Air blower
By incorporating bidirectional air inlets on both sides of the blower body and a base design, the problem of limited portability due to the heat dissipation system is solved, achieving efficient heat dissipation and convenience, extending the service life of the blower, and expanding application scenarios through a power socket.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG ZHAOJIA ELECTRICAL TECHNOLOGY CO LTD
- Filing Date
- 2025-06-24
- Publication Date
- 2026-05-08
AI Technical Summary
The structural defects in the heat dissipation system of existing blowers limit the portability of the equipment. Although installing an additional fan improves heat dissipation, it increases the size and weight. Existing technologies make it difficult to maintain convenience while improving heat dissipation.
The blower body is equipped with a first air inlet and a second air inlet on both sides to form a two-way air intake channel. It uses atmospheric pressure to draw in external air for heat dissipation. The design of the base and handle enhances structural stability and portability, and the combination with the power socket improves functional integration.
It achieves efficient heat dissipation, extends the service life of the blower, enhances portability, expands application scenarios through power sockets, and improves functional integration.
Smart Images

Figure CN224214409U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of blowers, and more particularly to a blower. Background Technology
[0002] Blowers, as a common air delivery device, are widely used in industrial production, household ventilation and other fields. With the development of technology, the performance requirements of blowers are getting higher and higher, especially in terms of portability, heat dissipation effect and functional integration. At present, blowers on the market still have certain technical problems: the structural defects of the heat dissipation system of existing blowers limit the convenience of the equipment. Existing blowers improve the heat dissipation effect by installing additional fans. Although the heat dissipation function is improved to a certain extent, this method increases the size and weight of the equipment, which is not conducive to portability.
[0003] Therefore, developing a blower that improves heat dissipation while also being convenient has become an urgent technical problem to be solved. Utility Model Content
[0004] To address the heat dissipation and convenience issues of existing blowers, this application provides a blower.
[0005] A blower includes a blower body, the blower body comprising:
[0006] Air inlet: The air inlet includes a first air inlet and a second air inlet, which are respectively located on both sides of the blower body;
[0007] Power source: The power source is located between the first air inlet and the second air inlet. The power source includes a driving component and a wind turbine body. The driving component drives the wind turbine body to rotate.
[0008] Power supply assembly: The power supply assembly is electrically connected to the drive component;
[0009] Air outlet: An air outlet grille is provided on the air outlet, which is used to guide the internal airflow out.
[0010] With the above solution, since the blower body is provided with a first air inlet and a second air inlet on both sides, forming a bidirectional air intake channel, when the blower body starts, under the action of atmospheric pressure, the outside air is drawn into the blower body through the air inlets on both sides, so that the heat generated by the impeller body during operation can be discharged more quickly through air convection, thereby achieving cooling and heat dissipation of the internal structure of the blower. This effectively solves the technical problem that the blower is prone to overheating of the internal structure due to poor heat dissipation during long-term operation, and effectively extends the service life of the blower.
[0011] Furthermore, a blower base is also provided on the outside of the blower body. The blower base includes a first blower side plate and a second blower side plate provided on both sides of the blower body. The first blower side plate is provided with a first mounting hole corresponding to the first air inlet, and the second blower side plate is provided with a second mounting hole corresponding to the second air inlet. A first air inlet grille is provided on the first mounting hole, and a second air inlet grille is provided on the second mounting hole.
[0012] Through the above scheme, the setting of the blower base plays a supporting role for the blower, effectively enhancing the placement stability of the overall structure of the blower. Furthermore, the first mounting hole corresponds to the position of the first air inlet, and the second mounting hole corresponds to the position of the second air inlet. Therefore, the first air inlet grille on the first mounting hole and the second air inlet grille on the second mounting hole can draw external air into the blower body, thereby achieving heat dissipation.
[0013] Furthermore, a control panel is also provided on the first fan side plate, and the control panel is also provided with at least one power socket. The control panel is installed on the first fan side plate through the first mounting hole, and the control panel is provided with the first air inlet grille.
[0014] With the above solution, a power socket is installed on the control panel of the first blower side plate, which can further provide emergency power support to other equipment, enabling the blower to work in conjunction with other equipment, expanding application scenarios, and effectively improving functional integration.
[0015] Furthermore, the two ends of the blower body are rotatably connected to the first blower side plate and the second blower side plate, respectively.
[0016] Through the above solution, the blower body can rotate according to the actual situation to adjust the angle of the air outlet, accurately guide the airflow to the target area, and improve the overall operating efficiency of the blower.
[0017] Furthermore, the top of the blower base is provided with a handle, and the two ends of the handle are respectively connected to the top of the first blower side plate and the second blower side plate.
[0018] With the above solution, users can easily move the blower using the handle, further reducing the difficulty of moving it and making it very convenient.
[0019] Furthermore, the handle includes a first rotating plate, a second rotating plate, and a connecting rod. The two ends of the connecting rod are fixedly connected to the first rotating plate and the second rotating plate, respectively. The first rotating plate is rotatably connected to the first fan side plate, and the second rotating plate is rotatably connected to the second fan side plate.
[0020] With the above solution, the handle can be rotated via the first and second rotating plates. In the actual operation, when the blower body adjusts the angle, the handle may block the air outlet. The operator only needs to rotate the handle to adapt to the position of the air outlet, which is very convenient.
[0021] Furthermore, a first connecting plate and a second connecting plate are provided at the bottom of the first fan side plate and the second fan side plate, and the first connecting plate and the second connecting plate are fixedly connected to form the support base plate of the blower body.
[0022] Through the above scheme, the first connecting plate and the second connecting plate are connected to form the supporting base plate of the blower body, which further enhances the support stability of the base for the blower body.
[0023] Furthermore, the control panel is equipped with control keys, which are used to control the on / off state and wind speed of the blower body.
[0024] With the above solution, operators can control the blower's on / off state and wind speed using control keys, thereby selecting the wind speed level according to the usage scenario and actual needs, and improving work efficiency.
[0025] In summary, this application includes at least the following beneficial technical effects:
[0026] 1. The blower forms a bidirectional air intake channel through the arrangement of the first and second air intake grilles on opposite sides of the blower body. When the blower body starts, under the action of atmospheric pressure, the outside air is drawn into the blower body through the air intake grilles on both sides. This allows the heat generated by the impeller body during operation to be discharged more quickly through air convection, thereby achieving cooling and heat dissipation of the internal structure of the blower. This effectively solves the technical problem that the internal structure of the blower is prone to overheating due to poor heat dissipation during long-term operation, and effectively extends the service life of the blower.
[0027] 2. By providing power outlets, the blower can further provide emergency power support to other devices, enabling these devices to work in conjunction with the blower, expanding application scenarios and effectively improving functional integration. Attached Figure Description
[0028] Figure 1 This is a first structural schematic diagram of a blower provided in an embodiment of the present utility model.
[0029] Figure 2 This is a schematic diagram of the second structure of a blower provided in an embodiment of the present utility model.
[0030] Figure 3 This is a first structural schematic diagram of the blower body of a blower provided in an embodiment of the present utility model;
[0031] Figure 4 This is a second structural schematic diagram of the blower body of a blower provided in an embodiment of the present utility model;
[0032] Figure 5 This is a schematic diagram of the installation of a drive motor for a blower provided in an embodiment of this utility model;
[0033] Figure 6 This is a partial structural schematic diagram of a blower provided in an embodiment of the present utility model;
[0034] Explanation of reference numerals in the attached figures:
[0035] 1. Blower body; 2. Blower base; 3. First air inlet grille; 4. Second air inlet grille; 5. Control panel; 1. First air inlet; 12. Second air inlet; 13. Drive motor; 14. Impeller body; 15. Air outlet; 21. First blower side plate; 22. Second blower side plate; 23. Handle; 24. Support base plate; 51. Power socket; 52. Control key; 115. Air outlet grille; 211. First mounting hole; 221. Second mounting hole; 231. First rotating plate; 232. Second rotating plate; 233. Connecting rod; 241. First connecting plate; 242. Second connecting plate. Detailed Implementation
[0036] The following is in conjunction with the appendix Figure 1-6 Further explanation of this application is provided.
[0037] This embodiment discloses a blower, see reference. Figure 1-2 It includes a blower body 1 and a blower base 2, with the blower body 1 mounted on the blower base 2.
[0038] Further, see Figure 3-4 The blower body 1 includes a first air inlet 11, a second air inlet 12, and an air outlet 15. An air outlet grille 151 is installed on the air outlet 15. The first air inlet 11 and the second air inlet 12 are located on both sides of the blower body 1. A power supply component and a power source are installed inside the blower body 1. The power source is electrically connected to the power supply component and is located between the first air inlet 11 and the second air inlet 12.
[0039] Further, see Figure 5-6 The power source includes a drive component and a wind turbine body 14. In this embodiment, the drive component is a drive motor 13. The drive motor 13 is installed on one side inside the blower base 2. One end of the drive motor 13 is electrically connected to the power supply component, and the other end is rotatably connected to the wind turbine body 14. After the drive motor is powered on, it drives the wind turbine body 13 to rotate.
[0040] Further, see Figure 1-2The blower base 2 includes a first blower side plate 21 and a second blower side plate 22 disposed on symmetrical sides of the blower body 1. The first blower side plate 21 is provided with a first mounting hole 211, and the second blower side plate 22 is provided with a second mounting hole 221. The position of the first air inlet 11 corresponds to the position of the first mounting hole 211 on the first blower side plate 21, and the position of the second air inlet 12 corresponds to the position of the second mounting hole 221 on the second blower side plate 22. A control panel 5 is installed on the first mounting hole 211, and a first air inlet grille 3 is provided on the control panel 5. A second air inlet grille 4 is installed on the second mounting hole 221.
[0041] When the blower body 1 is started, under the action of atmospheric pressure, external air passes through the first air inlet grille 3 and the second air inlet grille 4 on both sides and then through the first air inlet 11 and the second air inlet 12 on both sides of the blower body 1, thereby drawing the blower body 1 into the interior. This achieves cooling and heat dissipation of the internal structure of the blower body 1, effectively solving the technical problem that the blower is prone to overheating of the internal structure due to poor heat dissipation during long-term operation, and effectively extending the service life of the blower.
[0042] Furthermore, the control panel 5 is also equipped with a control key 52 and at least one power socket 51. The control key 52 is used to control the on / off state and wind speed of the blower body 1. Operators can select the wind speed level according to the usage scenario and actual needs to improve work efficiency. In this embodiment, there are two power sockets for providing emergency power support to other equipment.
[0043] Optionally, the first air inlet 11 and the second air inlet 12 on both sides of the blower body 1 can be equipped with filters to further block dust in the air from entering the blower body 1, thereby improving the heat dissipation effect inside the blower body and extending the service life of the blower body.
[0044] Furthermore, the blower body 1 is rotatably connected to the blower base 2. Specifically, both ends of the blower body 1 are rotatably connected to the first blower side plate 21 and the second blower side plate 22, respectively. Optionally, the method of rotatable connection is not limited. For example, the first blower side plate 21 and the second blower side plate 22 are provided with semi-circular guide rails, and multiple retractable buckles are provided on the semi-circular guide rails. Slider blocks are provided on both sides of the blower body 1, and buckle slots are provided on the sliders. The blower body 1 rotates in the semi-circular guide rails through the sliders and locks the buckle slots through the retractable buckles, thereby realizing the rotation of the blower body 1. This allows the operator to rotate the blower body 1 according to the actual situation to adjust the angle of the air outlet 15, accurately guide the airflow to the target area, and improve the overall operating efficiency of the blower.
[0045] Furthermore, a handle 23 is provided on the top of the blower base 2, with both ends of the handle 23 connected to the tops of the first blower side plate 21 and the second blower side plate 22, respectively. Specifically, the handle 23 includes a first rotating plate 231, a second rotating plate 232, and a connecting rod 233. The first rotating plate 231 and the second rotating plate 232 are rotatably mounted at the extensions of the first blower side plate 21 and the second blower side plate 22, respectively. Both ends of the connecting rod 233 are fixedly connected to the first rotating plate 231 and the second rotating plate 232, respectively. The user can rotate the handle 23 by rotating the first rotating plate 24 and the second rotating plate 34. In actual operation, when the blower body 1 is adjusted, the handle may obstruct the air outlet 15. In this case, the operator only needs to rotate the handle to adapt to the position of the air outlet 15, which is very convenient.
[0046] Furthermore, the support base plate 24 at the bottom of the blower base 2 includes a first connecting plate 241 and a second connecting plate 242 that are installed and connected. The first connecting plate 24 and the second connecting plate 25 are respectively disposed at the bottom of the first blower side plate 21 and the second blower side plate 22, which further enhances the stability of the overall structure of the blower.
[0047] The above are preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made to the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A blower, characterized in that: Includes a blower body, the blower body comprising: Air inlet: The air inlet includes a first air inlet and a second air inlet, which are respectively located on both sides of the blower body; Power source: The power source is located between the first air inlet and the second air inlet. The power source includes a driving component and a wind turbine body. The driving component drives the wind turbine body to rotate. Power supply assembly: The power supply assembly is electrically connected to the drive component; Air outlet: An air outlet grille is provided on the air outlet, which is used to guide the internal airflow out.
2. A blower according to claim 1, characterized in that: The blower body is also provided with a blower base. The blower base includes a first blower side plate and a second blower side plate provided on both sides of the blower body. The first blower side plate is provided with a first mounting hole corresponding to the first air inlet. The second blower side plate is provided with a second mounting hole corresponding to the second air inlet. A first air inlet grille is installed on the first mounting hole and a second air inlet grille is installed on the second mounting hole.
3. A blower according to claim 2, characterized in that: The first fan side plate is also provided with a control panel, and the control panel is also provided with at least one power socket. The control panel is installed on the first fan side plate through the first mounting hole, and the control panel is provided with the first air inlet grille.
4. A blower according to claim 2, characterized in that: The two ends of the blower body are respectively rotatably connected to the first blower side plate and the second blower side plate.
5. A blower according to claim 3, characterized in that: The top of the blower base is also provided with a handle, and the two ends of the handle are respectively connected to the top of the first blower side plate and the second blower side plate.
6. A blower according to claim 5, characterized in that: The handle includes a first rotating plate, a second rotating plate, and a connecting rod. The two ends of the connecting rod are fixedly connected to the first rotating plate and the second rotating plate, respectively. The first rotating plate is rotatably connected to the first fan side plate, and the second rotating plate is rotatably connected to the second fan side plate.
7. A blower according to claim 2, characterized in that: The first fan side plate and the second fan side plate are provided with a first connecting plate and a second connecting plate at their bottoms. The first connecting plate and the second connecting plate are fixedly connected to form the support base plate of the blower body.
8. A blower according to claim 3, characterized in that: The control panel is equipped with control keys, which are used to control the on / off state and wind speed of the blower body.