this number. If it is described that the first and the second are only for the purpose of distinguishing technical features, it cannot be understood as indicating or implying relative importance, or indicating the number of the indicated technical features or the order of the indicated technical features. relation.
  • a pressure kettle including:
  • the kettle body 10 the kettle body 10 is provided with a kettle inner liner 11, an air inlet is provided on the peripheral side of the kettle body 10, and the air inlet is provided with a gas nozzle connection for connecting with the gas nozzle on the bubble water machine Part 30, the inner wall of the kettle liner 11 is provided with an air duct 31 inclined toward the bottom of the kettle liner 11; are communicated with each other through the air intake pipe 32;
  • the pot lid 20, the bottom of the pot lid 20 is provided with a cover part covering the pot body 10;
  • the inner wall of the hole 50 is provided with a ring platform 501, the ring platform 501 is provided with an air guide hole with a size smaller than the air channel guide hole 50, and the bottom of the ring platform 501 is provided with a detection gas path valve core 51 for closing the air guide hole.
  • a first reset device 52 is provided at the bottom of the detection gas path valve core 51 .
  • the pot body 10 When in use, the pot body 10 is directly placed on the bubble water machine, so that the gas nozzle connector 30 on the pot body 10 is connected with the gas nozzle on the bubble water machine, and the high-pressure carbon dioxide in the bubble water machine passes through the gas nozzle connector 30 and the air intake pipe 32. Enter the air tube 31, and then directly spray into the water bottle 11 through the nozzle 33 on the air tube 31.
  • the air tube 31 is inclined on the side wall of the water bottle 11, when water is loaded into the water bottle 11, the water It can directly pass through the air duct 31, so that the carbon dioxide is in contact with the water for the first time when the carbon dioxide is sprayed along the air duct 31, and because of the inclined path, the carbon dioxide gas flow in the water travels longer, and the carbon dioxide gas stays in the water for a longer time. Moreover, the carbon dioxide gas does not rush in perpendicularly to the bottom of the kettle liner 11, so that the carbon dioxide gas flow will be refracted instead of rebounding when it contacts the wall of the kettle liner 11, so that the subsequent carbon dioxide entering the water will not generate reverse pressure, so that the carbon dioxide can be dissolved more.
  • the concentration of the produced sparkling water is higher, and through the air passage guide hole 50 provided on the pot cover 20, under normal circumstances, the first reset device 52 withstands the detection air passage valve core 51. Thereby, the air guide hole is closed.
  • the air pressure in the kettle liner 11 overcomes the force of the reset device and moves down to open the air guide hole, so that the air pressure in the kettle liner 11 is transmitted to the air pressure on the bubble water machine through the air guide channel and the air guide hole between the detection air path valve core 51 and the air path guide hole 50
  • the air pressure in the inner pot 11 of the kettle can be accurately measured in real time, thereby providing accurate feedback information for the work of the sparkling water machine, so that the quality of the produced sparkling water is more balanced and stable.
  • the detection gas path valve core 51 is reset under the action of the reset device to close the air guide hole, thereby preventing the inner liner 11 of the kettle from entering.
  • the pressure overflows, and at the same time, the high pressure in the inner pot 11 of the kettle can also play an auxiliary role in pressing the valve core 51 of the detection gas path to seal it.
  • the pressure-stabilizing members 60 include a pressure relief provided in the lid 20.
  • a second reset device 65 for driving the exhaust rod 64 to move is provided therein, a vent hole 63 is provided in the pressure relief groove 62 , and a diffuser hole 66 communicated with the vent hole 63 is provided on the outer side of the lid 20 .
  • the high pressure gas pushes the exhaust rod 64 through the guide hole 61 to overcome the force of the second reset device 65, so that the pressure relief groove 62 is connected to the guide hole 61, and the high pressure gas passes through the pressure relief groove
  • the air vent 63 on the 62 and the air diffuser 66 on the lid 20 are discharged for pressure relief.
  • the high-pressure gas can no longer push the exhaust rod 64, so that the exhaust rod 64 is closed and guided.
  • the hole 61 is pressurized.
  • the air passage guide hole 50 also needs to extend to the top of the lid 20, and the air diffuser 66 also needs to be arranged on the top of the lid 20.
  • the lid 20 includes the outer cover 22 and the outer cover.
  • the cover part is arranged on the bottom of the upper cover 21
  • the voltage stabilizer assembly is arranged on the upper cover 21
  • the air passage guide hole 50 is arranged on the upper cover 21
  • the upper cover 21 A cavity is provided between the outer cover 22 and the inner surface of the outer cover 22, and the air diffusion hole 66 is arranged on the outer cover 22 and is located directly above the air passage guide hole 50, so that the air diffusion hole 66 is used not only as a pressure relief component, but also for The air pressure detection lever on the sparkling water machine passes.
  • the voltage stabilizing members 60 are two groups, and the two sets of voltage stabilizing members 60 are symmetrically arranged in the air passage guide hole along the axis of the air passage guide hole 50 as the center. 50 sides.
  • the guide hole 61 is vertically arranged on the bottom surface of the cover part, the pressure relief groove 62 is arranged laterally in the pot lid 20, and the bottom of the pressure relief groove 62 and the side wall of the guide hole 61 pass through a hole smaller than The through holes of the diameter of the pressure relief groove 62 are connected to each other.
  • the function of the exhaust rod 64 is to indirectly seal the guide hole 61 by sealing the through hole.
  • the top of the exhaust rod 64 is provided with a truncated cone-shaped sealing head, and the truncated cone-shaped sealing head can better connect with the through hole. mate to seal.
  • the exhaust rod 64 includes a valve core sleeve 642 and a sealing valve core 641 disposed at the front end of the valve core sleeve 642, the sealing head is disposed on the top of the sealing valve core 641, and the sealing valve core
  • the top of 641 is provided with a sealing ring rib on the peripheral side of the sealing head.
  • the vent hole 63 is provided on the side wall of the pressure relief groove 62 and at the bottom of the pressure relief groove 62 , and the vent hole 63 may also be directly an opening provided at the front end of the pressure relief groove 62 .
  • the pressure kettle needs to be depressurized first for safety reasons.
  • the traditional decompression method is slow decompression, which takes a long time.
  • the bottom surface of the lid 20 is provided with an exhaust hole 40 located on the outer side of the kettle body 10 , the exhaust hole 40 extends to the bottom of the cover portion, and an exhaust hole 40 for closing the exhaust hole 40 is arranged in the exhaust hole 40 .
  • the gas valve core 43, the top of the pot cover 20 is provided with an exhaust button 44 that drives the exhaust valve core 43 to move, the exhaust valve core 43 is provided with a third reset device, and the exhaust valve is driven by the exhaust button 44.
  • the core 43 moves, so that the air pressure in the inner pot 11 of the kettle can be quickly depressurized.
  • the exhaust hole 40 includes a first channel 41 and a second channel 42, the end of the first channel 41 is located on the bottom surface of the pot cover 20 and is located outside the pot body 10, and the second channel 42 runs through the pot.
  • the cover 20 extends up and down to the bottom of the cover portion, the first channel 41 communicates with the side wall of the second channel 42, the exhaust button 44 is located at the top of the second channel 42, and the exhaust button 44 is provided with a
  • the sealing ring 47 above the first channel 41 and sealed with the side wall of the second channel 42, the second channel 42 is provided with an air guide plate 421, the air guide plate 421 is provided with a through hole, the exhaust valve
  • the core 43 is arranged below the air guide plate 421 and can block the through hole.
  • the exhaust valve core 43 is provided with a third reset device that drives the exhaust valve core 43 to block the through hole.
  • the core 43 closes the through hole, the gas in the kettle cannot flow out.
  • the exhaust button 44 drives the exhaust valve core 43 to press down to reveal the through hole, the air pressure in the inner pot 11 of the kettle can pass through the second channel 42 and the first channel 42.
  • the channel 41 is discharged, so that the air pressure in the kettle liner 11 is reduced to the same as the external air pressure.
  • a hollow support table 48 is arranged at the bottom of the second channel 42, and the third reset device is connected to the support table 48.
  • the top and the bottom of the exhaust valve core 43 are in contact with the first return spring 45
  • the bottom of the exhaust button 44 is provided with a second return spring 46 in contact with the top of the air guide plate 421 .
  • the height of the air conduit 31 from the bottom of the kettle liner 11 is lower than half of the height of the kettle liner 11, and the angle between the air duct 31 and the inner surface of the kettle liner 11 is 30-60°. Spend.
  • the air inlet is arranged at the bottom of the pot body 10 .
  • a check valve 35 and a vortex flow guide 34 located between the check valve 35 and the nozzle 33 are arranged in the air conduit 31,
  • the diverter valve 35 can prevent the carbon dioxide gas from flowing back, and at the same time, the injected carbon dioxide gas is in a vortex state through the vortex guide member 34, so that the gas can form a turbulent flow in the water, so that the gas can remain in the water for a longer time without overflowing from the water immediately. Disperse into the space above the water surface to increase the concentration of sparkling water produced.
  • the air intake pipe 32 is a nylon pipe.
  • the bottom of the air nozzle connector 30 is provided with a first installation groove for connecting with the air nozzle, the end of the first installation groove is trumpet-shaped, and the top of the air nozzle connector 30 is provided with a useful
  • an air inlet pipe 32 nut for fixing the air inlet pipe 32 is provided at the port of the second installation groove, and the second installation groove is communicated with the bottom of the first installation groove through a connecting hole.
  • the first reset device 52 and the second reset device 65 are both compression springs.
  • a threaded joint 53 screwed to the bottom of the air passage guide hole 50 is arranged in the cover portion, a hole is arranged in the middle of the threaded joint 53, and one end of the pressure spring is abutted against the top of the threaded joint 53, The other end of the return spring is in contact with the bottom of the detection gas path valve core 51 .
  • the top of the threaded joint 53 is provided with a groove, the through hole is provided at the bottom of the groove, and the pressure spring is located in the groove and abuts against the bottom of the groove.
  • the detection gas path valve core 51 includes an insertion table for movably inserted in the air guide hole and a limit table located at the bottom of the insertion table, so The size of the insertion table is smaller than the air guide hole so that it can be inserted into the air guide hole.
  • the limit table is located below the ring table 501, and the minimum size of the limit table is larger than the air guide hole. The abutting sealing ring, so that the limiting platform can abut on the bottom of the ring platform 501 and perform sealing.
  • a transition connecting column is provided between the insertion table and the limiting table, the diameter of the transition connecting column is smaller than that of the insertion table, and the sealing ring is sleeved on the transition connecting column.
  • the bottom of the ring platform 501 is inclined toward the center of the ring platform 501. the inclined surface.
  • the inner side wall of the lid is provided with an inverted trumpet-shaped pot seal that can abut on the inner side of the opening of the pot liner 11.
  • Ring 23, when the inner pot 11 is in a high pressure state, the sealing ring 23 of the pot mouth will be firmly attached to the inner side wall of the opening of the pot inner pot 11 under the action of air pressure, thereby ensuring the overall airtightness.
  • the lid 20 is placed around the pot body 10.
  • a positioning and installation slot 24 is provided on the side, a positioning and installation protrusion 12 is arranged on the outer periphery of the top of the kettle body 10 to cooperate with the positioning and installation slot 24, and a positioning guide groove 13 is arranged at the bottom of the kettle body 10.

Landscapes

  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Cookers (AREA)

Abstract

一种压力水壶,包括壶体(10)、水壶内胆(11)、进气口、气嘴连接件(30)、导气管(31)、喷嘴(33)、进气管(32)、壶盖(20)、气路导孔(50)、检测气路阀芯(51)和第一复位装置(52),使用时将壶体(10)直接放置在气泡水机上,使气嘴连接件(30)与气泡水机上的气嘴相连,气泡水机内的高压二氧化碳通过喷嘴(33)直接喷入水壶内胆(11)中,通过倾斜设置于水壶内胆(11)的侧壁上的导气管(31),使二氧化碳在水中留存时间更长,在相同的二氧化碳气量下,生产的气泡水浓度更高,而通过设置于壶盖(20)上的气路导孔(50),使气泡水机上的气压检测杆能实时精确测量水壶内胆(11)内的气压,进而给气泡水机的工作提供精确的反馈信息,使生产出来的气泡水质量更加均衡稳定。

Description

一种压力水壶 技术领域
本发明涉及水壶领域,特别是一种压力水壶。
背景技术
压力水壶是气泡水机的配套用具,现有的压力水壶一般在壶盖上设置有喷嘴,在制备气泡水时水一般只能装入压力水壶的一半,然后将压力水壶悬空吊装在气泡水机上,使气泡水机上的气嘴与压力水壶的壶盖相连,高压二氧化碳气体通过壶盖上的喷嘴垂直喷射于壶内,导致高压二氧化碳气体在接触壶内底部时会原方向反弹,从而对后续二氧化碳气体的喷射产生干扰,影响进气效率,而且二氧化碳气体冲入压力水壶内先接触空气再喷入水中,使部分二氧化碳直接留存在水面以上的空腔部分,导致部分二氧化碳气体不会进入水中与水溶解形成碳酸,气泡水浓度偏低,而且无法对压力水壶内的气压进行测量,使压力水壶内可能出现气压过大或过小的情况,使生产的气泡水质量不够稳定。
发明内容
为解决上述问题,本发明的目的在于提供一种生产的气泡水浓度更高,而且可以精确测量壶内气压的压力水壶。
本发明为解决问题所采用的技术方案是:一种压力水壶,包括:
壶体,所述壶体内设置有水壶内胆,所述壶体周侧设置有进气口,所述进气口内设置有用于与气泡水机上的气嘴相连的气嘴连接件,所 述水壶内胆的内壁上设置有朝向水壶内胆底部倾斜的导气管,所述导气管末端设置有喷嘴,所述导气管顶部与气嘴连接件之间通过进气管相连通;
壶盖,所述壶盖底部设置有盖合于壶体上的盖合部,所述盖合部底部设置有贯穿至壶盖顶部的气路导孔,所述气路导孔的内壁设置有一环台,所述环台上设置有尺寸小于气路导孔的导气孔,所述环台底部设置有用于封闭所述导气孔的检测气路阀芯,所述检测气路阀芯底部设置有第一复位装置。
作为上述技术方案的进一步改进,所述盖合部底部设置有至少一组稳压件,所述稳压件包括设置于壶盖内的泄压槽和设置于盖合部底部与泄压槽相连通的导孔,所述泄压槽内设置有用于封堵所述导孔的排气杆,所述泄压槽内设置有驱动排气杆移动的第二复位装置,所述泄压槽内设置有放气孔,所述壶盖外侧设置有与放气孔相连通的散气孔。
作为上述技术方案的进一步改进,所述壶盖包括外盖和设置于外盖内部的上盖,所述盖合部设置于上盖底部,所述稳压组件设置于上盖上,所述气路导孔设置于上盖上,所述上盖与外盖内表面之间设置有空腔,所述散气孔设置于外盖上并位于气路导孔正上方。
作为上述技术方案的进一步改进,所述稳压件为两组,两组稳压件沿气路导孔的轴线为中心对称设置于气路导孔的两侧。
作为上述技术方案的进一步改进,所述壶盖底面设置有位于壶体外侧的排气孔,所述排气孔延伸至盖合部底部,所述排气孔内设置有 用于封闭排气孔的排气阀芯,所述壶盖顶部设置有驱动排气阀芯移动的排气按钮,所述排气阀芯上设置有第三复位装置。
作为上述技术方案的进一步改进,所述排气孔包括第一通道和第二通道,所述第一通道的末端位于壶盖底面并位于壶体外侧,所述第二通道贯穿壶盖上下延伸至盖合部底部,所述第一通道与第二通道侧壁相连通,所述排气按钮位于第二通道顶部,所述排气按钮周侧设置有位于第一通道上方并与第二通道侧壁密封的密封圈,所述第二通道内设置有导气板,所述导气板上设置有贯穿孔,所述排气阀芯设置于导气板下方并可封堵所述贯穿孔,所述排气阀芯上设置有驱动排气阀芯封堵所述贯穿孔的第三复位装置。
作为上述技术方案的进一步改进,所述第二通道底部设置有一中空的支撑台,所述第三复位装置为与支撑台顶部和排气阀芯底部底部抵接的第一复位弹簧,所述排气按钮底部设置有与导气板顶部抵接的第二复位弹簧。
作为上述技术方案的进一步改进,所述导气管距离水壶内胆底部的高度低于水壶内胆高度的二分之一,所述导气管与水壶内胆内表面的夹角为30-60度。
作为上述技术方案的进一步改进,所述进气口设置于壶体底部。
作为上述技术方案的进一步改进,所述导气管内设置有单向阀和位于单向阀与喷嘴之间的涡流导流件。
作为上述技术方案的进一步改进,所述盖合部周侧设置有定位安装卡槽,所述壶体顶部外周设置有与定位安装卡槽配合的定位安装凸起,所述壶体底部设置有定位导槽。
本发明的有益效果是:使用时将壶体直接放置在气泡水机上,使壶体上的气嘴连接件与气泡水机上的气嘴相连,气泡水机内的高压二氧化碳通过气嘴连接件和进气管进入导气管中,然后通过导气管上的喷嘴直接喷入水壶内胆中,由于导气管倾斜设置于水壶内胆的侧壁上,在水壶内胆内装入水时,水可以直接没过导气管,使二氧化碳沿导气管喷射出时第一时间与水接触,而且由于倾斜路径,使二氧化碳气流在水中运动的行程更长,二氧化碳气体在水中停留的时间更久,而且二氧化碳气体并非垂直于水壶内胆底部冲入,使二氧化碳气流接触水壶内胆壁时产生折射而不是反弹,从而不会对后续二氧化碳进入水中产生反向压力,使二氧化碳能更多的溶解于水中,使在相同的二氧化碳气量下,生产的气泡水浓度更高,而通过设置于壶盖上的气路导孔,正常情况下第一复位装置顶住检测气路阀芯从而封闭导气孔,当压力水壶装入气泡水机上进行气泡水制作时,气泡水机上的气压检测杆插入气路导孔内,并压住检测气路阀芯,使检测气路阀芯克服复位装置的力下移从而开启导气孔,使水壶内胆内的气压通过检测气路阀芯与气路导孔之间的导气通道和导气孔传递至气泡水机上的气压检测杆上,从而能实时精确测量水壶内胆内的气压,进而给气泡水机的工作提供精确的反馈信息,使生产出来的气泡水质量更加均衡稳定,当水壶内胆内气压达到规定值时,气泡水机停止向水壶内胆冲入二氧化碳气体,同时气压检测杆收回,此时检测气路阀芯在复位装置的作用下复位从而封闭导气孔,从而防止水壶内胆内压力溢出,同时水壶内胆 内的高压还能起到辅助压紧检测气路阀芯从而密封的作用。
附图说明
下面结合附图说明和具体实施方式对本发明做进一步解释说明。
图1为本发明优选实施方法的结构示意图;
图2为图1的A-A方向剖截面结构示意图;
图3为图1的B-B方向剖截面结构示意图;
图4本发明优选实施方式中壶盖的剖截面结构示意图;
图5为本发明优选实施方式的爆炸结构示意图;
图6为本发明优选实施方式中上盖的爆炸结构示意图。
具体实施方式
本部分将详细描述本发明的具体实施例,本发明之较佳实施例在附图中示出,附图的作用在于用图形补充说明书文字部分的描述,使人能够直观地、形象地理解本发明的每个技术特征和整体技术方案,但其不能理解为对本发明保护范围的限制。
在本发明的描述中,需要理解的是,涉及到方位描述,例如上、下、前、后、左、右等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
在本发明的描述中,若干的含义是一个或者多个,多个的含义是两个以上,大于、小于、超过等理解为不包括本数,以上、以下、以内等理解为包括本数。如果有描述到第一、第二只是用于区分技术特 征为目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量或者隐含指明所指示的技术特征的先后关系。
本发明的描述中,除非另有明确的限定,设置、安装、连接等词语应做广义理解,所属技术领域技术人员可以结合技术方案的具体内容合理确定上述词语在本发明中的具体含义。
参照图1至图6,一种压力水壶,包括:
壶体10,所述壶体10内设置有水壶内胆11,所述壶体10周侧设置有进气口,所述进气口内设置有用于与气泡水机上的气嘴相连的气嘴连接件30,所述水壶内胆11的内壁上设置有朝向水壶内胆11底部倾斜的导气管31,所述导气管31末端设置有喷嘴33,所述导气管31顶部与气嘴连接件30之间通过进气管32相连通;
壶盖20,所述壶盖20底部设置有盖合于壶体10上的盖合部,所述盖合部底部设置有贯穿至壶盖20顶部的气路导孔50,所述气路导孔50的内壁设置有一环台501,所述环台501上设置有尺寸小于气路导孔50的导气孔,所述环台501底部设置有用于封闭所述导气孔的检测气路阀芯51,所述检测气路阀芯51底部设置有第一复位装置52。
使用时将壶体10直接放置在气泡水机上,使壶体10上的气嘴连接件30与气泡水机上的气嘴相连,气泡水机内的高压二氧化碳通过气嘴连接件30和进气管32进入导气管31中,然后通过导气管31上的喷嘴33直接喷入水壶内胆11中,由于导气管31倾斜设置于水壶内胆11的侧壁上,在水壶内胆11内装入水时,水可以直接没过导气管31,使二氧化碳沿导气管31喷射出时第一时间与水接触,而且由于倾斜路径,使二氧化碳气流在水中运动的行程更 长,二氧化碳气体在水中停留的时间更久,而且二氧化碳气体并非垂直于水壶内胆11底部冲入,使二氧化碳气流接触水壶内胆11壁时产生折射而不是反弹,从而不会对后续二氧化碳进入水中产生反向压力,使二氧化碳能更多的溶解于水中,使在相同的二氧化碳气量下,生产的气泡水浓度更高,而通过设置于壶盖20上的气路导孔50,正常情况下第一复位装置52顶住检测气路阀芯51从而封闭导气孔,当压力水壶装入气泡水机上进行气泡水制作时,气泡水机上的气压检测杆插入气路导孔50内,并压住检测气路阀芯51,使检测气路阀芯51克服复位装置的力下移从而开启导气孔,使水壶内胆11内的气压通过检测气路阀芯51与气路导孔50之间的导气通道和导气孔传递至气泡水机上的气压检测杆上,从而能实时精确测量水壶内胆11内的气压,进而给气泡水机的工作提供精确的反馈信息,使生产出来的气泡水质量更加均衡稳定,当水壶内胆11内气压达到规定值时,气泡水机停止向水壶内胆11冲入二氧化碳气体,同时气压检测杆收回,此时检测气路阀芯51在复位装置的作用下复位从而封闭导气孔,从而防止水壶内胆11内压力溢出,同时水壶内胆11内的高压还能起到辅助压紧检测气路阀芯51从而密封的作用。
进一步进行改进,为了防止压力水壶内气压过大导致炸壶现象,优选所述盖合部底部设置有至少一组稳压件60,所述稳压件60包括设置于壶盖20内的泄压槽62和设置于盖合部底部与泄压槽62相连通的导孔61,所述泄压槽62内设置有用于封堵所述导孔61的排气杆64,所述泄压槽62内设置有驱动排气杆64移动的第二复位装置 65,所述泄压槽62内设置有放气孔63,所述壶盖20外侧设置有与放气孔63相连通的散气孔66。当水壶内胆11内气压过大时,高压气体通过导孔61推动排气杆64克服第二复位装置65的力,从而使泄压槽62与导孔61相连,高压的气体通过泄压槽62上的放气孔63和壶盖20上的散气孔66排出进行泄压,当水壶内胆11内压力达到规定值时,高压气体无法再推动排气杆64,从而使排气杆64封闭导孔61进行保压。
进一步优化,考虑气路导孔50也需要延伸至壶盖20顶部,而散气孔66也需要设置于壶盖20顶部,为了优化结构,优选所述壶盖20包括外盖22和设置于外盖22内部的上盖21,所述盖合部设置于上盖21底部,所述稳压组件设置于上盖21上,所述气路导孔50设置于上盖21上,所述上盖21与外盖22内表面之间设置有空腔,所述散气孔66设置于外盖22上并位于气路导孔50正上方,使散气孔66即作为泄压部件使用,同时又用于使气泡水机上的气压检测杆通过。
进一步进行优化,考虑到一组稳压件60容易出现故障,优选所述稳压件60为两组,两组稳压件60沿气路导孔50的轴线为中心对称设置于气路导孔50的两侧。
进一步进行改进,优选所述导孔61垂直设置于盖合部底面,所述泄压槽62横向设置于壶盖20内,所述泄压槽62的底部与导孔61侧壁通过一孔径小于泄压槽62直径的通孔相连通,此时排气杆64的作用是通过密封通孔从而间接密封导孔61。在此基础上,为了使排气杆64能更好的封闭通孔,优选所述排气杆 64顶部设置有呈圆锥台状的密封头,圆锥台状的密封头能更好的与通孔配合从而进行密封。在此基础上进一步优化,优选所述排气杆64包括阀芯套642和设置于阀芯套642前端的密封阀芯641,所述密封头设置于密封阀芯641顶部,所述密封阀芯641顶部设置有位于密封头周侧的密封环肋。
在此基础上,优选所述放气孔63设置于泄压槽62的侧壁上并位于泄压槽62的底部,所述放气孔63也可以直接为设置于泄压槽62前端的开口。
进一步进行改进,当气泡水制造完成后,由于水壶内胆11内气压较高,为了安全考虑需要先对压力水壶进行泄压,传统的泄压方式为慢泄压,耗时较长,为此优选所述壶盖20底面设置有位于壶体10外侧的排气孔40,所述排气孔40延伸至盖合部底部,所述排气孔40内设置有用于封闭排气孔40的排气阀芯43,所述壶盖20顶部设置有驱动排气阀芯43移动的排气按钮44,所述排气阀芯43上设置有第三复位装置,通过排气按钮44驱动排气阀芯43移动,从而可以对水壶内胆11内的气压进行快速泄压。
而且通过本方案,当制作含有糖分或果汁的气泡饮料时,由于传统的慢排气速度较慢,气体的冲击力不足,导致跟随气体被带出的部分果汁和糖分很容易聚集在壶盖20内难以清洁,导致滋生霉菌,而通过本方案的快速泄压,从而使被气体带出的糖分和果汁在高速气体的作用下,无法积存在壶盖20内,从而能保证壶盖20内的卫生干净。
进一步进行优化,优选所述排气孔40包括第一通道41和第二通道42,所述第一通道41的末端位于壶盖20底面并位于壶体10外侧, 所述第二通道42贯穿壶盖20上下延伸至盖合部底部,所述第一通道41与第二通道42侧壁相连通,所述排气按钮44位于第二通道42顶部,所述排气按钮44周侧设置有位于第一通道41上方并与第二通道42侧壁密封的密封圈47,所述第二通道42内设置有导气板421,所述导气板421上设置有贯通孔,所述排气阀芯43设置于导气板421下方并可封堵所述贯通孔,所述排气阀芯43上设置有驱动排气阀芯43封堵所述贯通孔的第三复位装置,当排气阀芯43封闭贯通孔时,壶内气体无法流出,当排气按钮44带动排气阀芯43下压从而显露出贯通孔时,则水壶内胆11内的气压可通过第二通道42和第一通道41排出,使水壶内胆11内的气压降为与外界气压相同,在此基础上优选所述第二通道42底部设置有一中空的支撑台48,所述第三复位装置为与支撑台48顶部和排气阀芯43底部底部抵接的第一复位弹簧45,所述排气按钮44底部设置有与导气板421顶部抵接的第二复位弹簧46。
进一步进行改进,优选所述导气管31距离水壶内胆11底部的高度低于水壶内胆11高度的二分之一,所述导气管31与水壶内胆11内表面的夹角为30-60度。
进一步进行改进,优选所述进气口设置于壶体10底部。
进一步进行改进,为了防止二氧化碳气体回流,提升二氧化碳在水中的路程,优选所述导气管31内设置有单向阀35和位于单向阀35与喷嘴33之间的涡流导流件34,通过单向阀35可以防止二氧化碳气体回流,同时通过涡流导流件34使喷入的二氧化碳气体呈涡流状态, 从而使气体在水中形成紊流,进而能在水中留存更长时间而不会马上从水中溢散至水面以上的空间中,使生产的气泡水浓度增加。
进一步进行改进,优选所述进气管32为尼龙管。
进一步进行优化,优选优选所述气嘴连接件30底部设置有用于与气嘴相连的第一安装槽,所述第一安装槽的端部为喇叭状,所述气嘴连接件30顶部设置有用于与进气管32相连的第二安装槽,所述第二安装槽端口处设置有固定进气管32的进气管32螺母,所述第二安装槽与第一安装槽底部通过连孔相连通。通过喇叭状的第一安装槽,可以使气嘴安装更加方便。
优选所述第一复位装置52和第二复位装置65均为压力弹簧。
进一步进行优化,优选所述盖合部内设置有螺接于气路导孔50底部的螺纹接头53,所述螺纹接头53中部设置有穿孔,所述压力弹簧的一端抵接于螺纹接头53顶部,所述复位弹簧的另一端抵接于检测气路阀芯51底部。所述螺纹接头53顶部设置有凹槽,所述穿孔设置于凹槽底部,所述压力弹簧位于所述凹槽内并抵接于凹槽底部。
进一步进行优化,对检测气路阀芯51的结构进一步进行优化,优选所述检测气路阀芯51包括用于活动插设于导气孔内的插入台和位于插入台底部的限位台,所述插入台尺寸小于导气孔从而能插入导气孔内,所述限位台位于环台501下方,所述限位台最小尺寸大于导气孔,所述限位台上端设置有用于与环台501底部抵接的密封环,从而使限位台能抵接于环台501底部并进行密封。
进一步进行改进,为了方便安装密封环,优选所述插入台与限位台之间设置有一过渡连接柱,所述过渡连接柱直径小于插入台,所述 密封环套设于过渡连接柱上。
进一步进行改进,为了使检测气路阀芯51与环台501配合的更为紧密,使密封环能更好的密封于环台501底部,优选所述环台501底部为朝向环台501中心倾斜的倾斜面。
进一步进行优化,为了保证壶盖20盖合于壶体10上的气密性,优选所述盖合部内侧壁设置有呈倒喇叭状并可抵接于水壶内胆11开口内侧的壶口密封环23,当水壶内胆11内处于高压状态时,壶口密封环23会在气压的作用下牢牢贴合于水壶内胆11开口的内侧壁,从而保证整体的气密性。
作为上述技术方案的进一步改进,为使壶盖20盖合于壶体10上时的配合方位时刻保持一致,同时使壶体10放置于气泡水机上始终朝向一个特定方位,所述盖合部周侧设置有定位安装卡槽24,所述壶体10顶部外周设置有与定位安装卡槽24配合的定位安装凸起12,所述壶体10底部设置有定位导槽13。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是在本发明的发明构思下,利用本发明说明书及附图内容所作的等效结构变换,或直接或间接运用在其他相关的技术领域均包括在本发明的专利保护范围内。

Claims (11)

  1. 一种压力水壶,其特征在于,包括:
    壶体(10),所述壶体(10)内设置有水壶内胆(11),所述壶体(10)周侧设置有进气口,所述进气口内设置有用于与气泡水机上的气嘴相连的气嘴连接件(30),所述水壶内胆(11)的内壁上设置有朝向水壶内胆(11)底部倾斜的导气管(31),所述导气管(31)末端设置有喷嘴(33),所述导气管(31)顶部与气嘴连接件(30)之间通过进气管(32)相连通;
    壶盖(20),所述壶盖(20)底部设置有盖合于壶体(10)上的盖合部,所述盖合部底部设置有贯穿至壶盖(20)顶部的气路导孔(50),所述气路导孔(50)的内壁设置有一环台(501),所述环台(501)上设置有尺寸小于气路导孔(50)的导气孔,所述环台(501)底部设置有用于封闭所述导气孔的检测气路阀芯(51),所述检测气路阀芯(51)底部设置有第一复位装置(52)。
  2. 如权利要求1所述的一种压力水壶,其特征在于:
    所述盖合部底部设置有至少一组稳压件(60),所述稳压件(60)包括设置于壶盖(20)内的泄压槽(62)和设置于盖合部底部与泄压槽(62)相连通的导孔(61),所述泄压槽(62)内设置有用于封堵所述导孔(61)的排气杆(64),所述泄压槽(62)内设置有驱动排气杆(64)移动的第二复位装置(65),所述泄压槽(62)内设置有放气孔(63),所述壶盖(20)外侧设置有与放气孔(63)相连通的散气孔(66)。
  3. 如权利要求2所述的一种压力水壶,其特征在于:
    所述壶盖(20)包括外盖(22)和设置于外盖(22)内部的上盖(21),所述盖合部设置于上盖(21)底部,所述稳压组件设置于上盖(21)上,所述气路导孔(50)设置于上盖(21)上,所述上盖(21)与外盖(22)内表面之间设置有空腔,所述散气孔(66)设置于外盖(22)上并位于气路导孔(50)正上方。
  4. 如权利要求2所述的一种压力水壶,其特征在于:
    所述稳压件(60)为两组,两组稳压件(60)沿气路导孔(50)的轴线为中心对称设置于气路导孔(50)的两侧。
  5. 如权利要求1所述的一种压力水壶,其特征在于:
    所述壶盖(20)底面设置有位于壶体(10)外侧的排气孔(40),所述排气孔(40)延伸至盖合部底部,所述排气孔(40)内设置有用于封闭排气孔(40)的排气阀芯(43),所述壶盖(20)顶部设置有驱动排气阀芯(43)移动的排气按钮(44),所述排气阀芯(43)上设置有第三复位装置。
  6. 如权利要求5所述的一种压力水壶,其特征在于:
    所述排气孔(40)包括第一通道(41)和第二通道(42),所述第一通道(41)的末端位于壶盖(20)底面并位于壶体(10)外侧,所述第二通道(42)贯穿壶盖(20)上下延伸至盖合部底部,所述第一通道(41)与第二通道(42)侧壁相连通,所述排气按钮(44)位于第二通道(42)顶部,所述排气按钮(44)周侧设置有位于第一通 道(41)上方并与第二通道(42)侧壁密封的密封圈(47),所述第二通道(42)内设置有导气板(421),所述导气板(421)上设置有贯穿孔,所述排气阀芯(43)设置于导气板(421)下方并可封堵所述贯穿孔,所述排气阀芯(43)上设置有驱动排气阀芯(43)封堵所述贯穿孔的第三复位装置。
  7. 如权利要求6所述的一种压力水壶,其特征在于:
    所述第二通道(42)底部设置有一中空的支撑台(48),所述第三复位装置为与支撑台(48)顶部和排气阀芯(43)底部底部抵接的第一复位弹簧(45),所述排气按钮(44)底部设置有与导气板(421)顶部抵接的第二复位弹簧(46)。
  8. 如权利要求1所述的一种压力水壶,其特征在于:
    所述导气管(31)距离水壶内胆(11)底部的高度低于水壶内胆(11)高度的二分之一,所述导气管(31)与水壶内胆(11)内表面的夹角为30-60度。
  9. 如权利要求1所述的一种压力水壶,其特征在于:
    所述进气口设置于壶体(10)底部。
  10. 如权利要求1所述的一种压力水壶,其特征在于:
    所述导气管(31)内设置有单向阀(35)和位于单向阀(35)与喷嘴(33)之间的涡流导流件(34)。
  11. 如权利要求1所述的一种压力水壶,其特征在于:
    所述盖合部周侧设置有定位安装卡槽(24),所述壶体(10)顶部外周设置有与定位安装卡槽(24)配合的定位安装凸起(12), 所述壶体(10)底部设置有定位导槽(13)。
PCT/CN2021/128732 2020-11-30 2021-11-04 一种压力水壶 WO2022111251A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202011375712.3 2020-11-30
CN202011375712.3A CN112353251A (zh) 2020-11-30 2020-11-30 一种压力水壶

Publications (1)

Publication Number Publication Date
WO2022111251A1 true WO2022111251A1 (zh) 2022-06-02

Family

ID=74535168

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2021/128732 WO2022111251A1 (zh) 2020-11-30 2021-11-04 一种压力水壶

Country Status (2)

Country Link
CN (1) CN112353251A (zh)
WO (1) WO2022111251A1 (zh)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112386110A (zh) * 2020-11-30 2021-02-23 江门市伊科迈特电子科技有限公司 一种气泡水制造机
CN112353251A (zh) * 2020-11-30 2021-02-12 江门市伊科迈特电子科技有限公司 一种压力水壶

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5260081A (en) * 1992-11-19 1993-11-09 William C. Stumphauzer Process and apparatus for rapidly carbonating a liquid beverage
US20030111745A1 (en) * 2001-12-17 2003-06-19 Ziesel Lawrence B. Carbonator with targeted carbonation level
DE10244573A1 (de) * 2002-09-25 2004-04-08 Daske, Jochen, Dr. Sodawasserbereiter
GB2408467A (en) * 2003-11-26 2005-06-01 Imi Vision Ltd Apparatus for carbonating liquids
CN104039431A (zh) * 2011-06-03 2014-09-10 布瑞威利私人有限公司 碳酸化装置
CN104582509A (zh) * 2012-06-29 2015-04-29 邦尼欧公司 饮料碳酸化系统和用于将饮料碳酸化的方法
CN204394246U (zh) * 2015-01-12 2015-06-17 宋宁 一种分体式饮料机
CN108928790A (zh) * 2017-05-25 2018-12-04 佛山市顺德区美的饮水机制造有限公司 苏打水罐和苏打水机
US20190015797A1 (en) * 2016-08-16 2019-01-17 Lior Asis Gas filling system
CN210520794U (zh) * 2019-04-01 2020-05-15 关进业 一种设置快慢排气的子机
US20200305631A1 (en) * 2019-03-29 2020-10-01 GrowlerWerks, INC. Pressurized brewing, gas-infusion, and dispensing machine
CN112353251A (zh) * 2020-11-30 2021-02-12 江门市伊科迈特电子科技有限公司 一种压力水壶
CN112386110A (zh) * 2020-11-30 2021-02-23 江门市伊科迈特电子科技有限公司 一种气泡水制造机

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5260081A (en) * 1992-11-19 1993-11-09 William C. Stumphauzer Process and apparatus for rapidly carbonating a liquid beverage
US20030111745A1 (en) * 2001-12-17 2003-06-19 Ziesel Lawrence B. Carbonator with targeted carbonation level
DE10244573A1 (de) * 2002-09-25 2004-04-08 Daske, Jochen, Dr. Sodawasserbereiter
GB2408467A (en) * 2003-11-26 2005-06-01 Imi Vision Ltd Apparatus for carbonating liquids
CN104039431A (zh) * 2011-06-03 2014-09-10 布瑞威利私人有限公司 碳酸化装置
CN104582509A (zh) * 2012-06-29 2015-04-29 邦尼欧公司 饮料碳酸化系统和用于将饮料碳酸化的方法
CN204394246U (zh) * 2015-01-12 2015-06-17 宋宁 一种分体式饮料机
US20190015797A1 (en) * 2016-08-16 2019-01-17 Lior Asis Gas filling system
CN108928790A (zh) * 2017-05-25 2018-12-04 佛山市顺德区美的饮水机制造有限公司 苏打水罐和苏打水机
US20200305631A1 (en) * 2019-03-29 2020-10-01 GrowlerWerks, INC. Pressurized brewing, gas-infusion, and dispensing machine
CN210520794U (zh) * 2019-04-01 2020-05-15 关进业 一种设置快慢排气的子机
CN112353251A (zh) * 2020-11-30 2021-02-12 江门市伊科迈特电子科技有限公司 一种压力水壶
CN112386110A (zh) * 2020-11-30 2021-02-23 江门市伊科迈特电子科技有限公司 一种气泡水制造机

Also Published As

Publication number Publication date
CN112353251A (zh) 2021-02-12

Similar Documents

Publication Publication Date Title
WO2022111251A1 (zh) 一种压力水壶
WO2022111250A1 (zh) 一种气泡水制造机
CN214284508U (zh) 一种压力水壶
CN209535894U (zh) 一种弹簧外置塑料喷雾泵头结构
CN210423753U (zh) 一种精确定量型大喷量气雾阀
CN216533633U (zh) 一种苏打水用瓶底进气装置
CN204872263U (zh) 一种用于智能控制啤酒保鲜的储酒装置
CN204679229U (zh) 球阀密封性检测装置
CN208750121U (zh) 一种新型复合式排气阀
CN106948133B (zh) 一种用在流量控制装置上的复位阀
CN205978512U (zh) 一种喷粉型的气雾剂阀门结构
CN207673870U (zh) 一种双活塞电磁脉冲阀
CN210047833U (zh) 一种高压汽水瓶盖
CN214284517U (zh) 一种气泡水制造机
CN208181751U (zh) 节约环保型喷雾泵
CN209098628U (zh) 发酵罐
CN202343372U (zh) 一种全方位喷雾泵
CN215802059U (zh) 一种发泡装置及智能马桶
CN205341106U (zh) 一种喷液效果好的新型手枪泵装置
CN205105549U (zh) 喷爆喷射松土头用自动启闭分流器
TWM586101U (zh) 具有飲料瓶自密封和co漏氣保護裝置的氣泡水產生機
CN218554427U (zh) 一种流量花洒
CN214208067U (zh) 一种设置有气压检测结构的压力水壶
CN220237618U (zh) 一种可以双向进液的取液装置
CN2299970Y (zh) 呼吸阀

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 21896752

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 21896752

Country of ref document: EP

Kind code of ref document: A1