Integral range hood air conditioner
By movably connecting the evaporation device between the compressor and the throttling device in the integrated hood air conditioner, and using flexible pipes, the problem of fixed cold air blowing direction is solved, and the effective delivery of cold air and the improvement of user experience is achieved.
Patent Information
- Application Number
- CN202422159142.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The cold air blowing direction of the existing integrated hood air conditioner is fixed, and the cold air cannot be effectively delivered to the designated area, reducing the user's user experience.
By movably connecting the evaporation device between the compressor and the throttling device and using flexible pipes to achieve movable connection of the evaporation device, the user can adjust the setting position of the evaporation device and the direction of the cold air blowing as needed.
It realizes the effective delivery of cold air to designated areas, improves the user experience, and simplifies the structure through the use of flexible pipes, avoiding the risk of refrigeration medium leakage.
Smart Images

Figure CN222993081U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of kitchen appliances, in particular to an integrated range hood air conditioner. Background Art
[0002] With the improvement of people's living environment, people's requirements for comfort are getting higher and higher, and kitchen air conditioners are gradually emerging. In order to save installation space, facilitate the retrofit market and simplify installation, an integrated range hood air conditioner in which an air conditioner module and a range hood module are combined has been developed.
[0003] In the current integrated range hood air conditioner, the evaporation device of the refrigeration system is connected to the compressor, the condensation device, the throttling device, etc. with copper pipes, and the refrigerant flows in the compressor, the condensation device, the evaporation device, the throttling device and the copper pipes to form a refrigeration cycle loop.
[0004] When this integrated range hood air conditioner is refrigerating, the condensation device sucks in indoor air for heat exchange. After the indoor air absorbs heat, it becomes hot air and is discharged into the range hood module, and then discharged outdoors through the flue. In this process, since indoor air is sucked in and then discharged outdoors, it will cause a loss of indoor cooling capacity and affect the indoor cooling effect. At the same time, the refrigeration air outlet of this integrated range hood air conditioner needs to follow the installation position of the range hood module. After production and installation, the position of the evaporation device is fixed and cannot be changed, and the blowing direction of the cold air after heat exchange is also relatively fixed, which will also cause the refrigerated air to be not easily circulated to the entire kitchen space, and the refrigeration effect at local positions is discounted again, and the cold air cannot be effectively delivered to the designated area, reducing the user experience. Summary of the Utility Model
[0005] In view of this, the utility model provides an integrated range hood air conditioner to solve the problem that the blowing direction of the cold air of the existing integrated range hood air conditioner is fixed, the cold air cannot be effectively delivered to the designated area, and the user experience is reduced.
[0006] The utility model provides an integrated range hood air conditioner, including:
[0007] A range hood module;
[0008] An air conditioner fixing module, provided on one side of the range hood module, the air conditioner fixing module includes a compressor, a condensation device and a throttling device, and the condensation device is connected between the compressor and the throttling device;
[0009] An evaporation device, movably connected between the compressor and the throttling device, and an air outlet is provided on the evaporation device, and the air outlet is used for blowing out cold air.
[0010] Beneficial effects: By movably connecting the evaporation device between the compressor and the throttling device, the installation position of the evaporation device can be adjusted. In this way, the user can set the evaporation device at the required position according to actual needs, and then adjust the cold air blowing direction of the air outlet of the evaporation device to effectively deliver the cold air to the designated area, improving the user experience.
[0011] In an alternative embodiment, both sides of the evaporation device are fixedly connected to the compressor and the throttling device through connecting pipes respectively. The connecting pipes are flexible pipes for realizing the movable connection of the evaporation device.
[0012] Beneficial effects: By setting the connecting pipes between the evaporation device and the compressor and the throttling device as flexible pipes, the flexible pipes are flexible and can be bent and twisted to a certain extent, enabling the evaporation device to move, thus meeting the actual refrigeration needs of the user, and the structure is relatively simple.
[0013] In an alternative embodiment, the connecting pipes are nylon pipes or rubber pipes.
[0014] In an alternative embodiment, the connecting pipes are welded to the heat exchange pipes of the evaporation device, the inlet of the compressor, and the outlet of the throttling device.
[0015] Beneficial effects: By welding the connecting pipes to the heat exchange pipes of the evaporation device, the inlet of the compressor, and the outlet of the throttling device, the integrity of the integrated range hood air conditioner can be ensured, and it can be assembled completely during production to avoid subsequent docking. At the same time, the flexible pipes can be extended and bent, enabling the evaporation device to move to the designated position, and the cold air can be directly delivered to the position where the human body is located, obtaining a better refrigeration effect. At the same time, welding the connecting pipes to other structures can also prevent the leakage of the refrigeration medium in the connecting pipes and improve the fixing reliability.
[0016] In an alternative embodiment, the evaporation device includes:
[0017] An evaporator with heat exchange pipes provided therein;
[0018] An evaporation air duct provided on one side of the evaporator. A blower is provided in the evaporation air duct, and an air outlet is provided on the evaporation air duct.
[0019] In an alternative embodiment, the air outlet is provided on the side of the evaporation air duct facing the user.
[0020] Beneficial effects: By setting the air outlet on the side of the evaporation air duct facing the user, the cold air blown out from the air outlet can directly act on the human body, quickly increasing the cold feeling of the human body.
[0021] In an alternative embodiment, the integrated range hood air conditioner includes a mounting base, which is disposed above the range hood module, and an air conditioner fixing module is provided on the mounting base.
[0022] Advantageous effects: By providing a mounting base above the range hood module, a placement space is formed between the mounting base and the ceiling of the kitchen, which facilitates the placement of the air conditioner fixing module. When installing as a whole, the space between the upper part of the range hood module and the ceiling is used to place the air conditioner module, which can achieve the purpose of saving space and being aesthetically pleasing.
[0023] In an alternative embodiment, the range hood module includes:
[0024] A range hood body, on which a smoke collecting port is provided;
[0025] A range hood air duct, connected above the range hood body, at least one side of the range hood air duct is provided with an avoidance space, the avoidance space is between the range hood body and the mounting base, and the evaporation device is disposed at the avoidance space.
[0026] Advantageous effects: Generally in the horizontal direction, the size of the range hood body is larger than that of the range hood air duct. Therefore, an avoidance space can be formed on at least one side of the range hood air duct, and the evaporation device can be placed through this avoidance space, which is beneficial to saving installation space. At the same time, the position height of this avoidance space is below the ceiling of the kitchen and generally above the heads of adults. After the cold air blows out, users can feel cool quickly, improving the user experience.
[0027] In an alternative embodiment, at least two evaporation devices are provided, and at least two evaporation devices are connected in parallel.
[0028] Advantageous effects: By providing at least two evaporation devices and connecting at least two evaporation devices in parallel, users can place at least two evaporation devices at the required positions according to actual needs, which can quickly cool the local space, making it more convenient and comfortable. For example, there may be several people preparing meals or cooking at different positions in the kitchen, and the required usage locations may be more than one. Therefore, by providing at least two evaporation devices, more needs can be met.
[0029] In an alternative embodiment, the integrated range hood air conditioner includes:
[0030] A control device, which is connected to the evaporation device and is used to control at least two evaporation devices to work independently or simultaneously.
[0031] Beneficial effects: By connecting the control device to the evaporation device to control at least two evaporation devices to work independently or simultaneously, the integrated range hood air conditioner can be made more intelligent. At the same time, when less cooling demand is required, some evaporation devices can be turned off to make the integrated range hood air conditioner more energy-efficient. Description of the Drawings
[0032] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0033] Figure 1 Structural schematic diagram of the first layout of an integrated range hood air conditioner according to an embodiment of the present invention;
[0034] Figure 2 Structural schematic diagram of the second layout of an integrated range hood air conditioner according to an embodiment of the present invention;
[0035] Figure 3 Working principle diagram of the refrigeration system.
[0036] Description of the reference numerals:
[0037] 1. Compressor; 2. Condensing device; 201. Condenser; 202. Condensing air duct; 3. Throttling device; 4. Evaporation device; 401. Evaporator; 402. Evaporating air duct; 5. Connecting pipe; 6. Fan; 7. Mounting seat; 8. Range hood body; 9. Range hood air duct; 10. Avoidance space; 11. Exhaust duct; 12. Machine body; 13. Temperature detection device. Detailed Embodiments
[0038] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention.
[0039] As people's requirements for a quality life are getting higher and higher, kitchen air conditioners have gradually emerged. Kitchen air conditioners can be divided into split design and integrated design. Among them, the split design means that the condensing device, compressor, and throttling device are placed outdoors and belong to the outdoor unit, while the evaporating device is placed indoors and belongs to the indoor unit. Generally, a stop valve needs to be reserved on the outdoor unit and a joint needs to be reserved on the indoor unit. The evaporating device is connected to the compressor and throttling device through connecting pipes respectively connected to the stop valve and the joint. However, the stop valve generally protrudes outside the body of the outdoor unit, occupying a certain space. At the same time, an operating space also needs to be reserved, so the occupied space increases. At the same time, the connection between the connecting pipe and the stop valve, joint, etc. is a simple end face seal, which has a leakage risk. Therefore, the split design has problems such as inconvenient installation, leakage risk, increased cost, and increased occupied space.
[0040] In order to save installation space, facilitate the aftermarket, and simplify installation, an integrated range hood air conditioner in which an air conditioner module is combined with a range hood module has been developed.
[0041] In the current integrated range hood air conditioner, the evaporating device of the refrigeration system is connected to the compressor, condensing device, and throttling device by copper pipes. The refrigerant flows in the compressor, condensing device, evaporating device, throttling device, and copper pipes to form a refrigeration cycle loop.
[0042] When this integrated range hood air conditioner is cooling, the condensing device inhales indoor air for heat exchange. After the indoor air absorbs heat, it becomes hot air and is discharged into the range hood module, and then discharged outdoors through the flue. In this process, since indoor air is inhaled and then discharged outdoors, it will cause a loss of indoor cooling capacity and affect the indoor cooling effect. At the same time, the cooling air outlet of this integrated range hood air conditioner needs to follow the installation position of the range hood module. After production and installation, the position of the evaporating device is fixed and cannot be changed, and the blowing direction of the cold air after heat exchange is also relatively fixed. This will also cause the cooling air to be not easily circulated throughout the kitchen space, and the cooling effect at local positions will be further discounted, and the cold air cannot be effectively delivered to the designated area, reducing the user experience.
[0043] To solve the above problems, the applicant has proposed an integrated range hood air conditioner.
[0044] The following will describe the embodiments of the present invention in conjunction with Figures 1 to 3 , the embodiments of the present invention will be described.
[0045] According to an embodiment of the present invention, there is provided an integrated range hood air conditioner, including:
[0046] A range hood module;
[0047] An air conditioner fixing module, provided on one side of the range hood module. The air conditioner fixing module includes a compressor 1, a condensing device 2, and a throttling device 3. The condensing device 2 is connected between the compressor 1 and the throttling device 3;
[0048] The evaporation device 4 is movably connected between the compressor 1 and the throttling device 3. An air outlet is provided on the evaporation device 4 for blowing out cold air.
[0049] By movably connecting the evaporation device 4 between the compressor 1 and the throttling device 3, the installation position of the evaporation device 4 can be adjusted. In this way, the user can set the evaporation device 4 at the required position according to actual needs, and then adjust the blowing direction of the cold air from the air outlet of the evaporation device 4 to effectively deliver the cold air to the designated area, improving the user experience.
[0050] There are many specific ways to movably connect the evaporation device 4 between the compressor 1 and the throttling device 3. In this embodiment, both sides of the evaporation device 4 are fixedly connected to the compressor 1 and the throttling device 3 through connecting pipes 5 respectively. The connecting pipes 5 are flexible pipes for realizing the movable connection of the evaporation device 4. Specifically, the flexible pipes are connecting hoses.
[0051] By setting the connecting pipes 5 between the evaporation device 4 and the compressor 1 and the throttling device 3 as flexible pipes, the flexible pipes have flexibility and can be bent and twisted to a certain extent, enabling the evaporation device 4 to move, thus meeting the actual refrigeration needs of the user, and the structure is relatively simple.
[0052] Of course, in other embodiments, it can also be that the connecting pipes 5 between the evaporation device 4 and the compressor 1 and the throttling device 3 are telescopic pipes, and the movable connection of the evaporation device 4 is realized through the telescopic structure of the connecting pipes 5, and then the movement of the position of the evaporation device 4 is realized.
[0053] There are many specific settings for the connecting pipes 5. In this embodiment, the connecting pipes 5 are rubber pipes. As an alternative embodiment, the connecting pipes 5 can also be nylon pipes, or the connecting pipes 5 are pipes made of other flexible materials, and no more restrictions are made here.
[0054] In this embodiment, the connecting pipes 5 are welded to the heat exchange pipes of the evaporation device 4, the inlet of the compressor 1 and the outlet of the throttling device 3. As an alternative embodiment, the connecting pipes 5 can also be fixedly connected to the heat exchange pipes of the evaporation device 4, the inlet of the compressor 1 and the outlet of the throttling device 3 by other means, and no more restrictions are made here.
[0055] By welding the connecting pipe 5 to the heat exchange pipe of the evaporation device 4, the inlet of the compressor 1, and the outlet of the throttling device 3, valves do not need to be set, which can ensure the integrity of the integrated range hood air conditioner. It can be assembled completely during production, avoiding subsequent docking. At the same time, the flexible pipe can be extended and bent, enabling the evaporation device 4 to be moved to a designated position, and the cold air can be directly delivered to the position where the human body is located, achieving a better refrigeration effect. Meanwhile, the welding between the connecting pipe 5 and other structures can also prevent the leakage of the refrigeration medium in the connecting pipe 5 and improve the fixing reliability.
[0056] As Figure 1 shown, the evaporation device 4 in this embodiment includes:
[0057] An evaporator 401 with a heat exchange pipe arranged therein;
[0058] An evaporation air duct 402 arranged on one side of the evaporator 401. A blower 6 is arranged in the evaporation air duct 402, and an air outlet is arranged on the evaporation air duct 402.
[0059] Among them, the air outlet is arranged on the side of the evaporation air duct 402 facing the user, that is, the front side of the evaporation air duct 402. After the indoor air is cooled by heat exchange in the evaporator 401 and becomes cold air, it is blown out from the air outlet. By arranging the air outlet on the side of the evaporation air duct 402 facing the user, the cold air blown out from the air outlet can directly act on the human body, quickly increasing the cold feeling of the human body. As an alternative implementation, it can also be that the air outlet is arranged on the side of the evaporation air duct 402 opposite to the evaporator 401, preventing the cold air from directly blowing towards the user's face, but being arranged close to the user's face, and at the same time relying on natural convection to convey to the user.
[0060] Similarly, as Figure 1 shown, the condensing device 2 in this embodiment includes a condenser 201 and a condensing air duct 202. A heat exchange pipe is arranged in the condenser 201. The condensing air duct 202 is arranged on one side of the condenser 201. A blower 6 is arranged in the condensing air duct 202. The air outlet of the condensing air duct 202 is communicated with the smoke exhaust duct 11 of the range hood module. The condenser 201 inhales indoor air for heat exchange. After the indoor air absorbs heat, it becomes hot air and is discharged into the range hood module and exhausted outdoors through the smoke exhaust duct 11.
[0061] As Figure 2 shown, the integrated range hood air conditioner in this embodiment includes a mounting base 7. The mounting base 7 is arranged above the range hood module, and an air conditioner fixing module is arranged on the mounting base 7.
[0062] By arranging the mounting base 7 above the range hood module, a placement space is formed between the mounting base 7 and the ceiling of the kitchen, which is convenient for placing the air conditioner fixing module. When installing as a whole, the air conditioner fixing module is placed using the space between the upper part of the range hood module and the ceiling, which can achieve the purpose of saving space and being aesthetically pleasing.
[0063] Specifically, the mounting base 7 is in a plate-like structure. The rear side of the mounting base 7 is fixedly connected to the wall of the kitchen. The compressor 1, the condensing device 2, and the throttling device 3 are placed on the mounting base 7. Here, the rear side refers to the side facing away from the user, and the front side refers to the side close to the user.
[0064] For the convenience of installation, during actual assembly, the rear side of the mounting base 7 can be detachably connected to the wall of the kitchen. For example, screw holes are provided on the rear side plate of the mounting base and fixed by screws. As an alternative embodiment, it can also be that the mounting base 7 and the wall of the kitchen are fixedly connected in other ways, and no further limitations are made here.
[0065] As Figure 2 shown, the range hood module in this embodiment includes:
[0066] A range hood body 8, with a smoke collecting port provided on the range hood body 8;
[0067] A range hood air duct 9, connected above the range hood body 8. At least one side of the range hood air duct 9 is provided with an avoidance space 10. The avoidance space 10 is located between the range hood body 8 and the mounting base 7, and the evaporation device 4 is arranged at the avoidance space 10.
[0068] Generally in the horizontal direction, that is Figure 2 the left-right direction, the size of the range hood body 8 is larger than that of the range hood air duct 9. Therefore, an avoidance space 10 can be formed on at least one side of the range hood air duct 9, and the evaporation device 4 can be placed through this avoidance space 10, which is beneficial to saving installation space. At the same time, the position height of this avoidance space 10 is below the ceiling of the kitchen and generally above the head of an adult. After the cold air blows out, the user can feel the coolness quickly, improving the user experience.
[0069] Specifically, avoidance spaces 10 are provided on both sides of the range hood air duct 9 in this embodiment. During actual use, the user can choose to place the evaporation device 4 at the avoidance space 10 on any side according to actual needs, or evaporation devices 4 are placed at both avoidance spaces 10.
[0070] The range hood module in this embodiment includes an exhaust duct 11. One end of the exhaust duct 11 is communicated with the range hood air duct 9, and the other end is communicated with the outside.
[0071] The integrated range hood air conditioner in this embodiment includes a machine body 12. An avoidance space 10 is formed on the machine body 12 for placing the evaporation device 4. The front side of the machine body 12 is open, facilitating the taking and placing of the evaporation device 4. As an alternative embodiment, it can also be that the front side of the machine body 12 is closed, and a door body is provided at the avoidance space 10 for taking and placing the evaporation device 4.
[0072] When the integrated range hood air conditioner in this embodiment is in use, the evaporation device 4 can either be placed in the avoidance space 10, and the cold air blows directly above the cook's body, or the evaporation device 4 can be taken out and placed at the required position, such as on the cooking range top or other positions in the kitchen, to blow cold air to the designated position and quickly cool down this space, enhancing the user experience.
[0073] In this embodiment, the evaporation device 4 can be placed at the designated position according to actual needs, such as on the cooking range top in the kitchen or on the kitchen floor. In other embodiments, in order to reduce the space utilization in the kitchen, a hanging device can also be provided on one side of the evaporation device 4 to hang the evaporation device 4 on the wall corresponding to the position where cold air is needed.
[0074] Such as Figure 1 and Figure 2 As shown, there are two evaporation devices 4 in this embodiment, and the two evaporation devices 4 are arranged in parallel. As a changeable implementation manner, it can also be that there is one evaporation device 4, or three, or more.
[0075] By setting the evaporation device 4 to two and arranging the two evaporation devices 4 in parallel, the user can place the two evaporation devices 4 at the required positions according to actual needs, which can quickly cool down the local space, making it more convenient and comfortable. For example, there may be several people preparing meals or cooking at different positions in the kitchen, and there may be more than one place where the use is required. Therefore, by setting the evaporation device 4 to two, more needs can be met.
[0076] Correspondingly, as Figure 3 shown, there are also two throttling devices 3, which are respectively arranged in one-to-one correspondence with the evaporation devices 4. As a changeable implementation manner, it can also be that there is one throttling device 3, the two evaporation devices 4 are arranged in parallel, and a tee is provided for connection between the two evaporation devices 4 and the throttling device 3.
[0077] There is one compressor 1 in this embodiment, and the inlet of the compressor 1 can be connected to the two evaporation devices 4 through a tee.
[0078] The integrated range hood air conditioner in this embodiment includes:
[0079] A control device, which is connected to the evaporation device 4 and is used to control the two evaporation devices 4 to work separately or simultaneously.
[0080] By connecting the control device to the evaporation device 4 to control the two evaporation devices 4 to work separately or simultaneously, the integrated range hood air conditioner can be made more intelligent. At the same time, when not so much refrigeration is needed, some evaporation devices 4 can be turned off to make the integrated range hood air conditioner more energy-efficient.
[0081] The control device in this embodiment is connected to the compressor 1 and the throttling device 3. Among them, the compressor 1 in this embodiment is a variable-frequency compressor, and the throttling device 3 is an electronic expansion valve. By setting the refrigeration system of the integrated range hood air conditioner to adopt the form of a variable-frequency compressor paired with an electronic expansion valve, a larger refrigerating capacity can be quickly provided when starting up. During the operation of the refrigeration system, the control device can automatically adjust the operating frequency of the compressor 1 and the opening state of the electronic expansion valve according to the operating state parameters to ensure the performance and operating stability of the entire refrigeration system. As a transformable implementation manner, it can also be that the throttling device 3 is a capillary tube.
[0082] The schematic diagram of the refrigeration system of the integrated range hood air conditioner in this embodiment is as Figure 3 shown.
[0083] The refrigeration system includes a compressor 1, a condensing device 2, a throttling device 3, and an evaporating device 4. The compressor 1, the condensing device 2, the throttling device 3, and the evaporating device 4 are sequentially connected by pipelines. The refrigerant flows in the compressor 1, the condensing device 2, the evaporating device 4, the throttling device 3, and the pipelines to form a refrigeration cycle loop. As Figure 3 shown, Figure 3 the direction of the dotted arrow in
[0084] is the flow direction of the refrigerant. The refrigerant will sequentially complete the compression process, the condensation process, the expansion process, and the evaporation process in the compressor 1, the condensing device 2, the throttling device 3, and the evaporating device 4. Among them, the compression process: The refrigerant is in a low-temperature and low-pressure state in the evaporating device 4, absorbs the surrounding heat and evaporates. Then, the compressor 1 sucks in the evaporated refrigerant vapor and applies high pressure to make it into a high-temperature and high-pressure gas. The condensation process: The high-temperature and high-pressure refrigerant gas passes through the condensing device 2, exchanges heat with the indoor air, releases heat and condenses into a high-temperature and high-pressure liquid. The expansion process: When the condensed refrigerant liquid passes through the throttling device 3, the pressure drops sharply, and at the same time, partial flashing occurs, turning into a low-temperature and low-pressure wet steam mixture. The evaporation process: The low-temperature and low-pressure wet steam mixture flows into the evaporating device 4. Due to the pressure reduction, it quickly absorbs heat and evaporates, thereby absorbing the heat of the indoor air to achieve the refrigeration and cooling effect. The evaporated gaseous refrigerant is sucked into the compressor 1 again, compressed and sent back to the condensing device 2, and so on in a cycle to achieve the effect of continuous refrigeration.
[0085] Among them, the compressor 1, the condensing device 2, and the throttling device 3 together constitute the air conditioner fixed module in this embodiment. The compressor 1, the condenser 201, and the evaporator 401 are connected by copper pipe welding to form a closed channel, and the refrigerant circulates in this channel during operation. The connecting pipe 5 between the evaporation device 4, the compressor 1, and the throttling device 3 is a flexible pipe, so that the evaporation device 4 can be moved according to actual needs, and then cold air can be provided to users specifically, obtaining a better refrigeration effect and improving the user experience.
[0086] As Figure 3 shown, temperature detection devices 13 are respectively provided at the inlet of the compressor 1, the outlet of the compressor 1, the inlet of the throttling device 3, the outlet of the throttling device 3, and the outlet of the evaporation device 4 in this embodiment. The temperature detection devices 13 are connected to the control device, and the control device can control the overall operation of the refrigeration system according to the temperature values detected by the temperature detection devices 13.
[0087] Specifically, the temperature detection device 13 is a temperature sensing bulb. As an alternative implementation, it can also be that the temperature detection device 13 is a temperature sensor.
[0088] The integral range hood air conditioner in this embodiment consists of two major parts: an air conditioner module and a range hood module. The air conditioner module is the refrigeration system. When installed integrally, the space between the upper part of the range hood module and the ceiling is used to place the air conditioner module, which can achieve the purpose of saving space and being aesthetically pleasing.
[0089] To save installation space, the air conditioner module is installed above the range hood module. The compressor 1 and the condensing device 2 are installed on the mounting base 7, and the evaporation device 4 is placed at the avoidance space 10 on the side of the range hood duct 9. This position is below the kitchen ceiling and above the heads of ordinary adults. People can feel the coolness quickly after the cold air blows out. The two groups of evaporation devices 4 are respectively placed on both sides of the range hood duct 9, and the two groups of evaporation devices 4 can be controlled to start separately. The overall layout is as Figure 1 shown.
[0090] Due to the use of connecting hoses, the evaporation device 4 can be taken out from the avoidance space 10 beside the range hood duct 9 and placed at other positions where cold air is actually needed, which can quickly cool the local space and is more convenient and comfortable, as Figure 2 shown.
[0091] Although the embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.
Claims
1. An integrated range hood air conditioner, characterized in that: include: Hood module; An air conditioning fixed module is arranged on one side of the range hood module, the air conditioning fixed module comprises a compressor (1), a condensing device (2) and a throttling device (3), the condensing device (2) being connected between the compressor (1) and the throttling device (3); The evaporating device (4) is movably connected between the compressor (1) and the throttling device (3), and an air outlet is provided on the evaporating device (4), and the air outlet is used to blow out cold air.
2. The integrated range hood air conditioner according to claim 1, characterized in that: The two sides of the evaporation device (4) are respectively fixedly connected to the compressor (1) and the throttling device (3) via connecting pipes (5); the connecting pipes (5) are flexible pipes used to achieve movable connection of the evaporation device (4).
3. The integrated range hood air conditioner according to claim 2, characterized in that: The connecting pipe (5) is a nylon tube or a rubber tube.
4. The integrated range hood air conditioner according to claim 2, characterized in that: The connecting pipe (5) is welded to the heat exchange pipe of the evaporating device (4), the inlet of the compressor (1) and the outlet of the throttling device (3).
5. The integrated range hood air conditioner according to any one of claims 1 to 4, characterized in that: The evaporation device (4) comprises: An evaporator (401), wherein a heat exchange pipe is provided in the evaporator (401); An evaporation air duct (402) is arranged on one side of the evaporator (401), a fan (6) is arranged in the evaporation air duct (402), and the air outlet is arranged on the evaporation air duct (402).
6. The integrated range hood air conditioner according to claim 5, characterized in that: The air outlet is arranged on the side of the evaporation air duct (402) facing the user.
7. The integrated range hood air conditioner according to any one of claims 1 to 4, characterized in that: The integrated range hood air conditioner comprises a mounting seat (7), wherein the mounting seat (7) is arranged above the range hood module, and the air conditioner fixing module is arranged on the mounting seat (7).
8. The integrated range hood air conditioner according to claim 7, characterized in that: The range hood module comprises: A range hood body (8), wherein the range hood body (8) is provided with a smoke collecting port; A range hood air duct (9) is connected to the top of the range hood body (8); a relief space (10) is provided on at least one side of the range hood air duct (9); the relief space (10) is located between the range hood body (8) and the mounting seat (7); and the evaporation device (4) is arranged in the relief space (10).
9. The integrated range hood air conditioner according to any one of claims 1 to 4, characterized in that: At least two evaporation devices (4) are provided, and at least two evaporation devices (4) are arranged in parallel.
10. The integrated range hood air conditioner according to claim 9, characterized in that: The integrated range hood air conditioner comprises: A control device, the control device is connected to the evaporation device (4) and is used to control at least two of the evaporation devices (4) to work individually or simultaneously.