Wine cabinet with refrigeration function

By adopting a cooling system combined with a microcontroller and a temperature sensor in the wine cabinet and a movable placing board structure, the traditional wine cabinet has been solved in terms of energy consumption and flexibility, effectively controlling the internal temperature of the wine cabinet and flexible adjustment of the placing board, improving the convenience of use and energy utilization efficiency.

CN222938116UActive Publication Date: 2025-06-03高邮市德鸿源网络科技有限公司
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Patent Information

Application Number
CN202421608386.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-06-03
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

Traditional wine cabinets with refrigeration functions have shortcomings in terms of energy consumption and flexibility, and traditional placing boards or shelves cannot be adjusted at will, which limits the convenience of the wine cabinets.

Method used

A wine cabinet with refrigeration function was designed, and a single chip computer combined with a temperature sensor was used to effectively reduce and maintain the internal temperature of the wine cabinet through uniform flow of the cooling medium and air flow. At the same time, a movable placing plate structure is adopted, and the pitch of the placing plates can be easily adjusted to suit different sizes or numbers of wine bottles.

Benefits of technology

It realizes effective reduction and maintenance of the internal temperature of the wine cabinet, maximizes energy utilization, reduces energy consumption and costs, and improves the flexibility and convenience of the wine cabinet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wine cabinet with a refrigeration function. The wine cabinet comprises a wine cabinet body, a first installation groove and an installation frame. A cabinet door is hinged to the front side face of the wine cabinet through hinges, a perspective window is arranged at the upper end of the cabinet door, a temperature sensor is arranged in the middle of the front side face of the cabinet door, and a detection probe of the temperature sensor extends into the wine cabinet; the first mounting grooves are formed in the upper end and the lower end in the wine cabinet correspondingly, and cooling mechanisms are arranged in the first mounting grooves; the mounting frames are fixedly connected to the left inner wall and the right inner wall of the wine cabinet correspondingly, I-shaped sliding grooves are formed in the mounting frames correspondingly, placing plates which are evenly distributed are slidably connected between the inner walls of the I-shaped sliding grooves, and locking mechanisms are arranged in the placing plates correspondingly. Energy is utilized to the maximum extent, energy consumption and cost are reduced, the wine cabinet can adapt to wine bottles of different sizes or numbers, it is ensured that wine products are stably stored and conveniently managed, and the flexibility of the wine cabinet is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of wine storage, in particular to a wine cabinet with a refrigeration function. Background Technique

[0002] Wine cabinets with a refrigeration function are usually referred to as wine temperature control cabinets or wine cellars. They are designed to store and refrigerate wine to ensure that the quality of the wine is not affected by temperature fluctuations. These wine cabinets can usually adjust the temperature and humidity to maintain the best storage conditions, which are suitable for long-term storage of precious wine varieties. However, during the refrigeration process, a reasonable way of placing wine bottles can ensure that the wine maintains the best quality and flavor during refrigeration, and at the same time extend its shelf life;

[0003] Traditional wine cabinets with a refrigeration function usually adopt compression refrigeration technology to maintain the required temperature, and special placement boards or shelves are provided inside the wine cabinet to support and place wine bottles to ensure a stable refrigeration environment;

[0004] Traditional wine cabinets with a refrigeration function have the following problems: Traditional compression refrigeration technology requires a large amount of electrical energy to operate, so it may cause high energy consumption during long-term operation, increasing the use cost. Moreover, traditional placement boards or shelves usually cannot be switched or moved randomly. This means that once a wine bottle is placed in a certain position, when re-adjusting the layout or increasing the storage space, it limits the flexibility of the wine cabinet and the operation convenience of the user. For this reason, we propose a wine cabinet with a refrigeration function. Content of the Utility Model

[0005] The technical problem to be solved by the utility model is to overcome the existing defects and provide a wine cabinet with a refrigeration function, which can effectively reduce and maintain the temperature inside the wine cabinet, make the most of energy, reduce energy consumption and cost, and can adapt to wine bottles of different sizes or quantities to ensure stable storage of wine products and convenient management, and can effectively solve the problems in the background technique.

[0006] To achieve the above purpose, the utility model provides the following technical scheme: A wine cabinet with a refrigeration function, including a wine cabinet, a first installation groove and an installation rack;

[0007] Wine cabinet: Its front side is hinged with a cabinet door through a hinge. A perspective window is provided at the upper end of the cabinet door, and a temperature sensor is provided in the middle of the front side of the cabinet door. The detection probe of the temperature sensor extends into the interior of the wine cabinet;

[0008] First installation groove: It is respectively opened at the upper and lower ends inside the wine cabinet, and a cooling mechanism is provided inside the first installation groove;

[0009] Mounting rack: They are fixedly connected to the left and right inner walls of the wine cabinet respectively. I-shaped slide grooves are provided inside the mounting racks. Evenly distributed placement plates are slidably connected between the inner walls of the I-shaped slide grooves. Locking mechanisms are provided inside the placement plates. The left and right ends of the locking mechanisms are installed in coordination with the adjacent mounting racks.

[0010] Among them: it also includes a single-chip microcomputer, which is arranged at the right end of the front side of the cabinet door. The single-chip microcomputer is bidirectionally electrically connected to the temperature sensor, which can effectively reduce and maintain the internal temperature of the wine cabinet, maximize the use of energy, reduce energy consumption and costs, and can adapt to wine bottles of different sizes or quantities, ensuring stable storage and convenient management of wines, and improving the flexibility of wine cabinets with refrigeration functions.

[0011] Furthermore, the cooling mechanism includes a valve, a drain pipe, a guide pipe, an interlayer and a diverter pipe. The guide pipe is fixedly connected to the rear inner wall of the top mounting groove, and the diverter pipes are fixedly connected to the diverter holes at the rear end of the outer surface of the guide pipe, which are evenly distributed. The interlayer is opened inside the rear side of the wine cabinet, and the interlayer is connected to the mounting groove. The rear ends of the diverter pipes extend to the interior of the interlayer, and the bottom ends of the diverter pipes are fixedly connected to the top of the outer surface of a drain pipe. The drain pipe is located in the mounting groove at the bottom end, and the drain port of the drain pipe extends to the outside of the right side of the wine cabinet. The right end of the drain pipe is connected in series with a valve to ensure that the cooling medium can flow evenly.

[0012] Furthermore, the cooling mechanism also includes a liquid inlet pipe, a water tank, a connecting pipe and a water pump. The water tank is fixedly connected to the front end of the bottom wall of the top mounting groove. The liquid inlet of the water tank is fixedly connected to the liquid inlet pipe. The liquid inlet of the liquid inlet pipe extends to the outside of the left side of the wine cabinet. The water pump is installed on the middle part of the bottom wall of the top mounting groove by bolts. The liquid inlet of the water pump is connected to the discharge port of the water tank by a connecting pipe. The input end of the water pump is electrically connected to the output end of the single-chip microcomputer to realize the transportation of cooling medium.

[0013] Furthermore, the cooling mechanism also includes a fan, which is installed in a mounting hole on the rear side of the wine cabinet by bolts, and the input end of the fan is electrically connected to the output end of the single-chip microcomputer to ensure that the temperature is reduced to a range suitable for refrigerating wine.

[0014] Furthermore, the locking mechanism includes a locking column, a spring, a sliding hole, a fixing plate, a second mounting groove and a locking hole. The second mounting groove is opened inside the placement plate, sliding holes are opened at both ends of the inner wall of the second mounting groove, the inner walls of the sliding holes are slidably connected with fixing plates, the middle parts of the fixing plates are fixedly connected with locking columns, the springs are fixedly connected between a side of the fixing plate away from the center of the placement plate and an inner wall of an adjacent sliding hole, the springs are sleeved on the outer surface of the locking column, the locking holes are opened on the inner side of the mounting frame, and the outer ends of the locking columns are located inside the laterally adjacent locking holes, so as to fix the position of the adjusted placement plate.

[0015] Further, the locking mechanism further includes connecting rods, knobs, rotating shafts, rotating grooves and turntables. The rotating shafts are rotatably connected between the upper and lower inner walls of the second installation groove. The bottom ends of the rotating shafts all extend to the outside of the lower surface of the placing plate. The upper ends of the rotating shafts are fixedly sleeved with turntables. Rotating grooves are formed at the left and right ends of the turntable. The inner walls of the rotating grooves are rotatably connected with connecting rods through pin shafts. One ends of the connecting rods far away from the center of the turntable are rotatably connected with the inner ends of the laterally adjacent locking columns through pin shafts. The knobs are fixedly connected to the bottom ends of the rotating shafts to drive the locking mechanism to operate.

[0016] Further, the rear inner wall of the wine cabinet is provided with evenly distributed ventilation openings to realize the flow of air current.

[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows: The wine cabinet with a refrigeration function has the following advantages:

[0018] 1. The external cooling medium is transported into the water tank through the liquid inlet pipe, so that the cooling medium is stored in the water tank. Then, the operation of the water pump is regulated by an external single-chip microcomputer. The water pump starts to extract the cooling medium in the water tank through the connecting pipe and shunts it into the shunt pipes through the diversion pipe. These shunt pipes are evenly distributed inside the interlayer to ensure the uniform flow of the cooling medium. At this time, the operation of the fan is regulated by the single-chip microcomputer. The fan sucks in external air to generate an air current and blows the air current onto the shunt pipes with the flowing cooling medium to cool the air current, and blows it into the wine cabinet through the ventilation opening, thereby gradually reducing the temperature of the wine cabinet. The temperature change inside the wine cabinet is monitored in real time through the temperature sensor to ensure that the temperature is reduced to a range suitable for refrigerating wine products. At this time, the wine products are placed on the placing plate on one side to ensure that they are well preserved in a constant low-temperature environment, so that the temperature inside the wine cabinet can be effectively reduced and maintained, the energy can be utilized to the maximum extent, the energy consumption can be reduced, and the cost can be reduced.

[0019] 2. When it is necessary to adjust the storage space between the placement boards, first, rotate the knob. The rotation of the knob drives the rotation of the rotating shaft, and the rotation of the rotating shaft drives the rotation of the turntable. The rotation of the turntable drives the connecting rods at both left and right ends to start rotating. As the angle of the connecting rod changes, the included angle between the turntable and the connecting rod gradually becomes smaller, causing the locking posts on the connecting rod to move along the inner wall of the sliding hole towards the center of the turntable. At the same time, the spring is compressed, driving the locking posts to separate from the adjacent locking holes, enabling the placement board to move freely. Then, move the placement board upward or downward along the inner wall of the I-shaped sliding groove until the required storage distance is reached. After the adjustment is completed, rotate the knob in the reverse direction, which causes the turntable to drive the connecting rod to rotate in the reverse direction. The reverse rotation releases the energy of the spring, and the locking posts are locked together with the adjacent locking holes again to fix the position of the placement board. Thus, it is possible to easily adjust the spacing between the placement boards inside the wine cabinet to adapt to wine bottles of different sizes or quantities, ensuring the stable storage of wine products and the convenience of management, and improving the flexibility of the wine cabinet with a refrigeration function. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is a schematic structural diagram of the present utility model;

[0021] Figure 2 is a partial cross-sectional structural schematic diagram of the top of the present utility model;

[0022] Figure 3 is a cross-sectional structural schematic diagram of the front side of the present utility model;

[0023] Figure 4 is an enlarged structural schematic diagram of part A of the present utility model;

[0024] Figure 5 is a cross-sectional structural schematic diagram of the top of the present utility model;

[0025] Figure 6 is a cross-sectional structural schematic diagram of the top of the present utility model.

[0026] In the figure: 1 wine cabinet, 2 perspective window, 3 cabinet door, 4 temperature sensor, 5 single-chip microcomputer, 6 cooling mechanism, 601 valve, 602 drain pipe, 603 liquid inlet pipe, 604 water tank, 605 diversion pipe, 606 interlayer, 607 connecting pipe, 608 water pump, 609 shunt pipe, 610 fan, 7 mounting groove one, 8 placement board, 9 locking mechanism, 901 locking post, 902 spring, 903 sliding hole, 904 fixing piece, 905 mounting groove two, 906 connecting rod, 907 knob, 908 rotating shaft, 909 rotating groove, 910 turntable, 911 locking hole, 10 mounting bracket, 11 ventilation opening, 12 I-shaped sliding groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0027] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.

[0028] Please refer to Figure 1-6 , this embodiment provides a technical solution: a wine cabinet with a refrigeration function, including a wine cabinet 1, a first installation groove 7, and an installation rack 10;

[0029] Wine cabinet 1: Its front side is hinged with a cabinet door 3 through a hinge. A perspective window 2 is provided at the upper end of the cabinet door 3. During the refrigeration process, the storage state of the internal wine products is observed through the perspective window 2. A temperature sensor 4 is provided in the middle of the front side of the cabinet door 3. The detection probe of the temperature sensor 4 extends into the interior of the wine cabinet 1. The temperature change inside the wine cabinet 1 is monitored in real time through the temperature sensor 4 to ensure that the temperature is reduced to a range suitable for refrigerating wine products. At this time, the wine products are placed on the placement plate 8 on one side to ensure that they are stored well in a constant low-temperature environment. Uniformly distributed ventilation openings 11 are provided on the rear inner wall of the wine cabinet 1, and air is blown into the wine cabinet 1 from the ventilation openings 11, thereby gradually reducing the temperature of the wine cabinet 1;

[0030] Installation groove 1-7: It is respectively opened at the upper and lower ends inside the wine cabinet 1. A cooling mechanism 6 is provided inside the installation groove 1-7. The cooling mechanism 6 includes a valve 601, a drain pipe 602, a diversion pipe 605, a sandwich layer 606, and a shunt pipe 609. The diversion pipe 605 is fixedly connected to the rear inner wall of the installation groove 1-7 at the top. At the diversion holes at the rear end of the outer surface of the diversion pipe 605, evenly distributed shunt pipes 609 are fixedly connected. The sandwich layer 606 is opened inside the rear side of the wine cabinet 1. The sandwich layer 606 is communicated with the installation groove 1-7. The rear ends of the shunt pipes 609 all extend into the interior of the sandwich layer 606. The bottom ends of the shunt pipes 609 are all fixedly connected to the outer surface top end of a drain pipe 602. The drain pipe 602 is located inside the installation groove 1-7 at the bottom. The drain port of the drain pipe 602 extends to the outside of the right side surface of the wine cabinet 1. A valve 601 is connected in series at the right end of the drain pipe 602. The cooling mechanism 6 further includes a liquid inlet pipe 603, a water tank 604, a connecting pipe 607, and a water pump 608. The water tank 604 is fixedly connected to the front end of the bottom wall of the installation groove 1-7 at the top. An inlet pipe 603 is fixedly connected to the liquid inlet of the water tank 604. The inlet of the inlet pipe 603 extends to the outside of the left side surface of the wine cabinet 1. The water pump 608 is installed on the middle of the bottom wall of the installation groove 1-7 at the top through bolts. The inlet of the water pump 608 is connected to the drain port of the water tank 604 through a connecting pipe 607. The input end of the water pump 608 is electrically connected to the output end of the single-chip microcomputer 5. The cooling mechanism 6 further includes a fan 610. The fans 610 are all installed in the installation openings on the rear side surface of the wine cabinet 1 through bolts. The input ends of the fans 610 are all electrically connected to the output end of the single-chip microcomputer 5. The external cooling medium is transported into the interior of the water tank 604 through the liquid inlet pipe 603, so that the cooling medium is stored in the water tank 604. Then, the external single-chip microcomputer 5 controls the operation of the water pump 608. The water pump 608 starts to extract the cooling medium in the water tank 604 through the connecting pipe 607 and diverts it into the shunt pipes 609 through the diversion pipe 605. These shunt pipes 609 are evenly distributed inside the sandwich layer 606 to ensure that the cooling medium can flow evenly. At this time, the single-chip microcomputer 5 controls the operation of the fans 610. The fans 610 suck external air to generate an air current and blow the air current onto the shunt pipes 609 with the cooling medium flowing, cooling the air current, which can effectively reduce and maintain the temperature inside the wine cabinet 1, can maximize the use of energy, reduce energy consumption, and thus reduce the impact on the environment. After use, open the valve 601 to discharge the cooling medium through the drain pipe 602 to the outside in sequence;

[0031] Mounting bracket 10: It is fixedly connected to the left and right inner walls of the wine cabinet 1 respectively. I-shaped sliding grooves 12 are provided inside the mounting brackets 10. Evenly distributed placing plates 8 are slidably connected between the inner walls of the I-shaped sliding grooves 12. Locking mechanisms 9 are provided inside the placing plates 8. The left and right ends of the locking mechanisms 9 are respectively installed in cooperation with the adjacent mounting brackets 10. The locking mechanism 9 includes a locking column 901, a spring 902, a sliding hole 903, a fixing piece 904, a second mounting groove 905 and a locking hole 911. The second mounting grooves 905 are provided inside the placing plates 8. Sliding holes 903 are provided at the left and right ends of the inner walls of the second mounting grooves 905. Fixing pieces 904 are slidably connected to the inner walls of the sliding holes 903. Locking columns 901 are fixedly connected to the middle parts of the fixing pieces 904. Springs 902 are fixedly connected between the sides of the fixing pieces 904 away from the centers of the placing plates 8 and the inner walls of the adjacent sliding holes 903. The springs 902 are sleeved on the outer surfaces of the locking columns 901. Locking holes 911 are provided on the inner sides of the mounting brackets 10. The outer ends of the locking columns 901 are located inside the laterally adjacent locking holes 911. The locking mechanism 9 further includes a connecting rod 906, a knob 907, a rotating shaft 908, a rotating groove 909 and a turntable 910. The rotating shafts 908 are rotatably connected between the upper and lower inner walls of the second mounting grooves 905. The bottom ends of the rotating shafts 908 extend outside the lower surfaces of the placing plates 8. Turntables 910 are fixedly sleeved on the upper ends of the rotating shafts 908. Rotating grooves 909 are provided at the left and right ends of the turntables 910. Connecting rods 906 are rotatably connected to the inner walls of the rotating grooves 909 through pins. The ends of the connecting rods 906 away from the centers of the turntables 910 are rotatably connected to the inner ends of the laterally adjacent locking columns 901 through pins. The knobs 907 are fixedly connected to the bottom ends of the rotating shafts 908. When it is necessary to adjust the storage space between the placing plates 8, first, rotate the knob 907. The rotation of the knob 907 drives the rotation of the rotating shaft 908. The rotation of the rotating shaft 908 drives the rotation of the turntable 910. The rotation of the turntable 910 drives the connecting rods 906 at the left and right ends to start rotating. As the angle of the connecting rod 906 changes, the angle between the turntable 910 and the connecting rod 906 gradually becomes smaller, causing the locking column 901 on the connecting rod 906 to move along the inner wall of the sliding hole 903 towards the center of the turntable 910. At the same time, the spring 902 is compressed, driving the locking column 901 to separate from the adjacent locking hole 911, enabling the placing plate 8 to move freely. Then, move the placing plate 8 up or down along the inner wall of the I-shaped sliding groove 12 until the required storage distance is reached. After the adjustment is completed, rotate the knob 907 in the reverse direction. This causes the turntable 910 to drive the connecting rod 906 to rotate in the reverse direction. The reverse rotation releases the energy of the spring 902, and the locking column 901 is locked with the adjacent locking hole 911 again, fixing the position of the placing plate 8 to adapt to wine bottles of different sizes or quantities, improving the flexibility of the wine cabinet with a refrigeration function;

[0032] The cabinet door 3 further includes a single chip microcomputer 5 , which is arranged at the right end of the front side of the cabinet door 3 . The single chip microcomputer 5 is bidirectionally electrically connected to the temperature sensor 4 .

[0033] The working principle of a wine cabinet with refrigeration function provided by the utility model is as follows: first, the external cooling medium is transported to the inside of the water tank 604 through the liquid inlet pipe 603, so that the cooling medium is stored in the water tank 604, and then the operation of the water pump 608 is regulated by the external single-chip microcomputer 5. The water pump 608 starts to extract the cooling medium in the water tank 604 through the connecting pipe 607, and diverts it to the diversion pipe 609 through the guide pipe 605. These diversion pipes 609 are evenly distributed inside the interlayer 606 to ensure that the cooling medium can flow evenly. At this time, the fan 610 is regulated by the single-chip microcomputer 5 to operate, and the fan 610 draws the external cooling medium. The air in the wine cabinet 1 is blown into the wine cabinet 1 from the vent 11, thereby gradually reducing the temperature of the wine cabinet 1. The temperature sensor 4 monitors the temperature change inside the wine cabinet 1 in real time to ensure that the temperature is reduced to a range suitable for refrigerating wines. At this time, the wines are placed on one side of the placement board 8 to ensure that they are well preserved in a constant low-temperature environment, thereby effectively reducing and maintaining the temperature inside the wine cabinet 1, maximizing the use of energy, reducing energy consumption, and thus reducing the impact on the environment. The storage status of the wine inside can be observed through the window 2. When the storage space between the placement plates 8 needs to be adjusted, first, the knob 907 is rotated. The rotation of the knob 907 drives the rotation shaft 908 to rotate. The rotation of the rotation shaft 908 drives the rotation of the turntable 910. The rotation of the turntable 910 drives the connecting rods 906 at the left and right ends to start rotating. As the angle of the connecting rod 906 changes, the angle between the turntable 910 and the connecting rod 906 gradually decreases, so that the locking column 901 on the connecting rod 906 moves along the inner wall of the sliding hole 903 toward the center of the turntable 910. At the same time, the spring 902 is compressed, driving the locking column 901 and the adjacent locking hole 911 is separated to allow the placement plate 8 to move freely, and then the placement plate 8 is moved upward or downward along the inner wall of the I-shaped slide groove 12 until the required storage distance is reached. After the adjustment is completed, the knob 907 is rotated in the opposite direction, which will cause the turntable 910 to drive the connecting rod 906 to rotate in the opposite direction. The reverse rotation releases the energy of the spring 902, and the locking column 901 is locked together with the adjacent locking hole 911 again to fix the position of the placement plate 8 to adapt to different sizes or quantities of wine bottles, thereby improving the flexibility of the wine cabinet with refrigeration function. The cooling medium after use opens the valve 601 to discharge the cooling medium to the outside through the drain pipe 602 in sequence.

[0034] It should be noted that the specific model of the single-chip microcomputer 5 disclosed in the above embodiments is S7-200, the temperature sensor 4 is preferably selected as C15-M53R, the water pump 22 is preferably selected as IRG40-160, and the single-chip microcomputer 5 controls the temperature sensor 4 and the water pump 22 to work by using the commonly used methods in the prior art.

[0035] The above are only the embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present invention, or directly or indirectly applied to other related technical fields, shall be equally included in the patent protection scope of the present invention.

Claims

1. A wine cabinet with refrigeration function, characterized in that: It comprises a wine cabinet (1), a mounting slot (7) and a mounting frame (10); A wine cabinet (1): a cabinet door (3) is hingedly connected to the front side of the cabinet door (1); a perspective window (2) is provided at the upper end of the cabinet door (3); a temperature sensor (4) is provided at the middle of the front side of the cabinet door (3); and a detection probe of the temperature sensor (4) extends into the interior of the wine cabinet (1); Installation groove one (7): it is respectively opened at the upper and lower ends of the interior of the wine cabinet (1), and a cooling mechanism (6) is arranged inside the installation groove one (7); The mounting frame (10) is fixedly connected to the left and right inner walls of the wine cabinet (1), and an I-shaped slide groove (12) is provided inside the mounting frame (10). The inner walls of the I-shaped slide groove (12) are slidably connected with evenly distributed placement plates (8). The placement plates (8) are provided with locking mechanisms (9) inside. The left and right ends of the locking mechanisms (9) are both installed in cooperation with the adjacent mounting frames (10). The cabinet further comprises a single chip microcomputer (5), wherein the single chip microcomputer (5) is arranged at the right end of the front side surface of the cabinet door (3), and the single chip microcomputer (5) is bidirectionally electrically connected to the temperature sensor (4).

2. A wine cabinet with refrigeration function according to claim 1, characterized in that: The cooling mechanism (6) comprises a valve (601), a drain pipe (602), a flow guide pipe (605), an interlayer (606) and a flow diversion pipe (609). The flow guide pipe (605) is fixedly connected to the inner wall of the rear side of the mounting groove (7) at the top. The flow diversion holes at the rear end of the outer surface of the flow guide pipe (605) are fixedly connected to the flow diversion pipes (609) distributed evenly. The interlayer (606) is opened at the rear side of the wine cabinet (1). 06) are connected to the installation groove one (7), the rear end of the diverter pipe (609) extends to the interior of the interlayer (606), the bottom end of the diverter pipe (609) is fixedly connected to the top of the outer surface of a drain pipe (602), the drain pipe (602) is located in the installation groove one (7) at the bottom, the drain port of the drain pipe (602) extends to the outside of the right side surface of the wine cabinet (1), and the right end of the drain pipe (602) is connected in series with a valve (601).

3. The wine cabinet with refrigeration function according to claim 2, characterized in that: The cooling mechanism (6) further comprises a liquid inlet pipe (603), a water tank (604), a connecting pipe (607) and a water pump (608); the water tank (604) is fixedly connected to the front end of the bottom wall of the top mounting groove (7); the liquid inlet of the water tank (604) is fixedly connected to the liquid inlet pipe (603); the liquid inlet of the liquid inlet pipe (603) extends to the outside of the left side of the wine cabinet (1); the water pump (608) is installed at the middle part of the bottom wall of the top mounting groove (7) by bolts; the liquid inlet of the water pump (608) is connected to the liquid discharge port of the water tank (604) by a connecting pipe (607); the input end of the water pump (608) is electrically connected to the output end of the single chip computer (5).

4. The wine cabinet with refrigeration function according to claim 1, characterized in that: The cooling mechanism (6) also includes a fan (610), and the fan (610) is installed in a mounting opening on the rear side of the wine cabinet (1) by means of bolts, and the input end of the fan (610) is electrically connected to the output end of the single-chip computer (5).

5. The wine cabinet with refrigeration function according to claim 1, characterized in that: The locking mechanism (9) comprises a locking column (901), a spring (902), a sliding hole (903), a fixing plate (904), a second mounting groove (905) and a locking hole (911); the second mounting groove (905) is arranged inside the placement plate (8); sliding holes (903) are arranged at both ends of the inner wall of the second mounting groove (905); the inner wall of the sliding hole (903) is slidably connected to a fixing plate (904); the fixing plate (904) is A locking column (901) is fixedly connected in the middle, the spring (902) is fixedly connected between the side of the fixing plate (904) away from the center of the placement plate (8) and the inner wall of the adjacent sliding hole (903), the spring (902) is sleeved on the outer surface of the locking column (901), the locking hole (911) is opened on the inner side of the mounting frame (10), and the outer end of the locking column (901) is located inside the locking hole (911) adjacent to the horizontal side.

6. The wine cabinet with refrigeration function according to claim 5, characterized in that: The locking mechanism (9) further comprises a connecting rod (906), a knob (907), a rotating shaft (908), a rotating groove (909) and a rotating disk (910); the rotating shaft (908) is rotatably connected between the upper and lower inner walls of the second mounting groove (905); the bottom end of the rotating shaft (908) extends to the outside of the lower surface of the placement plate (8); the upper end of the rotating shaft (908) is fixedly sleeved with a rotating disk (910); the left and right ends of the rotating disk (910) are provided with rotating grooves (909); the inner walls of the rotating grooves (909) are rotatably connected to the connecting rod (906) via a pin; the end of the connecting rod (906) away from the center of the rotating disk (910) is rotatably connected to the inner side end of the laterally adjacent locking column (901) via a pin; the rotating knob (907) is fixedly connected to the bottom end of the rotating shaft (908).

7. The wine cabinet with refrigeration function according to claim 1, characterized in that: The rear inner wall of the wine cabinet (1) is provided with evenly distributed ventilation openings (11).