一种防倾倒漏液的雾化结构
By designing a connection structure between the upper and lower valve bodies in the atomizing device, the through holes are automatically sealed using inertia and gravity difference, solving the problem of liquid leakage when diffusers and other equipment are tilted, and achieving a highly efficient and reliable leak-proof effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGZHOU MEIKE MICROAROMA TECHNOLOGY CO
- Filing Date
- 2025-06-13
- Publication Date
- 2026-07-17
Smart Images

Figure CN224505958U_ABST
Abstract
Claims
1. An atomizing structure for preventing tipping and leakage, comprising: A container (100) for holding liquid, the container (100) having an opening; Atomizing component (200) is disposed over the opening. The atomizing component (200) has a mist outlet (210); Its features are, The atomizing component (200) has a partition structure (300). The upper part of the partition structure (300) is an upper region (310) that communicates with the mist outlet (210), and the lower part is a lower region (320) that communicates with the container (100). The partition structure (300) has a through hole (330). The through hole (330) connects the upper region (310) and the lower region (320); An upper valve body (410) is provided above the through hole (330), and a lower valve body (420) is provided below it. The upper valve body (410) and the lower valve body (420) are both larger than the through hole (330), and the two are connected as a whole by a connector (430) passing through the through hole (330). The length of the connector (430) is greater than that of the through hole (330).
2. The atomizing structure for preventing tipping and leakage according to claim 1, characterized in that, The upper valve body (410) is heavier than the lower valve body (420).
3. The atomizing structure for preventing tipping and leakage according to claim 1, characterized in that, The lower surface of the partition structure (300) is provided with a sealing surface (360) that mates with the lower valve body (420) around the through hole (330).
4. The atomizing structure for preventing tipping and leakage according to claim 3, characterized in that, The through hole (330) is a circular hole, and the upper valve body (410) and the lower valve body (420) are both spheres or spherical caps, with the diameter of the two spheres or spherical caps being larger than that of the through hole (330). The sealing surface (360) is a conical or arc-shaped surface inclined toward the through hole (330), and its lower diameter is larger than that of the lower valve body (420).
5. The atomizing structure for preventing tipping and leakage according to claim 1, characterized in that, The upper valve body (410) is provided with a connecting groove (350) below the side connecting through hole (330). The upper surface of the partition structure (300) is provided with a first guide surface (340) to guide the upper valve body (410) to slide into the through hole (330). The first guide surface (340) is a conical surface that surrounds the through hole (330) and is inclined toward the through hole (330). The connecting grooves (350) are radially distributed on the conical surface.
6. The atomizing structure for preventing tipping and leakage according to claim 1, characterized in that, The upper valve body (410) is provided with a connecting groove (350) below the side connecting through hole (330). The upper surface of the partition structure (300) is provided with a first guide surface (340) to guide the upper valve body (410) to slide into the through hole (330). The first guide surface (340) is composed of the top surfaces of multiple support ribs (341) radially distributed around the through hole (330), and the top surfaces of the multiple support ribs (341) are inclined towards the through hole (330). The connecting groove (350) is formed between adjacent support ribs.
7. The atomizing structure for preventing tipping and leakage according to claim 1, characterized in that, The partition structure (300) is provided with a support member (600) for supporting the upper valve body (410). The support member (600) has a connecting hole (351) on its side, which is a connecting through hole (330).
8. The atomizing structure for preventing tipping and leakage according to claim 7, characterized in that, The support member (600) includes a cylindrical body (610) formed around the through hole (330) and a crown (620) supporting the upper valve body (410), and the crown (620) is provided with a first central hole (621). The connecting hole (351) is formed on the side of the cylinder (610) and extends to the bottom of the cylinder (610). The connector (430) passes through the first central hole (621) and connects to the valve body (410).
9. The atomizing structure for preventing tipping and leakage according to claim 1, characterized in that, A support plate (700) supporting the upper valve body (410) is provided above the partition structure (300). The support plate (700) is separated from the partition structure (300) and has a through hole (710) through the support plate (700).
10. The atomizing structure for preventing tipping and leakage according to claim 9, characterized in that, A second central hole (720) is provided on the support plate (700) at the position corresponding to the through hole (330). The connector (430) passes through the second central hole (720) and connects to the upper valve body (410). The upper surface is provided with a second guide surface (730) to guide the upper valve body (410) to slide toward the second central hole (720).
11. The anti-topple, spill-resistant, atomizing structure according to any one of claims 1 to 10, wherein, The connector (430) is a flexible connector.
12. The atomizing structure for preventing tipping and leakage according to any one of claims 1 to 6, characterized in that, It has a separate through-hole component (370). The through hole (330) is formed on the through hole component (370). The partition structure (300) is provided with mounting holes (380) for mounting through-hole components (370). The upper valve body (410) and the lower valve body (420) are respectively disposed on the upper and lower sides of the through hole component (370) and are connected into a whole by a connector (430) passing through the through hole (330).