一种导雾组件、加湿装置及取暖器

By designing a water channel and air guide cover with a return flow structure and mist guide ribs in the heater, the problem of condensate leakage was solved, realizing the recycling of condensate and the uniform dispersion of mist, thus improving the user experience and the simulated flame effect.

CN224516941UActive Publication Date: 2026-07-17GREE ELECTRIC APPLIANCE INC OF ZHUHAI

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GREE ELECTRIC APPLIANCE INC OF ZHUHAI
Filing Date
2025-08-15
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Heaters with humidification modules tend to accumulate condensation near the mist outlet, and condensation leakage leads to a poor user experience.

Method used

Design a fog guiding component, including a water guiding groove and an air guiding cover. A reflux structure is formed in the water guiding groove, extending downward towards the fog inlet. Condensate flows back to the water tank of the atomizing component along the inclined reflux structure and is evenly dispersed by the fog guiding ribs. Combined with the lamp cover component, it forms a simulated flame.

Benefits of technology

It effectively prevents condensate leakage, improves user experience, enhances mist uniformity, and provides realistic simulated flame effects, thereby increasing user satisfaction.

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Abstract

本实用新型涉及取暖器技术领域,公开了一种导雾组件、加湿装置及取暖器。导雾组件包括:进雾口;导水槽,其内腔形成有向进雾口的方向下倾延伸的回流结构;导风盖板,安装于导水槽上;导风盖板与导水槽之间形成有导雾通道,导风盖板的顶部设置有出雾口,进雾口通过导雾通道与出雾口连通。导水槽内形成的向进雾口方向下倾延伸的回流结构,能够将冷凝水导流到进雾口,进而回流到雾化组件的水槽中再利用,有效防止冷凝水在导雾组件中积聚造成的渗漏,提升用户使用体验。
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Claims

1. A mist guiding assembly, characterized in that, The fog guiding component includes: A mist inlet (111) is used to connect with the atomizing component (200); A water guide channel (110) has an inner cavity with a reflux structure (112) that extends downward toward the mist inlet (111); An air guide cover (120) is installed on the water guide groove (110); a mist guiding channel is formed between the air guide cover (120) and the water guide groove (110); a mist outlet (121) is provided on the top of the air guide cover (120); and the mist inlet (111) is connected to the mist outlet (121) through the mist guiding channel.

2. The mist guide assembly of claim 1, wherein, The reflux structure (112) includes: A return channel, formed at the bottom of the water guide channel (110), is used to collect and guide the condensate at the mist outlet (121).

3. The mist guide assembly of claim 2, wherein, The reflux tank includes: The steep slope section (1121) is located at the end of the return channel away from the mist inlet (111); A gentle slope section (1122) is provided between the steep slope section (1121) and the mist inlet (111); the inclination of the steep slope section (1121) is greater than the inclination of the gentle slope section (1122).

4. The mist guide assembly of any one of claims 1 to 3, wherein, The inner side of the air guide cover (120) is provided with fog guiding ribs (122), and at least two fog guiding ribs (122) are arranged at intervals along the flow direction of the fog guiding channel; a flow divider gap is formed between every two adjacent fog guiding ribs (122), and the fog vapor in the fog guiding channel is discharged from the fog outlet (121) after passing through the flow divider gap.

5. The fog guiding assembly according to claim 4, characterized in that, The fog-guiding rib (122) includes long ribs (1221) and short ribs (1222), with a plurality of short ribs (1222) distributed between every two adjacent long ribs (1221).

6. The mist guide assembly of claim 4, wherein, The fog-guiding ribs (122) include: The vertical section is located at one end near the mist outlet (121); The bent section is formed by bending the bottom end of the vertical section toward the mist inlet (111).

7. The mist guide assembly of claim 1, wherein, The section of the fog guiding channel away from the fog inlet (111) forms a tapered structure.

8. The mist guide assembly of claim 1, wherein, The fog guiding component (100) also includes a lampshade component (130), which is disposed near the fog outlet (121) and is used to project a light beam onto the fog screen to form a simulated flame.

9. The mist guide assembly of claim 8, wherein, The lampshade assembly (130) is detachably mounted on the air guide cover (120), and the lampshade assembly (130) and the air guide cover (120) constitute a simulated flame humidification structure.

10. The mist guide assembly of claim 9, wherein, The simulated flame humidification structure is detachably installed on the water guide channel (110).

11. The mist guide assembly of claim 10, wherein, A sealing element is provided between the simulated flame humidification structure and the water guide groove (110).

12. A humidifying device, characterized by include: Atomizing component (200); The fog guiding assembly (100) according to any one of claims 1 to 11 is connected to the atomizing assembly (200) through the fog inlet (111).

13. The humidifying device of claim 12, wherein, A sealing ring (300) is provided at the interface between the atomizing component (200) and the fog guiding component (100).

14. A warmer, comprising: The humidification device includes any one of claims 12 to 13.