Ice-making, bubble-making and water-purifying all-in-one machine
By designing horizontally and vertically arranged storage compartments and support structures in the water purifier, the problem of non-compact structure of the water purifier is solved, realizing a multi-functional water purifier and reducing the overall space occupied by the water purifier.
Patent Information
- Application Number
- CN202423084545.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-13
AI Technical Summary
The structural design of the filter module and cooler module in existing water purifiers results in insufficient purification efficiency and a large space occupation, making the structure of the water purifier not compact enough.
Design an integrated ice maker, bubble aerator, and water purifier, comprising a first and second receiving chamber arranged horizontally within the machine body, an ice maker support, a mounting bracket, and the second receiving chamber within the machine body, a water tank and a heating module arranged vertically, a water tank, a heating module, and a booster pump arranged vertically, and a bubble aerator assembly, a pre-filter, and a main filter arranged vertically, forming a compact structural design.
It features a compact structure and diverse functions, providing pure water, hot water, room temperature water, ice water, and sparkling water. It is highly practical and reduces the overall space occupied by the water purifier.
Smart Images

Figure CN223610459U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to water purifier technical field, especially relate to a kind of ice, bubble and water purifier integrated machine. BACKGROUND
[0002] Chinese patent document No.CN116057003A was published on May 2, 2023, which discloses a water purifier. The water purifier can include a main body and a water supply module. The water supply module is connected to the main body and is configured to supply purified water in the main body to a user. The main body can include a filter module and a cooling and heating module. The filter module includes one or at least two filters for producing purified water by using raw water. The filter module can include one or at least two filters, a first inflow and outflow section, and a first flow path connected to the filters. The cooling and heating module is used to cool or heat the water purified by the filter module. The cooling and heating module can include a heating device, a cooling device, and a water tank. The filter module and the cooling and heating module of the water purifier are arranged vertically. The heating device, the cooling device, and the water tank are arranged horizontally. This arrangement results in a larger occupied space in the vertical and horizontal directions of the water purifier, which leads to an insufficiently compact structure of the water purifier and increases the overall occupied space of the water purifier.
[0003] Therefore, it is necessary to make further improvements. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing an ice, bubble and water purifier integrated machine with simple structure, small occupied space, multiple functions, good user experience and strong practicality to overcome the shortcomings of the prior art.
[0005] An ice, bubble and water purifier integrated machine designed to achieve this purpose includes a machine body. The machine body is characterized by a first containing bin and a second containing bin arranged horizontally inside the machine body. An ice-making bracket and a mounting bracket are arranged in the first containing bin. The ice-making bracket, the mounting bracket, and the second containing bin are arranged horizontally. An ice-making mechanism is arranged on the ice-making bracket. A water tank, a heating module, and a booster pump are arranged on the mounting bracket. The water tank and the heating module are arranged vertically. The water tank, the heating module, and the booster pump are arranged vertically. A bubble filling assembly, a front filter cartridge, and a main filter cartridge are arranged vertically in the second containing bin. The front filter cartridge, the booster pump, the main filter cartridge, the water tank, and the heating module are sequentially connected. The front filter cartridge, the booster pump, the main filter cartridge, and the ice-making mechanism are sequentially connected.
[0006] The body is provided with a first water outlet and a second water outlet, a first containing bin is provided with a solenoid valve group, the solenoid valve group comprises a first solenoid valve, a second solenoid valve, a third solenoid valve and a fourth solenoid valve, a front filter element, the first solenoid valve and a booster pump are sequentially communicated, a main filter element is communicated with the first water outlet, an ice making mechanism is communicated with the second water outlet, the main filter element, the second solenoid valve, a water tank, a heating module and the second water outlet are sequentially communicated, the main filter element, the third solenoid valve and the second water outlet are sequentially communicated, the main filter element, the fourth solenoid valve and the booster pump are sequentially communicated, the booster pump is communicated with the main filter element, and a circulating water circuit is formed.
[0007] The solenoid valve group further comprises a fifth solenoid valve, the body is provided with a drainage device and a water receiving box, an ice making support is provided with a diaphragm pump assembly, the main filter element, the fifth solenoid valve and the drainage device are sequentially communicated, the water receiving box is located below the first water outlet and the second water outlet, and the water receiving box, the diaphragm pump assembly and the drainage device are sequentially communicated.
[0008] The ice making mechanism comprises an ice making module, a compressor and a condenser, the ice making module comprises an ice making chamber, an evaporator and a water box, the water box is rotationally arranged in the ice making chamber, the evaporator is located in the ice making chamber, the evaporator comprises a U-shaped evaporating pipe, a plurality of ice making columns are arranged at the bottom of the evaporating pipe, and the evaporating pipe is communicated with the ice making columns, and when the water box is in a standby state, the ice making columns extend into the water box; the condenser comprises a spiral condensing pipe, and the condensing pipe is communicated with the evaporating pipe.
[0009] A pushing plate is rotationally arranged at the side of the water box, the ice making module further comprises an ice crushing chamber, the ice crushing chamber is communicated with the ice making chamber, when the water box rotates to a first position, the ice blocks on the ice making columns fall into the ice making chamber, and when the water box rotates to the standby state, the pushing plate pushes the ice blocks in the ice making chamber into the ice crushing chamber; a screw rod is rotationally arranged in the ice crushing chamber, one end of the ice crushing chamber is provided with an ice outlet, and the screw rod pushes the ice blocks in the ice crushing chamber to the ice outlet when rotating.
[0010] The condensing pipe comprises an outer pipe and an inner pipe, a refrigeration channel for refrigerant passing is arranged on the inner pipe, and a heat dissipation channel for cooling water passing is arranged between the outer pipe and the inner pipe; a refrigeration connector for connecting the compressor is arranged at the top of the condensing pipe, the refrigeration connector is connected with the inner pipe, and the refrigeration connector is communicated with the refrigeration channel; an ice making connector for connecting the evaporating pipe is arranged at the bottom of the condensing pipe, the ice making connector is connected with the inner pipe, and the ice making connector is communicated with the refrigeration channel; a water inlet pipe is arranged at the top of the condensing pipe, the water inlet pipe is connected with the outer pipe, and the water inlet pipe is communicated with the heat dissipation channel; a water outlet pipe is arranged at the bottom of the condensing pipe, the water outlet pipe is connected with the outer pipe, and the water outlet pipe is communicated with the heat dissipation channel.
[0011] The mounting support comprises a supporting plate, a connecting plate and a supporting plate; a first mounting cavity for mounting the water tank is formed between one side of the connecting plate and the supporting plate, a second mounting cavity for mounting the heating module is formed between the other side of the connecting plate and the first containing cavity, a third mounting cavity for mounting the booster pump is formed between the supporting plate and the supporting plate, and the first mounting cavity, the second mounting cavity and the third mounting cavity are independently arranged.
[0012] The body is provided with a front panel covering the front side of the first containing cavity and the second containing cavity, the bubble filling assembly is provided with a push switch, a movable connecting rod assembly is arranged between the bubble filling assembly and the inner side of the front panel, the connecting rod assembly is movable and triggers the push switch, a space is arranged between the front panel and the bubble filling assembly for the end of the connecting rod assembly to move, the connecting rod assembly is limited on the space and partially extends to the outside of the inner side of the front panel, a panel opening is arranged on the front panel and communicates with the space, the end of the connecting rod assembly extends to the outside of the panel opening along the space, the end of the connecting rod assembly is operated on the panel opening, and the other end of the connecting rod assembly moves in the direction of triggering the push switch.
[0013] The body is provided with an electric control support near the inner side of the front panel, the electric control support is fixedly provided with an electric control box, the electric control support is provided with a supporting portion, the electric control box is supported on the supporting portion of the electric control support and connected with the supporting portion of the electric control support, and the inner side of the front panel is provided with an operation module for operating the all-in-one machine, the operation module is arranged near the top inner side of the body, the electric control box is correspondingly arranged with the operation module, the operation module is electrically connected with the circuit board of the electric control box, and the circuit board of the electric control box is respectively electrically connected with the ice making mechanism, the heating module and the booster pump.
[0014] The body comprises a water purification main body having an embedded use state and a table use state, the water purification main body is provided with a mounting portion for mounting a slide rail assembly or a shell on the left and right sides, and the slide rail assembly and the shell are respectively detachably mounted on the mounting portion of the water purification main body, so that the slide rail assembly or the shell is mounted on the mounting portion of the water purification main body to switch the embedded use state and the table use state of the water purification main body.
[0015] The ice making, bubble and water purifying all-in-one machine is provided with the first containing cavity and the second containing cavity arranged in a transverse manner in the body, the ice making support, the mounting support and the second containing cavity are arranged in a transverse manner, the water tank and the heating module are arranged in a longitudinal manner, the water tank, the heating module and the booster pump are arranged in an up-down manner, and the bubble filling assembly, the front filter element and the main filter element are arranged in a longitudinal manner, so that the up-down-left-right-front-back space of the body can be fully utilized, the structure of the whole machine is more compact, the volume and the occupied space of the whole machine are reduced, the ice making, bubble and water purifying all-in-one machine has the functions of pure water, hot water, normal temperature water, ice water, ice making and bubble water, and is high in practicability. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1It is integral machine's overall structure schematic view in an embodiment of the utility model.
[0017] Figure 2 It is integral machine's sectional view in an embodiment of the utility model.
[0018] Figure 3 It is integral machine's water route view in the first application example of an embodiment of the utility model.
[0019] Figure 4 It is integral machine's water route view in the second application example of an embodiment of the utility model.
[0020] Figure 5 It is ice making mechanism and ice making support's assembly structure schematic view in an embodiment of the utility model.
[0021] Figure 6 It is ice making mechanism and ice making support's assembly structure schematic view in another orientation in an embodiment of the utility model.
[0022] Figure 7 It is ice making mechanism and ice making support's partial structure schematic view in an embodiment of the utility model.
[0023] Figure 8 It is ice making support and ice making module's assembly structure schematic view in an embodiment of the utility model.
[0024] Figure 9 It is ice making module's partial structure schematic view in an embodiment of the utility model.
[0025] Figure 10 It is water box's overall structure schematic view in an embodiment of the utility model.
[0026] Figure 11 It is condenser's overall structure schematic view in an embodiment of the utility model.
[0027] Figure 12 It is condenser's sectional view in an embodiment of the utility model.
[0028] Figure 13 It is Figure 12 Enlarged structure schematic view in B place.
[0029] Figure 14 It is evaporator's overall structure schematic view in an embodiment of the utility model.
[0030] Figure 15 It is integral machine's sectional view in another orientation in an embodiment of the utility model.
[0031] Figure 16 It is integral machine's partial structure exploded view in an embodiment of the utility model.
[0032] Figure 17 The side view of the mounting support in an embodiment of the utility model.
[0033] Figure 18 The partial structure schematic view of the all-in-one machine in an embodiment of the utility model.
[0034] Figure 19 The structure schematic view of the connecting rod assembly in the standby state in an embodiment of the utility model.
[0035] Figure 20 The structure schematic view of the connecting rod assembly in the active state in an embodiment of the utility model.
[0036] Figure 21 The overall structure schematic view of the bubble filling assembly in an embodiment of the utility model.
[0037] Figure 22 The overall structure schematic view of the water purification main body in an embodiment of the utility model.
[0038] Figure 23 The partial structure schematic view of the all-in-one machine in another orientation in an embodiment of the utility model.
[0039] Figure 24 The overall structure schematic view of the electric control box in an embodiment of the utility model.
[0040] Figure 25 The overall structure schematic view of the electric control box in another orientation in an embodiment of the utility model.
[0041] Figure 26 The three-dimensional sectional structure schematic view of the electric control box and the water tank installation in an embodiment of the utility model.
[0042] Figure 27 The exploded structure schematic view of the all-in-one machine in an embodiment of the utility model.
[0043] Figure 28 The exploded structure schematic view of the all-in-one machine in another orientation in an embodiment of the utility model.
[0044] Figure 29 The partial structure schematic view of the all-in-one machine in a third orientation in an embodiment of the utility model.
[0045] Figure 30 The overall structure schematic view of the water purification main body in the embedded use state in an embodiment of the utility model.
[0046] Figure 31 The structure schematic view of the slide rail assembly disassembled on the water purification main body in an embodiment of the utility model. DETAILED DESCRIPTION
[0047] The utility model is further described below in combination with the drawings and examples.
[0048] Referring to Figures 1-31 , the ice-making, bubble and water purifying integrated machine comprises a machine body 1, a first containing bin 2 and a second containing bin 3 arranged horizontally are arranged in the machine body 1, the second containing bin 3 is formed between the first containing bin 2 and an outer shell 60, an ice-making support 4 and a mounting support 5 are arranged in the first containing bin 2, the ice-making support 4, the mounting support 5 and the second containing bin 3 are arranged horizontally (left and right), an ice-making mechanism is arranged on the ice-making support 4, a water tank 6, a heating module 7 and a booster pump 8 are arranged on the mounting support 5, the water tank 6 and the heating module 7 are arranged longitudinally (front and back), the water tank 6, the heating module 7 and the booster pump 8 are arranged vertically, a bubble filling assembly 9, a front filter element 10 and a main filter element 11 arranged longitudinally are arranged in the second containing bin 3, the front filter element 10, the booster pump 8, the main filter element 11, the water tank 6 and the heating module 7 are sequentially communicated, and the front filter element 10, the booster pump 8, the main filter element 11 and the ice-making mechanism are sequentially communicated.
[0049] A first water outlet 13 and a second water outlet 14 are arranged on the machine body 1, an electromagnetic valve group 15 is arranged in the first containing bin 2, the electromagnetic valve group 15 comprises a first electromagnetic valve 16, a second electromagnetic valve 17, a third electromagnetic valve 18 and a fourth electromagnetic valve 19, the front filter element 10, the first electromagnetic valve 16 and the booster pump 8 are sequentially communicated, the main filter element 11 is communicated with the first water outlet 13, the first water outlet 13 is used for outputting pure water, the ice-making mechanism is communicated with the second water outlet 14, the main filter element 11, the second electromagnetic valve 17, the water tank 6, the heating module 7 and the second water outlet 14 are sequentially communicated, a hot water waterway is formed, the second electromagnetic valve 17 controls the opening and closing of the hot water waterway, the main filter element 11, the third electromagnetic valve 18 and the second water outlet 14 are sequentially communicated, a normal-temperature water waterway is formed, the third electromagnetic valve 18 controls the opening and closing of the normal-temperature water waterway, the first water outlet 13 and the second water outlet 14 are faucets, the main filter element 11, the fourth electromagnetic valve 19 and the booster pump 8 are sequentially communicated, the booster pump 8 is communicated with the main filter element 11, a circulating waterway is formed, and the TDS value of the main filter element 11 can be reduced through the operation of the circulating waterway.
[0050] The electromagnetic valve group 15 further comprises a fifth electromagnetic valve 20, the body 1 is provided with a water drainage device 21 and a water receiving box 22, the ice making support 4 is provided with a diaphragm pump assembly 23, the main filter core 11, the fifth electromagnetic valve 20 and the water drainage device 21 are sequentially communicated to form a wastewater waterway, and after the all-in-one machine is used for a long time, pollutants in the filter core are easy to accumulate, and a large amount of wastewater is generated, which is discharged out of the all-in-one machine through the wastewater waterway; the water drainage device 21 can be a wastewater pipe; the water receiving box 22 is located below the first water outlet 13 and the second water outlet 14, the water receiving box 22, the diaphragm pump assembly 23 and the water drainage device 21 are sequentially communicated, the water receiving box 22 is used for receiving water flowing out of the water outlet to avoid wetting the ground or the table top, and the diaphragm pump assembly 23 and the water drainage device 21 can discharge water in the water receiving box 22 out of the all-in-one machine.
[0051] The output end of the main filter core 11 is connected with a flow meter 62, and the flow meter 20 is communicated with the first water outlet 13, the ice making mechanism, the second electromagnetic valve 17, the third electromagnetic valve 18 and the fourth electromagnetic valve 19 respectively.
[0052] Further comprising a plurality of pipeline joints 63, the pipeline joints 63 include a water inlet joint, a water outlet joint, a water drainage joint and a reserved joint, the pre-filter core 10 is connected with a water source through the water inlet joint, the flow meter 62 is connected with the first water outlet 13 through the water outlet joint, the water receiving box 22 is connected with the diaphragm pump assembly 23 through the water drainage joint, and the heating module 7, the ice making mechanism and the third electromagnetic valve 18 are connected with the second water outlet 14 through the reserved joint respectively, and a plurality of second water outlets 14 can be arranged.
[0053] The pre-filter core 10 is a PPC filter core, and the main filter core 11 is an RO filter core.
[0054] The ice making mechanism comprises an ice making module 12, a compressor 28 and a condenser 29, the ice making module 12 comprises an ice making chamber 24, an evaporator 25 and a water box 26, the water box 26 is rotationally arranged in the ice making chamber 24, the evaporator 25 is located in the ice making chamber 24, the evaporator 25 comprises a U-shaped evaporating pipe 27, a plurality of ice making columns 30 are arranged at the bottom of the evaporating pipe 27, and the evaporating pipe 27 is communicated with the ice making columns 30, the water box 26 is in a standby state (as shown in the figure), and the ice making columns 30 extend into the water box 26; the condenser 29 comprises a spiral condensing pipe 31, and the condensing pipe 31 is communicated with the evaporating pipe 27; after the refrigerant enters the evaporating pipe 27 and the ice making columns 30, the refrigerant absorbs the heat of the water in the water box 26 through vaporization, so that the water in the water box 26 becomes ice, and then ice blocks are formed on the outer periphery of the ice making columns 30. Figure 7
[0055] A pushing plate 32 is rotationally arranged at the side of the water box 26, and the ice making module 12 further comprises an ice crushing chamber 33, the ice crushing chamber 33 is communicated with the ice making chamber 24, and the water box 26 rotates to a first position A (as shown in the figure). Figure 9 When the ice cubes on the ice making column 30 fall into the ice making chamber 24, the water box 26 is reset to the standby state, and the push plate 32 pushes the ice cubes in the ice making chamber 24 into the crushed ice chamber 33; the screw rod 34 is rotatably arranged in the crushed ice chamber 33, one end of the crushed ice chamber 33 is provided with an ice outlet 35, and the ice cubes in the crushed ice chamber 33 are pushed to the ice outlet 35 when the screw rod 34 rotates; at the same time, the ice cubes are crushed when the screw rod 34 rotates, and the ice cubes fall into the ice receiving tray of the all-in-one machine through the ice outlet 35, thereby realizing ice dispensing.
[0056] One end of the ice making chamber 24 is externally provided with a first motor 64, the first motor 64 is drivingly connected with the water box 26, the first motor 64 drives the water box 26 to rotate, one end of the crushed ice chamber 33 is externally provided with a second motor 65, and the second motor 65 is drivingly connected with the screw rod 34, and the second motor 65 drives the screw rod 34 to rotate.
[0057] The condensing pipe 31 comprises an outer pipe 36 and an inner pipe 37, the inner pipe 37 is provided with a refrigeration channel 38 for passing refrigerant, the compressor 28, the refrigeration channel 38 and the evaporating pipe 27 are sequentially communicated, the outer pipe 36 and the inner pipe 37 are provided with a heat dissipation channel 39 for passing cooling water, the compressor 28 compresses the refrigerant into high-temperature and high-pressure gas, the high-temperature and high-pressure gas is introduced into the refrigeration channel 38, and the cooling water is introduced into the heat dissipation channel 39 at the same time, the cooling water cools and dissipates heat of the refrigerant in the refrigeration channel 38, and the high-temperature and high-pressure gas in the refrigeration channel 38 becomes high-pressure liquid after being cooled, and then the high-pressure liquid is introduced into the evaporating pipe 27; this structure cancels the heat dissipation mode of the traditional condenser air cooling and uses the heat dissipation mode of water cooling, so that the fan can be cancelled, thereby simplifying the structure of the condenser and reducing the occupied space.
[0058] The condensing pipe 31 is provided with a refrigeration connector 40 at the top for connecting the compressor 28, the refrigeration connector 40 is connected with the inner pipe 37, and the refrigeration connector 40 is communicated with the refrigeration channel 38, the refrigeration connector 40 is connected with the compressor 3 through a first pipeline 66, and the condensing pipe 31 is provided with an ice making connector 41 at the bottom for connecting the evaporating pipe 27, the ice making connector 41 is connected with the inner pipe 37, and the ice making connector 41 is communicated with the refrigeration channel 38, and the ice making connector 41 is connected with the evaporating pipe 27 through a second pipeline 67.
[0059] The condensing pipe 31 is provided with a water inlet pipe 42 at the top, the water inlet pipe 42 is connected with the outer pipe 36, and the water inlet pipe 42 is communicated with the heat dissipation channel 39, one end of the water inlet pipe 32 is provided with a water inlet connector 68, the water inlet connector 68 is connected with the front filter element 10 of the all-in-one machine through a pipeline, and the cooling water is introduced into the heat dissipation channel 39 through the water inlet connector 68 and the water inlet pipe 42.
[0060] The bottom of the condenser pipe 31 is provided with a drain pipe 43 connected to the outer pipe 36 and communicating with the heat dissipation channel 39. The drain pipe 43 is provided with a drain joint 69 at one end, which is connected to a drain pipe. The cooling water in the heat dissipation channel 39 is discharged out of the all-in-one machine in sequence through the drain pipe 43 and the drain joint 69.
[0061] The ice making support 4 is provided with a plurality of mounting columns 70 distributed around the periphery, each mounting column 70 forming a positioning cavity 71. The ice making module 12 is positioned and mounted on the top of the positioning cavity 71, and the compressor 28 and the condenser 29 are installed inside the positioning cavity 71 and located below the ice making module 12. The horizontal and vertical spaces of the ice making support 4 can be fully utilized, and the layout of the ice making mechanism is more compact, thereby reducing the volume of the ice making mechanism and occupying less space.
[0062] The mounting column 70 is provided with a positioning groove 72, and the ice making module 12 is provided with a plurality of positioning blocks 73 distributed around the periphery. The positioning blocks 73 are positioned and inserted into the corresponding positioning grooves 72, so that the ice making module 12 is positioned and mounted on the top of the positioning cavity 71. The positioning blocks 73 are fixed on the mounting column 70 by screws, so that the ice making module 12 is fixed on the ice making support 4.
[0063] The compressor 28 and the condenser 29 are arranged horizontally inside the positioning cavity 71. The ice making support 4 further comprises a bottom plate 74, and the lower end of the mounting column 70 is connected to the bottom plate 74. The compressor 28 is fixed on the bottom plate 74 by screws.
[0064] The front filter element 10, the booster pump 8, the main filter element 11 and the water box 26 are connected in sequence. Water is pumped into the water box 26 through the booster pump 8. In addition, the water box 26 communicates with the second water outlet 14. The water in the water box 26 can also become ice water after being heated by the refrigerant, and the ice water is output to the second water outlet 14.
[0065] In addition, the ice making mechanism can also be an electronic ice tank 75. The electromagnetic valve group 15 further comprises a sixth electromagnetic valve 76. The main filter element 11, the sixth electromagnetic valve 76, the electronic ice tank 75 and the second water outlet 14 are connected in sequence to form an ice water circuit. The electronic ice tank 75 is used to make ice cubes.
[0066] The side of the condenser pipe 31 is welded with a fixing plate 77, which is fixed on the mounting column 70 by screws, so that the condenser 29 is fixed on the mounting column 70.
[0067] The ice making support 4 is provided with a support strip 78 extending inwardly at the lower part, and the bottom of the condenser pipe 31 is supported on the support strip 78. The ice making support 4 is provided with a limiting strip 79 extending inwardly at the upper part, and the top of the condenser pipe 31 abuts against the limiting strip 79, which can position the condenser pipe 31 up and down, and further fix the condenser pipe 31 more firmly on the ice making support 4.
[0068] The mounting bracket 5 comprises a supporting plate 44, a connecting plate 45 and a supporting plate 46; a first mounting cavity 47 for mounting the water tank 6 is formed between one side of the connecting plate 45 and the supporting plate 44, a second mounting cavity for mounting the heating module 7 is formed between the other side of the connecting plate 45 and the first containing bin 2, a third mounting cavity 48 for mounting the booster pump 8 is formed between the supporting plate 46 and the supporting plate 44, the first mounting cavity 47, the second mounting cavity and the third mounting cavity 48 are independently arranged at intervals; the upper part of the mounting bracket 5 is used for mounting the water tank 6, the lower part of the mounting bracket 5 is used for mounting the containing booster pump 8, and the side part of the mounting bracket is used for mounting the heating module 7; the mounting space is formed by the upper part, the lower part and the side part of the mounting bracket 5, and the mounting of three components can be contained by only one mounting bracket 5, so that the structure is compact, the first containing bin 2 does not need to be designed too large, the overall volume of the all-in-one machine is effectively reduced, and the production cost and the transportation space occupied by the all-in-one machine are reduced.
[0069] The connecting plate 45 is arranged to extend upward along the upper part of the supporting plate 44, and the supporting plate 46 is arranged to extend downward along the lower part of the supporting plate 44, so that the first mounting cavity 47 and the third mounting cavity 48 are spaced apart by the supporting plate 44 and arranged at intervals in the upper and lower directions.
[0070] The water tank 6 is supported on the supporting plate 44, and the tank body of the water tank 6 is limited between the inner side of the first containing bin 2 and the connecting plate 45.
[0071] The connecting plate 45 is provided with an assembly hole part 80 for fixing the heating module 7, and the heating module 7 is fixed on the connecting plate 45 through the assembly hole part 80.
[0072] The heating module 7 comprises a mounting box 81 and an instant heater 82, the mounting box 81 is fixed on the connecting plate 45, and the instant heater 82 is fixed on the mounting box 81; a thick film module for heating water is arranged in the instant heater 82.
[0073] The mounting box 81 is provided with a first mounting block 83 and a second mounting block 84 for fixing the instant heater 82, the first mounting block 83 and the second mounting block 84 are arranged to extend along the outer side of the mounting box 81, and the instant heater 82 is limited and mounted between the first mounting block 83 and the second mounting block 84; the mounting box 81 is provided with a temperature sensor for detecting the temperature of the instant heater 82.
[0074] The booster pump 8 is provided with a fixing frame 85 fixed on the bottom of the first containing bin 2, and the fixing frame 85 is provided with a groove for positioning the pump body of the booster pump 8; the supporting plate 44 is provided with two supporting plates 46 arranged at intervals on the left and right sides, and the fixing frame 85 and the booster pump 8 are limited between the two supporting plates 46.
[0075] The supporting plate 46 is bent at one end and forms an extension block 86 abutting against the all-in-one bottom plate 99.
[0076] The connecting plate 45 is vertically arranged on the supporting plate 44, and the end of the supporting plate 44 connected with the connecting plate 45 protrudes outward to support the plate 46, so that a space for taking and placing the supercharger 8 downward is formed below the connecting plate 45.
[0077] The front panel 49 is arranged on the body 1 and covers the front side of the first and second accommodating chambers 2 and 3. The push switch 50 is arranged on the bubble filling assembly 9. The movable link assembly 51 is arranged between the bubble filling assembly 9 and the inner side of the front panel 49 and is movable to trigger the push switch 50. The interval 52 is arranged between the front panel 49 and the bubble filling assembly 9 for the movable link assembly 51 to move. The movable link assembly 51 is limited in the interval 52 and partially extends outward to the inner side of the front panel 49. The panel opening 53 is arranged on the front panel 49 and communicates with the interval 52. One end of the movable link assembly 51 extends to the outside of the panel opening 53 along the interval 52, so that the end of the movable link assembly 51 can be operated on the panel opening 53. The other end of the movable link assembly 51 moves in the direction of triggering the push switch 50.
[0078] The movable link assembly 51 is arranged between the bubble filling assembly 9 and the inner side of the front panel 49 and triggers the push switch 50 when it moves. Thus, the push switch 50 is pressed, the bubble filling assembly 9 injects bubbles into the container, and the movable link assembly 51 is located in the inner side of the front panel 49, which is convenient for the user to operate the movable link assembly 51 in front of the all-in-one machine.
[0079] The fixed support 87 is arranged on the bubble filling assembly 9 corresponding to one side of the push switch 50. The movable link assembly 51 is movably connected with the fixed support 87.
[0080] The movable link assembly 51 includes the first link 88 and the second link 89. One end of the first link 88 is rotatably connected with the fixed support 87. One end of the second link 89 is connected with the first link 88. The other end of the second link 89 is bent to form the pressing end 90 for triggering the push switch 50. The first link 88 drives the second link 89 to move, so that the pressing end 90 presses the push switch 50.
[0081] The other end of the first link 88 is bent to form the operating end 91. The operating end 91 extends downward along the first link 88 and is limited between the bubble filling assembly 9 and the inner side of the front panel 49. The operating end 91 is pressed by external force, so that the first link 88 rotates on the fixed support 87, and the second link 89 moves with the first link 88.
[0082] The panel opening 53 is arranged on the front panel 49 corresponding to the operating end 91. The operating end 91 of the first link 88 is partially exposed to the panel opening 53.
[0083] The push switch 50 is elastically arranged on the bubble filling assembly 9, the link assembly 51 triggers the push switch 50 under the action of external force, and the link assembly 51 is reset when the push switch 50 is elastically reset.
[0084] The bubble filling assembly 9 comprises a gas tank 93 and a cover 94 arranged on the gas tank 93, and the body 1 is provided with a mounting bracket 95, the cover 94 is supported on the mounting bracket 95, and the tank body of the gas tank 93 penetrates the mounting bracket 95.
[0085] The cover 94 is provided with a fixed support 87 rotatably connected with the link assembly 51, and the fixed support 87 is provided with extension arms 96 connected with the bottom of the cover 94.
[0086] The body 1 is provided with an electric control support 54 near the inner side of the front panel 49, the electric control support 54 is fixedly provided with an electric control box 55, the electric control support 54 is provided with a supporting portion 56, the electric control box 55 is supported on the supporting portion 56 of the electric control support 54, and the electric control box 55 is connected with the supporting portion 56 of the electric control support 54; the inner side of the front panel 49 is provided with an operation module 57 for operating the all-in-one machine, the operation module 57 is arranged near the top of the inner side of the body 1, the electric control box 55 is arranged correspondingly to the operation module 57, the operation module 57 is electrically connected with the circuit board of the electric control box 55, and the circuit board of the electric control box 55 is respectively electrically connected with the ice making mechanism, the heating module 7, the booster pump 8 and the electromagnetic valve group 15.
[0087] The all-in-one machine is provided with the electric control support 54 for fixing the electric control box 55, the electric control support 54 is close to the operation module 57, the operation module 57 is electrically connected with the circuit board of the electric control box 55, the electric control support 54 for fixing the electric control box 55 is independently arranged with the front filter element 10 and the main filter element 11, and the front filter element 10 and the main filter element 11 are independently fixed and supported on the all-in-one machine bottom plate 99, so that the electric control support 54 of the electric control box 55 does not need to be designed too large, and the front filter element 10 and the main filter element 11 can be directly removed and cleaned on the all-in-one machine bottom plate 99.
[0088] The electric control support 54 is arranged on the water tank 6, the water tank 6 is provided with transversely extending support arms 97 on the left and right sides, each support arm 97 is provided with a vertically extending fixing arm 98, and the fixing arms 98 on the left and right sides of the water tank 6 and the support arms 97 form the electric control support 54 for fixing and mounting the electric control box 55.
[0089] One end of the fixing arm 98 is bent and forms a supporting portion 100 for fixing and supporting the electric control box 55, the electric control box 55 is supported on the fixing arm 98 and is suspended above the support arm 97, and a lead arrangement interval for accommodating a lead is formed between the electric control box 55 and the support arm 97.
[0090] The electric control box 55 is provided with a connecting lug 101 corresponding to the support part 100, and the connecting lug 101 is fixedly connected with the support part 100 through a fastener; or the electric control box 55 is provided with a buckle that is buckled on the support part 100.
[0091] The electric control box 55 is provided with a lead gap 102 for leading out a lead, and the lead gap 102 is concave, and the lead is limited on the concave lead gap 102.
[0092] The lead gap 102 includes a first lead gap 103 and a second lead gap 104, the first lead gap 103 is provided corresponding to the operation module 57, so that the operation module 57 and the circuit board of the electric control box 55 are electrically connected through the lead; the second lead gap 104 is provided corresponding to the heating module 7, so that the heating module 7 and the circuit board of the electric control box 55 are electrically connected through the lead.
[0093] The electric control box 55 is provided with a clasp 105 for limiting the lead, and a limiting gap 106 is provided between the clasp 105 and the electric control box 55, and the lead is limited on the limiting gap 106 between the clasp 105 and the electric control box 55.
[0094] One end of the clasp 105 is connected with the electric control box 55, the other end of the clasp 105 extends towards the bottom of the electric control box 55, and a limiting gap 106 is formed between the other end of the clasp 105 and the bottom of the electric control box 55.
[0095] The electric control box 55 is provided with a containing cavity for containing the circuit board, and a support block 107 is provided on the inner side of the containing cavity for supporting the circuit board, and a limiting block 108 is provided on the inner side of the containing cavity above the support block 107, the circuit board is supported on the support block 107, and the circuit board is limited between the limiting block 108 and the support block 107.
[0096] The electric control box 55 is provided with an elastic deformation avoiding slot 109 corresponding to the limiting block 108, one end of the limiting block 108 is elastically connected with the electric control box 55 and elastically deformed in the elastic deformation avoiding slot 109 on the inner side of the electric control box 55.
[0097] The machine body 1 includes a water purification main body 58 having an embedded use state and a table use state, and the water purification main body 58 is provided with a mounting part 61 on both sides for mounting a slide rail assembly 59 or a shell 60, and the slide rail assembly 59 and the shell 60 are respectively detachably mounted on the mounting part 61 of the water purification main body 58, so as to install the slide rail assembly 59 or the shell 60 on the mounting part 61 of the water purification main body 58, so as to switch the embedded use state and the table use state of the water purification main body 58.
[0098] The water purification main body 58 is provided with mounting portions 61 on the left and right sides for mounting the slide rail assembly 59 or the shell 60. When a consumer selects an embedded all-in-one machine, the water purification main body 58 is assembled with the slide rail assembly 59. When a consumer selects a table type all-in-one machine, the water purification main body is assembled with the shell 60. In this way, a sales merchant only needs to store water purification main bodies 58 of corresponding sizes in the warehouse, and does not need to store both embedded all-in-one machines and table type all-in-one machines in the warehouse, effectively reducing the warehouse storage pressure of the sales merchant. Moreover, the sales merchant does not need to separately purchase embedded all-in-one machines and table type all-in-one machines from the manufacturer, or purchase both embedded all-in-one machines and table type all-in-one machines at the same time, effectively saving costs.
[0099] The slide rail assembly 59 and the shell 60 are assembly and mounting accessories of the water purification main body 58. Consumers can also purchase the slide rail assembly 59 and the shell 60 at the same time. When the cabinet ordered by a consumer is too small, and the consumer wants to convert the embedded all-in-one machine into a table type all-in-one machine, the consumer can install the shell 60 on the water purification main body 58. Or, when a consumer configures a new household appliance at a later stage, and needs to convert the use state of the all-in-one machine, the consumer can also convert it by himself, meeting the needs of consumers.
[0100] The all-in-one machine bottom plate 99 is formed with mounting portions 61 on the left and right sides, and is provided with connecting portions 110 on the left and right sides for connecting the slide rail assembly 59 or the shell 60. The slide rail assembly 58 and the shell 60 are detachably mounted on the connecting portions 110 of the all-in-one machine bottom plate 99.
[0101] The connecting portion 110 is a screw hole or a buckle hole.
[0102] The water purification main body 58 is provided with a mounting bracket 95, and the mounting bracket 95 is provided with an open slot portion 111. The bubble filling assembly 9 is partially inserted into the open slot portion 111 and supported on the mounting bracket 95, so that the bubble filling assembly 9 is detachably mounted on the mounting bracket 95, and the bubble filling assembly 9 is upwardly separated from the mounting bracket 95.
[0103] The shell 60 is provided with an open window 112. In the open state, the open window 112 forms a dismounting window on the shell 60 for dismounting components of the water purification main body 58. The open window 112 is arranged on the top of the shell 60.
[0104] The shell 60 is provided with a cover 113 corresponding to the open window 112. The cover 113 is detachably mounted on the open window 112 of the shell 60. Alternatively, the cover 113 is movably arranged on the shell 60 to open and close the open window 112 of the water purification main body 58.
[0105] The water purification main body 58 is embeddedly installed in the cabinet body, the water purification main body 58 is pulled out and moved on the cabinet body through the slide rail assembly 59, the water purification main body 58 comprises an all-in-one machine bottom plate 99, the all-in-one machine bottom plate 99 is moved out with the water purification main body 58 on the cabinet body, so as to form a disassembly space of the front filter element 10, the main filter element 11 and / or the bubble filling assembly 9 on the outside of the cabinet body.
[0106] The front panel 49 is provided with an inner side flange 114 on the circumferential edge, the shell 60 is provided with a plug-in edge 115 corresponding to each inner side flange 114, the shell 60 is covered on the water purification main body 58, the plug-in edge 115 is inserted into the inner side flange 114, and the inner side flange 114 covers the plug-in edge 115; the shell 60 is provided with an inner side bending part 116 corresponding to the mounting part 61 on the left and right sides, and the inner side bending part 116 is connected with the mounting part 61, so as to fix the shell 60 on the water purification main body 58.
[0107] The water purification main body 58 is in an embedded use state and is provided with a first handle 92, the first handle 92 is detachably installed on the water purification main body 58, and the shell 60 is provided with a second handle 100.
[0108] The above is the preferred scheme of the utility model, and the basic principle, main features and advantages of the utility model are displayed and described. It should be understood by those skilled in the art that the utility model is not limited by the above examples, and the above examples and the description in the specification only illustrate the principle of the utility model, and various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed. The protection scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. An ice, bubble and water purifying all-in-one machine, comprising a machine body (1), characterized in that: The body (1) is provided with a first containing bin (2) and a second containing bin (3) arranged transversely, the first containing bin (2) is provided with an ice making support (4) and a mounting support (5), the ice making support (4), the mounting support (5) and the second containing bin (3) are arranged transversely, the ice making support (4) is provided with an ice making mechanism, the mounting support (5) is provided with a water tank (6), a heating module (7) and a booster pump (8), the water tank (6) and the heating module (7) are arranged longitudinally, the water tank (6), the heating module (7) and the booster pump (8) are arranged vertically, the second containing bin (3) is provided with a bubble filling assembly (9), a front filter element (10) and a main filter element (11) arranged longitudinally, the front filter element (10), the booster pump (8), the main filter element (11), the water tank (6) and the heating module (7) are sequentially communicated, and the front filter element (10), the booster pump (8), the main filter element (11) and the ice making mechanism are sequentially communicated.
2. The ice, bubble and water purifying all-in-one machine according to claim 1, characterized in that: The body (1) is provided with a first water outlet (13) and a second water outlet (14), the first containing bin (2) is provided with a solenoid valve group (15), the solenoid valve group (15) includes a first solenoid valve (16), a second solenoid valve (17), a third solenoid valve (18) and a fourth solenoid valve (19), the front filter element (10), the first solenoid valve (16) and the booster pump (8) are sequentially communicated, the main filter element (11) is communicated with the first water outlet (13), the ice making mechanism is communicated with the second water outlet (14), the main filter element (11), the second solenoid valve (17), the water tank (6), the heating module (7) and the second water outlet (14) are sequentially communicated, the main filter element (11), the third solenoid valve (18) and the second water outlet (14) are sequentially communicated, the main filter element (11), the fourth solenoid valve (19) and the booster pump (8) are sequentially communicated, and the booster pump (8) is communicated with the main filter element (11), forming a circulating water path.
3. The ice, bubble and water purifying all-in-one machine according to claim 2, characterized in that: The solenoid valve group (15) further includes a fifth solenoid valve (20), the body (1) is provided with a water drainage device (21) and a water receiving box (22), the ice making support (4) is provided with a diaphragm pump assembly (23), the main filter element (11), the fifth solenoid valve (20) and the water drainage device (21) are sequentially communicated, the water receiving box (22) is located below the first water outlet (13) and the second water outlet (14), and the water receiving box (22), the diaphragm pump assembly (23) and the water drainage device (21) are sequentially communicated.
4. The ice, bubble and water purifying all-in-one machine according to claim 3, characterized in that: The ice making mechanism includes an ice making module (12), a compressor (28) and a condenser (29), the ice making module (12) includes an ice making chamber (24), an evaporator (25) and a water box (26), the water box (26) is rotatably arranged in the ice making chamber (24), the evaporator (25) is located in the ice making chamber (24), the evaporator (25) includes a U-shaped evaporating pipe (27), a plurality of ice making columns (30) are arranged at the bottom of the evaporating pipe (27), and the evaporating pipe (27) is communicated with the ice making columns (30), and the ice making columns (30) extend into the water box (26) when the water box (26) is in a standby state; the condenser (29) includes a spiral condensing pipe (31), and the condensing pipe (31) is communicated with the evaporating pipe (27).
5. The ice, bubble and water purifying all-in-one machine according to claim 4, characterized in that: The side of the water box (26) is rotationally provided with a push plate (32), and the ice making module (12) further comprises a crushed ice chamber (33) which is communicated with the ice making chamber (24). When the water box (26) is rotated to the first position (A), the ice cubes on the ice making column (30) fall into the ice making chamber (24), and when the water box (26) is reset to the standby state, the push plate (32) pushes the ice cubes in the ice making chamber (24) into the crushed ice chamber (33). The crushed ice chamber (33) is rotationally provided with a screw rod (34), and one end of the crushed ice chamber (33) is provided with an ice outlet (35). When the screw rod (34) rotates, the ice cubes in the crushed ice chamber (33) are pushed to the ice outlet (35).
6. The ice, bubble and water purifying all-in-one machine according to claim 4, characterized in that: The condensing pipe (31) comprises an outer pipe (36) and an inner pipe (37), and the inner pipe (37) is provided with a refrigerant passage (38) for the refrigerant to pass through. The outer pipe (36) and the inner pipe (37) are provided with a heat dissipation passage (39) for the cooling water to pass through. The condensing pipe (31) is provided at the top with a refrigeration joint (40) for connecting the compressor (28), the refrigeration joint (40) is connected to the inner pipe (37), and the refrigeration joint (40) is communicated with the refrigerant passage (38). The condensing pipe (31) is provided at the bottom with an ice making joint (41) for connecting the evaporating pipe (27), the ice making joint (41) is connected to the inner pipe (37), and the ice making joint (41) is communicated with the refrigerant passage (38). The condensing pipe (31) is provided at the top with a water inlet pipe (42), the water inlet pipe (42) is connected to the outer pipe (36), and the water inlet pipe (42) is communicated with the heat dissipation passage (39). The condensing pipe (31) is provided at the bottom with a drain pipe (43), the drain pipe (43) is connected to the outer pipe (36), and the drain pipe (43) is communicated with the heat dissipation passage (39).
7. The ice, bubble and water purifying all-in-one machine according to claim 1, characterized in that: The mounting bracket (5) comprises a supporting plate (44), a connecting plate (45) and a supporting plate (46). The first mounting cavity (47) for mounting the water tank (6) is formed between one side of the connecting plate (45) and the supporting plate (44). The second mounting cavity for mounting the heating module (7) is formed between the other side of the connecting plate (45) and the first containing bin (2). The third mounting cavity (48) for mounting the booster pump (8) is formed between the supporting plate (46) and the supporting plate (44). The first mounting cavity (47), the second mounting cavity and the third mounting cavity (48) are independently arranged.
8. The ice, bubble and water purifying all-in-one machine according to claim 1, characterized in that: The machine body (1) is provided with a front panel (49) covering the front side of the first and second accommodating bins (2, 3), the bubble filling assembly (9) is provided with a push switch (50), a movable link assembly (51) is arranged between the bubble filling assembly (9) and the inner side of the front panel (49), and the link assembly (51) is movable and triggers the push switch (50) to be pressed; a space (52) is arranged between the front panel (49) and the bubble filling assembly (9) for the end of the link assembly (51) to move, the link assembly (51) is limited on the space (52), and part of the link assembly (51) extends outward from the inner side of the front panel (49); the front panel (49) is provided with a panel opening (53) communicating with the space (52), one end of the link assembly (51) extends to the outside of the panel opening (53) along the space (52), so that the end of the link assembly (51) is operated on the panel opening (53), and the other end of the link assembly (51) moves in the direction of triggering the push switch (50).
9. The ice, bubble and water purifier all-in-one machine according to claim 1, characterized in that: The machine body (1) is provided with an electric control bracket (54) near the inner side of the front panel (49), the electric control bracket (54) is fixedly installed with an electric control box (55), the electric control bracket (54) is provided with a supporting portion (56), the electric control box (55) is supported on the supporting portion (56) of the electric control bracket (54), and the electric control box (55) is connected with the supporting portion (56) of the electric control bracket (54); the inner side of the front panel (49) is provided with an operation module (57) for operating the all-in-one machine, the operation module (57) is arranged near the top inner side of the machine body (1), the electric control box (55) is arranged correspondingly to the operation module (57), and the operation module (57) is electrically connected with the circuit board of the electric control box (55), and the circuit board of the electric control box (55) is respectively electrically connected with the ice making mechanism, the heating module (7) and the booster pump (8).
10. The ice, bubble and water purifying all-in-one machine according to claim 1, characterized in that: The machine body (1) comprises a water purification main body (58) having an embedded use state and a table use state, the water purification main body (58) is provided with a mounting portion (61) for mounting a slide rail assembly (59) or a shell (60) on the left and right sides, and the slide rail assembly (59) and the shell (60) are respectively detachably mounted on the mounting portion (61) of the water purification main body (58), so that the slide rail assembly (59) or the shell (60) is mounted on the mounting portion (61) of the water purification main body (58), so as to switch the embedded use state and the table use state of the water purification main body (58).
Citation Information
Patent Citations
Water purifier and method for controlling same
CN116057003A