WO2022205589A1 - 一种气泡机 - Google Patents

一种气泡机 Download PDF

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Publication number
WO2022205589A1
WO2022205589A1 PCT/CN2021/095460 CN2021095460W WO2022205589A1 WO 2022205589 A1 WO2022205589 A1 WO 2022205589A1 CN 2021095460 W CN2021095460 W CN 2021095460W WO 2022205589 A1 WO2022205589 A1 WO 2022205589A1
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WO
WIPO (PCT)
Prior art keywords
linkage
water
cavity
fixed
plate
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Application number
PCT/CN2021/095460
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English (en)
French (fr)
Inventor
丁家梁
潘云峰
尹智军
Original Assignee
绍兴摩纳净水科技有限公司
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Application filed by 绍兴摩纳净水科技有限公司 filed Critical 绍兴摩纳净水科技有限公司
Publication of WO2022205589A1 publication Critical patent/WO2022205589A1/zh

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    • 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
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D31/00Other cooling or freezing apparatus
    • F25D31/002Liquid coolers, e.g. beverage cooler

Definitions

  • the invention belongs to the technical field of bubble machines, in particular to a bubble machine.
  • the food-grade carbon dioxide gas in the gas cylinder is physically and mechanically pressed into a water bottle containing pure (drinking) water through the operation of a bubble machine, and the resulting aqueous solution is soda water in a broad sense, that is, carbonated water. bubbles, so it is also called sparkling water.
  • the purpose of the present invention is to provide a bubble machine, which can quickly produce sparkling water.
  • a bubble machine comprising:
  • the ice tank includes a box body, the box body is provided with a water storage cavity, and a dividing component is installed in the box body, and the dividing component divides the water storage cavity into a refrigeration cavity and a pre-cooling cavity
  • the side wall of the box body is provided with a cooling water inlet communicating with the pre-cooling cavity and a refrigerating water outlet communicating with the refrigerating cavity.
  • the connecting channel is provided with a refrigeration device for refrigerating the water in the refrigeration cavity;
  • the mixing tank assembly includes a tank body, the tank body is provided with a mixing cavity, and the tank body is provided with a mixing tank air inlet hole, a mixing tank water inlet hole and a mixing tank water outlet hole, and the mixing tank water inlet hole is connected with the mixing tank water inlet hole.
  • the refrigerating water outlet is connected, the air outlet end of the gas cylinder is connected with the air inlet hole of the mixing tank, and the mixing chamber is provided with a water blocking plate arranged above the air inlet hole;
  • the gas intake assembly is used to control the gas from the gas cylinder to enter the mixing chamber.
  • the side wall of the box body is provided with a communication groove that communicates with the refrigeration cavity, a cold-conducting plate is fixed on the box body, and a cold-conducting plate is fixed to pass through the communication groove and then extend into the refrigeration cavity.
  • the fins in the body, the side of the cooling plate facing away from the fins is provided with cooling fins, the side of the cooling fins facing away from the cooling plate is provided with a cooling device, the connection channel includes a connection inlet and a connection outlet, the The connection inlet is connected to the pre-cooling cavity, the connection outlet is connected to the refrigeration cavity, and the connection outlet faces the fins.
  • a fixed water outlet sleeve coaxial with the water outlet hole is fixed on the lower side wall of the tank body, a telescopic water outlet sleeve is sleeved on the fixed water outlet sleeve, and the inner wall of the telescopic water outlet sleeve is fixed.
  • the tank body is provided with a pressing device that drives the telescopic water outlet sleeve to move up and down
  • the pressing device includes a pressing plate and two driving cams, and the two driving cams are respectively arranged on both sides of the telescopic water outlet sleeve.
  • the two driving cams are connected to the tank body through a fixed protruding rod in rotation, the driving cam is provided with a driving convex column, the pressing plate is rotatably connected with the tank body, and the pressing plate is provided with a driving convex column
  • the driving connecting rods are provided with driving slots for the corresponding driving protrusions to be inserted into, and the outer walls of the telescopic water outlet sleeves are fixed with driven protrusions corresponding to the driving cams.
  • the driven bumps are arranged above the corresponding driving cams.
  • the bottom of the mixing cavity is connected with a water blocking strut
  • the upper end of the water blocking strut is connected with the water blocking plate
  • the tank body is also provided with a mixing air outlet
  • the water blocking strut is inside.
  • An air outlet channel is provided, the air outlet channel communicates the mixing cavity with the mixing air outlet, and the air outlet is connected with a safety valve.
  • the air intake assembly includes an installation frame, the installation frame includes a middle plate and installation side plates arranged on both sides of the middle plate, an installation sleeve is connected between the two installation side plates, and the installation sleeve One end is installed with the head of the gas cylinder, and the other end is fixed with a connecting sleeve, and a mandrel is inserted into the connecting sleeve, and the mandrel can move in the connecting sleeve to open or close the gas cylinder.
  • the side wall is provided with a ventilation port
  • the inner wall of the connecting sleeve is provided with a ventilation channel connecting the head of the gas cylinder with the ventilation port, and the ventilation port is connected with the mixing tank.
  • a drive shaft is rotatably connected between the two installation side plates, a drive plate is fixed on the drive shaft, and a pressure plate is rotatably connected between the upper ends of the two installation side plates, and the pressure plate is arranged on the top.
  • a connecting rod Above the rod, one end of the pressing plate away from the installation side plate is rotatably connected with a connecting rod, the connecting rod is provided with a driving slot for the driving board to be inserted into, and the end of the driving shaft extending out of the installation side plate is fixed with a rotating handle .
  • a linkage valve is fixed on the side of the intermediate plate facing the connecting rod, and the linkage valve includes a linkage column.
  • the linkage column is provided with a linkage hole penetrating both ends thereof, and one end of the linkage hole is fixed with a linkage hole.
  • the other end of the plug is plugged with a linkage abutment rod, the inner wall of the linkage hole is fixed with a linkage convex ring, and the linkage convex ring divides the linkage hole into a linkage air inlet cavity and a linkage air outlet cavity.
  • the linkage air inlet pipe is connected with the air cavity
  • the side wall of the linkage column is also fixed with a linkage air outlet pipe that communicates with the linkage air outlet chamber
  • the linkage air intake pipe is communicated with the mixing air outlet of the mixing tank
  • the connecting rod is provided with A linkage step, one end of the linkage abutting rod extending out of the linkage column abuts the linkage step.
  • an air refill switch is fixed on the side of the middle plate facing away from the connecting rod, the trigger plate of the air refill switch is triggered when the drive plate is pressed down, and a warning device is electrically connected to the air refill switch.
  • the mounting sleeve is rotatably connected between the two mounting side plates.
  • the refrigeration device can quickly refrigerate the water in the refrigeration cavity, so that when the water in the tank is used up at one time, cold water can be quickly provided, and finally the water in the refrigeration cavity can be refrigerated. Pumped out from the cooling water outlet by a pump;
  • the driving cam is driven to rotate counterclockwise by the driving connecting rod.
  • the driven bump is driven to move upward, thereby driving the water outlet plug connected to the telescopic water outlet sleeve. Move up, open the water outlet to discharge water, the structure is simple, and it is very convenient to take water;
  • Fig. 1 is the structural representation of the bubble machine of the present invention
  • Fig. 2 is the exploded view of Fig. 1;
  • Fig. 3 is the structural representation when the bottom case in Fig. 1 removes the upper part
  • Fig. 4 is the structural representation of the gas intake assembly
  • Figure 5 is a schematic structural diagram of another angle
  • FIG. 6 is a cross-sectional view of a gas intake assembly
  • Figure 7 is a schematic structural diagram of a linkage valve
  • Figure 8 is an exploded view of the gas intake assembly
  • Fig. 9 is the structural representation of ice gallbladder
  • Figure 10 is an exploded view of the ice gallbladder
  • Figure 11 is a cross-sectional view of an ice gallbladder
  • FIG. 13 is a schematic structural diagram of a mixing tank assembly
  • Figure 14 is a cross-sectional view of the mixing tank assembly
  • Figure 15 is an exploded view of the mixing tank assembly
  • Figure 16 is a partial enlarged view at I in Figure 15;
  • Fig. 17 is a partial enlarged view at II in Fig. 15;
  • FIG. 18 is a schematic structural diagram when the driving protrusion is connected to the driving slot
  • Figure 19 is a schematic structural diagram of a telescopic water outlet sleeve
  • Figure 20 is a partial enlarged view at III in Figure 14;
  • Figure 21 is a schematic structural diagram of a pressing plate
  • Figure 22 is a schematic structural diagram of a stent
  • Figure 23 is a schematic structural diagram of the rear cover
  • Figure 24 is a schematic structural diagram of another angle of the stent.
  • 100 ice tank; 101, lower box body; 102, upper cover; 103, box body; 104, air outlet; 105, cooling water inlet; 106, limit groove; 107, limit protrusion; 108, refrigeration device; 109, drain plug; 110, cooling water outlet; 111, cooling sheet; 112, insert plate; 113, groove; 114, slot; 115, horizontal partition plate; 116, inclined partition plate; 117, connecting pipe; 118 , connection outlet; 119, UV germicidal lamp; 120, communication groove; 121, fixed frame; 122, fixed groove; 123, fin;
  • 200 air intake assembly; 204, turning handle; 205, mounting bracket; 207, mounting sleeve; 210, mounting side plate; 211, pressing plate; 212, connecting rod; 213, driving shaft; 214, middle plate; 215, ventilation interface ;216, Linkage valve; 217, Drive plate; 218, Drive slot; 219, Gas switch; 220, Ventilation channel; 221, Connecting sleeve; 222, Mandrel; 223, Plug; 224, Linkage spring; Column; 227, shaft sealing ring; 228, linkage convex ring; 229, linkage limit shaft; 230, linkage air intake chamber; 231, linkage second abutment rod; 232, linkage first abutment rod; 233, abutment rod sealing ring ; 234, linkage step; 235, linkage air outlet; 236, linkage air intake pipe; 237, linkage outlet pipe; 238, linkage column; 239, linkage rod;
  • 300 mixing tank assembly; 301, upper tank body; 302, lower tank body; 303, tank body; 304, pressing plate; 305, telescopic water outlet sleeve; 306, water retaining strut; 307, water retaining sleeve; 308 309, the water retaining plate; 310, the fixed water outlet sleeve; 311, the air inlet of the mixing tank; 312, the air outlet of the mixing tank; 313, the lower cover body; 314, the water inlet of the mixing tank; 315, air outlet channel; 316, mixing cavity; 317, second water blocking convex ring; 318, plug sleeve; 319, first anti-rotation protrusion; 320, first anti-rotation groove; 321, second anti-rotation 322, the second anti-rotation groove; 323, the drive connecting rod; 324, the drive slot; 325, the water outlet plug; 326, the first limit plane; 327, the drive cam; 328, the second limit plane; 329, driven protru
  • the present invention provides a technical solution for a bubble machine: a bubble machine, which is characterized in that: it includes:
  • the ice tank 100 as shown in FIG. 2 and FIG. 11, the ice tank 100 includes a box body 103, a water storage cavity 135 is arranged in the box body 103, and a dividing component 130 is installed in the box body 103, and the dividing component 130 separates the water storage cavity
  • the body 135 is divided into a refrigeration cavity 133 and a pre-cooling cavity 134.
  • the side wall of the box body 103 is provided with a refrigeration water inlet 105 communicating with the pre-cooling cavity 134 and a refrigeration water outlet 110 communicating with the refrigeration cavity 133.
  • the component 130 is provided with a connecting channel connecting the pre-cooling cavity 134 and the refrigeration cavity 133, and the box 103 is provided with a refrigeration device for refrigerating the water in the refrigeration cavity 133;
  • the mixing tank assembly includes a tank body 303 , a mixing cavity 316 is arranged in the tank body 303 , and a mixing tank inlet hole 311 , a mixing tank water inlet hole 314 and a mixing tank water outlet hole are arranged on the tank body 303 342, the water inlet hole 314 of the mixing tank is connected to the cooling water outlet 110 through a suction pump, and the suction pump pumps the water in the cooling cavity 133 into the mixing cavity 316, and the gas outlet end of the gas cylinder is connected to the air inlet hole 311 of the mixing tank;
  • the gas intake assembly 200 is used for controlling the gas from the gas cylinder to enter the mixing cavity 316 .
  • the material of the dividing component is set to be PP plastic. Since the dividing component 130 divides the water storage cavity 135 into a refrigeration cavity 133 and a pre-cooling cavity 134 , the refrigeration device 108 prioritizes the water in the refrigeration cavity 133 Refrigeration, so that the water in the refrigeration cavity 133 can be quickly refrigerated. Since the refrigeration cavity 133 and the pre-cooling cavity 134 are communicated through the connecting passage 137, the water in the refrigeration cavity 133 can pass through the connecting passage 137 to the pre-cooling cavity.
  • the time for the refrigeration device 108 to cool all the water in the entire tank 103 to a certain temperature is basically the same in both cases, but increases
  • the refrigeration device 108 can quickly refrigerate the water in the refrigeration cavity 133, so that when the water in the box 103 is used up at one time, cold water can be quickly provided, and finally the refrigeration cavity can be refrigerated.
  • the water in 133 is pumped out from the cooling water outlet 110 by a pump.
  • the side wall of the box body 103 is provided with a communication groove 120 that communicates with the refrigeration cavity 133 , and the outer wall of the box body 103 is fixed with a fixed frame 121 corresponding to the communication groove 120 one-to-one.
  • the frame 121 is provided with a fixing groove 122, and a cold-conducting plate 124 is fixed in the fixing groove 122.
  • the cold-conducting plate 124 is fixed with fins 123 extending into the refrigeration cavity 133 after passing through the communication groove 120.
  • the fins 123 There are several pieces, a connecting frame 125 is fixed on the fixing frame 121, a cooling fin 126 is provided on the side of the cooling plate 124 facing away from the fins 123, the cooling fin 126 is installed in the connecting frame 125, and the cooling fin 126 faces away from the cooling plate 124
  • a heat dissipation device the heat dissipation device includes a heat dissipation backplane 128 fixed with the connection frame 125, a number of heat dissipation fins 127 are fixed on the heat dissipation backplane 128, and a heat dissipation fan 129 is fixed on the heat dissipation fins 127;
  • the fins 123 perform cooling, the fins 123 can cool the water in the cooling cavity 133 , the cooling fins 127 can radiate the cooling fins 126 , and the cooling fan 129 can radiate the cooling back plate 128 and the cooling fins 127 .
  • one communication groove 120 is disposed close to the lower side of the refrigeration cavity 133
  • the other communication groove 120 is disposed close to the refrigeration cavity.
  • the upper side of the body 133 can be quickly refrigerated for the water in various parts of the cooling cavity 133 .
  • the connection channel 137 includes a connection inlet 136 and a connection outlet 118 , the connection inlet 136 is connected to the pre-cooling cavity 134 , the connection outlet 118 is connected to the refrigeration cavity 133 , and the connection outlet 118 faces the fins 123 ;
  • the water enters the pre-cooling cavity 134 through the cooling water inlet 105 , the water in the pre-cooling cavity 134 enters the connecting channel 137 through the connecting inlet 136 , and then the water in the connecting channel 137 is flushed to the upper fin through the connecting outlet 118 123, so that the water flushed from the connection outlet 118 can be quickly cooled, and the cooling speed of the water can be accelerated.
  • the water inlet method of the cooling water inlet 105 can be directly plugged into a pure water bottle, or the water from the outside, or the water in the water tank 17.
  • the cooling water inlet 105 can be connected in parallel with two water pipes, and one water pipe can supply water to the tank.
  • the water outlet pipe of 17 is plugged in, and the other one can be connected to the external water source, and the other water pipe is provided with a one-way valve, so users can choose from a variety of water supply methods.
  • the dividing assembly 130 includes two horizontal partitions 115, an inclined partition 116 fixed between the two horizontal partitions 115, and a communication pipe 117 fixed on the inclined partition 116.
  • the communication pipe 117 Horizontal arrangement, the inner wall of the communication pipe 117 is the connecting channel 137, the water storage cavity 135 is provided with a support step 141, and the horizontal partition plate 115 located below is placed on the support step 141; the inclined partition plate 116 and two horizontal partition plates 115 It plays the role of isolation and buffers the water entering the refrigeration cavity 133 from the refrigeration water inlet 105 , and the communication pipe 117 plays the role of connecting the pre-cooling cavity 134 and the refrigeration cavity 133 .
  • the upper horizontal partition 115 is provided with a slot 114, the slot 114 is inserted with a plug-in board 112, and one end of the plug-in board 112 extending into the pre-cooling cavity 134 is fixed with a cooling fin 111.
  • the angle between the cooling plate 111 and the insert plate 112 is 90°, the material of the insert plate 112 and the cooling plate 111 is set to metal, such as aluminum alloy, copper, etc.; the temperature of the water in the refrigeration cavity 133 is conducted through the insert plate 112
  • the cooling fins 111 conduct the temperature to the water in the pre-cooling cavity 134 , so that the water in the pre-cooling cavity 134 can be better pre-cooled.
  • a groove 113 is provided at one end of the plug-in board 112 extending into the refrigeration cavity 133 , and the communication pipe 117 is inserted into the groove 113 , thereby limiting the downward position of the plug-in board 112 , and in addition to pre-cooling
  • the upper inner wall of the cavity 134 is provided with a top block 140 , and the lower end of the top block 140 is in contact with the upper side surface of the cooling fin 111 , thereby limiting the positions of the cooling fin 111 and the plug board 112 .
  • the box body 103 includes a lower box body 101 and an upper cover 102 , the lower box body 101 is provided with a connecting opening with an opening facing upward, a connecting groove with an opening facing downward on the upper cover 102 , and the upper end of the lower box body 101 Plugged into the connecting groove, the outer wall of the lower box body 101 is provided with a limiting protrusion 107, the limiting protrusion 107 is provided with a guiding slope, and the upper cover 102 is provided with a limiting groove 106 for the limiting protrusion 107 to be inserted into. , so that the upper cover 102 and the lower box 101 are connected together.
  • the upper cover 102 is provided with an air outlet 104 , and the air outlet 104 is used to lead out the gas in the pre-cooling cavity 134 .
  • the bottom surface of the water storage cavity 135 is fixed with a fixing column 131
  • the fixing column 131 is provided with a hollow hole 138
  • the side wall of the fixing column 131 is provided with a side groove 139
  • the side groove 139 is a hollow hole.
  • 138 is communicated with the refrigeration cavity 133
  • a water outlet pipe 132 is inserted into the hollow hole 138
  • the end of the water outlet pipe 132 away from the fixed column 131 passes through the refrigeration water outlet 110.
  • the bottom of the box body 103 is provided with a drain hole communicating with the hollow hole 138, and a drain plug 109 is inserted into the drain hole.
  • a UV germicidal lamp 119 is also fixed in the refrigeration cavity 133 , and the UV germicidal lamp 119 is used to sterilize the water in the refrigeration cavity 133 .
  • FIG. 4-FIG. 8 it is a schematic structural diagram of the air intake assembly 200, including the installation frame 205, the installation frame 205 includes a middle plate 214 and installation side plates 210 arranged on both sides of the middle plate 214, and two installation side plates 210 An installation sleeve 207 is connected between them. One end of the installation sleeve 207 is installed with the head of the gas cylinder 18 , and the other end is fixed with a connecting sleeve 221 .
  • the connecting sleeve 221 is inserted with an ejector rod 222 , and the ejector rod 222 can be inserted into the connecting sleeve 221
  • the gas cylinder is opened or closed by moving, the side wall of the connecting sleeve 221 is provided with a ventilation interface 215, the inner wall of the connecting sleeve 221 is provided with a ventilation channel 220 that communicates the head of the gas cylinder with the ventilation interface 215, and the ventilation interface 215 is connected to the mixing tank.
  • the air intake holes 311 are connected.
  • the gas cylinder can be opened by pressing the ejector rod 222, so that the gas in the gas cylinder can be transported into the tank body 303 through the ventilation channel 220 and the ventilation interface 215, which is very convenient.
  • a driving shaft 213 is rotatably connected between the two installation side plates 210 , and the driving shaft 213 is arranged near the lower end of the installation side plate 210 .
  • a drive plate 217 is fixed thereon, a pressure plate 211 is rotatably connected between the upper ends of the two installation side plates 210, the pressure plate 211 is arranged above the ejector rod 222, and a connecting rod 212 is rotatably connected to one end of the pressure plate 211 away from the installation side plate 210, and is connected to
  • the rod 212 is provided with a drive slot 218 for the drive plate 217 to be inserted into.
  • the height of the drive slot 218 is greater than the thickness of the drive plate 217.
  • the end of the drive shaft 213 extending out of the mounting side plate 210 is fixed with a rotating handle 204.
  • the shape of the rotating handle 204 Set to L shape.
  • the driving shaft 213 is driven to rotate in the B direction, thereby driving the driving plate 217 to rotate in the B direction. Since the driving plate 217 passes through the driving slot 218, the connecting rod 212 is driven to move downward. At this time, the connecting rod 212 drives the pressing plate 211 to move to the side of the ejector rod 222, and the pressing plate 211 drives the ejector rod 222 to move to the side of the gas cylinder 18, thereby opening the gas cylinder 18; Very labor-saving.
  • a linkage valve 216 is fixed on the side of the middle plate 214 facing the connecting rod 212 .
  • the linkage valve 216 is connected to the air outlet of the mixing tank.
  • the function of the linkage valve 216 is to open the gas cylinder by turning the handle 204 .
  • the linkage valve 216 is in a closed state, so as to prevent the gas from running out of the air outlet of the mixing tank when the mixing tank is inflated, resulting in insufficient inflation; when the handle 204 is turned to reset, the linkage valve 216 is reset, and the linkage valve 216 Open the mixing air outlet of the mixing tank to release the pressure in the mixing tank, thereby avoiding the high air pressure in the mixing tank when the bubble water in the mixing tank needs to be taken.
  • the linkage valve 216 includes a linkage column 238.
  • the linkage column 238 is provided with a linkage hole penetrating both ends of the linkage column.
  • One end of the linkage hole is fixed with a plug 223, and the other end is inserted into
  • the linkage convex ring 228 divides the linkage hole into a linkage air intake chamber 230 and a linkage air outlet chamber 235.
  • the linkage air intake chamber is provided with a sliding column 226.
  • the sliding column 226 can move in the linkage air intake chamber 230, the diameter of the sliding column is smaller than the linkage hole 230 and larger than the inner diameter of the linkage convex ring 228, a linkage spring 224 is provided between the plug 223 and the linkage convex ring 228, and the sliding column 226 will be linked into the linkage.
  • the linkage spring 224 is in a compressed state, the linkage air intake pipe 236 is fixed on the side wall of the linkage column 238 and communicated with the linkage air intake chamber 230, and the side wall of the linkage column 238 is also fixed.
  • a linkage air outlet pipe 237 is fixedly communicated with the linkage air outlet cavity 235, and the linkage air intake pipe 236 is communicated with the air outlet of the mixing tank.
  • the connecting rod 212 is provided with a linkage step 234. Abut.
  • the rotating handle 204 is in a depressed state, and the sliding column 226 completely separates the linkage air inlet chamber 230 from the linkage air outlet chamber 235, and the gas cylinder is in a deflated state.
  • the mixing tank The mixed air outlet of the connecting rod is in a closed state, so that the gas is better mixed in the water; when the rotating handle 204 is released, the ejector rod 222 drives the connecting rod 212 to reset, and the linkage step 234 on the connecting rod 212 drives the linkage abutting rod 239 to the linkage
  • the air outlet cavity 235 is driven, and the linkage rod 239 drives the sliding column 226 to move to the side of the plug 223, thereby connecting the linkage air inlet chamber 230 and the linkage air outlet chamber 235, and the gas in the mixing tank passes through the linkage air intake pipe 236 and the linkage air intake in turn
  • the cavity 230, the interlocking air outlet cavity 235 and the interlocking air outlet pipe 237 come out, so that the gas in the mixing tank is automatically released after the gas filling is completed.
  • a linkage limiting shaft 229 passing through the linkage convex ring 228 is fixed on the sliding column 226 , the diameter of the linkage limiting shaft 229 is smaller than the inner diameter of the linkage convex ring 228 , and the linkage limiting shaft 229 is sleeved with a shaft Seal ring 227, the inner diameter of the shaft seal ring 227 is smaller than the inner diameter of the linkage inner ring, the outer diameter of the shaft seal ring 227 is larger than the inner diameter of the linkage convex ring 228, the shaft seal ring 227 can increase the sliding column 226 to link the intake chamber and the linkage outlet chamber 235 tightness when separated.
  • the plug 223 is threadedly connected with the linkage hole 230 , so that the plug 223 is rotated to adjust the position of the plug 223 , thereby adjusting the force of the linkage spring 224 to the sliding column 226 .
  • the linkage abutment rod 239 includes a linkage first abutment rod 232 and a linkage second abutment rod 231 , a linkage ring groove is provided on the outer wall of the linkage first abutment rod 232 , and an abutment rod sealing ring is sleeved on the linkage ring groove 233, the outer wall of the abutment rod sealing ring 233 abuts against the inner wall of the linkage air outlet cavity 235, the diameter of the linkage second abutment rod 231 is smaller than the inner diameter of the linkage air outlet cavity 235, and the linkage second abutment rod 231 abuts the linkage limit shaft 229.
  • a gas charging switch 219 is fixed on the side of the middle plate 214 facing away from the connecting rod 212 .
  • the driving plate 217 is pressed down, the triggering piece of the gas charging switch 219 is triggered.
  • the device can be a display screen fixed on the housing of the bubble machine, the gas filling switch 219 sends a signal to the control circuit board, and the control circuit board displays the gas filling time on the display screen 22 to remind the user of the gas filling time; of course, the warning device It can also be reminded by sound.
  • the installation sleeve 207 is rotatably connected with the two installation side plates 210, so that the installation sleeve 207 can be rotated to a certain angle, so that the user can rotate the gas cylinder at a comfortable angle to realize the disassembly and assembly of the gas cylinder;
  • the gas cylinders are placed obliquely, which can make the height of the entire bubble machine shorter and more beautiful, and at the same time avoid the height of the bubble machine being too high and children's collision and easy dumping.
  • the head of the gas cylinder is threadedly connected with the installation sleeve 207, and the installation and removal of the gas cylinder are realized by rotating.
  • FIGS. 13-19 it is a schematic structural diagram of the mixing tank assembly 300 , including a tank body 303 , a mixing cavity 316 is arranged in the tank body 303 , and a mixing tank air inlet 311 is provided on the tank body 303 .
  • the water hole 314 and the mixing tank water outlet 342, the mixing tank water outlet 342 is arranged on the lower side wall of the tank body 303, and the fixed water outlet sleeve 310 coaxial with the mixing tank water outlet 342 is fixed on the lower side wall of the tank body 303.
  • the fixed water outlet sleeve 310 is provided with a telescopic water outlet sleeve 305, the inner wall of the telescopic water outlet sleeve 305 is fixed with a water outlet ejector rod 332, and the end of the water outlet ejector rod 332 extending into the mixing cavity 316 is fixed with a water outlet plug head 325, the water outlet The plug 325 is used to open or close the water outlet hole 342 .
  • the tank body 303 is provided with a pressing device that drives the telescopic water outlet sleeve 305 to move up and down.
  • the pressing device includes a pressing plate 304 and two driving cams 327, and the two driving cams 327 are respectively arranged on the telescopic water outlet.
  • the two driving cams 327 are rotatably connected to the tank body 303 through the fixed protruding rods 330.
  • the driving cam 327 is provided with a driving convex column 331, and the pressing plate 304 is rotatably connected to the tank body 303.
  • the driving connecting rod 323 is provided with a driving slot 324 for the corresponding driving convex column 331 to be inserted into.
  • the outer wall of the telescopic water outlet sleeve 305 is fixed with the driving cam
  • the driven bump 329 corresponding to 327 is disposed above the corresponding driving cam 327 , and the outer wall of the driving cam 327 is in contact with the lower side surface of the corresponding driven bump 329 .
  • the driving cam 327 is provided with a first limiting plane 326
  • the lower side of the driven bump 329 is provided with a second limiting plane 328
  • the driving cam 327 is rotated to the first limiting plane 326
  • the water outlet plug 325 is in contact with the second limit plane 328
  • the water outlet hole 342 of the mixing tank is opened; after pressing the pressing plate 304, the driving cam 327 rotates to the first limit plane 326 and the second limit plane 328.
  • the telescopic water outlet sleeve 305 is limited without pressing the pressing plate 304, so that the water outlet can be automatically performed.
  • the bottom of the mixing chamber 316 is connected with a water blocking strut 306
  • the upper end of the water blocking strut 306 is connected with a water blocking plate 309 .
  • the lower side of the water plate 309 is roughly in contact with the water surface in the mixing chamber 316.
  • the tank body 3 is also provided with a mixing tank outlet hole 312, and the water blocking strut 306 is provided with an air outlet channel 315.
  • the air outlet channel 315 communicates the mixing cavity 316 and the mixing tank outlet hole 312, and the mixing tank outlet A safety valve is connected to the air hole 312.
  • the safety valve is in the prior art.
  • the safety valve can be set to a rated air pressure. When a certain air pressure is reached in the mixing chamber 316, the safety valve is automatically opened to release air, so as to avoid the pressure in the mixing chamber 316. is too big.
  • the following is a connection structure of the water blocking strut 306 with the water blocking plate 309 and the mixing cavity 316 respectively.
  • a plug sleeve 318 is fixed on the bottom surface of the mixing cavity 316, and the water blocking support
  • the lower end of the rod 306 is plugged with the plug sleeve 318
  • the upper end of the water blocking strut 306 is fixed with a first water blocking convex ring 308
  • the water blocking plate 309 is fixed with a first water blocking sleeve 307
  • the water blocking rod 306 The upper end of the water-blocking sleeve 307 is inserted into the water-blocking sleeve 307
  • the inner wall of the first water-blocking sleeve 307 is provided with a first anti-rotation groove 320
  • a first anti-rotation groove 320 is fixed on the water-blocking strut 306 .
  • the rotation protrusion 319 is provided with a second anti-rotation groove 322 on the side wall of the plug-in sleeve 318.
  • the lower end of the water blocking strut 306 is fixed with a second anti-rotation protrusion 321 inserted into the second anti-rotation groove 322.
  • the lower end of the water blocking strut 306 is also fixed with a second water blocking convex ring 317 .
  • the tank body 303 includes a lower tank body 302 and an upper tank body 301 .
  • the lower tank body 302 and the upper tank body 301 are threadedly connected, so that the upper tank body 301 and the lower tank body 302 can be detached.
  • the water blocking strut 306 and the water blocking plate 309 can facilitate the installation of the water blocking strut 306 and the water blocking plate 309; when installing the water blocking plate 309, firstly insert the lower end of the water blocking strut 306 with the plug sleeve 318, and then connect the water blocking strut 306 The upper end of the water-blocking sleeve 307 is inserted into the water-blocking sleeve 307, and then the upper tank 301 is screwed onto the lower tank 302 until the upper end of the water-blocking sleeve 307 is in contact with the inner wall of the upper tank 301, so that the water blocking plate 309 The location is limited, and the installation is very convenient.
  • the lower cover body 313 is provided with an accommodating groove 333 with an upward opening, the lower tank body 302 is inserted into the accommodating groove 333, and the lower tank body 302 and the lower cover body 313 It can be detachably connected in the form of snap connection or bolt, and a communication groove 334 for the pressing plate 304 to pass through is provided on the side wall of the lower cover 313 .
  • a rotating plate 335 is rotatably connected to the lower side of the tank body 303.
  • the rotating plate 335 is provided with an insertion slot, and the pressing plate 304 is fixed with an insertion plate 338 that is inserted into the insertion slot.
  • One end of the plug-in board 338 passing through the plug-in slot is fixed with a plug-in protrusion 337 , the lower cover body 313 and the lower tank body 302 can be connected together first, and then the plug-in board 338 is passed through the communication groove of the lower cover body 313 334 is then inserted into the insertion slot until the insertion protrusion 337 passes through the insertion slot, and the installation of the insertion board 338 is completed.
  • two deformation grooves 339 are further provided on the plug board 338 , the two deformation grooves 339 are arranged on both sides of the plug protrusion 337 , and the underside of the plug board 338 is also provided with avoidance
  • the grooves 336 are formed, so that the part of the plug plate 338 on the plug protrusions 337 can be bent better when the plug protrusions 337 pass through the plug grooves.
  • the outer wall of the water outlet ejector rod 332 is fixed with several ejector rod connecting plates 341 , and the several ejector rod connecting plates 341 are evenly distributed around the axis circumference of the water outlet ejector rod 332 .
  • the inner wall is fixed.
  • the outer wall of the telescopic water outlet sleeve 305 is provided with two anti-rotation planes 340 corresponding to the driving cams 327 one-to-one, and the opposite sides of the two driving cams 327 correspond to the corresponding anti-rotation planes 340 respectively.
  • the rotation between the telescopic water outlet sleeve 305 and the fixed water outlet sleeve 310 can be avoided.
  • the bubble machine also includes a bottom shell 20 and a bracket 1.
  • the box body 103 is fixed on the bottom shell 20.
  • the bracket 1 includes a box body cover 21 and an inclined arc plate 23.
  • the box body cover 21 Sleeve on the box body 103, the box body cover 21 is fixedly connected with the box body 103, the inclined arc plate 23 is fixed with one side of the box body cover 21, the lower end of the inclined arc plate 23 is fixed with the bottom shell 20, and the inclined arc plate 23 is provided with There is a placement slot 12, the upper end of the inclined arc plate 23 is fixed with a U-shaped plate 26 with an opening facing downward, the mounting frame 205 is fixedly connected with the U-shaped plate 26, and the gas cylinder 18 is placed on the placement slot 12 on the inclined arc plate 23. Below the rack 205 is a circuit board box.
  • the bracket 1 is connected with a rear cover 13 for opening or closing the placement slot 12, the rear cover 13 and the bracket 1 are connected by a magnetic attraction device, and the rear cover 13 It includes a rear middle plate 8, a rear side plate 7 fixed on both sides of the rear middle plate 8, and a rear upper connecting plate 9 fixed on the upper end of the rear middle plate 8.
  • the opposite sides of the two rear side plates 7 are fixed with a first rear fixing plate.
  • Block 5 the first rear fixing block 5 is provided with a first magnet installation slot 6 with an opening facing the opposite rear side plate 7, a first magnet is installed in the first magnet installation slot 6, and the side of the bracket 1 facing away from the rear side is fixed
  • the second rear fixing block 4 is provided with a second magnet 2 installation slot, and the second magnet 2 is installed in the second magnet 2 installation slot.
  • the back cover 13 and the bracket 1 are connected together, so as to cover the gas cylinder 18 in the placement groove 12
  • the rear cover 13 and the bracket 1 can be separated with a little force, and the replacement of the gas cylinder 18 is very convenient.
  • the rear cover 13 is provided with a gas cylinder protrusion 19, and the gas cylinder protrusion 19 is provided with a gas cylinder groove 10 to which the rear end of the gas cylinder 18 is inserted. , the rear end protrusion of the gas cylinder 18 is just plugged into the gas cylinder groove 10.
  • the refrigeration device passes through the rear middle plate 8 during the use of the bubble machine.
  • the heat dissipation holes are provided for heat dissipation, and the gas cylinder protrusions 19 can prevent the rear middle plate from adhering to the wall, which affects the heat dissipation of the refrigeration device.
  • the bracket 1 is provided with a placing platform 14 , the rear upper connecting plate 9 is placed on the placing platform 14 , the lower end of the bracket 1 is provided with a first lower groove 15 , and the first lower groove 15 is The inner wall is fixed with a first support step 16 , and the lower end of the rear intermediate plate 8 is provided with a lower placement groove 11 placed on the first support step 16 , so as to limit the up and down position of the rear cover 13 when the rear cover 13 and the bracket 1 are connected.
  • a water tank 17 is placed on the upper connecting plate 9 after being placed.
  • the bottom of the water tank 17 is fixed with a water outlet pipe of the water tank 17 that is plugged into the refrigeration water inlet 105.
  • the water tank 17 can hold the gas cylinder 18
  • the upper end of the platform is covered, so that the space above the placing platform 14 can be fully utilized.
  • the use process of the sparkling water bottle first press the button on the bottom shell to control the one-way pump to pump the water in the refrigeration chamber into the mixing chamber, then press the turning handle to flush the gas in the gas bottle into the water in the mixing chamber , complete the mixing of gas and liquid.

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Abstract

本发明公开了一种气泡机,包括:冰胆,冰胆包括箱体,箱体内设有储水腔体,箱体内安装有分割组件,分割组件将储水腔体分割成制冷腔体和预冷腔体,箱体的侧壁上设有与预冷腔体连通的制冷进水口和与制冷腔体连通的制冷出水口,分割组件上设有将预冷腔体和制冷腔体连通的连接通道,箱体上设有用于制冷制冷腔体内水的制冷装置;混合罐组件,包括罐体,罐体内设有混合腔体,罐体上设有混合罐进气孔、混合罐进水孔和混合罐出水孔,混合罐进水孔与制冷出水口连接,气瓶的出气端与混合罐进气孔连接;取气组件,取气组件用于控制气瓶的气进入到混合腔体内。本发明气泡机能够实现快速的对制冷腔体内的水进行制冷。

Description

一种气泡机 技术领域
本发明属于气泡机技术领域,具体涉及一种气泡机。
背景技术
将气瓶内的食品级二氧化碳气体以物理的机械方式经过气泡机操作压入装有纯净(饮用)水的水瓶中,所形成的水溶液就是广义的苏打水,也就是碳酸水,因水中含有丰富的气泡,所以又叫气泡水。
现有的气泡机的加水、制冷、充气和放气泡水的各个动作都是分离的,整个制水过程非常的麻烦,因此需要设计一种将加水、制冷、充气和放气泡水各个动作集成在一起的气泡机。
发明内容
本发明的目的在于提供一种气泡机,能够快速制取气泡水。
为实现上述目的,本发明提供如下技术方案:一种气泡机,包括:
冰胆,所述冰胆包括箱体,所述箱体内设有储水腔体,所述箱体内安装有分割组件,所述分割组件将储水腔体分割成制冷腔体和预冷腔体,所述箱体的侧壁上设有与预冷腔体连通的制冷进水口和与制冷腔体连通的制冷出水口,所述分割组件上设有将预冷腔体和制冷腔体连通的连接通道,所述箱体上设有用于制冷制冷腔体内水的制冷装置;
混合罐组件,包括罐体,所述罐体内设有混合腔体,所述罐体上设有混合罐进气孔、混合罐进水孔和混合罐出水孔,所述混合罐进水孔与制冷出水口连接,气瓶的出气端与混合罐进气孔连接,所述混合腔体内设有设置在进气孔上方的挡水板;
取气组件,取气组件用于控制气瓶的气进入到混合腔体内。
进一步地,所述箱体的侧壁上设有与制冷腔体连通的连通槽,所述箱体上固定有导冷板,所述导冷板上固定有穿过连通槽后延伸进制冷腔体内的翅片,所述导冷板背向翅片的侧面设有制冷片,所述制冷片背向导冷板的一侧设有散热装置,所述连接通道包括连接进口和连接出口,所述连接进口与预冷腔体连接,所述连接出口与制冷腔体连接,所述连接出口朝向翅片。
进一步地,所述罐体的下侧壁上固定有与出水孔同轴线的固定出水套筒,所述固定出水套筒上套设有伸缩出水套筒,所述伸缩出水套筒的内壁固定有出水顶杆,所述出水顶杆延伸进混合腔体的一端固定有出水塞头,所述出水塞头用于将出水孔打开或关闭。
进一步地,所述罐体上设有带动伸缩出水套筒上下移动的按压装置,所述按压装置包括按压板和两个驱动凸轮,两个所述驱动凸轮分别设置在伸缩出水套筒的两侧,两个所述驱动凸轮均通过固定凸杆与罐体转动连接,所述驱动凸轮上设有驱动凸柱,所述按压板与罐体转动连接,所述按压板上设有与驱动凸柱一一对应的驱动连接杆,所述驱动连接杆上设有供对应驱动凸柱插接的驱动插槽,所述伸缩出水套筒的外壁上固定有与驱动凸轮对应的从动凸块,所述从动凸块设置在对应驱动凸轮的上方。
进一步地,所述混合腔体的底部连接有挡水撑杆,所述挡水撑杆的上端与挡水板连接,所述罐体上还设有混合出气孔,所述挡水撑杆内设有出气通道,所述出气通道将混合腔体和混合出气孔连通,所述出气孔上连接有安全阀。
进一步地,所述取气组件,包括安装架,所述安装架包括中间板和设置在中间板两侧的安装侧板,两块所述安装侧板之间连接有安装套,所述安装套的一端供气瓶的头部安装,另一端固定有连接套,所述连接套内插接有顶杆,所述顶杆能够在连接套内移动将气瓶打开或关闭,所述连接套的侧壁上设有通气接口,所述连接套的内壁设有将气瓶的头部与通气接口连通的通气通道,所述通气接口与混合罐连接。
进一步地,两块所述安装侧板之间转动连接有驱动转轴,所述驱动转轴上固定有驱动板,两块所述安装侧板的上端之间转动连接有压板,所述压板设置在顶杆的上方,所述压板远离安装侧板的一端转动连接有连接杆,所述连接杆上设有供驱动板插接的驱动槽,所述驱动转轴延伸出安装侧板的一端固定有转动把手。
进一步地,所述中间板朝向连接杆的侧面固定有联动阀,所述联动阀包括联动柱,所述联动柱的内设有将其两端贯穿的联动孔,所述联动孔的一端固定有堵头,另一端插接有联动抵杆,所述联动孔的内壁固定有联动凸环,所述联动凸环将联动孔分为联动进气腔和联动出气腔,所述联动进气腔内设有滑动柱,所述滑动柱的直径小于联动孔且大于联动凸环的内径,所述堵头和联动凸环之间设有联动弹簧,所述联动柱的侧壁上固定有与联动进气腔连通的联动进气管,所述联动柱的侧壁上还固定有与联动出气腔连通的联动出气管,所述联动进气管与混合罐的混合出气孔连通,所述连接杆上设有联动台阶,所述联动抵杆延伸出联动柱的一端与联动台阶抵接。
进一步地,所述中间板背向连接杆的侧面固定有加气开关,所述驱动板下压时触发加气开关的触发片,所述加气开关上电连接有警示装置。
进一步地,所述安装套转动连接在两块安装侧板之间。
与现有技术相比,本发明的有益效果是:
(1)增加分割组件的情况下,能够使制冷装置将制冷腔体内水快速的制冷,从而在一次性使用完箱体内的水情况下,能够快速的提供冷水,最终可以将制冷腔体内的水通过泵从制冷出水口抽出;
(2)水通过制冷进水口进入到预冷腔体,预冷腔体的水通过连接进口进入到连接通道内,接着连接通道内的水通过连接出口冲到位于上方的翅片上,从而能够对从连接出口冲出水快速制冷,加快了水的制冷速度;
(3)制冷腔体内的水的温度通过插板传导到导冷片上,导冷片再将温度传导到预冷腔体的水中,从而能够更好的对预冷腔体内的水进行预冷;
(4)通过转动把手带动驱动转轴转动,从而带动驱动板转动,由于驱动板穿过驱动槽,从而带动连接杆向下移动,此时连接杆带动压板向顶侧移动,压板通过带动顶杆向气瓶侧移动,从而将气瓶打开,通过设置转动把手和多级铰链结构,取气的十分省力;
(5)转动把手处于下压状态时,此时气瓶处于放气状态,与此同时联动弹簧带动联动柱将联动进气腔和联动出气腔完全隔离开,保证在加气过程中气泡水瓶的出气口关闭,加气完成后松开转动把手,连接杆上的联动台阶带动联动柱将联动进气腔和联动出气腔连通,从而实现气泡水瓶内的气体自动释放;
(6)既能实现气瓶的取气,又能实现取气完成后气泡水瓶的放气,还能实现取气时间过长提醒用户,整个装置结构紧凑;
(7)通过向下按压按压板,从而通过驱动连接杆带动驱动凸轮逆时针转动,驱动凸轮逆时针转动过程中,带动从动凸块向上移动,从而带动伸缩出水套筒上连接的出水塞头向上移动,将出水孔打开来进行出水,结构简单,取水十分的方便;
(8)驱动凸轮转动到第一限位平面和第二限位平面贴合,此时无需按住按压板就限位住了伸缩出水套筒,从而能够自动进行出水,使取水更加的方便;
(9)当气体从进气孔进入到混合腔体内,由于气体的压力比较的大,部分气体冲到挡水板的下侧面后被挡住后返回到水中,增加了气体与水的混合效果。
附图说明
图1为本发明气泡机的结构示意图;
图2为图1的爆炸图;
图3为图1中底壳去掉上部分时的结构示意图;
图4为取气组件的结构示意图;
图5另一个角度的结构示意图;
图6为取气组件的剖视图;
图7为联动阀的结构示意图;
图8为取气组件的爆炸图;
图9为冰胆的结构示意图;
图10为冰胆的爆炸图;
图11为冰胆的剖视图;
图12为固定柱的结构示意图;
图13为混合罐组件的结构示意图;
图14为混合罐组件的剖视图;
图15为混合罐组件的爆炸图;
图16为图15中I处的局部放大图;
图17为图15中II处的局部放大图;
图18为驱动凸柱与驱动插槽连接时的结构示意图;
图19为伸缩出水套筒的结构示意图;
图20为图14中III处的局部放大图;
图21为按压板的结构示意图;
图22为支架的结构示意图;
图23为后盖的结构示意图;
图24为支架的另一个角度的结构示意图。
图中:
1、支架;2、第二磁铁;3、第二磁铁安装槽;4、第二后固定块;5、第一后固定块;6、第一磁铁安装槽;7、后侧板;8、后中间板;9、后上连接板;10、气瓶凹槽;11、下放置凹槽;12、放置槽;13、后盖;14、放置平台;15、第一下凹槽;16、第一支撑台阶;17、水箱;18、气瓶;19、气瓶凸起;20、底壳;21、箱体套;22、显示屏;23、倾斜弧板;26、U型板;
100、冰胆;101、下箱体;102、上盖;103、箱体;104、出气孔;105、制冷进水口;106、限位槽;107、限位凸起;108、制冷装置;109、排水塞;110、制冷出水口;111、导冷片;112、插板;113、凹槽;114、插槽;115、水平隔板;116、倾斜隔板;117、连通管;118、连接出口;119、UV杀菌灯;120、连通槽;121、固定框;122、固定凹槽;123、翅片;
124、导冷板;125、连接框;126、制冷片;127、散热片;128、散热背板;129、散热风扇; 130、分割组件;131、固定柱;132、出水管;133、制冷腔体;134、预冷腔体;135、储水腔体;136、连接进口;137、连接通道;138、中空孔;139、侧槽;140、顶块;141、支撑台阶;
200、取气组件;204、转动把手;205、安装架;207、安装套;210、安装侧板;211、压板;212、连接杆;213、驱动转轴;214、中间板;215、通气接口;216、联动阀;217、驱动板;218、驱动槽;219、加气开关;220、通气通道;221、连接套;222、顶杆;223、堵头;224、联动弹簧;226、滑动柱;227、轴密封环;228、联动凸环;229、联动限位轴;230、联动进气腔;231、联动第二抵杆;232、联动第一抵杆;233、抵杆密封环;234、联动台阶;235、联动出气腔;236、联动进气管;237、联动出气管;238、联动柱;239、联动抵杆;
300、混合罐组件;301、上罐体;302、下罐体;303、罐体;304、按压板;305、伸缩出水套筒;306、挡水撑杆;307、挡水套筒;308、第一挡水凸环;309、挡水板;310、固定出水套筒;311、混合罐进气孔;312、混合罐出气孔;313、下罩体;314、混合罐进水孔;315、出气通道;316、混合腔体;317、第二挡水凸环;318、插接套筒;319、第一防转凸起;320、第一防转槽;321、第二防转凸起;322、第二防转槽;323、驱动连接杆;324、驱动插槽;325、出水塞头;326、第一限位平面;327、驱动凸轮;328、第二限位平面;329、从动凸块;330、固定凸杆;331、驱动凸柱;332、出水顶杆;333、容纳槽;334、连通槽;335、转动板;336、避让槽;337、插接凸起;338、插接板;339、形变槽;340、防转平面;341、顶杆连接板;342、混合罐出水孔。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-图24,本发明提供一种气泡机技术方案:一种气泡机,其特征在于:包括:
冰胆100,如图2和图11所示,冰胆100包括箱体103,箱体103内设有储水腔体135,箱体103内安装有分割组件130,分割组件130将储水腔体135分割成制冷腔体133和预冷腔体134,箱体103的侧壁上设有与预冷腔体134连通的制冷进水口105和与制冷腔体133连通的制冷出水口110,分割组件130上设有将预冷腔体134和制冷腔体133连通的连接通道,箱体103上设有用于制冷制冷腔体133内水的制冷装置;
如图14所示,混合罐组件,包括罐体303,罐体303内设有混合腔体316,罐体303上设有混合罐进气孔311、混合罐进水孔314和混合罐出水孔342,混合罐进水孔314通过抽水泵与制冷出水口110连接,抽水泵将制冷腔体133内水抽到混合腔体316内,气瓶的出气端与混合罐进气孔311连接;
取气组件200,取气组件200用于控制气瓶的气进入到混合腔体316内。
如图11所示,分割组件的材料设置为PP塑料,由于分割组件130将储水腔体135分隔成制冷腔体133和预冷腔体134,制冷装置108对制冷腔体133内的水优先制冷,从而可以制冷腔体133内的水快速制冷,由于制冷腔体133和预冷腔体134之间通过连接通道137连通,制冷腔体133内的水可以通过连接通道137对预冷腔体134内的预冷;在没有增加分割组件130和增加分割组件130两种情况下,制冷装置108对整个箱体103内全部的水制冷到一定温度的时间在两种情况下基本相等,但是增加分割组件130的情况下,能够使制冷装置108将制冷腔体133内水快速的制冷,从而在一次性使用完箱体103内的水情况下,能够快速的提供冷水,最终可以将制冷腔体133内的水通过泵从制冷出水口110抽出。
如图10和图11所示,箱体103的侧壁上设有与制冷腔体133连通的连通槽120,箱体103的外壁上固定有与连通槽120一一对应的固定框121,固定框121上设有固定凹槽122,固定凹槽122内固定有导冷板124,导冷板124上固定有穿过连通槽120后延伸进制冷腔体133内的翅片123,翅片123设有若干片,固定框121上固定有连接框125,导冷板124背向翅片123的侧面设有制冷片126,制冷片126安装在连接框125内,制冷片126背向导冷板124的一侧设有散热装置,散热装置包括与连接框125固定的散热背板128,散热背板128上固定有若干散热片127,散热片127上固定有散热风扇129;制冷片126能够对翅片123进行制冷,翅片123能够对制冷腔体133内的水进行制冷,散热片127能够对制冷片126进行散热,散热风扇129能够对散热背板128和散热片127散热。
如图10和图11所示,箱体103的侧壁上连通槽120优选设有两个,一个连通槽120设置在靠近制冷腔体133的下侧,另一个连通槽120设置在靠近制冷腔体133的上侧,从而能够对制冷腔体133内各个部位的水快速制冷。
如图10和图11所示,连接通道137包括连接进口136和连接出口118,连接进口136与预冷腔体134连接,连接出口118与制冷腔体133连接,连接出口118朝向翅片123;水通过制冷进水口105进入到预冷腔体134,预冷腔体134的水通过连接进口136进入到连接通道137内,接着连接通道137内的水通过连接出口118冲到位于上方的翅片123上,从而能够对从连接出口118冲出水快速制冷,加快了水的制冷速度。
制冷进水口105的进水方式可以选择直接插接纯净水瓶,或者外界的直通的水,还可以是水箱17内的水,制冷进水口105可以并联两根水管,一种一根水管可以供水箱17的出水管插接,另一根可以接外界的水源,并且另一根水管上设有单向阀,多种供水方式供用户选择。
继续看图10和图11,分割组件130包括两块水平隔板115、固定在两块水平隔板115之间的倾斜隔板116和固定在倾斜隔板116上的连通管117,连通管117水平设置,连通管117的内壁为连接通道137,储水腔体135内设有支撑台阶141,位于下方的水平隔板115放置在支撑台阶141上;倾斜隔板116和两块水平隔板115起到隔离的作用,并且起到缓冲从制冷进水口105进入到制冷腔体133内的水,连通管117起到将预冷腔体134和制冷腔体133连通的作用。
继续看图10和图11,位于上方的水平隔板115上设有插槽114,插槽114内插接有插板112,插板112延伸进预冷腔体134的一端固定有导冷片111,导冷片111与插板112角度呈90°,插板112和导冷片111的材料设置为金属,比如铝合金、铜等;制冷腔体133内的水的温度通过插板112传导到导冷片111上,导冷片111再将温度传导到预冷腔体134的水中,从而能够更好的对预冷腔体134内的水进行预冷。
如图10和图11所示,插板112延伸进制冷腔体133的一端设有凹槽113,连通管117与凹槽113插接,从而将插板112向下的位置限制,另外预冷腔体134的上内壁设有顶块140,顶块140的下端与导冷片111的上侧面抵接,从而将导冷片111和插板112的位置限制。
如图9所示,箱体103包括下箱体101和上盖102,下箱体101上设有开口朝上的连接开口,上盖102上开口朝下的连接槽,下箱体101的上端与连接槽插接,下箱体101的外壁上设有限位凸起107,限位凸起107上设有引导斜面,上盖102上设有供限位凸起107插接的限位槽106,从而将上盖102和下箱体101连接在一起,上盖102上设有出气孔104,出气孔104用于导出预冷腔体134内的气体。
如图11和图12所示,储水腔体135的底面固定有固定柱131,固定柱131上设有中空孔138,固定柱131的侧壁设有侧槽139,侧槽139将中空孔138与制冷腔体133连通,中空孔138内插接有出水管132,出水管132远离固定柱131的一端穿出制冷出水口110,可以用泵通过出水管132将制冷腔体133内的冷水抽出;另外,箱体103的底部上设有与中空孔138连通的排水孔,排水孔内插接有排水塞109,可以将排水塞109拔掉,来排出储水腔体135内的水。
另外如图1所示,制冷腔体133内还固定有UV杀菌灯119,UV杀菌灯119用于对制冷腔体133内的水进行杀菌。
如图4-图8所示,为取气组件200的结构示意图,包括安装架205,安装架205包括中间板214和设置在中间板214两侧的安装侧板210,两块安装侧板210之间连接有安装套207,安装套207的一端供气瓶18的头部安装,另一端固定有连接套221,连接套221内插接有顶杆222,顶杆222能够在连接套221内移动将气瓶打开或关闭,连接套221的侧壁上设有通气接口215,连接套221的内壁设有将气瓶的头部与通气接口215连通的通气通道220,通气接口215与混合罐进气孔311连接。
如图3-图8所示,通过按压顶杆222能够将气瓶打开,从而将气瓶内的气体通过通气通道220和通气接口215输送到罐体303内,十分的方便。
为了能够更加省力地将气瓶打开,如图4-图6所示,两块安装侧板210之间转动连接有驱动转轴213,驱动转轴213设置在靠近安装侧板210的下端,驱动转轴213上固定有驱动板217,两块安装侧板210的上端之间转动连接有压板211,压板211设置在顶杆222的上方,压板211远离安装侧板210的一端转动连接有连接杆212,连接杆212上设有供驱动板217插接的驱动槽218,驱动槽218的高度大于驱动板217的厚度,驱动转轴213延伸出安装侧板210的一端固定有转动把手204,转动把手204的形状设置为L型。
如图6所示,通过转动把手204带动驱动转轴213按B方向转动,从而带动驱动板217也按B方方向转动,由于驱动板217穿过驱动槽218,从而带动连接杆212向下移动,此时连接杆212带动压板211向顶杆222侧移动,压板211通过带动顶杆222向气瓶18侧移动,从而将气瓶18打开;通过设置转动把手204和多级铰链结构,取气的十分省力。
如图6和图7所示,中间板214朝向连接杆212的侧面固定有联动阀216,联动阀216与混合罐的出气口连接,联动阀216的作用是通过转动把手204将气瓶打开时,此时联动阀216处于关闭状态,从而避免往混合罐内充气时气体从混合罐的出气口跑出,导致充气不够充分;当转动把手204复位时,联动阀216复位,此时联动阀216将混合罐的混合出气口打开,释放混合罐内的压力,从而避免了需要取混合罐内的气泡水时,混合罐内的气压较大。
如图5、图6和图7所示,联动阀216包括联动柱238,联动柱238的内设有将其两端贯穿的联动孔,联动孔的一端固定有堵头223,另一端插接有联动抵杆239,联动孔的内壁固定有联动凸环228,联动凸环228将联动孔分为联动进气腔230和联动出气腔235,联动进气腔内设有滑动柱226,滑动柱226能够在联动进气腔230内移动,滑动柱的直径小于 联动孔230且大于联动凸环228的内径,堵头223和联动凸环228之间设有联动弹簧224,滑动柱226将联动进气腔230和联动出气腔235完全隔离开时,联动弹簧224处于压缩状态,联动柱238的侧壁上固定有与联动进气腔230连通的联动进气管236,联动柱238的侧壁上还固定有与联动出气腔235连通的联动出气管237,联动进气管236与混合罐的出气口连通,连接杆212上设有联动台阶234,联动抵杆延伸出联动柱238的一端与联动台阶234抵接。
如图6和图7所示,转动把手204处于下压状态,此时滑动柱226将联动进气腔230和联动出气腔235完全隔离开,气瓶处于放气状态,放气过程中混合罐的混合出气口处于关闭状态,从而使气体更好的混合在水中;当松开转动把手204时,顶杆222带动连接杆212复位,连接杆212上的联动台阶234带动联动抵杆239向联动出气腔235内带动,联动抵杆239带动滑动柱226向堵头223侧移动,从而将联动进气腔230和联动出气腔235连通,混合罐内的气体依次通过联动进气管236、联动进气腔230、联动出气腔235和联动出气管237出来,从而在加气完成后对混合罐内的气体自动释放。
如图7所示,滑动柱226上固定有穿过联动凸环228的联动限位轴229,联动限位轴229的直径小于联动凸环228的内径,联动限位轴229上套设有轴密封环227,轴密封环227的内径小于联动内环的内径,轴密封环227的外径大于联动凸环228的内径,轴密封环227能够增加滑动柱226将联动进气腔和联动出气腔235分隔时的密封性。
如图7所示,堵头223与联动孔230螺纹连接,从而转动堵头223,可以调节堵头223的位置,从而调节联动弹簧224给与滑动柱226的作用力。
继续看图7,联动抵杆239包括联动第一抵杆232和联动第二抵杆231,联动第一抵杆232的外壁上设有联动环槽,联动环槽上套设有抵杆密封环233,抵杆密封环233的外壁与联动出气腔235的内壁抵接,联动第二抵杆231的直径小于联动出气腔235的内径,联动第二抵杆231与联动限位轴229抵接。
如图5所示,中间板214背向连接杆212的侧面固定有加气开关219,驱动板217下压时触发加气开关219的触发片,加气开关219上电连接有警示装置,警示装置可以是固定在气泡机壳体上的显示屏,加气开关219发送给控制电路板信号,控制电路板将加气时间显示在显示屏22上,用于提醒用户加气时间;当然警示装置也可以用声音的方式提醒。
如图4所示,安装套207与两块安装侧板210转动连接,从而可以转动安装套207到一定角度,使使用者在舒适的角度转动气瓶,实现气瓶的拆装;还是采用这种方式气瓶倾斜放置,可以将整个气泡机的高度矮,更加的美观,同时避免气泡机的高度过高小孩子碰撞到容易倾倒。
如图6所示,气瓶的头部与安装套207螺纹连接,通过转动的方式实现气瓶的安装和拆卸。
如图13-图19所示,为混合罐组件300的结构示意图,包括罐体303,罐体303内设有混合腔体316,罐体303上设有混合罐进气孔311、混合罐进水孔314和混合罐出水孔342,混合罐出水孔342设置在罐体303的下侧壁,罐体303的下侧壁上固定有与混合罐出水孔342同轴线的固定出水套筒310,固定出水套筒310上套设有伸缩出水套筒305,伸缩出水套筒305的内壁固定有出水顶杆332,出水顶杆332延伸进混合腔体316的一端固定有出水塞头325,出水塞头325用于将出水孔342打开或关闭。
如图14-图18所示,罐体303上设有带动伸缩出水套筒305上下移动的按压装置,按压装置包括按压板304和两个驱动凸轮327,两个驱动凸轮327分别设置在伸缩出水套筒305的两侧,两个驱动凸轮327均通过固定凸杆330与罐体303转动连接,驱动凸轮327上设有驱动凸柱331,按压板304与罐体303转动连接,按压板304上设有与驱动凸柱331一一对应的驱动连接杆323,驱动连接杆323上设有供对应驱动凸柱331插接的驱动插槽324,伸缩出水套筒305的外壁上固定有与驱动凸轮327对应的从动凸块329,从动凸块329设置在对应驱动凸轮327的上方,驱动凸轮327的外壁与对应从动凸块329的下侧面抵接。
继续看图14-图18,通过向下按压按压板304,按压板304相对罐体303转动,从而通过驱动连接杆323带动驱动凸轮27逆时针转动,驱动凸轮327逆时针转动过程中,带动从动凸块329向上移动,从而带动伸缩出水套筒305上连接的出水塞头325向上移动,将混合罐出水孔342打开来进行出水;采用按压的方式进行出水,十分的方便。
如图17和图19所示,驱动凸轮327上设有第一限位平面326,从动凸块329的下侧面设有第二限位平面328,驱动凸轮327转动到第一限位平面326和第二限位平面328贴合时出水塞头325将混合罐出水孔342打开;按下按压板304后,驱动凸轮327转动到第一限位平面326和第二限位平面328贴合,此时无需按住按压板304就限位住了伸缩出水套筒305,从而能够自动进行出水。
如图14所示,混合腔体316的底部连接有挡水撑杆306,挡水撑杆306的上端连接有挡水板309,挡水板309设置在混合罐进气孔311的上方,挡水板309的下侧面大致与混合腔体316内的水面贴合,当气体从混合罐进气孔311进入到混合腔体316内,由于气体的压力比较的大,部分气体冲到挡水板309的下侧面后被挡住后返回到水中,增加了气体与水的混合效果。
如图14所示,罐体3上还设有混合罐出气孔312,挡水撑杆306内设有出气通道 315,出气通道315将混合腔体316和混合罐出气孔312连通,混合罐出气孔312上连接有安全阀,安全阀为现有技术,安全阀可以设定额定气压,当混合腔体316内到达一定气压时,安全阀自动打开实现放气,避免混合腔体316内的压力过大。
下面为挡水撑杆306分别与挡水板309和混合腔体316的一种连接结构,如图14-图17所示,混合腔体316的底面固定有插接套筒318,挡水撑杆306的下端与插接套筒318插接,挡水撑杆306的上端固定有第一挡水凸环308,挡水板309上固定有第一挡水套筒307,挡水撑杆306的上端与挡水套筒307插接,第一挡水套筒307的内壁设有第一防转槽320,挡水撑杆306上固定有与第一防转槽320插接的第一防转凸起319,插接套筒318的侧壁上设有第二防转槽322,挡水撑杆306的下端固定有与第二防转槽322插接的第二防转凸起321,挡水撑杆306的下端还固定有第二挡水凸环317。
如图14所示,罐体303包括下罐体302和上罐体301,下罐体302与上罐体301之间螺纹连接,可以实现上罐体301和下罐体302之间的可拆卸,另外还能够方便挡水撑杆306和挡水板309的安装;安装挡水板309时,先将挡水撑杆306的下端与插接套筒318插接,接着将挡水撑杆306的上端与挡水套筒307插接,然后再将上罐体301拧到下罐体302上,直到挡水套筒307的上端与上罐体301的内壁抵接,从而将挡水板309的位置限制,安装十分的方便。
如图14和15所示,还包括下罩体313,下罩体313上设有开口朝上的容纳槽333,下罐体302与容纳槽333插接,下罐体302与下罩体313可以通过卡接或螺栓的形式可拆卸连接,下罩体313的侧壁上设有供按压板304穿过的连通槽334。
如图18和图20所示,罐体303的下侧面转动连接有转动板335,转动板335上设有插接槽,按压板304上固定有与插接槽插接的插接板338,插接板338穿过插接槽的一端固定有插接凸起337,可以先将下罩体313与下罐体302连接在一起,然后将插接板338穿过下罩体313的连通槽334后插入插接槽内,直到插接凸起337穿过插接槽,完成插接板338的安装。
如图20和图21所示,插接板338上还设有两个形变槽339,两个形变槽339设置在插接凸起337的两侧,插接板338的下侧面还设有避让槽336,从而能够使插接凸起337穿过插接槽过程中,插接凸起337上的插接板338部分更好的发生弯曲。
如图19所示,出水顶杆332的外壁固定有若干顶杆连接板341,若干顶杆连接板341绕出水顶杆332的轴线圆周均匀分布,顶杆连接板341与伸缩出水套筒305的内壁固定。
如图17-图19所示,伸缩出水套筒305的外壁上设有两个与驱动凸轮327一一对应 的防转平面340,两个驱动凸轮327相对的侧面分别与对应的防转平面340贴合,从而能够避免伸缩出水套筒305与固定出水套筒310之间发生转动。
如图1、图2、图3所示,气泡机还包括底壳20和支架1,箱体103固定在底壳20上,支架1包括箱体套21和倾斜弧板23,箱体套21套在箱体103上,箱体套21与箱体103固定连接,倾斜弧板23与箱体套21的一侧固定,倾斜弧板23的下端与底壳20固定,倾斜弧板23上设有放置槽12,倾斜弧板23的上端固定有开口朝下的U型板26,安装架205与U型板26固定连接,气瓶18放置在倾斜弧板23上的放置槽12上,安装架205的下方设有电路板盒。
如图1、图2、图22和图23所示,支架1上连接有用于将放置槽12打开或关闭的后盖13,后盖13和支架1之间通过磁吸装置连接,后盖13包括后中间板8、固定在后中间板8两侧的后侧板7和固定在后中间板8上端的后上连接板9,两块后侧板7相对的侧面均固定有第一后固定块5,第一后固定块5上设有开口朝向相对的后侧板7的第一磁铁安装槽6,第一磁铁安装槽6内安装有第一磁铁,支架1背向后侧的侧面固定有第一磁铁一一对应的第二后固定块4,第二后固定块4设有第二磁铁2安装槽,第二磁铁2安装槽内安装有第二磁铁2。
如图1、图2、图22和图23所示,通过第一磁铁和第二磁铁2的吸合,将后盖13和支架1连接在一起,从而将气瓶18罩住在放置槽12内;当需要更换气瓶18时,只需要稍用力便可将后盖13和支架1分离,更换气瓶18十分的方便。
如图23和图24所示,后盖13上设有气瓶凸起19,气瓶凸起19上设有供气瓶18后端插接的气瓶凹槽10,由于气瓶18倾斜设置,气瓶18的后端凸起刚好与气瓶凹槽10插接,此时由于气瓶凸起19凸出于气泡机的后侧面,由于气泡机使用过程中,制冷装置通过后中间板8的散热孔进行散热,气瓶凸起19能够避免后之间板与墙壁贴合,影响制冷装置的散热。
如图3和图4所示,支架1上设有放置平台14,后上连接板9放置在放置平台14上,支架1的下端设有第一下凹槽15,第一下凹槽15的内壁固定有第一支撑台阶16,后中间板8的下端设有放置在第一支撑台阶16上的下放置凹槽11,从而能够限制后盖13与支架1时后盖13的上下位置。
如图1、图2和图24所示,放后上连接板9上放置有水箱17,水箱17的底部固定有与制冷进水口105插接的水箱17出水管,水箱17可以将气瓶18的上端遮住,从而可以充分利用放置平台14上方的空间。
气泡水瓶的使用过程:首先按下底壳上的按钮,控制单向泵将制冷腔体内的水抽到混合腔体内,然后按下转动把手,将气瓶内的气体冲入混合腔体内的水,完成气体和液体的混合。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (10)

  1. 一种气泡机,其特征在于:包括:
    冰胆,所述冰胆包括箱体,所述箱体内设有储水腔体,所述箱体内安装有分割组件,所述分割组件将储水腔体分割成制冷腔体和预冷腔体,所述箱体的侧壁上设有与预冷腔体连通的制冷进水口和与制冷腔体连通的制冷出水口,所述分割组件上设有将预冷腔体和制冷腔体连通的连接通道,所述箱体上设有用于制冷制冷腔体内水的制冷装置;
    混合罐组件,包括罐体,所述罐体内设有混合腔体,所述罐体上设有混合罐进气孔、混合罐进水孔和混合罐出水孔,所述混合罐进水孔与制冷出水口连接,气瓶的出气端与混合罐进气孔连接,所述混合腔体内设有设置在进气孔上方的挡水板;
    取气组件,取气组件用于控制气瓶的气进入到混合腔体内。
  2. 根据权利要求1所述的一种气泡机,其特征在于:所述箱体的侧壁上设有与制冷腔体连通的连通槽,所述箱体上固定有导冷板,所述导冷板上固定有穿过连通槽后延伸进制冷腔体内的翅片,所述导冷板背向翅片的侧面设有制冷片,所述制冷片背向导冷板的一侧设有散热装置,所述连接通道包括连接进口和连接出口,所述连接进口与预冷腔体连接,所述连接出口与制冷腔体连接,所述连接出口朝向翅片。
  3. 根据权利要求1所述的一种气泡机,其特征在于:所述罐体的下侧壁上固定有与出水孔同轴线的固定出水套筒,所述固定出水套筒上套设有伸缩出水套筒,所述伸缩出水套筒的内壁固定有出水顶杆,所述出水顶杆延伸进混合腔体的一端固定有出水塞头,所述出水塞头用于将出水孔打开或关闭。
  4. 根据权利要求3所述的一种气泡机,其特征在于:所述罐体上设有带动伸缩出水套筒上下移动的按压装置,所述按压装置包括按压板和两个驱动凸轮,两个所述驱动凸轮分别设置在伸缩出水套筒的两侧,两个所述驱动凸轮均通过固定凸杆与罐体转动连接,所述驱动凸轮上设有驱动凸柱,所述按压板与罐体转动连接,所述按压板上设有与驱动凸柱一一对应的驱动连接杆,所述驱动连接杆上设有供对应驱动凸柱插接的驱动插槽,所述伸缩出水套筒的外壁上固定有与驱动凸轮对应的从动凸块,所述从动凸块设置在对应驱动凸轮的上方。
  5. 根据权利要求1所述的一种气泡机,其特征在于:所述混合腔体的底部连接有挡水撑杆,所述挡水撑杆的上端与挡水板连接,所述罐体上还设有混合出气孔,所述挡水撑杆内设有出气通道,所述出气通道将混合腔体和混合出气孔连通,所述出气孔上连接有安全阀。
  6. 根据权利要求1所述的一种气泡机,其特征在于:所述取气组件,包括安装架,所述安装架包括中间板和设置在中间板两侧的安装侧板,两块所述安装侧板之间连接有安装套,所述安装套的一端供气瓶的头部安装,另一端固定有连接套,所述连接套内插接有顶杆,所述 顶杆能够在连接套内移动将气瓶打开或关闭,所述连接套的侧壁上设有通气接口,所述连接套的内壁设有将气瓶的头部与通气接口连通的通气通道,所述通气接口与混合罐连接。
  7. 根据权利要求6所述的一种气泡机,其特征在于:两块所述安装侧板之间转动连接有驱动转轴,所述驱动转轴上固定有驱动板,两块所述安装侧板的上端之间转动连接有压板,所述压板设置在顶杆的上方,所述压板远离安装侧板的一端转动连接有连接杆,所述连接杆上设有供驱动板插接的驱动槽,所述驱动转轴延伸出安装侧板的一端固定有转动把手。
  8. 根据权利要求7所述的一种气泡机,其特征在于:所述中间板朝向连接杆的侧面固定有联动阀,所述联动阀包括联动柱,所述联动柱的内设有将其两端贯穿的联动孔,所述联动孔的一端固定有堵头,另一端插接有联动抵杆,所述联动孔的内壁固定有联动凸环,所述联动凸环将联动孔分为联动进气腔和联动出气腔,所述联动进气腔内设有滑动柱,所述滑动柱的直径小于联动孔且大于联动凸环的内径,所述堵头和联动凸环之间设有联动弹簧,所述联动柱的侧壁上固定有与联动进气腔连通的联动进气管,所述联动柱的侧壁上还固定有与联动出气腔连通的联动出气管,所述联动进气管与混合罐的混合出气孔连通,所述连接杆上设有联动台阶,所述联动抵杆延伸出联动柱的一端与联动台阶抵接。
  9. 根据权利要求8所述的一种气泡机,其特征在于:所述中间板背向连接杆的侧面固定有加气开关,所述驱动板下压时触发加气开关的触发片,所述加气开关上电连接有警示装置。
  10. 根据权利要求6所述的一种气泡机,其特征在于:所述安装套转动连接在两块安装侧板之间。
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