一种烘干机构及清洗机

By improving the air duct design of the drying mechanism, adopting an angle greater than 30° and a tapering structure, the problems of airflow turbulence and increased energy consumption were solved, achieving more efficient airflow and energy savings.

CN224517316UActive Publication Date: 2026-07-17YONGKANG SUOREN ELECTRIC CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YONGKANG SUOREN ELECTRIC CO LTD
Filing Date
2025-07-18
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing drying unit has an S-shaped air duct design, which leads to turbulent airflow, increased resistance, increased energy consumption, and affects equipment stability.

Method used

The design employs a combination of a first air duct, a curved air duct, and a second air duct. The angle between the tangents at the two ends of the curved air duct is greater than or equal to 30°. Combined with a tapered structure and arc-shaped sidewalls, this reduces the airflow rotation angle and resistance.

Benefits of technology

It improves the flow efficiency of air in the duct, reduces energy loss, saves power consumption, and enhances equipment stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及家用电器领域,具体是一种烘干机构及清洗机,烘干机构包括第一烘干组件,第一烘干组件包括第一加热元件、第一风机和第一风道组件,第一风道组件包括依次连接的第一风道、弯曲风道和第二风道,第一风道一端与第一风机连接,第一加热元件设于第一风道内,第二风道一端与烘干腔连接,弯曲风道两端开口的切线方向所形成的夹角a大于或等于30°,通过将弯曲风道两端开口的切线方向所形成的夹角a设置为大于或等于30°,使得气流在第一风道组件中流动时发生的流动方向的改变角度小于或等于150°,更利于气流的平稳过渡,减少能量损失,有效提高了热空气在风道内的流动效率。
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Claims

1. A drying mechanism, characterized by, The drying mechanism includes a first drying component (1), which includes a first heating element, a first fan, and a first air duct component (11). The first air duct component (11) includes a first air duct (111), a curved air duct (112), and a second air duct (113) connected in sequence. One end of the first air duct (111) is connected to the first fan. The first heating element is located in the first air duct (111). One end of the second air duct (113) is connected to the drying chamber. The included angle α formed by the tangent directions of the openings at both ends of the curved air duct (112) is greater than or equal to 30°.

2. The drying mechanism according to claim 1, wherein The distance between the opposite side walls of the first air duct (111) gradually narrows from the end where the first air duct (111) is connected to the first fan to the other end.

3. The drying mechanism of claim 1, wherein, The distance between the opposite side walls of the second air duct (113) gradually narrows from one end where the second air duct (113) connects to the curved air duct (112) to the other end.

4. The drying mechanism of claim 1, wherein, The opposite side walls of the curved air duct (112) are arc-shaped.

5. The drying mechanism of claim 1, wherein, The first air duct (111) includes a first connecting part (1111) connected to the first fan, and a first transition part (1112) for connecting the first connecting part (1111) and the curved air duct (112). One side wall of the first transition part (1112) is inclined from the end where the first transition part (1112) is connected to the first connecting part (1111) to the end where it is connected to the curved air duct (112), so that the distance between the opposite side walls of the first transition part (1112) gradually narrows.

6. The drying mechanism of claim 1, wherein, The cross-sectional shape of the first air duct assembly (11) is one of square, rectangle, ellipse or circle.

7. The drying mechanism of claim 1, wherein, The drying mechanism further includes a second drying component (2), which includes a second heating element, a second fan, and a second air duct component (21). The second air duct component (21) includes a third air duct (211) connected to the second fan and a fourth air duct (212) connected to the third air duct (211). The second heating element is disposed in the third air duct (211).

8. The drying mechanism of claim 7, wherein, The fourth air duct (212) includes a second transition section (2121) connected to the third air duct (211) and a second connecting section (2122) connected to the second transition section (2121). The opposite sides of the second transition section (2121) gradually narrow from one end connected to the third air duct (211) to the other end.

9. A cleaning machine characterized by The drying mechanism and drying chamber (3) according to any one of claims 1-8 are included. The drying mechanism includes a first drying component (1) and a second drying component (2). The first drying component (1) and the second drying component (2) are respectively connected to the side of the drying chamber (3).

10. The cleaning machine of claim 9, wherein, The two second drying components (2) are respectively located on opposite sides of the drying chamber (3).