Integrated air outlet device of warmer
By integrating a water ion emitter and a centrifugal fan into the heater, the problem of independent installation of air purification equipment in integrated ceilings is solved, achieving the effects of negative ion air purification and energy reduction.
Patent Information
- Application Number
- CN202520311339.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-02-25
AI Technical Summary
Existing integrated ceiling-mounted hot air units lack water ionization functionality in air purification applications, leading to increased costs and the need for separate equipment.
Design an integrated air outlet device for a heater, integrating a water ion emitter within the hot air duct. Through the separate design of the hot air duct and the exhaust duct, a centrifugal fan is used to achieve air flow and heating, and negative ions are released in the hot air duct through the water ion emitter.
It integrates negative ion air purification function, reducing equipment cost and energy consumption, while maintaining air purification effect and air volume.
Smart Images

Figure CN223768979U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of integrated ceiling technology, and more specifically, to an integrated air outlet device for heaters. Background Technology
[0002] Integrated ceilings are a modern interior ceiling decoration solution that integrates lighting, ventilation, heating, and other functional modules into a single plane. They are not only aesthetically pleasing but also highly functional. Integrated ceilings are widely used in kitchens, bathrooms, and other spaces, and are favored for their moisture-proof, fire-resistant, and easy-to-clean features.
[0003] A water ion generator is an air purification device that improves air quality by releasing water ions (usually negative ions). It works by using high-voltage ionization technology to break down water molecules into negatively charged water ions. These ions can adsorb particulate matter in the air (such as dust, pollen, and bacteria), thus purifying the air. However, with technological advancements and increasing emphasis on health, people have higher requirements for air quality. Existing integrated ceiling-mounted hot air vents do not have the function of releasing water ions, requiring separate purification equipment, which significantly increases costs. To address these issues, a solution is proposed below. Utility Model Content
[0004] In view of the problems existing in the prior art, the purpose of this utility model is to provide an integrated air outlet device for a heater, which can make the blown air contain negative ions.
[0005] To solve the above problems, the present invention adopts the following technical solution.
[0006] The integrated air outlet device of the heater includes a shell and a panel, which cooperate to form a cavity. An exhaust duct is provided inside the cavity, and a hot air duct is provided on one side of the exhaust duct. The hot air duct and the exhaust duct are not connected. Exhaust devices are respectively provided inside the exhaust duct and the hot air duct. An exhaust port is provided on the side of the shell, and the exhaust port is connected to the output end of the exhaust duct. Symmetrical air inlets are provided on the panel, and a hot air port is also provided on the panel. The two air inlets are respectively connected to the air inlets of the exhaust duct and the air inlet of the hot air duct. The hot air port is connected to the output end of the hot air duct. A mounting cavity is provided on the side of the output end of the hot air duct, and the mounting cavity is connected to the hot air duct via a connecting channel. A water ion emitter is installed inside the mounting cavity, and the mounting cavity corresponds to the hot air port. A heating element is installed at the hot air port.
[0007] Preferably, the exhaust device includes a centrifugal fan body and a centrifugal fan impeller, with the centrifugal fan impeller installed at the output end of the centrifugal fan body.
[0008] Preferably, the heating element includes a mounting frame, a heating plate, and a grille. The mounting frame is installed at the hot air outlet, the heating plate is installed inside the mounting frame, and the grille is connected to one end of the mounting frame.
[0009] Preferably, the mounting frame is provided with two partitions inside, which divide the mounting frame into an ion port, a hot air outlet, and an auxiliary air outlet. The ion port corresponds to the mounting cavity, and the heating plate is installed inside the hot air outlet.
[0010] Preferably, the hot air duct has an inclined panel inside the end near the hot air outlet.
[0011] Preferably, a connecting duct is installed at the exhaust port.
[0012] Preferably, a control system is installed inside the chamber, and the exhaust device, water ion emitter, and heating element are all electrically connected to the controller.
[0013] Compared with existing technologies, the advantages of this utility model are:
[0014] I. This solution, through the coordination of exhaust ducts, exhaust vents, and corresponding exhaust devices, enables the transfer of indoor air to the outside, achieving ventilation. Through the coordination of hot air ducts, hot air vents, heating elements, and corresponding exhaust devices, it can heat the indoor air. At the same time, the air inside the hot air duct will enter the installation cavity through the connecting channel. When the water ion emitter is working, the air entering the installation cavity will blow out negative ions, thereby purifying the indoor air. At the same time, no independent air supply system is required, reducing energy consumption, and the structure is reasonable and requires no major modifications.
[0015] Second, the centrifugal fan body provides kinetic energy, which drives the centrifugal fan impeller to rotate, and the centrifugal fan impeller realizes the flow of air.
[0016] 3. The mounting frame is used to support the heating plate, which heats the air passing through the heating port. The grille isolates the heating plate to prevent users from coming into contact with it and getting burned or damaged.
[0017] IV. The ion port is used for air circulation containing water ions, avoiding the heating plate from heating the air containing water ions and ensuring the purification effect of water ions. The auxiliary air vent is used to ensure the overall air volume and avoid the obstruction effect of the heating plate, which would cause the air volume to decrease.
[0018] 5. The slanted panel design facilitates the transfer of air from inside the hot air duct into the hot air inlet, and also facilitates air exhaust.
[0019] 6. Connecting the duct facilitates the connection between the exhaust outlet and external pipes.
[0020] VII. The control system is used to control the overall start-up and shutdown of the equipment. Attached Figure Description
[0021] Figure 1 This is an exploded structural diagram of the entire utility model;
[0022] Figure 2 This is a top view of the shell structure of this utility model;
[0023] Figure 3 This is an exploded structural diagram of the heating element of this utility model;
[0024] Figure 4 This is an enlarged structural schematic diagram of A in this utility model.
[0025] Explanation of the labels in the diagram:
[0026] 1. Housing; 2. Panel; 3. Chamber; 4. Exhaust duct; 5. Hot air duct; 6. Exhaust device; 7. Exhaust port; 8. Air inlet; 9. Hot air outlet; 10. Mounting cavity; 11. Connecting channel; 12. Water ion emitter; 13. Heating element; 14. Centrifugal fan body; 15. Centrifugal fan impeller; 16. Mounting frame; 17. Heating plate; 18. Grille; 19. Partition; 20. Ion port; 21. Hot air outlet; 22. Auxiliary air outlet; 23. Slanted panel; 24. Connecting duct; 25. Control system. Detailed Implementation
[0027] Example 1:
[0028] Please see Figure 1-4 The heater's integrated air outlet device includes a housing 1 and a panel 2. The housing 1 and panel 2 cooperate to form a chamber 3. A control system 25 is installed inside the chamber 3. An exhaust duct 4 is installed inside the chamber 3. A hot air duct 5 is installed on one side of the exhaust duct 4. The hot air duct 5 and the exhaust duct 4 are not connected. Exhaust devices 6 are installed inside the exhaust duct 4 and the hot air duct 5, respectively. The exhaust device 6 includes a centrifugal fan body 14 and a centrifugal fan impeller 15. The centrifugal fan body 14 is electrically connected to the control system 25. The centrifugal fan impeller 15 is installed at the output end of the centrifugal fan body 14. On the panel 2... The housing 1 has symmetrically arranged air inlets 8, which are connected to the air inlet end of the exhaust duct 4 and the air inlet end of the hot air duct 5, respectively. The side of the housing 1 has an exhaust port 7, which is connected to the output end of the exhaust duct 4. A connecting duct 24 is installed at the exhaust port 7, which facilitates the connection between the exhaust port 7 and the external pipe. The panel 2 also has a hot air port 9, which is connected to the output end of the hot air duct 5. The end of the hot air duct 5 near the hot air port 9 has a sloping panel 23. The design of the sloping panel 23 facilitates the transfer of air inside the hot air duct 5 into the hot air port 9, and facilitates the exhaust of air.
[0029] The combination of exhaust duct 4, exhaust outlet 7 and exhaust device 6 inside exhaust duct 4 enables indoor air to be transferred to the outside, thus achieving ventilation.
[0030] A mounting cavity 10 is provided on the side of the output end of the hot air duct 5. The mounting cavity 10 is connected to the hot air duct 5 through a connecting channel 11. A water ion emitter 12 is installed inside the mounting cavity 10, and the mounting cavity 10 corresponds to the hot air outlet 9. A heating element 13 is installed at the hot air outlet 9. The heating element 13 includes a mounting frame 16, a heating plate 17, and a grille 18. The mounting frame 16 is installed at the hot air outlet 9. Two partitions 19 are provided inside the mounting frame 16, dividing the mounting frame 16 into an ion port 20, a hot air outlet 21, and an auxiliary air outlet 22. The ion port 20 corresponds to the mounting cavity 10. The heating plate 17 is installed inside the hot air outlet 21. The heating plate 17 is connected to the controller. The heating plate 17 is a PTC heating element, which is an existing and mature technology in this industry. The grille 18 is connected to one end of the mounting frame 16. The ion port 20 is used for the airflow containing water ions to prevent the heating plate 17 from heating the air containing water ions and to ensure the purification effect of water ions. The auxiliary air port 22 is used to ensure the overall air volume and to prevent the heating plate 17 from obstructing the airflow and causing a decrease in air volume. The hot air outlet 21 is used to support the heating plate 17 and heat the air passing through the heating port through the heating plate 17. The grille 18 is used to isolate the heating plate 17 to prevent users from contacting the heating plate 17 and causing burns or damage to the heating plate 17.
[0031] Working principle:
[0032] In use, when indoor ventilation is required, the control panel is electrically connected to the control system 25 via an external control panel, which facilitates the activation of the control system 25. The control system 25 drives the centrifugal fan body 14 inside the exhaust duct 4 to rotate. The centrifugal fan body 14 drives the corresponding centrifugal fan impeller 15 to rotate, thereby drawing indoor air into the intake duct through the corresponding air inlet 8 and then discharging it into the connecting duct 24 through the exhaust outlet 7. The connecting duct 24 is connected to the external pipes, enabling the rapid exhaust of indoor air and achieving ventilation.
[0033] When indoor air heating is required, the control system 25 is activated via the external control panel. The control system 25 activates the centrifugal fan inside the hot air duct 5, thereby driving the corresponding centrifugal fan impeller 15 to rotate and draw indoor air into the hot air duct 5. Part of the air entering the hot air duct 5 will come into contact with the heating plate 17 and be heated, and then be discharged to the hot air outlet 9 through the hot air outlet 21. Part of the air will enter the installation cavity 10 through the connecting channel 11, so that the negative ions generated by the water ion emitter 12 can enter the hot air outlet 9 through the ion port 20. The last part will directly enter the hot air outlet 9 through the auxiliary air outlet 22, thereby achieving air heating. The ion port 20 is used for the circulation of air containing water ions, avoiding the heating plate 17 from heating the air containing water ions, and ensuring the purification effect of water ions. The auxiliary air outlet 22 is used to ensure the overall air volume and avoid the obstruction effect of the heating plate 17 causing a decrease in air volume.
Claims
1. An integrated air outlet device of a warmer, characterized in that: The utility model provides a water ion air conditioning device, including casing (1) and panel (2), casing (1) and panel (2) cooperate to form the chamber (3), the chamber (3) inside is provided with exhaust channel (4), one side of exhaust channel (4) is provided with hot air channel (5), and hot air channel (5) and exhaust channel (4) are not communicated, and exhaust channel (4) and hot air channel (5) are provided with exhaust device (6) inside respectively, the side of casing (1) is provided with exhaust port (7), and exhaust port (7) is connected with the output end of exhaust channel (4), the symmetric inlet (8) of air is set up on panel (2), and the hot air port (9) is also set up on panel (2), two inlet (8) of air is connected with the air inlet end of exhaust channel (4) and the air inlet end of hot air channel (5) respectively, and the hot air port (9) is communicated with the output end of hot air channel (5), and the output end side of hot air channel (5) is provided with installation cavity (10), and installation cavity (10) is communicated with hot air channel (5) through the communication channel (11), and water ion emitter (12) is installed in installation cavity (10), and installation cavity (10) and hot air port (9) correspond, and heating element (13) is installed at hot air port (9).
2. The integrated air outlet device of the warmer according to claim 1, wherein: The exhaust device (6) includes a centrifugal fan body (14) and a centrifugal fan impeller (15), and the centrifugal fan impeller (15) is installed at the output end of the centrifugal fan body (14).
3. The integrated air outlet device of the warmer according to claim 1, wherein: The heating element (13) includes a mounting frame (16), a heating plate (17), and a grid (18), the mounting frame (16) is installed at the hot air port (9), the heating plate (17) is installed inside the mounting frame (16), and the grid (18) is connected with one end of the mounting frame (16).
4. The integrated air outlet device of the warmer according to claim 3, wherein: The mounting frame (16) is provided with two partitions (19) inside, and the two partitions (19) divide the mounting frame (16) into an ion port (20), a hot air outlet (21), and an auxiliary air port (22), the ion port (20) corresponds to the installation cavity (10), and the heating plate (17) is installed inside the hot air outlet (21).
5. The integrated air outlet device of the warmer according to claim 4, wherein: The hot air channel (5) is provided with an inclined plane (23) inside the end close to the hot air port (9).
6. The integrated air outlet of a warmer according to claim 1, wherein: The exhaust port (7) is provided with a connecting air pipe (24).
7. The integrated air outlet device of the warmer according to claim 1, wherein: The chamber (3) is provided with a control system (25) inside, and the exhaust device (6), the water ion emitter (12), and the heating element (13) are electrically connected with the controller.