A soft air gun muzzle simulation smoke and fire device and a control method thereof
Patent Information
- Application Number
- CN202611067759.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-09-22
- Filing Date
- 2026-07-17
- Publication Date
- 2026-08-18
AI Technical Summary
现有技术多采用油性烟雾或干冰烟雾的方式,虽能再现一定程度的烟雾效果,但油烟容易产生环境污染,造成健康隐忧,吸入肺部也会造成身体损害,进而导致装置内部堆积脏污,亦可能在使用维护上造成不便,限制了此类装置在通用性与扩充性方面的发挥
[0013]本发明的有益效果在于:安全、低成本、高拟真度地模拟枪口烟雾与闪光,且具模块化、易安装特性。
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Figure CN122590638A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to an auxiliary simulation device for airsoft guns, and more particularly to an airsoft gun muzzle simulation smoke and flash device that can be installed on the muzzle of an airsoft gun. When the user fires BB pellets, it can simultaneously generate realistic water mist smoke and flash effects to simulate the visual experience of firing a real firearm and enhance the immersion and realism of games or simulation training. Background Technology
[0002] In the field of airsoft guns, BB guns, and simulated guns, some devices have attempted to simulate the visual effects of real firearms when fired, such as smoke or muzzle flash. Existing technologies mostly use oily smoke or dry ice smoke, which can reproduce a certain degree of smoke effect, but the fumes easily cause environmental pollution, pose health risks, and can cause harm to the lungs when inhaled. This also leads to dirt buildup inside the device and may cause inconvenience in use and maintenance, limiting the versatility and expandability of such devices. Summary of the Invention
[0003] The purpose of this invention is to design a safe, low-cost, and highly realistic device for simulating muzzle smoke and flash of a soft air gun, and to develop a control method for it that is modular, easy to install, and easy to control. This addresses a problem that the industry urgently needs to solve.
[0004] The technical solution adopted in this invention is as follows: a device for simulating smoke and flame at the muzzle of a soft air gun, comprising: A firing channel (11) is provided for the use of toy bullets; An atomizing module (12) is connected to the emission channel (11) for generating water mist; And a flash assembly (13), linked to the emission channel (11), for generating simulated firelight or simulated flash.
[0005] Furthermore, the atomizing module (12) includes at least one water storage component (121) for storing the water source required by the atomizing module (12).
[0006] Furthermore, the atomizing module (12) includes at least one atomizing component (122) for atomizing the water stored in the water storage component.
[0007] Furthermore, it also includes at least one control module (14) for controlling the start-up and shutdown of the atomizing module (12) and the flash assembly (13).
[0008] Furthermore, the control module (14) is provided with a communication component for receiving on and off signals.
[0009] Furthermore, the control module (14) is equipped with a storage component for calculating and storing shooting data. Furthermore, it also includes at least one sensing module (15) for sensing the position of the toy bullet.
[0010] A control method for a soft air gun muzzle smoke and flash simulation device includes the following steps: (a) Toy bullets pass through the firing channel; (b) The sensing module detects the passage of the toy bullet and notifies the control module of the signal; (c) The control module activates the atomizing module and flash assembly based on the received signal; (d) The water storage component of the atomizing module stores the water inside, which is then atomized into water mist and discharged through the emission channel. (e) The flashing component produces a brief flash of light, and the water mist produced by the atomizing component simulates the fire.
[0011] Preferably, a control method for a soft air gun muzzle simulation smoke and flash device includes the following steps: (a) The control module receives the start signal; (b) The control module activates the atomizing module and flash assembly; (c) The water storage component of the atomizing module stores the water inside, which is then atomized into water mist and discharged through the emission channel. (d) The flash component produces a brief flash, and the water mist generated by the atomizing module simulates the fire.
[0012] Preferably, a method for controlling a soft air gun muzzle smoke and flash simulation device includes the following steps: (a) Toy bullets pass through the firing channel; (b) The sensing module detects the passage of the toy bullet and notifies the control module of the signal; (c) The control module calculates data on toy bullet firing; (d) The control module stores data on the passage of toy bullets.
[0013] The advantages of this invention are: it can safely, cost-effectively, and realistically simulate gun smoke and flash, and it is modular and easy to install. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of the soft air gun muzzle simulation smoke and flame device according to Embodiment 1 of the present invention.
[0015] Figure 2 This is a flowchart illustrating the control method of the device for simulating smoke and flame at the muzzle of a soft air gun, which is an embodiment 2 of the present invention.
[0016] Figure 3 This is a flowchart illustrating the control method of the device for simulating smoke and flame at the muzzle of a soft air gun, which is embodiment 3 of the present invention.
[0017] Figure 4 This is a flowchart illustrating the control method of the device for simulating smoke and flame at the muzzle of a soft air gun, which is embodiment 4 of the present invention.
[0018] In the diagram, 10 is the simulated smoke and flash device for the soft air gun muzzle; 11 is the firing channel; 12 is the atomization module; 121 is the water storage component; 122 is the atomization component; 13 is the flash component; 14 is the control module; and 15 is the sensing module. Detailed Implementation
[0019] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0020] The simulated smoke and flash device and its control method for the muzzle of the soft air gun disclosed in this invention are based on principles that are readily understood by those skilled in the art. Therefore, they will not be described in full below. Furthermore, the drawings accompanying this text are schematic representations of structures relevant to the features of this invention and are not, and need not be, drawn to actual dimensions.
[0021] like Figure 1 The illustrated embodiment 1 is a device for simulating smoke and flash from the muzzle of a soft air gun. A device for simulating smoke and flash from the muzzle of a soft air gun includes: A firing channel (11) is provided for the use of toy bullets; An atomizing module (12) is connected to the emission channel (11) for generating water mist; And a flash assembly (13), linked to the emission channel (11), for generating simulated firelight or simulated flash.
[0022] Furthermore, the atomizing module (12) includes at least one water storage component (121) for storing the water required by the atomizing module (12). The water storage component (121) can be any water storage device such as a water tank, and is not limited here.
[0023] The atomizing module (12) includes at least one atomizing component (122) for atomizing the water stored in the water storage component. The atomizing device 122 can be any device that atomizes water, including but not limited to ultrasonic, pressurized, airflow atomization, electrothermal evaporation and other devices, which are not limited here.
[0024] Furthermore, it also includes at least one control module (14) for controlling the activation and deactivation of the atomizing module (12) and the flash assembly (13). The control module (14) can be any device with control functions, such as a microcontroller, and is not limited here.
[0025] Furthermore, the control module (14) is provided with a communication component for receiving on and off signals. Furthermore, the control module (14) is provided with a storage component for calculating and storing firing data. The control module (14) can be used to calculate and store firing data; the control component (14) can include any device with counting and calculation functions, and is not limited herein.
[0026] Furthermore, it also includes at least one sensing module (15) for sensing the position of the toy bullet. The sensing component (15) can be any device with sensing function, including infrared and photoelectric sensors, and is not limited herein.
[0027] like Figure 2 The illustrated embodiment 2 provides a control method for a soft air gun muzzle smoke and flash simulation device, comprising the following steps: (a) Toy bullets pass through the firing channel; (b) The sensing module detects the passage of the toy bullet and notifies the control module of the signal; (c) The control module activates the atomizing module and flash assembly based on the received signal; (d) The water storage component of the atomizing module stores the water inside, which is then atomized into water mist and discharged through the emission channel. (e) The flashing component produces a brief flash of light, and the water mist produced by the atomizing component simulates the fire.
[0028] like Figure 3 The illustrated embodiment 3 describes a control method for a soft air gun muzzle smoke and flash simulation device, comprising the following steps: (a) The control module receives the start signal; (b) The control module activates the atomizing module and flash assembly; (c) The water storage component of the atomizing module stores the water inside, which is then atomized into water mist and discharged through the emission channel. (d) The flash component produces a brief flash, and the water mist generated by the atomizing module simulates the fire.
[0029] like Figure 4 The illustrated embodiment 4 provides a control method for a soft air gun muzzle smoke and flash simulation device, comprising the following steps: (a) Toy bullets pass through the firing channel; (b) The sensing module detects the passage of the toy bullet and notifies the control module of the signal; (c) The control module calculates data on toy bullet firing; (d) The control module stores data on the passage of toy bullets.
[0030] The above description is merely a preferred embodiment of the present invention and is not intended to limit the patent rights of this invention. Furthermore, the above description should be clear and implementable to those skilled in the art. Therefore, any equivalent changes or modifications made without departing from the spirit disclosed in this invention should be included within the scope of the patent application.
Claims
1. A device (10) for simulating smoke and flash from the muzzle of a soft air gun, characterized in that, include: A firing channel (11) is provided for the use of toy bullets; An atomizing module (12) is connected to the emission channel (11) for generating water mist; And a flash assembly (13), linked to the emission channel (11), for generating simulated firelight or simulated flash.
2. The device for simulating smoke and flash from the muzzle of a soft air gun according to claim 1, characterized in that, The atomizing module (12) includes at least one water storage component (121) for storing the water source required by the atomizing module (12).
3. The device for simulating smoke and flash from the muzzle of a soft air gun according to claim 1, characterized in that, The atomizing module (12) includes at least one atomizing component (122) for atomizing the water stored in the water storage component.
4. The device for simulating smoke and flash from the muzzle of a soft air gun according to claim 1, characterized in that, It includes at least one control module (14) for controlling the start-up and shutdown of the atomizing module (12) and the flash assembly (13).
5. The device for simulating smoke and flash from the muzzle of a soft air gun according to claim 4, characterized in that, The control module (14) is equipped with a communication component for receiving on and off signals.
6. The device for simulating smoke and flash from the muzzle of a soft air gun according to claim 4, characterized in that, The control module (14) is equipped with a storage component for calculating and storing shooting data.
7. The device for simulating smoke and flash from the muzzle of a soft air gun according to claim 1, characterized in that, It includes at least one sensing module (15) for sensing the position of the toy bullet.
8. A control method for a simulated smoke and flash device for a soft air gun muzzle as described in any one of claims 1-7, comprising the following steps: (a) Toy bullets pass through the firing channel; (b) The sensing module detects the passage of the toy bullet and notifies the control module of the signal; (c) The control module activates the atomizing module and flash assembly based on the received signal; (d) The water storage component of the atomizing module stores the water inside, which is then atomized into water mist and discharged through the emission channel. (e) The flashing component produces a brief flash of light, and the water mist produced by the atomizing component simulates the fire.
9. A control method for a simulated smoke and flash device for a soft air gun muzzle as described in any one of claims 1-7, comprising the following steps: (a) The control module receives the start signal; (b) The control module activates the atomizing module and flash assembly; (c) The water storage component of the atomizing module stores the water inside, which is then atomized into water mist and discharged through the emission channel. (d) The flash component produces a brief flash, and the water mist generated by the atomizing module simulates the fire.
10. A control method for a soft air gun muzzle smoke and flash simulation device as described in any one of claims 1-7, comprising the following steps: (a) Toy bullets pass through the firing channel; (b) The sensing module detects the passage of the toy bullet and notifies the control module of the signal; (c) The control module calculates data on toy bullet firing; (d) The control module stores data on the passage of toy bullets.