Shell-throwing soft bullet gun toy

Through the combination of aerodynamic components and shell-extrusion spring, the shell-extrusion effect of the soft-forward toy gun is achieved, solving the problem of the existing soft-forward toy gun lacking shell-extrusion function, and improving the vividness and operation experience of the toy gun.

CN223050539UActive Publication Date: 2025-07-01SHANTOU HENNGLE ANIMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520962796.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2025-07-01
Estimated Expiration
2035-05-16

AI Technical Summary

Technical Problem

The existing soft-bomb toy gun lacks the function of simulating the real gun throwing shell, resulting in insufficient player operation experience.

Method used

A soft shell gun toy is designed to push out the soft shell through the aerodynamic components, and a shell spring is used to swing the rear end of the gun head upwards, and the shell is thrown out to achieve the shell throw effect.

Benefits of technology

It enhances the fidelity and operating ritual of the toy gun, providing a stronger sense of substitution and operation experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a shell-throwing soft bullet gun toy which comprises a gun head, a gun handle, a shell-throwing spring, a bullet shell, a soft bullet and an air power assembly, the gun head is hinged to the front end of the gun handle, the shell-throwing spring is elastically connected between the gun head and the gun handle, a muzzle is arranged at the front end of the gun head, a gun bore is arranged at the rear end of the gun head, the muzzle is communicated with the gun bore, and the diameter of the muzzle is smaller than that of the gun bore. A filling groove is formed in the front end of the cartridge case, the soft bullet is slidably connected into the filling groove, the diameter of the cartridge case corresponds to the bore, the diameter of the soft bullet is smaller than that of the muzzle, the aerodynamic assembly is fixedly connected into the gun handle, and the output end of the aerodynamic assembly can be communicated with the filling groove from the rear end of the cartridge case through an air pipe. The rear end of the gun head can be thrown upwards to throw out the cartridge case in the gun bore upwards.
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Description

Technical Field

[0001] The utility model relates to the field of toys, and particularly relates to a shell - ejecting soft bullet gun toy. Background Art

[0002] Soft bullet toy guns are a creative combination of simulation and safety, and are a category of simulation toys that have been highly sought after in recent years. Most of these toys are made of ABS engineering plastics and nylon materials, with a weight close to that of real guns and yet durable. Some high - end models are equipped with detachable magazines, telescopic stocks and other modular accessories. By replicating the shape and firing experience of real guns, their applicable scenarios cover outdoor shooting games, tactical training assistance and collection display, and are particularly favored by military enthusiasts and survival game players. As a simulation toy that combines fun and safety, soft bullet guns are becoming an innovative carrier for juvenile science popularization education and adult leisure entertainment. The core design of soft bullet toy guns mostly uses springs, paired with reloadable soft bullets, such as EVA sponge bullets or silicone bullets. When firing, there is no friction between metal parts, and the initial velocity is controlled within a safe range, effectively avoiding accidental injury. To further simulate and restore the real gun shell - ejection process, a structure capable of ejecting cartridges is designed to give players a stronger sense of immersion and operating ritual. Content of the Utility Model

[0003] To solve the above - mentioned technical problems, the utility model provides a shell - ejecting soft bullet gun toy, the rear end of whose gun head can swing upwards to eject the cartridge located in the gun chamber upwards.

[0004] The technical solution of the utility model is: a shell - ejecting soft bullet gun toy, which includes a gun head, a gun handle, a shell - ejecting spring, a cartridge, a soft bullet and an air - power component. The gun head is hinged to the front end of the gun handle, the shell - ejecting spring is elastically connected between the gun head and the gun handle. The front end of the gun head is provided with a muzzle, the rear end of the gun head is provided with a gun chamber, the muzzle is communicated with the gun chamber, the diameter of the muzzle is smaller than that of the gun chamber, the front end of the cartridge is provided with a loading groove, the soft bullet is slidably connected in the loading groove, the diameter of the cartridge corresponds to that of the gun chamber, the diameter of the soft bullet is smaller than that of the muzzle, the air - power component is fixedly connected in the gun handle, and the output end of the air - power component can be communicated with the loading groove from the rear end of the cartridge through an air pipe.

[0005] Further, the shell - ejecting spring is a torsion spring, the hinged part between the gun head and the gun handle is a cylindrical structure, the torsion spring is sleeved on the cylindrical structure, the head and tail ends of the torsion spring are two torsion bars, and the two torsion bars are abutted against each other up and down between the gun head and the gun handle.

[0006] Further, a horizontal sliding groove is arranged in the gun handle, a lock catch is slidably connected in the sliding groove, a first spring is elastically connected between the front end of the lock catch and the gun handle, the upper end of the lock catch is a horizontally protruding trapezoidal structure, a lock groove is arranged at the lower end of the gun head, and the trapezoidal structure can be horizontally buckled into the lock groove, and the rear end of the lock catch protrudes from the gun handle.

[0007] Further, the aerodynamic component includes a cylinder, a piston, a second spring, and a clamping component. The cylinder is fixedly connected inside the gun handle. The piston is slidably connected inside the cylinder. An air chamber is formed between the piston and the cylinder. The front end of the air chamber can communicate with the loading groove from the rear end of the cartridge case through a trachea. The second spring is elastically connected between the rear end of the piston and the gun handle. A pull ring protruding from the rear end of the gun handle is provided at the rear end of the piston. The diameter of the pull ring is larger than that of the piston. The middle part of the clamping component is rotatably connected inside the gun handle. The front end of the clamping component is elastically connected to the gun handle. The rear end of the clamping component can approach the side of the piston and abut against the pull ring front and back.

[0008] Further, it further includes a tension spring. The front end of the tension spring is connected inside the gun handle on the side of the cylinder, and the rear end of the tension spring is connected to the side of the pull ring.

[0009] Further, the rear end of the piston is a hollow structure, and the second spring is located inside the hollow structure.

[0010] Further, a guide post is provided at the rear end inside the gun handle, and the second spring is sleeved on the guide post.

[0011] Further, the clamping component includes a support plate and a third spring. The middle part of the support plate is rotatably connected inside the gun handle. The front end of the support plate is elastically connected to the gun handle through the third spring. The rear end of the support plate can approach the side of the piston and abut against the pull ring front and back.

[0012] Further, a buckle is provided on the side of the rear end of the support plate. One side of the buckle facing the middle of the support plate is a slope, and the pull ring can slide over the slope.

[0013] Further, it further includes a trigger. The trigger is rotatably connected inside the gun handle. A notch is provided on the lower side of the gun handle. The lower end of the trigger extends out from the notch. The front side of the trigger can abut against the notch, and the rear side of the trigger can abut against the front side of the support plate.

[0014] Further, a guard ring is provided at the lower end of the gun handle. Both the lock catch and the trigger are located inside the guard ring.

[0015] Further, a suction cup is provided at the front end of the soft bullet.

[0016] Compared with the prior art, the advantages of the present utility model are as follows: Under the action of the aerodynamic component, the aerodynamic component forms an instantaneous air pressure to push the soft bullet out of the loading groove of the cartridge case, and the soft bullet shoots out from the front end of the gun head along the muzzle direction. When the pressing action on the gun head is released, under the action of the cartridge ejection spring, the gun head rotates around the hinge point, forming an action of the rear end of the gun head swinging up, and the cartridge case located in the gun chamber at the rear end of the gun head is thrown out upward, generating a realistic effect of cartridge ejection. Description of the Drawings

[0017] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0018] Figure 1 is a schematic structural diagram of the present invention;

[0019] Figure 2 is a schematic structural principle diagram of the present invention;

[0020] Figure 3 is Figure 2 an enlarged view of part A in

[0021] Figure 4 is a schematic working principle diagram of the present invention;

[0022] Figure 5 is a diagram of the card punching state of the present invention;

[0023] Figure 6 is a diagram of the usage state of the present invention.

[0024] Wherein: 1, gun head; 101, gun barrel; 102, muzzle; 103, lock groove; 104, groove; 2, gun handle; 201, sliding groove; 202, notch; 3, magazine; 4, cartridge case; 401, air hole; 402, loading groove; 5, soft bullet; 501, suction cup; 6, cylindrical structure; 7, torsion spring; 701, torsion rod; 8, air cylinder; 9, piston; 901, hollow structure; 10, second spring; 11, pull ring; 12, guide post; 13, tension spring; 14, support plate; 1401, buckle; 15, third spring; 16, lock; 1601, trapezoidal structure; 17, first spring; 18, trigger; 19, guard ring; 20, air pipe; 21, air chamber. Specific Embodiments

[0025] To further elaborate on the technical means and effects adopted by the present invention to achieve the intended invention purpose, the following, in combination with the attached drawings and preferred embodiments, details the specific embodiments, structures, features and their effects of the present invention as follows.

[0026] Such as Figures 1-6As shown in the figure, a shell ejection soft bullet gun toy includes a gun head 1, a gun grip 2, a shell ejection spring, a cartridge case 4, a soft bullet 5, and an air power component. The gun head 1 is hinged to the front end of the gun grip 2, and the shell ejection spring is elastically connected between the gun head 1 and the gun grip 2 to support the gun head 1. A muzzle 102 is provided at the front end of the gun head 1, and a gun chamber 101 is provided at the rear end of the gun head 1. The muzzle 102 communicates with the gun chamber 101, and the diameter of the muzzle 102 is smaller than that of the gun chamber 101. A loading groove 402 is provided at the front end of the cartridge case 4, and an air hole 401 is provided at the rear end of the cartridge case 4. The soft bullet 5 is slidably connected to the loading groove 402, and the soft bullet 5 can be inserted into the loading groove 402 by slight extrusion. There is a certain frictional force between the soft bullet 5 and the loading groove 402, avoiding the situation that the soft bullet 5 is easily ejected. The diameter of the cartridge case 4 corresponds to that of the gun chamber 101, and the diameter of the soft bullet 5 is smaller than that of the muzzle 102. The air power component is fixedly connected to the gun grip 2. After pressing down the gun head 1 and compressing the shell ejection spring, the muzzle 102 and the gun chamber 101 are linearly connected. The output end of the air power component can communicate with the loading groove 402 through the air hole 401 at the rear end of the cartridge case 4 through a trachea 20. Under the action of the air power component, the air power component forms an instantaneous air pressure to eject the soft bullet 5 from the loading groove 402 of the cartridge case 4, and the soft bullet 5 is shot out from the front end of the gun head 1 along the direction of the muzzle 102. At this time, if the pressing action on the gun head 1 is released, under the action of the shell ejection spring, the gun head 1 rotates around the hinge, forming an action of the rear end of the gun head 1 swinging up, and the cartridge case 4 located in the gun chamber 101 at the rear end of the gun head 1 is thrown upward, producing a realistic effect of shell ejection.

[0027] In the above embodiments, the ejection spring is a torsion spring 7. The hinge joint between the gun head 1 and the gun handle 2 is a cylindrical structure 6. The torsion spring 7 is sleeved on the cylindrical structure 6. The head and tail ends of the torsion spring 7 are two torsion rods 701. The two torsion rods 701 are in contact with each other up and down between the gun head 1 and the gun handle 2, so that an angle of about 45° is formed between the gun head 1 and the gun handle 2, which is convenient for loading the cartridge case 4 carrying the soft bullet 5 into the loading groove 402. A groove 104 is provided at the lower end of the gun head 1 for the torsion rod 701 to be embedded, so as to prevent the torsion rod 701 from shifting during the torsional deformation of the torsion spring 7, resulting in unstable support. After the torsion spring 7 fully supports the gun head 1, in front of the hinge joint, the lower end of the gun head 1 rotates and abuts against the front end of the gun handle 2 to form a limit and support, so that the gun head 1 remains stable in the open state. A horizontal sliding groove 201 is provided in the gun handle 2. A latch 16 is slidably connected in the sliding groove 201. A first spring 17 is elastically connected between the front end of the latch 16 and the gun handle 2. The upper end of the latch 16 is a horizontally protruding trapezoidal structure 1601. A locking groove 103 is provided at the lower end of the gun head 1. The trapezoidal structure 1601 can be horizontally buckled into the locking groove 103, and through the reaction force of the torsion spring 7, the trapezoidal structure 1601 and the position where the locking groove 103 is located are in contact with each other up and down, forming a state where the gun head 1 is closed. The rear end of the latch 16 protrudes upward from the gun handle 2, which is convenient for the latch 16 to extend into the locking groove 103. During the process of the gun head 1 rotating downward to close, the edge of the locking groove 103 slides against the inclined surface of the trapezoidal structure 1601, horizontally pushing the trapezoidal structure 1601 and compressing the first spring 17. After the edge of the locking groove 103 completely crosses the inclined surface of the trapezoidal structure 1601, the first spring 17 pushes the latch 16 to reset horizontally, hooking the gun head 1 downward through the locking groove 103, so that the gun head 1 remains stable in the closed state.

[0028] The aerodynamic component includes an air cylinder 8, a piston 9, a second spring 10 and a clamping component. The air cylinder 8 is fixedly connected inside the gun handle 2. The piston 9 is slidably connected inside the air cylinder 8. An air chamber 21 is formed between the piston 9 and the air cylinder 8. The front end of the air chamber 21 can be communicated with the loading groove 402 from the rear end of the cartridge case 4 through a trachea 20. The second spring 10 is elastically connected between the rear end of the piston 9 and the gun handle 2. A pull ring 11 protruding from the rear end of the gun handle 2 is provided at the rear end of the piston 9. The diameter of the pull ring 11 is larger than that of the piston 9. The middle part of the clamping component is rotatably connected inside the gun handle 2. The front end of the clamping component is elastically connected to the gun handle 2. The rear end of the clamping component can approach the side of the piston 9 and abut against the pull ring 11 front and back. By pulling the piston 9 through the pull ring 11, the space of the air chamber 21 can be increased, and at the same time, the second spring 10 is compressed for energy storage. And when the pull ring 11 moves forward and crosses the clamping component, the clamping component temporarily holds the pull ring 11 and maintains the energy storage state of the second spring 10. When the clamping component is released and the pull ring 11 is released, the reaction force provided by the second spring 10 forms an instant high pressure in the air chamber 21, and the pressure is transmitted to the loading groove 402 through the trachea 20 to quickly eject the soft bullet 5. A pull spring 13 is also provided inside the gun handle 2. The front end of the pull spring 13 is connected inside the gun handle 2 on the side of the air cylinder 8, and the rear end of the pull spring 13 is connected to the side of the pull ring 11. The pull spring 13 provides an auxiliary enhancement effect for the second spring 10 and also serves as a double insurance for the energy storage function, further improving the impact force of the piston 9 when the pull ring 11 is released, so as to form a higher instantaneous air pressure in the air chamber 21 and increase the speed when the soft bullet 5 is ejected. The rear end of the piston 9 is a hollow structure 901. The second spring 10 is located inside the hollow structure 901, providing installation and protection for the second spring 10 to prevent the moving second spring 10 from slipping out of the designated position and causing the energy storage function to fail. A guide post 12 is provided at the rear end inside the gun handle 2. The second spring 10 is sleeved on the guide post 12, further providing limit and guidance for the second spring 10 to prevent the second spring 10 from being twisted and deformed inside the hollow structure 901 and causing the energy storage function to fail or decrease.

[0029] The clamping component includes a support plate 14 and a third spring 15. The middle part of the support plate 14 is rotatably connected inside the gun handle 2. The front end of the support plate 14 is elastically connected to the gun handle 2 through the third spring 15. The rear end of the support plate 14 can approach the side of the piston 9 and abut against the pull ring 11 front and back. Under the opening action of the third spring 15, the side surface of the rear end of the support plate 14 always abuts against the side surface of the piston 9 or the pull ring 11. When the support plate 14 and the pull ring 11 are in a state of abutting front and back, the rear end of the support plate 14 is not easy to come out, ensuring the stable state of the energy storage compression of the second spring 10. A buckle 1401 is provided on the side surface of the rear end of the support plate 14. One side of the buckle 1401 facing the middle of the support plate 14 is a slope. The pull ring 11 can abut against the side surface of the support plate 14 and slide over the slope. After passing over, under the opening action of the third spring 15, the buckle 1401 immediately abuts against the side surface of the piston 9 again to provide support for the pull ring 11.

[0030] A trigger 18 is further provided inside the gun handle 2. The trigger 18 is rotatably connected inside the gun handle 2. A notch 202 is provided on the lower side of the gun handle 2. The lower end of the trigger 18 extends out from the notch 202. The front side of the trigger 18 can abut against the notch 202, and the rear side of the trigger 18 can abut against the front side of the support plate 14. The trigger 18 is equivalent to the firing switch of the soft bullet 5. When the trigger 18 is pulled, the trigger 18 pushes the front side of the support plate 14 and compresses the third spring 15. The buckle 1401 at the rear end of the support plate 14 releases the pull ring 11 and releases the piston 9, thereby pushing out the soft bullet 5. When the trigger 18 is released, under the reaction force of the third spring 15, the support plate 14 pushes out the trigger 18, so that the trigger 18 leans on and stays in front of the notch 202. A guard ring 19 is provided at the lower end of the gun handle 2. Both the lock catch 16 and the trigger 18 are located inside the guard ring 19, which can not only make the shape of the toy gun more rich and complete, but also provide protection for the lock catch 16 and the trigger 18 to prevent accidental touch from causing the gun head 1 to pop out or the soft bullet 5 to be fired. A suction cup 501 is provided at the front end of the soft bullet 5. When the soft bullet 5 hits an object such as glass, it can be adsorbed, and more playing methods can be realized and unlocked. A magazine 3 is provided on the side of the gun handle 2, which can store the soft bullets 5 and the cartridges 4 for convenient access. The magazine 3 is a hollow ring or three-quarter ring. The cartridge 4 can be inserted downward and hung on the ring, and the soft bullet 5 can be inserted downward and hung on the three-quarter ring. At the same time, the soft bullet 5 can be taken and placed from the side of the three-quarter ring, which is convenient and fast.

[0031] Description of the working mode of the present utility model:

[0032] The soft bullet 5 is loaded upside down into the loading groove 402 at the front end of the cartridge case 4, the gun handle 2 is held by hand and the lock buckle 16 is pushed forward with the index finger, the lock buckle 16 is disengaged from the lock groove 103, and the gun head 1 is supported upward by the torsion spring 7. At this time, the cartridge case 4 carrying the soft bullet 5 can be filled into the gun chamber 101, and the gun head 1 is closed downward again, the lock groove 103 is hooked by the lock buckle 16, and the loading groove 402 is connected with the air chamber 21; by manually pulling the pull ring 11, the second spring 10 is compressed and the tension spring 13 is pulled apart at the same time, so that the second spring 10 and the tension spring 13 are both kept in the state of storing force. After the tension spring 13 passes over the buckle 1401, the third spring 15 props out the front end of the support plate 14, and the buckle 1401 at the rear end of the third spring 15 abuts against the side of the piston 9. At the same time, the buckle 1401 abuts against the pull ring 11 front and back, and the pull ring 11 and the piston 9 are temporarily fixed. When the index finger pulls the trigger 18, the trigger 18 pushes the front side of the support plate 14 and compresses the third spring 15. At this time, the buckle 1401 at the rear end of the support plate 14 is away from the side of the piston 9, and when the buckle 1401 moves to the outside of the pull ring 11, the pull ring 11 loses the support provided by the buckle 1401, and the second spring 10 and the tension spring 13 release their forces at the same time, pushing and pulling the piston 9 forward, thereby forming an instantaneous high pressure in the air cavity 21, and the air pressure is transmitted to the loading groove 402 through the air pipe 20, and the soft bullet 5 located therein is quickly pushed out, forming the effect of bullet firing; after the soft bullet 5 is ejected, the cartridge case 4 is still located in the gun chamber 101. At this time, the lock buckle 16 is pushed forward with the index finger, and the rear end of the gun head 1 is thrown upward under the action of the first spring 17, and the cartridge case 4 located in the gun chamber 101 is thrown out, forming the effect of the cartridge case 4 being thrown out.

[0033] The above embodiments are only used to illustrate the technical solution of the utility model, rather than to limit it. Although the utility model is described in detail with reference to the above embodiments, ordinary technicians in this field should understand that they can still modify the technical solutions recorded in the above embodiments, or replace some or all of the technical features therein with equivalents. These modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the utility model.

Claims

1. A shell ejection soft bullet gun toy, comprising a gun head, a gun handle, a shell ejection spring, a shell, a soft bullet and an air power component, characterized in that: The gun head is hinged at the front end of the gun handle, the ejection spring is elastically connected between the gun head and the gun handle, a muzzle is provided at the front end of the gun head, a barrel is provided at the rear end of the gun head, the muzzle is communicated with the barrel, the muzzle diameter is smaller than the barrel, a loading groove is provided at the front end of the cartridge case, the soft bullet is slidably connected to the loading groove, the cartridge case diameter corresponds to the barrel, the soft bullet diameter is smaller than the muzzle, the air power component is fixedly connected to the gun handle, and the output end of the air power component can be connected to the loading groove from the rear end of the cartridge case through an air pipe.

2. The shell ejection soft bullet gun toy according to claim 1, characterized in that: The ejection spring is a torsion spring, the hinge between the gun head and the gun handle is a cylindrical structure, the torsion spring is sleeved on the cylindrical structure, the head and tail ends of the torsion spring are two torsion bars, and the two torsion bars are connected up and down between the gun head and the gun handle.

3. The shell ejection soft bullet gun toy according to claim 1, characterized in that: A transverse sliding groove is provided in the gun handle, and a lock buckle is slidably connected in the sliding groove. A first spring is elastically connected between the front end of the lock buckle and the gun handle. The upper end of the lock buckle is a horizontally protruding trapezoidal structure, and a locking groove is provided at the lower end of the gun head. The trapezoidal structure can be horizontally buckled into the locking groove, and the rear end of the lock buckle protrudes from the gun handle.

4. The shell ejection soft bullet gun toy according to claim 1, characterized in that: The aerodynamic component includes an air cylinder, a piston, a second spring and a clamping component. The air cylinder is fixedly connected to the gun handle, the piston is slidably connected to the air cylinder, an air cavity is formed between the piston and the air cylinder, the front end of the air cavity can be connected to the loading slot from the rear end of the cartridge case through an air pipe, the second spring is elastically connected between the rear end of the piston and the gun handle, a pull ring protruding from the rear end of the gun handle is provided at the rear end of the piston, and the diameter of the pull ring is larger than the piston, the middle part of the clamping component is rotatably connected to the gun handle, the front end of the clamping component is elastically connected to the gun handle, and the rear end of the clamping component can be close to the side of the piston and abut against the pull ring front and back.

5. The shell ejection soft bullet gun toy according to claim 4, characterized in that: It also includes a tension spring, the front end of which is connected to the inside of the gun handle on the side of the gas cylinder, and the rear end of which is connected to the side of the pull ring.

6. The shell ejection soft bullet gun toy according to claim 4, characterized in that: The rear end of the piston is a hollow structure, the second spring is located in the hollow structure, the rear end of the gun handle is provided with a guide column, and the second spring is sleeved on the guide column.

7. The shell ejection soft bullet gun toy according to claim 4, characterized in that: The clamping assembly includes a support plate and a third spring. The middle part of the support plate is rotatably connected to the gun handle. The front end of the support plate is elastically connected to the gun handle through the third spring. The rear end of the support plate can be close to the side of the piston and abut against the pull ring front and back.

8. The shell ejection soft bullet gun toy according to claim 4, characterized in that: It also includes a trigger, which is rotatably connected to the gun handle. A notch is provided on the lower side of the gun handle, and the lower end of the trigger extends out of the notch. The front side of the trigger can abut against the notch, and the rear side of the trigger can abut against the front side of the support plate.

9. The shell ejection soft bullet gun toy according to claim 7, characterized in that: A buckle is provided on the side surface of the rear end of the support plate, and a side of the buckle facing the middle of the support plate is a slope, and the pull ring can slide over the slope.

10. The shell ejection soft bullet gun toy according to claim 8, characterized in that: A guard ring is provided at the lower end of the gun handle, and the trigger is located in the guard ring.