Rifle tactical simulation training excitation device

By designing a dual-trigger device and locking mode detection in the simulated training gun, the problem of significant differences in the operating experience between existing laser simulated training guns and real guns has been solved, achieving a simulated training effect consistent with that of real guns and improving shooting accuracy and training effectiveness.

CN223649798UActive Publication Date: 2025-12-09BEIJING YIJIU TECH CO LTD
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Patent Information

Application Number
CN202520235485.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2025-12-09
Estimated Expiration
2035-02-14

AI Technical Summary

Technical Problem

Existing laser simulation training guns differ structurally from real rifles, resulting in a significant difference in the user experience and impacting training effectiveness, as well as poor shooting accuracy.

Method used

A rifle tactical simulation training trigger device was designed, including a two-stage triggering device between the trigger switch and the trigger. The device simulates the two-stage triggering sensation of a real gun through a pressing plate, a reset device, and a limiting device. Combined with a locking and pattern detection device, it ensures that the training effect is consistent with that of a real gun.

Benefits of technology

Simulation training devices can better simulate the feel and shooting process of real guns, improve training accuracy, reduce costs, and enhance training effectiveness.

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Abstract

The utility model discloses a rifle tactical simulation training excitation device, which comprises a trigger switch and a trigger, a two-way trigger device is arranged between the trigger and the trigger switch, the two-way trigger device comprises a pressing sheet which is rotatably arranged between the trigger and the trigger switch, the pressing sheet is connected with a reset device, and the reset device is connected with a trigger. The two-way triggering device further comprises a limiting device matched with the pressing piece. A pressing piece is arranged between the trigger and the trigger switch, the trigger action process comprises two triggers, the first trigger is that the trigger is pulled, the trigger rotates, and the trigger end of the trigger rotates towards the pressing piece until the trigger end makes contact with the pressing piece; in the second process, the trigger overcomes the resistance of the reset device of the pressing piece to continuously rotate, and the trigger end of the trigger pushes the pressing piece to rotate until the pressing piece presses the trigger switch and starts the trigger switch; the setting of the two triggers is consistent with the setting of the real gun, and the simulation training effect is better.
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Description

Technical Field

[0001] This utility model relates to the field of shooting simulation equipment technology, and in particular to a rifle tactical simulation training activation device. Background Technology

[0002] Shooting training is a routine subject for military personnel and police officers. Using live ammunition for training poses certain risks and presents significant challenges to firearms management; moreover, live ammunition training is costly. To address these issues, simulation equipment is often used in routine training to replace live ammunition. Currently, the equipment used for simulated shooting training for police officers and in national defense education is mostly laser-based training guns. However, these guns have poor accuracy and low simulation levels. The experience of using such training guns differs greatly from that of using real firearms, resulting in minimal training effectiveness. This can lead to various errors by trainees in actual combat due to a lack of experience, affecting mission execution and even causing serious consequences.

[0003] Existing laser-simulated training guns differ significantly in structure from real rifles. Therefore, the operational experience of using laser-simulated training guns differs greatly from that of real rifles, affecting training results. For example, a real rifle trigger has two triggers, while existing laser-simulated training guns lack this feature. Consequently, the operation of laser-simulated training guns differs significantly from that of real rifles. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a rifle tactical simulation training stimulation device.

[0005] To solve the above-mentioned technical problems, the technical solution of this utility model is: a rifle tactical simulation training triggering device, including a trigger switch and a trigger, wherein a second triggering device is installed between the trigger and the trigger switch, the second triggering device includes a pressure plate rotatably installed between the trigger and the trigger switch, the pressure plate is connected to a reset device, and the second triggering device further includes a limiting device that cooperates with the pressure plate.

[0006] As a preferred technical solution, a trigger shaft is provided on the rifle housing between the trigger and the trigger switch, and the pressure plate is rotatably mounted on the trigger shaft;

[0007] The reset device includes a torsion spring fitted on the trigger shaft, one torsion arm of the torsion spring being fixedly connected to the housing, and the other torsion arm of the torsion spring abutting against the side of the pressure plate facing the trigger switch.

[0008] As a preferred technical solution, the limiting device includes a limiting window disposed on the housing, and one side of the pressure plate extends into the limiting window.

[0009] As a preferred technical solution, the trigger is also connected to a locking device, which includes a control plate slidably mounted on the rifle housing. One end of the control plate is connected to the trigger. A locking shaft is rotatably mounted on the housing. The control plate is provided with a locking part that cooperates with the locking shaft. The locking shaft is provided with a locking protrusion that abuts against the locking part and restricts the movement of the control plate.

[0010] As a preferred technical solution, one end of the locking shaft extends from the housing and is provided with a locking knob, and the locking knob is marked with a locking mark corresponding to the working state of the locking protrusion.

[0011] As a preferred technical solution, the locking part includes a locking surface that is arranged around the locking shaft and has a clearance fit with the locking shaft, and the locking protrusion abuts against the locking surface; the distance between the locking surface and the locking shaft is not less than the distance that the control plate moves towards the muzzle when the trigger is working.

[0012] As a preferred technical solution, the locking protrusion adopts a variable diameter structure, and the height of the locking protrusion abutting against the locking surface is adapted to the distance between the locking surface and the locking shaft.

[0013] As a preferred technical solution, the trigger is also connected to a pattern detection device, which includes a detection shaft rotatably mounted on the rifle housing. A detection plate with one end rotatably connected to the housing is also mounted on the housing. The other end of the detection plate rests on the detection shaft. A detection switch is mounted above the detection plate. The detection shaft is circumferentially arranged with a first station and a second station that cooperate with the detection plate. The first station can drive the detection plate to trigger the detection switch, while the second station cannot drive the detection plate to trigger the detection switch.

[0014] As a preferred technical solution, the first station of the detection shaft is provided with a working part that lifts the detection piece to trigger the detection switch, and the second station of the detection shaft is provided with a clearance notch to prevent the detection piece from contacting the detection switch.

[0015] As a preferred technical solution, one end of the detection shaft extends from the housing and is provided with a selection knob, the selection knob being marked with a mode identifier that matches the working position of the detection shaft.

[0016] Due to the adoption of the above technical solution, the rifle tactical simulation training trigger device includes a trigger switch and a trigger. Two triggering devices are installed between the trigger and the trigger switch. Each triggering device includes a pressure plate rotatably installed between the trigger and the trigger switch. The pressure plate is connected to a reset device. The two triggering devices also include a limiting device that cooperates with the pressure plate. The pressure plate between the trigger and the trigger switch allows for two triggering processes: First, pulling the trigger causes it to rotate, and the triggering end of the trigger rotates towards the pressure plate until it contacts it; second, the trigger continues to rotate, overcoming the resistance of the pressure plate's reset device, and the triggering end pushes the pressure plate to rotate until the pressure plate presses the trigger switch and activates the trigger. The two-stage triggering setup is consistent with that of a real rifle, resulting in better simulation training effects. Attached Figure Description

[0017] The following figures are intended only to illustrate and explain the present invention and do not limit the scope of the present invention. Wherein:

[0018] Figure 1 This is a schematic diagram of the structure of an embodiment of the present utility model. Figure 1 ;

[0019] Figure 2 This is a schematic diagram of the structure of an embodiment of the present utility model. Figure 2 ;

[0020] Figure 3 This is a schematic diagram of the structure of an embodiment of the present utility model. Figure 3 ;

[0021] Figure 4 This is a schematic diagram of the structure of an embodiment of the present utility model. Figure 4 ;

[0022] Figure 5 This is a schematic diagram of the structure of an embodiment of the present utility model. Figure 5 ;

[0023] Figure 6 This is a usage state diagram of an embodiment of this utility model;

[0024] Figure 7 yes Figure 6 Enlarged view of section I in the middle.

[0025] In the diagram: 11-Trigger switch; 12-Switch base; 2-Trigger; 31-Pressure plate; 32-Trigger shaft; 33-Torsion spring; 34-Limit window; 4-Housing; 51-Control board; 52-Locking protrusion; 53-Locking surface; 61-Detection plate; 62-Detection switch; 71-Locking detection shaft; 72-Combined toggle. Detailed Implementation

[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments. In the following detailed description, only certain exemplary embodiments of the present invention are described by way of illustration. Undoubtedly, those skilled in the art will recognize that various modifications can be made to the described embodiments without departing from the spirit and scope of the present invention. Therefore, the drawings and description are illustrative in nature and not intended to limit the scope of the claims.

[0027] like Figures 1 to 7 As shown, the rifle tactical simulation training trigger device includes a trigger switch 11 and a trigger 2. A second trigger device is installed between the trigger 2 and the trigger switch 11. The second trigger device includes a pressure plate 31 rotatably installed between the trigger 2 and the trigger switch 11. The pressure plate 31 is connected to a reset device. The second trigger device also includes a limiting device that cooperates with the pressure plate 31.

[0028] A switch base 12 is mounted on the rifle housing 4, facing the trigger end of the trigger 2. The trigger switch 11 is mounted on the switch base 12, facing the trigger 2. A pressure plate 31 is rotatably mounted on the rifle housing 4. One end of the pressure plate 31 is rotatably connected to the housing 4, and the other end of the pressure plate 31 is located between the trigger switch 11 and the trigger 2, and the pressure plate 31 swings between the two. When the trigger 2 is pulled, the trigger 2 rotates, and the trigger end of the trigger 2 swings towards the pressure plate 31. There is a gap between the trigger end of the trigger 2 and the pressure plate 31. When the user pulls the trigger, the resistance during this part of the stroke is minimal, which is used to simulate the first flash of a rifle. When the trigger end of trigger 2 contacts the pressure plate 31, it pushes the pressure plate 31 to swing. The pressure plate 31 swings toward the trigger switch 11 until the trigger switch 11 is turned on. Due to the resistance of the reset device, the resistance of the user pulling the trigger increases, which is used to simulate the second stage of the rifle's fire. After receiving the trigger signal, the rifle's controller controls the rifle's linear motor to perform simulated burst or full-auto fire according to the set mode. The linear motor is a recoil simulation device. The recoil simulation device for simulating shooting uses existing technology, which will not be described in detail here.

[0029] Furthermore, the rifle housing 4 is provided with a trigger shaft 32 located between the trigger 2 and the trigger switch 11. The pressure plate 31 is rotatably mounted on the trigger shaft 32. Specifically, the bottom of the pressure plate 31 is rotatably mounted on the trigger shaft 32, and the top of the pressure plate 31 swings between the trigger 2 and the trigger switch 11. The trigger shaft 32 is fixedly connected to the rifle housing 4.

[0030] The reset device includes a torsion spring 33 mounted on the trigger shaft 32. One torsion arm of the torsion spring 33 is fixedly connected to the housing 4, and the other torsion arm of the torsion spring 33 abuts against the side of the pressure plate 31 facing the trigger switch 11.

[0031] Furthermore, the limiting device includes a limiting window 34 disposed on the housing 4, and one side of the pressure plate 31 extends into the limiting window 34.

[0032] Under the action of the torsion spring 33, the top of the pressure plate 31 tilts towards one side of the trigger 2. The top of the pressure plate 31 abuts against the side of the limiting window 34 near the trigger 2. When the trigger 2 is pulled, the trigger 2 drives the pressure plate 31 to rotate. The top of the pressure plate 31 rotates towards the trigger switch 11. The pressure plate 31 stops after it comes into close contact with the side of the limiting window 34 near the trigger switch 11. The setting of the limiting window 34 allows the pressure plate 31 to start the trigger switch 11 without over-pressing, thus extending the service life of the trigger switch 11.

[0033] Furthermore, the trigger 2 is also connected to a locking device, which includes a control plate 51 slidably mounted on the rifle housing 4. One end of the control plate 51 is connected to the trigger 2. A locking shaft is rotatably mounted on the housing 4. The control plate 51 is provided with a locking part that cooperates with the locking shaft. The locking shaft is provided with a locking protrusion 52 that abuts against the locking part and restricts the movement of the control plate 51.

[0034] When the locking shaft rotates, the locking protrusion 52 on the locking shaft abuts against the locking part on the control plate 51, locking the control plate 51 and preventing the trigger 2 from being pressed. When the locking shaft is rotated to release the locking protrusion 52 from locking the control plate 51, the trigger 2 can work normally.

[0035] Furthermore, one end of the locking shaft extends from the housing 4 and is equipped with a locking knob. The locking knob is marked with a locking indicator corresponding to the working state of the locking protrusion 52. The locking indicator can be set as needed, for example, it can be a lock pattern or the number "0". The rotation of the locking knob drives the rotation of the locking shaft.

[0036] Furthermore, the locking part includes a locking surface 53 that is arranged around the locking shaft and has a clearance fit with the locking shaft, and the locking protrusion 52 abuts against the locking surface 53; the distance between the locking surface 53 and the locking shaft is not less than the distance that the trigger 2 drives the control plate 51 to move towards the muzzle when it is working. The locking surface 53 is an arc-shaped surface.

[0037] Furthermore, the locking protrusion 52 adopts a variable diameter structure, and the height of the locking protrusion 52 abutting against the locking surface 53 is adapted to the distance between the locking surface 53 and the locking shaft. That is, the maximum height of the locking protrusion 52 must be adapted to the distance between the locking surface 53 and the locking shaft. When the locking shaft rotates, the distance between the outer circumferential surface of the locking protrusion 52 and the locking surface 53 gradually decreases until they abut against each other and lock. After abutting and locking, the sliding freedom of the control plate 51 is restricted, and the control plate 51 fixes the trigger 2. At this time, no matter how the trigger 2 is pressed, the trigger 2 will not rotate.

[0038] Furthermore, the trigger 2 is also connected to a mode detection device, which includes a detection shaft rotatably mounted on the rifle housing 4. A detection plate 61, one end of which is rotatably connected to the housing 4, is also mounted on the housing 4. The other end of the detection plate 61 rests on the detection shaft. A detection switch 62 is mounted above the detection plate 61. The detection shaft has a first position and a second position circumferentially arranged to cooperate with the detection plate 61. The first position can drive the detection plate 61 to trigger the detection switch 62, while the second position cannot drive the detection plate 61 to trigger the detection switch 62. One end of the detection shaft extends from the housing 4 and is equipped with a selection knob. The selection knob is marked with a mode identifier matching the position of the detection shaft. The mode identifier includes a single-shot identifier and a burst-fire identifier, which can be selected as needed, for example, using the number 1 to identify single-shot and the number 2 to identify burst-fire. The rifle housing 4 is marked with arrows. When the number 1 is aligned with the arrow, the rifle is in single-shot mode. When the number 2 is aligned with the arrow, the rifle is in burst-fire mode.

[0039] The first station of the detection shaft is provided with a working part that lifts the detection piece 61 to trigger the detection switch 62. The second station of the detection shaft is provided with a clearance notch to prevent the detection piece 61 from contacting the detection switch 62. By rotating the selection lever, when the first station of the detection shaft is engaged with the detection piece 61, the working part of the first station lifts the detection piece 61, causing the detection piece 61 to press the detection switch 62, thereby triggering the detection switch 62. The detection switch 62 sends the detection result to the rifle's controller, which then controls the rifle to enter single-shot mode. By rotating the selection lever, when the second station of the detection shaft is engaged with the detection piece 61, the detection piece 61 falls down and does not trigger the detection switch 62. At this time, the controller controls the rifle to enter burst mode.

[0040] Since the locked state of trigger 2 cannot occur simultaneously with other operating modes of trigger 2—that is, the rifle cannot enter either single-shot or burst-fire mode in the locked state—the detection axis and locking axis can be combined into a locking detection axis 71, and the locking knob and selection knob can be combined into a combined knob 72. One section of the locking detection axis 71 is used as the locking axis, and the other section is used as the detection axis. The combined knob 72 has three function positions, corresponding to the locked state, single-shot state, and burst-fire state, respectively.

[0041] The setup mode of this rifle tactical simulation training device is consistent with that of a real gun. When trainees use this device for simulation training, they can not only reduce costs, but also obtain simulation training that is closest to that of real guns and live ammunition, which can quickly improve their skills and enhance training effectiveness.

[0042] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A rifle tactical simulation training activation device, characterized in that: The device includes a trigger switch and a trigger, with two triggering devices installed between the trigger and the trigger switch. Each triggering device includes a pressure plate rotatably installed between the trigger and the trigger switch. The pressure plate is connected to a reset device. The two triggering devices also include a limiting device that cooperates with the pressure plate.

2. The rifle tactical simulation training activation device as described in claim 1, characterized in that: The rifle housing is provided with a trigger shaft located between the trigger and the trigger switch, and the pressure plate is rotatably mounted on the trigger shaft; The reset device includes a torsion spring fitted on the trigger shaft, one torsion arm of the torsion spring being fixedly connected to the housing, and the other torsion arm of the torsion spring abutting against the side of the pressure plate facing the trigger switch.

3. The rifle tactical simulation training activation device as described in claim 2, characterized in that: The limiting device includes a limiting window disposed on the housing, and one side of the pressure plate extends into the limiting window.

4. The rifle tactical simulation training activation device as described in claim 1, characterized in that: The trigger is also connected to a locking device, which includes a control plate slidably mounted on the rifle housing. One end of the control plate is connected to the trigger. A locking shaft is rotatably mounted on the housing. The control plate is provided with a locking part that cooperates with the locking shaft. The locking shaft is provided with a locking protrusion that abuts against the locking part and restricts the movement of the control plate.

5. The rifle tactical simulation training activation device as described in claim 4, characterized in that: One end of the locking shaft extends from the housing and is provided with a locking knob, which is marked with a locking mark corresponding to the working state of the locking protrusion.

6. The rifle tactical simulation training activation device as described in claim 4, characterized in that: The locking part includes a locking surface that is arranged around the locking shaft and has a clearance fit with the locking shaft, and the locking protrusion abuts against the locking surface; the distance between the locking surface and the locking shaft is not less than the distance that the control plate moves towards the muzzle when the trigger is working.

7. The rifle tactical simulation training activation device as described in claim 6, characterized in that: The locking protrusion adopts a variable diameter structure, and the height of the locking protrusion abutting against the locking surface is adapted to the distance between the locking surface and the locking shaft.

8. The rifle tactical simulation training activation device according to any one of claims 1 to 7, characterized in that: The trigger is also connected to a pattern detection device, which includes a detection shaft rotatably mounted on the rifle housing. A detection plate with one end rotatably connected to the housing is also mounted on the housing. The other end of the detection plate rests on the detection shaft. A detection switch is mounted above the detection plate. The detection shaft is circumferentially arranged with a first station and a second station that cooperate with the detection plate. The first station can drive the detection plate to trigger the detection switch, while the second station cannot drive the detection plate to trigger the detection switch.

9. The rifle tactical simulation training activation device as described in claim 8, characterized in that: The first station of the detection shaft is provided with a working part that lifts the detection piece to trigger the detection switch, and the second station of the detection shaft is provided with a clearance notch to prevent the detection piece from contacting the detection switch.

10. The rifle tactical simulation training activation device as described in claim 8, characterized in that: One end of the detection shaft extends from the housing and is provided with a selection knob, which is marked with a mode identifier that matches the working position of the detection shaft.