Acousto-optic smoke simulator
Through the speakers, atomization components and LED lights in the sound and light simulator combined with the electronic control components, the precise simulation of sound effects, flames and gun smoke in the shell launch training device is achieved, solving the problem of insufficient realism in the existing technology, and it has the advantages of ease of installation, high safety and low cost.
Patent Information
- Application Number
- CN202422827698.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-11-20
AI Technical Summary
In the prior art, the shell launch training device lacks effective sound effects, flame light and gun smoke simulation, resulting in insufficient sense of realism in experience.
Design an acoustic and optical smoke simulator, including fixed seat components, speakers, atomization components, LED lights and electronic control components, through the electronic control components, the cannon sound is generated by the electronic control components, and the atomization components generate gun smoke. The LED light simulates flames to achieve accurate control of sound effects, flames and gun smoke.
It improves the authenticity of the shell launch training device, the structure is simple and easy to install and maintain, has high safety, low cost and long equipment life.
Smart Images

Figure CN223243449U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sound and light smoke simulation equipment, in particular to a sound and light smoke simulator. Background Art
[0002] With the increasing diversity of domestic entertainment options, non-combat military entertainment has become increasingly popular. Among them, artillery shells are particularly popular. As customer experience and equipment quality requirements continue to rise, higher requirements are being placed on the simulation of these shells.
[0003] Real artillery shells are often accompanied by fire and smoke in ground warfare. Therefore, in order to create a realistic sensory experience, it is urgent to develop a sound effect, fire, and smoke simulator suitable for artillery shell launch training equipment to ensure the realism of the experience. Utility Model Content
[0004] The purpose of the utility model is to provide an acoustic and optical smoke simulator to solve the problems existing in the prior art.
[0005] In order to solve the above technical problems, the utility model provides the following technical solutions: a sound and light smoke simulator, comprising a fixed seat assembly, a speaker, an atomization assembly, an LED lamp and an electronic control assembly, wherein the fixed seat assembly is arranged on a barrel, the speaker is arranged on one side of the back of the fixed seat assembly, the atomization assembly is arranged on the other side of the back of the fixed seat assembly, the LED lamp is fixed on the upper part of the atomization assembly, the electronic control assembly is fixed on the back of the atomization assembly, and the speaker, atomization assembly and LED lamp are all electrically connected to the electronic control assembly.
[0006] Furthermore, the fixing seat assembly is radially positioned in contact with the inner wall of the barrel, and the fixing seat assembly includes a fixing seat and locking pins located on both sides of the fixing seat, and the locking pins are knob plungers; a smoke outlet window, an LED light hole and a speaker sound hole are distributed in the center of the fixing seat.
[0007] Furthermore, the speaker is provided with a mutual communication memory card and an audio amplifier, the memory card stores the cannon sound information, the electronic control component is suitable for digitally processing the cannon sound signal and then transmitting it to the audio amplifier, and the audio amplifier is suitable for amplifying the cannon sound signal.
[0008] Furthermore, the atomizer assembly includes an atomizer assembly housing, an end cover, a mounting slot, a storage compartment fixing frame, a smoke oil storage compartment, a smoke generating assembly and a fan:
[0009] The atomizer assembly housing is provided with a front end and a rear end. The front end of the atomizer assembly housing is an end cover plate, and the end cover plate is connected to the fixing seat. After the end cover plate is installed, the atomizer assembly housing is divided into an upper chamber and a lower chamber.
[0010] An air outlet is provided on the end cover plate located in the upper chamber, and an air inlet is provided on the rear end of the atomizer assembly housing located in the upper chamber. The fan is installed in the air inlet, and the interior of the upper chamber becomes an air duct, which connects the air inlet and the air outlet;
[0011] The inner walls on both sides of the atomizer assembly housing located in the lower chamber are provided with mounting grooves, the two sides of the storage cabin fixing frame are inserted into the mounting grooves, the smoke oil storage cabin is arranged inside the storage cabin fixing frame, the smoke generating assembly is arranged next to the smoke oil storage cabin, and the smoke oil storage cabin is provided with smoke oil and is connected to the smoke generating assembly; the end face cover plate located in the lower chamber is provided with an oil level observation hole.
[0012] Furthermore, the smoke generating component includes smoke oil delivery cotton and a heating coil: the two ends of the smoke oil delivery cotton are inserted into the smoke oil storage compartment, and the middle section is exposed from the smoke oil storage compartment; the heating coil spirally surrounds the middle section of the smoke oil delivery cotton; the heating coil is connected to the electronic control component.
[0013] Furthermore, the smoke oil storage cabin is made of a transparent material.
[0014] Furthermore, the LED light is a red light source, and the red light source directly shines onto the smoke of the smoke component.
[0015] Furthermore, the electronic control component includes a battery component, an adjustable frequency heating control module, an adjustable delay control module, a sound source generation control module and a trigger switch: the battery component controls the connection of the trigger switch and the adjustable delay control module; the adjustable delay control module is connected to the adjustable frequency heating control module and the sound source generation control module; the adjustable frequency heating control module communicates and controls the smoke generation component; the adjustable delay control module communicates and controls the LED light and the fan; and the sound source generation control module communicates and controls the speaker.
[0016] Compared with the prior art, the beneficial effects achieved by the present invention are:
[0017] 1. This utility model uses speakers, atomization components, LED lights and electronic control components to achieve the simulation and precise control of the visual, auditory and taste effects of sound, fire and smoke effects, so that people can intuitively feel the explosion sound, smoke and fire during the experience, thereby improving the authenticity of the experience.
[0018] 2. The utility model has a simple overall structure and a compact size. It is fixed to the port of the barrel in a quick-release mode, making it easy to disassemble and maintain.
[0019] 3. This utility model has high safety and usage experience, is reusable, has low experience cost and long equipment life. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0021] Figure 1 This is a schematic diagram of the overall structure of the sound, light and smoke simulator;
[0022] Figure 2 It is a cross-sectional view of the atomization component structure;
[0023] Figure 3 This is an exploded diagram of the atomization component structure;
[0024] Figure 4 This is the control principle diagram of the sound, light and smoke simulator.
[0025] In the figure, 1. fixing seat assembly; 11. fixing seat; 12. locking pin; 13. protrusion; 14. smoke outlet window; 15. LED lamp hole; 16. speaker outlet hole; 2. speaker; 3. atomization assembly; 31. atomization assembly housing; 311. air inlet; 32. end cover; 321. air outlet; 322. oil level observation hole; 33. mounting slot; 34. storage compartment fixing frame; 35. smoke oil storage compartment; 36. smoke generating assembly; 361. smoke oil conveying cotton; 362. heating coil; 37. fan; 4. LED lamp; 5. electronic control assembly; 51. battery assembly; 52. adjustable frequency heating control module; 53. adjustable delay control module; 54. sound source generating control module; 55. trigger switch. DETAILED DESCRIPTION
[0026] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0027] Example 1
[0028] like Figure 1As shown, this embodiment 1 discloses an acoustic, optical, and smoke simulator for simulating the experience of artillery firing. The simulator specifically includes a mounting assembly 1, a speaker 2, an atomizer assembly 3, an LED light 4, and an electronic control assembly 5. The mounting assembly 1 is used to secure the acoustic, optical, and smoke simulator after the speaker 2, atomizer assembly 3, LED light 4, and electronic control assembly 5 are placed in the barrel of a cannon. The speaker 2 simulates the sound of a cannon when fired, the atomizer assembly 3 generates smoke to simulate gun smoke, and the LED light 4 generates red light to simulate fire. The speaker 2, atomizer assembly 3, and LED light 4 are all electrically connected to the electronic control assembly 5. The electronic control assembly 5 activates and deactivates the speaker 2, atomizer assembly 3, and LED light 4, controlling parameters such as current, voltage, and power-on duration to control the size, duration, and heat dissipation of the smoke.
[0029] Based on practical applications, such as Figure 1 As shown, the fixing base assembly 1 includes a fixing base 11 and locking pins 12 located on both sides of the fixing base 11. The fixing base 11 is provided with a front and a back, the front of the fixing base 11 faces the external environment, and the back of the fixing base 11 is installed with components such as the speaker 2. The edge of the fixing base 11 is a circle of circular protrusions 13 that fit the wall surface of the barrel port and are radially positioned, and then fixed by the locking pin 12. The locking pin 12 adopts a knob plunger purchased on the market to achieve quick disassembly and assembly. A smoke outlet window 14, an LED light hole 15 and a speaker sound outlet hole 16 are distributed in the center of the fixing base 11. The fixing base assembly 1 has a simple structure, is firmly fixed, and can be disassembled and assembled with one button.
[0030] Based on practical applications, such as Figure 1 As shown, speaker 2 is mounted on the back side of mounting base 11 and transmits sound through speaker outlet 16. Speaker 2 houses a communication memory card and an audio amplifier. The memory card stores cannon sound information. Using signal processing technology, electronic control assembly 5 digitizes the cannon sound signal based on acoustic principles and amplifies the cannon sound signal through the audio amplifier, simulating the sound of a real cannon when the cannon barrel is fired.
[0031] Based on practical applications, such as Figure 2 and Figure 3 As shown, the atomizer assembly 3 is arranged on the other side of the back of the fixing base 11, and the white smoke formed by the atomization is discharged out of the barrel through the smoke outlet window 14, creating an atmosphere for the experience. The atomizer assembly 3 specifically includes an atomizer assembly housing 31, an end cover plate 32, a mounting slot 33, a storage compartment fixing frame 34, a smoke oil storage compartment 35, a smoke generating assembly 36 and a fan 37. Among them, the atomizer assembly housing 31 is provided with a front end and a rear end, and the end cover plate 32 is installed at the front end of the atomizer assembly housing 31, and the end cover plate 32 is fixed to the back of the fixing base 11 by using hand screws. The rear end of the atomizer assembly housing 31 is provided with an air inlet 311 and a fan 37.
[0032] After the end cover 32 is installed, the interior of the atomizer assembly housing 31 is divided into an upper chamber and a lower chamber. The air inlet 311 and the fan 37 are located in the upper chamber, and the air outlet 321 is also located on the end cover 32 of the upper chamber. When the end cover 32 is sealed, the upper chamber inside the atomizer assembly housing 31 becomes an air duct. This air duct connects the air inlet 311 and the air outlet 321, allowing mist to be transported from the interior of the atomizer assembly housing 31 while also providing heat dissipation.
[0033] The lower chamber of the atomizer assembly housing 31 is equipped with a mounting slot 33, a storage compartment bracket 34, an aerosol storage compartment 35, and an aerosol generating assembly 36. The mounting slots 33 are located on both sides of the inner wall of the lower chamber of the atomizer assembly housing 31. The two sides of the storage compartment bracket 34 are inserted into the mounting slots 33 for securement. The storage compartment bracket 34 has a circular cavity in its center, within which the aerosol storage compartment 35 is placed. The aerosol generating assembly 36 is mounted next to the aerosol storage compartment. The aerosol storage compartment 35 contains aerosol, which is connected to the aerosol generating assembly 36. The aerosol generating assembly 36 includes an aerosol transfer cotton 361 and a heating coil 362. The ends of the aerosol transfer cotton 361 are inserted into the aerosol storage compartment 35, with the middle section protruding from the compartment. The ends of the heating coil 362 are fixed to the storage compartment bracket 34 with screws. The middle section of the heating coil 362 spirals around the middle section of the aerosol transfer cotton 361, ensuring full contact. The heating coil 362 is connected to the electronic control assembly 5. When energized, current flowing through the heating coil 362 generates heat, which is then transferred to the absorbent pad to heat the oil, converting it into smoke. The amount of smoke is regulated by the electronic control assembly 5. Furthermore, the oil storage compartment 35 is made of a transparent material, allowing for a visual display of the oil level. The end cover 32 of the lower chamber features an oil level observation hole 322, which visually displays the oil level. The quick-release screws on the end cover 32 facilitate timely oil replenishment.
[0034] Based on practical applications, such as Figure 1 As shown, the LED lamp 4 adopts a red LED light source. Since the LED lamp 4 is fixed above the atomizing assembly 3, the red LED light of the LED lamp 4 can directly shine on the smoke and be emitted along with the smoke through the LED lamp hole 15 on the fixing seat 11, thereby simulating the visual effect of fire.
[0035] Based on practical applications, such as Figure 1 and Figure 4As shown, the electronic control assembly 5 is housed within a housing mounted on the back of the atomizer assembly 3. The electronic control assembly 5 includes a battery assembly 51, an adjustable frequency heating control module 52, an adjustable delay control module 53, a sound source control module 54, and a trigger switch 55. The battery assembly 51 controls the trigger switch 55 and the adjustable delay control module 53; the adjustable delay control module 53 controls the adjustable frequency heating control module 52 and the sound source control module 54; the adjustable frequency heating control module 52 controls the smoke generator 36; the adjustable delay control module 53 controls the LED light 4 and the fan 37; and the sound source control module 54 controls the speaker 2. The battery assembly 51 utilizes a 12V DC lithium battery for safety and stability. The adjustable delay control module 53 sets a preset interrupt value for the clock signal by adjusting a preset register. Upon receiving this signal, the interrupt controller disconnects the LED light 4 and the fan 37. The frequency-adjustable heating control module 52 uses PWM technology to apply voltage to the heating coil 362 in a repeated pulse sequence in an on / off manner, and adjusts the voltage output time to control the amount of smoke generated.
[0036] The operating principle of this embodiment is as follows: During installation, the main body of the sound and light smoke simulator is placed inside the muzzle of the cannon, with the front of the fixing base 11 facing outward, and finally secured with a single click using the locking pin 12. The firing switch 55 is located inside the grip of the cannon. During the experience, the user pulls the trigger, which activates the switch to conduct the circuit. The 12V lithium battery provides power, and the adjustable frequency heating control module 52, adjustable delay control module 53, and sound source control module 54 operate, activating and deactivating the atomizer assembly 3, LED light 4, speaker 2, and fan 37. By controlling parameters such as current, voltage, and power-on duration, the amount of smoke generated, the duration of the smoke generated, and the heat dissipation effect can be controlled.
[0037] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference in a claim should not be construed as limiting the claim to which it relates.
Claims
1. An acoustic and optical smoke simulator, characterized in that: The invention comprises a fixing seat assembly (1), a loudspeaker (2), an atomizing assembly (3), an LED lamp (4) and an electric control assembly (5), wherein the fixing seat assembly (1) is arranged on a barrel, the loudspeaker (2) is arranged on one side of the back of the fixing seat assembly (1), the atomizing assembly (3) is arranged on the other side of the back of the fixing seat assembly (1), the LED lamp (4) is fixed on the upper part of the atomizing assembly (3), the electric control assembly (5) is fixed on the back of the atomizing assembly (3), and the loudspeaker (2), the atomizing assembly (3) and the LED lamp (4) are all electrically connected to the electric control assembly (5).
2. The sound and light smoke simulator according to claim 1, characterized in that: The fixing seat assembly (1) is radially positioned in contact with the inner wall of the barrel, and the fixing seat assembly (1) comprises a fixing seat (11) and locking pins (12) located on both sides of the fixing seat (11), wherein the locking pins (12) are knob plungers; a smoke outlet window (14), an LED light hole (15) and a speaker sound outlet hole (16) are distributed in the center of the fixing seat (11).
3. The sound and light smoke simulator according to claim 2, characterized in that: The speaker (2) is provided with a mutual communication memory card and an audio amplifier, wherein the memory card stores the sound information of the cannon sound, and the electronic control component (5) is suitable for digitally processing the cannon sound signal and then transmitting it to the audio amplifier, and the audio amplifier is suitable for amplifying the cannon sound signal.
4. The sound and light smoke simulator according to claim 3, characterized in that: The atomizing assembly (3) comprises an atomizing assembly housing (31), an end cover plate (32), a mounting slot (33), a storage compartment fixing frame (34), a smoke oil storage compartment (35), a smoke generating assembly (36), and a fan (37): The atomizer assembly housing (31) is provided with a front end and a rear end, the front end of the atomizer assembly housing (31) being an end face cover (32), and the end face cover (32) being connected to the fixing seat (11); after the end face cover (32) is installed, the atomizer assembly housing (31) is divided into an upper chamber and a lower chamber; An air outlet (321) is provided on the end cover plate (32) located in the upper chamber, and an air inlet (311) is provided at the rear end of the atomizer assembly housing (31) located in the upper chamber. The fan (37) is installed in the air inlet (311), and the interior of the upper chamber becomes an air duct, which connects the air inlet (311) and the air outlet (321). Mounting grooves (33) are provided on both sides of the inner wall surface of the atomizing assembly housing (31) located in the lower chamber, and both sides of the storage cabin fixing frame (34) are inserted into the mounting grooves (33). The smoke oil storage cabin (35) is arranged inside the storage cabin fixing frame (34), and the smoke generating assembly (36) is arranged next to the smoke oil storage cabin. The smoke oil storage cabin (35) is provided with smoke oil and is in communication with the smoke generating assembly (36); and an oil level observation hole (322) is provided on the end face cover plate (32) located in the lower chamber.
5. The sound and light smoke simulator according to claim 4, characterized in that: The smoke generating assembly (36) comprises a smoke oil conveying cotton (361) and a heating coil (362): both ends of the smoke oil conveying cotton (361) are inserted into the smoke oil storage chamber (35), and the middle section is exposed from the smoke oil storage chamber (35); the heating coil (362) spirally surrounds the middle section of the smoke oil conveying cotton (361); and the heating coil (362) is connected to the electronic control assembly (5).
6. The sound and light smoke simulator according to claim 5, characterized in that: The smoke oil storage cabin (35) is made of a transparent material.
7. The sound and light smoke simulator according to claim 6, characterized in that: The LED lamp (4) is a red light source, and the red light source directly shines onto the smoke of the smoke component.
8. The sound and light smoke simulator according to claim 7, characterized in that: The electric control component (5) comprises a battery component (51), an adjustable frequency heating control module (52), an adjustable time delay control module (53), a sound source generation control module (54) and a trigger switch (55): the battery component (51) controls the connection between the trigger switch (55) and the adjustable time delay control module (53); the adjustable time delay control module (53) is connected to the adjustable frequency heating control module (52) and the sound source generation control module (54); the adjustable frequency heating control module (52) controls the smoke generation component (36) through communication; the adjustable time delay control module (53) controls the LED light (4) and the fan (37) through communication; and the sound source generation control module (54) controls the speaker (2) through communication.