Electromagnetic bee-killer gun
By designing an electromagnetic bee-killing gun, and utilizing a sight and intelligent control system, firefighters can accurately remove wasp nests from a distance, solving the problems of inconvenience for firefighters and the risk of being attacked, and improving processing efficiency and safety.
Patent Information
- Application Number
- CN202522429117.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-14
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-11-14
AI Technical Summary
Existing technologies make it inconvenient for firefighters to handle wasp nests, especially at high altitudes or in hot environments, and there is a risk of being attacked by wasps.
An electromagnetic bee-killing gun was designed, equipped with a sight, firing protector, identification device, range switcher, and intelligent control system. It accelerates the bee-killing bullets using electromagnetic force to ensure accurate shooting and safe operation.
It improves the accuracy and efficiency of firefighters in handling wasp nests from a distance, reduces the risk of being attacked, simplifies the operation process, and reduces accidental shooting and waste of resources.
Smart Images

Figure CN224670662U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of fire-fighting tool technology, specifically relating to an electromagnetic bee-killing gun. Background Technology
[0002] Wasps are a wide variety of insects that fly rapidly. Female wasps have a powerful, long stinger, and when attacked or disturbed, they will swarm and attack, which can cause allergic and toxic reactions in humans, and in severe cases, death.
[0003] Wild bee colonies are setting up camps everywhere, and their aggressive behavior poses a significant safety hazard to people's lives. Fire and rescue brigades across the country frequently receive calls for help from citizens, requiring firefighters to conduct "bee extermination operations" immediately. Currently, when firefighters are tasked with dealing with wasp nests, they must wear cumbersome protective suits upon arrival at the scene. In the hot summer, this can easily lead to heatstroke, making nest removal extremely inconvenient, especially for nests located at high altitudes. Utility Model Content
[0004] This invention provides an electromagnetic bee-killing gun, which aims to solve the problem of inconvenient operation of bee-killing during fire rescue in the prior art.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:
[0006] An electromagnetic bee-killing gun includes a barrel assembly and a gun body assembly;
[0007] The barrel assembly includes a tube body, and an electromagnetic generator is installed inside the tube body to accelerate the bee-killing bullet inside the tube body using electromagnetic force.
[0008] The gun assembly includes a housing fixed to the tube body. Inside the housing is a power supply component that supplies power to the electromagnetic generator. The power supply component includes a battery and a controller mounted on the housing. The battery supplies power to the electromagnetic generator through the controller.
[0009] A further improvement: a sight is installed on the tube body.
[0010] Based on the above technical solution: the sight allows firefighters to aim more accurately at the target, namely the wasp nest. Whether at a distance or in complex environments, the sight helps firefighters quickly lock onto the target, ensuring the wasp-killing bullet hits accurately, thus improving the accuracy of wasp nest removal. With the sight, firefighters do not need to get too close to the wasp nest when operating the electromagnetic wasp-killing gun, reducing the risk of being attacked by wasps. At the same time, the use of the sight simplifies the operation process, allowing firefighters to focus more on the shooting itself without worrying too much about accuracy. Because the sight improves shooting accuracy, firefighters can complete the task faster, reducing the time spent on repeated firing and adjustments. This not only improves operational efficiency but also reduces the waste of firefighting resources.
[0011] A further improvement: the aiming device is a laser aiming device.
[0012] Based on the above technical solution, the laser sight uses a laser beam to indicate the firing direction, with an accuracy far exceeding that of traditional mechanical aiming methods. Firefighters can clearly see the location of the laser beam, ensuring that the wasp-killing bullet accurately hits the target wasp nest, greatly improving shooting accuracy. Laser sights are typically equipped with both visible laser and infrared laser modes. In nighttime or low-light environments, firefighters can switch to visible laser mode, using the bright light of the laser beam to indicate the target and achieve precise shooting. This is crucial for fire rescue operations at night or in complex environments. Laser sights are ready to use immediately; firefighters can quickly open the laser sight and aim without complex adjustments. This significantly shortens preparation time, improves operational convenience and reaction speed, enabling firefighters to respond quickly to emergencies.
[0013] A further improved solution: The gun body assembly is also provided with a first firing protector and a second firing protector, both of which are communicatively connected to the controller.
[0014] Based on the above technical solution, the core function of the firing protector is to prevent accidental firing due to mis-triggering or improper operation. By installing two firing protectors and connecting them to the controller, it can be ensured that the electromagnetic bee-killing gun will only be activated and fired when specific conditions are met. This significantly reduces the risk of safety accidents caused by misoperation. The firing protector requires firefighters to perform specific operating procedures before firing, which helps them remain calm in tense or complex environments and carefully aim at the target before firing. This design improves operational accuracy and reduces firing errors caused by haste or tension.
[0015] A further improved solution: the first firing protector and the second firing protector are located at both ends of the gun body assembly, respectively.
[0016] Based on the above technical solution: placing the two firing protectors at opposite ends of the firearm assembly means that firefighters must simultaneously touch both ends of the firearm to fire. This design significantly increases the difficulty of accidental activation, as it is unlikely that firefighters will unconsciously or hastily touch both ends of the firearm at the same time. This effectively prevents accidental firing caused by accidental contact or improper operation. During firing, firefighters need to grip the firearm assembly with both hands to maintain stability. Placing the firing protectors at opposite ends encourages firefighters to adopt a more stable grip. This design helps firefighters remain calm and stable during firing, thereby improving accuracy. The core function of the firing protectors is to protect equipment and personnel from accidental firing. Placing them at opposite ends of the firearm assembly further ensures equipment safety. Even without the intention to fire, the equipment will not be activated due to accidental activation, thus avoiding potential safety risks.
[0017] A further improvement: The gun assembly is also equipped with an identification reader, which is communicatively connected to the controller.
[0018] Based on the above technical solution: the identification device ensures that only authorized personnel can use the electromagnetic bee-killing gun. By verifying the operator's identity, the identification device effectively prevents unauthorized personnel from misusing or abusing the equipment, thereby avoiding potential security risks. After the identification device is connected to the controller, it can record the personnel information, usage time, location, and other key data for each use of the equipment. This data helps regulatory authorities track and monitor the use of the equipment, ensuring that operators follow prescribed operating procedures and safety guidelines. Through the identification device, managers can easily see who is using or has used the electromagnetic bee-killing gun, as well as the frequency of use and maintenance status of the equipment. This helps managers to promptly arrange equipment maintenance and upkeep, ensuring that the equipment is always in good working order.
[0019] A further improved solution: The identity recognition device is a fingerprint recognition device.
[0020] Based on the above technical solution: the fingerprint reader can accurately identify the fingerprint characteristics of the operator. Since each person's fingerprint is unique, this identification method offers extremely high personalization and accuracy. This ensures that only authorized personnel with matching fingerprints can use the electromagnetic bee-killing gun, further enhancing the security of the equipment. The maturity of fingerprint recognition technology makes the verification process very fast and convenient. Operators simply place their finger on the fingerprint reader, and the system quickly completes identity verification without additional operations or waiting time. This improves operational efficiency, especially in emergency situations, enabling rapid response and deployment. Due to the uniqueness of fingerprints, the fingerprint reader effectively prevents unauthorized use or misuse of the electromagnetic bee-killing gun. Even if the equipment is lost or stolen, unauthorized personnel cannot use the equipment through fingerprint verification, thus protecting the integrity and security of the equipment.
[0021] A further improvement: The gun assembly is also equipped with a switch for controlling the range of the electromagnetic bee-killing gun, and the switch is communicatively connected to the controller.
[0022] Based on the above technical solution, the switcher allows firefighters to flexibly adjust the range of the electromagnetic bee-killing gun according to the actual situation. Faced with wasp nests of different sizes and locations, firefighters can choose an appropriate range to ensure effective elimination of wasps while avoiding unnecessary damage to the surrounding environment. By adjusting the range with the switcher, firefighters can more precisely control the landing point of the wasp-killing projectiles, reducing the possibility of accidental or excessive firing. This not only improves operational accuracy but also protects the safety of firefighters and those around them. Electromagnetic bee-killing guns may require different range settings in different environments. For example, in confined spaces, an excessively long range may prevent the wasp-killing projectiles from accurately hitting the target; while in open outdoor environments, a shorter range may not cover the target area. The switcher design allows the electromagnetic bee-killing gun to adapt to various environments, improving the equipment's applicability.
[0023] A further improvement: The gun body assembly is also equipped with a firing switch, which is communicatively connected to the controller.
[0024] Based on the above technical solution: the firing switch, as one of the core control components of the electromagnetic bee-killing gun, is designed to be highly intuitive, allowing firefighters to quickly locate and operate it in tense or complex environments. After communicating with the controller, firefighters can simply press the firing switch to trigger the firing action, greatly improving operational convenience. When the firefighter presses the firing switch, the controller immediately responds and triggers the electromagnetic mechanism, accurately firing the bee-killing projectile. This design reduces firing deviations caused by improper operation or equipment malfunction, improving firing accuracy. Through communication with the controller, the firing switch can be integrated into the intelligent control system of the electromagnetic bee-killing gun. This means that firefighters can control the timing, frequency, and force of firing through programming or preset parameters, achieving more precise and intelligent operation. This design not only improves the performance of the equipment but also enhances its adaptability to different scenarios.
[0025] A further improvement: The gun assembly is also equipped with a master switch, which is connected in series between the battery and the controller.
[0026] Based on the above technical solution: the main switch, as the main power control component of the electromagnetic bee-killing gun, can directly cut off or connect the power supply to the entire device. When the equipment is not in use, firefighters can ensure that the equipment is in a power-off state by turning off the main switch, thereby avoiding safety risks caused by accidental triggering or the equipment starting on its own. When the electromagnetic bee-killing gun is in standby or unused state, turning off the main switch can effectively prevent unnecessary battery drain. This not only extends battery life but also reduces the inconvenience and cost caused by frequent battery replacements. The main switch design is very intuitive and easy to operate; firefighters can control the on / off state of the equipment with a simple one-button operation. This design simplifies the operation process, improves work efficiency, and especially in emergency situations, it can quickly start or stop the equipment to meet different needs.
[0027] The beneficial effects of this utility model are as follows:
[0028] This invention utilizes an electromagnetic generator to rapidly accelerate the wasp-killing projectile, allowing firefighters to accurately strike wasp nests from a greater distance, thus avoiding the dangers of close contact with wasps. Simultaneously, this significantly improves the efficiency of wasp nest removal.
[0029] Traditional bee control methods often require firefighters to wear heavy protective suits, especially in the hot summer months, which is a significant burden for them. The use of electromagnetic bee-killing guns avoids this burden, allowing firefighters to complete the operation simply by carrying a lightweight weapon.
[0030] The electromagnetic bee-killing gun is designed to allow firefighters to deal with wasp nests from a greater distance, significantly reducing the risk of being attacked by wasps. Furthermore, because the firing of the wasp-killing projectiles is controlled by a controller, accidental firing and other unforeseen circumstances can be avoided. Attached Figure Description
[0031] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For users of ordinary skills in the art, other related drawings can be obtained from these drawings without creative effort.
[0032] Figure 1 This is a schematic diagram of an electromagnetic bee-killing gun according to this utility model.
[0033] Figure 2 This is a schematic diagram of the gun body assembly in an electromagnetic bee-killing gun according to this utility model.
[0034] Figure 3 This is a schematic diagram of the battery in an electromagnetic bee-killing gun according to this utility model.
[0035] Explanation of the labels in the diagram:
[0036] 1-Tube body; 2-Shell; 3-Battery; 4-Sighting device; 5-First firing protector; 6-Second firing protector; 7-Identifier; 8-Switcher; 9-Fire switch; 10-Main switch. Detailed Implementation
[0037] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. It should be understood that the specific embodiments described herein are merely for explaining the present utility model and are not intended to limit the present utility model. All other embodiments obtained by users of the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0038] refer to Figures 1 to 3 An electromagnetic bee-killing gun, comprising a barrel assembly and a gun body assembly;
[0039] The barrel assembly includes a tube body 1, and an electromagnetic generator is installed inside the tube body 1 to accelerate the bee-killing bullet inside the tube body 1 using electromagnetic force.
[0040] The gun assembly includes a housing 2, which is fixed to the tube 1. A power supply component for supplying power to the electromagnetic generator is provided inside the housing 2. The power supply component includes a battery 3 and a controller installed on the housing 2. The battery 3 supplies power to the electromagnetic generator through the controller.
[0041] The electromagnetic generator typically includes an electromagnetic coil, capacitor, resistor, inverter, rectifier bridge, diode, etc. The gun body assembly usually includes a switch, fingerprint recognition module, battery, etc. The electromagnetic coil generates magnetic force, which accelerates the internal wasp-killing bullet step by step, and finally launches it to hit the wasp nest.
[0042] The electromagnetic bee-killing gun can also be flown by drone. The drone displays the target, and a ground operator activates it. It is also equipped with fingerprint recognition and a steel alloy firing tip, enabling it to break windows and expel smoke quickly during firefighting and rescue operations, thus aiding firefighters. The bee-killing projectile can also use a steel alloy tip.
[0043] Specifically: A sight 4 is provided on the tube body 1. The sight 4 is a laser sight 4. The sight 4 can also be other types of aiming devices. The sight 4 can be snapped onto the tube body 1, or it can be fixed to the tube body 1 in other ways.
[0044] Specifically, the gun body assembly is further provided with a first firing protector 5 and a second firing protector 6, both of which are communicatively connected to the controller. The first firing protector 5 and the second firing protector 6 are located at opposite ends of the gun body assembly. Both the first firing protector 5 and the second firing protector 6 can be buttons located on the gun body assembly.
[0045] The gun assembly also includes an identification reader 7, which is communicatively connected to the controller. The identification reader 7 can be a fingerprint reader, a voiceprint reader, or a facial recognition device, or other electronic components capable of identifying a person.
[0046] Specifically: the gun assembly is also equipped with a switch 8 for controlling the range of the electromagnetic bee-killing gun, and the switch 8 is communicatively connected to the controller. The gun assembly is also equipped with a firing switch 9, which is communicatively connected to the controller. The gun assembly is also equipped with a master switch 10, which is connected in series between the battery 3 and the controller. The master switch 10 can be a button.
[0047] Specifically, the battery 3 can be snapped onto the gun body assembly. A slot can be provided on the housing 2, and a retaining edge can be provided on the battery 3 to cooperate with the slot. A rubber layer can be bonded to the retaining edge. After the retaining edge and the slot are engaged, the rubber layer will elastically deform, and the position of the battery 3 will be fixed by the friction between the rubber layer and the side wall of the slot.
[0048] The working principle of this embodiment:
[0049] The electromagnetic bee-killing gun includes a tube 1 containing an electromagnetic generator. This generator accelerates the bee-killing projectile within the tube 1. When activated, the generator produces a powerful electromagnetic force that propels the projectile rapidly out of the tube 1. It also includes a housing 2, fixed to the tube 1. The housing 2 houses a power supply assembly, comprising a battery 3 and a controller. The battery 3 provides the energy, while the controller manages the energy delivery. When firefighters need to fire the projectile, the controller receives a command and transfers energy from the battery 3 to the electromagnetic generator, activating it and propelling the projectile. Through electromagnetic acceleration, the agent is accelerated to hit the wasp nest. This method is primarily used to deal with wasp nests located high up, such as those on tall buildings or in high trees, mitigating the threat posed by wasp nests to the public.
[0050] This utility model is not limited to the above-mentioned optional embodiments. Under the premise of non-contradiction, the various solutions can be combined arbitrarily. Anyone can derive other forms of products under the guidance of this utility model. However, no matter what changes are made in their shape or structure, all technical solutions that fall within the scope of the claims of this utility model are within the protection scope of this utility model.
Claims
1. An electromagnetic bee-killing gun, characterized in that: Including barrel assembly and gun body assembly; The barrel assembly includes a tube body, and an electromagnetic generator is installed inside the tube body to accelerate the bee-killing bullet inside the tube body using electromagnetic force. The gun assembly includes a housing fixed to the tube body. Inside the housing is a power supply component that supplies power to the electromagnetic generator. The power supply component includes a battery and a controller mounted on the housing. The battery supplies power to the electromagnetic generator through the controller.
2. The electromagnetic bee-killing gun according to claim 1, characterized in that: A sight is installed on the tube.
3. The electromagnetic bee-killing gun according to claim 2, characterized in that: The aiming device is a laser aiming device.
4. The electromagnetic bee-killing gun according to claim 1, characterized in that: The gun body assembly is also provided with a first firing protector and a second firing protector, both of which are communicatively connected to the controller.
5. An electromagnetic bee-killing gun according to claim 4, characterized in that: The first firing protector and the second firing protector are located at both ends of the gun body assembly, respectively.
6. The electromagnetic bee-killing gun according to claim 1, characterized in that: The gun assembly is also equipped with an identification device, which is communicatively connected to the controller.
7. An electromagnetic bee-killing gun according to claim 6, characterized in that: The identity recognition device is a fingerprint recognition device.
8. An electromagnetic bee-killing gun according to claim 1, characterized in that: The gun assembly is also equipped with a switch for controlling the range of the electromagnetic bee-killing gun, and the switch is communicatively connected to the controller.
9. An electromagnetic bee-killing gun according to claim 1, characterized in that: The gun body assembly is also equipped with a firing switch, which is communicatively connected to the controller.
10. An electromagnetic bee-killing gun according to claim 9, characterized in that: The gun assembly is also equipped with a master switch, which is connected in series between the battery and the controller.