Mosquito swatter head assembly and pop-up detachable mosquito swatter

By designing a detachable and ejectable mosquito swatter head assembly and handle assembly, and placing the energy storage device inside the swatter head, the problem of limited mosquito killing distance of existing electric mosquito swatters is solved, and flexible power supply and long-distance mosquito killing effects are achieved.

CN115735878BActive Publication Date: 2025-09-12FOSHAN YISIHANG ELECTRICAL TECH CO LTD
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Patent Information

Application Number
CN202211465147.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-22
Publication Date
2025-09-12
Estimated Expiration
2042-11-22

AI Technical Summary

Technical Problem

The existing electric mosquito swatter has a fixed head and handle, which limits the mosquito killing distance. In addition, the battery component of the detachable mosquito swatter is only used for the flashlight and cannot achieve flexible power supply.

Method used

A pop-up detachable mosquito swatter is designed. The swatter head assembly and the handle assembly are detachable and can be ejected and separated. The energy storage device is located in the swatter head, and a high voltage power supply can be maintained through the energy storage device when the swatter is disconnected.

Benefits of technology

The mosquito swatter head can maintain a high voltage after separation, and can be ejected to reach positions that traditional handheld mosquito swatters cannot reach, making it more flexible to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a mosquito swatter head assembly and a pop-up detachable mosquito swatter, comprising a swatter head, the swatter head comprising a mounting base, a positive electrode net and a negative electrode net, a bracket, an energy storage device and a conductive substrate provided on the bracket, a first mounting end and a second mounting end, and the mounting base being installed at the first mounting end; the energy storage device having a first electrical connection end and a second electrical connection end, the first electrical connection end being used to electrically connect to the negative electrode net; the second electrical connection end being electrically connected to the conductive substrate; the conductive substrate having a third electrical connection end being used to electrically connect to the positive electrode net, and the conductive substrate having a fourth electrical connection end being used to electrically connect to a power supply assembly. The pop-up detachable mosquito swatter comprises a handle assembly, the handle assembly being provided with a conductive tube, one end of the conductive tube being used to electrically connect to a power source, and the other end of the conductive tube forming a fifth electrical connection end; and the swatter head assembly. The swatter head assembly and the handle assembly of the present invention can be used in combination or separately.
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Description

Technical Field

[0001] The present invention relates to the technical field of household appliances, and in particular to a mosquito swatter head assembly and a pop-up detachable mosquito swatter. Background Art

[0002] At present, electric mosquito swatters use internal amplification circuits and capacitor energy storage to continuously maintain 1500-3000 volts of high-voltage direct current between the metal mesh of the swatter head, which can easily kill flying mosquitoes or other small flying insects with electricity. They are popular among people for their practicality, convenience, good effect and pollution-free nature.

[0003] However, among all the electric mosquito swatters currently on the market, the structure between the swatter head and the handle is fixed. Even though a few mosquito swatters have rotating heads and the length of the swatter head and handle can be extended or retracted, these products always keep the swatter head and handle as an inseparable whole, and the internal wires are always connected to the mosquito net. Therefore, the current electric mosquito swatters greatly limit the distance of mosquito killing.

[0004] There are separate mosquito swatters on the market. The mosquito swatters are divided into a battery assembly and a mosquito swatter. The two parts are detachable, not ejectable. After separation, the battery assembly in the handle is only used for a flashlight (lighting), and the entire control circuit is on the mosquito swatter. Summary of the Invention

[0005] In order to overcome the shortcomings of the existing technology, one of the purposes of the present invention is to provide a mosquito swatter head assembly, which can be used separately from the handle assembly of the mosquito swatter. The swatter head assembly can be ejected from the handle assembly and can reach heights or positions that traditional handheld mosquito swatters cannot reach. The energy storage device is located in the swatter head and can maintain a higher voltage for a certain period of time.

[0006] The second purpose of the present invention is to provide a pop-up detachable mosquito swatter, which can be used in combination with the swatter head assembly and the handle assembly, or can be ejected and used separately, and the energy storage device is located in the swatter head and can maintain a higher voltage for a certain period of time.

[0007] One of the purposes of the present invention is achieved by the following technical solution:

[0008] The mosquito swatter head assembly includes:

[0009] A racket head, the racket head comprising a mounting seat, a positive electrode net, and a negative electrode net, the positive electrode net and the negative electrode net being both mounted on the mounting seat and spaced apart;

[0010] A bracket, wherein an energy storage device and a conductive substrate are provided on the bracket, the bracket is provided with a first mounting end and a second mounting end, the mounting base is installed at the first mounting end; the energy storage device has a first electrical connection end and a second electrical connection end, the first electrical connection end is used to electrically connect to the negative electrode network after the mounting base is installed at the first mounting end; the second electrical connection end is electrically connected to the conductive substrate; the conductive substrate has a third electrical connection end for electrically connecting to the positive electrode network, and the conductive substrate has a fourth electrical connection end for electrically connecting to the power supply component.

[0011] Furthermore, a first electrical connection piece is provided on the mounting seat, and a second electrical connection piece is provided on the first mounting end, and the second electrical connection piece is electrically connected to the first electrical connection end; the first electrical connection piece is used to electrically connect to the second electrical connection piece after the mounting seat is installed on the first mounting end.

[0012] Furthermore, a first elastic conductive member is provided at one end of the conductive substrate, and a second elastic conductive member is provided at the other end of the conductive substrate. The first elastic conductive member extends from the first mounting end and forms the third electrical connection end, and the second elastic conductive member extends from the second mounting end and forms the fourth electrical connection end.

[0013] Furthermore, the first elastic conductive member is a first conductive spring.

[0014] Furthermore, the second mounting end is provided with a third electrical connecting piece, and the second elastic conductive member is a second conductive spring. The second conductive spring extends from the second mounting end under the action of its own elastic stress and is electrically connected to the third electrical connecting piece. The third electrical connecting piece is used to connect to the power supply component.

[0015] Furthermore, the bracket includes a first support and a second support, the first support is detachably sealed on the second support, the end of the first support away from the second support is formed as a first mounting end, the first mounting end is provided with a mounting boss, the middle part of the mounting boss is provided with a first through-connection channel, and the mounting boss is formed as the first mounting end; the conductive substrate is installed in the first through-connection channel so that the first elastic conductive part extends from the first through-connection channel; the second support is provided with a mounting groove at the end close to the first support, and the electric energy storage device is installed in the mounting groove.

[0016] Furthermore, a clamping groove is provided on the side wall of the mounting boss; and a clamping piece is provided on the conductive substrate, and the clamping piece is clamped into the clamping groove.

[0017] Furthermore, the end of the second support away from the first support is formed as the second mounting end, the second mounting end is provided with a sleeve, a second connection channel is provided in the sleeve, and the second elastic conductive member extends from the second connection channel.

[0018] Furthermore, the mounting seat includes a collar and a pressure cover, the positive electrode net and the negative electrode net are connected to the collar, and the pressure cover is sealed on the end of the collar; an insulating spacer is provided between the positive electrode net and the negative electrode net.

[0019] The second object of the present invention is achieved by adopting the following technical solutions:

[0020] Pop-up detachable mosquito swatter, including,

[0021] a handle assembly, wherein the handle assembly is provided with a conductive tube, one end of the conductive tube is used to be electrically connected to a power source, and the other end of the conductive tube forms a fifth electrical connection end;

[0022] The racket head assembly, the second mounting end of the bracket is used to be detachably mounted on the handle assembly, so that the fourth electrical connection end is electrically connected to the conductive tube.

[0023] Furthermore, the handle assembly includes a handle housing, a connecting assembly and a first elastic component.

[0024] A power source is provided in the handle housing, one end of the conductive tube extends into the handle housing and is electrically connected to the power source, and the other end of the conductive tube extends from the handle housing and forms the fifth electrical connection end;

[0025] A connecting assembly, the connecting assembly comprising a first connecting member and a second connecting member, the first connecting member being mounted on the handle housing, the second connecting member being mounted on the second mounting end, the first connecting member being configured to be detachably connected to the second connecting member;

[0026] The first elastic component is provided on the handle housing, and is used to be compressed after the second mounting end is installed on the handle assembly; the first elastic component is used to provide a first elastic stress that drives the second mounting end away from the handle housing after the first connecting member is disengaged from the second connecting member.

[0027] Furthermore, one end of the first connecting member is formed as a pressing end, and the other end of the first connecting member is provided with a clamping portion for clamping and cooperating with the second connecting member; the first connecting member is rotatably mounted on the handle shell; a second elastic component is provided on the handle shell, and the second elastic component is connected between the handle shell and the second connecting member; the second elastic component is used to provide a second elastic stress that drives the clamping portion to rotate toward the second connecting member so as to clamp to the second connecting member when the second mounting end is installed on the handle shell; the pressing end is used to drive the clamping portion to rotate away from the second connecting member when under pressure.

[0028] Compared with the prior art, the present invention has the following beneficial effects:

[0029] When the bracket is connected to the handle for use, the energy storage device can store electricity. When the bracket of the swatter head assembly is detached from the handle of the mosquito swatter, due to the electricity stored in the energy storage device, the fourth electrical connection end of the conductive substrate is disconnected from the conductive tube used as the power supply component. The positive electrode network and the negative electrode network can also be normally powered by the energy storage device and used when disconnected. The lines, circuit boards, power supplies, etc. used to power the energy storage device are all located on the handle. After separation, only the energy storage device is separated. The energy storage device is located in the swatter head and can maintain a higher voltage for a certain period of time. The mosquito swatter head can be ejected to reach a position that cannot be reached by hand, and the mosquito swatter is more flexible to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 It is a structural schematic diagram of the present invention;

[0031] Figure 2 It is a schematic diagram of the decomposition structure of the present invention;

[0032] Figure 3 Schematic diagram of the exploded structure of the racket head of the present invention;

[0033] Figure 4 Schematic diagram of the exploded structure of the stent of the present invention;

[0034] Figure 5 It is a schematic diagram of the exploded structure of the handle assembly of the present invention;

[0035] Figure 6 It is a partial structural schematic diagram of the handle assembly of the present invention.

[0036] In the figure: 10, racket head; 11, sleeve; 12, negative electrode mesh; 13, pressure cap; 14, positive electrode mesh; 15, first electrical connection piece; 16, insulating spacer; 20, bracket; 21, first support; 211, mounting boss; 212, first connection channel; 213, clamping groove; 22, second support; 221, mounting groove; 222, sleeve; 23, second connecting piece; 24, first conductive spring; 25, conductive substrate; 26, second conductive spring; 27, energy storage device; 28, second electrical connection piece; 29, third electrical connection piece; 30, handle assembly; 31, handle housing; 32, conductive tube; 321, fourth electrical connection piece; 322, plug; 33, first elastic component; 34, first connecting piece; 341, pressing end; 342, clamping portion; 35, second elastic component; 36, battery. DETAILED DESCRIPTION

[0037] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:

[0038] In the description of the present invention, it should be noted that the terms "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside" and "outside" indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limiting the present invention.

[0039] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art of the present invention. The terms used in the specification of the present invention herein are only for the purpose of describing specific embodiments and are not intended to limit the present invention.

[0040] Example 1,

[0041] like Figure 1-6 The mosquito swatter head assembly shown includes a swatter head 10 and a bracket 20. The swatter head 10 includes a mounting base, a positive electrode net 14 and a negative electrode net 12. The positive electrode net 14 and the negative electrode net 12 are both mounted on the mounting base, and the positive electrode net 14 and the negative electrode net 12 are spaced apart on the mounting base to reduce short circuits between the two due to conduction.

[0042] Specifically, the bracket 20 is provided with an energy storage device 27 and a conductive substrate 25. The bracket 20 is provided with a first mounting end and a second mounting end. The first mounting end and the second mounting end can be respectively located at two end surfaces of the bracket 20. The mounting seat of the racket head 10 is installed at the first mounting end.

[0043] Furthermore, the energy storage device 27 has a first electrical connection terminal and a second electrical connection terminal. After the mounting base is mounted on the first mounting terminal, the first electrical connection terminal of the energy storage device 27 can be electrically connected to the negative electrode network 12 on the mounting base. The second electrical connection terminal of the energy storage device 27 is electrically connected to the conductive substrate 25. Furthermore, the conductive substrate 25 has a third electrical connection terminal and a fourth electrical connection terminal. The third connection terminal can be electrically connected to the positive electrode network 14 after the mounting base is mounted on the bracket 20. The fourth electrical connection terminal of the conductive substrate can be electrically connected to the power supply assembly.

[0044] On the basis of the above structure, when using the mosquito swatter head assembly of the present invention, the swatter head 10 with the bracket 20 can be assembled on the handle of the mosquito swatter. The conductive tube 32 on the handle can be connected to the fourth electrical connection end after the mounting base of the swatter head 10 is installed on the handle. The fourth electrical connection end can be electrically connected to the conductive substrate 25. The conductive substrate 25 charges the energy storage device 27. At this time, the positive electrode network 14 and the negative electrode network 12 are electrically connected to the energy storage device 27 and the conductive substrate 25 respectively. Therefore, the positive electrode network 14 and the negative electrode network 12 are powered and used normally.

[0045] When the bracket 20 is connected to the handle for use, the energy storage device 27 can store electricity. When the bracket 20 of the swatter head assembly is detached from the handle of the mosquito swatter, due to the electricity stored in the energy storage device 27, the fourth electrical connection end of the conductive substrate 25 is disconnected from the conductive tube 32 used as a power supply component, and the positive electrode network 14 and the negative electrode network 12 can also be normally powered by the energy storage device 27. When used when disconnected, the mosquito swatter is more flexible in use.

[0046] Compared to existing racquets, after the racquet head is separated from the handle, the circuit board and energy storage device used to power the racquet head's positive and negative network are both located within the handle, resulting in unstable power supply and short discharge time after separation. In this embodiment, however, the circuits, circuit board, and power supply used to power the energy storage device are all located on the handle. After separation, only the energy storage device is separated. The energy storage device is located within the racquet head and can maintain a high voltage for a certain period of time. This allows the racquet head to be ejected to reach locations that cannot be reached by hand, making the racquet more flexible to use.

[0047] It should be noted that the above-mentioned energy storage device can be implemented by using a capacitor in the prior art. After the capacitor is electrically connected to the power supply circuit, it can instantly discharge to the positive grid and the negative grid to kill mosquitoes. Of course, the energy storage device can also be implemented by connecting a capacitor and a resistor in series. In this case, when the positive grid and the negative grid do not encounter mosquitoes, or even if they encounter mosquitoes, the capacitor still has a large amount of electricity, which needs to be released. The resistor can be used to receive the discharge amount of the capacitor, which is safer to use.

[0048] Furthermore, in order to facilitate the electrical connection between the electric energy storage device 27 and the conductive substrate 25, the positive electrode network 14, and the negative electrode network 12, a first electrical connection piece 15 may be provided on the mounting base, and a second electrical connection piece 28 may be provided at the first mounting end, so that the second electrical connection piece 28 is electrically connected to the first electrical connection end, and the first electrical connection piece 15 may be electrically connected to the second electrical connection piece 28 after the mounting base is installed on the first mounting end.

[0049] Specifically, the first electrical connection piece 15 and the second electrical connection piece 28 can both be selected as electrical contact pieces in the prior art, and connection holes can be opened on the electrical contact pieces. During assembly, the electrical contact piece used as the first electrical connection piece 15 can be assembled through a screw mounting seat, and the two ends of the electrical contact piece used as the second electrical connection piece 28 can be electrically assembled with the first electrical connection piece 15 and the power storage device 27 through screws respectively. In this way, the use of wires is reduced, and metal sheets are directly used for electrical assembly. The electrical contact surface is more stable and less prone to poor contact.

[0050] Furthermore, a first elastic conductive member may be provided at one end of the conductive substrate 25, and a second elastic conductive member may be provided at the other end of the conductive substrate 25. The first elastic conductive member may extend from the first mounting end and form a third electrical connection end, while the second elastic conductive member may extend from the second mounting end and form a fourth electrical connection end.

[0051] Based on this structure, since the third electrical connection end for electrical connection to the positive electrode network 14 is an elastic conductive member, it has a certain degree of elasticity. After the mounting base of the racket head 10 is assembled to the first mounting end, the first elastic conductive member can be compressed and retracted into the bracket 20, preventing the electrical connection structure from being exposed and facilitating assembly. The fourth electrical connection end for connecting to the mosquito swatter's handle circuit can also be formed by the second elastic conductive member, which also has a certain degree of elasticity, facilitating flexible assembly of the power supply assembly. After electrical assembly, since both the first and second elastic conductive members are elastic, they can provide a restoring force when compressed. After electrical connection, the elastic force can maintain a stable electrical connection state, thus improving the stability of the electrical connection.

[0052] More specifically, the first elastic conductive member is the first conductive spring 24. Similarly, the second elastic conductive member may also be the second conductive spring 26. Of course, the first elastic conductive member and the second elastic conductive member may also be spring structures.

[0053] Furthermore, a third electrical connection piece 29 may be provided at the second mounting end. The second conductive spring 26, serving as a second elastic conductive member, can extend from the second mounting end under its own elastic stress and electrically connect to the third electrical connection piece 29. This third electrical connection piece 29 can then be connected to the power supply assembly. In other words, when the second mounting end of the bracket 20 is assembled with the handle assembly 30 of the mosquito swatter, the second conductive spring 26 connected to the conductive substrate 25 can extend and electrically connect to the third electrical connection piece 29. The third electrical connection piece 29, under the action of the second conductive spring 26, can maintain a stable connection with the mosquito swatter's circuit.

[0054] Specifically, the conductive substrate 25 in this embodiment is a double-sided PCB board in the prior art, and the first conductive spring 24 and the second conductive spring 26 can be welded on both sides of the PCB board.

[0055] Furthermore, the above-mentioned bracket 20 includes a first support 21 and a second support 22, and the first support 21 is sealed on the second support 22 in a detachable manner. Specifically, bolt holes can be set at corresponding positions on the first support 21 and the second support 22, and bolts can be inserted into the bolt holes to make the first support 21 and the second support 22 detachable for assembly.

[0056] Based on the structure of the bracket 20 having the first support 21 and the second support 22, the end of the first support 21 away from the second support 22 forms a first mounting end. A mounting boss 211 can be provided at the first mounting end, and a first connection channel 212 is provided in the middle of the mounting boss 211. The mounting boss 211 forms the first mounting end. In this way, when assembling the conductive substrate 25, the conductive substrate 25 can be installed in the first connection channel 212, and the first elastic conductive member provided on the conductive substrate 25 can extend through the first connection channel 212. After the mounting seat of the racket head 10 is assembled on the mounting boss 211 of the first support 21, the first elastic conductive member extended from the first connection channel 212 can extend through the first connection channel 212 to electrically connect to the positive electrode network 14. The circuit connection structure can be integrated within the first connection channel 212 to avoid being exposed.

[0057] In addition, a mounting groove 221 is provided at the end of the second support 22 close to the first support 21, and the above-mentioned energy storage device 27 is installed in the mounting groove 221. The electrical connection between the energy storage device 27 and the conductive substrate 25 can be achieved through a wire, and the second electrical connection end of the energy storage device 27 can be assembled in the mounting groove 221 through the above-mentioned second electrical connection piece 28 to realize the internal storage of the circuit, and the first support 21 and the second support 22 are detachable to facilitate the inspection and maintenance of the internal circuit.

[0058] More specifically, in order to facilitate the assembly of the conductive substrate 25 and the first through-channel 212, a snap-in groove 213 can be provided on the side wall of the mounting boss 211, and a corresponding snap-in piece is provided on the conductive substrate 25. During assembly, the snap-in piece of the conductive substrate 25 can be snapped into the snap-in groove 213 of the first through-channel 212, making assembly and disassembly more convenient.

[0059] Of course, the conductive substrate 25 can also be fixed in the first connection channel 212 by bonding. In the present application, the connection is made by snapping the card to the snap slot. The conductive substrate 25 can be replaced after being damaged, and due to the limitation of the snap slot, the loosening of the conductive substrate 25 due to adhesive failure after assembly can be reduced.

[0060] Furthermore, a second mounting end can be formed at the end of the second support 22 away from the first support 21, and a sleeve 222 can be provided at the second mounting end. A second connection channel can be provided in the sleeve 222. After the conductive substrate 25 is assembled to the first connection channel 212, the second elastic conductive part on the conductive substrate 25 can extend from the second connection channel.

[0061] Based on this structure, the third electrical connection piece 29 installed at the second mounting end can be installed at the end of the sleeve 222. After the second elastic conductive member is led out through the second connection channel, it can be directly electrically assembled with the third electrical connection piece 29 through screws and other structures.

[0062] Furthermore, the mounting seat includes a collar 11 and a pressure cap 13 , the positive electrode mesh 14 and the negative electrode mesh 12 are connected to the collar 11 , and the pressure cap 13 is sealed on the end of the collar 11 ; an insulating spacer 16 is provided between the positive electrode mesh 14 and the negative electrode mesh 12 .

[0063] During assembly, the positive electrode mesh 14 can be first assembled on the inner layer of the ring 11, and then the insulating spacer 16 can be assembled on the top of the positive electrode mesh 14, and then the negative electrode mesh 12 can be assembled. The negative electrode mesh 12 can be assembled on the outside of the ring 11, and finally the pressure cover 13 is sealed on the outside of the ring 11 by connecting parts such as screws or bolts, so that the negative electrode mesh 12, the insulating spacer 16 (which can be an insulating rubber frame in the prior art), and the positive electrode mesh 14 are assembled on the ring 11, which is convenient for cleaning the racket head assembly when the power is off, and the mosquitoes and insects remaining on the removed positive electrode mesh 14 and the negative electrode mesh 12 can be cleaned.

[0064] Specifically, the positive electrode net 14 and the negative electrode net 12 in this embodiment are two types of grids with different combing densities. The negative electrode net 12 is set with a sparse combing network. After assembly, the negative electrode net 12 can be installed on the outside of the racket head 10; the positive electrode net 14 is set with a dense grid and installed on the inside of the racket head 10. When the racket head 10 is bounced off by the handle of the mosquito swatter, it can electrocute mosquitoes from the outside to the inside, which is more effective.

[0065] Example 2,

[0066] The pop-up detachable mosquito swatter includes a handle assembly 30 and the swatter head assembly in Example 1. A conductive tube 32 is provided in the handle assembly 30, and one end of the conductive tube 32 of the handle assembly 30 is used to be electrically connected to a power source, and the other end of the conductive tube 32 is formed as a fifth electrical connection end. The second mounting end of the bracket 20 of the above-mentioned swatter head assembly can be detachably mounted on the handle assembly 30 so that the fourth electrical connection end is electrically connected to the fifth electrical connection end of the conductive tube 32.

[0067] Specifically, when in use, the racket head 10 with the bracket 20 can be assembled on the handle assembly 30 of the mosquito swatter. The fifth connection end formed by the conductive tube 32 on the handle assembly 30 can be connected to the fourth electrical connection end after the mounting base of the racket head 10 is installed on the handle. The fourth electrical connection end can be electrically connected to the conductive substrate 25, and the conductive substrate 25 charges the energy storage device 27. At this time, the positive electrode network 14 and the negative electrode network 12 are electrically connected to the energy storage device 27 and the conductive substrate 25, respectively, so that the positive electrode network 14 and the negative electrode network 12 are powered and used normally.

[0068] When the bracket 20 is connected to the handle for use, the energy storage device 27 can store electricity. When the bracket 20 of the swatter head assembly is detached from the handle of the mosquito swatter, due to the electricity stored in the energy storage device 27, the fourth electrical connection end of the conductive substrate 25 is disconnected from the conductive tube 32 used as a power supply component, and the positive electrode network 14 and the negative electrode network 12 can also be normally powered by the energy storage device 27. When used when disconnected, the mosquito swatter is more flexible in use.

[0069] Compared to existing racquets, after the racquet head is separated from the handle, the circuit board and energy storage device used to power the racquet head's positive and negative network are both located within the handle, resulting in unstable power supply and short discharge time after separation. In this embodiment, however, the circuits, circuit board, and power supply used to power the energy storage device are all located on the handle. After separation, only the energy storage device is separated. The energy storage device is located within the racquet head and can maintain a high voltage for a certain period of time. This allows the racquet head to be ejected to reach locations that cannot be reached by hand, making the racquet more flexible to use.

[0070] Furthermore, the handle assembly 30 in this embodiment includes a handle shell 31, a connecting assembly and a first elastic component 33. Specifically, a power supply is provided in the handle shell 31 (the power supply in this embodiment can be selected as a battery 36 structure in the prior art), one end of the above-mentioned conductive tube 32 extends into the handle shell 31 and is electrically connected to the power supply, while the other end of the conductive tube 32 extends from the handle shell 31 and forms a fifth electrical connection end.

[0071] In addition, the above-mentioned connecting component includes a first connecting member 34 and a second connecting member 23. The first connecting member 34 is installed on the handle housing 31, and the second connecting member 23 is installed on the second mounting end. The first connecting member 34 is used to be detachably connected to the second connecting member 23.

[0072] Specifically, the above-mentioned first elastic component 33 can be arranged on the handle shell 31, and the first elastic component 33 is used to be compressed after the second mounting end is installed on the handle assembly 30; the first elastic component 33 is used to provide a first elastic stress that drives the second mounting end away from the handle shell 31 after the first connecting member 34 is disengaged from the second connecting member 23.

[0073] Based on the above structure, the second mounting end of the bracket 20 of the racket head assembly can be assembled with the handle shell 31. During assembly, the first connecting member 34 on the handle shell 31 can be connected to the second connecting member 23 on the second mounting end. The racket head 10 can then be assembled with the handle shell 31 through the bracket 20. After assembly, the first elastic member 33 located on the handle shell 31 can be in a compressed assembly.

[0074] When the racket head assembly needs to be separated from the handle assembly 30 for use, it can be separated from the second connecting member 23 through the first connecting member 34. At this time, the first elastic member 33 is reset. The first elastic stress provided during the reset of the first elastic member 33 can drive the second mounting end of the bracket 20 to pop out relative to the handle shell 31. Since electricity is stored in the energy storage device 27, the fourth electrical connection end of the conductive substrate 25 is disconnected from the conductive tube 32 used as a power supply component. The positive electrode network 14 and the negative electrode network 12 can also be powered normally by the energy storage device 27. The racket head assembly flies out relative to the handle shell 31 to achieve the purpose of flying mosquito killing, and can kill mosquitoes at a long distance.

[0075] In order to improve the assembly stability of the bracket 20 and the handle shell 31, at least two first connecting members 34 can be arranged on the circumference of the handle shell 31, and at least two second connecting members 23 can be arranged on the second mounting end of the bracket 20 accordingly. During assembly, at least two first connecting members 34 and at least two second connecting members 23 are detachably assembled, and the structure is more stable after assembly.

[0076] Specifically, in this embodiment, one end of the first connecting member 34 is formed as a pressing end 341, and the other end of the first connecting member 34 is provided with a snap-fitting portion 342 for snapping with the second connecting member 23, and the first connecting member 34 is rotatably mounted on the handle housing 31.

[0077] A second elastic component 35 may be provided on the handle housing 31. One end of the second elastic component 35 may be connected to the handle housing 31, while the other end of the second elastic component 35 may be connected to the first connecting member 34. Specifically, the second elastic component 35 may be connected to the pressing end 341. The second elastic stress provided by the second elastic component 35 may drive the pressing end 341 away from the handle housing 31, so that the clamping portion 342 at the other end of the pressing end 341 may rotate toward the handle housing 31. That is, when the second elastic component 35 is mounted on the handle housing 31 at the second mounting end, it provides a second elastic stress that drives the clamping portion 342 to rotate toward the second connecting member 23 so as to be clamped to the second connecting member 23. When the pressing end 341 is pressurized, the clamping portion 342 may be driven to rotate away from the second connecting member 23.

[0078] Specifically, when the second mounting end of the bracket 20 is assembled with the handle shell 31, the second mounting end can press the first elastic component 33 which is sleeved on the outside of the conductive tube 32. During the process of the second mounting end abutting against the end face of the handle shell 31, the human hand can press the pressing end 341 of the first connecting member 34, and the clamping portion 342 of the first connecting member 34 can be in a state away from the handle shell 31. After the second mounting end and the handle shell 31 are abutted in place, the human hand releases the pressing end 341, and the second elastic component 35 connected to the pressing end 341 can be reset, providing a second elastic stress that drives the clamping portion 342 close to the handle shell 31 so that it can be clamped to the second mounting end. In this way, the clamping portion 342 can be clamped onto the second connecting member 23 of the second mounting end, realizing detachable assembly.

[0079] When the swatter assembly needs to be ejected, a person manually presses the pressing end 341 of the first connecting member 34, and the clamping portion 342 at the other end of the first connecting member 34 can move away from the second connecting member 23. At this time, the first elastic stress provided by the reset of the first elastic component 33 can drive the bracket 20 to eject, thereby achieving flying mosquito killing.

[0080] It should be noted that the above-mentioned clamping portion 342 can be selected as a hook structure in the existing technology, and the second connecting member 23 can be a ring 11 that is sleeved outside the sleeve 222 of the bracket 20. A bayonet structure or a groove structure can be set on the ring 11 for the above-mentioned hook to be rotated and clamped.

[0081] Those skilled in the art can make various other corresponding changes and deformations based on the technical solutions and concepts described above, and all of these changes and deformations should fall within the scope of protection of the claims of the present invention.

Claims

1. The mosquito swatter head assembly is characterized by: include, A racket head, the racket head comprising a mounting seat, a positive electrode net, and a negative electrode net, the positive electrode net and the negative electrode net being both mounted on the mounting seat and spaced apart; A bracket, wherein an energy storage device and a conductive substrate are provided on the bracket, the bracket having a first mounting end and a second mounting end, the mounting base being mounted on the first mounting end; the energy storage device having a first electrical connection end and a second electrical connection end, the first electrical connection end being used to electrically connect to the negative electrode network after the mounting base is mounted on the first mounting end; the second electrical connection end being electrically connected to the conductive substrate; the conductive substrate having a third electrical connection end being used to electrically connect to the positive electrode network, and the conductive substrate having a fourth electrical connection end being used to electrically connect to a power supply component; The mounting base is provided with a first electrical connection piece, and the first mounting end is provided with a second electrical connection piece, the second electrical connection piece being electrically connected to the first electrical connection end; the first electrical connection piece is used to electrically connect to the second electrical connection piece after the mounting base is mounted on the first mounting end; A first elastic conductive member is provided at one end of the conductive substrate, and a second elastic conductive member is provided at the other end of the conductive substrate, the first elastic conductive member extends from the first mounting end and forms the third electrical connection end, and the second elastic conductive member extends from the second mounting end and forms the fourth electrical connection end; The first elastic conductive member is a first conductive spring; the second mounting end is provided with a third electrical connection piece, the second elastic conductive member is a second conductive spring, the second conductive spring extends from the second mounting end under the action of its own elastic stress and is electrically connected to the third electrical connection piece, and the third electrical connection piece is used to connect to the power supply component; The bracket includes a first support and a second support, the first support is detachably sealed on the second support, the end of the first support away from the second support is formed as a first mounting end, the first mounting end is provided with a mounting boss, the middle part of the mounting boss is provided with a first through-connection channel, and the mounting boss forms the first mounting end; the conductive substrate is installed in the first through-connection channel so that the first elastic conductive part extends from the first through-connection channel; the end of the second support close to the first support is provided with a mounting groove, and the electric energy storage device is installed in the mounting groove.

2. The mosquito swatter head assembly according to claim 1, wherein: A clamping groove is provided on the side wall of the mounting boss; a clamping piece is provided on the conductive substrate, and the clamping piece is clamped into the clamping groove.

3. The mosquito swatter head assembly according to claim 1, wherein: The end of the second support away from the first support is formed as the second mounting end. The second mounting end is provided with a sleeve. A second connecting channel is provided in the sleeve. The second elastic conductive member extends out from the second connecting channel.

4. The mosquito swatter head assembly according to claim 1, wherein: The mounting seat includes a collar and a pressure cover. The positive electrode net and the negative electrode net are connected to the collar. The pressure cover is sealed on the end of the collar. An insulating spacer is provided between the positive electrode net and the negative electrode net.

5. Pop-up detachable mosquito swatter, characterized by: include, a handle assembly, wherein the handle assembly is provided with a conductive tube, one end of the conductive tube is used to be electrically connected to a power source, and the other end of the conductive tube forms a fifth electrical connection end; The racket head assembly according to any one of claims 1 to 4, wherein the second mounting end of the bracket is used to be detachably mounted on the handle assembly so that the fourth electrical connection end is electrically connected to the conductive tube.

6. The pop-up detachable mosquito swatter according to claim 5, characterized in that: The handle assembly includes a handle housing, a connecting assembly and a first elastic component. A power source is provided in the handle housing, one end of the conductive tube extends into the handle housing and is electrically connected to the power source, and the other end of the conductive tube extends from the handle housing and forms the fifth electrical connection end; A connecting assembly, the connecting assembly comprising a first connecting member and a second connecting member, the first connecting member being mounted on the handle housing, the second connecting member being mounted on the second mounting end, the first connecting member being configured to be detachably connected to the second connecting member; The first elastic component is provided on the handle housing, and is used to be compressed after the second mounting end is installed on the handle assembly; the first elastic component is used to provide a first elastic stress that drives the second mounting end away from the handle housing after the first connecting member is disengaged from the second connecting member.

7. The pop-up detachable mosquito swatter according to claim 6, wherein: One end of the first connecting member is formed as a pressing end, and the other end of the first connecting member is provided with a clamping portion for clamping with the second connecting member; the first connecting member is rotatably mounted on the handle shell; a second elastic component is provided on the handle shell, and the second elastic component is connected between the handle shell and the second connecting member; the second elastic component is used to provide a second elastic stress that drives the clamping portion to rotate toward the second connecting member so as to clamp to the second connecting member when the second mounting end is installed on the handle shell; the pressing end is used to drive the clamping portion to rotate away from the second connecting member when under pressure.

8. The pop-up detachable mosquito swatter according to claim 5, wherein: The fifth electrical connection end of the conductive tube is covered with a plug, and the plug is provided with a fourth electrical connection piece electrically connected to the fifth electrical connection end.

Citation Information

Patent Citations

  • Fat head assembly of mosquito swatter and pop-up separation type mosquito swatter

    CN218999334U