Quick-cooling ice-making table water purifying and drinking machine

By using a dual evaporator system and a motor-driven funnel assembly, the water purifier achieves rapid cooling and ice making, with ice cubes prepared within 50 seconds. This solves the problems of slow ice making speed and bacterial growth in ice cubes in existing technologies, improving ice making efficiency and ice quality.

CN120868706APending Publication Date: 2025-10-31NINGBO GRANDWELL ENVIRONMENT TECH CO LTD
View PDF 0 Cites 2 Cited by

Patent Information

Application Number
CN202511243032.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-02
Publication Date
2025-10-31

AI Technical Summary

Technical Problem

Existing water purifiers cannot meet the demand for rapid ice making and large ice production. Furthermore, ice is prone to bacterial growth during storage, resulting in slow ice making and ice dispensing speeds.

Method used

The system employs a dual evaporator system, which uses a compressor, dryer filter, and condenser in conjunction with a cold tank evaporator to rapidly cool water to 1-2 degrees Celsius. The system utilizes a funnel assembly and an ice block conveying assembly driven by a winding motor and a conveyor motor to achieve rapid ice block preparation and output. The ice block making process is completed within 50 seconds.

Benefits of technology

It enables rapid cooling and ice making, allowing ice to be made and used immediately, solving the problems of bacterial growth and slow ice production, and improving ice making efficiency and ice quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120868706A_ABST
    Figure CN120868706A_ABST
Patent Text Reader

Abstract

The invention discloses a quick-cooling ice-making table water purifying and drinking machine. A water refrigerating device comprises a cold container water inlet pump, a cold container, a compressor, a drying filter, a condenser, a cold container evaporator, a reversing electromagnetic valve and a cold container water outlet pump. The ice making device comprises an ice making upper shell, an ice mold evaporator, a compressor, an ice mold evaporator, a deicing electromagnetic valve, a funnel assembly and an ice block conveying assembly, two evaporators, namely a cold container evaporator and the ice mold evaporator are arranged, and pure water in a cold container is refrigerated to 1-2 DEG C through cooperation of the cold container evaporator; when ice blocks are needed, the funnel assembly in the cold container moves upwards, full cold water is conveyed to the ice making module, the ice making module is matched with the ice mold evaporator to make the ice blocks, the funnel assembly moves downwards, the ice block conveying assembly moves to the position below the ice making module, the ice blocks are conveyed out of the ice outlet after ice melting, the whole ice making process is completed within 50 seconds, and quick ice making through cooling and quick ice block making are achieved. The ice blocks are used when being made, and the problems that the ice blocks breed bacteria, and no ice is stored and condensed are effectively solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of water purification equipment technology, and in particular to a countertop water purification machine that quickly cools and makes ice. Background Technology

[0002] Currently, people have increasingly higher demands for water purification and ice making. With continuous breakthroughs in water purification technology, water purifiers generally use reverse osmosis and ultrafiltration technologies to achieve filtration and purification. However, existing water purifiers cannot meet people's needs for rapid ice making, large ice production capacity, and high-quality ice. Ice makers, on the other hand, first inject water or liquid into an evaporator. An internal fan in the evaporator lowers the temperature below freezing, causing the water or liquid to gradually turn into ice. Then, refrigerant is transported to the condenser, where it dissipates heat, gradually hardening the ice. The formed ice is then drained through a drain pipe. Therefore, ice makers do not purify water or liquids.

[0003] To address the aforementioned issues, existing technologies include devices capable of simultaneously purifying and making ice. These devices typically consist of a main water purifier body equipped with a filter, a water storage unit, an ice-making water assembly, and a hot water assembly. During operation, when making hot water, a pump draws water from the purified water tank to the heating element. The heating element and a temperature sensor then heat the water to different temperatures. For cooling water and making ice, water is first pumped from the purified water tank to the cold water tank. The water in the cold water tank is then cooled by a compressor and evaporator. A third pump then draws the cooled water to the ice tank, where it is again cooled by a compressor and evaporator to form ice cubes. Once the ice tank is full, the water overflows from the ice tank and flows back into the cold water tank. While this type of water purifier can achieve the goals of hot water, cold water, and ice making, the following drawbacks exist due to the need for a pump to draw water from the cold water tank to the ice tank during ice making, and the subsequent overflow from the ice tank. 1. The cold water tank and the ice tank are respectively equipped with cold water, and the cold water and ice blocks are respectively cooled by the same evaporator and compressor. The cooling water and ice block making speed is relatively slow.

[0004] 2. Because the ice-making process is relatively slow, the ice cubes are stored in ice boxes. Over time, bacteria and condensation can appear on the ice cubes.

[0005] 3. After the ice-making time is completed, the ice-making motor needs to drive the ice chamber to slowly rotate eccentrically inside the ice block insulation box. When the ice chamber rotates to a certain tilt position, the ice-melting solenoid valve opens, and the ice blocks fall from the ice drop trough into the ice block storage and discharge bucket. This ice discharge speed is relatively slow. Summary of the Invention

[0006] The purpose of this invention is to provide a countertop water purifier that can quickly cool and make ice water, rapidly make ice cubes, and output the ice cubes from the ice outlet in a reasonable and fast manner. The ice cubes are made and used immediately, effectively solving the problems of bacterial growth in ice cubes and the lack of ice storage and condensation.

[0007] The above-mentioned technical objective of the present invention is achieved through the following technical solution: The present invention provides a countertop water purifier with rapid cooling and ice making, including a housing, wherein the housing is provided with a water purification device, a hot water making device, a cooling water device and an ice making device; The water purification device is located on the side of the housing and is used to filter the raw water to obtain pure water, and to supply the pure water to the hot water generating device and the cold water generating device. The hot water generating device is located in the middle of the housing and is connected to the water purification device, used to heat pure water into hot water. The chilled water device includes a cold tank inlet pump connected to the output end of the water purification device, a cold tank connected to the output end of the cold tank inlet pump, a compressor, a dryer filter and a condenser connected to the outside of the cold tank, a cold tank evaporator connected to the compressor inside the cold tank, an ice-making device above the cold tank, and a cold tank outlet pump connected to the bottom of the cold tank. The ice-making device includes an ice-making upper shell located above the cold chamber. An ice-making module is provided inside the ice-making upper shell. The ice-making module is connected to an ice mold evaporator. An ice-melting solenoid valve is connected between the compressor, the ice mold evaporator, and the condenser. A movable funnel assembly is provided below the ice mold evaporator. The funnel assembly is connected to the cold chamber. An ice block conveying assembly is provided on one side of the funnel assembly. The ice block conveying assembly is correspondingly arranged with the ice outlet of the shell.

[0008] Furthermore, the funnel assembly includes a winding motor located at the bottom of the cold chamber, the output end of the winding motor being connected to a winding reel, a telescopic support rod being provided inside the cold chamber, a spring being fitted over the telescopic support rod, an ice funnel being provided at the upper end of the telescopic support rod, and a rope on the winding reel passing through the telescopic support rod and connected to the ice funnel. Furthermore, the telescopic support rod includes at least two sleeve rods that are interlocked, and the ice funnel is connected to the upper sleeve rod.

[0009] Furthermore, the ice conveying assembly includes a conveying motor located on the side of the cold chamber, the output shaft of the conveying motor is connected to a gear, an ice outlet frame is provided between the ice mold evaporator and the ice outlet, the bottom end of the ice outlet frame is provided with a rack that meshes with the gear, and an ice outlet groove is provided above the ice outlet frame.

[0010] Furthermore, a reversing solenoid valve is connected between the cold-tube evaporator and the ice-mold evaporator.

[0011] Furthermore, the cold tank is equipped with an LED germicidal lamp and a water level float.

[0012] Furthermore, an ice outlet and a cold / hot water outlet are provided at one end of the outer shell corresponding to the lower part of the ice outlet groove. An ice outlet baffle assembly is provided inside the ice outlet, and the ice outlet baffle assembly includes a stepper motor. The output shaft of the stepper motor is connected to an ice outlet baffle. A control panel is connected above the ice outlet and the cold / hot water outlet.

[0013] Furthermore, the hot water generating device includes a heating water pump connected to the output end of the water purification device, the output end of the heating water pump is connected to a heating element, the heating element is provided with a switching valve to facilitate normal water flow and sterilization, and the output end of the heating element is connected to the cold / hot water outlet.

[0014] Furthermore, the output end of the cold tank water pump is also connected to the cold / hot water outlet, and a water-air separator is connected between the cold / hot water outlet and the heating element, as well as between the cold / hot water outlet and the cold tank water pump.

[0015] Furthermore, the water purification device includes a raw water tank, and a self-priming pump, a composite filter element, and a wastewater solenoid valve are sequentially connected to the output end of the raw water tank. The wastewater solenoid valve is connected between the raw water tank and the composite filter element. The output end of the composite filter element is equipped with a pure water tank. The input ends of the cold tank inlet pump and the heating water pump are both connected to the pure water tank.

[0016] In summary, the present invention has the following beneficial effects: In the countertop water purifier with rapid ice making of the present invention, two evaporators, one on the cold tank and one on the ice-making module, first cool the water in the cold tank to 1-2 degrees Celsius through the cooperation of a compressor, a dryer filter, a condenser, and the cold tank evaporator. When ice is needed, the funnel assembly in the cold tank is moved upward to send the filled cold water to the ice-making module. Then, the ice-making module and the ice-making evaporator work together to make ice. The funnel assembly is then moved downward to allow the ice water to enter the funnel assembly. At this time, the ice-making component is moved to the bottom of the ice-making module. After the ice melts, it is sent out from the ice outlet. The entire ice-making process is completed within 50 seconds. This enables rapid cooling of water and rapid ice making, allowing ice to be made and used immediately, effectively solving the problems of bacterial growth in ice and the lack of ice storage and condensation. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of the present invention.

[0018] Figure 2 This is a schematic diagram of the structure of the hidden housing component of the present invention.

[0019] Figure 3 This is a schematic diagram of the structure of the hidden shell component, the refrigeration chamber, and the ice-making upper shell of the present invention.

[0020] Figure 4 This is a schematic diagram of the structure of the funnel assembly of the present invention.

[0021] Figure 5 This is a schematic diagram of the ice delivery component of the present invention.

[0022] Figure 6 This is a schematic diagram of the structure of the ice-discharging baffle assembly of the present invention.

[0023] Figure 7 This is a schematic diagram illustrating the principle of the present invention.

[0024] In the picture: 1. Housing components; 2. Water purification device; 3. Hot water device; 4. Cooling water device; 5. Ice maker; 11. Control panel; 21. Raw water tank; 22. Self-priming pump; 23. Composite filter element; 24. Wastewater solenoid valve; 25. Pure water tank; 31. Heating water pump; 32. Heating element; 33. Switching valve; 34. Water-air separator; 35. Cold / hot water outlet; 41. Cold tank inlet pump; 42. Cold tank; 43. Compressor; 44. Dryer filter; 45. Condenser; 46. Cold tank evaporator; 47. Reversing solenoid valve; 48. Cold tank outlet pump; 49. LED sterilization lamp; 410. Water level float; 51. Ice-making upper shell; 52. Ice mold evaporator; 53. De-icing solenoid valve; 54. Funnel assembly; 55. Ice block conveying assembly; 56. Ice outlet; 57. Ice-making module; 58. Ice outlet baffle assembly; 541. Winding motor; 542. Winding reel; 543. Telescopic support rod; 544. Spring; 545. Ice funnel; 551. Conveyor motor; 552. Gear; 553. Ice outlet rack; 554. Rack; 555. Ice outlet trough; 556. Support plate; 581. Stepper motor; 582. Ice outlet baffle. Detailed Implementation

[0025] The invention will now be further described with reference to the accompanying drawings.

[0026] This embodiment discloses a countertop water purifier that makes ice quickly, with reference to... Figures 1-3 The device includes a housing 1, which is equipped with a water purification device 2, a hot water generating device 3, a cold water generating device 4, and an ice making device 5. The water purification device 2 is located on the side of the housing 1 and is used to filter raw water to obtain pure water, and supply the pure water to the hot water generating device 3 and the cold water generating device 4. The hot water generating device 3 is located in the middle of the housing 1 and is connected to the water purification device 2, and is used to heat the pure water into hot water. The chilled water device 4 includes a water inlet pump 41 connected to the output end of the water purification device 2, and the output end of the water inlet pump 41 is connected to the chilled tank 42. A compressor 43, a dryer filter 44, and a condenser 45 are externally connected to the chilled tank 42. An evaporator 46 connected to the compressor 43 is located inside the chilled tank 42. The refrigerant line of the compressor 43 is selectively connected to the evaporator 46 or the ice mold evaporator 52 via a reversing solenoid valve 47. An ice-making device 5 is located above the chilled tank 42. The bottom end of the cold tank 42 is connected to a cold tank outlet pump 48; pure water is pumped into the cold tank 42 of the refrigeration water device 4 by the cold tank 42 inlet pump 41. The reversing solenoid valve 47 is connected to the cold tank evaporator 46 and the ice mold evaporator 52. When cooling water, the reversing solenoid valve 47 switches to connect with the cold tank evaporator 46, so that the cold tank evaporator 46 works to cool water and closes the connection with the ice mold evaporator 52. When making ice, the reversing solenoid valve 47 switches to connect with the ice mold evaporator 52, so that the ice mold evaporator 52 works to make ice and closes the connection with the cold tank evaporator 46.

[0027] The ice-making device 5 includes an ice-making upper shell 51 located above the cold chamber 42. An ice-making module 57 is provided inside the ice-making upper shell 51. The ice-making module 57 is connected to an ice mold evaporator 52. An ice-melting solenoid valve 53 is connected between the compressor 43, the ice mold evaporator 52, and the condenser 45. A movable funnel assembly 54 is provided below the ice mold evaporator 52. The funnel assembly 54 is connected to the cold chamber 42. An ice block conveying assembly 55 is provided on one side of the funnel assembly 54. The ice block conveying assembly 55 is correspondingly arranged with the ice outlet 56 of the shell 1. The funnel assembly 54 moves up and down inside the cold chamber and works with the ice-making module 57 and the ice mold evaporator 52 to make ice.

[0028] Reference Figures 3-4The funnel assembly 54 includes a winding motor 541 (forward and reverse motor) located at the bottom of the cold chamber 42. The output end of the winding motor 541 is connected to a winding reel 542. A telescopic support rod 543 is provided inside the cold chamber 42. A spring 544 is sleeved on the telescopic support rod 543. An ice funnel 545 is provided at the upper end of the telescopic support rod 543. A rope on the winding reel 542 passes through the telescopic support rod 543 and is connected to the ice funnel 545. When ice is needed, the prepared cold water is driven by the winding motor 541 to rotate the winding reel 542, causing the rope on the winding reel 542 to control the telescopic support rod 543 and the ice funnel 545 filled with cold water in the cold chamber 42 to rise until the ice funnel 545 moves upward. When the ice is moved to the ice-making position in conjunction with the ice-making module 57, the winding motor 541 stops and the ice funnel 545 is fixed in position again by the control of the rope. After the ice is formed, the winding motor 541 is turned on again and the rope is used to pull the ice funnel 545 down to separate it from the ice mold evaporator 52. Then the ice block conveying component 55 moves to the ice mold evaporator 52 and below the ice block. After the ice block is melted between the ice block and the ice mold evaporator 52 by the ice melting solenoid valve 53, the ice block is sent to the ice outlet 56 by the ice block conveying component 55. In addition, since the pure water purified by the RO membrane filter of the purification device is free of air and the funnel component 54 moves up and down at a uniform speed in the cold tank 42, no air bubbles are generated. Therefore, the ice block produced is transparent, thereby improving the quality of the ice block.

[0029] Reference Figure 4 The telescopic support rod 543 includes at least two sleeve rods that are interlocked. The ice funnel 545 is connected to the upper sleeve rod. When the ice funnel 545 needs to move up and down, the telescopic support rod 543 and the ice funnel 545 can move up and down simultaneously by interlocking the sleeve rods and cooperating with the spring 544.

[0030] Reference Figures 3-5The ice conveying assembly 55 includes a conveying motor 551 (forward and reverse motor) located on the side of the cold chamber 42. The output shaft of the conveying motor 551 is connected to a gear 552. An ice dispensing frame 553 is provided between the ice mold evaporator 52 and the ice outlet 56. The bottom end of the ice dispensing frame 553 is provided with a rack 554 located outside the cold chamber 42 that meshes with the gear 552. An ice dispensing groove 555 is provided above the ice dispensing frame 553. The ice dispensing groove 555 above the ice dispensing frame 553 is inclined. The ice dispensing frame 553 and the ice dispensing groove 555 are connected. The ice funnel 545 is connected to the ice mold evaporator 52 by a support plate 556. After the ice funnel 545 moves down and separates from the ice mold evaporator 52, the conveying motor 551 drives the gear 552 to rotate. With the cooperation of the rack 554 and the gear 552, the ice rack 553 and the ice outlet 555 move together. The ice outlet 555 moves to the bottom of the ice block. When the ice melting solenoid valve 53 is opened, the refrigerant is turned into high temperature and high pressure by the compressor 43. After the ice block between the ice block and the ice mold evaporator 52 is melted, the ice block falls into the ice outlet 555 and slides along the ice outlet 555 to the ice outlet 56.

[0031] This invention utilizes two evaporators: a cold tank evaporator 41 mounted on a cold tank 42 and an ice mold evaporator 52 mounted on an ice-making module 57. First, a compressor 43, a dryer filter 44, and a condenser 45 work in conjunction with the cold tank evaporator 46 to cool the pure water in the cold tank to 1-2 degrees Celsius. When ice is needed, a winding motor 541 drives a winding disc 542 to rotate, causing a rope on the winding disc 542 to control a telescopic support rod 543 and an ice funnel 545 filled with cold water in the cold tank 42 to rise until the ice funnel 545 moves to the position where it engages with the ice-making module 57 to produce ice. The ice-making module 57 then delivers the filled cold water to the ice-making module 57. The ice block is made in conjunction with the ice mold evaporator 52. The winding motor 541 drives the winding disc 542 to rotate, causing the rope on the winding disc 542 to control the telescopic support rod 543 and the ice funnel 545 filled with cold water in the cold tank 42 to descend. The ice water produced after the ice block is made enters the ice funnel 545. At this time, the ice block conveying component is moved to the bottom of the ice making module 57. After the ice melts, the ice block is sent out from the ice outlet 56. The entire ice making process is completed within 50 seconds. This can achieve rapid cooling of ice water and rapid ice block making. The ice blocks are made and used immediately, effectively solving the problems of bacterial growth in ice blocks and condensation due to lack of ice storage, thereby greatly improving the ice making efficiency.

[0032] In addition, since the pure water purified by the RO membrane filter of the purification device 2 is free of air, and the funnel assembly 54 moves up and down at a constant speed in the cold tank 42, no bubbles are generated, so the ice cubes produced are transparent.

[0033] Testing revealed that, at room temperature, the entire process from the injection of cold water into the ice-making module to the complete formation and delivery of ice blocks to the outlet, as measured by a temperature sensor, showed that the cold water temperature was 1-2°C. In actual ice-making tests, ice was produced four times in three-minute intervals, with three ice blocks produced each time. Each cycle took 43-45 seconds from cold water to ice formation, followed by 3-5 seconds of thawing, averaging 50 seconds per ice block dispensing. A total of 12 ice blocks were produced in three minutes. No visible air bubbles were observed, and the ice blocks exhibited a transparency of 90%-92% as measured by optical instruments.

[0034] Reference Figure 6 The cold tank 42 is equipped with an LED sterilization lamp 49 and a water level float 410. The LED sterilization lamp 49 facilitates sterilization of the cold tank 42, and the water level float 410 allows observation of the water level inside the cold tank 42.

[0035] Reference Figure 1 The outer end of the housing is provided with an ice outlet 56 and a cold / hot water outlet 35 below the ice outlet 555. An ice outlet baffle assembly 58 is provided inside the ice outlet 56. The ice outlet baffle assembly 58 includes a stepper motor 581, and the output shaft of the stepper motor 581 is connected to an ice outlet baffle 582. When ice needs to be output from the ice outlet 56, the position between the ice outlet baffle 582 and the ice outlet 555 is adjusted by driving the stepper motor 581. When ice is not needed, the stepper motor 581 drives the ice outlet baffle 582 to block the ice falling from the ice-making module 57 at the top of the ice outlet 555, thus isolating it from the high external temperature and protecting it. The cold air in the ice tank 555 is stored to prevent the ice from melting. When ice needs to be dispensed, the stepper motor 581 drives the ice dispensing baffle 582 to rotate above the ice dispensing port 56, releasing the obstruction to the ice and allowing the ice to slide out of the ice tank 555. A control panel 11 is connected above the ice dispensing port 56 and the cold / hot water outlet 35. The control panel 11 is electrically connected to the water purification device 2, the hot water making device 3, the cooling water device 4, and the ice making device 5. It is used to control the water purifier to turn on and off, to purify water, to make hot water, to make cooling water, and to make ice. It can also display indicator lights for water temperature, hot water, cooling water, and ice making.

[0036] Reference Figure 1 , Figure 3 , Figure 6The hot water generating device 3 includes a heating water pump 31 connected to the output end of the water purification device 2. The output end of the heating water pump 31 is connected to a heating element 32. The heating element 32 is equipped with a switching valve 33 to facilitate normal water flow and sterilization. The output end of the heating element 32 is connected to the cold / hot water outlet 35. The output end of the cold tank outlet pump 48 is also connected to the cold / hot water outlet 35. Water vapor separation boxes 34 are connected between the cold / hot water outlet 35 and the heating element 32, and between the cold / hot water outlet 35 and the cold tank outlet pump 48. When generating hot water, pure water is pumped to the heating element 32 by the heating water pump 31 and heated to obtain hot water. The hot water is then processed by the water vapor separation box 34 to absorb the hot air before being output through the cold / hot water outlet 35. The switching valve 33 is used to switch between the discharge of hot water and the pumping of hot water into the cold tank 42 for sterilization. It can also be used in conjunction with an LED sterilization lamp 49 for sterilization.

[0037] Reference Figures 1-3 The water purification device 2 includes a raw water tank 21. A self-priming pump 22, a composite filter element 23, and a wastewater solenoid valve 24 are sequentially connected to the output end of the raw water tank 21. The wastewater solenoid valve 24 is connected between the raw water tank 21 and the composite filter element 23. A pure water tank 25 is provided at the output end of the composite filter element 23. The input ends of the cold tank 42 inlet pump 41 and the heating water pump 31 are both connected to the pure water tank 25. During water purification, tap water is added to the raw water tank 21 and pumped to the composite filter element 23 by the self-priming pump 22. After being filtered by the PTC filter element and the RO membrane filter element of the composite filter element 23, the filtered water is discharged after passing through the wastewater solenoid valve 24, while the pure water flows into the pure water tank 25.

[0038] The above description is only a preferred embodiment of the present invention. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of this patent application are included in the scope of this patent application.

Claims

1. A countertop water purifier with rapid ice-making function, characterized in that, The countertop water purifier that makes rapid ice includes: The housing component (1) is provided with a water purification device (2), a hot water generating device (3), a cooling water device (4), and an ice making device (5); The water purification device (2) is located on the side of the housing (1) and is used to filter the raw water to obtain pure water and supply the pure water to the hot water device (3) and the cooling water device (4). The hot water generating device (3) is located in the middle of the housing (1) and is connected to the water purification device (2) for heating pure water into hot water; The chilled water device (4) includes a cold tank inlet pump (41) connected to the output end of the water purification device (2), a cold tank (42) connected to the output end of the cold tank inlet pump (41), a compressor (43), a dryer filter (44) and a condenser (45) connected to the outside of the cold tank (42), a cold tank evaporator (46) connected to the compressor (43) inside the cold tank (42), an ice-making device (5) above the cold tank (42), and a cold tank outlet pump (48) connected to the bottom of the cold tank (42). The ice-making device (5) includes an ice-making upper shell (51) located above the cold chamber (42). An ice-making module (57) is provided inside the ice-making upper shell (51). The ice-making module (57) is connected to an ice mold evaporator (52). An ice-melting solenoid valve (53) is connected between the compressor (43), the ice mold evaporator (52), and the condenser (45). A movable funnel assembly (54) is provided below the ice mold evaporator (52). The funnel assembly (54) is connected to the cold chamber (42). An ice block conveying assembly (55) is provided on one side of the funnel assembly (54). The ice block conveying assembly (55) is correspondingly provided with the ice outlet (56) of the housing (1).

2. The countertop water purifier with rapid ice making as described in claim 1, characterized in that... The funnel assembly (54) includes a winding motor (541) located at the bottom of the cold chamber (42). The output end of the winding motor (541) is connected to a winding disc (542). A telescopic support rod (543) is provided inside the cold chamber (42). A spring (544) is provided on the outer sleeve of the telescopic support rod (543). An ice funnel (545) is provided at the upper end of the telescopic support rod (543). A rope on the winding disc (542) passes through the telescopic support rod (543) and is connected to the ice funnel (545).

3. The countertop water purifier with rapid ice making as described in claim 2, characterized in that, The telescopic support rod (543) includes at least two sleeve rods that are interlocked, and the ice funnel (545) is connected to the upper sleeve rod.

4. A countertop water purifier with rapid ice making as described in claim 2, characterized in that, The ice conveying assembly (55) includes a conveying motor (551) located on the side of the cold chamber (42). The output shaft of the conveying motor (551) is connected to a gear (552). An ice outlet frame (553) is provided between the ice mold evaporator (52) and the ice outlet (56). The bottom end of the ice outlet frame (553) is provided with a rack (554) that meshes with the gear (552). An ice outlet groove (555) is provided above the ice outlet frame (553).

5. A countertop water purifier with rapid ice making as described in claim 1, characterized in that, A reversing solenoid valve (47) is connected between the cold evaporator (46) and the ice mold evaporator (52).

6. A countertop water purifier with rapid ice making as described in claim 1, characterized in that, The cold tank (42) is equipped with an LED germicidal lamp (49) and a water level float (410).

7. A countertop water purifier with rapid ice making as described in claim 4, characterized in that, An ice outlet (56) and a cold / hot water outlet (35) are provided at one end of the outer shell below the ice outlet groove (555). An ice outlet baffle assembly (58) is provided inside the ice outlet (56). The ice outlet baffle assembly (58) includes a stepper motor (581). The output shaft of the stepper motor (581) is connected to an ice outlet baffle (582). A control panel (11) is connected above the ice outlet (56) and the cold / hot water outlet (35).

8. A countertop water purifier with rapid ice making as described in claim 7, characterized in that, The hot water generating device (3) includes a heating water pump (31) connected to the output end of the water purification device (2). The output end of the heating water pump (31) is connected to a heating element (32). The heating element (32) is provided with a switching valve (33) to facilitate normal water flow and sterilization. The output end of the heating element (32) is connected to the cold / hot water outlet (35).

9. A countertop water purifier with rapid ice making as described in claim 8, characterized in that, The output end of the cold tank water pump (48) is also connected to the cold / hot water outlet (35). A water-air separator (34) is connected between the cold / hot water outlet (35) and the heating element (32) and between the cold / hot water outlet (35) and the cold tank water pump (48).

10. A countertop water purifier with rapid ice making as described in claim 8, characterized in that, The water purification device (2) includes a raw water tank (21). The output end of the raw water tank (21) is connected in sequence to a self-priming pump (22), a composite filter element (23), and a wastewater solenoid valve (24). The wastewater solenoid valve (24) is connected between the raw water tank (21) and the composite filter element (23). The output end of the composite filter element (23) is equipped with a pure water tank (25). The input ends of the cold tank inlet pump (41) and the heating water pump (31) are both connected to the pure water tank (25).

Citation Information

Cited By

  • Table-type ultraviolet sterilization, water purification, heating, refrigeration and ice making integrated device

    CN121677299A

  • A table type ultraviolet sterilization, water purification, heating, refrigeration and ice making integrated device

    CN121677299B