Humidification and dehumidification integrated device
By designing a humidification and dehumidification integrated device containing humidification and dehumidification components, the temperature and humidity sensor and refrigeration plate water collector can achieve accurate control of indoor air humidity and water saving, solving the problems of single functions of existing equipment and humidity monitoring deviations, and improving humidification efficiency.
Patent Information
- Application Number
- CN202421577496.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-05
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-05
AI Technical Summary
The existing humidifier and dehumidifier have a single function, and it is impossible to accurately control indoor air humidity, and there are deviations in the monitoring results of the humidity monitoring module.
A humidification and dehumidification integrated device is designed, including a humidification part and a dehumidification part. The indoor humidity is monitored through a temperature and humidity sensor, and the working state of the humidification or dehumidification parts are automatically controlled, and the condensation water is collected through the refrigeration plate water collector is collected into the water tank for humidification, forming a cycle.
It realizes precise control of indoor air humidity, saves water, and improves humidification efficiency through a 45° inclined blower vent design.
Smart Images

Figure CN223036532U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of electrical appliances, in particular to a humidifying and dehumidifying integrated device. Background Art
[0002] With the continuous development of society, people have higher and higher requirements for the indoor environment. The air humidity in the indoor environment is one of the important indicators. In order to control the indoor air humidity, humidifiers and dehumidifiers have emerged on the market. The humidifier increases the humidity of the air, and the dehumidifier reduces the humidity of the air. However, the humidifiers and dehumidifiers on the market have single functions and can only achieve their respective humidifying or dehumidifying functions. Moreover, the monitoring results of the humidity monitoring modules on different devices inevitably have deviations and cannot accurately control the indoor air humidity. Therefore, a humidifying and dehumidifying integrated machine that can control the indoor air humidity as needed is an urgently needed product on the market. Content of the Utility Model
[0003] A humidifying and dehumidifying integrated device includes a body, a body upper cover, a body base and a water tank. The body base is arranged above the water tank, the body is arranged above the body base, and the body upper cover is arranged at the top of the body; an air outlet is arranged on the body upper cover; a humidifying part and a dehumidifying part are arranged in the body. The humidifying part includes a water collecting tank. One end of the water collecting tank is communicated with a humidifying water tank. One end of the humidifying water tank is provided with a blowing port and a water inlet. The water inlet is communicated with one end of a water pump. The other end of the water pump is communicated with the water tank through a water inlet pipe; the blowing port is communicated with a humidifying fan. An atomization module is arranged at the bottom end of the humidifying water tank; the top of the humidifying water tank is covered with a water tank upper cover. A mist channel is opened on the water tank upper cover corresponding to the humidifying water tank. The mist channel connects the humidifying water tank and the air outlet of the body upper cover; the dehumidifying part is arranged below the humidifying part. A dehumidifying air inlet hole is arranged on the front of the body corresponding to the dehumidifying part, and a dehumidifying air outlet hole is arranged on the side of the body corresponding to the dehumidifying part. The dehumidifying part includes a dehumidifying fan, a refrigeration sheet, a refrigeration sheet radiator and a refrigeration sheet water collector. The refrigeration sheet is arranged between the refrigeration sheet water collectors. The refrigeration sheet water collector includes vertically arranged condensation sheets and guide grooves arranged on the outer sides of the condensation sheets; the refrigeration sheet water collector faces the dehumidifying air inlet hole. The dehumidifying fan faces the front of the body and is arranged in front of the refrigeration sheet radiator; a water collecting tank is arranged on the body base corresponding to the refrigeration sheet water collector. A water passing hole communicated with the water tank is also arranged on the body base. The water inlet pipe passes through the water passing hole and is communicated with the water tank; a water tank upper cover is arranged on the top of the water tank. A water collecting port communicated with the water tank is arranged on the water tank upper cover corresponding to the water collecting tank.
[0004] Further, a water tank liquid level detection device is also arranged in the humidifying water tank; a water tank liquid level detection device is also arranged in the water tank.
[0005] Further, the water tank liquid level detection device includes a water level gauge, and a liquid level float is sleeved outside the water level gauge; the water tank liquid level detection device includes a water level floating plate, the upper end of the water level floating plate is hinged to the water tank upper cover, and the lower end of the water level floating plate is located inside the water tank.
[0006] Further, a tipping power-off switch is also provided outside the humidifying water tank, a tipping detection hole is opened on the side wall of the humidifying water tank, and the detection end of the tipping power-off switch is embedded in the tipping detection hole.
[0007] Further, a dehumidification front cover and a dehumidification rear cover are also provided inside the dehumidification part, the condensation sheet is embedded in the dehumidification rear cover, the cold plate water collector is arranged on the back of the dehumidification rear cover, the cold plate radiator is arranged in front of the dehumidification rear cover, the dehumidification front cover and the dehumidification rear cover are snap-connected, an air passing port is opened in the center of the dehumidification front cover, and the dehumidification fan is arranged corresponding to the air passing port.
[0008] Further, a dehumidification outlet grille is arranged inside the dehumidification air outlet hole.
[0009] Further, a gravity ball is arranged at the bottom end of the water inlet pipe.
[0010] Further, a water tank drain pipe is connected to the top end of the humidifying water tank, a water accumulation drain pipe is connected to the bottom end of the humidifying water tank, and the lower ends of the water tank connecting pipe and the water accumulation drain pipe are both communicated with the water tank.
[0011] Further, a display screen is also provided on the front cover of the fuselage, and the temperature and humidity detection probe is arranged on the rear cover of the fuselage; a power interface is also provided on the rear cover of the fuselage.
[0012] Further, the air outlet is arranged to be inclined downward at 45° from one end of the fan to the inside of the water tank.
[0013] The beneficial effects of the present utility model are as follows:
[0014] 1. The same temperature and humidity sensor is used to respectively control the operation of the humidifying part and the dehumidifying part, and the monitoring is more accurate;
[0015] 2. The condensed water generated on the cold plate water collector in the dehumidifying part flows into the water tank intensively, and the water in the water tank is used for atomization by the humidifying part to form a cycle, saving water;
[0016] 3. The air outlet is arranged to be inclined at 45°, so that the air blown out by the humidifying fan is inclined downward, and it will not completely suppress the water vapor after atomization, so that the water droplets in the blown water vapor have a smaller diameter, can increase the spraying height and area, and effectively improve the humidifying efficiency. Description of the Drawings
[0017] Figure 1 is an exploded view of the structure of the present utility model;
[0018] Figure 2 is a schematic diagram of the structure of the humidifying part;
[0019] Figure 3 It is a schematic diagram of the dehumidifying part structure;
[0020] Figure 4 It is a schematic diagram of the water tank structure.
[0021] In the figure, 1. Humidifying part; 2. Dehumidifying part; 3. Water tank; 4. Upper cover of the fuselage; 5. Front cover of the fuselage; 6. Rear cover of the fuselage; 7. Base of the fuselage; 8. Humidifying water tank; 9. Water pump; 10. Humidifying fan; 11. Tipping power-off switch; 12. Upper cover of the water tank; 13. Mist passage; 14. Air outlet; 15. Water tank liquid level detection device; 16. Liquid level float; 17. Front cover of dehumidification; 18. Rear cover of dehumidification; 19. Refrigeration chip radiator; 20. Refrigeration chip; 21. Condensing sheet; 22. Guide groove; 23. Air passing opening; 24. Dehumidifying fan; 25. Dehumidifying air inlet hole; 26. Dehumidifying air outlet hole; 27. Power interface; 28. Temperature and humidity detection probe; 29. Upper cover of the water tank; 30. Water collecting port; 31. Water level floating plate; 32. Gravity ball; 33. Atomization module; 34. Drain pipe of the water tank; 35. Drain pipe for accumulated water; 36. Display screen; 37. Water inlet pipe. Specific implementation manners
[0022] In order to make the purpose, technical solutions and advantages of this application clearer, the following further elaborates on the present utility model in combination with embodiments. To thoroughly understand the present utility model, some specific details will be involved in the following description. Without these specific details, the present utility model can still be implemented, that is, those skilled in the art can more effectively introduce the essence of their work to other technicians in the field using these descriptions and statements here. In addition, it should be noted that it should be understood that the specific embodiments described herein are only used to explain this application and are not used to limit the actual protection scope. All raw materials used in the following embodiments are commercially available products.
[0023] Embodiment 1, as Figures 1-4As shown in the figure, a humidification and dehumidification integrated device includes a body, an upper body cover 4, a body base 7 and a water tank 3. The body base 7 is arranged above the water tank 3. The body is arranged above the body base 7, and the upper body cover 4 is arranged at the top of the body; an air outlet 14 is arranged on the upper body cover 4; a humidification part 1 and a dehumidification part 2 are arranged inside the body. The humidification part 1 includes a humidification water tank 8. One end of the humidification water tank 8 is provided with a blowing port and a water inlet. The water inlet is communicated with one end of a water pump 9, and the other end of the water pump 9 is communicated with the water tank 3 through a water inlet pipe 37; the blowing port is communicated with a humidification fan 10, and a atomization module 33 is arranged at the bottom end of the humidification water tank 8; the top of the humidification water tank 8 is covered with a water tank upper cover 12. The water tank upper cover 12 is provided with a fog channel 13 corresponding to the humidification water tank 8. The fog channel 13 is communicated with the humidification water tank 8 and the air outlet 14 of the upper body cover 4; the dehumidification part 2 is arranged below the humidification part 1. A dehumidification air inlet hole 25 is arranged on the rear body cover 6 corresponding to the dehumidification part 2, and a dehumidification air outlet hole 26 is arranged on the side of the body corresponding to the dehumidification part 2. The dehumidification part 2 includes a dehumidification fan 24, a Peltier element 20, a Peltier element radiator 19 and a Peltier element water collector. The Peltier element 20 is arranged between the Peltier element water collector and the Peltier element radiator 19. The Peltier element water collector includes vertically arranged condensation sheets 21 and a guide groove 22 arranged outside the condensation sheets 21; the Peltier element water collector faces the dehumidification air inlet hole 25, and the dehumidification fan 24 faces the rear body cover 6 and is arranged in front of the Peltier element radiator 19; a water collecting tank is arranged on the body base 7 corresponding to the Peltier element water collector, and the body base 7 is also provided with a water passing hole communicated with the water tank 3. The water inlet pipe 37 passes through the water passing hole and is communicated with the water tank 3; a water tank upper cover 12 is arranged on the top of the water tank 3, and a water collecting port 30 communicated with the water tank 3 is arranged on the water tank upper cover 12 corresponding to the water collecting tank.
[0024] A water tank liquid level detection device 15 is also arranged in the humidification water tank 8; a water tank liquid level detection device is also arranged in the water tank 3.
[0025] The water tank liquid level detection device 15 includes a water level gauge, and a liquid level floating ball 16 is sleeved outside the water level gauge; the water tank liquid level detection device includes a water level floating plate 31. The upper end of the water level floating plate 31 is hinged to the water tank upper cover 29, and the lower end of the water level floating plate 31 is located in the water tank 3. Setting a water level detection device in the device can timely detect the liquid levels in the humidification part and the water tank, and give an alarm when the liquid level exceeds the highest value or is lower than the lowest value, which is convenient for the user to control the water level during use.
[0026] A tipping power-off switch 11 is also arranged outside the humidification water tank 8. A tipping detection hole is opened on the side wall of the humidification water tank 8, and the detection end of the tipping power-off switch 11 is embedded in the tipping detection hole. Adding a tipping power-off switch can cut off the power when the water in the humidification water tank touches the tipping power-off switch when the device is tilted, avoiding the danger of electric shock caused by the water touching the internal circuit and resulting in a short circuit.
[0027] Inside the dehumidifying part 2, there is also a dehumidifying front cover 17 and a dehumidifying rear cover 18. The condensation fin 21 is embedded in the dehumidifying rear cover 18. The refrigeration chip water collector is arranged on the back of the dehumidifying rear cover 18, and the refrigeration chip radiator 19 is arranged in front of the dehumidifying rear cover 18. The dehumidifying front cover 17 and the dehumidifying rear cover 18 are connected by buckling. An air passing port 23 is opened at the center of the dehumidifying front cover 17, and the dehumidifying fan 24 is arranged corresponding to the air passing port 23.
[0028] A dehumidifying outlet grille is arranged inside the dehumidifying air outlet hole 25.
[0029] A gravity ball 32 is arranged at the bottom end of the water inlet pipe 37. Arranging the gravity ball 32 at the bottom of the water inlet pipe 37 can ensure that the water inlet end of the water inlet pipe 37 is always below the liquid level in the water tank 3, ensuring the water pump 9 to pump water and avoiding the water pump 9 from idling.
[0030] The top end of the humidifying water tank 8 is connected with a water tank drain pipe 34, and the bottom end of the humidifying water tank 8 is connected with a water accumulation drain pipe 38. The lower ends of the water tank connecting pipe 34 and the water accumulation drain pipe 35 are both communicated with the water tank 3. The excess water in the humidifying water tank 8 can enter the water tank 3, without wasting water.
[0031] The front cover 5 of the fuselage is also provided with a display screen 36, and the temperature and humidity detection probe 28 is arranged on the rear cover 6 of the fuselage; the rear cover 6 of the fuselage is also provided with a power interface 27.
[0032] The air blowing port is arranged to be inclined downward at 45° from one end of the fan 14 to the inside of the water tank.
[0033] The working principle of the present utility model is as follows:
[0034] The indoor air humidity and temperature are monitored by the temperature and humidity sensor. When the humidity is lower than the preset minimum value, a signal is sent to start the humidifying part. The water pump in the humidifying part pumps water from the water tank to the humidifying water tank, and at the same time, the atomizing module starts to atomize the water in the humidifying water tank. At this time, the humidifying fan starts to blow air into the humidifying water tank, and the airflow drives the atomized water vapor to flow through the fog passage and the air outlet to be blown into the room to humidify the room.
[0035] When the humidity is higher than the preset maximum value, a signal is sent to start the dehumidifying part. The dehumidifying fan in the dehumidifying part starts to suck the indoor air into the dehumidifying part through the dehumidifying air inlet hole. At the same time, the refrigeration chip starts to condense the incoming air. The condensed water formed by condensation adheres to the condensation fin. When the condensed water condenses into large water drops, it flows along the condensation fin and the guiding groove into the water collecting port and finally enters the water tank.
[0036] This utility model uses a temperature and humidity sensor to control the operation of the humidifying part and the dehumidifying part respectively, with more accurate monitoring; the condensed water generated on the water collector of the Peltier device in the dehumidifying part flows into the water tank centrally, and the water in the water tank is used for atomization by the humidifying part, forming a cycle to save water; the air outlet is inclined at 45°, so that the air blown out by the humidifying fan blows obliquely downward, and does not completely suppress the water vapor after atomization, making the water droplet diameter in the blown water vapor smaller, which can increase the spraying height and area and effectively improve the humidifying efficiency.
[0037] The technical solutions provided by the embodiments of this utility model have been introduced in detail above. Specific examples are used in this article to elaborate on the principles and implementation manners of the embodiments of this utility model. The descriptions of the above embodiments are only applicable to help understand the principles of the embodiments of this utility model; at the same time, for those of ordinary skill in the art, based on the embodiments of this utility model, there will be changes in the specific implementation manners and application scopes. In summary, the content of this specification should not be construed as a limitation of this utility model.
Claims
1. A humidification and dehumidification integrated device, characterized in that: It includes a fuselage, a fuselage cover, a fuselage base and a water tank, wherein the fuselage base is arranged above the water tank, the fuselage is arranged above the fuselage base, and the fuselage cover is arranged on the top of the fuselage; the fuselage cover is provided with an air outlet; a humidifying part and a dehumidifying part are arranged in the fuselage, and the humidifying part includes a humidifying water tank, one end of the humidifying water tank is provided with an air outlet and a water inlet, the water inlet is connected to one end of a water pump, and the other end of the water pump is connected to the water tank through a water inlet pipe; the air outlet is connected to a humidifying fan, and an atomizing module is arranged at the bottom of the humidifying water tank; the top of the humidifying water tank is covered with a water tank cover, and a mist channel is provided on the water tank cover corresponding to the humidifying water tank, and the mist channel connects the humidifying water tank and the air outlet of the fuselage cover; the dehumidifying part is arranged below the humidifying part, and a dehumidifying part is arranged on the back of the fuselage corresponding to the dehumidifying part A dehumidification air inlet is provided, and a dehumidification air outlet is arranged on the side of the fuselage corresponding to the dehumidification part. The dehumidification part includes a dehumidification fan, a refrigeration fin, a refrigeration fin radiator and a refrigeration fin water collector. The refrigeration fin is arranged between the refrigeration fin water collector, and the refrigeration fin water collector includes condensing fins arranged vertically and guide grooves arranged on the outside of the condensing fins; the refrigeration fin water collector is arranged facing the dehumidification air inlet, and the dehumidification fan is arranged in front of the refrigeration fin radiator facing the front of the fuselage; a water collecting trough is provided on the fuselage base corresponding to the refrigeration fin water collector, and a water through hole connected to the water tank is also provided on the fuselage base, and the water inlet pipe is connected to the water tank through the water through hole; a water tank upper cover is provided on the top of the water tank, and a water collecting port connected to the water tank is provided on the water tank upper cover corresponding to the water collecting trough.
2. A humidification and dehumidification integrated device as claimed in claim 1, characterized in that: The humidifying water tank is also provided with a water tank liquid level detection device; the water tank is also provided with a water tank liquid level detection device.
3. A humidification and dehumidification integrated device as claimed in claim 2, characterized in that: The water tank liquid level detection device comprises a water level gauge, on the outer sleeve of which is provided a liquid level float; the water tank liquid level detection device comprises a water level float plate, the upper end of which is hinged to the water tank cover, and the lower end of which is located in the water tank.
4. A humidification and dehumidification integrated device as claimed in claim 1, characterized in that: A dumping power-off switch is also arranged outside the humidifying water tank, a dumping detection hole is arranged on the side wall of the humidifying water tank, and a detection end of the dumping power-off switch is embedded in the dumping detection hole.
5. A humidification and dehumidification integrated device as claimed in claim 1, characterized in that: The dehumidification part is also provided with a dehumidification front cover and a dehumidification rear cover, the condensation plate is embedded in the dehumidification rear cover, the refrigeration plate water collector is arranged on the back of the dehumidification rear cover, the refrigeration plate radiator is arranged in front of the dehumidification rear cover, the dehumidification front cover is snap-fitted with the dehumidification rear cover, an air outlet is opened in the center of the dehumidification front cover, and the dehumidification fan is arranged corresponding to the air outlet.
6. A humidification and dehumidification integrated device as claimed in claim 1, characterized in that: A dehumidification outlet grille is arranged in the dehumidification outlet hole.
7. A humidification and dehumidification integrated device as claimed in claim 1, characterized in that: A gravity ball is arranged at the bottom end of the water inlet pipe.
8. The humidification and dehumidification integrated device as claimed in claim 1, characterized in that: The top of the humidifying water tank is connected with a water tank drain pipe, the bottom of the humidifying water tank is connected with an accumulated water drain pipe, and the lower ends of the water tank water receiving pipe and the accumulated water drain pipe are both communicated with the water tank.
9. A humidification and dehumidification integrated device as claimed in claim 1, characterized in that: The front cover of the fuselage is also provided with a display screen, and the temperature and humidity detection probes are arranged on the rear cover of the fuselage; the rear cover of the fuselage is also provided with a power interface.
10. A humidification and dehumidification integrated device as claimed in claim 9, characterized in that: The air outlet is arranged to be inclined downward at 45 degrees from one end of the fan to the inside of the water tank.