Desktop spraying fan convenient to store
By designing a support and clearance section in the desktop misting fan, the fan body can be supported on or stored in a container, solving the problems of large space occupation and inconvenient liquid replenishment for desktop fans, and achieving the effect of easy storage and quick liquid replenishment.
Patent Information
- Application Number
- CN202422842885.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-10-14
- Filing Date
- 2024-11-21
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-21
AI Technical Summary
The existing desktop fan's water storage container is placed inside the base, which increases the fan's size, takes up space, and is inconvenient for storage and refilling, thus affecting space utilization.
Design a desktop misting fan that is easy to store. By setting a support and a clearance part on the container, the fan body can be supported on the container or stored in the container. The misting component is connected to the storage space. The overall structure is simple and easy to assemble and store.
This design allows the fan to take up minimal space when not in use, facilitating quick storage and refilling of liquids, thus improving the user experience and space utilization.
Smart Images

Figure CN223563068U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fan technology, and in particular to a desktop mist fan that is easy to store. Background Technology
[0002] An electric fan, also known as a fan or air ventilator, is a household appliance that uses an electric motor to drive fan blades to rotate, thereby accelerating air circulation. It is primarily used for cooling and air circulation. Common types of fans include handheld fans, desktop fans, ceiling fans, tower fans, and industrial fans, among others.
[0003] To improve cooling, existing handheld fans typically feature a misting function. A water reservoir is usually housed within the handle to supply the water needed for the misting process, and the handle is threaded into the main body to ensure the stability of the water reservoir. However, desktop fans, designed specifically for desktop or close-range use, are usually placed on desks, study tables, or bedside tables. Due to the limitations of their usage scenarios, they require minimal space. If the water reservoir were placed in the base of a desktop fan, similar to handheld fans, it would increase the fan's size, taking up more space. Furthermore, the water reservoir would make storage inconvenient when not in use, still occupying considerable space and impacting space utilization. Additionally, placing the water reservoir inside the base would make it difficult for users to refill it promptly.
[0004] Therefore, existing technologies still need to be improved and enhanced. Utility Model Content
[0005] In view of the shortcomings of the prior art, the purpose of this utility model is to provide a desktop mist fan that occupies less space and is easy to store.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A desktop misting fan that is easy to store includes:
[0008] The fan body contains a spray assembly.
[0009] A container for holding liquids or for housing the fan body;
[0010] The container is provided with a support for supporting the fan body on the container; when the fan body is supported on the container, a receiving space is defined inside the container for holding liquid, and the spray assembly is connected to the receiving space through a connecting structure to receive the liquid in the receiving space and form a spray.
[0011] The fan body is provided with a clearance part, which cooperates with the support part so that the fan body can be housed in the container.
[0012] The support portion is located inside the opening of the container, and when the fan body is supported on the container, the fan body is at least partially embedded in the opening of the container.
[0013] The support portion is part of the side wall of the container, which protrudes into the interior of the container to form the support portion.
[0014] The fan body is provided with an abutment portion, which cooperates with the support portion to support the fan body on the container; the support portion is narrow at the top and wide at the bottom.
[0015] The support includes two first support portions located on one side wall of the container and one second support portion located on the other side wall of the container. The first support portions and the second support portion are located on two opposite side walls of the container, and the two first support portions and the second support portion are staggered.
[0016] The container is provided with a guide portion, and the fan body is provided with a guide notch that matches the guide portion.
[0017] The spray assembly includes an atomizing chamber for containing liquid and an atomizing element disposed on the atomizing chamber. The atomizing chamber is provided with an inlet and an outlet, and the flow rate of the inlet is greater than the flow rate of the outlet.
[0018] A first guide is provided inside the atomizing chamber. The first guide is located near the liquid outlet and defines a guide channel inside the atomizing chamber. The guide channel guides the liquid in the atomizing chamber to flow to the liquid outlet after the liquid in the atomizing chamber reaches a certain level.
[0019] The opening of the guide channel gradually decreases in size and then increases again.
[0020] A second guide is provided inside the atomizing chamber. The second guide is located near the liquid inlet to guide the liquid to flow to the lower part of the atomizing chamber when the liquid enters the atomizing chamber through the liquid inlet.
[0021] Compared to existing technologies, this utility model provides a desktop misting fan that is easy to store, comprising:
[0022] The fan body contains a spray assembly.
[0023] A container for holding liquids or for housing the fan body;
[0024] The container is provided with a support for supporting the fan body on the container; when the fan body is supported on the container, a receiving space is defined inside the container for holding liquid, and the spray assembly is connected to the receiving space through a connecting structure to receive the liquid in the receiving space and form a spray.
[0025] The fan body is provided with a clearance part, which cooperates with the support part so that the fan body can be housed in the container.
[0026] This application allows the fan body to be supported on a container or stored in a container by adjusting the cooperation between the support part and the avoidance part; the overall structure is simple, which is conducive to the user's quick assembly of the mist fan and the user's easy storage of the mist fan after use, avoiding the problem of desktop mist fans still occupying a lot of space when not in use. Attached Figure Description
[0027] Figure 1 This is a schematic diagram showing the fan body stored inside a container in the desktop mist fan that is easy to store according to this utility model.
[0028] Figure 2 This is a schematic diagram showing the fan body supported on a container in the desktop mist fan that is easy to store according to this utility model.
[0029] Figure 3 This is a schematic diagram of the desktop mist fan provided by this utility model, showing the fan body and container separated at an angle.
[0030] Figure 4 This is a schematic diagram of another angle showing the fan body and container separated in the desktop mist fan that is easy to store according to this utility model.
[0031] Figure 5 A cross-sectional view of the fan body in the desktop mist fan that is easy to store, provided by this utility model.
[0032] Figure 6 for Figure 5 Enlarged view of section A.
[0033] Figure 7 An exploded view of the fan body in the desktop mist fan that is easy to store, provided by this utility model.
[0034] Figure 8 A schematic diagram of the atomizing chamber in a desktop spray fan that is easy to store, provided by this utility model.
[0035] Figure 9 A schematic diagram of the rear shell of the atomizing chamber in a desktop spray fan that is easy to store, provided by this utility model.
[0036] Figure 10 This is a schematic diagram showing the base and container separated in the desktop mist fan that is easy to store according to this utility model.
[0037] Figure 11 An exploded view of the base of the desktop mist fan that is easy to store, provided by this utility model. Detailed Implementation
[0038] To make the objectives, technical solutions, and effects of this utility model clearer and more explicit, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0039] It should be noted that when a component is referred to as being "mounted on," "fixed to," or "set on" another component, it can be directly on the other component or may have an intervening component present. When a component is referred to as being "connected to" another component, it can be directly connected to the other component or may have an intervening component present.
[0040] It should also be noted that the directional terms such as left, right, up, and down in the embodiments of this utility model are only relative concepts or are based on the normal use state of the product, and should not be considered as restrictive.
[0041] An electric fan, also known as a fan or air ventilator, is a household appliance that uses an electric motor to drive fan blades to rotate, thereby accelerating air circulation. It is primarily used for cooling and air circulation. Common types of fans include handheld fans, desktop fans, ceiling fans, tower fans, and industrial fans, among others.
[0042] To improve cooling, existing handheld fans typically feature a misting function. A water reservoir is usually housed within the handle to supply the water needed for the misting process, and the handle is threaded into the main body to ensure the stability of the water reservoir. However, desktop fans, designed specifically for desktop or close-range use, are usually placed on desks, study tables, or bedside tables. Due to the limited usage scenarios, they require minimal space. If the water reservoir were placed in the base of the desktop fan, similar to handheld fans, it would increase the fan's size, taking up more space. Furthermore, the water reservoir would make storage inconvenient when not in use, still occupying considerable space and hindering space utilization. Additionally, placing the water reservoir inside the base would make it difficult for users to observe the liquid level and replenish the reservoir as needed.
[0043] In view of the shortcomings of the aforementioned desktop fans, this utility model provides a desktop misting fan that is easy to store. Please refer to [link / reference]. Figures 1-11 ,include:
[0044] Fan body 1, wherein a spray assembly is provided inside the fan body 1;
[0045] Container 5, which is used to hold liquid or to house the fan body 1;
[0046] The container 5 is provided with a support for supporting the fan body 1 on the container 5. When the fan body 1 is supported on the container 5, a receiving space is defined in the container 5 for holding liquid. The spray assembly is connected to the receiving space through a connecting structure to receive the liquid in the receiving space and form a spray.
[0047] The fan body 1 is provided with a clearance part, which cooperates with the support part so that the fan body 1 can be housed in the container 5.
[0048] This application, by adjusting the cooperation between the support part and the clearance part, allows the fan body 1 to be supported on the container 5 or stored in the container 5. The overall structure is simple, facilitating quick assembly of the misting fan and easy storage after use, avoiding the problem of desktop misting fans occupying a large amount of space when not in use. Furthermore, when the liquid in the container is insufficient, the user can quickly remove the fan body 1 from the container 5, simplifying operation and facilitating rapid liquid replenishment, thus improving the user experience.
[0049] Furthermore, the support portion is located inside the opening of the container 5, and when the fan body 1 is supported on the container 5, the fan body 1 is at least partially embedded inside the opening of the container 5.
[0050] In this application, the upper surface of the support is lower than the upper surface of the container 5, and the support is located inside the opening of the container 5. Specifically, since the upper surface of the support is lower than the upper surface of the container 5, when the fan body 1 is installed on the container 5, the base 14 of the fan body 1 is at least partially embedded in the opening of the container 5. This design can increase the contact area between the base 14 of the fan body 1 and the side wall of the container 5. When the fan body 1 is subjected to vibration, it can keep the fan body 1 as balanced as possible and improve the stability of the fan body 1 during operation. At the same time, the side wall of the container 5 can restrict the fan body 1 in the horizontal direction, which is conducive to the horizontal placement of the fan body 1 on the container 5.
[0051] Furthermore, the support portion serves as part of the sidewall of the container 5, with the sidewall of the container 5 protruding inwards to form the support portion. In this application, the sidewall of the container 5 protrudes inwards to form the support portion, making the support portion an integral part of the sidewall of the container 5. This improves the overall strength and stability of the support structure, ensuring the fan body is stably supported on the container 5. Simultaneously, it eliminates the need for additional support structures on the container 5, reducing manufacturing and installation costs, improving the utilization of space within the container 5, and contributing to maintaining the integrity and aesthetics of the container 5.
[0052] Furthermore, the fan body 1 is provided with an abutment portion, which cooperates with the support portion to support the fan body 1 on the container 5.
[0053] In this application, the abutment part is located on the periphery of the base 14 of the fan body 1. The abutment part cooperates with the support part of the container to support the fan body 1 on the container 5. In addition, when the fan body 1 is supported on the container 5, the abutment part will be embedded into the opening of the container 5 and contact the side wall of the container 5 to enhance the stability of the fan body 1 during operation. In this application, when the fan body 1 is supported on the container 5 (i.e., when the abutment part is located on the support part), the clearance part has no cooperation with the support part; when the support part and the clearance part are fitted together along the side wall of the container 5, the fan body 1 is stored inside the container 5. At this time, the support part and the abutment part have no cooperation, and the support part is located inside the clearance part. To achieve the aforementioned effect, in this application, the clearance part is also located around the base 14 of the fan body 1, and the abutment part and the clearance part that cooperate with the support part are approximately mirror images of each other on both sides of the base 14 of the fan body 1. Users can place the fan body 1 on the container 5 or store the fan body 1 inside the container 5 by flipping the fan body 1 or the container 5. Through the support assembly and fitting assembly, users can support the fan body 1 on the container 5 or store the fan body 1 inside the container 5, which is convenient and simple to operate and improves the user experience.
[0054] Furthermore, the support portion is narrower at the top and wider at the bottom. In this application, the support portion is arranged longitudinally along the side wall of the container 5, and the width of the support portion from the upper opening of the container 5 to the bottom of the container 5 is narrower at the top and wider at the bottom. The size of the clearance portion is adapted to the size of the support portion, that is, the width of the clearance portion (i.e., the size of the notch) is not less than the maximum width of the support portion, thereby ensuring that the fan body 1 can be smoothly stored in the container 5. In addition, the support portion being narrower at the top and wider at the bottom facilitates the alignment of the upper part of the support portion with the clearance portion, playing a guiding role, so that the user can quickly store the fan body 1 in the container 5. On the other hand, the lower part of the support portion has a larger contact area with the clearance portion, making the fan body 1 more stable when placed in the container 5, and preventing the container 5 from bumping into the fan body 1 when subjected to external forces.
[0055] Furthermore, the support portion includes two first support portions 511 located on one side wall of the container 5 and a second support portion 512 located on the other side wall of the container 5. The first support portions 511 and the second support portion 512 are located on two opposite side walls of the container 5, and the two first support portions 511 and the second support portion 512 are staggered.
[0056] In this application, two first support parts 511 and one second support part 512 are staggered and arranged on two opposite side walls of the container 5 to form a triangular layout. That is, the first support parts 511 and the second support parts 512 cooperate with the corresponding abutment parts from both sides to support the fan body 1 on the container 5, which is beneficial to placing the fan body 1 horizontally on the container 5 and improving the stability of the fan body 1. On the base 14 of the fan body 1, there are first abutting parts 121 and first clearance parts 111 corresponding to the number of first support parts 511, and second abutting parts 122 and second clearance parts 112 corresponding to the number of second support parts 512. The first abutting parts 121 and second clearance parts 112 are located on the same side of the base 14 of the fan body 1, and the second abutting parts 122 and first clearance parts 111 are located on the same side of the base 14 of the fan body 1. That is, the first abutting parts 121 and first clearance parts 111 are located on opposite sides of the base 14 of the fan body 1, and the second abutting parts 122 and second clearance parts 112 are located on opposite sides of the fan body 1. The above structural design allows the user to change the cooperation relationship between the fan body 1 and the container 5 by adjusting the relative relationship between the orientation of the fan body 1 and the orientation of the container 5. The base 14 of the fan body 1 is also provided with a third abutment 123. When the fan body 1 is supported on the container 5, the third abutment 123 is used to increase the contact area between the fan body 1 and the inner wall of the container 5, so as to improve the stability of the fan body 1 placed on the container 5, and at the same time, it is also helpful to ensure the levelness of the fan body 1 stored in the container 5.
[0057] Furthermore, the container 5 is provided with a guide portion 52, and the fan body 1 is provided with a guide notch 13 adapted to the guide portion 52. In this application, the guide portion 52 is also part of the side wall of the container 5. The inner wall of the container 5 protrudes towards the interior of the container 5 to form the guide portion 52. The upper end surface of the guide portion 52 is lower than the upper end surface of the container 5. The cooperation between the guide portion 52 and the guide notch 13 plays a guiding role in the process of storing the fan body 1 in the container 5 and in the process of taking the fan body 1 out of the container 5, thereby improving the smoothness of storing and assembling the fan body 1. At the same time, the cooperation between the guide portion 52 and the guide notch 13 further increases the contact area between the base 14 and the inner wall of the container 5, and plays a restraining role on the fan body 1 in the horizontal direction. This helps to reduce the collision between the two when the fan body 1 is taken out of the container 5, and the collision between the fan body 1 and the inner wall of the container 5 after shaking when the container 5 is subjected to external force. It should be noted that, in this embodiment of the application, when the fan body 1 is supported on the container 5, the third abutment part 123 is located on the guide part 52, which is beneficial to improving the stability of the fan body 1.
[0058] Furthermore, the spray assembly includes an atomizing chamber 21 for containing liquid and an atomizing element (not shown in the figure) disposed on the atomizing chamber 21. The atomizing chamber 21 is provided with an inlet 211 and an outlet 212, and the flow rate of the inlet 211 is greater than the flow rate of the outlet 212.
[0059] In this application, the inlet 211 and outlet 212 are positioned opposite each other at both ends of the atomizing chamber 21, and are both connected to the accommodating space via a connecting structure. The atomizing element 21 is located at the end of the atomizing chamber 21. Liquid continuously enters the atomizing chamber 21 from the accommodating space through the inlet 211. After contact with the liquid in the atomizing chamber 21, the atomizing element 21 atomizes and sprays the liquid. When the liquid in the atomizing chamber 21 reaches a certain level, the liquid flows back to the accommodating space from the outlet 212. In this application, the opening of the inlet 211 is larger than the opening of the outlet 212, so that the liquid flow rate of the inlet 211 is greater than the liquid flow rate of the outlet 212, thereby ensuring sufficient liquid in the atomizing chamber 21, increasing the pressure in the atomizing chamber 21, which is beneficial to improving the working efficiency of the atomizing element 21, and ensuring that the liquid can be continuously atomized and sprayed out through the atomizing element 21. The atomizing element 21 in this application is an atomizing plate. The structure and principle of the atomizing plate 21 are prior art and will not be described in detail here.
[0060] Furthermore, a first guide member 31 is provided in the atomizing chamber 21. The first guide member 31 is located near the liquid outlet 212 and defines a guide channel 32 in the atomizing chamber 21. The guide channel 32 guides the liquid in the atomizing chamber 21 to flow to the liquid outlet 212 after the liquid in the atomizing chamber 21 reaches a certain level.
[0061] In this application, the atomizing chamber 21 has four mounting ports 20 at its end for mounting four atomizing elements 21, which are arranged in a square pattern. To ensure that the two upper atomizing elements 21 can continuously atomize and spray liquid, the inlet of the guide channel 32 is higher than the mounting position of the atomizing elements 21, and the inlet of the guide channel 32 is located near the upper part of the internal space of the atomizing chamber 21. The inlet of the guide channel 32 is higher than the height of the liquid inlet 211, and the outlet of the guide channel 32 is near the liquid outlet 212. The outlet of the guide channel 32 is connected to the liquid outlet 212. After the liquid enters the atomizing chamber 21, the liquid level in the atomizing chamber 21 rises continuously from bottom to top. After a period of time, the liquid level reaches the inlet of the guide channel 32 and flows back to the receiving space through the liquid outlet 212 under the guidance of the guide channel 32. Since the flow rate of the inlet 211 is greater than the flow rate of the outlet 212, the liquid in the atomizing chamber 21 is always saturated. At this time, all four atomizing elements 21 can continuously atomize and spray liquid. The first guide element 31 cooperates with the atomizing chamber 21 to define the guide channel 32. The inlet of the guide channel 32 is set at the upper part of the internal space of the atomizing chamber 21 so that the liquid can only flow back to the receiving space through the liquid outlet 212 after rising to a certain level in the atomizing chamber 21, thereby ensuring the stable operation of the four atomizing elements 21. In this application, after the liquid in the atomizing chamber 21 reaches a certain liquid level, it flows back to the receiving space from the liquid outlet 212 through the guide channel 32. The specific liquid level can be adapted to the inlet position of the guide channel 32. At the same time, the correspondence between the flow rate of the liquid inlet 211, the flow rate of the liquid outlet 212, and the amount of liquid consumed by the atomizing element during operation can be selected or designed according to the actual situation. Regardless of the setting, it is necessary to ensure that the four atomizing elements 21 can work normally.
[0062] Furthermore, the opening of the guide channel 32 gradually decreases in size and then increases again. When the liquid level in the atomizing chamber 21 reaches the inlet height of the guide channel 32, it flows into the guide channel 32, and the outlet of the guide channel 32 is connected to the liquid outlet 212. The larger inlet of the guide channel 32 helps reduce the resistance when the liquid enters the guide channel 32, allowing the liquid to enter the guide channel 32 more smoothly. In the intermediate stage, the opening of the guide channel 32 decreases, which is beneficial to improving the atomization efficiency and the utilization rate of the liquid in the atomizing chamber 21. Subsequently, the opening of the guide channel 32 increases near the liquid outlet 212, which is beneficial to the smoother entry of the liquid into the liquid outlet 212.
[0063] Furthermore, a second guide member 33 is provided inside the atomizing chamber 21. The second guide member 33 is positioned near the liquid inlet 211 to guide the liquid to flow to the lower part of the atomizing chamber 21 when the liquid enters the atomizing chamber 21 through the liquid inlet 211. The second guide member 33 is bent at 90°, and the horizontal part of the second guide member 33 is parallel to the direction in which the liquid enters the atomizing chamber 21. The vertical part of the second guide member 33 and the horizontal part are rounded to allow the liquid to enter the atomizing chamber 21 more smoothly. After the liquid enters the atomizing chamber 21, the vertical part of the second guide member 33 guides the liquid to flow along the horizontal part of the second guide member 33 to the lower part of the atomizing chamber 21, thereby avoiding the horizontal impact of the liquid entering the atomizing chamber 21 and affecting the normal operation of the atomizing element, ensuring that the atomizing element 21 can stably atomize and spray liquid.
[0064] Furthermore, the fan body 1 includes a base 14 supported on the container 5, a support frame 15 connected to the base 14, and an air outlet body 16 connected to the support frame 15. The spray assembly also includes a pump body 22 disposed in the base 14. The lower end of the base 14 is provided with a suction nozzle 23 connected to the pump body 22. The communication structure includes a pipe for connecting the receiving space and the suction nozzle 23, a pipe for connecting the suction nozzle 23 and the pump body 22, a pipe for connecting the pump body 22 and the liquid inlet 211, and a pipe for connecting the liquid outlet 212 and the receiving space. In this application, after the liquid level in the atomizing chamber 21 reaches the inlet height of the guide channel 32, it will flow out through the liquid outlet 212 and return to the receiving space under the guidance of the guide channel 32, thereby forming a circulating flow of liquid between the receiving space and the atomizing chamber, which can improve the utilization rate of liquid. At the same time, the above method can ensure that the liquid in the atomizing chamber 21 is always saturated (that is, the liquid in the atomizing chamber 21 can ensure the normal operation of the four atomizing elements). In this application, instead of using a single pipe to directly connect the pump body 22 to the liquid in the container space for liquid suction, the pump body 22 is connected to the upper end of the suction nozzle 23, and the lower end of the suction nozzle 23 is connected to the container space for liquid suction. The suction nozzle 23 is designed so that when the fan body 1 is stored in the container 5, the pipe connected to the suction nozzle 23 can be detached from the suction nozzle 23. After storing the fan body 1 in the container 5, the pipe connected to the lower end of the suction nozzle 23 can also be stored in the container 5. This makes disassembly and assembly convenient and helps the fan body 1 to be placed horizontally and stably in the container 5. In this application, the atomizing chamber 21 includes a front cover 213 and a rear shell 214. The front shell 203 and the rear cover 204 are arranged opposite each other to form a space for containing liquid. The front cover 213 and the rear shell 214 are fixed to the air outlet body 16 by screws, and both are located in front of the fan blades of the air outlet body 16. When the fan blades rotate to generate airflow, the atomizing element atomizes and sprays the liquid in the atomizing chamber 21. The airflow can carry the atomized liquid to the user to produce a cooling effect. A sealing element 215 is provided between the front cover 213 and the rear shell 214 to improve the sealing between the two and prevent liquid from leaking from the contact surface of the front cover 213 and the rear shell 214 and affecting the normal operation of the fan.
[0065] In this application, the two sides of the air outlet body 16 are rotatably connected to the support frame 15. By rotating the air outlet body 16, the air outlet direction of the air outlet body 16 and the spray direction of the atomized liquid after atomization by the atomizing element can be adjusted. A spray nozzle 17 is provided at the center of the air outlet surface of the air outlet body 16. The position of the spray nozzle 17 corresponds to the position of the atomizing element on the atomization chamber 21. The liquid in the atomization chamber 21 is sprayed out from the spray nozzle 17 through the atomizing element. The airflow generated by the fan body 1 synchronously carries the atomized liquid towards the user, thereby improving the cooling effect. The air outlet body 16 is provided with a pipe installation part for guiding the pipe installation path. 161. The pipe connecting the pump body 22 and the inlet 211 extends from the support frame 15 and is connected to the inlet 211 of the atomizing chamber 21 under the guidance of the pipe mounting part 161. The pipe connecting the outlet 212 and the receiving space enters the support frame 15 under the guidance of the pipe mounting part 161 until it extends into the receiving space to complete the liquid return. The setting of the pipe mounting part 161 can ensure the stability of the connection between the pipe and the inlet 211 and the pipe and the outlet 212, and ensure that the liquid can normally enter the atomizing chamber 21 and return from the atomizing chamber 21 to the receiving space, thereby improving the utilization rate of the liquid.
[0066] Furthermore, the base 14 is approximately trapezoidal. The base 14 is designed as an approximately trapezoidal shape, and because of its large base area and gradual narrowing upwards, it effectively prevents the fan body 1 from tipping over or wobbling, ensuring the stability of the fan body 1 during support or storage.
[0067] Furthermore, the container 5 is provided with an observation section 53 to facilitate observation of the liquid volume within the container 5. The observation section 53 is located near the lower middle part of the container 5 and may be made of a transparent material. Users can view the liquid volume within the container 5 through the observation section 53 to ensure timely replenishment of the liquid, guaranteeing continuous operation of the spray fan and improving the user experience. The container 5 is also provided with a carrying handle 54, allowing users to easily carry the desktop spray fan to the desired location when the fan body 1 is stored inside the container 5.
[0068] In summary, the present invention provides a desktop misting fan that is easy to store, comprising:
[0069] The fan body contains a spray assembly.
[0070] A container for holding liquids or for housing the fan body;
[0071] The container is provided with a support for supporting the fan body on the container; when the fan body is supported on the container, a receiving space is defined inside the container for holding liquid, and the spray assembly is connected to the receiving space through a connecting structure to receive the liquid in the receiving space and form a spray.
[0072] The fan body is provided with a clearance part, which cooperates with the support part so that the fan body can be housed in the container.
[0073] This application allows the fan body to be supported on a container or stored in a container by adjusting the cooperation between the support part and the avoidance part; the overall structure is simple, which is conducive to the user's quick assembly of the mist fan and the user's easy storage of the mist fan after use, avoiding the problem of desktop mist fans still occupying a lot of space when not in use.
[0074] It is understood that those skilled in the art can make equivalent substitutions or changes based on the technical solution and inventive concept of this utility model, and all such substitutions or changes should fall within the protection scope of the appended claims of this utility model.
Claims
1. A desktop misting fan that is easy to store, characterized in that, include: The fan body contains a spray assembly. A container for holding liquids or for housing the fan body; The container is provided with a support for supporting the fan body on the container; when the fan body is supported on the container, a receiving space is defined inside the container for holding liquid, and the spray assembly is connected to the receiving space through a connecting structure to receive the liquid in the receiving space and form a spray. The fan body is provided with a clearance part, which cooperates with the support part so that the fan body can be housed in the container.
2. The desktop misting fan that is easy to store according to claim 1, characterized in that, The support portion is located inside the opening of the container, and when the fan body is supported on the container, the fan body is at least partially embedded in the opening of the container.
3. The desktop misting fan that is easy to store according to claim 1, characterized in that, The support portion is part of the side wall of the container, which protrudes into the interior of the container to form the support portion.
4. The easily foldable desktop misting fan according to claim 2 or 3, characterized in that, The fan body is provided with an abutment portion, which cooperates with the support portion to support the fan body on the container; the support portion is narrow at the top and wide at the bottom.
5. The desktop misting fan that is easy to store according to claim 4, characterized in that, The support includes two first support portions located on one side wall of the container and one second support portion located on the other side wall of the container. The first support portions and the second support portion are located on two opposite side walls of the container, and the two first support portions and the second support portion are staggered.
6. The easily foldable desktop misting fan according to claim 1, characterized in that, The container is provided with a guide portion, and the fan body is provided with a guide notch that matches the guide portion.
7. The easily foldable desktop misting fan according to claim 1, characterized in that, The spray assembly includes an atomizing chamber for containing liquid and an atomizing element disposed on the atomizing chamber. The atomizing chamber is provided with an inlet and an outlet, and the flow rate of the inlet is greater than the flow rate of the outlet.
8. The easily foldable desktop misting fan according to claim 7, characterized in that, A first guide is provided inside the atomizing chamber. The first guide is located near the liquid outlet and defines a guide channel inside the atomizing chamber. The guide channel guides the liquid in the atomizing chamber to flow to the liquid outlet after the liquid in the atomizing chamber reaches a certain level.
9. The easily foldable desktop misting fan according to claim 8, characterized in that, The opening of the guide channel gradually decreases in size and then increases again.
10. The easily foldable desktop misting fan according to claim 7, characterized in that, A second guide is provided inside the atomizing chamber. The second guide is located near the liquid inlet to guide the liquid to flow to the lower part of the atomizing chamber when the liquid enters the atomizing chamber through the liquid inlet.