Large-capacity water chiller

By introducing an RO filter and circulation system into the chilled water machine, the problem of residual water contaminants is solved, enabling safe and efficient chilled water preparation and convenient cleaning operations, thus improving the user experience of the chilled water machine.

CN223726676UActive Publication Date: 2025-12-26ZHONGSHAN WEIKELI ENERGY SAVING & ENVIRONMENTAL PROTECTION EQUIP CO LTD
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Patent Information

Application Number
CN202520108599.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-12-26
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing chilled water machines do not filter the water during the refrigeration process, resulting in residual contaminants that affect drinking safety and refrigeration efficiency. They also have low cleanliness and convenience.

Method used

The system uses an RO filter to filter the water, and heating and cooling components to heat and cool the water respectively. Combined with a compressor circulation system, it can quickly produce ice water, and the water receiving and placement components can be slidably installed and removed.

Benefits of technology

It improves the drinking safety and cooling efficiency of ice water, enhances ease of use and cleanliness, and facilitates quick replacement and cleaning of the water receiving device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of ice water machines, in particular to a large-capacity ice water machine which comprises an upper installation box, a lower installation box, a water adding pipe, an RO filter, a pressure barrel, a water guide pipe, a heating component, a refrigerating component, a hot water pipe and an ice water pipe. A first circulating pipe is arranged on one side of the refrigerating component, a third circulating pipe is arranged on the other side of the refrigerating component, a compressor is installed at the lower end of the interior of the upper installation box, and a second circulating pipe is arranged on one side of the compressor. The RO filter is used for filtering guided-in water, the drinking safety of made ice water is improved, the water does not need to be filtered in advance, the use convenience is improved, the water receiving and placing component slides in the mounting frame, the water receiving and placing component can be quickly disassembled and assembled, and the cleaning convenience of the water receiving and placing component is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to ice water machine technical field, concretely is a kind of large-capacity ice water machine. BACKGROUND

[0002] Ice water machine is another name of cold water machine, ice water machine is simply speaking a kind of output low-temperature refrigerated water machine, output cold water temperature is between 3-35 degrees Celsius and can be adjusted, ice water machine has many different kinds according to different division.

[0003] Chinese patent discloses a kind of ice water machine, (grant announcement number CN220017848U), the patent technology can realize ice water instant, obtain ice water very fast, convenient, more is convenient ice milk tea production, but, imported water liquid is directly refrigerated, pollutant in water liquid in water body, not conducive to the safety of drinking, or need to filter water liquid in advance, the convenience of use is lower, not conducive to the refrigeration efficiency of water liquid, water outlet and ice water machine are integral structure, the convenience of cleaning is lower.Therefore, the technical personnel in the art provide a kind of large-capacity ice water machine to solve the problems raised in the above background technology. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of large-capacity ice water machine to solve the problems raised in the above background technology.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] A kind of large-capacity ice water machine, including upper installation box, lower installation box, water pipe, RO filter, pressure bucket, water guide pipe, heating component, refrigeration component, hot water pipe and ice water pipe, the lower installation box is located at the lower side position of upper installation box, the water pipe is located at the side position of lower installation box, the RO filter is located at the inside one end position of lower installation box, the pressure bucket is located at the inside other end position of lower installation box, the water guide pipe is located at the upper side position of pressure bucket, the heating component is located at the upper end position of water guide pipe, the refrigeration component is located at the position of the upper end of water guide pipe adjacent heating component, the hot water pipe is located at the lower side position of heating component, the ice water pipe is located at the lower side position of refrigeration component, the front side of upper installation box is provided with installation frame, water receiving placing component is installed in the inside of installation frame, the side of refrigeration component is provided with first circulation pipe, the other side of refrigeration component is provided with third circulation pipe, compressor is installed at the inside lower end position of upper installation box, the side of compressor is provided with second circulation pipe, one end of second circulation pipe is installed with condenser.

[0007] As a further scheme of the utility model: the heating member includes a heating tank, a heating rod is installed in the inside of the heating tank, a first electromagnetic valve is installed on the upside of the heating tank, a second electromagnetic valve is installed on the downside of the heating tank, the refrigeration member includes a refrigeration tank, a refrigeration copper pipe is installed in the inside of the refrigeration tank, a third electromagnetic valve is installed on the upside of the refrigeration tank, a fourth electromagnetic valve is installed on the downside of the refrigeration tank.

[0008] As a further scheme of the utility model: the water receiving placing member includes a placing box, a water receiving box is arranged at the inside lower end position of the placing box, a water outlet net is arranged on the upside of the water receiving box, a locating groove is formed on the upper end of the placing box, a pull plate is arranged on the inside of the placing box.

[0009] As a further scheme of the utility model: the output end of the water adding pipe is communicated with the input end of the pressure barrel, the output end of the pressure barrel is communicated with the input end of the water guide pipe, the output end of the water guide pipe is communicated with the input end of the heating member, the output end of the water guide pipe is communicated with the input end of the refrigeration member, the output end of the heating member is communicated with the input end of the hot water pipe, the output end of the refrigeration member is communicated with the input end of the ice water pipe.

[0010] As a further scheme of the utility model: the output end of the compressor is communicated with the input end of the first circulation pipe, the output end of the first circulation pipe is communicated with the input end of the refrigeration member, the output end of the refrigeration member is communicated with the input end of the third circulation pipe, the output end of the third circulation pipe is communicated with the input end of the condenser, the output end of the condenser is communicated with the input end of the second circulation pipe, the output end of the second circulation pipe is communicated with the input end of the compressor.

[0011] As a further scheme of the utility model: the output end of the water guide pipe is communicated with the input end of the heating tank through the first electromagnetic valve, the output end of the heating tank is communicated with the input end of the hot water pipe through the second electromagnetic valve, the output end of the water guide pipe is communicated with the input end of the refrigeration tank through the third electromagnetic valve, the output end of the refrigeration tank is communicated with the input end of the ice water pipe through the fourth electromagnetic valve, the output end of the first circulation pipe is communicated with the input end of the refrigeration copper pipe, the output end of the refrigeration copper pipe is communicated with the input end of the third circulation pipe.

[0012] As a further scheme of the utility model: the locating groove corresponds to the position of the hot water pipe, the locating groove corresponds to the position of the ice water pipe, the placing box slides in the inside position of the mounting frame.

[0013] Compared with the prior art, the utility model has the advantages of:

[0014] 1. The utility model relates to a large-capacity ice water machine which filters the imported water through a RO filter, removes the pollutants in the water, improves the safety of the ice water after production, does not need to filter the water in advance, improves the convenience of use, and is beneficial to the refrigeration efficiency of the water.

[0015] 2. The water receiving and placing member slides in the inside of the mounting frame, can quickly disassemble and assemble the water receiving and placing member, and improves the convenience of cleaning the water receiving and placing member. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structural diagram of a large-capacity ice water machine.

[0017] Figure 2 It is a perspective view of a large-capacity ice water machine.

[0018] Figure 3 It is a perspective view of a heating member in a large-capacity ice water machine.

[0019] Figure 4 It is a perspective view of a refrigeration member in a large-capacity ice water machine.

[0020] Figure 5 It is a structural diagram of a water receiving and placing member in a large-capacity ice water machine.

[0021] In the figure: 1, upper mounting box; 2, lower mounting box; 3, water feeding pipe; 4, RO filter; 5, pressure barrel; 6, water guide pipe; 7, heating member; 8, refrigeration member; 9, hot water pipe; 10, ice water pipe; 11, mounting frame; 12, water receiving and placing member; 13, first circulation pipe; 14, compressor; 15, second circulation pipe; 16, condenser; 17, third circulation pipe; 18, heating tank; 19, heating rod; 20, first electromagnetic valve; 21, second electromagnetic valve; 22, refrigeration tank; 23, refrigeration copper pipe; 24, third electromagnetic valve; 25, fourth electromagnetic valve; 26, placing box; 27, water receiving box; 28, water outlet net; 29, alignment groove; 30, pull plate. DETAILED DESCRIPTION

[0022] Please refer to Figures 1 to 5The utility model discloses an embodiment of a kind of large-capacity ice water machine, including upper installation box 1, lower installation box 2, water pipe 3, RO filter 4, pressure bucket 5, water guide pipe 6, heating component 7, refrigeration component 8, hot water pipe 9 and ice water pipe 10, lower installation box 2 is located at the lower side position of upper installation box 1, water pipe 3 is located at the side position of lower installation box 2, RO filter 4 is located at the inside one end position of lower installation box 2, pressure bucket 5 is located at the inside other end position of lower installation box 2, water guide pipe 6 is located at the upper side position of pressure bucket 5, heating component 7 is located at the upper end position of water guide pipe 6, refrigeration component 8 is located at the upper end position of water guide pipe 6, heating component 7, hot water pipe 9 is located at the lower side position of heating component 7, ice water pipe 10 is located at the lower side position of refrigeration component 8, the front side of upper installation box 1 is provided with installation frame 11, the inside installation of installation frame 11 is provided with water receiving and placing component 12, one side of refrigeration component 8 is provided with first circulation pipe 13, the other side of refrigeration component 8 is provided with third circulation pipe 17, the inside lower end position of upper installation box 1 is installed with compressor 14, one side of compressor 14 is provided with second circulation pipe 15, one end of second circulation pipe 15 is installed with condenser 16, the output end of water pipe 3 is penetrated with the input end of pressure bucket 5, the output end of pressure bucket 5 is penetrated with the input end of water guide pipe 6, the output end of water guide pipe 6 is penetrated with the input end of heating component 7, the output end of water guide pipe 6 is penetrated with the input end of refrigeration component 8, the output end of heating component 7 is penetrated with the input end of hot water pipe 9, the output end of refrigeration component 8 is penetrated with the input end of ice water pipe 10, the output end of compressor 14 is penetrated with the input end of first circulation pipe 13, the output end of first circulation pipe 13 is penetrated with the input end of refrigeration component 8, the output end of refrigeration component 8 is penetrated with the input end of third circulation pipe 17, the output end of third circulation pipe 17 is penetrated with the input end of condenser 16, the output end of condenser 16 is penetrated with the input end of second circulation pipe 15, the output end of second circulation pipe 15 is penetrated with the input end of compressor 14, first, a kind of large-capacity ice water machine is placed to use position, one end of water pipe 3 is connected to water source, then, start a kind of large-capacity ice water machine, water is guided into the inside of RO filter 4 by water pipe 3, RO filter 4 filters water, filtered water is guided into the inside of pressure bucket 5, the water in the inside of pressure bucket 5 is guided into the inside of heating component 7 and refrigeration component 8 by water guide pipe 6, heating component 7 runs and heats water, compressor 14 runs, and refrigeration liquid is guided into the inside of refrigeration component 8 by first circulation pipe 13, refrigeration component 8 refrigerates water, and the water in the inside of refrigeration component 8 is guided into the inside of condenser 16 by third circulation pipe 17, condenser 16 cools liquid, and the cooled liquid is circulated to the inside of compressor 14 by second circulation pipe 15, vessel is placed in the inside of water receiving and placing component 12, vessel corresponds hot water pipe 9, and hot water in the inside of heating component 7 is discharged into vessel by hot water pipe 9, vessel is placed in the inside of water receiving and placing component 12, vessel corresponds ice water pipe 10,The ice water in the refrigeration member 8 is discharged into the vessel through the ice water pipe 10, the splashed water enters the inside of the water receiving member 12, finally, the water receiving member 12 is taken out, the water in the inside of the water receiving member 12 is poured out, and the water receiving member 12 is cleaned.

[0023] In Figure 2 , 3 , 4: The heating member 7 comprises a heating tank 18, a heating rod 19 is installed in the inside of the heating tank 18, a first electromagnetic valve 20 is installed on the upper side of the heating tank 18, a second electromagnetic valve 21 is installed on the lower side of the heating tank 18, the refrigeration member 8 comprises a refrigeration tank 22, a refrigeration copper pipe 23 is installed in the inside of the refrigeration tank 22, a third electromagnetic valve 24 is installed on the upper side of the refrigeration tank 22, a fourth electromagnetic valve 25 is installed on the lower side of the refrigeration tank 22, the output end of the water guide pipe 6 is communicated with the input end of the heating tank 18 through the first electromagnetic valve 20, the output end of the heating tank 18 is communicated with the input end of the hot water pipe 9 through the second electromagnetic valve 21, the output end of the water guide pipe 6 is communicated with the input end of the refrigeration tank 22 through the third electromagnetic valve 24, the output end of the refrigeration tank 22 is communicated with the input end of the ice water pipe 10 through the fourth electromagnetic valve 25, the output end of the first circulation pipe 13 is communicated with the input end of the refrigeration copper pipe 23, the output end of the refrigeration copper pipe 23 is communicated with the input end of the third circulation pipe 17, the first electromagnetic valve 20 and the third electromagnetic valve 24 are opened, the water in the inside of the pressure barrel 5 is guided into the inside of the heating tank 18 and the refrigeration tank 22 through the water guide pipe 6, the heating rod 19 operates to heat the water in the inside of the heating tank 18, the compressor 14 operates to guide the refrigeration liquid into the inside of the refrigeration copper pipe 23 through the first circulation pipe 13, the refrigeration copper pipe 23 refrigerates the water in the inside of the refrigeration tank 22, the water in the inside of the refrigeration copper pipe 23 is guided into the inside of the condenser 16 through the third circulation pipe 17, the condenser 16 cools the liquid, the cooled liquid is circulated into the inside of the compressor 14 through the second circulation pipe 15, the vessel is placed into the inside of the water receiving member 12, the vessel corresponds to the hot water pipe 9, the second electromagnetic valve 21 is opened, the hot water in the inside of the heating tank 18 is discharged into the vessel through the hot water pipe 9, the vessel is placed into the inside of the water receiving member 12, the vessel corresponds to the ice water pipe 10, the fourth electromagnetic valve 25 is opened, the ice water in the inside of the refrigeration tank 22 is discharged into the vessel through the ice water pipe 10.

[0024] In Figure 2 , 5The water receiving and placing member 12 comprises a placing box 26, a water receiving box 27 is arranged at the inner lower end position of the placing box 26, a lower water net 28 is arranged at the upper side of the water receiving box 27, a locating groove 29 is formed at the upper end of the placing box 26, a pull plate 30 is arranged at the inner side of the placing box 26, the locating groove 29 corresponds to the position of the hot water pipe 9, the locating groove 29 corresponds to the position of the ice water pipe 10, the placing box 26 is slid at the inner position of the mounting frame 11, the hand holds the pull plate 30, the placing box 26 is slid out of the mounting frame 11, the locating groove 29 is slid out of the hot water pipe 9 and the ice water pipe 10, the water receiving and placing member 12 is taken out, the water liquid in the water receiving box 27 is poured out, and the water receiving and placing member 12 is cleaned.

[0025] The working principle of the utility model is: first, a large-capacity ice water machine is placed at the use position, one end of the water adding pipe 3 is connected to the water source, then, the large-capacity ice water machine is started, water is introduced into the inside of the RO filter 4 through the water adding pipe 3, the RO filter 4 filters the water, the filtered water is introduced into the inside of the pressure barrel 5, the first electromagnetic valve 20 and the third electromagnetic valve 24 are opened, the water in the inside of the pressure barrel 5 is introduced into the inside of the heating tank 18 and the refrigeration tank 22 through the water guide pipe 6, the heating rod 19 operates to heat the water liquid in the inside of the heating tank 18, the compressor 14 operates to introduce the refrigeration liquid into the inside of the refrigeration copper pipe 23 through the first circulating pipe 13, the refrigeration copper pipe 23 refrigerates the water liquid in the inside of the refrigeration tank 22, the water liquid in the inside of the refrigeration copper pipe 23 is introduced into the inside of the condenser 16 through the third circulating pipe 17, the condenser 16 cools the liquid, the cooled liquid is circulated to the inside of the compressor 14 through the second circulating pipe 15, the utensil is placed on the upper side of the lower water net 28, the utensil corresponds to the hot water pipe 9, the second electromagnetic valve 21 is opened, the hot water in the inside of the heating tank 18 is discharged into the utensil through the hot water pipe 9, the utensil is placed on the upper side of the lower water net 28, the utensil corresponds to the ice water pipe 10, the fourth electromagnetic valve 25 is opened, the ice water in the inside of the refrigeration tank 22 is discharged into the utensil through the ice water pipe 10, the splashed water liquid enters the inside of the water receiving box 27 through the lower water net 28, finally, the hand holds the pull plate 30, the placing box 26 slides out of the mounting frame 11, the locating groove 29 slides out of the hot water pipe 9 and the ice water pipe 10, the water receiving and placing member 12 is taken out, the water liquid in the inside of the water receiving box 27 is poured out, and the water receiving and placing member 12 is cleaned.

[0026] The above is only the preferred specific implementation manner of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the utility model concept of the utility model within the technical range disclosed by the utility model, which should be covered in the protection scope of the utility model.

Claims

1. A large-capacity ice-water machine comprising an upper installation case (1), a lower installation case (2), a water supply pipe (3), an RO filter (4), a pressure barrel (5), a water guide pipe (6), a heating member (7), a refrigeration member (8), a hot water pipe (9), and an ice-water pipe (10), wherein the lower installation case (2) is positioned at a lower side of the upper installation case (1), the water supply pipe (3) is positioned at one side of the lower installation case (2), the RO filter (4) is positioned at an inner end of the lower installation case (2), the pressure barrel (5) is positioned at the other end of the lower installation case (2), the water guide pipe (6) is positioned at an upper side of the pressure barrel (5), the heating member (7) is positioned at an upper end of the water guide pipe (6), the refrigeration member (8) is positioned at an upper end of the water guide pipe (6) adjacent to the heating member (7), the hot water pipe (9) is positioned at a lower side of the heating member (7), and the ice-water pipe (10) is positioned at a lower side of the refrigeration member (8). The front side of the upper installation box (1) is provided with an installation frame (11), a water receiving placing member (12) is installed in the inside of the installation frame (11), one side of the refrigeration member (8) is provided with a first circulating pipe (13), the other side of the refrigeration member (8) is provided with a third circulating pipe (17), a compressor (14) is installed at the inside lower end position of the upper installation box (1), one side of the compressor (14) is provided with a second circulating pipe (15), and one end of the second circulating pipe (15) is installed with a condenser (16).

2. The high-capacity ice-water machine of claim 1, wherein The heating member (7) comprises a heating tank (18), a heating rod (19) is installed in the inside of the heating tank (18), a first electromagnetic valve (20) is installed on the upper side of the heating tank (18), a second electromagnetic valve (21) is installed on the lower side of the heating tank (18), the refrigeration member (8) comprises a refrigeration tank (22), a refrigeration copper pipe (23) is installed in the inside of the refrigeration tank (22), a third electromagnetic valve (24) is installed on the upper side of the refrigeration tank (22), and a fourth electromagnetic valve (25) is installed on the lower side of the refrigeration tank (22).

3. The high-capacity ice / water dispenser of claim 1, wherein The water receiving placing member (12) comprises a placing box (26), a water receiving box (27) is arranged at the inside lower end position of the placing box (26), a drain net (28) is arranged on the upper side of the water receiving box (27), a positioning groove (29) is formed at the upper end of the placing box (26), and a pull plate (30) is arranged on the inside of the placing box (26).

4. The high-capacity ice / water dispenser of claim 1, wherein, The output end of the water adding pipe (3) penetrates the input end of the pressure barrel (5), the output end of the pressure barrel (5) penetrates the input end of the water guide pipe (6), the output end of the water guide pipe (6) penetrates the input end of the heating member (7), the output end of the water guide pipe (6) penetrates the input end of the refrigeration member (8), the output end of the heating member (7) penetrates the input end of the hot water pipe (9), and the output end of the refrigeration member (8) penetrates the input end of the ice water pipe (10).

5. The high-capacity ice / water dispenser of claim 1, wherein, The output end of the compressor (14) penetrates the input end of the first circulating pipe (13), the output end of the first circulating pipe (13) penetrates the input end of the refrigeration member (8), the output end of the refrigeration member (8) penetrates the input end of the third circulating pipe (17), the output end of the third circulating pipe (17) penetrates the input end of the condenser (16), the output end of the condenser (16) penetrates the input end of the second circulating pipe (15), and the output end of the second circulating pipe (15) penetrates the input end of the compressor (14).

6. A high-capacity ice-water machine as claimed in claim 2, wherein The output end of the water guide pipe (6) is communicated with the input end of the heating tank (18) through the first electromagnetic valve (20), the output end of the heating tank (18) is communicated with the input end of the hot water pipe (9) through the second electromagnetic valve (21), the output end of the water guide pipe (6) is communicated with the input end of the refrigeration tank (22) through the third electromagnetic valve (24), the output end of the refrigeration tank (22) is communicated with the input end of the ice water pipe (10) through the fourth electromagnetic valve (25), the output end of the first circulation pipe (13) is communicated with the input end of the refrigeration copper pipe (23), and the output end of the refrigeration copper pipe (23) is communicated with the input end of the third circulation pipe (17).

7. A high-capacity ice-water machine as claimed in claim 3, wherein The alignment groove (29) corresponds to the position of the hot water pipe (9), and the alignment groove (29) corresponds to the position of the ice water pipe (10), and the placement box (26) slides in the inner position of the mounting frame (11).

Citation Information

Patent Citations

  • Ice water machine

    CN220017848U