雾化组件及雾化装置

By designing a liquid suction element and a strip groove structure in the atomizing component, the problem of liquid leakage in the atomizing device has been solved, improving reliability and market competitiveness, and meeting the needs of various flavors.

CN224504704UActive Publication Date: 2026-07-17HG INNOVATION LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HG INNOVATION LTD
Filing Date
2025-07-21
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Atomizing devices are prone to leakage when using high-viscosity media, which affects the user experience and limits flavor choices, making it difficult to meet the needs of a variety of tastes.

Method used

A liquid suction component is designed into the atomizing assembly. The liquid suction component is set in the receiving groove, and a strip groove is set on the inner wall of the receiving groove to evenly absorb the liquid and absorb the liquid dripping from the atomizing module to prevent leakage.

Benefits of technology

By balancing liquid intake, the reliability of the atomizing components is improved, leakage is reduced, and the market competitiveness of the atomizing device is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请涉及雾化装置技术领域,涉及一种雾化组件及雾化装置。雾化组件包括壳体,壳体的一端设置有吸嘴,壳体的另一端设有开口;雾化座,雾化座设置于壳体的开口内,并与壳体的开口围合形成储液腔;雾化模组,雾化模组设置于储液腔内,雾化模组内设置有雾化通道,雾化模组的一端与吸嘴连通,雾化通道的另一端与雾化座连通;底座,底座连接于壳体的开口处,底座内设置有容纳槽;吸液件,吸液件设置于容纳槽内,吸液件至少吸收雾化模组滴漏的液体,容纳槽朝向吸液件的内壁设置有至少一个条形的凹槽,至少一个凹槽在垂直于雾化通道延伸方向的平面内延伸。
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Claims

1. An atomizing assembly, characterized in that, include: A housing, one end of which is provided with a suction nozzle, and the other end of which is provided with an opening; An atomizing seat is disposed within the opening of the housing and forms a liquid storage cavity with the opening of the housing; An atomizing module is disposed in the liquid storage chamber. The atomizing module has an atomizing channel, one end of which is connected to the nozzle and the other end of which is connected to the atomizing base. A base is connected to the opening of the housing and abuts against the atomizing seat; the base has a receiving groove inside. A liquid-absorbing element is disposed in the receiving groove. The liquid-absorbing element absorbs at least the liquid dripped from the atomizing module. The receiving groove has at least one strip-shaped groove on its inner wall facing the liquid-absorbing element. At least one of the grooves extends in a plane perpendicular to the extension direction of the atomizing channel.

2. The atomization assembly of claim 1, wherein, The groove includes a first groove, which is disposed in the plane of the bottom wall of the receiving groove.

3. The atomization assembly of claim 2, wherein, The first groove includes at least one sub-groove, and a first direction and a second direction intersecting the first direction are defined in the plane where the bottom wall is located; At least one of the sub-grooves extends along the first direction and is located directly opposite the atomizing channel along the second direction; At least one of the sub-grooves extends along the second direction.

4. The atomization assembly of claim 3, wherein, The first groove includes a first sub-groove and a second sub-groove, the first sub-groove extends along the first direction, the second sub-groove extends along the second direction, and the first sub-groove and the second sub-groove are in communication.

5. The atomizing component according to claim 2, characterized in that, The groove further includes a second groove, which is disposed on the side wall of the receiving groove and communicates with the first groove; Along the extending direction of the atomizing channel, the second groove penetrates the sidewall of the receiving groove.

6. The atomization assembly of claim 1, wherein, The bottom wall of the receiving groove has a first protrusion, and a first vent hole is provided on the first protrusion, the first vent hole penetrating the first protrusion; Along the extending direction of the atomizing channel, the first protrusion is higher than the liquid-absorbing element, and the groove avoids the first protrusion.

7. The atomization assembly of claim 6, wherein, The first protrusion includes at least two, and the at least two first protrusions are spaced apart, and each first protrusion is provided with a first vent hole; The absorbent element is absorbent cotton, and the fiber extension direction of the absorbent cotton is the same as the extension direction of the first vent hole.

8. The atomization assembly of claim 6, wherein, The bottom wall of the receiving groove has a second protrusion, which is spaced apart from the first protrusion. The second protrusion has a mounting hole that penetrates the second protrusion, and the groove avoids the second protrusion. The atomizing component also includes an electrode, which is disposed on the side of the base away from the mouthpiece. The electrode is inserted into the mounting hole and is electrically connected to the atomizing module.

9. The atomizing component according to claim 1, characterized in that, The liquid suction element comprises multiple components, which are stacked sequentially within the receiving groove along the extension direction of the atomizing channel.

10. An atomising device characterised in that, The device includes an atomizing component, a power supply component, and a control component as described in any one of claims 1-9, wherein the atomizing component and the control component are electrically connected to the power supply component.