A hair-tripping mine training device for outdoor simulated combat games

CN224731205UActive Publication Date: 2026-09-08HENAN MAGIC ARMOR TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521365825.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2026-09-08
Estimated Expiration
2035-06-30

AI Technical Summary

Technical Problem

现有的地雷道具多数采用电子声光来模拟地雷爆炸时发出的声音及烟光,但还是缺乏具有“火药味”的嗅觉效果,地雷爆炸模拟效果相对不够真实

Benefits of technology

该户外模拟对战游戏用绊发式地雷训练器材,体积小巧精致,道具便于携带;地雷刀具属于Wargame生存游戏中的被动型武器,采用绊发顶杆撞击启动装置,经过科学的撞击力度设计可以直接挤压爆燃药剂料盘,发出声响模拟地雷触发过程,同时还能发出具有“火药味”的烟雾效果;并且地雷道具设有保险销,使用性能安全可靠,不会对人体造成任何危害;地雷道具使用简单方便,可持续回收重复利用,更加环保和节约成本;通过该地雷道具设置陷阱,阻止或延缓对方行进速度,封锁重要地势关键点,以单个道具试验为例,封锁范围半径是1~2m,颠覆了传统对抗游戏模式,丰富对战内容,考验对抗智力,增加对战时间,增强娱乐效果。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a tripwire type mine training equipment for outdoor simulation combat game, including protective shell, shell top cover, safety pin, safety ejector rod subassembly, excitation module and explosive agent tray, the shell top cover is installed at the top of protective shell, the explosive agent tray adopts the red phosphorus tray and can be detachably assembled at the bottom of excitation module, the excitation module is placed below the shell top cover, the safety ejector rod subassembly includes safety ejector rod and ejector rod outer sleeve, the ejector rod outer sleeve is installed on the upper portion of shell top cover, the safety ejector rod can slide through the center of ejector rod outer sleeve, the lower end of safety ejector rod and ejector rod outer sleeve are provided with ejector rod spring, and the safety pin of pluggable is arranged between the upper portion of safety ejector rod and the outer wall of ejector rod outer sleeve. The equipment can more realistically simulate the sound, light, smoke and smell effect of mine triggering, increase the interesting nature of survival game, is simple and convenient to use, and is safe and reliable, will not cause harm to human body, and can be recycled and reused.
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Description

Technical Field

[0001] This utility model belongs to the field of game props technology, specifically relating to a tripwire mine training device for outdoor simulated combat games. Background Technology

[0002] Outdoor combat simulation games, also known as Wargames (survival games) or "live-action CS," are a thrilling and exciting military-themed outdoor competitive sport that combines exercise and gaming, popular among military enthusiasts and outdoor sports lovers. They are also frequently used as activities for military study tours. The games typically use simulated combat equipment, tactical gear, and various styles of military uniforms and protective gear to simulate military combat training. Firearms and throwing weapons are currently the main simulated combat equipment in outdoor combat games. To further enhance the combat modes and enrich the entertainment and fun of the activity, more and more ambush props such as landmines have been added. Based on their triggering methods, landmines are mainly divided into two types: tripwire mines and trampling mines. Most existing landmine props use electronic sound and light to simulate the sound and smoke of a landmine explosion, but they still lack the olfactory effect of "gunpowder," making the landmine explosion simulation relatively unrealistic. Utility Model Content

[0003] In response to the above situation, this utility model provides a tripwire mine training device for outdoor simulated combat games, which fills the gap in outdoor simulated combat games with "gunpowder-like" landmine props and enriches the combat mode of Wargame survival games.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: An outdoor simulated combat game training device for tripwire mines includes a mine body, a safety device, and a sound-generating accessory; the mine body includes a protective shell and an outer shell cover, the safety device includes a safety pin and a safety rod assembly, and the sound-generating accessory includes an activation module and a deflagration agent tray.

[0005] The outer shell top cover is coaxially and detachably installed on the top of the protective shell. The deflagration agent tray is detachably assembled on the bottom of the activation module. The activation module is coaxially and movably placed inside the protective shell and located directly below the outer shell top cover. The safety rod assembly includes a safety rod and a rod outer sleeve. The rod outer sleeve is coaxially installed on the upper part of the outer shell top cover. The safety rod is slidably disposed through the center of the rod outer sleeve.

[0006] The lower end of the safety rod is retractably positioned above the excitation module. A spring is provided between the lower end of the safety rod and the outer sleeve of the rod to launch the safety rod downwards. A removable safety pin is fitted between the upper part of the safety rod and the outer wall of the outer sleeve of the rod to limit the downward launch of the safety rod.

[0007] Preferably, the upper part of the safety rod is coaxially connected to a safety rod cap, and the top of the safety rod cap is integrally formed with a three-pronged bracket structure.

[0008] Preferably, a fixing nut is also embedded at the bottom of the protective shell, and a ground stake is screwed below the fixing nut to facilitate nailing the protective shell into the ground for fixation.

[0009] Preferably, multiple exhaust windows are provided on the side wall of the protective shell corresponding to the outer periphery of the ignition module to release the light, sound and smoke emitted when the deflagration agent tray is detonated.

[0010] Preferably, the safety pin is made of steel wire, with its head end moving through the safety pin hole on the side wall of the top rod outer sleeve and the safety top rod, and its tail end integrally formed with a circular safety pull ring for hooking and connecting the tripwire pull line. The pull line is preferably made of transparent fishing line, and the other end of the pull line can be hooked to a ground nail or tree branch.

[0011] This utility model also includes other components that enable its normal use, all of which are conventional means in the field. In addition, any devices or components not limited in this utility model adopt the prior art in the field.

[0012] The beneficial effects of this utility model are as follows: This outdoor simulated combat game uses tripwire-type landmine training equipment, which is small, exquisite, and easy to carry. The landmine knife is a passive weapon in Wargame survival games, using a tripwire-triggered trigger mechanism. Scientifically designed impact force directly compresses the explosive charge tray, simulating the landmine triggering process with a sound and producing a smoke effect reminiscent of gunpowder. The landmine prop is equipped with a safety pin, ensuring safe and reliable use without posing any harm to the human body. The landmine prop is simple and convenient to use, and can be sustainably recycled and reused, making it more environmentally friendly and cost-effective. By setting traps with this landmine prop, one can hinder or slow down the opponent's movement and block key points in important terrain. For example, a single prop can block a radius of 1-2 meters, revolutionizing traditional combat game modes, enriching combat content, testing strategic intelligence, increasing combat time, and enhancing entertainment value. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the external structure of the tripwire mine training device of this utility model; Figure 2 for Figure 1 Schematic diagram of the internal structure of training equipment for tripwire-activated landmines; Figure 3 for Figure 1 A top view of the training equipment for tripwire-activated landmines; Figure 4 for Figure 1 A schematic diagram illustrating the installation process of the trigger module and the reagent tray.

[0014] In the diagram: 1. Safety top rod cap; 2. Safety top rod; 3. Safety pin; 4. Top rod outer sleeve; 5. Outer shell top cover; 6. Top rod spring; 7. Protective shell; 8. Activation module; 9. Explosive agent tray; 10. Fixing nut; 11. Ground stake. Detailed Implementation

[0015] The technical solution of this utility model will be clearly and completely described below with reference to specific embodiments. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments.

[0016] It should be noted that the terms "upper," "lower," "inner," and "outer," which indicate direction or positional relationship, are based on the attached drawings and are used only for ease of description.

[0017] Example 1 like Figure 1-4 As shown, an outdoor simulated combat game training device for tripwire mines includes a mine body, a safety device, and a sound-generating accessory; the mine body includes a protective shell 7 and an outer shell top cover 5, the safety device includes a safety pin 3 and a safety top rod assembly, and the sound-generating accessory includes an activation module 8 and a deflagration agent tray 9.

[0018] The outer shell top cover is coaxially and detachably installed on the top of the protective shell. The deflagration agent tray is detachably assembled on the bottom of the activation module. The activation module is coaxially and movably placed inside the protective shell and located directly below the outer shell top cover. The safety rod assembly includes a safety rod 2 and a rod outer sleeve 4. The rod outer sleeve is coaxially installed on the upper part of the outer shell top cover. The safety rod is slidably disposed through the center of the rod outer sleeve.

[0019] The lower end of the safety rod is retractably positioned above the excitation module. A rod spring 6 is provided between the lower end of the safety rod and the outer sleeve of the rod, which is used to eject the safety rod downward. A removable safety pin is provided between the upper part of the safety rod and the outer wall of the outer sleeve of the rod, which is used to limit the downward ejection of the safety rod.

[0020] Example 2 Based on Embodiment 1, the upper part of the safety top rod is also coaxially connected to a safety top rod cap 1, and the top of the safety top rod cap is integrally formed with a three-pronged bracket structure.

[0021] The bottom of the protective shell is also fitted with a fixing nut 10, and a ground stake 11 is screwed below the fixing nut to facilitate nailing the protective shell into the ground for fixation.

[0022] The structure of the deflagration agent tray is similar to the bullet disc installed in existing toy revolvers on the market. Under the premise of ensuring safety, it can also be filled with gunpowder and other deflagration agents. This is existing technology, and the specific settings will not be described in detail here.

[0023] The excitation module has a cylindrical block structure, and its lower surface has multiple excitation protrusions integrally formed on the circumferential edge, which correspond to the grooves of each of the reagents.

[0024] Each of the agent recesses in the deflagration agent tray is a disposable consumable material integrally molded from plastic. That is, the deflagration agent tray needs to be replaced after each detonation. Except for the deflagration agent tray, all other components can be recycled and reused.

[0025] Multiple exhaust windows are provided on the side wall of the protective shell corresponding to the outer periphery of the activation module, for releasing the light, sound and smoke emitted when the deflagration agent tray is detonated.

[0026] The safety pin is made of steel wire, with its head end passing through the safety pin hole on the side wall of the top rod outer sleeve and the safety top rod. Its tail end has an integrally formed circular safety pull ring for hooking and connecting the tripwire pull line. The pull line is made of transparent fishing line, which is not easy to be detected. The other end of the pull line can be connected to a ground spike. When in use, after the landmine is buried, the ground spike is driven into the ground to make the pull line taut. Of course, if there are natural conditions such as tree branches at the landmine placement site, the other end of the pull line can also be tied to the tree branches.

[0027] When an opponent passes by a landmine ambush point, tripping on the pull cord will trigger the mine's safety pin, pulling it out of the safety pin hole in the outer sleeve of the push rod and the safety push rod itself. This releases the safety push rod, which, under the accumulated elastic potential energy of the push rod spring, is instantly ejected and violently impacts the trigger module. This ignites the explosive charge in the deflagration tank, releasing the sound, light, smoke, and smell of an explosion, realistically simulating the effects of a real landmine explosion. This enhances the realism and fun of the survival game while ensuring safety and preventing harm to the human body.

[0028] The technical solution of this utility model is not limited to the specific embodiments described above. Without departing from the scope and spirit of the described embodiments, many modifications and changes will be obvious to those skilled in the art. Any technical modifications made within the spirit and principles of this utility model shall fall within the protection scope of this utility model.

Claims

1. A training device for tripwire mines used in outdoor simulated combat games, characterized in that: The mine includes a main body, a safety device, and a sound-emitting component. The main body includes a protective shell and a top cover. The safety device includes a safety pin and a safety rod assembly. The sound-emitting component includes an activation module and a deflagration agent tray. The top cover is coaxially and detachably mounted on the top of the protective shell. The deflagration agent tray is detachably mounted on the bottom of the activation module. The activation module is coaxially and movably placed inside the protective shell and directly below the top cover. The safety rod assembly includes a safety rod and a rod outer sleeve. The rod outer sleeve is coaxially mounted on the upper part of the top cover. The safety rod is slidably disposed through the center of the rod outer sleeve. The lower end of the safety rod is retractably positioned above the activation module. A rod spring is provided between the lower end of the safety rod and the rod outer sleeve for ejecting the safety rod. A removable safety pin is fitted between the upper part of the safety rod and the outer wall of the rod outer sleeve to limit the ejection of the safety rod.

2. The outdoor simulated combat game tripwire mine training equipment according to claim 1, characterized in that: The upper part of the safety rod is also coaxially connected to a safety rod cap.

3. The outdoor simulated combat game tripwire mine training equipment according to claim 1, characterized in that: The bottom of the protective shell is also fitted with a fixing nut, and a ground stake is screwed below the fixing nut.

4. The outdoor simulated combat game tripwire mine training equipment according to claim 1, characterized in that: Multiple exhaust windows are provided on the side wall of the protective shell corresponding to the outer periphery of the activation module, for releasing the light, sound and smoke emitted when the deflagration agent tray is detonated.

5. The outdoor simulated combat game tripwire mine training equipment according to claim 1, characterized in that: The safety pin is made of steel wire, with its head end moving through the safety pin hole on the side wall of the outer sleeve of the top rod and the safety top rod, and its tail end integrally formed with a circular safety pull ring for hooking and connecting the tripwire.