A center console integrated with a refrigerator with ice making and refrigeration functions and a vehicle
By integrating ice-making and cooling modules into the center console, the refrigerator solves the problems of in-vehicle refrigerators being unable to make ice and short-distance cold drinks not being able to cool down quickly, achieving rapid ice making and effective cooling, and meeting the needs of multiple usage scenarios.
Patent Information
- Application Number
- CN202411365807.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2044-09-29
AI Technical Summary
Existing car refrigerators cannot make ice, cannot quickly cool down cold drinks during short trips, and have insignificant cooling effects in urban environments.
The refrigerator, which integrates both ice-making and cooling functions on the center console, includes an ice-making module and a cooling module. It uses components such as a compressor, condenser, and evaporator to achieve rapid ice making and cooling. The design of double handles and covers makes it easy to take out ice cubes.
It enables rapid cooling of cold drinks during short trips, meets the freezing needs of different scenarios, and maintains effective cooling performance in urban environments, improving the convenience and functionality of the car refrigerator.
Smart Images

Figure CN119261720B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of center consoles of vehicles, in particular to a center console integrated with a refrigerator with ice making and refrigeration functions and a vehicle. BACKGROUND
[0002] Vehicle-mounted refrigerators were initially installed in high-end vehicles and entered the field of view of Chinese consumers. With the increasing demand for outdoor vehicle scenes, the demand for functional use in vehicles has increased, and more and more new energy vehicle manufacturers have configured refrigerators as highlights.
[0003] Problems existing in the prior art: new energy vehicle cabin function trend - at the same time, configure refrigerator sofa large color TV. The vehicle environment is more home-based, and the refrigerator based on single refrigeration function cannot meet the needs of different groups of people. In order to solve this problem, some car owners will purchase a separate vehicle-mounted refrigerator capable of making ice and place it in the trunk, but it is not convenient to take out, cannot timely solve the needs of passengers during driving, does not meet the integration target of the vehicle and the quality is difficult to guarantee. In addition, taking the city as an example, it takes 30 minutes to drive from home to the destination. The temperature of the ordinary vehicle-mounted refrigerator can only be reduced to 5℃. If you want to reduce the cold drink to minus 4-5℃, it will take 40-50 minutes. Long-distance self-driving is possible, but it has disadvantages in the city. When the refrigerator restarts, it takes longer to cool the beverage, and the refrigerator with only refrigeration function is not effective in the city. SUMMARY
[0004] Based on the above description, the present application provides a center console integrated with a refrigerator with ice making and refrigeration functions and a vehicle to solve the problem that the existing vehicle-mounted refrigerator cannot make ice and cannot quickly cool the cold drink in a short distance.
[0005] The technical solution of the present application to solve the above technical problems is as follows:
[0006] A center console integrated with a refrigerator with ice making and refrigeration functions, the center console comprising a control part close to a windshield, a double-opening armrest, and further comprising an integrated refrigerator and a cover plate;
[0007] A containing space is formed below the double-opening armrest of the center console, and the containing space is detachably connected with the integrated refrigerator;
[0008] The integrated refrigerator comprises an ice making module and a refrigeration module, and the top surface of the ice making module is open;
[0009] The double-opening armrest is movably connected with the center console, the double-opening armrest and the integrated refrigerator are separated by the cover plate, the cover plate is connected with the top surface of the ice making module and can be opened.
[0010] On the basis of the above technical solution, the present application can be further improved as follows.
[0011] Further, the center console integrated with the refrigerator with the functions of ice making and refrigeration,
[0012] The ice making module comprises a first shell, a compressor, a condenser, a drying filter, a capillary tube, a first evaporator, a water storage tank, a soft water pipe, a water pump, an ice cube mold, and an ice storage tank.
[0013] Further, the center console integrated with the refrigerator with the functions of ice making and refrigeration,
[0014] The compressor, the condenser, the drying filter, the capillary tube, and the first evaporator are sequentially connected through pipelines, and a refrigerant flows in the pipelines. The water pump is arranged in the water storage tank. The ice cube mold is attached to the first evaporator at a side away from the ice cube. One end of the soft water pipe is connected to the water pump, and the other end is connected to the ice cube mold adjacent to the ice cube mold, for spraying water on the ice cube mold at the first evaporator to make ice cubes. The ice storage tank is connected below the first evaporator, for containing the made ice cubes.
[0015] Further, the center console integrated with the refrigerator with the functions of ice making and refrigeration,
[0016] The ice making module further comprises a fan, which is connected to the condenser in the integrated refrigerator, for helping to cool the condenser.
[0017] Further, the center console integrated with the refrigerator with the functions of ice making and refrigeration,
[0018] The end of the double-open armrest away from the windshield is hinged to the center console through a first hinge, so that the double-open armrest can be flipped.
[0019] Further, the center console integrated with the refrigerator with the functions of ice making and refrigeration, the double-open armrest further comprises a connecting rod, a second hinge, a third hinge, and a fourth hinge. The end of the center console away from the windshield is connected to a fixed part. An access opening is formed in the fixed part, and the access opening corresponds to an opening on the top surface of the ice making module. The end of the double-open armrest away from the windshield is hinged to the end of the fixed part away from the windshield through a first hinge. One end of the connecting rod is movably connected to the bottom surface of the double-open armrest through a second hinge, and the other end is movably connected to the top surface of a cover plate through a third hinge. The end of the cover plate close to the first hinge is connected to the end of the access opening close to the first hinge through a fourth hinge.
[0020] Further, the center console integrated with the refrigerator with the functions of ice making and refrigeration, an ice outlet ramp inclined towards the ice storage tank is connected below the ice cube mold on the ice making module. An ice outlet slope inclined towards the ice storage tank is connected below the ice outlet ramp on the ice making module. The end of the ice outlet slope is adjacent to the ice storage tank, so that the ice cubes can fall into the ice storage tank.
[0021] Further, the above-mentioned center console integrated with the refrigerator with ice-making and refrigeration functions,
[0022] The ice storage tank and the water storage tank are detachably connected in the first shell. The detachable connection can be a snap connection or placed in a matching groove.
[0023] Further, the above-mentioned center console integrated with the refrigerator with ice-making and refrigeration functions, the integrated refrigerator further comprises a refrigeration module, the ice-making module is located in the upper part, the refrigeration module is located in the lower part, the top surface of the refrigeration module is open, and the refrigeration module is connected with the integrated refrigerator through sliding connection and fixed by buckle. The second handle is connected to the outer wall of the refrigeration module.
[0024] Further, the above-mentioned center console integrated with the refrigerator with ice-making and refrigeration functions, the top surface of the water storage tank is provided with a water inlet, and the top surface is connected with the first handle.
[0025] Further, the above-mentioned center console integrated with the refrigerator with ice-making and refrigeration functions, the number of the first evaporator is 6.
[0026] Further, the above-mentioned center console integrated with the refrigerator with ice-making and refrigeration functions,
[0027] The refrigeration module comprises a compressor, a condenser, a drying filter, and a capillary tube shared with the ice-making module, and further comprises a second shell, a second evaporator, a temperature sensor, and a temperature controller. The capillary tube and the second evaporator are connected through pipelines, the second evaporator and the temperature sensor are placed in the second shell, and the temperature sensor is connected with the temperature controller.
[0028] Further, the above-mentioned center console integrated with the refrigerator with ice-making and refrigeration functions,
[0029] The integrated refrigerator further comprises a processor and a reversing valve, the reversing valve is used for controlling the switching of the ice-making module and the refrigeration module, and the reversing valve is connected with the processor.
[0030] Further, the above-mentioned center console integrated with the refrigerator with ice-making and refrigeration functions,
[0031] The integrated refrigerator is detachably connected with the containing space through buckle.
[0032] Further, the above-mentioned center console integrated with the refrigerator with ice-making and refrigeration functions, the inclination angle of the ice outlet slide is greater than that of the ice outlet slope, and the end of the ice outlet slide is located above the ice outlet slope, so that the ice blocks can fall onto the ice outlet slope along the ice outlet slide, and then slide into the ice storage tank along the ice outlet slope.
[0033] Further, the above-mentioned center console integrated with the refrigerator with ice making and refrigeration functions, the first hinge is a positioning hinge, which can position the double-opened handrails after being turned to the required angle.
[0034] Further, the above-mentioned center console integrated with the refrigerator with ice making and refrigeration functions, the cup holder is connected between the double-opened handrails and the control part of the center console, and has two communicating cup placing grooves, and the caliber of the communicating part is smaller than the diameter of the cup placing groove.
[0035] The application also provides a vehicle comprising the above-mentioned center console.
[0036] Compared with the prior art, the technical scheme of the application has the following beneficial technical effects:
[0037] The application connects the integrated refrigerator at the center console, and the integrated refrigerator has an ice making module and a refrigeration module. The integrated functions are as follows: the temperature in the refrigeration module area is 18 DEG C to -4 DEG C, the function is to keep fresh, and the temperature in the ice making module is -18 DEG C to -24 DEG C, which is used for ice making and rapid cooling. Even for a short distance, the beverage food and the like can be rapidly cooled by the ice making module, and the problem that the refrigeration effect is not ideal when the distance is short is overcome.
[0038] The double-opened handrails are turned and connected with the fixed part through the first hinge, and the cover plate is hinged with the double-opened handrails through the connecting rod, so that the cover plate of the ice making module can be opened at the same time by lifting the double-opened handrails, and the frozen articles are convenient to take.
[0039] The unfinished beverage is placed in the cup holder, which can prevent spilling due to shaking. BRIEF DESCRIPTION OF DRAWINGS
[0040] Figure 1 The structure schematic view when the integrated refrigerator is separated from the center console is provided for the embodiment of the application;
[0041] Figure 2 The structure schematic view when the integrated refrigerator is connected with the center console is provided for the embodiment of the application;
[0042] Figure 3 The perspective structure schematic view of the integrated refrigerator is provided for the embodiment of the application;
[0043] Figure 4 The structure schematic view when the double-opened handrails are opened is provided for the embodiment of the application;
[0044] Figure 5 The structure schematic view when the double-opened handrails are turned to take ice is provided for the embodiment of the application.
[0045] In the drawings, the component list represented by each reference sign is as follows:
[0046] 100, center console;
[0047] 1. Control unit;
[0048] 2. Cup holder;
[0049] 3. Double swing arm, 31, first hinge, 32, connecting rod, 33, second hinge, 34, third hinge, 35, fixed part, 36, access opening;
[0050] 4. Integrated refrigerator, 41, ice making module, 411, compressor, 412, condenser, 4121, fan, 413, drying filter, 414, capillary tube, 415, first evaporator, 416, water storage tank, 4161, first handle, 417, soft water pipe, 418, water pump, 419, ice storage tank, 4191, ice outlet slide, 4192, ice outlet slope, 42, refrigeration module, 421, second housing, 422, second evaporator, 423, second handle;
[0051] 5. Cover plate;
[0052] 6. Processor. DETAILED DESCRIPTION
[0053] For the purpose of promoting an understanding of the present application, the present application will now be described more fully. The present application may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and fully convey the scope of the application to those skilled in the art.
[0054] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application.
[0055] It will be understood that the spatially relative terms "beneath", "below", "lower", "under", "above", "upper" and the like, can be used herein for ease of description to describe one element or feature's relationship to another element(s) or feature(s) as illustrated in the figures. It will be understood that the spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientations depicted in the figures. For example, if the device in the figures is turned over, elements described as "below" or "beneath" other elements or features would then be oriented "above" or "over" the other elements or features. Thus, the exemplary term "below" can encompass both an orientation of above and below. The device can be otherwise oriented (e.g., rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly.
[0056] It should be noted that when an element is referred to as being "connected" to another element, it can be directly connected to the other element or connected to the other element through an intermediate element. "Connected" in the following embodiments should be understood as "electrically connected", "communicatively connected" and the like if the circuits, modules, units and the like connected to each other have transmission of electrical signals or data.
[0057] As used herein, the singular forms "a", "an" and "the" include plural referents unless the context clearly dictates otherwise. It should also be understood that the term "including" or "comprising" or "having" and the like, specifies the presence of stated features, integers, steps, operations, components, parts, or combinations thereof, but do not preclude the presence or addition of one or more other features, integers, steps, operations, components, parts, or combinations thereof.
[0058] The application provides a center console integrated with a refrigerator having ice making and refrigeration functions, the center console 100 sequentially comprises a control part 1, a cup holder 2 and a double-open armrest 3, the control part 1 is close to a windshield, the double-open armrest 3 is away from the windshield, and the center console 100 further comprises an integrated refrigerator 4 and a cover plate 5;
[0059] The double-open armrest 3 is provided with a containing space below, and the containing space is detachably connected with the integrated refrigerator 4.
[0060] The integrated refrigerator 4 comprises an ice making module 41 and a refrigeration module 42, and the ice making module 41 is provided with an opening on the top surface.
[0061] The double-open armrest 3 is movably connected with the center console 100, the double-open armrest 3 and the integrated refrigerator 4 are separated by the cover plate 5, the cover plate 5 is connected with the top surface of the ice making module 41 and can be opened. The center console has refrigeration and ice making functions, and solves the problem that cold drinks cannot be quickly cooled in short trips. The integrated refrigerator 4 is arranged below the double-open armrest 3, and ice can be taken from the double-open armrest 3.
[0062] Specifically, the center console is a center console between a driver's seat and a front passenger seat of a vehicle, and the length direction of the vehicle is a direction from a front end to a rear end of the vehicle.
[0063] In the embodiment, the integrated refrigerator 4 is detachably connected with the containing space through buckles. When not in use, the integrated refrigerator 4 is fixed in the containing space through buckles. Further, in order to facilitate the rear passengers to open the ice making module 41, the buckles are connected to one side of the ice making module 41 close to the rear seat.
[0064] In the embodiment, specifically, the ice-making module 41 comprises a first shell, a compressor 411, a condenser 412, a drying filter 413, a capillary tube 414, a first evaporator 415, a water storage tank 416, a soft water pipe 417, a water pump 418, an ice cube mold, and an ice storage tank 419. The first shell is a hollow tank with an open top, and the water storage tank 416, the ice storage tank 419, etc. are arranged in the first shell. The ice cube mold has a grid-shaped front surface, and the back surface of the ice cube mold is attached to the first evaporator 415.
[0065] In the embodiment, further, the compressor 411, the condenser 412, the drying filter 413, the capillary tube 414, and the first evaporator 415 are sequentially connected by pipelines, and a refrigerant flows in the pipelines. The water pump 418 is arranged in the water storage tank 416. The ice cube mold is vertically attached to the first evaporator 415 at a side without ice cubes. The soft water pipe 417 is connected to the water pump 418 at one end and connected to the ice cube mold, for example, above the ice cube mold, at the other end, for spraying water onto the ice cube mold at the first evaporator 415 to make ice cubes. The ice storage tank 419 is connected below the first evaporator 415 for containing the ice cubes. The soft water pipe 417 sprays water onto the ice cube mold to make ice cubes. The pipelines are filled with the refrigerant, and the refrigerant converted into gas returns to the compressor through a return pipeline to start a new cycle.
[0066] Working principle: The compressor 411 compresses the refrigerant into high-pressure gas, which is output to the condenser 412 for cooling. The condenser 412 cools the gas into liquid, which flows to the drying filter 413 to remove impurities and moisture in the refrigerant. The refrigerant filtered by the drying filter 413 flows through the capillary tube 414, is depressurized, and enters the first evaporator 415. The capillary tube 414 sends the low-pressure refrigerant to the first evaporator 415, where the refrigerant absorbs heat from the surroundings and evaporates. The soft water pipe sprays water onto the ice cube mold attached to the back of the first evaporator 415, and the ice cubes formed in the ice cube mold fall into the ice storage tank. The refrigerant converted into gas returns to the compressor 411 through a return pipeline to start a new cycle.
[0067] In the embodiment, the ice-making module 41 further comprises a fan 4121 connected to the condenser 412 in the integrated refrigerator 4 to help cool the condenser 412 and improve heat exchange efficiency.
[0068] In the embodiment, the refrigeration module 42 comprises the compressor 411, the condenser 412, the drying filter 413 and the capillary tube 414 shared by the ice making module 41, and further comprises a second casing 421, a second evaporator 422, a temperature sensor and a temperature controller. The capillary tube 414 and the second evaporator 422 are connected by a pipeline filled with refrigerant. The second casing is a hollow groove with an open top surface. The second evaporator 422, the temperature sensor and the like are arranged in the second casing 421. The temperature sensor is connected to the temperature controller. The temperature sensor senses the temperature in the second casing 421 and transmits the temperature information to the temperature controller. The temperature controller controls the temperature rise and fall in the second casing 421. The refrigerant converted into gas returns to the compressor through a return pipeline to start a new cycle.
[0069] In the embodiment, further, the integrated refrigerator 4 further comprises a processor 6 and a reversing valve for controlling the switching of the ice making module 41 and the refrigeration module 42. The reversing valve is connected to the processor 6, and the temperature controller is also connected to the processor 6. The processor 6 controls the switching of the reversing valve and controls the opening and closing of the temperature controller.
[0070] In the embodiment, the double-open handrail 3 is hingedly connected to the center console 100 through a first hinge 31 away from the windshield, so that the double-open handrail 3 can be flipped. The first hinge 31 can be a positioning hinge, so that the double-open handrail 3 can be positioned at a desired angle. The double-open handrail can adopt any of the existing technologies. For example, the double-open handrail 3 comprises a storage space, and first and second handrail cover plates are hingedly connected to the top surface of the storage space. The first and second handrail cover plates are clamped to a fixing portion 35 through buckles.
[0071] In the embodiment, the ice storage tank and the water storage tank are detachably connected in the first casing. The detachable connection can be buckle connection or placement in a matching groove.
[0072] In the embodiment, the double-open handrail 3 further comprises a connecting rod 32, a second hinge 33, a third hinge 34 and a fourth hinge. The end of the center console 100 away from the windshield is connected to the fixing portion 35. The fixing portion 35 is provided with a taking opening 36 opposite to the opening in the top surface of the ice making module 41, so as to facilitate the taking of frozen items. The end of the double-open handrail 3 away from the windshield is hingedly connected to the end of the fixing portion 35 away from the windshield. One end of the connecting rod 32 is movably connected to the bottom surface of the double-open handrail 3 through the second hinge 33, and the other end is movably connected to the top surface of the cover plate 5 through the third hinge 34. The end of the cover plate 5 close to the first hinge 31 is connected to the end of the taking opening 36 close to the first hinge 31 through the fourth hinge.
[0073] In the embodiment, the integrated refrigerator 4 further comprises a refrigeration module 42, the ice making module 41 is located at the upper part, the refrigeration module 42 is located at the lower part, the top surface of the refrigeration module 42 is open, is connected with the integrated refrigerator 4 through sliding and is fixed through buckling, and the outer wall of the refrigeration module 42 is connected with the second handle 423 on the side close to the rear seat.
[0074] In the embodiment, the top surface of the water storage tank 416 is provided with a water inlet, and the top surface is connected with the first handle 4161.
[0075] Further, in the embodiment, the cup holder 2 is connected between the double-open handrails 3 and the control part 1 of the center console 100, and has two cup placing grooves in communication, and the diameter of the communication part is smaller than the diameter of the cup placing groove.
[0076] In the embodiment, the number of the first evaporators 415 is six, so as to realize fast ice making.
[0077] In the embodiment, the ice making module 41 is connected with an ice outlet slide 4191 inclined to the ice storage tank 419 below the ice grid mold, the ice outlet slide 4191 of the ice making module 41 is connected with an ice outlet slope 4192 inclined to the ice storage tank 419 below, and the end of the ice outlet slope 4192 is adjacent to the ice storage tank 419, so that the ice blocks can fall into the ice storage tank 419. Further, the inclination angle of the ice outlet slide 4191 is greater than that of the ice outlet slope 4192, and the end of the ice outlet slide 4191 is located above the ice outlet slope 4192, so that the ice blocks can fall along the ice outlet slide 4191 to the ice outlet slope 4192, and then slide into the ice storage tank 419 along the ice outlet slope 4192.
[0078] The present application is based on the existing vehicle-mounted refrigerator with only refrigeration function and extends the ice making module.
[0079] The present application can meet the needs of the front and rear passengers. It can meet the needs of ice drinks in different scenes. Children going home from school, young people seeking cool after exercise, professionals refreshing before work, and people who prefer to put ice in water. The market trend provides frozen beverages, and the refrigerator with ice making module and refrigeration module is integrated in the double-open handrail space of the vehicle center console. The ice making function can solve the problem of rapid cooling of the refrigerator, and meet the needs of multiple scenes. The refrigeration module can refrigerate and preserve freshness, travel outdoors, and emergency medicine.
[0080] The integrated refrigerator is divided into upper and lower parts, the upper part is the ice making function, and the lower part is the refrigeration module, which can freeze and refrigerate. Under the space structure of sharing one compressor for ice making and refrigeration, six evaporators are used to realize fast ice making. The ice storage tank and the water storage tank are designed to be detachable, which is beneficial to cleaning and convenient to move.
[0081] When ice is needed, one end of the double-open handrail near the windshield is lifted, and the cover plate 5 is opened through the connecting rod, the second hinge and the third hinge. Press the double-open handrail, and the cover plate 5 is reset, and the buckle fixes the double-open handrail.
[0082] When the distance is short, the refrigeration effect of the refrigeration module is not enough, and the ice block in the ice making module is taken to reduce the temperature of the beverage. The beverage that is not drunk is placed on the cup holder, which can prevent spilling due to shaking. Through the temperature controller, the temperature of the refrigeration module area can be adjusted between 18℃ and -4℃, and the function is fresh-keeping. The temperature of the ice making module can be adjusted between -18℃ and -24℃, to ensure that ice is available at any time.
[0083] The application also provides a vehicle comprising the center console of any one of the above, and the structure of the center console is as described above, which will not be repeated here.
[0084] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A central control panel for a refrigerator integrating ice-making and refrigeration functions, the central control panel (100) comprising a control unit (1) near the windshield and a double-opening armrest (3), characterized in that, It also includes an integrated refrigerator (4) and a cover (5); The center console (100) has a storage space below the double-opening armrest (3), and an integrated refrigerator (4) is detachably connected to the storage space. The integrated refrigerator (4) includes an ice-making module (41) and a refrigeration module (42), with an opening on the top surface of the ice-making module (41); The double-opening armrest (3) is movably connected to the central control panel (100). The double-opening armrest (3) and the integrated refrigerator (4) are separated by a cover plate (5). The cover plate (5) is connected to the top surface of the ice-making module (41) and can be opened. The double-opening armrest (3) is hinged to the center console (100) at the end away from the windshield via a first hinge (31), allowing the double-opening armrest (3) to flip. The double-opening armrest (3) also includes a connecting rod (32), a second hinge (33), a third hinge (34), and a fourth hinge. The end of the center console (100) away from the windshield is connected to a fixing part (35). The fixing part (35) has a retrieval port (36), which is aligned with the opening on the top surface of the ice-making module. The double-opening handrail (3) is connected to the end of the fixed part (35) away from the windshield via a first hinge (31) and a rotating connection. One end of the connecting rod (32) is movably connected to the bottom surface of the double-opening handrail (3) via a second hinge (33), and the other end is movably connected to the top surface of the cover plate (5) via a third hinge (34). The end of the cover plate (5) near the first hinge (31) is connected to the end of the access port (36) near the first hinge (31) via a fourth hinge.
2. The central control panel of a refrigerator integrating ice-making and refrigeration functions according to claim 1, characterized in that, The ice-making module (41) includes a first housing, a compressor (411), a condenser (412), a dryer filter (413), a capillary tube (414), a first evaporator (415), a water storage tank (416), a soft water pipe (417), a water pump (418), an ice tray mold, and an ice storage tank (419).
3. The central control panel of a refrigerator integrating ice-making and refrigeration functions according to claim 2, characterized in that, The compressor (411), condenser (412), dryer filter (413), capillary tube (414), and first evaporator (415) are connected in sequence by pipelines, and refrigerant flows in the pipelines. The water pump (418) is placed in the water storage tank (416). The side of the ice tray mold facing away from the ice tray is attached to the first evaporator (415). One end of the soft water pipe (417) is connected to the water pump (418), and the other end is connected to the adjacent ice tray mold for spraying water onto the ice tray mold to make ice cubes. The ice storage tank (419) is connected below the ice tray mold for holding the made ice cubes.
4. The central control panel of a refrigerator integrating ice-making and refrigeration functions according to claim 3, characterized in that, The ice-making module (41) also includes a fan (4121), which is connected to the integrated refrigerator (4) near the condenser (412) to help cool the condenser (412).
5. The central control panel of a refrigerator integrating ice-making and refrigeration functions according to claim 2, characterized in that, The ice-making module (41) has an ice-discharging slide (4191) that is inclined toward the ice storage tank (419) below the ice grid mold. The ice-discharging slide (4191) on the ice-making module (41) has an ice-discharging ramp (4192) that is inclined toward the ice storage tank (419) below it. The end of the ice-discharging ramp (4192) is close to the ice storage tank (419), so that the ice blocks can fall into the ice storage tank (419).
6. The central control panel of a refrigerator integrating ice-making and refrigeration functions according to claim 2, characterized in that, The ice storage tank and water storage tank are detachably connected within the first housing.
7. A vehicle, characterized in that, Includes the central control unit (100) as described in any one of claims 1 to 6.
Citation Information
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