Multifunctional cabinet

By integrating a refrigerator and cooktop into the cabinet, and utilizing the airflow from the refrigerator's heat dissipation to supplement the burner's air, the problems of wasted kitchen space and high temperatures are solved, while improving the combustion efficiency and user comfort of the gas stove.

CN223726417UActive Publication Date: 2025-12-26NINGBO FOTILE KITCHEN WARE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520171793.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-26
Publication Date
2025-12-26
Estimated Expiration
2035-01-26

AI Technical Summary

Technical Problem

In existing technologies, separating the refrigerator and gas stove results in wasted kitchen space, and the refrigerator's heat dissipation increases the kitchen temperature, affecting the user experience.

Method used

The refrigerator is placed inside the cabinet, and the stove is placed on top of the cabinet. The refrigerator's exhaust pipe extends to the stove panel to form an air outlet. The heat dissipation airflow flows through the air outlet to the burner, serving as a secondary air supply for the burner.

Benefits of technology

It reduces the impact of refrigerator heat dissipation airflow on the kitchen ambient temperature, improves the combustion efficiency of the gas stove, and alleviates the high-temperature cooking environment by cooling down the refrigerator.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223726417U_ABST
    Figure CN223726417U_ABST
Patent Text Reader

Abstract

The utility model provides a multifunctional cupboard. The multifunctional cupboard comprises a cupboard body, a kitchen range and a refrigerator. The refrigerator is arranged in the cabinet body, the kitchen range is arranged at the top of the cabinet body, the refrigerator comprises an exhaust assembly, a pipeline of the exhaust assembly extends upwards to a panel of the kitchen range to form an air outlet, heat dissipation airflow of the refrigerator flows out through the air outlet, and the air outlet faces a combustor of the kitchen range. The refrigerator is arranged in the cabinet body of the cabinet, and the kitchen range is arranged at the top of the cabinet, so that the cabinet body, the kitchen range and the refrigerator are integrated, and the kitchen space is saved. According to the refrigerator, the exhaust assembly is arranged in the refrigerator, the air outlet of the exhaust assembly faces the combustor of the stove, and after flowing out of the exhaust assembly, heat dissipation airflow with the high temperature of the refrigerator can serve as secondary air of the combustor to be supplemented and absorbed, so that the influence of the heat dissipation airflow of the refrigerator on the kitchen environment temperature is reduced, and the combustion efficiency of the stove can be improved. When the weather is hot, cooling can be conducted by opening the refrigerator door, and the high temperature generated by cooking through a stove is relieved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the field of kitchen utensils, in particular to a multifunctional cabinet. BACKGROUND

[0002] At present, the refrigerator and gas stove are indispensable electrical appliances in the kitchen, but are limited by space layout, and the refrigerator can only be placed separately from the stove. In addition, the kitchen is extremely hot in summer, and it is urgent to add a cooling bar or other heat dissipation device to cool. SUMMARY

[0003] The utility model solves the technical problem that the existing technology overcomes the defect that the refrigerator heat dissipation increases the ambient temperature of the kitchen, and provides a multifunctional cabinet.

[0004] The utility model solves the above technical problem through the following technical scheme:

[0005] A multifunctional cabinet comprises a cabinet body, a stove and a refrigerator, the refrigerator is arranged in the cabinet body, the stove is arranged on the top of the cabinet body, the refrigerator comprises an exhaust assembly, the pipeline of the exhaust assembly extends upward to the panel of the stove to form an air outlet, the heat dissipation airflow of the refrigerator flows out through the air outlet, and the air outlet is arranged towards the burner of the stove.

[0006] In the technical scheme, the refrigerator is arranged in the cabinet body of the cabinet, and the stove is arranged on the top, so that the cabinet, the stove and the refrigerator are integrated and arranged, and the kitchen space is saved. The pipeline of the exhaust assembly of the refrigerator extends upward to the panel of the stove to form an air outlet, and the air outlet is arranged towards the burner of the stove, so that the high-temperature heat dissipation airflow of the refrigerator can be absorbed as secondary air supplement of the burner after flowing out through the exhaust assembly, the influence of the heat dissipation airflow of the refrigerator on the ambient temperature of the kitchen is reduced, and the combustion efficiency of the stove is improved.

[0007] In addition, when the weather is hot, the refrigerator door can be opened to cool down and relieve the high temperature generated by cooking through the stove.

[0008] Preferably, the burner has a secondary air inlet arranged around the body of the burner, and the air outlet is arranged close to the secondary air inlet.

[0009] In the technical scheme, the air outlet is arranged close to the secondary air inlet of the burner, so that the heat dissipation airflow flows out from the air outlet and is closer to the secondary air inlet, the utilization rate of the heat dissipation airflow as the secondary air supplement of the burner is improved, and the influence of the heat dissipation airflow on the ambient temperature of the kitchen is further reduced.

[0010] Preferably, the air outlet is arranged on the back side of the panel.

[0011] In the technical solution, the air outlet is arranged at the back side of the panel of the stove, so that the heat dissipation airflow is more likely to enter the secondary air inlet after flowing out of the air outlet, and the air outlet is far away from the user at the front side of the multifunctional cabinet, thereby avoiding the influence of the air outlet on the user.

[0012] Preferably, the arrangement height of the air outlet is lower than the arrangement height of the center of the secondary air inlet.

[0013] In the technical solution, since the heat dissipation airflow is hot air floating upward, by arranging the air outlet at a height lower than the center of the secondary air inlet, the overlapping height of the flow path of the heat dissipation airflow and the secondary air inlet is high, so that the heat dissipation airflow continuously enters the secondary air inlet during the floating process after flowing out of the air outlet.

[0014] Preferably, the arrangement height of the air outlet is lower than the arrangement height of the lowest point of the secondary air inlet.

[0015] In the technical solution, by adjusting the arrangement height of the air outlet, the overlapping height of the flow path of the heat dissipation airflow and the secondary air inlet is improved.

[0016] Preferably, the air outlet is arranged towards the secondary air inlet, and the direction of the heat dissipation airflow of the refrigerator flowing out of the air outlet is the same as the direction of the secondary air flowing into the secondary air inlet.

[0017] In the technical solution, by making the direction of the heat dissipation airflow of the refrigerator flowing out of the air outlet the same as the direction of the secondary air supplement, the inertia of the heat dissipation airflow after flowing out of the air outlet is utilized, so that the secondary air inlet can be supplemented as secondary air without changing the flow direction when flowing into the secondary air duct, the flow loss of the heat dissipation airflow as secondary air is reduced, and the combustion efficiency of the stove is further improved.

[0018] Preferably, the interior of the cabinet body has a cavity, the refrigerator is arranged in the cavity, and the stove is arranged above the refrigerator.

[0019] In the technical solution, by arranging the stove above the refrigerator, the temperature of the heat dissipation airflow of the refrigerator is relatively high, the hot air floats upward to reach the air outlet, the flow resistance is smaller, the heat loss during the flow process is smaller, and the effect of improving the combustion efficiency of the stove is better.

[0020] Preferably, the size of the refrigerator matches the size of the cavity, and the cabinet door of the cabinet body is fixed between the cabinet door of the refrigerator.

[0021] In the technical solution, the cabinet body is fixed with the cabinet door of the refrigerator, the user can open and close the cabinet and the cabinet door of the refrigerator synchronously, the user can use the refrigerator without opening the door for many times, and the convenience of the multifunctional cabinet is improved.

[0022] Preferably, the cabinet body and the cabinet door of the refrigerator are opened and closed in a flip manner, and the left side of the cabinet door of the cabinet body is connected to the left side wall of the cabinet body through a hinge.

[0023] In the technical solution, the opening and closing manner of the cabinet door is set as a flip manner, and the cabinet door is connected to the left side wall of the cavity through a hinge, the cabinet door is opened from the right side, and the use habit of most users is met.

[0024] Preferably, the condenser of the refrigerator is arranged at the lower part of the refrigerator, and the evaporator of the refrigerator is arranged at the upper part of the refrigerator.

[0025] In the technical solution, the evaporator and the condenser of the refrigerator are arranged at the upper part and the lower part of the refrigerator respectively, the evaporator and the condenser are far away from each other in the refrigerator, the interference between the evaporator and the condenser is reduced, and the efficiency of the evaporator and the condenser can be improved.

[0026] The positive progress effect of the utility model lies in that: through setting the exhaust assembly on the refrigerator and setting the exhaust assembly towards the burner of the cooking utensil, the heat dissipation airflow with high temperature of the refrigerator can be absorbed as secondary air supplement of the burner after flowing out through the exhaust assembly, not only the influence of the heat dissipation airflow of the refrigerator on the temperature of the kitchen environment is reduced, but also the combustion efficiency of the cooking utensil is improved. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is a partial three-dimensional structure schematic view (one) of the multifunctional cabinet of an embodiment of the utility model.

[0028] Figure 2 It is a partial three-dimensional structure schematic view (two) of the multifunctional cabinet of an embodiment of the utility model.

[0029] Figure 3 It is a partial three-dimensional structure schematic view of the refrigerator of the multifunctional cabinet of an embodiment of the utility model.

[0030] Figure 4 It is a three-dimensional structure schematic view of the multifunctional cabinet of an embodiment of the utility model.

[0031] EXPLANATION OF REFERENCE NUMERALS:

[0032] Multifunctional cabinet 100

[0033] Panel 11

[0034] Burner mounting hole 101

[0035] Secondary air inlet 12

[0036] Burner 13

[0037] Refrigerator 2

[0038] Evaporator 21

[0039] Condenser 22

[0040] Compressor 23

[0041] Exhaust assembly 24

[0042] Air outlet 241

[0043] Cabinet body 3 DETAILED DESCRIPTION

[0044] The utility model will be described below in a preferred embodiment and in conjunction with the drawings to make the utility model clearer and more complete.

[0045] As Figures 1-4 shown, the embodiment provides a multifunctional cabinet 100, which comprises a cabinet body 3, a stove and a refrigerator 2, the refrigerator 2 is arranged in the cabinet body 3, and the stove is arranged at the top of the cabinet body 3, wherein the refrigerator 2 comprises an exhaust assembly 24, a pipeline of the exhaust assembly 24 extends upward to a panel of the stove to form an air outlet 241, heat dissipation air of the refrigerator 2 flows out through the air outlet of the exhaust assembly 24, and the air outlet is arranged towards the burner 13 of the stove. By arranging the refrigerator 2 in the cabinet body 3 of the multifunctional cabinet 100 and arranging the stove at the top, the cabinet body 3, the stove and the refrigerator 2 are arranged integrally, and the kitchen space is saved. In the embodiment, the pipeline of the exhaust assembly 24 of the refrigerator 2 extends upward to the panel of the stove to form the air outlet, and the exhaust assembly 24 is arranged towards the burner 13 of the stove, so that the heat dissipation air of the refrigerator 2 with a relatively high temperature, which flows out through the exhaust assembly 24, can be absorbed as secondary air of the burner 13, thereby reducing the influence of the heat dissipation air of the refrigerator 2 on the temperature of the kitchen environment and improving the combustion efficiency of the stove.

[0046] In addition, when the weather is hot, the refrigerator door can be opened to reduce the temperature and relieve the high temperature generated by cooking through the stove.

[0047] Specifically, as Figure 1 shown in Figs. 2 and 2, the starting point of the exhaust assembly 24 is close to a heat dissipation part of the refrigerator 2, and the air flow near the heat dissipation part is heat dissipation air of the refrigerator 2, which carries away heat. The heat dissipation air flows to the burner 13 through the exhaust assembly 24 and is discharged, and the heat dissipation air is absorbed when the burner 13 absorbs secondary air, thereby achieving the purpose of using the heat dissipation air as secondary air of the burner 13.

[0048] Specifically, in the embodiment, as Figure 2 shown in Figs. 2 and 2, the starting point of the exhaust assembly 24 is close to a heat dissipation part of the refrigerator 2, and the air flow near the heat dissipation part is heat dissipation air of the refrigerator 2, which carries away heat. The heat dissipation air flows to the burner 13 through the exhaust assembly 24 and is discharged, and the heat dissipation air is absorbed when the burner 13 absorbs secondary air, thereby achieving the purpose of using the heat dissipation air as secondary air of the burner 13.Figure 4 As shown, the burner 13 has a secondary air inlet 12 arranged around the body of the burner 13, and an outlet 241 is located close to the secondary air inlet 12. That is, the exhaust assembly 24 directly delivers the cooling airflow to the vicinity of the secondary air inlet 12 of the burner 13. By positioning the outlet close to the secondary air inlet 12 of the burner 13, the cooling airflow is brought closer to the secondary air inlet 12 after exiting the outlet, improving the utilization rate of the cooling airflow as secondary air replenishment for the burner 13 and further reducing the impact of the cooling airflow on the kitchen ambient temperature.

[0049] In this embodiment, the statement that the exhaust outlet of the exhaust assembly 24 is close to the secondary air inlet 12 of the burner 13 means that the exhaust outlet of the exhaust assembly 24 should be located at a distance of no more than 10cm from the secondary air inlet 12.

[0050] Specifically in this embodiment, such as Figure 1 and Figure 2 As shown, the air outlet is located on the rear side of the cooktop panel 11. In this embodiment, the secondary air inlet 12 of the burner 13 is located on the rear side of the cooktop panel 11, and in the prior art, the secondary air inlet 12 of most burners 13 is located on the rear side of the panel 11 corresponding to the multi-functional cabinet 100. By placing the air outlet on the rear side of the cooktop panel 11, for most burners 13 in the prior art, the heat dissipation airflow is more easily drawn into the secondary air inlet 12 after flowing out of the air outlet. At the same time, the air outlet 241 is far away from the user standing in front of the multi-functional cabinet 100, avoiding the placement of the air outlet 241 from affecting the user.

[0051] Among them, such as Figure 1 As shown, Figure 1 In the diagram, A indicates the front of the multi-functional cabinet 100, B indicates the rear of the multi-functional cabinet 100, C indicates the left side of the multi-functional cabinet 100, and D indicates the right side of the multi-functional cabinet 100.

[0052] Of course, in other embodiments, the position of the air outlet can also be determined according to the setting of the secondary air inlet 12 of the burner 13 in the multi-functional cabinet 100, as long as the air outlet of the exhaust assembly 24 is as close as possible to the secondary air inlet 12 of the burner 13.

[0053] In this embodiment, as Figure 2As shown, the height of the air outlet is lower than the height of the lowest point of the air inlet. Since the cooling airflow is rising hot air, by setting the height of the air outlet to no higher than the center height of the air inlet, the overlap height between the flow path of the cooling airflow and the secondary air inlet 12 is relatively high, so that the cooling airflow continuously enters the secondary air inlet 12 during its rising process after flowing out of the air outlet.

[0054] Of course, in other embodiments, the height of the air outlet is lower than the height of the center of the air inlet, which can also ensure that the flow path of the heat dissipation airflow after it is discharged from the air outlet has a large overlap with the secondary air inlet 12, so that the heat dissipation airflow can be better utilized by the burner 13 as secondary air.

[0055] In this embodiment, as Figure 2 As shown, the air outlet 241 is positioned towards the secondary air inlet 12. Specifically, since the stove in this embodiment has a dual burner 13 structure, the air outlet is positioned below the lowest point of the secondary air inlet 12, and the heat dissipation airflow flows vertically upward when it flows out of the air outlet. Then, secondary air is supplied from the secondary air inlet 12 to the two burners 13 respectively.

[0056] Of course, in other embodiments, if the stove has only a single burner 13, the air outlet can be set to face the secondary air inlet, so that the direction of the refrigerator's heat dissipation airflow from the air outlet is the same as the direction of the secondary airflow from the secondary air inlet. That is, the air outlet of the exhaust assembly 24 can be set to face the secondary air inlet 12, and the heat dissipation airflow can directly enter the secondary air inlet 12 of the burner 13 along the original flow direction after flowing out of the air outlet of the exhaust assembly 24. It can be used as secondary air without changing the flow direction, which can reduce the flow loss of the heat dissipation airflow as secondary air and further improve the combustion efficiency of the stove.

[0057] In this embodiment, as Figure 1 So and Figure 2 As shown, the cooktop panel 11 is located on top of the cabinet body, and the panel 11 has burner mounting holes 101. Below the cooktop panel 11, inside the cabinet body, there is a cavity, and the refrigerator 2 is located inside the cavity, with the cooktop positioned above the refrigerator 2. In other words, the multi-functional cabinet 100 in this embodiment has a cooktop above the refrigerator 2. By placing the cooktop above the refrigerator 2, the temperature of the heat dissipation airflow from the refrigerator 2 is relatively high. The hot air rises to the air outlet, resulting in less flow resistance and less heat loss during the flow process, thus improving the combustion efficiency of the cooktop.

[0058] Of course, since the exhaust assembly 24 has a flow guiding effect, the relative positions of the refrigerator 2 and the cooktop do not affect the fact that the heat dissipation airflow can finally be discharged to the vicinity of the secondary air inlet 12 of the burner. Therefore, in other embodiments, the relative positions of the cooktop and the refrigerator 2 can be different from those in the present embodiment, and the exhaust assembly can also include a small power delivery device such as a fan or air pump, so that the heat dissipation airflow can be more efficiently delivered to the secondary air inlet. Details are omitted here.

[0059] In the present embodiment, as shown in Figure 2 and Figure 3 The condenser 22 of the refrigerator 2 is arranged at the lower part of the refrigerator 2, the evaporator 21 of the refrigerator 2 is arranged at the upper part of the refrigerator 2, and the compressor 23 of the refrigerator 2 is arranged at the right side of the refrigerator 2. By arranging the evaporator 21 and the condenser 22 of the refrigerator 2 at the upper and lower parts of the refrigerator 2 respectively, the evaporator 21 and the condenser 22 are as far apart as possible in the refrigerator 2, reducing mutual interference and improving the efficiency of the evaporator 21 and the condenser 22.

[0060] Of course, in other embodiments, the evaporator 21 and the condenser 22 of the refrigerator 2 can be arranged as needed. The specific arrangement of the evaporator 21 and the condenser 22 of the refrigerator 2 is known in the art, and details are omitted here.

[0061] In the present embodiment, the size of the refrigerator 2 matches the size of the cavity, and the cabinet door of the cabinet body 3 is fixed between the cabinet door of the refrigerator 2. The user can open and close the cabinet door of the cabinet body 3 and the refrigerator 2 simultaneously, avoiding opening the door multiple times when using the refrigerator 2, improving the convenience of the multifunctional cabinet 100, and making it easier for users to use.

[0062] Of course, in other embodiments, when the cavity of the multifunctional cabinet 100 is large and the size of the refrigerator 2 is small, the cavity can also be used to place other items that do not need to be placed in the refrigerator 2. The refrigerator 2 and the cavity can be provided with independent cabinet doors, and details are omitted here.

[0063] In the present embodiment, the opening and closing mode of the cabinet door of the cabinet body 3 and the refrigerator 2 is flip opening and closing, and the left side of the cabinet door is connected to the left side wall of the cabinet body 3 through a hinge. By setting the opening and closing mode of the cabinet door as flip opening and closing, and connecting the cabinet door to the left side wall of the cavity through a hinge, the cabinet door is opened from the right side, which is more in line with the usage habits of most users, and improves the applicability of the multifunctional cabinet 100.

[0064] Although the specific embodiments of the present application are described above, those skilled in the art should understand that this is only an example, the protection scope of the present application is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present application, but these changes and modifications all fall within the protection scope of the present application.

Claims

1. A multi-functional cabinet characterized by, It includes a cabinet body, a stove and a refrigerator, the refrigerator is arranged in the cabinet body, the stove is arranged on the top of the cabinet body, the refrigerator includes an exhaust assembly, the pipeline of the exhaust assembly extends upward to the panel of the stove to form an air outlet, the heat dissipation airflow of the refrigerator flows out through the air outlet, and the air outlet is arranged towards the burner of the stove.

2. The multi-functional cabinet of claim 1, wherein, The burner has a secondary air inlet arranged around the body of the burner, and the air outlet is arranged close to the secondary air inlet.

3. The multi-functional cabinet of claim 2, wherein, The air outlet is arranged on the back side of the panel.

4. The multi-functional cabinet of claim 2, wherein, The setting height of the air outlet is lower than the setting height of the center of the secondary air inlet.

5. The multi-functional cabinet of claim 4, wherein, The setting height of the air outlet is lower than the setting height of the lowest point of the secondary air inlet.

6. The multi-functional cabinet of claim 4, wherein, The air outlet is arranged towards the secondary air inlet, and the direction of the heat dissipation airflow of the refrigerator flowing out of the air outlet is the same as the direction of the secondary air flowing into the secondary air inlet.

7. The multi-functional cabinet of claim 1, wherein, The cabinet body has a cavity inside, the refrigerator is arranged in the cavity, and the stove is arranged above the refrigerator.

8. The multi-functional cabinet of claim 7, wherein, The size of the refrigerator matches the size of the cavity, and the cabinet door of the refrigerator is fixed between the cabinet door of the cabinet body.

9. The multi-functional cabinet of claim 8, wherein, The opening and closing mode of the cabinet body and the cabinet door of the refrigerator is flip opening and closing, the left side of the cabinet door of the cabinet body is connected to the left side wall of the cabinet body through a hinge.

10. The multi-functional cabinet of claim 1, wherein, The condenser of the refrigerator is arranged in the lower part of the refrigerator, and the evaporator of the refrigerator is arranged in the upper part of the refrigerator.