Remote control detonating device for training

By designing a remote-controlled detonation device for training, multiple buttons and trigger switches are provided on the outer wall of the detonator housing, which solves the problem that existing simulators can only perform one explosion at a time, and realizes the simulation and convenient use of multiple explosions.

CN222978697UActive Publication Date: 2025-06-13DALIAN XINYANG ELECTRONICS EQUIP
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422351545.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-06-13
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

The existing simulator can only perform one explosion at a time during explosive training, and needs to be reset after the end, which is cumbersome and inconvenient to use.

Method used

A remote-controlled detonation device for training was designed. The outer wall of the detonator housing was equipped with multiple buttons, and there was a trigger switch under each button. By pressing the button, the pressing rod was driven down, the spring was compressed and the switch was triggered to realize the simulation of multiple explosions.

Benefits of technology

It realizes the simulation of multiple explosions in one go, avoiding the tedious process of frequent resetting, and improving the convenience and efficiency of training.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222978697U_ABST
    Figure CN222978697U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of explosion training, in particular to a remote control detonating device for training, which comprises a protective bag and an exploder shell arranged in the protective bag, trigger switches distributed at equal intervals are mounted on the inner wall of the exploder shell, and a sliding hole is formed in the outer wall of one side of the exploder shell and located at the center of the trigger switches. The detonator shell is located in the sliding hole and slidably connected with a pressing assembly, one side of each trigger switch is connected with a connecting line, and a remote control signal transmitter is installed on the outer wall of one end of the detonator shell. The pressing assembly comprises a pressing rod slidably connected into the sliding hole, an extension plate welded to the outer wall of one end of the pressing rod and springs welded to the two ends of the outer wall of one side of the extension plate. The protective cover is opened from the hinge seat, so that the button is exposed, the button drives the pressing rod to descend, the extension plate on the pressing rod compresses the spring and makes contact with the trigger switch, the button can be protected conveniently, mistaken touch is avoided, and safety is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of explosion training, and particularly relates to a remotely controlled detonating device for training. Background Art

[0002] The military, also known as the armed forces, refers to the regular armed forces authorized to use lethal force and weapons to protect the interests of its national people. In the military and other armed forces, training is often required to enhance the proficiency and capabilities of soldiers. In the training of explosives, simulators are usually used for training. However, when the current simulators are used for explosive training, since there is only one trigger button in the simulator, only one explosive training can be carried out at a time. After the end, it needs to be reset and then carried out again, which is rather cumbersome and inconvenient to use. Content of the Utility Model

[0003] The purpose of the utility model is to propose a remotely controlled detonating device for training aiming at the above existing problems and deficiencies: a plurality of buttons are arranged on the outer wall of the detonator housing, and there is a trigger switch under each button, which is convenient for simulating multiple explosions at a time and is convenient to use, and solves the problem that only one can be detonated at a time.

[0004] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0005] A remotely controlled detonating device for training includes a protective bag and a detonator housing placed inside the protective bag. The inner wall of the detonator housing is provided with trigger switches distributed at equal distances. A sliding hole is opened at the center of the outer wall of one side of the detonator housing corresponding to the trigger switches. A pressing component is slidably connected in the sliding hole of the detonator housing, and a connecting wire is connected to one side of each trigger switch. A remote control signal transmitter is installed on the outer wall of one end of the detonator housing; the pressing component includes a pressing rod slidably connected in the sliding hole, an extension plate welded to one end of the outer wall of the pressing rod, and springs welded to both ends of the outer wall of one side of the extension plate.

[0006] Preferably, the other end of the spring is installed on the inner wall of the detonator housing, one end of the pressing rod contacts the trigger switch, and a button is installed at the other end of the pressing rod;

[0007] According to the above scheme: a plurality of buttons are arranged on the outer wall of the detonator housing, and there is a trigger switch under each button, which is convenient for simulating multiple explosions at a time and is convenient to use.

[0008] Preferably, connection holes are opened on both outer walls of the detonator housing corresponding to the trigger switches, a hidden groove is opened on the outer wall of one side of the detonator housing corresponding to the trigger switches, and a threaded hole is opened at the center of the hidden groove of the detonator housing.

[0009] Preferably, the other end of the connection hole communicates with the trigger switch, and a fastening screw is threadedly connected in the threaded hole, and the other end of the fastening screw is connected to the trigger switch.

[0010] Preferably, a hinge seat is installed on the outer wall of one side of the detonator housing at the button, and a protective cover is rotatably connected to one end of the hinge seat, and the button is located inside the protective cover;

[0011] According to the above solution: Open the protective cover from the hinge seat to expose the button. Drive the pressing rod to descend through the button, and the extension plate on the pressing rod compresses the spring and contacts the trigger switch, which is convenient for protecting the button, avoiding accidental touch, and improving safety.

[0012] Preferably, anti-slip grooves are provided on the outer walls of both sides of the detonator housing, and the other end of the connecting wire is connected to the remote control signal transmitter, and a battery is installed inside the detonator housing.

[0013] Preferably, an elastic band is fixed to the outer wall of one side of the protective bag, and a hanging ring is fixed to the top of one side of the protective bag.

[0014] The beneficial effects of the present invention are:

[0015] Open the protective cover from the hinge seat to expose the button. Drive the pressing rod to descend through the button, and the extension plate on the pressing rod compresses the spring and contacts the trigger switch, which is convenient for protecting the button, avoiding accidental touch, and improving safety;

[0016] There are multiple buttons on the outer wall of the detonator housing, and there is a trigger switch under each button, which is convenient for simulating multiple explosions at one time, convenient to use, and avoids frequent resetting. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 FIG. is a schematic diagram of an internal partial structure of a remotely controlled detonating device for training proposed by the present invention;

[0018] Figure 2 FIG. is a schematic diagram of one side structure of the detonator housing of a remotely controlled detonating device for training proposed by the present invention;

[0019] Figure 3 FIG. is a schematic diagram of the detonator housing of a remotely controlled detonating device for training proposed by the present invention;

[0020] Figure 4 FIG. is a schematic diagram of the protective bag of a remotely controlled detonating device for training proposed by the present invention.

[0021] In the figure: 1 protection package, 2 detonator housing, 3 elastic band, 4 hanging loop, 5 trigger switch, 6 connecting wire, 7 remote control signal transmitter, 9 pressing rod, 10 extension plate, 11 spring, 12 button, 13 connection hole, 14 threaded hole, 15 hidden groove, 16 hinge seat, 17 protective cover, 18 anti-slip groove. Detailed implementation manner

[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Embodiment

[0023] Refer to Figures 1-4 , a remote-controlled detonating device for training, including a protection package 1 and a detonator housing 2 placed inside the protection package 1. The inner wall of the detonator housing 2 is provided with trigger switches 5 distributed at equal intervals, and a sliding hole is opened at the center of the trigger switch 5 on one outer wall of the detonator housing 2. A pressing component is slidably connected in the sliding hole of the detonator housing 2, and a connecting wire 6 is connected to one side of each trigger switch 5. A remote control signal transmitter 7 is installed on one end outer wall of the detonator housing 2. A plurality of buttons 12 are provided on the outer wall of the detonator housing 2, and there is a trigger switch 2 under each button 12, which is convenient for simulating multiple explosions at one time and is convenient to use. The simulated explosive is paired in sequence through the remote control signal transmitter 7. After the pairing is completed, the detonator housing 2 can be used to detonate the simulated object;

[0024] The pressing component includes a pressing rod 9 slidably connected in the sliding hole, an extension plate 10 welded to one end outer wall of the pressing rod 9, and springs 11 welded to both ends of one side outer wall of the extension plate 10. The pressing rod 9 is driven to descend by the button 12. The extension plate 10 on the pressing rod 9 compresses the springs 11 and contacts the trigger switch 5. The corresponding trigger switch 5 transmits signals to the corresponding simulated explosive through the connecting wire 6 and the remote control signal transmitter 7.

[0025] The other end of the spring 11 is installed on the inner wall of the detonator housing 2, one end of the pressing rod 9 contacts the trigger switch 5, and the other end of the pressing rod 9 is installed with a button 12.

[0026] Connection holes 13 are opened on both outer walls of the detonator housing 2 at the position of the trigger switch 5, and a hidden groove 15 is opened on one outer wall of the detonator housing 2 at the position of the trigger switch 5. A threaded hole 14 is opened at the center of the hidden groove 15 of the detonator housing 2. The connection hole 13 cooperates with the threaded hole 14 to connect the wire to the trigger switch 5, which is convenient for the wire to detonate the simulated object and is convenient for simulation.

[0027] The other end of the connection hole 13 is communicated with the trigger switch 5, and a fastening screw is threadedly connected in the threaded hole 14. The other end of the fastening screw is connected to the trigger switch 5.

[0028] On one side outer wall of the detonator housing 2, a hinge seat 16 is installed at the position of the button 12, and one end of the hinge seat 16 is rotatably connected with a protective cover 17. The button 12 is located inside the protective cover 17. The protective covers 17 are installed on the outer wall of the detonator housing 2 at the position of the button 12. The protective cover 17 prevents the button 12 from being accidentally touched and improves safety.

[0029] Anti-slip grooves 18 are formed on both side outer walls of the detonator housing 2, and the other end of the connecting wire 6 is connected to the remote control signal transmitter 7. A battery is installed inside the detonator housing 2. The remote control signal transmitter 7 is convenient for remotely transmitting signals to the explosive, facilitating the simulation of remote control detonation. The anti-slip grooves 18 on both sides of the detonator housing 2 reduce the probability of slipping when held by hand.

[0030] An elastic band 3 is fixed to one side outer wall of the protective bag 1, and a hanging ring 4 is fixed to the top of one side of the protective bag 1. The protective bag 1 protects the detonator housing 2 when not in use. The elastic band 3 and the hanging ring 4 on the outer wall of the protective bag 1 are convenient for storing the protective bag 1 and the detonator housing, protecting the detonator housing 2, and facilitating carrying and use.

[0031] Working principle: When in use, during simulation training, the simulated explosives are paired one by one through the remote control signal transmitter 7. After the pairing is completed, the detonator housing 2 can be used to detonate the simulated object. When in use, the protective cover 17 is opened from the hinge seat 16, exposing the button 12. The button 12 drives the pressing rod 9 to descend, and the extension plate 10 on the pressing rod 9 compresses the spring 11 and contacts the trigger switch 5. The corresponding trigger switch 5 transmits the signal to the corresponding simulated explosive through the connecting wire 6 and the remote control signal transmitter 7 to complete the simulation of the explosion. Currently, for the detonation of some explosives, a wire is required. One end of the wire is inserted into the detonator housing 2 through the connection hole 13. After one end of the wire contacts the trigger switch 5, it is screwed to the threaded hole 14 to fix one end of the wire on the trigger switch 5. When the button 12 is pressed, the trigger switch 5 and the battery generate an electrical signal for the wire, and the signal is transmitted to the explosive through the wire to simulate an explosion.

[0032] The exemplary embodiments of the present utility model are described in detail with reference to the embodiments in the text. However, those skilled in the art can understand that, without departing from the concept of the present utility model, various modifications and variations can be made to the above specific embodiments, and various combinations can be made to the technical features and structures proposed by the present utility model, without exceeding the protection scope of the present utility model. The protection scope of the present utility model is determined by the appended claims. The foregoing description of the specific exemplary embodiments of the present utility model is not intended to limit the present utility model to the precise forms disclosed, and it is obvious that many changes and variations can be made in accordance with the above teachings. The purpose of selecting and describing the exemplary embodiments is to explain the specific principles of the present utility model and its practical applications, so that those skilled in the art can implement and utilize various different exemplary embodiments of the present utility model, as well as various different selections and changes. The scope of the present utility model is intended to be defined by the claims and their equivalents.

Claims

1. A remote control detonating device for training, comprising a protective bag (1) and a detonator housing (2) placed inside the protective bag (1), characterized in that: The inner wall of the detonator housing (2) is provided with trigger switches (5) distributed at equal distances, and a sliding hole is provided on the outer wall of one side of the detonator housing (2) at the center of the trigger switch (5), a pressing component is slidably connected to the detonator housing (2) in the sliding hole, and a connecting line (6) is connected to one side of the trigger switch (5), and a remote control signal transmitter (7) is installed on the outer wall of one end of the detonator housing (2); The pressing assembly comprises a pressing rod (9) slidably connected in the sliding hole, an extension plate (10) welded to the outer wall of one end of the pressing rod (9), and springs (11) welded to both ends of the outer wall of one side of the extension plate (10).

2. A remote-controlled detonator for training according to claim 1, characterized in that: The other end of the spring (11) is mounted on the inner wall of the detonator housing (2), and one end of the pressing rod (9) is in contact with the trigger switch (5), and the other end of the pressing rod (9) is mounted with a button (12).

3. A remote-controlled detonator for training according to claim 1, characterized in that: The outer walls of both sides of the detonator housing (2) are provided with connection holes (13) at the trigger switch (5), and the outer wall of one side of the detonator housing (2) is provided with a hidden groove (15) at the trigger switch (5), and the detonator housing (2) is provided with a threaded hole (14) at the center of the hidden groove (15).

4. A remote-controlled detonator for training according to claim 3, characterized in that: The other end of the connection hole (13) is in communication with the trigger switch (5), and a fastening screw is threadedly connected in the threaded hole (14), and the other end of the fastening screw is connected to the trigger switch (5).

5. A remote-controlled detonator for training according to claim 1, characterized in that: An articulated seat (16) is installed on one side outer wall of the detonator housing (2) at the button (12), and a protective cover (17) is rotatably connected to one end of the articulated seat (16), and the button (12) is located inside the protective cover (17).

6. A remote-controlled detonator for training according to claim 1, characterized in that: Anti-slip grooves (18) are provided on both side outer walls of the detonator housing (2), and the other end of the connecting wire (6) is connected to the remote control signal transmitter (7), and a battery is installed inside the detonator housing (2).

7. A remote-controlled detonator for training according to claim 1, characterized in that: An elastic band (3) is fixed to an outer wall of one side of the protection bag (1), and a hanging ring (4) is fixed to a top of one side of the protection bag (1).