Detachable outdoor mosquito dispeller
By designing a detachable mosquito repellent, the power supply output port and the input port are connected by locking buckles and locking holes, the problem of inconvenient power supply of outdoor mosquito repellent is solved, and convenient power supply and high consistency are achieved, making it easy to carry and use.
Patent Information
- Application Number
- CN202510189517.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-07-04
AI Technical Summary
The existing mosquito repellent products lack a consistent charging device when used outdoors, which leads to inconvenience in carrying and using, and the external power bank is inconvenient to use and may shorten the product life.
A detachable outdoor mosquito repellent is designed to achieve a stable connection between the power supply output port and the power supply input port through the locking snap and locking opening connection between the mosquito repellent body and the power supply body. The power supply body is detachable for easy portability and use.
It realizes convenient power supply for mosquito repellent outdoors, without the need for external sockets, improves the consistency of power supply, is easy to carry and use, and extends the service life of the product.
Smart Images

Figure CN120240420A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of mosquito repellers, and particularly to a detachable outdoor mosquito repeller. Background Art
[0002] In order to repel mosquitoes, people generally use various mosquito repellent products such as mosquito repellent sprays, mosquito killing lamps, and mosquito repellers to achieve the purpose of mosquito repelling.
[0003] Existing mosquito repellers are usually for indoor use and are powered by plugging in, which results in most mosquito repellent products can only be used by connecting to the socket power supply indoors, and are not convenient to carry and use. Some existing mosquito repellent products are designed to be powered by an external power bank. However, when used in outdoor scenarios such as camping and concerts, an additional power bank needs to be carried, which is not convenient. At the same time, the consistency between the power bank and the mosquito repellent product is poor, making it inconvenient to use and may shorten the service life of the mosquito repellent product.
[0004] Therefore, existing mosquito repellent products have problems such as a lack of a charging device with strong consistency and inability to be conveniently carried and used. Summary of the Invention
[0005] In view of the above deficiencies of the prior art, the purpose of this application is to provide a detachable outdoor mosquito repeller, aiming to solve the problems of existing mosquito repellent products, such as a lack of a charging device with strong consistency and inability to be conveniently carried and used.
[0006] The technical solution adopted by this application to solve the technical problems is as follows: Provide a detachable outdoor mosquito repeller, including:
[0007] A mosquito repellent main body, including a mosquito repellent tail, on which a power supply input port and a locking buckle are provided;
[0008] A power supply body, including a power supply head, on which a locking opening and a power supply output port are provided; the locking buckle is detachably connected to the locking opening, and the power supply input port is matched with the power supply output port; when the locking buckle is inserted into the locking opening, the power supply output port is connected to the power supply input port, and the power supply body powers the mosquito repellent main body through the power supply output port.
[0009] Optionally, the mosquito repellent tail is provided with a shielding member and an abutting spring, the shielding member extends along the inner side of the mosquito repellent main body to form a fixing groove; the locking buckle includes a buckle main body, one end of the buckle main body is provided with an abutting protrusion corresponding to the abutting spring, and the other end of the buckle main body abuts against the inner wall of the mosquito repellent main body;
[0010] One end of the abutting spring is sleeved and fixed on the abutting protrusion, and the other end of the abutting spring abuts against the fixing groove.
[0011] Optionally, a pressing member is provided on the buckle body and extends in a direction away from the mosquito repellent body. Pressing the pressing member drives the abutting spring to compress along with the abutting protrusion.
[0012] Optionally, a buckle protrusion is provided on the buckle body, and an opening corresponding to the buckle protrusion is provided on the shielding member; the buckle protrusion extends out of the interior of the mosquito repellent body through the opening, and the buckle protrusion is used for snap-connection with the locking opening.
[0013] Optionally, the power supply head is provided with a fixing protrusion corresponding to the fixing groove, the power supply output port is arranged on the fixing protrusion, and the power supply input port is arranged on the fixing groove; when the locking buckle is inserted into the locking opening, the fixing protrusion is inserted into the fixing groove, and the power supply output port is inserted into the power supply input port.
[0014] Optionally, a slot and a window are provided on the mosquito repellent body. The slot is used for inserting a mosquito repellent sheet, the window is used for discharging mosquito repellent gas, and the slot communicates with the window.
[0015] Optionally, a heating plate and a control module are arranged inside the mosquito repellent body. The heating plate is electrically connected to the control module, and the heating plate is arranged below the window; the slot is located between the window and the heating plate.
[0016] Optionally, an ultrasonic module is arranged inside the mosquito repellent body. The ultrasonic module is electrically connected to the control module, and an ultrasonic opening corresponding to the ultrasonic module is provided on the side wall of the mosquito repellent body.
[0017] Optionally, a display screen is provided on the mosquito repellent body. The display screen is electrically connected to the control module and is located above the control module.
[0018] Optionally, a control button is further provided on the mosquito repellent body. The control button is electrically connected to the control module and is located on one side of the display screen; pressing the control button triggers the control module to adjust the opening and closing of the ultrasonic module.
[0019] Compared with the prior art, the present application provides a detachable outdoor mosquito repellent, including a mosquito repellent body and a power supply body. By connecting the locking buckle at the mosquito repellent tail and the locking opening at the power supply head, the power supply output port and the power supply input port are connected, and the mosquito repellent body is powered by the power supply body without connecting to an external socket; moreover, the power supply body and the mosquito repellent body have high consistency, and it is a detachable power supply device, which is convenient to carry and use. Description of the Drawings
[0020] Figure 1 It is a schematic diagram of the separation of the mosquito repellent main body and the power supply body of the detachable outdoor mosquito repellent provided in this application;
[0021] Figure 2 It is a schematic diagram of the combination of the detachable outdoor mosquito repellent provided in this application;
[0022] Figure 3 It is a side view of the detachable outdoor mosquito repellent provided in this application;
[0023] Figure 4 is Figure 3 the A-A cross-sectional view of
[0024] Figure 5 It is a schematic diagram of the locking buckle in the detachable outdoor mosquito repellent provided in this application;
[0025] Figure 6 It is a schematic diagram of the shielding member in the detachable outdoor mosquito repellent provided in this application;
[0026] Figure 7 It is a schematic diagram of the mosquito repellent main body removing the upper shell in the detachable outdoor mosquito repellent provided in this application.
[0027] Explanation of reference numerals:
[0028] 1. Mosquito repellent main body; 2. Power supply body; 11. Power supply part; 12. Slot; 13. Mosquito repellent part; 14. Ultrasonic module; 15. Display screen; 16. Mosquito repellent tail; 17. Clamping member; 18. Control module; 21. Power supply head; 111. Heating plate; 131. Window; 132. Partition board; 141. Ultrasonic opening; 151. Control button; 161. First locking buckle; 162. Second locking buckle; 163. Power supply input port; 165. Shielding member; 164. Abuttment spring; 181. Baffle; 182. Connecting spring; 211. Power supply output port; 212. Charging port; 213. First locking opening; 214. Second locking opening; 215. Fixed protrusion; 1611. Buckle main body; 1612. Buckle protrusion; 1613. Abutment protrusion; 1614. Pressing member; 1651. Fixed groove. Detailed Description of the Specific Embodiment
[0029] The following details the embodiments of this application. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are only used to explain this application and should not be construed as a limitation of this application.
[0030] In the description of the present application, it should be understood that the orientation or positional relationships indicated by the terms "center", "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationships shown in the drawings. These are only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, it should not be construed as a limitation to the present application. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, unless otherwise stated, the meaning of "a plurality" is two or more.
[0031] In the description of the present application, it should be noted that unless otherwise clearly specified and limited, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.
[0032] With reference to Figure 1 、 Figure 2 and Figure 3 In the first embodiment of the present application, a detachable outdoor mosquito repellent is provided, which includes a mosquito repellent main body 1 and a power supply body 2. The mosquito repellent main body 1 includes a mosquito repellent tail 16, and a power supply input port 163 and a locking buckle are provided on the mosquito repellent tail 16; the power supply body 2 includes a power supply head 21, and a locking opening and a power supply output port 211 are provided on the power supply head 21; the locking buckle is detachably connected to the locking opening, and the power supply input port 163 is matched with the power supply output port 211; when the locking buckle is inserted into the locking opening, the power supply output port 211 is connected to the power supply input port 163, and the power supply body 2 supplies power to the mosquito repellent main body 1 through the power supply output port 211.
[0033] Among them, the power supply input port 163 is correspondingly matched with the power supply output port 211. The locking buckle and the locking opening are detachably connected. When the locking buckle is inserted into the locking opening for connection, the power supply input port 163 and the power supply output port 211 can be stably connected. The power supply body 2 supplies power to the mosquito repellent main body 1 through the power supply output port 211 and the power supply input port 163, realizing the portable use of the mosquito repellent main body 1. One mosquito repellent main body 1 can be matched with several power supply bodies 2. When the power of the currently used power supply body 2 is exhausted, other power supply bodies 2 can be replaced to continue supplying power to the mosquito repellent main body 1. When not in use, the locking buckle can be separated from the locking opening, and the power supply input port 163 is also separated from the power supply output port 211 and placed separately for easy carrying.
[0034] A detachable outdoor mosquito repellent of this embodiment includes a mosquito repellent main body 1 and a power supply body 2. By connecting the locking buckle at the mosquito repellent tail 16 and the locking opening at the power supply head 21, the power supply output port 211 and the power supply input port 163 are connected, and the power supply body 2 supplies power to the mosquito repellent main body 1 without connecting to an external socket; and the consistency between the power supply main body and the mosquito repellent main body 1 is high, and it is a detachable power supply device, which is convenient for carrying and using.
[0035] With reference to Figure 5 and Figure 6 , in some embodiments, the mosquito repellent tail 16 is provided with a shielding member 165 and an abutting spring 164. The shielding member 165 extends along the inner side of the mosquito repellent main body 1 to form a fixing groove 1651; the locking buckle includes a buckle main body 1611. One end of the buckle main body 1611 is provided with an abutting protrusion 1613 corresponding to the abutting spring 164, and the other end of the buckle main body 1611 abuts against the inner wall of the mosquito repellent main body 1; one end of the abutting spring 164 is sleeved and fixed on the abutting protrusion 1613, and the other end of the abutting spring 164 abuts against the fixing groove 1651.
[0036] One end of the buckle main body 1611 abuts against and fits with the fixing groove 1651 through the abutting protrusion 1613 and the abutting spring 164, and the other end abuts against and fits with the inner wall of the mosquito repellent main body 1. Due to the elastic force of the abutting spring 164, the buckle main body 1611 fits tightly with both the fixing groove 1651 and the mosquito repellent main body 1, thereby limiting the position of the buckle main body 1611 in the mosquito repellent main body 1.
[0037] Furthermore, a pressing member 1614 is provided on the buckle main body 1611 and extends in a direction away from the mosquito repellent main body 1. Pressing the pressing member 1614 drives the abutting spring 164 to compress along with the abutting protrusion 1613. After the pressing force on the pressing member 1614 disappears, the compressed abutting spring 164 resets through the elastic restoring force, pushing the abutting protrusion 1613 away, so that the abutting protrusion 1613 and the buckle main body 1611 return to their original positions.
[0038] Further, a snap projection 1612 is provided on the snap main body 1611, and an opening corresponding to the snap projection 1612 is provided on the shielding member 165; the snap projection 1612 extends out of the interior of the mosquito repellent main body 1 through the opening, and the snap projection 1612 is used for snap-connecting with the locking opening. When the snap projection 1612 is snap-connected with the locking opening, the snap main body 1611 drives the shielding member 165 of the mosquito repellent tail 16 to be stably connected with the power supply head 21, realizing the stable connection between the mosquito repellent main body 1 and the power supply body 2.
[0039] In some embodiments, a fixing projection 215 corresponding to the fixing groove 1651 is provided on the power supply head 21, the power supply output port 211 is provided on the fixing projection 215, and the power supply input port 163 is provided on the fixing groove 1651; when the locking snap is inserted into the locking opening, the fixing projection 215 is inserted into the fixing groove 1651, and the power supply output port 211 is inserted into the power supply input port 163.
[0040] Through the arrangement of the fixing groove 1651 and the fixing projection 215, the positions of the power supply input port 163 and the power supply output port 211 are positioned, facilitating the matching connection between the two, and at the same time improving the connection stability when the two are connected.
[0041] Further, a charging port 212 is also provided at the fixing projection 215 of the power supply head 21. The charging port 212 is used for connecting an external power supply, that is, charging the power supply body 2 through the external power supply; when the power of the power supply body 2 is used up, it can be charged through the external power supply, so that the power supply body 2 can be used as a power supply device again to connect with the mosquito repellent main body 1 and supply power to the mosquito repellent main body 1. Specifically, a rechargeable battery is provided inside the power supply body 2, so as to be connected with the charging port 212 and the power supply output port 211 through the rechargeable battery.
[0042] Further, there are several locking snaps, preferably two, namely the first locking snap 161 and the second locking snap 162. The first locking snap 161 and the second locking snap 162 are respectively arranged at both ends of the mosquito repellent tail 16 and are in contact with both sides of the shielding member 165. Specifically, the first locking snap 161 is located on the left side of the mosquito repellent tail 16, and the second locking snap 162 is located on the right side of the mosquito repellent tail 16, and are respectively in contact with the fixing groove 1651 through the abutting springs 164 from the left and right sides.
[0043] The number of the abutting springs 164 corresponds to the number of the locking snaps, that is, abutting springs 164 are sleeved on the abutting projections 1613 of both the first locking snap 161 and the second locking snap 162, and the fixing groove 1651 is located at the central position of the shielding member 165.
[0044] In addition, the number of locking openings on the power supply body 2 also corresponds to the number of locking buckles. Increasing the number of locking buckles and locking openings can enhance the stability when the power supply body 2 is connected to the mosquito repellent main body 1 and prevent the power supply body 2 from falling off, resulting in abnormal operation of the mosquito repellent main body 1. Specifically, the power supply body 2 is provided with a first locking opening 213 corresponding to the first locking buckle 161 and a second locking opening 214 corresponding to the second locking buckle 162.
[0045] Combined reference Figure 4 , in some embodiments, the mosquito repellent main body 1 is provided with a slot 12 and a window 131. The slot 12 is used for inserting a mosquito repellent sheet, and the window 131 is used for emitting mosquito repellent gas. The slot 12 communicates with the window 131. The mosquito repellent sheet is inserted through the slot 12 for use, and the mosquito repellent gas flowing through the mosquito repellent sheet is emitted through the window 131 via the slot 12, thereby repelling mosquitoes.
[0046] Specifically, the mosquito repellent main body 1 is provided with a mosquito repellent part 13. The slot 12 is arranged on the side of the mosquito repellent part 13, and the window 131 is arranged on the surface of the mosquito repellent part 13. The window 131 communicates with the slot 12; gas can flow in through the slot 12 and then flow out through the window 131. There are several windows 131, which are inclined on the mosquito repellent part 13. Through the inclined arrangement, the area of the window 131 at the central position of the mosquito repellent part 13 is larger, and along the direction away from the central position, the area of the window 131 decreases, facilitating the passage of the mosquito repellent gas through the central position.
[0047] The resistance wire density at the central position of the heating plate 111 is higher, enabling a better heating effect. Therefore, the mosquito repellent gas passing through the central position and emitted through the window 131 comes into fuller contact with the mosquito repellent sheet, the concentration of the mosquito repellent gas is higher, and the mosquito repellent effect is better; at the same time, the amount of the mosquito repellent gas emitted from the edge of the mosquito repellent part 13 can be reduced, the temperature at the edge of the mosquito repellent part 13 can be lowered, and the user can be prevented from being scalded or burned by the edge of the mosquito repellent part 13.
[0048] In addition, a partition plate 132 with an included angle with the window 131 is further arranged on the mosquito repellent part 13. By partially separating the mosquito repellent gas through the partition plate 132 and then emitting it, the diffusion range of the mosquito repellent gas can be expanded, and overheating damage to the window 131 at the central position can be prevented. The included angle between the partition plate 132 and the window 131 is preferably 50 - 90 degrees. There can be several partition plates 132. The arrangement of the partition plates 132 can change the distribution of the windows 131, enabling the mosquito repellent gas in full contact with the mosquito repellent sheet to be evenly emitted, expanding the diffusion range of the mosquito repellent gas, and improving the mosquito repellent effect.
[0049] Further, a heating plate 111 and a control module 18 are disposed inside the mosquito repellent main body 1. The heating plate 111 is electrically connected to the control module 18, and the heating plate 111 is disposed below the opening window 131; the slotted groove 12 is located between the opening window 131 and the heating plate 111.
[0050] When the mosquito repellent sheet is inserted into the slotted groove 12, the mosquito repellent sheet is inserted between the opening window 131 and the heating plate 111 and heated by the heating plate 111; the slotted groove 12, the heating plate 111 and the opening window 131 are in communication with each other. Specifically, gas is introduced from the outside through the slotted groove 12, and through the heating process between the heating plate 111 and the mosquito repellent sheet, the smell of the mosquito repellent sheet is driven to form mosquito repellent gas, which is then vented out through the opening window 131 for mosquito repellent.
[0051] Further, a power supply unit 11 is disposed between the control module group and the heating plate 111. The power supply unit 11 is electrically connected to the control module group to supply power to the control module group. A connecting spring 182 is disposed between the power supply unit 11 and the heating plate 111. One end of the connecting spring 182 abuts against the heating plate 111, and the other end abuts against the power supply unit 11, thereby separating the two to prevent the heat generated by the heating plate 111 from damaging the power supply unit 11; and it can prevent the temperature change from affecting the operation of the control module group and prevent the control module group from being damaged.
[0052] Further, a partition board 181 is further disposed between the power supply unit 11 and the heating plate 111. The partition board 181 is provided with through holes through which the connecting spring 182 can pass, and the temperature of the heating plate 111 can be isolated to a certain extent through the partition board 181 to prevent the heating of the heating plate 111 from damaging the power supply unit 11. There are several connecting springs 182, specifically four, which are respectively disposed at the four corners of the heating plate 111, so as to completely support the heating plate 111 and prevent direct contact between the heating plate 111 and the power supply unit 11.
[0053] In some embodiments, an ultrasonic module 14 is disposed inside the mosquito repellent main body 1. The ultrasonic module 14 is electrically connected to the control module 18, and an ultrasonic opening 141 corresponding to the ultrasonic module 14 is disposed on the side wall of the mosquito repellent main body 1.
[0054] The emission port of the ultrasonic module 14 is aligned with the ultrasonic opening 141, and ultrasonic waves can be transmitted out through the ultrasonic opening 141 to achieve the effect of mosquito repellent; specifically, the emission port of the ultrasonic module 14 is exposed from the ultrasonic opening 141, and the emitted ultrasonic waves are transmitted out through the ultrasonic opening 141.
[0055] There may be several ultrasonic modules 14, preferably two, which are respectively arranged on both sides of the mosquito repellent main body 1 to achieve a larger ultrasonic propagation range. A barrier member may be arranged between the shielding member 165 and the ultrasonic module 14 to separate the ultrasonic module 14 from the shielding member 165, preventing the disassembly and connection processes of the mosquito repellent main body 1 and the power supply body 2 from affecting the ultrasonic module 14.
[0056] In some embodiments, a display screen 15 is arranged on the mosquito repellent main body 1. The display screen 15 is electrically connected to the control module 18 and is located above the control module 18. Specifically, the display screen 15 is arranged on the surface of the mosquito repellent main body 1 and can display the overall state of the mosquito repellent main body 1 through the display screen 15, such as power, the temperature of the heating plate 111, the ultrasonic working power, etc.
[0057] Combined with reference Figure 7 , specifically, the housing of the mosquito repellent main body 1 separates the mosquito repellent part 13 from the ultrasonic module 14 and the display screen 15, preventing the temperature rise during the heating process of the heating plate 111 from affecting the operation of the ultrasonic module 14 and the display screen 15. The housing of the mosquito repellent main body 1 can be made of insulating and heat-insulating materials to prevent the heat of the heating plate 111 from being conducted to the housing, so that the mosquito repellent main body 1 gets hot and reduces the user's experience.
[0058] Furthermore, a control button 151 is also arranged on the mosquito repellent main body 1. The control button 151 is electrically connected to the control module 18 and is located on one side of the display screen 15; pressing the control button 151 triggers the control module 18 to adjust the opening and closing of the ultrasonic module 14. In addition, a power supply part 11 is arranged in the mosquito repellent main body 1, and the power supply part 11 is connected to the control module 18; pressing the control button 151 triggers the control module 18 to adjust the opening and closing of the power supply part 11.
[0059] The control button 151 is electrically connected to the control module 18. By pressing the control button 151, the control module 18 can be triggered to make adjustments. Specifically, the control module 18 can be used to adjust whether the heating plate 111 heats, the temperature of the heating plate 111, whether the ultrasonic module 14 is turned on, the ultrasonic working power, etc.
[0060] There may be several control buttons 151. Different parameters of the control module 18 can be adjusted through different control buttons 151. Specifically, there may be two control buttons 151, which are respectively arranged on both sides of the display screen and can be used to adjust different parameters of the control module 18. For example, long-pressing the left control button 151 to turn on the heating plate 111 for heating, and long-pressing the right control button 151 to turn off the heating function of the heating plate 111; pressing the left control button 151 twice in a row to turn on the ultrasonic module 14, and pressing the right control button 151 twice in a row to turn off the ultrasonic module 14, and so on.
[0061] The power supply unit 11 can be an internal battery for supplying power to the control module 18. Specifically, the opening and closing of the power supply unit 11 can be controlled by pressing the control button 151.
[0062] The housing of the mosquito repellent main body 1 may include an upper housing and a lower housing. The mosquito repellent part 13, the display screen 15, and the control button 151 are all located at the upper housing. The upper housing and the lower housing are connected by covering, and can be connected by screws, bolts, etc. The hollow cavity formed after covering is used to place the control module 18, the ultrasonic module 14, etc.
[0063] A clamping member 17 can be provided at one end of the mosquito repellent main body 1 that is away from the mosquito repellent part 13. The mosquito repellent main body 1 can be clamped and fixed through the clamping member 17, which is convenient for the user to carry and use; specifically, the clamping member 17 is located on the surface of the lower housing.
[0064] In summary, the present application provides a detachable outdoor mosquito repellent, including a mosquito repellent main body and a power supply body. The power supply output port and the power supply input port are connected through the connection of the locking buckle at the mosquito repellent tail and the locking opening at the power supply head, and the power supply body supplies power to the mosquito repellent main body without connecting to an external socket; moreover, the power supply main body and the mosquito repellent main body have a high degree of consistency and are a detachable power supply device, which is convenient for carrying and using.
[0065] Finally, it should be noted that the above examples are only used to illustrate the technical solutions of the present application and are not intended to limit them; although the present application has been described in detail with reference to the foregoing examples, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing examples, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the examples of the present application.
Claims
1. A detachable outdoor mosquito repellent, characterized in that, Comprising: A mosquito repellent main body, including a mosquito repellent tail, on which a power supply input port and a locking buckle are provided; A power supply body, including a power supply head, on which a locking opening and a power supply output port are provided; The locking buckle is detachably connected to the locking opening, and the power supply input port matches the power supply output port; when the locking buckle is inserted into the locking opening, the power supply output port is connected to the power supply input port, and the power supply body powers the mosquito repellent main body through the power supply output port.
2. The detachable outdoor mosquito repellent device according to claim 1, wherein, The mosquito repellent tail is provided with a shielding member and an abutting spring, and the shielding member extends along the inner side of the mosquito repellent main body to form a fixing groove; the locking buckle includes a buckle main body, and an abutting protrusion corresponding to the abutting spring is provided at one end of the buckle main body, and the other end of the buckle main body abuts against the inner wall of the mosquito repellent main body; One end of the abutting spring is sleeved and fixed on the abutting protrusion, and the other end of the abutting spring abuts against the fixing groove.
3. The detachable outdoor mosquito repellent according to claim 2, characterized in that, A pressing member is provided on the buckle main body and extends in a direction away from the mosquito repellent main body. Pressing the pressing member drives the abutting spring to compress along with the abutting protrusion.
4. The detachable outdoor mosquito repellent device according to claim 2, wherein A buckle protrusion is provided on the buckle main body, and an opening corresponding to the buckle protrusion is provided on the shielding member; the buckle protrusion extends out of the interior of the mosquito repellent main body through the opening, and the buckle protrusion is used for snap-connecting with the locking opening.
5. The detachable outdoor mosquito repellent device according to claim 2, wherein, The power supply head is provided with a fixing protrusion corresponding to the fixing groove, the power supply output port is arranged on the fixing protrusion, and the power supply input port is arranged on the fixing groove; when the locking buckle is inserted into the locking opening, the fixing protrusion is inserted into the fixing groove, and the power supply output port is inserted into the power supply input port.
6. The detachable outdoor mosquito repellent according to claim 1, characterized in that, The mosquito repellent main body is provided with a slot and a window. The slot is used for inserting a mosquito repellent sheet, the window is used for discharging mosquito repellent gas, and the slot communicates with the window.
7. The detachable outdoor mosquito repellent device according to claim 6, wherein A heating plate and a control module are arranged in the mosquito repellent main body. The heating plate is electrically connected to the control module, and the heating plate is arranged below the window; the slot is located between the window and the heating plate.
8. The detachable outdoor mosquito repellent device according to claim 7, characterized in that, An ultrasonic module is arranged in the mosquito repellent main body. The ultrasonic module is electrically connected to the control module, and an ultrasonic opening corresponding to the ultrasonic module is provided on the side wall of the mosquito repellent main body.
9. The detachable outdoor mosquito repellent device according to claim 8, wherein, A display screen is arranged on the mosquito repellent main body. The display screen is electrically connected to the control module and is located above the control module.
10. The detachable outdoor mosquito repellent according to claim 9, characterized in that, A control button is further arranged on the mosquito repellent main body. The control button is electrically connected to the control module and is located on one side of the display screen; pressing the control button triggers the control module to adjust the opening and closing of the ultrasonic module.