Milling Machine Sensing Structure of Toy Gun

A mechanical buttstock sensing structure for toy guns provides immediate sound and light feedback on correct gunstock positioning, addressing the cost and complexity issues of existing devices, improving shooting accuracy and efficiency.

JP3251896UActive Publication Date: 2025-07-08GUAY GUAY TRADING CO LTD
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Patent Information

Application Number
JP2025001457U
Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2025-07-08
Estimated Expiration
2035-05-09

AI Technical Summary

Technical Problem

Existing shooting training devices for beginners are costly and complex, failing to guide correct gunstock positioning, leading to incorrect shooting habits and discomfort, and are not widely applicable due to high manufacturing costs.

Method used

A mechanical buttstock sensing structure for toy guns that uses trigger structures, circuit conduction parts, and power supply components to provide immediate sound and light warnings when the gunstock is correctly pressed against the shoulder, eliminating the need for expensive electronics and ensuring stable operation.

Benefits of technology

The structure allows for immediate, stable, and cost-effective guidance of correct gunstock positioning, enhancing shooting accuracy and efficiency without delays, making it suitable for widespread use in basic training environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provide a gunstock sensing structure for a toy gun that can improve the stability, accuracy, and continuous shooting efficiency of shooting. 【Solution means】 It consists of a toy gun body equipped with a gunstock part 11, a gunstock cover body 2, a contact part, a trigger structure 31, a circuit conduction part 32, a power supply component 4, a signal transmission component 5, and a control device 7. The control device is provided with a signal receiving part 71 and a warning component 72. When a shooting trainee holds the toy gun body, just by firmly pressing the gunstock part against the shoulder depression, the trigger structure moves into the gunstock part by the contact part of the gunstock cover body and is connected to the circuit conduction part to conduct, thereby completing the power supply circuit of the power supply component. Further, when a signal is transmitted to the control device by the signal transmission component, as soon as the signal receiving part receives the trigger signal, a warning by sound and light is issued by the warning component, informing the trainee that the shooting action of pressing the gunstock against the shoulder depression has been completed.
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Description

Technical Field

[0001] The present invention relates to a buttstock sensing structure for a toy gun, and in particular, it is an auxiliary device that is low-cost, simple and practical, and can react stably immediately. By helping the shooting training property to accurately contact the buttstock with the shoulder depression, it relates to a buttstock sensing structure for a toy gun that enables the shooter to master the basis of correct shooting actions.

Background Art

[0002] Shooting training is an activity that combines technology and mental strength, and those involved in shooting training are required to have high operation norms and stability. In the shooting training of the national military, according to the "Eight Essentials of the Gun", in the second action of "shouldering", the shooter must closely attach the buttstock to the shoulder depression, thereby effectively controlling the recoil force and ensuring the stability and accuracy when shooting continuously. However, this action is difficult for beginners to master, and it is not uncommon for the action to deviate due to the inappropriate position of the buttstock or insufficient strength. This not only affects the shooting effect but may also cause discomfort in the shoulder, thus affecting the training results.

[0003] In the prior art, most of the auxiliary devices used in shooting training have focused on the collection and analysis of electronic data. For example, some devices use stress sensors, position sensors, or angle detection devices to monitor the posture during shooting and provide real-time feedback. However, these devices usually require high manufacturing costs and complex technologies, so it is difficult to widely popularize them in basic training environments with limited budgets. In particular, in basic shooting training, beginners need simple and direct auxiliary devices to help them remember the correct posture.

[0004] Many of the current toy guns or training guns on the market only have basic shooting functions and do not have functions to assist in performing accurate shooting actions. Among advanced devices, some can capture the movement trajectory of the gun or provide analysis of shooting results, but they cannot guide the correct position where the shoulder contacts the gunstock. Therefore, shooters are likely to remember incorrect actions during repeated training. In addition, these devices often emphasize advanced technical solutions and it is difficult to achieve cost - effectiveness, so it is difficult to meet the needs of large - scale popularization.

Summary of the Invention

Problems to be Solved by the Invention

[0005] The present invention utilizes the design of mechanical structures such as the trigger structure and circuit conduction parts to trigger simple sounds, lights or alerts when the gunstock part is accurately pressed against the depression of the shoulder, thereby avoiding the use of electronic sensors, significantly reducing the manufacturing cost, and enhancing the possibility of popularization and application. The purpose is to provide a gunstock sensing structure for toy guns.

[0006] Furthermore, the present invention utilizes the design of power supply components, signal transmission components, and control devices to eliminate the operation process of electronic signals and almost eliminate delays from the moment of activation to the completion of reaction, so as to react immediately, have high environmental adaptability, and enable the operation to be more stable. The purpose is to provide a gunstock sensing structure for toy guns.

Means for Solving the Problems

[0007] In order to achieve the above-mentioned object, the structure of the present invention comprises a toy gun body having a stock, a stock cover, a contact part, at least one trigger structure, at least one circuit conducting part, a power supply part, a signal transmitting part, and a control device. The control device is further provided with a signal receiving part and a warning part. The stock abuts against the recess of the user's shoulder, and the stock cover is installed at the bottom of the stock. The contact part is located on the stock cover, and the trigger structure is provided in the stock cover and interlocks with the contact part. The circuit conducting part is provided in the stock and corresponds to the position of the trigger structure. The power supply part is provided in the toy gun body and supplies power when the trigger structure conducts the circuit conducting part. The signal transmitting part is provided on the stock cover and is electrically connected to the power supply part, thereby generating a trigger signal. The control device is provided in the toy gun body.

[0008] When the user uses this device as a toy gun for target practice, all he has to do is hold the gun body and firmly press the stock against his shoulder, and the trigger structure moves into the stock by the contact part of the stock cover, and is connected to the circuit conductive part to establish electrical continuity, completing the power supply circuit of the power supply part. Furthermore, the signal transmitting part transmits a signal to the control device, and as soon as the signal receiving part receives the trigger signal, the warning part issues a sound and light warning, informing the trainee that the act of pressing the stock against the shoulder, which is the shooting technique, has been completed. This improves the stability, accuracy, and efficiency of continuous shooting. Effect of the Invention

[0009] The above-mentioned technology solves the problem of conventional shooting training auxiliary devices, which require high manufacturing costs and complex technology, making them difficult to widely adopt in basic training environments with limited budgets, and achieves practical advances in the above-mentioned advantages. [Brief description of the drawings]

[0010]

Figure 1

Figure 2

Figure 3

Figure 4

Figure 5

Figure 6

Mode for Carrying Out the Invention

[0011] Refer to FIGS. 1 and 2. FIGS. 1 and 2 are a perspective view and an exploded view of the preferred embodiment 1 of the present invention. As can be seen from the figures, the present invention comprises a toy gun main body 1, a gun bed cover body 2, a contact portion 21, at least one trigger structure 31, a power supply component 4, a signal transmission component 5, and a control device 7.

[0012] The toy gun main body 1 is provided with a gun bed portion 11 that abuts against the depression of the user's shoulder.

[0013] The gun bed cover body 2 is installed at the bottom of the gun bed portion 11.

[0014] The contact portion 21 is located on the gun bed cover body 2.

[0015] At least one trigger structure 31 is provided inside the gun bed cover body 2 and is interlocked with the contact portion 21.

[0016] At least one circuit conduction portion 32 is provided inside the gun bed portion 11 and corresponds to the position of the trigger structure 31.

[0017] The power supply component 4 is provided inside the toy gun main body 1, and when the trigger structure 31 conducts the circuit conduction portion 32, power is supplied.

[0018] The signal transmitting component 5 is provided on the milling machine cover body 2 and is electrically connected to the power supply component 4, thereby generating a trigger signal.

[0019] The control device 7 is provided inside the toy gun body 1. The control device 7 is provided with a signal receiving unit 71 and a warning component 72. When the signal receiving unit 71 receives the trigger signal, the operation of the warning component 72 is controlled.

[0020] Among them, one side of the milling machine cover body 2 is provided with at least one stopper portion 22, and the milling machine portion 11 is provided with a connecting portion 111 connected corresponding to the stopper portion 22.

[0021] Among them, the toy gun body 1 takes, for example, a form with relatively large recoil such as a rifle, a shotgun, or a carbine. The milling machine cover body 2 takes, for example, a plate-like structure and is connected corresponding to the milling machine portion 11 by an uneven locking structure. Accordingly, the connecting portion 111 takes, for example, a concave groove on the milling machine portion 11. The stopper portion 22 takes, for example, a convex portion on the milling machine cover body 2, and the flat portion of the milling machine cover body 2 is a contact portion 21. The contact portion 21 takes, for example, soft rubber. The trigger structure 31 takes, for example, two metal pieces installed horizontally. The circuit conduction portion 32 is two contacts forming a short circuit through the circuit board 6, or a vertical metal piece with which the trigger structure 31 simultaneously contacts. In this embodiment, the latter is taken as an example. The power supply component 4 takes, for example, a battery provided on the milling machine cover body 2, and the signal transmitting component 5 takes, for example, a signal transmitting device. In this embodiment, both the power supply component 4 and the signal transmitting component 5 are implemented by being installed on the circuit board 6. The control device 7 takes, for example, a circuit board, and the signal receiving unit 71 and the warning component 72 take, for example, a signal receiver and a loudspeaker installed adjacent to each other. However, the corresponding forms of the above elements are only examples of preferred embodiments, and any form with the same function belongs to the scope of the present invention and is not limited to the above examples.

[0022] From the above description, the structure of the present technology can be understood. By combining and corresponding to this structure, it is possible to realize an auxiliary device that is low-cost, simple and practical, and reacts stably immediately. Thereby, it is possible to enable a shooting trainee to acquire the accurate contact position between the gun bed part 11 and the shoulder depression, and help the trainee to master the basis of accurate shooting movements. Details will be described below.

[0023] Refer to FIGS. 1 to 4 in combination simultaneously. FIGS. 1 to 4 are diagrams showing the operation from a perspective view in the preferred Embodiment 1 of the present invention. When assembling the above-described components, as can be seen from the figures, when the user uses the present invention as a toy gun for shooting training, it is only necessary to hold the toy gun body 1 in the normal training posture. At this time, the gun bed part 11 is pressed against the shoulder depression, and by utilizing the soft characteristics of the abutting part 21, when the gun bed cover body 2 is pressed against the shoulder depression by the rearward movement of the gun bed part 11, the abutting part 21 deforms according to the pressing force. Thereby, the trigger structure 31 moves to the position of the circuit conduction part 32. However, when it is not firmly pressed against the shoulder depression, the deformation width of the abutting part 21 is insufficient, so that the trigger structure 31 cannot contact the circuit conduction part 32, and thus the power supply component 4 and the signal transmission component 5 do not operate.

[0024] On the contrary, if the user can surely perform the operation of pressing the milling machine part 11 against the shoulder depression, the deformation width of the abutting part 21 becomes equal to or greater than the interval between the trigger structure 31 and the circuit conduction part 32, so that the trigger structure 31 contacts the circuit conduction part 32. As a result, the two metal pieces of the trigger structure 31 are short-circuited by the circuit conduction part 32, and further, the circuit on the circuit board 6 forms a complete circuit. At this time, the power supply component 4 outputs power normally and transmits the power to the signal transmission component 5. When the signal transmission component 5 is activated, it transmits a trigger signal to the control device 7. As soon as the signal receiving part 71 on the control device 7 receives the trigger signal, the control device 7 drives the warning part 72 to issue a warning by sound and light. This warning message is used to inform the user that the shooting operation of pressing the milling machine part 11 against the shoulder depression has been surely completed. When the user relaxes the force pressing against the shoulder depression, due to the elasticity of the material of the abutting part 21, the trigger structure 31 separates from the circuit conduction part 32. Accordingly, when manufacturing the milling machine part 11 and the milling machine cover body 2, by calculating the maximum deformation width of the abutting part 21 and the distance between the trigger structure 31 and the circuit conduction part 32, when the milling machine cover body 2 receives sufficient external force, the external force is converted into the movement amount of the trigger structure 31. The trigger method that activates a mechanical structure by using a physical operation replaces the trigger method that uses a sensor with high cost and high failure rate. Further, from the moment when the trigger structure 31 and the circuit conduction part 32 are conducted, until the power supply operation of the power supply component 4, the signal transmission operation of the signal transmission component 5 and the signal receiving part 71, and the warning operation of the warning part 72, there is no operation of calculating electronic signals in this process, and there is almost no delay from the moment of activation to the completion of the reaction, and it reacts immediately. Further, compared with electronic components such as sensors, the mechanical structure has higher environmental adaptability and more stable operation. Therefore, by using the warning of the warning part 72, the user is immediately informed whether the correct posture is achieved, helping the user to acquire the essentials of using a gun, remember the correct posture, and improve the stability, accuracy, and continuous shooting efficiency of shooting.

[0025] Refer to FIG. 5 simultaneously. FIG. 5 is an exploded view of the preferred embodiment 2 of the present invention. As can be seen from the figure, the main differences between this embodiment and the above-described embodiment are that the outer shape of the milling machine cover body 2 is changed, various functions are added to the milling machine cover body 2, and the form of the conduction structure between the trigger structure 31 and the circuit conduction part 32 is changed. Therefore, the outer wall of the milling machine cover body 2 is provided with a reinforcing part 23, and a deformation space 231 is formed inside the reinforcing part 23. The inside of the milling machine cover body 2 is provided with a positioning part 24, so that the milling machine cover body 2 is engaged and fixed to the milling machine part 11. Among them, the reinforcing part 23 takes a plurality of laminated rubbers as an example, so that a preferable shock resistance effect and a relatively small deformation width can be realized. Due to the annular design of the reinforcing part 23, the deformation space 231 is formed inside the reinforcing part 23, so that the deformation ability of the abutting part 21 is maintained. At the same time, the reinforcing part 23 strengthens the protection function of the internal structure of the milling machine cover body 2. Among them, the positioning part 24 is an annular groove or a hook formed to surround the inside of the milling machine cover body 2. In this embodiment, the hook is taken as an example, and the milling machine cover body 2 is fixed to the bottom of the milling machine part 11 by the positioning part 24. In other words, the milling machine cover body 2 can be easily removed, and it can be easily cleaned, maintained, and even replaced with a general milling machine cover body 2 without a milling machine sensing structure, so it has excellent convenience. Furthermore, by modularizing the outer shapes of the milling machine cover body 2 of the present invention and a general milling machine cover body 2, manufacturing and replacement become more convenient. Also, the trigger structure 31 of this embodiment takes a metal columnar structure as an example. Alternatively, the abutting operation between the trigger structure 31 and the circuit conduction part 32 can be designed as the outer shape of the connector terminal, and the impact between the trigger structure 31 and the circuit conduction part 32 can be mitigated by the elasticity of the outer shape of the terminal. When the deformation width of the abutting part 21 is larger than the interval between the trigger structure 31 and the circuit conduction part 32, a relaxation effect can be provided in the conduction state, and the service life of both can be indirectly extended. Therefore, the outer shapes of the trigger structure 31 and the circuit conduction part 32 are not limited. Furthermore, the connecting part 111 of this embodiment is a handle above the milling machine part 11, and the stopper part 22 is a missing part on one side of the milling machine cover body 2.As a result, the milling machine cover body 2 can be assembled while avoiding the handle, and by connecting the stopper portion 22 and the connecting portion 111, the milling machine cover body 2 can be prevented from shifting left and right. Furthermore, by aligning and attaching using the missing portion, incorrect operation can also be prevented. Naturally, the number of stopper portions 22 can be increased, thereby providing more fixing points and a more stable connection strength.

[0026] Refer to Figure 6 simultaneously. Figure 6 is an exploded view of the preferred embodiment 3 of the present invention. As can be seen from the figure, the main differences between this embodiment and the above-described embodiment are the outer shape of the milling machine cover body 2 and the forms of the conduction structures of the trigger structure 31 and the circuit conduction part 32. Therefore, the inner edge of the milling machine cover body 2 is provided with a clamping part 25, and the milling machine cover body 2 is firmly fixed to the milling machine part 11, so that the structure of the milling machine cover body 2 is simplified. By locking the outside of the clamping part 25 and the milling machine part 11, similarly, it can be quickly installed and removed and has convenience. Furthermore, between the trigger structure 31 and the circuit conduction part 32, when it is in a non-conductive state due to the elastic force of the elastic part 33, and at the same time, when the trigger structure 31 and the circuit conduction part 32 are conductive, by using the elastic force to strengthen the contact and adhesion effect between the two, a stable circuit conduction state during contact is realized. In this embodiment, furthermore, the trigger structure 31, the circuit conduction part 32, and the elastic part 33 constitute a microswitch 3. Specifically, the elastic part 33 is a bowl-shaped elastic structure (Rubber) in the microswitch 3, the circuit conduction part 32 is a plurality of pins on both sides of the microswitch 3, and the trigger structure 31 is a metal piece at the center of the microswitch 3 and below the elastic part 33. In this way, when the milling machine cover body 2 abuts against the shoulder depression, the abutting part 21 deforms inward, pushing and moving the microswitch 3 in the direction of the milling machine part 11. When the button at the top of the microswitch 3 contacts the bottom surface of the milling machine part 11, the pressing is completed. Or, by designing the abutting part 21 as an opening of the milling machine cover body 2, the microswitch 3 is made to correspond to a certain circuit board 6. When the milling machine cover body 2 abuts against the shoulder depression, by directly pressing the circuit board 6, similarly, the pressing of the button of the microswitch 3 can be completed.

[0027] Furthermore, in this embodiment, the warning method of the warning component 72 takes message notification as an example. Therefore, the warning component 72 can also be a signal transmission device and is used to transmit the preset message content. When the milling machine part 11 is firmly pressed against the shoulder depression, a message is sent to the instructor's electronic device, which not only has the effect of attracting attention but can also be used as data for monitoring, control, and analysis. The power supply component 4 of the present invention can also be a battery inside the toy gun body 1. In other words, the position of the power supply component 4 is not limited to the milling machine cover body 2, and the toy gun body 1 is not limited to an air gun or an electric gun either.

Explanation of Reference Signs

[0028] 1 Toy gun body 11 Milling machine part 111 Connecting part 2 Milling machine cover body 21 Contact part 22 Stopper part 23 Reinforcing part 231 Deformation space 24 Positioning part 25 Clamping part 3 Microswitch 31 Trigger structure 32 Circuit conduction part 33 Elastic part 4 Power supply component 5 Signal transmission component 6 Circuit board 7 Control device 71 Signal reception part 72 Warning

Claims

1. A buttstock sensing structure of a toy gun, comprising a toy gun body, a milling machine cover body, a contact part, at least one trigger structure, at least one circuit conduction part, a power supply component, a signal transmission component, and a control device, wherein the toy gun body is provided with a milling machine part that abuts against the depression of the user's shoulder, the milling machine cover body is installed at the bottom of the milling machine part, the contact part is located on the milling machine cover body, the at least one trigger structure is provided in the milling machine cover body and is interlocked with the contact part, the at least one circuit conduction part is provided in the milling machine part and corresponds to the position of the trigger structure, the power supply component is provided in the toy gun body and supplies power when the trigger structure conducts the circuit conduction part, the signal transmission component is provided on the milling machine cover body and generates a trigger signal by being electrically connected to the power supply component, the control device is provided in the toy gun body, and the control device is provided with a signal receiving part and a warning component. When the signal receiving part receives the trigger signal, the control device controls the operation of the warning component. The buttstock sensing structure of the toy gun is characterized by this.

2. The buttstock sensing structure of the toy gun according to claim 1, wherein the contact part is either soft rubber or an opening.

3. The outer wall of the milling machine cover body is provided with a strengthening part, and a deformation space is formed inside the strengthening part. The buttstock sensing structure of the toy gun according to claim 1 is characterized by this.

4. The inner edge of the milling machine cover body is provided with a clamping part, so that the milling machine cover body is firmly fixed to the milling machine part. The buttstock sensing structure of the toy gun according to claim 1 is characterized by this.

5. One side of the milling machine cover body is provided with at least one stopper part, and the milling machine part is provided with a connecting part connected corresponding to the stopper part. The buttstock sensing structure of the toy gun according to claim 1 is characterized by this.

6. The inner side of the milling machine cover body is provided with a positioning part, so that the milling machine cover body is engaged and fixed to the milling machine part. The buttstock sensing structure of the toy gun according to claim 1 is characterized by this.

7. The toy gun bed sensing structure according to claim 1, characterized in that a non-conductive state is achieved between the trigger structure and the circuit conduction part by the elastic force of an elastic component.

8. The toy gun bed sensing structure according to claim 7, characterized in that the trigger structure, the circuit conduction part, and the elastic component constitute a microswitch.

9. The warning method of the warning component is any one of warning by sound, warning by light emission, or message notification, and is characterized by the toy gun bed sensing structure according to claim 1.

10. The signal transmitting component is characterized by transmitting by any one of wired, Bluetooth (registered trademark), ZigBee (registered trademark), or infrared rays, and is characterized by the toy gun bed sensing structure according to claim 1.