一种气悬浮鼓风机

By introducing a heat shield and axial fan into the blower, the problem of blower damage under high temperature conditions is solved, achieving efficient, low-power, stable operation and long service life.

CN224515435UActive Publication Date: 2026-07-17JINGXIAO SUSPENSION SUZHOU TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JINGXIAO SUSPENSION SUZHOU TECH CO LTD
Filing Date
2025-09-11
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing air-suspended centrifugal blowers are prone to damage when operating in high-temperature environments, and it is difficult to maintain stable operation with high efficiency and low power consumption.

Method used

The design employs a heat insulation plate and an axial fan, utilizing the meshing toothed structure of the heat insulation plate and the impeller, combined with a vacuum chamber and airflow channel, to achieve multiple layers of heat insulation and cooling, preventing heat conduction and leakage of high-temperature gases, and ensuring the circulation of cool air inside the motor.

Benefits of technology

To ensure stable operation of the blower in high-temperature environments, maintain efficient gas delivery, reduce motor temperature, extend equipment life, and reduce heat leakage.

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Abstract

本实用新型公开一种气悬浮鼓风机,包括电机、装配于电机一端的叶轮、装配于叶轮同轴后侧的隔热盘和轴流风扇、以及装配于叶轮外部的蜗壳,所述隔热盘和轴流风扇之间设有篦齿。本实用新型叶轮将高温气体输送到出气口,隔热盘将大部分热量阻隔在电机之外,防止高温气体的热传导影响,隔热盘和轴流风扇之间的篦齿还可以起到密封作用,进一步防止高温气体从叶轮的背后泄露到电机的腔体中;电机内部的冷气会在第一气流通道和第二气流通道内流通,不仅可以给定子和转子降温,还能进一步达到增加冷气压力、减少叶轮泄露热气的作用,本实用新型通过多重隔热和降温,可以保证鼓风机在高温下稳定运行。
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Claims

1. An air-suspended blower, characterized by It includes a motor, an impeller mounted on one end of the motor, a heat shield and an axial fan mounted on the rear side of the impeller coaxially, and a volute mounted on the outside of the impeller, wherein the heat shield and the axial fan are provided with grating teeth.

2. The air levitation blower of claim 1, wherein The impeller has back teeth on its back, and the heat insulation plate has grooves that mesh with the back teeth.

3. The air levitation blower of claim 2, wherein, The heat insulation plate is formed by sealing two layers of heat insulation boards, with a vacuum cavity between the two layers of heat insulation boards.

4. The air levitation blower of claim 1, wherein, The axial fan has blades on its outer periphery.

5. The air levitation blower of claim 4, wherein, The single-sided clearance between the heat insulation plate and the axial fan is 0.1 to 0.2 mm.

6. The air floating blower according to any one of claims 1 to 5, characterized by The motor includes a motor housing, a stator and a rotor assembled inside the motor housing.

7. The air levitation blower of claim 6, wherein, A first airflow channel is provided between the motor housing and the stator.

8. The air levitation blower of claim 7, wherein, A second airflow channel is provided between the stator and the rotor.