Electromagnetic ejection soft bullet toy gun
By using a snap-fit connection between the electromagnetic coil gun barrel and the gun body components, the electromagnetic catapult soft bullet toy gun achieves long-range firing, solving the problems of short range and safety of existing toy guns, and improving the fun and safety of toy guns.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-03-13
AI Technical Summary
Most existing toy guns use springs to fire bullets, which have a short range and the hard bullets can easily cause injury. Air-pressure guns that fire soft bullets require charging time and lack fun.
The electromagnetic coil gun barrel and the gun body assembly are connected by a snap-fit mechanism. Electromagnetic ejection is achieved by triggering charging and discharging through elastic opening. The electromagnetic ejection of soft bullets is achieved by combining the snap-fit and disengagement operation of the electromagnetic coil gun barrel and the snap-fit part.
It increases the fun of toy guns by using electromagnetic catapults to launch soft bullets over long distances, avoiding the damage caused by hard bullets and enhancing the entertainment experience of toy guns.
Smart Images

Figure CN223992557U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic toy technology, and in particular to an electromagnetic catapult soft bullet toy gun. Background Technology
[0002] Toy guns are a popular toy among children. Most existing toy guns fire bullets using the elasticity of a spring. Because the springs in these guns have low elasticity, the bullets have a short range. Furthermore, toy guns that use springs typically use hard bullets (if they fire soft bullets, most of the energy is lost during contact between the spring and the bullet), which can easily cause injury to the player.
[0003] Currently, there are also toy guns on the market that can continuously fire cylindrical soft bullets (such as soft foam bullets). These guns utilize air pressure to propel the bullets. Such toy guns consist of a barrel, magazine, cylinder (with a loading tube at the front), piston, cylinder spring, locking pin, and locking pin spring. The loading tube on the cylinder pushes the cylindrical soft bullets from the magazine into the barrel, and the high-pressure gas generated by the cylinder and piston propels the bullets out of the barrel.
[0004] An electromagnetic railgun is a weapon that uses electromagnetic force to launch projectiles along a guide rail. It mainly consists of three parts: a power source, an electromagnetic accelerator, and a switch. Its principle is based on the interaction of magnetic fields between energized coils. The acceleration coil is fixed in the barrel. When current is passed through it, the generated magnetic field attracts the projectile to move along the direction of the coil, causing the projectile to accelerate and be launched.
[0005] Since electromagnetic guns require charging of their energy storage devices before firing projectiles, and this charging takes a certain amount of time, if the principle of electromagnetic guns could be combined with that of soft bullet guns, the energy storage devices could be charged simultaneously during the loading of the soft bullets. After loading, the projectiles could be discharged directly to launch them. This type of soft bullet launch would create a new form of electromagnetic soft bullet toy gun, increasing its fun factor.
[0006] Therefore, it is necessary to propose an electromagnetic catapult soft bullet toy gun to launch soft bullets in an electromagnetic catapult manner, so as to increase the fun of users. Utility Model Content
[0007] To address the aforementioned issues, this invention proposes an electromagnetic catapult soft bullet toy gun that uses electromagnetic catapults to launch soft bullets, thereby increasing the user's enjoyment.
[0008] This utility model is achieved through the following technical solution:
[0009] This utility model proposes an electromagnetic catapult soft bullet toy gun, including a gun body assembly, an electromagnetic coil gun rod, and a first trigger switch. One end of the electromagnetic coil gun rod is elastically connected to one end of the gun body assembly. The electromagnetic coil gun rod has a locking part that engages with the gun body assembly. The first trigger switch is fixedly connected inside the gun body assembly and close to the electromagnetic coil gun rod. Both the first trigger switch and the electromagnetic coil gun rod are electrically connected to the gun body assembly. After the locking part disengages from the gun body assembly, the electromagnetic coil gun rod elastically opens outward and touches the first trigger switch, thereby charging the gun body assembly.
[0010] Furthermore, one end of the electromagnetic coil gun barrel is elastically rotatably connected to one end of the gun body assembly.
[0011] Furthermore, one end of the electromagnetic coil gun barrel forms an elastic sliding connection with one end of the gun body assembly.
[0012] Furthermore, the gun assembly includes a housing, a boost circuit board, a power output module, and a battery. The boost circuit board, the power output module, the battery, and the first trigger switch are all fixedly connected inside the housing. The battery is electrically connected to the boost circuit board through the first trigger switch. The power output module is electrically connected to the boost circuit board. The electromagnetic coil gun barrel is electrically connected to the power output module. When the first trigger switch is touched, the boost circuit board charges the power output module.
[0013] Furthermore, the gun body assembly includes a firing switch assembly, and the electromagnetic coil gun barrel is electrically connected to the power output module through the firing switch assembly.
[0014] Furthermore, the firing switch assembly includes a trigger switch assembly, a second trigger switch, and a silicon controlled rectifier (SCR). The trigger switch assembly is connected in series with the second trigger switch, the battery, the SCR, the electromagnetic coil gun barrel, and the power output module. The second trigger switch is located near the electromagnetic coil gun barrel. After the second trigger switch engages with the gun body assembly at the locking point, the electromagnetic coil gun barrel touches the second trigger switch, causing the trigger switch assembly to trigger the conduction of the A and K terminals of the SCR, thereby causing the power output module to discharge the electromagnetic coil gun barrel.
[0015] Furthermore, the gun body assembly also includes a locking mechanism, one end of which is movably connected to the housing and forms a locking connection with the locking part, and the other end of which is movably connected to the housing and protrudes outside the housing.
[0016] Furthermore, the locking mechanism includes a locking member, a first elastic member, a pull rod, and a levering member. The locking member is slidably connected to the housing. One end of the locking member protrudes outside the housing and forms a locking connection with the locking portion. The other end of the locking member abuts against one end of the first elastic member, and the other end of the first elastic member abuts against the interior of the housing. The locking member is provided with a connecting post, which is rotatably connected to one end of the pull rod. The other end of the pull rod is rotatably connected to one end of the levering member, and the other end of the levering member is movably connected to the housing.
[0017] Furthermore, the electromagnetic coil gun barrel includes a gun barrel shell, an electromagnetic coil assembly, and a second elastic element. One end of the gun barrel shell is elastically connected to one end of the gun body assembly through the second elastic element. The first trigger switch is located near the gun barrel shell. The gun barrel shell is provided with a magazine groove. The electromagnetic coil assembly is arranged around the magazine groove and is electrically connected to the gun body assembly.
[0018] The beneficial effects of this utility model are:
[0019] This invention uses a gun body assembly as the power supply and mounting structure, an electromagnetic coil gun barrel as the projectile launching mechanism, a first trigger switch as the charging switch, and an electromagnetically propelled soft bullet as the electromagnetic projectile. The electromagnetic coil gun barrel has a locking part; when loading, the locking part disengages from the gun body assembly, causing the electromagnetic coil gun barrel to elastically open outwards and touch the first trigger switch, thus charging the gun body assembly and simultaneously loading a single electromagnetically propelled soft bullet. After loading, the locking part re-engages with the gun body assembly, allowing the gun body assembly to discharge to the electromagnetic coil gun barrel, causing the electromagnetic coil gun barrel to electromagnetically launch the electromagnetically propelled soft bullet. In summary, this electromagnetic projectile toy gun can launch soft bullets electromagnetically, increasing the user's enjoyment. Attached Figure Description
[0020] Figure 1 This is an exploded view of the electromagnetic catapult soft bullet toy gun and the soft bullet of this utility model.
[0021] Figure 2 This is a cross-sectional view of the electromagnetic catapult soft bullet toy gun and soft bullet of this utility model.
[0022] Figure 3 This is a schematic diagram of the electromagnetic catapult soft bullet toy gun of this utility model.
[0023] Figure 4 This is a schematic diagram of the electromagnetic catapult soft bullet toy gun of this utility model when the electromagnetic coil gun barrel is opened;
[0024] Figure 5 This is a schematic diagram of the electromagnetic coil barrel of the electromagnetic catapult soft bullet toy gun of this utility model.
[0025] The attached figures are labeled as follows:
[0026] Gun body assembly 1, housing 11, boost circuit board 12, power output module 13, battery 14, firing switch assembly 15, trigger switch assembly 151, push switch 1511, trigger slider 1512, second trigger switch 152, thyristor element 153, locking mechanism 16, locking piece 161, connecting post 1611, first elastic element 162, pulling rod 163, and lever 164;
[0027] Electromagnetic coil gun barrel 2, locking part 21, gun barrel shell 22, magazine 221, electromagnetic coil assembly 23, second elastic element 24;
[0028] First trigger switch 3;
[0029] Electromagnetic propulsion soft projectile 4, soft projectile body 41, magnetic metal core 42;
[0030] Electronic voltmeter 5;
[0031] Battery level display module 6. Detailed Implementation
[0032] To more clearly and completely illustrate the technical solution of this utility model, the following description, in conjunction with the accompanying drawings, will further explain this utility model.
[0033] Please refer to Figures 1-5 This utility model proposes an electromagnetic catapult soft bullet toy gun, including a gun body assembly 1, an electromagnetic coil gun rod 2, and a first trigger switch 3. One end of the electromagnetic coil gun rod 2 is elastically connected to one end of the gun body assembly 1. The electromagnetic coil gun rod 2 is provided with a locking part 21, which is engaged with the gun body assembly 1. The first trigger switch 3 is fixedly connected inside the gun body assembly 1 and close to the electromagnetic coil gun rod 2. Both the first trigger switch 3 and the electromagnetic coil gun rod 2 are electrically connected to the gun body assembly 1. After the locking part 21 is disengaged from the gun body assembly 1, the electromagnetic coil gun rod 2 elastically opens outward and touches the first trigger switch 3, thereby charging the gun body assembly 1.
[0034] In this embodiment, the overall structure uses the gun body assembly 1 as the power supply and installation structure, the electromagnetic coil gun rod 2 as the soft bullet ejection structure, and the first trigger switch 3 as the charging switch. The electromagnetic coil gun rod 2 is provided with a locking part 21. When it is necessary to load a bullet, the locking part 21 is disengaged from the gun body assembly 1, and the electromagnetic coil gun rod 2 opens outward due to its own elasticity. At this time, the electromagnetic coil gun rod 2 can be folded outward at a preset angle or slide outward a preset distance to make room for the locking part 21. At this time, the electromagnetic coil gun rod 2 fires outward due to its elasticity. When the first trigger switch 3 is activated, the gun assembly 1 is charged. Simultaneously, a single electromagnetic propulsion soft bullet 4 is loaded. During loading, the single electromagnetic propulsion soft bullet 4 is inserted into the electromagnetic coil gun rod 2, with the tail of the electromagnetic propulsion soft bullet 4 aligned with the end of the electromagnetic coil gun rod 2. At this point, loading is complete. After loading the electromagnetic propulsion soft bullet 4, the locking part 21 needs to be re-engaged with the gun assembly 1. Then, the gun assembly 1 can discharge to the electromagnetic coil gun rod 2, causing the electromagnetic coil gun rod 2 to electromagnetically eject the electromagnetic propulsion soft bullet 4.
[0035] In this embodiment, one end of the electromagnetic coil gun rod 2 is elastically rotatably connected to one end of the gun body assembly 1. When loading a bullet, the locking part 21 is disengaged from the gun body assembly 1, and the electromagnetic coil gun rod 2 flips outward at a preset angle due to its elasticity. At this time, the electromagnetic coil gun rod 2 forms an angle with the gun body assembly 1 to make room for loading the bullet. While the electromagnetic coil gun rod 2 flips outward, it also touches the first trigger switch 3, causing the gun body assembly 1 to be charged. During charging, a single electromagnetic propulsion soft bullet 4 can be loaded onto the electromagnetic coil gun rod 2. At the same time as loading is completed, the gun body assembly 1 is also fully charged. At this time, the electromagnetic coil gun rod 2 needs to be pressed towards the gun body assembly 1, causing the electromagnetic coil gun rod 2 to rotate towards the gun body assembly 1, and finally causing the locking part 21 to re-engage with the gun body assembly 1. Then, the electromagnetic coil gun rod 2 can be discharged through the gun body assembly 1.
[0036] In this embodiment, one end of the electromagnetic coil gun rod 2 is elastically slidably connected to one end of the gun body assembly 1. When loading a bullet, the locking part 21 is disengaged from the gun body assembly 1, and the electromagnetic coil gun rod 2 slides outward a preset distance due to its elasticity. At this time, the electromagnetic coil gun rod 2 slides outward a preset distance relative to the gun body assembly 1 to make room for loading the bullet. While the electromagnetic coil gun rod 2 slides outward a preset distance, it also touches the first trigger switch 3, causing the gun body assembly 1 to be charged. During charging, a single electromagnetic propulsion soft bullet 4 can be loaded onto the electromagnetic coil gun rod 2. At the same time as loading is completed, the gun body assembly 1 is also fully charged. At this time, the electromagnetic coil gun rod 2 needs to be pushed towards the gun body assembly 1, so that the electromagnetic coil gun rod 2 slides back towards the gun body assembly 1, and finally the locking part 21 re-engages with the gun body assembly 1. Then, the electromagnetic coil gun rod 2 can be discharged through the gun body assembly 1.
[0037] In this embodiment, the gun assembly 1 includes a housing 11, a boost circuit board 12, a power output module 13, and a battery 14. The boost circuit board 12, the power output module 13, the battery 14, and the first trigger switch 3 are all fixedly connected inside the housing 11. The battery 14 is electrically connected to the boost circuit board 12 via the first trigger switch 3. The power output module 13 is also electrically connected to the boost circuit board 12. The electromagnetic coil gun barrel 2 is electrically connected to the power output module 13. When the first trigger switch 3 is touched, the boost circuit board 12 charges the power output module 13. The battery 14 is a lithium battery. The boost circuit board 12 is used to charge the power output module 13. The power output module 13 includes a capacitor and a freewheeling diode. One end of the freewheeling diode is connected to the capacitor. The positive terminal is electrically connected, and the other end of the freewheeling diode is electrically connected to the positive terminal of the high voltage output of the boost circuit board 12. The negative terminal of the high voltage output of the boost circuit board 12 is electrically connected to the negative terminal of the capacitor. During charging, the battery 14 supplies power to the boost circuit board 12. The boost circuit board 12 boosts the power supplied by the battery 14 to a high voltage and then charges the power output module 13, that is, it charges the capacitor at this time. The gun body assembly 1 also includes an electronic voltmeter 5 and a power display module 6. The electronic voltmeter 5 is electrically connected to the power output module 13 and the boost circuit board 12 respectively. The electronic voltmeter 5 is used to measure the charging voltage of the power output module 13. The power display module 6 is electrically connected to the battery 14 and is used to display the power of the battery 14.
[0038] In this embodiment, the gun body assembly 1 is provided with a firing switch assembly 15, and the electromagnetic coil gun rod 2 is electrically connected to the power output module 13 through the firing switch assembly 15. After the power output module 13 is fully charged, the user can operate the firing switch assembly 15 to control the power output module 13 to discharge the electromagnetic coil gun rod 2.
[0039] In this embodiment, the firing switch assembly 15 includes a trigger switch assembly 151, a second trigger switch 152, and a silicon controlled rectifier (SCR) element 153. The trigger switch assembly 151 is connected in series with the second trigger switch 152, the battery 14, the SCR element 153, the electromagnetic coil gun barrel 2, and the power output module 13. The second trigger switch 152 is close to the electromagnetic coil gun barrel 2. After it is engaged with the gun body assembly 1 at the locking part 21, the electromagnetic coil gun barrel 2 touches the second trigger switch 152, causing the trigger switch assembly 151 to trigger the conduction of the A and K terminals of the SCR element 153, thereby causing the power output module 13 to discharge the electromagnetic coil gun barrel 2. The trigger switch assembly 151 includes a push switch 1511 and a trigger latch. Part 1512, trigger latch 1512 is in contact with push switch 1511. The user can trigger push switch 1511 to open by sliding trigger latch 1512. Battery 14 not only supplies power to boost circuit board 12, but also needs to be connected to push switch 1511. The gate (G) of SCR element 153 is electrically connected to the positive terminal of battery 14 through push switch 1511. When the user presses and slides trigger latch 1512, push switch 1511 is triggered, making the gate (G) of SCR element 153 conduct with the positive terminal of battery 14. Battery 14 is a 12V battery, which in turn makes the a and k terminals of SCR element 153 conduct, thereby causing power output module 13 to discharge to electromagnetic coil gun rod 2.
[0040] In this embodiment, the gun body assembly 1 further includes a locking mechanism 16. One end of the locking mechanism 16 is movably connected to the housing 11 and forms a locking connection with the locking part 21. The other end of the locking mechanism 16 is movably connected to the housing 11 and protrudes from the outside of the housing 11. The locking mechanism 16 is used to lock the locking part 21, and can also allow the user to control the locking part 21 to disengage from the locking connection. When it is necessary to load a bullet, the locking mechanism 16 protruding from the housing 11 can be pried or pulled to disengage the locking mechanism 16 from the locking part 21.
[0041] In this embodiment, the locking mechanism 16 includes a locking member 161, a first elastic member 162, a pull rod 163, and a lever 164. The locking member 161 is slidably connected to the housing 11. One end of the locking member 161 protrudes from the housing 11 and forms a locking connection with the locking part 21. The other end of the locking member 161 abuts against one end of the first elastic member 162, and the other end of the first elastic member 162 abuts against the interior of the housing 11. The locking member 161 is provided with a connecting post 1611, which is rotatably connected to one end of the pull rod 163. The other end of the pull rod 163 is rotatably connected to one end of the lever 164, and the other end of the lever 164 is movably connected to the housing 11. Specifically, the other end of the lever 164 can be rotatably connected to the housing 11, and the other end of the lever 164 can also be slidably connected to the housing 11. When it is necessary to spring back up... Then, the lever 164 can be pulled or bent, causing the lever 163 to pull the latch 161 backward. When the latch 161 is backward, the end of the latch 161 extending out of the housing is disengaged from the latching part 21, causing the electromagnetic coil gun rod 2 to open outward under its own elasticity. During the backward movement of the latch 161, the first elastic element 162 is compressed and stores force. After the electromagnetic coil gun rod 2 opens outward, the user can release the pulling or bending of the lever 164. Under the rebound force of the first elastic element 162, both the lever 164 and the latch 161 are reset, and one end of the latch 161 extends out of the housing 11 again. At the same time, the user can also load the latching part 21. After loading, the latching part 21 can be re-engaged with the end of the latch 161 extending out of the housing 11.
[0042] In this embodiment, the electromagnetic coil gun barrel 2 includes a gun barrel shell 22, an electromagnetic coil assembly 23, and a second elastic element 24. One end of the gun barrel shell 22 is elastically connected to one end of the gun body assembly 1 via the second elastic element 24. The locking part 21 can be located on the other end of the gun barrel shell 22 or on one side of the gun barrel shell 22. The first trigger switch 3 is close to the gun barrel shell 22. The gun barrel shell 22 is provided with a magazine 221. The electromagnetic coil assembly 23 is arranged around the magazine 221 and is electrically connected to the gun body assembly 1. The electromagnetic coil assembly 23 includes a coil and an FR607 diode. The coil and the FR607 diode are connected in parallel. One terminal of the coil is electrically connected to the positive terminal of the power output module 13 via a conductive wire, and the other terminal of the coil is connected to the thyristor element 153 via a conductive wire. The A-pole is electrically connected. The second elastic element 24 can be a coil spring or a telescopic spring. If the second elastic element 24 is a coil spring, the barrel shell 22 needs to be rotatably connected to the housing 11. When it is necessary to load a cartridge, the locking part 21 is disengaged from the gun body assembly 1, and the barrel shell 22 is opened by flipping outward at a preset angle through the coiling and relaxing elasticity of the second elastic element 24. At this time, the barrel shell 22 is at an angle to the gun body assembly 1. If the second elastic element 24 is a telescopic spring, the barrel shell 22 needs to be slidably connected to the housing 11. When it is necessary to load a cartridge, the locking part 21 is disengaged from the gun body assembly 1, and the barrel shell 22 is opened by sliding outward at a preset distance through the relaxing elasticity of the second elastic element 24. At this time, the barrel shell 22 has slid outward a preset distance relative to the gun body assembly 1.
[0043] Please refer to Figures 1-2 A soft bullet, according to the above-mentioned electromagnetic catapult soft bullet toy gun, includes an electromagnetically propelled soft bullet 4 for electromagnetic catapult launch within the electromagnetic catapult soft bullet toy gun. The electromagnetically propelled soft bullet 4 includes a soft bullet body 41 and a magnetic metal core 42. The magnetic metal core 42 is fixedly connected within the soft bullet body 41. The magnetic metal core 42 can be a spherical structure or a cylindrical structure. A cylindrical structure is the optimal structure for the soft bullet body 41. The optimal position is for the magnetic metal core 42 to be fixedly connected to the central axis of the soft bullet body 41.
[0044] In this embodiment, the electromagnetic propulsion soft projectile 4 uses a magnetic metal core 42 fixedly connected inside the soft projectile body 41. When the electromagnetic coil gun rod 2 ejects the electromagnetic propulsion soft projectile 4, the magnetic metal core 42 can be attracted and ejected by magnetic force. During the ejection and impact of the target, the soft projectile body 41 has a good buffering effect, which can prevent the external object hit from being damaged.
[0045] In summary, this electromagnetic catapult soft bullet toy gun can launch soft bullets using electromagnetic catapults, thereby increasing the user's enjoyment.
[0046] Of course, there may be other implementations of this utility model. Based on this implementation, other implementations obtained by those skilled in the art without any creative effort are all within the scope of protection of this utility model.
Claims
1. An electromagnetic soft-launch toy gun, characterized by, The gun body assembly, the electromagnetic coil gun rod, the first trigger switch, one end of the electromagnetic coil gun rod is connected with one end of the gun body assembly to form a flexible movable connection, the electromagnetic coil gun rod is provided with a clamping part, the clamping part is connected with the gun body assembly to form a clamping connection, the first trigger switch is fixedly connected in the gun body assembly and is close to the electromagnetic coil gun rod, the first trigger switch and the electromagnetic coil gun rod are electrically connected with the gun body assembly, after the clamping part is separated from the clamping connection with the gun body assembly, the electromagnetic coil gun rod is opened outward by elasticity and touches the first trigger switch, so that the gun body assembly is charged.
2. The electromagnetic soft-launch toy gun of claim 1, wherein, One end of the electromagnetic coil gun rod is connected with one end of the gun body assembly to form a flexible rotating connection.
3. The electromagnetic soft-launch toy gun of claim 1, wherein, One end of the electromagnetic coil gun rod is connected with one end of the gun body assembly to form a flexible sliding connection.
4. The electromagnetic soft-nosed toy gun of claim 1, wherein, The gun body assembly includes a shell, a boost circuit board, an electric energy output module, a battery, the boost circuit board, the electric energy output module, the battery, the first trigger switch are fixedly connected in the shell, the battery is electrically connected with the boost circuit board through the first trigger switch, the electric energy output module is electrically connected with the boost circuit board, the electromagnetic coil gun rod is electrically connected with the electric energy output module, when the first trigger switch is touched, the boost circuit board charges the electric energy output module.
5. The electromagnetic soft-launch toy gun of claim 4, wherein, The gun body assembly is provided with a firing switch assembly, the electromagnetic coil gun rod is electrically connected with the electric energy output module through the firing switch assembly.
6. The electromagnetic soft-launch toy gun of claim 5, wherein, The firing switch assembly includes a trigger switch assembly, a second trigger switch, a silicon controlled element, the trigger switch assembly is connected with the second trigger switch, the battery, the silicon controlled element, the electromagnetic coil gun rod, the electric energy output module in series, the second trigger switch is close to the electromagnetic coil gun rod, after the clamping part is connected with the gun body assembly, the electromagnetic coil gun rod touches the second trigger switch, so that the trigger switch assembly can trigger the A pole and the K pole of the silicon controlled element to be conductive, thereby making the electric energy output module discharge the electromagnetic coil gun rod.
7. The electromagnetic soft-launch toy gun of claim 4, wherein, The gun body assembly further includes a clamping mechanism, one end of the clamping mechanism is movably connected with the shell and forms a clamping connection with the clamping part, the other end of the clamping mechanism is movably connected with the shell and protrudes outside the shell.
8. The electromagnetic soft-launch toy gun of claim 7, wherein, The clamping mechanism includes a clamping piece, a first elastic piece, a pulling rod, a pulling piece, the clamping piece is slidably connected with the shell, one end of the clamping piece protrudes outside the shell and forms a clamping connection with the clamping part, the other end of the clamping piece abuts one end of the first elastic piece, the other end of the first elastic piece abuts the inside of the shell, the clamping piece is provided with a connecting column, the connecting column is rotatably connected with one end of the pulling rod, the other end of the pulling rod is rotatably connected with one end of the pulling piece, the other end of the pulling piece is movably connected with the shell.
9. The electromagnetic soft-nosed toy gun of claim 2, wherein, The electromagnetic coil gun barrel comprises a barrel shell, an electromagnetic coil assembly and a second elastic member, one end of the barrel shell is movably connected with one end of the gun body assembly through the second elastic member, the first trigger switch is close to the barrel shell, a bullet releasing groove is arranged in the barrel shell, and the electromagnetic coil assembly is arranged around the bullet releasing groove and electrically connected with the gun body assembly.