Mounting structure of vehicle-mounted refrigerator with ice making function
By designing a refrigeration cycle loop and solenoid valve control in the vehicle refrigerator, the problem of existing vehicle refrigerators being unable to make ice has been solved, achieving the effects of simplified installation and improved refrigeration effect.
Patent Information
- Application Number
- CN202423315029.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing vehicle refrigerators only have a heat preservation function, which cannot meet users' needs for ice making, and the overall installation structure needs to be improved.
An installation structure for a vehicle-mounted refrigerator with ice-making function was designed. A refrigeration cycle loop is formed by a compressor, condenser, ice maker, and cooling unit. The condenser delivers refrigerant to the ice maker and cooling unit, simplifying the overall installation structure. The independent operation of ice-making and cooling functions is controlled by a solenoid valve.
It realizes the functions of ice making and storage compartment refrigeration, simplifies the installation structure, improves user convenience and refrigeration effect, and avoids the need to set up multiple additional refrigeration systems.
Smart Images

Figure CN223596282U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of vehicle refrigerator, specifically relates to a kind of installation structure of vehicle refrigerator with ice making function. BACKGROUND
[0002] Vehicle refrigerator is a kind of cold storage equipment that can be carried on car, to meet the cold storage needs of passengers to cold drinks, food and other during vehicle driving.
[0003] Existing vehicle refrigerator usually only has heat preservation function, but with the increasing requirement of user to product function, the market is eagerly expecting to appear the vehicle refrigerator with ice making function, and the overall installation structure of the vehicle refrigerator with ice making and heat preservation function needs to be improved.
[0004] Therefore, further improvement is needed. INVENTION CONTENTS
[0005] The utility model is to overcome the deficiency of prior art, and provide an installation structure of vehicle refrigerator with ice making function, which can realize ice making function and storage cavity refrigeration function simultaneously, and has simple overall structure.
[0006] The utility model aims at realizing as follows:
[0007] An installation structure of vehicle refrigerator with ice making function, comprising refrigerator main body, the refrigerator main body includes storage cylinder, the inner side of storage cylinder forms storage cavity, the outer side of storage cylinder in refrigerator main body forms electric appliance cavity, the outer side of storage cylinder is also equipped with cooling part that can exchange heat with storage cavity, electric appliance cavity is equipped with compressor, condenser, ice maker and pipeline assembly, and the pipeline assembly is connected with compressor, condenser, ice maker and cooling part and forms refrigeration cycle loop.
[0008] As a specific scheme, the pipeline assembly includes first pipeline, second pipeline, third pipeline, fourth pipeline and fifth pipeline, compressor and condenser are communicated through first pipeline, condenser and ice maker and cooling part are communicated through second pipeline and third pipeline respectively, and compressor is communicated with ice maker and cooling part through fourth pipeline and fifth pipeline respectively.
[0009] As a specific scheme, the pipeline assembly further includes sixth pipeline, electromagnetic valve is arranged between condenser and ice maker and cooling part, electromagnetic valve and ice maker and cooling part are communicated through second pipeline and third pipeline, electromagnetic valve and condenser are communicated through sixth pipeline, and electromagnetic valve can control sixth pipeline to be mutually conducted or cut off with second pipeline and third pipeline.
[0010] As a specific scheme, the cooling part is in the shape of pipe body and is arranged along the outer side of storage cylinder.
[0011] As a specific solution, the ice maker comprises a bucket and an evaporation cylinder, the inner side of the bucket is provided with a containing cavity capable of storing liquid, the inner side of the evaporation cylinder is adjacent to the outer side of the bucket, and the outer side of the evaporation cylinder is provided with a cooling cavity capable of allowing refrigerant to flow through, and the cooling cavity is communicated with the second pipeline and the fourth pipeline respectively.
[0012] As a specific solution, a sealing ring is arranged between the bucket and the evaporation cylinder, the sealing ring is arranged circumferentially between the bucket and the evaporation cylinder, and the sealing ring is tightly fitted with the bucket and the evaporation cylinder respectively.
[0013] As a specific solution, the containing cavity is provided with a stirrer, the stirrer has a rotating shaft, the rotating shaft is connected with a driving device, and the stirrer rotates around the rotating shaft through the driving device.
[0014] As a specific solution, the refrigerator main body is provided with a mounting frame, the mounting frame is provided with a supporting step, the outer side of the driving device is provided with a to-position convex step corresponding to the supporting step, and the to-position convex step is abutted and fitted with the supporting step.
[0015] As a specific solution, the outer side of the driving device is provided with a contact switch, the contact switch is abutted with the mounting frame to enable the driving device to be powered on.
[0016] As a specific solution, the storage cylinder is in a rectangular shape, and a side of the storage cylinder facing the ice maker is horizontally and reversely spaced apart from the ice maker.
[0017] As a specific solution, the outer side of the storage cylinder forms an avoiding part corresponding to the ice maker, the avoiding part is in a concave shape and protrudes towards the storage cavity, and the ice maker is adjacent to the avoiding part.
[0018] The beneficial effects of the present application are as follows:
[0019] The condenser can deliver refrigerant to the ice maker and the cooling part through the refrigeration cycle circuit, so that the ice maker and the cooling part can have the effects of making ice blocks and cooling the storage cavity, without the need to additionally set multiple sets of refrigeration systems, thereby simplifying the overall installation structure. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a structural schematic view of the first embodiment of the present application.
[0021] Figure 2 It is a sectional view of the first embodiment of the present application.
[0022] Figure 3 It is an exploded view of the first embodiment of the present application Figure 1 .
[0023] Figure 4 It is an exploded view of the first embodiment of the present applicationFigure 2 .
[0024] Figure 5 is an enlarged view of the first embodiment A of the utility model.
[0025] Figure 6 is a structural schematic view of the second embodiment of the utility model. DETAILED DESCRIPTION
[0026] The utility model will be further described below in combination with the drawings and embodiments.
[0027] First embodiment:
[0028] Referring to Figures 1-5 , the mounting structure of the vehicle-mounted refrigerator with ice making function comprises a refrigerator main body 1, the refrigerator main body 1 comprises a storage cylinder 11, the inner side of the storage cylinder 11 forms a storage cavity, the outer side of the storage cylinder 11 in the refrigerator main body 1 forms an electrical cavity, the outer side of the storage cylinder 11 is further provided with a cooling part 12 capable of exchanging heat with the storage cavity, the electrical cavity is provided with a compressor 2, a condenser 3, an ice maker 4 and a pipeline assembly, the pipeline assembly is connected with the compressor, the condenser, the ice maker and the cooling part and forms a refrigeration cycle circuit.
[0029] The pipeline assembly comprises a first pipeline 51, a second pipeline 52, a third pipeline 53, a fourth pipeline 54 and a fifth pipeline 55, the compressor 2 is communicated with the condenser 3 through the first pipeline 51, the condenser 3 is communicated with the ice maker 4 and the cooling part 12 through the second pipeline 52 and the third pipeline 53 respectively, and the condenser 3 can transport refrigerant to the ice maker 4 and the cooling part 12 through the second pipeline 52 and the third pipeline 53.
[0030] The compressor 2 is communicated with the ice maker 4 and the cooling part 12 through the fourth pipeline 54 and the fifth pipeline 55 respectively, and the refrigerant is returned to the compressor 2 through the fourth pipeline 54 and the fifth pipeline 55 respectively to form a circulating refrigeration channel.
[0031] The condenser 3 can transport refrigerant to the ice maker 4 and the cooling part 12 through the second pipeline 52 and the third pipeline 53, so that the ice maker 4 and the cooling part 12 can have the effects of making ice blocks and cooling the storage cavity, without the need of additionally setting multiple sets of refrigeration systems, thereby simplifying the overall mounting structure.
[0032] Further, the pipeline assembly further comprises a sixth pipeline 56, the condenser 3 is provided with a solenoid valve 5 between the ice maker 4 and the cooling part 12, the solenoid valve 5 is communicated with the ice maker 4 and the cooling part 12 through the second pipeline 52 and the third pipeline 53, the solenoid valve 5 is communicated with the condenser 3 through the sixth pipeline 56, the solenoid valve 5 can control the sixth pipeline 56 to be communicated or cut off with the second pipeline 52 and the third pipeline 53, so that the ice maker 4 and the cooling part 12 can independently make ice or cool the storage cavity, further optimizing the function of the product, and the user uses more conveniently.
[0033] Further, the cooling part 12 is in the shape of a pipe body and is arranged along the outside of the storage cylinder 11, so that the refrigeration effect of the storage cavity is more uniform.
[0034] Further, the ice maker 4 comprises a bucket 41 and an evaporation cylinder 42, the inside of the bucket 41 has a containing cavity capable of storing liquid, the inside of the evaporation cylinder 42 is adjacent to the outside of the bucket 41, the outside of the evaporation cylinder 42 is provided with a cooling cavity 421 capable of allowing refrigerant to flow through, and the cooling cavity 421 is communicated with the second pipeline 52 and the fourth pipeline 54, respectively. After the refrigerant enters the cooling cavity 421, it can exchange heat with the bucket 41 by contacting the evaporation cylinder 42.
[0035] Further, a sealing ring 43 is arranged between the bucket 41 and the evaporation cylinder 42, the sealing ring 43 is arranged between the bucket 41 and the evaporation cylinder 42 in the circumferential direction, the sealing ring 43 is tightly fitted with the bucket 41 and the evaporation cylinder 42, respectively, and the sealing ring 43 can reduce the chance of liquid entering the evaporation cylinder 42, avoid the situation that the bucket 41 and the evaporation cylinder 42 are frozen and adhered due to the low-temperature blockage of liquid in the evaporation cylinder 42, and ensure that the bucket 41 can be smoothly extracted.
[0036] Further, a stirrer 44 is arranged in the containing cavity, the stirrer 44 has a rotating shaft 441, the rotating shaft 441 is connected with a driving device 45, the stirrer 44 rotates around the rotating shaft 441 through the driving device 45, the stirrer 44 can make ice slush or ice cream, and the function of the vehicle-mounted refrigerator is enriched. At the same time, the stirrer 44 can also avoid the accumulation of too much ice crystal on the inner side wall of the containing cavity, improve the heat transfer efficiency between the liquid inside the containing cavity and the outside, and thus make the overall ice making effect of the product better.
[0037] Further, the refrigerator main body 1 is provided with a mounting frame 13, the mounting frame 13 is provided with a supporting step 131, the outside of the driving device 45 is provided with a to-position convex step 451 corresponding to the supporting step 131, the to-position convex step 451 is in abutting fit with the supporting step 131, and the assembly difficulty of the driving device 45 and the mounting frame 13 is simplified.
[0038] Further, the outer side of the driving device 45 is provided with a contact switch 452, which is in abutment with the mounting frame 13 and can enable the driving device 45 to be powered and started, thereby avoiding the driving device 45 from being accidentally started when not installed in place, and improving the safety of the equipment.
[0039] Further, the storage cylinder 11 is in a rectangular shape, and a distance is formed in a horizontal reverse direction between the side of the storage cylinder 11 facing the ice maker 4 and the ice maker 4, so that when the armrest width of the automobile is insufficient to accommodate the ice maker 4, the installation position of the ice maker 4 is moved out of the storage, occupying the space position of the automobile battery, so as to fully utilize the space resources, and the design of the ice maker 4 in the width direction is no longer limited, so that the diameter can be increased to improve the ice making capacity and efficiency.
[0040] Second embodiment:
[0041] Referring to Figure 6 The difference between the present embodiment and the first embodiment is that the outer side of the storage cylinder 11 of the mounting structure of the ice-making vehicle refrigerator is formed with a corresponding avoiding portion 111 of the ice maker 4, the avoiding portion 111 is in a concave shape and protrudes towards the storage cavity direction, and the ice maker 4 is adjacent to the avoiding portion 111, when the armrest width of the automobile is large, the ice making structure can be directly installed in the storage box, without occupying other space.
[0042] The rest of the unrecited parts are the same as the first embodiment, which will not be repeated here.
[0043] The above embodiments are only preferred schemes of the present application, and the present application can have other embodiments. Those skilled in the art can make equivalent modifications or substitutions without departing from the spirit of the present application, and these equivalent modifications or substitutions are all included in the scope set by the claims of the present application.
Claims
1. An installation structure for a vehicle-mounted refrigerator with ice-making function, characterized in that, The refrigerator includes a main body (1), which includes a storage cylinder (11). A storage cavity is formed on the inner side of the storage cylinder (11). An electrical cavity is formed on the outer side of the main body (1) corresponding to the storage cylinder (11). A cooling section (12) capable of exchanging heat with the storage cavity is also provided on the outer side of the storage cylinder (11). A compressor (2), a condenser (3), an ice maker (4), and a pipe assembly are provided on the electrical cavity. The pipe assembly is connected to the compressor, the condenser, the ice maker, and the cooling section to form a refrigeration cycle loop.
2. The installation structure of the vehicle-mounted refrigerator with ice-making function according to claim 1, characterized in that: The piping assembly includes a first pipe (51), a second pipe (52), a third pipe (53), a fourth pipe (54), and a fifth pipe (55). The compressor (2) is connected to the condenser (3) through the first pipe (51). The condenser (3) is connected to the ice maker (4) and the cooling unit (12) through the second pipe (52) and the third pipe (53), respectively. The compressor (2) is connected to the ice maker (4) and the cooling unit (12) through the fourth pipe (54) and the fifth pipe (55), respectively. The piping assembly also includes a sixth pipe (56). A solenoid valve (5) is provided between the condenser (3) and the ice maker (4) and the cooling unit (12). The solenoid valve (5) is connected to the ice maker (4) and the cooling unit (12) through the second pipe (52) and the third pipe (53). The solenoid valve (5) is connected to the condenser (3) through the sixth pipe (56). The solenoid valve (5) can control the sixth pipe (56) to be connected to or disconnected from the second pipe (52) and the third pipe (53).
3. The installation structure of the vehicle-mounted refrigerator with ice-making function according to claim 1, characterized in that: The cooling section (12) is in the shape of a tube and is arranged to be coiled around the outside of the storage cylinder (11).
4. The installation structure of the vehicle-mounted refrigerator with ice-making function according to claim 1, characterized in that: The ice maker (4) includes a bucket (41) and an evaporator (42). The inner side of the bucket (41) has a container cavity for storing liquid. The inner side of the evaporator (42) is adjacent to the outer side of the bucket (41). The outer side of the evaporator (42) is provided with a cooling chamber (421) for refrigerant to flow through. The cooling chamber (421) is connected to the second pipe (52) and the fourth pipe (54) respectively.
5. The installation structure of the vehicle-mounted refrigerator with ice-making function according to claim 4, characterized in that: A sealing ring (43) is provided between the bucket (41) and the evaporator (42). The sealing ring (43) is arranged circumferentially between the bucket (41) and the evaporator (42), and the sealing ring (43) is in close contact with the bucket (41) and the evaporator (42) respectively.
6. The installation structure of the vehicle-mounted refrigerator with ice-making function according to claim 4, characterized in that: The cavity is equipped with a stirrer (44), which has a rotating shaft (441). The rotating shaft (441) is connected to a drive device (45), and the stirrer (44) rotates around the rotating shaft (441) via the drive device (45).
7. The installation structure of the vehicle-mounted refrigerator with ice-making function according to claim 6, characterized in that: The refrigerator body (1) is provided with a mounting bracket (13), and the mounting bracket (13) is provided with a supporting step (131). The outer side of the drive device (45) is provided with a positioning protrusion (451) corresponding to the supporting step (131), and the positioning protrusion (451) abuts against the supporting step (131).
8. The installation structure of the vehicle-mounted refrigerator with ice-making function according to claim 7, characterized in that: The drive device (45) is provided with a contact switch (452) on its outer side. The contact switch (452) abuts against the mounting bracket (13) to enable the drive device (45) to be powered on and started.
9. The installation structure of the vehicle-mounted refrigerator with ice-making function according to any one of claims 1-8, characterized in that: The storage cylinder (11) is rectangular in shape, and the side of the storage cylinder (11) facing the ice maker (4) forms a horizontally opposite gap with the ice maker (4).
10. The installation structure of the vehicle-mounted refrigerator with ice-making function according to any one of claims 1-8, characterized in that: The outer side of the storage cylinder (11) forms a clearance part (111) corresponding to the ice maker (4). The clearance part (111) is concave and protrudes towards the storage cavity. The ice maker (4) and the clearance part (111) are adjacent to each other.