Throwing impact-triggered gas grenade launcher
Patent Information
- Application Number
- TW115200303
- Authority / Receiving Office
- TW · TW
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-01-10
- Publication Date
- 2026-07-11
- Estimated Expiration
- 2036-01-09
Smart Images

Figure IMG-2_DRAW_115200303-A0305-14-0001-2 
Figure IMG-2_DRAW_115200303-A0305-14-0002-3 
Figure IMG-2_DRAW_115200303-A0305-14-0003-4
Abstract
Description
Throwing impact-triggered gas grenade launcher Technical Field
[0001] This invention belongs to the field of gas-powered BB gun technology, and specifically relates to a gas grenade throwing device for use in survival games. Prior Technology
[0002] Existing gas rifle grenades typically require a dedicated launcher and are mostly used for short-range scattering. Their limitations include: restricted usage methods, inability to be thrown directly, reliance on an external firing mechanism, lack of effective safety mechanisms, and a high risk of accidental triggering. Therefore, it is necessary to propose an improved structure to overcome the above-mentioned shortcomings. Summary of the Invention
[0003] The purpose of this invention is to provide a throwable gas grenade kit, characterized by: an impact triggering mechanism that activates upon impact; a detachable fixing structure to accommodate existing gas grenade safety mechanisms to prevent unintended triggering; thereby achieving: increased range (through throwing), reduced risk of accidental triggering, and increased versatility in usage scenarios. Simple Explanation of the Diagram
[0004] Figure 1: Perspective view of the present invention. Figure 2: Exploded view of the present invention. Figure 3: Cross-sectional view of the present invention. Implementation
[0005] Please refer to Figures 1 to 3. The present invention is a throwable impact-triggered grenade device, comprising: a warhead (1), a warhead retainer (2), a warhead body (3), a base plate (4), and a safety device (5). The warhead (1) contains an impact triggering mechanism, which includes a firing pin, a sliding member, and a firing surface. The sliding member can be displaced relative to the warhead (1) in a predetermined direction and pushes the firing pin to move upon impact. When the firing pin moves, it applies a firing action to the bottom of the gas grenade contained inside, thereby activating its valve. The safety device (5) is a pin-type structure and passes through the corresponding holes of the projectile (1) and the projectile retainer (2). Its position is used to restrict the movement of the firing pin or the sliding part to prevent accidental triggering when not in use. When the safety device (5) is removed, the impact triggering mechanism is in a ready-to-trigger state. Only when the device impacts in a specific direction and reaches a predetermined force will the sliding part be displaced and push the firing pin, thereby firing the internal gas grenade. The projectile body (3) has an internal accommodating space to accommodate standard-sized gas grenades and is sealed by a base plate (4). The base plate (4) is an openable structure and can be locked with the projectile body (3) by rotation to fix the internal gas grenade. The device can be reloaded with gas grenades and reused after use, and will not trigger when the impact conditions are not met, thereby improving the safety of use. The sliding member in the impact triggering mechanism is disposed within a guide rail and can move linearly along the extension direction of the guide rail to ensure stable and consistent movement direction during impact. In this invention, the sliding member does not have a spring return structure; its displacement is entirely driven by the inertial force generated by the external impact. When the device is impacted, the sliding member moves along the guide rail and pushes the firing pin, causing the firing pin to move forward to fire the gas grenade. The impact triggering mechanism does not have a fixed limiting structure; the maximum displacement stroke of the sliding member is determined by… The overall structural dimensions and the contact position of the gas grenade are determined by the impact force and the displacement stroke of the sliding member. The gas grenade will only be activated when the displacement stroke of the sliding member during impact is sufficient to apply sufficient force and stroke to the valve at the bottom of the gas grenade. In other words, when the impact force is insufficient or the impact direction does not conform to the predetermined direction, the sliding member cannot generate sufficient displacement, and the firing pin cannot effectively fire the gas grenade, thereby avoiding accidental triggering.
[0006] 1: Bullet 2: Bullet retainer 3: Projectile 4: Base plate 5: Insurance
Claims
1. A throwable impact-triggered gas grenade device, comprising: One bullet; A projectile retainer connected to the projectile; a projectile body connected to the projectile retainer and forming an accommodating space; a base plate disposed on the projectile body and used to enclose the accommodating space; a safety device disposed between the projectile and the projectile retainer; characterized in that: the projectile is provided with an impact triggering mechanism, the impact triggering mechanism including a firing pin and a movable sliding member, the sliding member moving along a predetermined direction along a guide track and pushing the firing pin when the device is impacted, so that the firing pin strikes the bottom of the gas grenade contained in the projectile body to activate its valve.
2. The throwing impact-triggered grenade device as described in claim 1, wherein the safety is a pin-type structure and is used to limit the movement of the firing pin or slider.
3. The throwing impact-triggered grenade device as described in claim 1, wherein the slider is displaced only when the device impacts in a specific direction and reaches a predetermined force.
4. The throwing impact-triggered grenade device as described in claim 1, wherein the base plate and the projectile system are locked in a rotational manner.
5. The throwable impact-triggered grenade device as described in claim 1, wherein the projectile body is used to contain a standard-sized gas grenade.
6. The throwing impact-triggered grenade device as described in claim 1, wherein the device is a reusable structure.
7. The throwing impact-triggered grenade device as described in claim 1, wherein the slider is disposed in a guide rail and moves along the direction of the guide rail.
8. The throwing impact-triggered grenade device as described in claim 1, wherein the impact triggering mechanism is not provided with a spring return structure.
9. The throwing impact-triggered grenade device as described in claim 1, wherein the displacement of the slider is driven by the inertial force generated by the impact.
10. The throwing impact-triggered grenade device as described in claim 1, wherein the impact triggering mechanism is triggered only when the displacement stroke and force of the firing pin reach a condition sufficient to activate the bottom valve of the gas grenade.