Ice making module, ice making device and water dispenser
By designing a detachable ice-making module and ice water tank, combined with a limit column and a one-way valve at the water outlet, the assembly process of the ice maker and water dispenser is simplified, the difficulty of disassembly and assembly and the maintenance cost are reduced, the resource utilization rate and the quality of ice cubes are improved, and the problem of complex structure in the existing technology is solved.
Patent Information
- Application Number
- CN202422948223.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The internal structures of existing ice makers and water dispensers are complex, and the products are difficult to assemble and complicated to disassemble.
An ice-making module is designed, which includes a machine body, a drainage flip structure, an ice storage box and an ice water tank. The machine body and the ice water tank are detachably connected by screws or snaps. The design of limit columns and limit grooves is combined to simplify the assembly process. A water outlet and a one-way valve are provided at the bottom of the ice storage box to improve resource utilization and reduce power consumption.
The difficulty of disassembling and assembling the whole water dispenser and the cost of repair and replacement are reduced, the assembly efficiency and resource utilization are improved, the ice water in the ice water tank is prevented from freezing into ice blocks and inhibiting bacterial contamination.
Smart Images

Figure CN223460656U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household appliances, in particular to an ice making module, an ice making device and a water dispenser. BACKGROUND
[0002] An ice maker can quickly make ice cubes, allowing people to enjoy cold drinks at any time in hot summer and relieve heat. Secondly, the ice maker can adjust the size and quantity of ice cubes according to personal taste preferences to meet the needs of different occasions.
[0003] Some ice makers on the market can also be combined with water dispensers. They can not only make ice cubes, but also make ice water for direct drinking by users, providing users with a variety of use experiences. However, the water dispenser integrated with ice cube making and direct drinking ice water has a complex internal structure, and the product is difficult to assemble and disassemble. Content of the utility model
[0004] Therefore, it is necessary to provide an ice making module and a water dispenser to solve the above problems.
[0005] The ice making module of the present application comprises a machine body, a drainage and overturning structure, an ice storage box and an ice water box.
[0006] The machine body is provided with an ice making space and a water collecting port communicating with the ice making space.
[0007] The drainage and overturning structure comprises an ice making box and a driving assembly. The driving assembly is arranged on the machine body, and the ice making box is arranged in the ice making space. The ice making box is provided with an ice making groove and a drainage hole communicating with the ice making groove. The driving assembly is in transmission connection with the ice making box.
[0008] The ice storage box is movably inserted into the ice making space, and the opening direction of the ice storage box faces the ice making box.
[0009] The machine body is arranged on the ice water tank. The water inlet of the ice water tank is connected with the water collecting port. The ice making groove, the drainage hole, the water collecting port and the ice water tank are sequentially communicated, and the ice water tank and the machine body are detachably connected.
[0010] A water supply pipeline is arranged between the ice water tank and the ice making box. A circulating water pump is arranged on the water supply pipeline.
[0011] The ice making module disclosed in the first aspect of the application comprises a body, a drainage overturning structure, an ice storage box and an ice water tank. The body is internally provided with an ice making space and a water collecting opening communicated with the ice making space. The drainage overturning structure comprises an ice making box and a driving assembly. The ice making box is installed in the ice making space and is provided with an ice making groove and a drainage hole communicated with the ice making groove. The driving assembly is in transmission connection with the ice making box. The ice storage box is movably inserted into the ice making space. The body is arranged on the ice water tank. The water inlet of the ice water tank is connected with the water collecting opening. The ice making groove, the drainage hole, the water collecting opening and the ice water tank are sequentially communicated. A water supply pipeline is arranged between the ice water tank and the ice making box. A circulating water pump is arranged on the water supply pipeline. The ice water tank and the body are detachably connected, for example, the ice water tank can be connected with the body through screws or buckles. Therefore, the ice water tank and the body can be assembled as independent parts in the water dispenser, which reduces the disassembly and assembly difficulty of the whole water dispenser and reduces the maintenance and replacement cost of the ice water tank or the body.
[0012] In one of the embodiments, the body is located above the ice water tank. The body and the ice water tank are both formed with a first connecting part along a first direction and are both formed with a second connecting part along a second direction. One of the first connecting part and the second connecting part is provided with a threaded hole, and the other is provided with a relief hole. The first connecting part and the second connecting part are fixedly connected through screws.
[0013] Or,
[0014] The body is located above the ice water tank. The body is formed with a first connecting part along a first direction. The ice water tank is formed with a second connecting part along a second direction. One of the first connecting part and the second connecting part is provided with a threaded hole, and the other is provided with a relief hole. The first connecting part and the second connecting part are fixedly connected through screws.
[0015] In the above embodiments, the body and the ice water tank are fixedly connected through screws through the first connecting part and the second connecting part in two different directions, which facilitates the assembly of the screws and reduces the difficulty of the fixed assembly of the body and the ice water tank.
[0016] In one of the embodiments, the bottom of the body is formed with a protruding first limiting column. The water collecting opening is distributed on the first limiting column. The top of the ice water tank is formed with a first limiting groove matched with the first limiting column. The first limiting groove is communicated with the inside of the ice water tank. The first limiting column is inserted into the first limiting groove.
[0017] And / or,
[0018] The first connecting part is a columnar structure, the threaded holes are distributed on the first connecting part, the second connecting part is a block structure, and a second limiting groove is formed on the second connecting part, and the avoiding holes are distributed on the second limiting groove.
[0019] The ice-making module in the above embodiment is further limited by the cooperation between the first limiting column and the first limiting groove between the machine body and the ice-water tank, which not only realizes the preliminary positioning of the machine body and the ice-water tank and improves the assembly efficiency, but also realizes the communication between the water collecting port on the machine body and the ice-water tank when the first limiting column is inserted into the first limiting groove.
[0020] In one of the embodiments, a water falling port is formed at the bottom of the ice storage box, and the water falling port is in communication with the ice-making space.
[0021] The ice-making module in the above embodiment is further limited by the water falling port at the bottom of the ice storage box, when the ice blocks in the ice storage box melt and become ice water, the ice water can be directly discharged into the ice-making space through the water falling port and then collected into the ice-water tank through the water collecting port. By setting the water falling port, the melted ice water in the ice storage box can be prevented from being frozen again to connect multiple independent ice blocks together. In addition, based on the cooperation between the water falling port and the water collecting port, the melted ice water is collected, the resource utilization rate is improved, and the power consumption is reduced.
[0022] In one of the embodiments, a one-way valve is arranged at the water falling port, and the one-way valve is used to selectively open the water falling port according to whether the ice storage box is inserted into the ice-making space.
[0023] The ice-making module in the above embodiment is further limited by the one-way valve arranged on the water falling port. The one-way valve can open the water falling port when the ice storage box is inserted into the ice-making space, so that the ice water in the ice storage box can be discharged through the water falling port. At the same time, the one-way valve can close the water falling port after the ice storage box is taken out of the ice-making space, so that the ice water in the ice storage box cannot be discharged.
[0024] In one of the embodiments, the ice storage box includes an ice box body and a fixed frame, the fixed frame is connected with the machine body, and the fixed frame is installed in the ice-making space, the ice box body is movably inserted into the fixed frame, and a plurality of first through holes are formed at the bottom of the fixed frame.
[0025] The ice-making module in the above embodiment is further limited by the ice box body movably inserted into the fixed frame, and the first through holes are formed at the bottom of the fixed frame. When the ice box body is inserted into the ice-making space, the ice water discharged from the water falling port falls onto the fixed frame and then falls into the ice-making space through the first through holes on the fixed frame.
[0026] In one of the embodiments, the ice box body is made of stainless steel.
[0027] The ice-making module in the above embodiment is further limited to the material of the ice box body being stainless steel. Based on the above design, the ice box body can inhibit the generation of bacteria and avoid the pollution of the ice blocks in the ice storage box.
[0028] In one of the embodiments, the bottom of the body is designed to be inclined, and the bottom of the body is inclined upward from the center of the water collecting port to the periphery.
[0029] The ice-making module in the above embodiment is further limited to the bottom of the body being inclined upward from the center of the water collecting port to the periphery, so that the ice water falling into the ice-making space can slide to the water collecting port under the action of gravity, thereby being transported to the ice water tank for collection, and long-term water accumulation in the ice-making space can be avoided.
[0030] In one of the embodiments, the ice-making device provided by the second aspect of the present application comprises a refrigeration circuit module and any of the above-mentioned ice-making modules.
[0031] The refrigeration circuit module comprises a compressor, a condenser, and an evaporator, and the compressor, the condenser, and the evaporator are connected through refrigerant pipes.
[0032] The evaporator is connected with a plurality of ice-making fingers, and the ice-making fingers are deep into the ice-making tank.
[0033] In one of the embodiments, the water dispenser provided by the third aspect of the present application comprises a housing assembly, a filter assembly, a water tank assembly, and an ice-making device as described above.
[0034] The filter assembly, the water tank assembly, and the ice-making device are installed in the mounting cavity formed in the housing assembly.
[0035] The water tank assembly comprises a raw water tank, a pure water tank, a first water pump, a second water pump, and a third water pump. The raw water tank is used to store tap water. The first water pump is used to pump the tap water in the raw water tank to the filter assembly for filtration, to obtain pure water and deliver the pure water to the pure water tank. The second water pump is used to pump the pure water in the pure water tank to the ice water tank. The third water pump is used to pump the ice water in the ice water tank to the outside. BRIEF DESCRIPTION OF DRAWINGS
[0036] Figure 1 It is a structural schematic view of the ice-making module in one of the embodiments.
[0037] Figure 2 It is a sectional view of the ice-making module in one of the embodiments.
[0038] Figure 3 It is an exploded view of the ice-making module in one of the embodiments.
[0039] Figure 4Structure diagram of the hidden housing assembly behind the water dispenser in one embodiment;
[0040] Figure 5 Sectional view of the water dispenser in one embodiment.
[0041] Reference signs:
[0042] 10 ice making device, 20 housing assembly, 201 installation cavity, 30 filter assembly, 31 PC filter core, 32 RO filter core, 40 water tank assembly, 41 raw water tank, 42 pure water tank;
[0043] 100 ice making module, 110 body, 111 first connecting part, 112 first limiting column, 1101 ice making space, 1102 threaded hole, 1103 water collecting port, 120 drainage turnover structure, 121 ice making box, 122 driving assembly, 1210 ice making groove, 1201 drainage hole, 130 ice storage box, 131 ice box body, 132 fixed frame, 1301 water inlet, 1302 first through hole, 150 ice water tank, 151 second connecting part, 1510 first limiting groove, 1501 avoiding hole;
[0044] 210 compressor, 220 condenser, 230 evaporator, 240 ice making finger. DETAILED DESCRIPTION
[0045] In order to make the person skilled in the art better understand the scheme of the present application, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should be within the protection scope of the present application.
[0046] It should be noted that the terms "first", "second" and the like in the specification and claims of the present application and the above-described drawings are used to distinguish similar objects, and do not necessarily have to describe a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so as to describe the embodiments of the present application herein.
[0047] As Figures 1 to 5 shown, the present embodiment provides an ice making module, which comprises a body 110, a drainage turnover structure 120, an ice storage box 130 and an ice water box 150;
[0048] The body 110 is provided with an ice making space 1101 and a water collecting port 1103 communicating with the ice making space 1101;
[0049] The drainage overturning structure 120 comprises an ice making box 121 and a driving assembly 122, the driving assembly 122 is arranged on the machine body 110, the ice making box 121 is installed in the ice making space 1101, the ice making box 121 is provided with an ice making groove 1210 and a drainage hole 1201 communicated with the ice making groove 1210, and the driving assembly 122 is in transmission connection with the ice making box 121;
[0050] The ice storage box 130 is movably inserted into the ice making space 1101, and the opening direction of the ice storage box 130 faces the ice making box 121;
[0051] The machine body 110 is arranged on an ice water tank 150, a water inlet of the ice water tank 150 is connected with the water collecting port 1103, the ice making groove 1210, the drainage hole 1201, the water collecting port 1103 and the ice water tank 150 are sequentially communicated, and the ice water tank 150 is detachably connected with the machine body 110;
[0052] A water supply pipeline is arranged between the ice water tank 150 and the ice making box 121, and a circulating water pump is arranged on the water supply pipeline.
[0053] The machine body 110 is a shell structure with an ice making space 1101 having two open ends, and the ice making space 1101 can be used to install the ice making box 121 and the ice storage box 130. For example, the two openings of the ice making space 1101 are distributed on the top of the machine body 110 and the side of the machine body 110 respectively, and the ice storage box 130 is movably inserted into the ice making space 1101 from the side of the machine body 110.
[0054] The water supply pipeline can continuously supply water to the ice making groove 1210. Specifically, after the circulating water pump on the water supply pipeline is turned on, the circulating water pump draws pure water in the ice water tank 150 into the ice making groove 1210, the liquid in the ice making groove 1210 is cooled by the refrigeration circuit module, and the pure water that has not frozen into ice is discharged through the drainage hole 1201 on the ice making groove 1210, falls into the ice making space 1101 and flows into the ice water tank 150 through the water collecting port 1103, so as to continuously supply water to the ice making groove 1210.
[0055] It should be noted that the above refrigeration circuit module includes a circuit module including a compressor 210, a condenser 220, an evaporator 230, and an ice-making finger 240 connected to the evaporator 230, the ice-making finger 240 extending into the ice-making tank 1210, the compressor 210, the condenser, and the evaporator 230 being connected by a refrigerant pipe, and during operation, the refrigerant in the refrigerant pipe is compressed into a high-temperature and high-pressure gas in the compressor 210, the high-temperature and high-pressure gas is cooled by the condenser 220 to obtain a high-temperature and high-pressure liquid, the high-temperature and high-pressure liquid is reduced in pressure by the throttling device and then enters the evaporator 230, and the high-temperature and low-pressure liquid absorbs the heat of the ice-making finger 240 and the pure water in the ice-making tank 1210 in the evaporator 230 to convert into a low-temperature and low-pressure gas, thereby reducing the temperature of the pure water on the surface of the ice-making finger 240.
[0056] In addition, the driving assembly 122 can drive the ice-making box 121 to rotate. Specifically, when the ice on the surface of the ice-making finger 240 has a certain thickness, the circulating water pump is stopped and the evaporator 230 is supplied with high-temperature refrigerant, so that the ice on the surface of the ice-making finger 240 is heated and falls off, at this time, the driving assembly 122 drives the ice-making box 121 to rotate, and the heated and fallen ice directly falls into the ice storage box 130.
[0057] The ice-water tank 150 and the body 110 are detachably connected. Specifically, the ice-water tank 150 and the body 110 are two independent shell structures, and the ice-water tank 150 and the body 110 are connected by one or a combination of buckle structures and screws. Further, based on the detachable connection between the ice-water tank 150 and the body 110, compared with the ice-water tank 150 and the body 110 of the water dispenser on the market which are integrated structures, the ice-water tank 150 and the body 110 are improved in disassembly difficulty on the water dispenser.
[0058] The ice making module in the above embodiment comprises a body 110, a drainage overturning structure 120, an ice storage box 130 and an ice water tank 150. The body 110 is internally provided with an ice making space 1101 and a water collecting opening 1103 communicating with the ice making space 1101. The drainage overturning structure 120 comprises an ice making box 121 and a driving assembly 122. The ice making box 121 is installed in the ice making space 1101 and is provided with an ice making groove 1210 and a drainage hole 1201 communicating with the ice making groove 1210. The driving assembly 122 is in transmission connection with the ice making box 121. The ice storage box 130 is movably inserted into the ice making space 1101. The body 110 is arranged on the ice water tank 150. A water inlet of the ice water tank 150 is connected with the water collecting opening 1103. The ice making groove 1210, the drainage hole 1201, the water collecting opening 1103 and the ice water tank 150 are sequentially communicated. A water supply pipeline is arranged between the ice water tank 150 and the ice making box 121. A circulating water pump is arranged on the water supply pipeline. The ice water tank 150 is detachably connected with the body 110. For example, the ice water tank 150 can be connected with the body 110 by means of screws or buckles. The ice water tank 150 and the body 110 can be assembled as independent parts in the water dispenser. This not only reduces the disassembly difficulty of the whole water dispenser, but also reduces the maintenance and replacement cost of the ice water tank 150 or the body 110.
[0059] As shown in Figures 1 to 3 In addition to the features of the above embodiment, the present embodiment is further limited as follows: the body 110 is located above the ice water tank 150. The body 110 and the ice water tank 150 are both formed with a first connecting part 111 along a first direction. The body 110 and the ice water tank 150 are both formed with a second connecting part 151 along a second direction. One of the first connecting part 111 and the second connecting part 151 is provided with a threaded hole 1102, and the other is provided with a relief hole 1501. The first connecting part 111 and the second connecting part 151 are fixedly connected by screws.
[0060] Or,
[0061] The body 110 is located above the ice water tank 150. The body 110 is formed with a first connecting part 111 along a first direction. The ice water tank 150 is formed with a second connecting part 151 along a second direction. One of the first connecting part 111 and the second connecting part 151 is provided with a threaded hole 1102, and the other is provided with a relief hole 1501. The first connecting part 111 and the second connecting part 151 are fixedly connected by screws.
[0062] In the above embodiment, the body 110 and the ice water tank 150 are fixed by screws through two different first connecting parts 111 and second connecting parts 151 in different directions. This facilitates the assembly of the screws, thereby reducing the difficulty of the fixed assembly of the body 110 and the ice water tank 150.
[0063] The housing 110 and the ice water tank 150 can be connected via a first connecting portion 111, a second connecting portion 151, and screws. For example, the housing 110 has a first connecting portion 111 along a first direction and a second connecting portion 151 along a second direction. The ice water tank 150 has a first connecting portion 111 along a first direction and a second connecting portion 151 along a second direction. The first connecting portion 111 of the ice water tank 150 and the second connecting portion 151 of the housing 110 are connected via screws, and the second connecting portion 151 of the ice water tank 150 is connected to the first connecting portion 111 of the housing 110. Since the first connecting portion 111 and the second connecting portion 151 are offset from each other, the difficulty of screw assembly can be reduced. It should be noted that in other embodiments, the housing 110 has only the first connecting portion 111 along the first direction, and the ice water tank 150 has only the second connecting portion 151 along the second direction. Alternatively, the first direction can be vertical, and the second direction can be horizontal.
[0064] like Figures 1 to 3 As shown, in addition to the features of the above embodiments, this embodiment is further defined as follows: a protruding first limiting column 112 is formed at the bottom of the body 110, the water collection port 1103 is distributed on the first limiting column 112, a first limiting groove 1510 matching the first limiting column 112 is formed on the top of the ice water tank 150, the first limiting groove 1510 is connected to the interior of the ice water tank 150, and the first limiting column 112 is inserted into the first limiting groove 1510.
[0065] The above embodiment further defines the cooperation between the body 110 and the ice water tank 150 through the first limiting column 112 and the first limiting groove 1510, which not only realizes the preliminary positioning of the body 110 and the ice water tank 150 and improves the assembly efficiency, but also the first limiting column 112 is inserted into the first limiting groove 1510, and the water collection port 1103 on the body 110 is connected with the ice water tank 150.
[0066] The first limiting post 112 at the bottom of the housing 110 can be inserted into the first limiting groove 1510 at the top of the ice-water tank 150 to achieve the initial positioning of the housing 110 and the ice-water tank 150. The first limiting post 112 can be a columnar structure extending from the bottom of the housing 110 away from the ice-making space 1101, and the columnar structure has a water collection port 1103. The first limiting groove 1510 can be a groove structure formed at the top of the ice-water tank 150, and the shape of the first limiting groove 1510 matches that of the first limiting post 112. When the first limiting post 112 is inserted into the first limiting groove 1510, the ice water discharged from the drainage hole 1201 in the ice-making trough 1210 falls into the ice-making space 1101 and then flows into the ice-water tank 150 through the water collection port 1103.
[0067] like Figure 2 andFigure 3 As shown, in addition to the features of the above embodiments, this embodiment further defines: the first connecting part 111 is a columnar structure, the threaded holes 1102 are distributed on the first connecting part 111, the second connecting part 151 is a block structure, and a second limiting groove is provided on the second connecting part 151, and the avoidance holes 1501 are distributed on the second limiting groove.
[0068] Among them, the first connecting part 111 can be a columnar structure extending in the vertical direction, and the second connecting part 151 can be a block structure extending in the horizontal direction. Based on the fact that a threaded hole 1102 is provided on the first connecting part 111, a second limiting groove and an avoidance hole 1501 are provided on the second connecting part 151, when the first connecting part 111 is inserted into the second limiting groove, not only the avoidance hole 1501 and the threaded hole 1102 are positioned and docked, but also shaking between the body 110 and the ice water tank 150 is avoided.
[0069] like Figure 2 As shown, in addition to the features of the above embodiment, this embodiment further defines that: a water outlet 1301 is provided at the bottom of the ice storage box 130 , and the water outlet 1301 is communicated with the ice making space 1101 .
[0070] The above embodiment further defines that a drain port 1301 is provided at the bottom of the ice storage box 130. When the ice cubes in the ice storage box 130 melt and turn into ice water, the ice water can be directly discharged into the ice-making space 1101 through the drain port 1301 and recovered into the ice water tank 150 through the water collection port 1103. By providing the drain port 1301, it is possible to prevent the ice water melted in the ice storage box 130 from freezing into ice again, causing multiple independent ice cubes to be connected together. In addition, based on the cooperation between the drain port 1301 and the water collection port 1103, the melted ice water is collected, thereby improving resource utilization and reducing power consumption.
[0071] There may be multiple water outlets 1301 , and the multiple water outlets 1301 are distributed at the bottom of the ice storage box 130 .
[0072] In addition to the features of the above embodiment, this embodiment further defines that: a one-way valve is provided at the water outlet 1301 , and the one-way valve is used to selectively open the water outlet 1301 according to whether the ice storage box 130 is inserted into the ice making space 1101 .
[0073] The above embodiment further specifies that a one-way valve is provided on the water outlet 1301. The one-way valve can open the water outlet 1301 when the ice storage box 130 is inserted into the ice making space 1101, so that the ice water in the ice storage box 130 can be discharged through the water outlet 1301. At the same time, the one-way valve can close the water outlet 1301 after the ice storage box 130 is removed from the ice making space 1101, so that the ice water in the ice storage box 130 cannot be discharged.
[0074] The one-way valve can be used to control the opening and closing of the water outlet 1301. Specifically, when the ice bank 130 is assembled on the housing 110 and extends into the ice-making space 1101, the one-way valve is in the open state, and the melted ice water in the ice bank 130 can drip into the ice-making space 1101 through the water outlet 1301. When the ice bank 130 is removed from the ice-making space 1101, the one-way valve is in the closed state, and the water outlet 1301 is closed, preventing the melted ice water in the ice bank 130 from being discharged, thereby preventing the space where the ice bank 130 is stored from being wet.
[0075] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further defines: the ice storage box 130 includes an ice box body 131 and a fixed frame 132, the fixed frame 132 is connected to the body 110, and the fixed frame 132 is installed in the ice making space 1101, the ice box body 131 is movably inserted on the fixed frame 132, and a plurality of first through holes 1302 are opened at the bottom of the fixed frame 132.
[0076] The above embodiment further defines that the ice box body 131 is movably inserted into the fixed frame 132, and a first through hole 1302 is provided at the bottom of the fixed frame 132. When the ice box body 131 is inserted into the ice-making space 1101, the ice water discharged from the water outlet 1301 falls onto the fixed frame 132, and then falls into the ice-making space 1101 through the first through hole 1302 on the fixed frame 132.
[0077] The fixing frame 132 may be a frame shell structure with at least two openings. The openings on the sides of the fixing frame 132 may be used for the movably inserting of the ice box body 131 . The fixing frame 132 may be connected to the body 110 by means of buckles or screws.
[0078] In addition to the features of the above embodiment, this embodiment further stipulates that: the ice box body 131 is made of stainless steel.
[0079] In the above embodiment, the material of the ice box body 131 is further limited to stainless steel. Based on the above design, the ice box body 131 can inhibit the generation of bacteria and avoid contamination of the ice cubes in the ice storage box 130.
[0080] like Figure 2 As shown, in addition to the features of the above embodiments, this embodiment further defines that: the bottom of the body 110 is designed to be inclined, and the bottom of the body 110 is inclined upward from the water collection port 1103 to the surrounding areas.
[0081] The bottom of the body 110 is further inclined upward from the water collecting port 1103 to the outside in the above embodiments, so that the ice water falling in the ice making space 1101 can slide to the water collecting port 1103 under the action of gravity, and then be transported to the ice water tank 150 for collection, and long-term water accumulation in the ice making space 1101 can be avoided.
[0082] As shown in Figures 1 to 5 The present embodiment provides an ice making device, which comprises a refrigeration circuit module and an ice making module 100 according to any one of the above claims;
[0083] The refrigeration circuit module comprises a compressor 210, a condenser 220 and an evaporator 230, which are connected through refrigerant pipes;
[0084] The evaporator 230 is connected with a plurality of ice making fingers 240, which are inserted into the ice making groove 1210.
[0085] As shown in Figures 1 to 5 The present embodiment provides a water dispenser, which comprises a shell assembly 20, a filter assembly 30, a water tank assembly 40 and an ice making device 10 according to the above;
[0086] The filter assembly 30, the water tank assembly 40 and the ice making device 10 are installed in the installation cavity 201 formed in the shell assembly 20;
[0087] The water tank assembly 40 comprises a raw water tank 41, a pure water tank 42, a first water pump, a second water pump and a third water pump. The raw water tank 41 is used to store tap water. The first water pump is used to pump the tap water in the raw water tank 41 to the filter assembly 30 for filtration to obtain pure water and then transport the pure water to the pure water tank 42. The second water pump is used to pump the pure water in the pure water tank 42 to the ice water tank 150. The third water pump is used to pump the ice water in the ice water tank 150 to the outside.
[0088] The filter assembly 30 can be used to filter the tap water to obtain pure water which can be directly drunk. The filter assembly 30 can comprise a PC filter core 31 and an RO filter core 32.
[0089] Specifically, during the ice making process, when the user presses the ice water taking button, the third water pump pumps the ice water in the ice water tank 150. When the water in the ice water tank 150 is insufficient, the second water pump starts to work to pump the pure water in the pure water tank 42 to the ice water tank 150 for replenishment. When the water in the pure water tank 42 is insufficient, the first water pump works to pump the tap water in the raw water tank 41 to the filter assembly 30 for filtration to obtain pure water, which is then transported to the pure water tank 42.
[0090] Any combination of the technical features in the above embodiments can be made, and for the sake of brevity, not all possible combinations are described above, however, as long as the combination of the technical features does not exist, it should be considered as the scope of the description.
[0091] The above embodiments only express several implementation manners of the application, the description is more specific and detailed, but it should not be understood as the limitation of the patent scope of the application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the application, a number of modifications and improvements can be made, which belong to the protection scope of the application. Therefore, the protection scope of the utility model patent should be subject to the appended claims.
Claims
1. An ice-making module, characterized by, The utility model relates to an ice making machine, which comprises: a machine body (110) having an ice making space (1101) and a water collecting opening (1103) communicating with the ice making space (1101); a drainage overturning structure (120) comprising an ice making box (121) and a driving assembly (122), wherein the driving assembly (122) is arranged on the machine body (110), the ice making box (121) is arranged in the ice making space (1101), the ice making box (121) is provided with an ice making groove (1210) and a drainage hole (1201) communicating with the ice making groove (1210), and the driving assembly (122) is in driving connection with the ice making box (121); an ice storage box (130) movably inserted into the ice making space (1101), and the ice storage box (130) has an opening direction towards the ice making box (121); an ice water tank (150) arranged on the machine body (110), wherein a water inlet of the ice water tank (150) is connected with the water collecting opening (1103), the ice making groove (1210), the drainage hole (1201), the water collecting opening (1103) and the ice water tank (150) are sequentially communicated, and the ice water tank (150) is detachably connected with the machine body (110); a water supply pipeline is arranged between the ice water tank (150) and the ice making box (121), and a circulating water pump is arranged on the water supply pipeline.
2. The ice-making module of claim 1, wherein, The machine body (110) is located above the ice water tank (150), the machine body (110) and the ice water tank (150) are both formed with a first connecting part (111) along a first direction, the machine body (110) and the ice water tank (150) are both formed with a second connecting part (151) along a second direction, one of the first connecting part (111) and the second connecting part (151) is provided with a threaded hole (1102), and the other is provided with a avoiding hole (1501), and the first connecting part (111) and the second connecting part (151) are fixedly connected through screws. Alternatively, the machine body (110) is located above the ice water tank (150), the machine body (110) is formed with a first connecting part (111) along a first direction, the ice water tank (150) is formed with a second connecting part (151) along a second direction, one of the first connecting part (111) and the second connecting part (151) is provided with a threaded hole (1102), and the other is provided with a avoiding hole (1501), and the first connecting part (111) and the second connecting part (151) are fixedly connected through screws.
3. The ice-making module of claim 2, wherein, The bottom of the body (110) is formed with a protruding first limiting column (112), the water collecting port (1103) is distributed on the first limiting column (112), the top of the ice water tank (150) is formed with a first limiting groove (1510) matched with the first limiting column (112), the first limiting groove (1510) is in communication with the inside of the ice water tank (150), and the first limiting column (112) is inserted into the first limiting groove (1510). And / or, The first connecting part (111) is in a columnar structure, the threaded holes (1102) are distributed on the first connecting part (111), the second connecting part (151) is in a block structure, and a second limiting groove is formed in the second connecting part (151), and the avoiding holes (1501) are distributed on the second limiting groove.
4. The ice-making module of claim 1, wherein, The bottom of the ice storage box (130) is provided with a water inlet (1301), and the water inlet (1301) is in communication with the ice making space (1101).
5. The ice-making module of claim 4, wherein, A one-way valve is arranged at the water inlet (1301), and the one-way valve is used for selectively conducting the water inlet (1301) according to whether the ice storage box (130) is inserted into the ice making space (1101).
6. The ice-making module of claim 4 or 5, wherein, The ice storage box (130) comprises an ice box body (131) and a fixed frame (132), the fixed frame (132) is connected with the body (110), the fixed frame (132) is installed in the ice making space (1101), the ice box body (131) is movably inserted into the fixed frame (132), and a plurality of first through holes (1302) are formed in the bottom of the fixed frame (132).
7. The ice-making module of claim 6, wherein, The ice box body (131) is made of stainless steel.
8. The ice-making module of claim 1, wherein, The bottom of the body (110) is designed to be inclined, and the bottom of the body (110) is inclined upward from the center of the water collecting port (1103) to the periphery.
9. An ice making device, characterized by, The refrigeration circuit module comprises a compressor (210), a condenser (220) and an evaporator (230), and the compressor (210), the condenser (220) and the evaporator (230) are in communication through a refrigerant pipe; A plurality of ice making fingers (240) are connected to the evaporator (230), and the ice making fingers (240) are inserted into the ice making groove (1210). The filter assembly (30), the water tank assembly (40) and the ice making device (10) are installed in the mounting cavity (201) formed in the shell assembly (20).
10. A water dispenser, characterized by The filter assembly (30), the water tank assembly (40) and the ice making device (10) are installed in the mounting cavity (201) formed in the shell assembly (20). The water tank assembly (40) comprises a raw water tank (41), a pure water tank (42), a first water pump, a second water pump and a third water pump, the raw water tank (41) is used for storing tap water, the first water pump is used for pumping the tap water in the raw water tank (41) to the filter assembly (30) for filtering to obtain pure water and transport the pure water to the pure water tank (42), the second water pump is used for pumping the pure water in the pure water tank (42) to the ice water tank (150), and the third water pump is used for pumping the ice water in the ice water tank (150) to the outside.