Novel trigger structure

The design of the new trigger structure solves the problems of mechanical integration and inaccurate linkage transmission in the existing trigger structure, simplifies and stabilizes the trigger, and ensures the accuracy of laser beam and bullet firing.

CN223449051UActive Publication Date: 2025-10-17FUJIAN JUNYUAN SPORTING GOODS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423119612.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-10-17
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing trigger structures are either elastic combination mechanical structures that can be pulled in one go or mechanical linkage combination structures that require disassembly steps. The mechanical integration and linkage transmission are inaccurate, and the function is singular, requiring step-by-step actions, making it impossible to achieve accurate simulation of laser beams and bullet firing.

Method used

A novel trigger structure was designed. Through the mechanical connection and combination of components such as the positive fastener, the negative fastener, the locking pin, the trigger body, and the sear block, the trigger body can be pushed back twice to achieve "first-stage" and "second-stage" operation, which simplifies the mechanical transmission process and avoids the loosening effect of multiple spring combinations.

Benefits of technology

This simplifies the mechanical component structure of the trigger, making it easy to install and disassemble, reducing processing costs, improving the accuracy and stability of mechanical transmission, and ensuring the accuracy of the laser beam and bullet firing.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223449051U_ABST
    Figure CN223449051U_ABST
Patent Text Reader

Abstract

The utility model discloses a novel trigger structure, which relates to the technical field of laser training weapons, and comprises a forward fastener, a reverse fastener, a lock pin part, a torsion spring pipe frame, a trigger body and a stop iron block, and a series of simulation parts such as the forward fastener, the reverse fastener, the lock pin part, the trigger body and the stop iron block are integrally formed by a worker through stamping. Then the first vertical panel, the first turning buckle plate, the second turning buckle plate and the second vertical panel surround the trigger piece and the trigger stop iron to form a mechanical transmission working area, through simple and convenient assembling operation of grooves and holes and through simple and convenient assembling operation of cylinders and nails, the machining and mold opening cost is saved, multiple spring combinations are converted into mechanical assembling operation, and the machining efficiency is improved. The situation that a plurality of springs continuously pull the trigger to loosen and affect the mechanical compactness is avoided, the torsion spring pipe frame of the single spring is matched with mechanical conduction to enable the springs to be high in deformation resistance efficiency, the trigger can be pulled twice through pushing mechanical transmission of the pulling piece and the trigger resistance iron, and continuous trigger reset is stable in anti-loosening and high in reliability. The mechanical component of the trigger is simple in structure and easy to assemble and disassemble.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to laser training weapon technical field, concretely is a new trigger structure. BACKGROUND

[0002] Trigger is the part of the gun, when shooting, it is pulled by hand to make the bullet shoot out, the trigger is pressed, the blocking iron is released through mechanical transmission, so that the firing pin or hammer fires the ammunition, generally the lower third is pulled, the shooting accuracy is maintained, otherwise deviation will occur, and the gun of the laser training weapon is also the same, the corresponding laser beam line is shot out by pulling the trigger, so that the shooting accuracy or the model accuracy is sensed.

[0003] The existing trigger structure is usually a one-time elastic combined mechanical structure, or the conduction of the trigger pulling is a disassembled mechanical linkage combined structure, the mechanical integration and linkage conduction function of the trigger are not very accurate one-step to position and need step-by-step action, and the function of the trigger pulling is single and only designed for launching simulated bullets or laser beam lines. UTILITY MODEL CONTENT

[0004] In view of the defects of the prior art, the utility model provides a new trigger structure to solve the problems that the existing trigger structure is usually a one-time elastic combined mechanical structure, or the conduction of the trigger pulling is a disassembled mechanical linkage combined structure, the mechanical integration and linkage conduction function of the trigger are not very accurate one-step to position and need step-by-step action, and the function of the trigger pulling is single and only designed for launching simulated bullets or laser beam lines.

[0005] To achieve the above object, the utility model is realized by the following technical scheme: a new trigger structure, including positive buckle, reverse buckle, lock pin part, torsional spring pipe frame, trigger body, blocking iron block, the positive buckle is buckled together with the reverse buckle through the lock pin part and is formed into a working groove, the trigger body is mechanically connected with the lock pin part through the torsional spring pipe frame and can be elastically reset, the blocking iron block is installed inside the working groove, the torsional spring pipe frame can be once pushed and reset and can be twice pushed and reset through the trigger body and the blocking iron block.

[0006] Through the trigger body and the blocking iron block, the trigger body can be pushed and reset once and twice, so that the trigger body is pushed and reset twice, the blocking iron block is pushed and reset first to prepare for laser aiming and loading, that is, "one shot", and then the trigger body is reset and the blocking iron block is pushed and reset again to trigger laser emission, that is, "two shots", so "one shot, two shots" is the professional term of the gun, which means pulling the trigger once and twice.

[0007] The positive buckle is provided with a first vertical panel, a narrow hole, a first flip buckle, and a wide hole. The first vertical panel and the first flip buckle are integrally formed by stamping. The narrow hole and the wide hole are integrally punched by stamping. The narrow hole and the wide hole are each provided with six holes, and three of them are vertically fixed inside the first vertical panel. The first vertical panel is locked with the lock pin part through the narrow hole.

[0008] The first vertical panel, the first flip buckle, the second flip buckle, and the second vertical panel form a mechanical transmission working area by surrounding the trigger body and the blocking iron block.

[0009] The reverse buckle is provided with a second flip buckle and a second vertical panel. The second flip buckle and the second vertical panel are integrally formed by stamping. The other three of the narrow hole and the wide hole are vertically fixed inside the second vertical panel. The second vertical panel is locked with the first vertical panel through the lock pin part.

[0010] The first vertical panel, the first flip buckle, the second flip buckle, and the second vertical panel form a mechanical transmission working area by surrounding the trigger body and the blocking iron block.

[0011] The lock pin part is provided with a sleeve and a pin. The pin is provided with more than six holes and is installed on the left and right sides of the three sleeves, respectively. The sleeve and the pin are interference fit. The pin penetrates horizontally through the inside of the narrow hole shaft and the wide hole nests together with the pin cap.

[0012] The pin tail of the pin penetrates through the narrow hole and the sleeve to tightly lock the first vertical panel and the second vertical panel.

[0013] The trigger body is provided with a first pin hole, a second pin hole, and a trigger. The first pin hole and the second pin hole are fixed inside the top of the trigger. The trigger and the blocking iron block are mutually pushed.

[0014] The trigger and the blocking iron block are mutually pushed to form two times of pulling the trigger. The trigger pushes the blocking iron block to prepare the laser aiming and charging, which is "one shot". After the trigger is reset, the trigger pushes the blocking iron block to trigger the laser emission, which is "two shots". Therefore, "one shot" and "two shots" are the professional terms of the gun use, which means pulling the trigger once and pulling the trigger twice.

[0015] The blocking iron block is provided with a first slot hole, a second slot hole, and a trigger blocking iron. The first slot hole and the second slot hole are fixed inside the trigger blocking iron. The trigger blocking iron and the trigger are mutually pushed.

[0016] The first slot hole and the second slot hole conveniently reserve the activity interval of the first and second times of pushing the trigger body. The transmission components on both sides can be mechanically linked to replace the spring to realize the mechanical reset operation of the trigger blocking iron.

[0017] Preferably, the bottom of the iron block is provided with a key block, the bottom of the key block is tightly provided with a supporting plate, the working groove composed of the male fastener and the female fastener is provided with a top cylinder, and the top cylinder is inserted into the first slot hole and the second slot hole of the iron block.

[0018] The top cylinder is inserted into the first slot hole and the second slot hole of the iron block, the key block and the iron block on the supporting plate are pushed by the trigger body, the top cylinder is moved upward in linkage, the gun switch is connected, the trigger is fired to emit a laser beam line, the trigger body can be pulled twice, the first slot hole pushes the top cylinder to prepare for laser aiming and charging, which is "one shot", the second slot hole pushes the top cylinder to trigger laser emission, which is "two shots", and "one shot" and "two shots" are professional terms of the gun.

[0019] The utility model provides a novel trigger structure has the following beneficial effects:

[0020] The novel trigger structure is integrally formed by stamping a series of simulation components such as the male fastener, the female fastener, the locking pin part, the torsional spring pipe frame, the trigger body, the iron block, the key block, the supporting plate and the top cylinder, then the first vertical panel, the first flip panel, the second flip panel and the second vertical panel surround the trigger and the trigger iron block to form a mechanical transmission working area, the simple and convenient assembly operation of the groove and the hole, the cylinder and the nail saves the cost of mold opening and makes the multiple spring combination into a mechanical assembly operation, avoids the influence of the multiple springs on the mechanical compactness caused by the continuous pulling of the trigger, the single spring torsional spring pipe frame cooperates with the mechanical transmission to make the spring anti-deformation efficiency high, the trigger pushing mechanical transmission can realize the effect of pulling the trigger twice, the trigger is reset to prevent loosening and stabilize, and the mechanical assembly structure of the trigger is simplified and easy to disassemble. ACCURACY OF DRAWINGS

[0021] Figure 1 It is a three-dimensional structure schematic view of the novel trigger structure of the utility model;

[0022] Figure 2 It is a forty-five degree angle explosion and mirror image explosion three-dimensional structure schematic view of the novel trigger structure of the utility model;

[0023] Figure 3 It is a detailed mirror image three-dimensional split structure schematic view of the male fastener and the female fastener of the utility model;

[0024] Figure 4 It is a detailed three-dimensional structure schematic view of the trigger body of the utility model;

[0025] Figure 5 It is a detailed three-dimensional structure schematic view of the iron block of the utility model;

[0026] Figure 6The utility model discloses a novel trigger structure's coaxial surface explosion three-dimensional structure schematic diagram.

[0027] In the drawing: positive buckle 1, reverse buckle 2, lock pin part 3, torsional spring pipe frame 4, trigger body 5, blocking iron block 6, key block 7, supporting plate 8, top cylinder 9, first vertical panel 11, narrow hole 12, first flip buckle plate 13, wide hole 14, second flip buckle plate 21, second vertical panel 22, sleeve 31, pin 32, first pin hole 51, second pin hole 52, trigger 53, first slot 61, second slot 62, trigger blocking iron 63. DETAILED DESCRIPTION

[0028] The technical scheme in the embodiments of the utility model will be apparently and completely described below with reference to the drawings in the embodiments of the utility model. Apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative work belong to the range protected by the utility model.

[0029] Please refer to Figures 1-6 The utility model provides a novel trigger structure, including positive buckle (1), reverse buckle (2), lock pin part (3), torsional spring pipe frame (4), trigger body (5), blocking iron block (6), positive buckle (1) is together with reverse buckle (2) buckle and is closed in work groove by lock pin part (3), trigger body (5) is mechanically connected with lock pin part (3) by torsional spring pipe frame (4) and can be elastic reset, blocking iron block (6) is installed in the inside of work groove, torsional spring pipe frame (4) can be once push reset and can be twice push reset with blocking iron block (6) through trigger body (5).

[0030] Because the existing trigger structure is often one-time elastic combination mechanical structure, or the conduction of trigger buckle is the mechanical linkage combination structure of disassembly step, the mechanical integration and linkage conduction function of trigger are not very accurate one-step to place need step action, and the function of buckle trigger is single only for the design defect of launching simulation bullet or laser beam line.

[0031] It should be noted that through trigger body 5 and blocking iron block 6, one-time push reset and twice push reset can be formed, trigger body 5 is pushed to push blocking iron block 6 to prepare laser aiming and charging, that is, "one fire", and after trigger body 5 is reset, blocking iron block 6 is pushed twice to trigger laser emission, that is, "two fires", so "one fire, two fires" is also the professional term of gun use, which means one-time trigger and twice trigger.

[0032] The positive fastener 1 is provided with a first vertical panel 11, a narrow hole 12, a first flip plate 13, and a wide hole 14. The first vertical panel 11 and the first flip plate 13 are a stamped integrally formed structure, and the narrow hole 12 and the wide hole 14 are a stamped integrally punched structure. There are six narrow holes 12 and six wide holes 14, and three of them are vertically fixed inside the first vertical panel 11. The first vertical panel 11 is locked with the locking pin portion 3 through the narrow hole 12.

[0033] It should be noted that the first vertical panel 11 , the first flip plate 13 , the second flip plate 21 and the second vertical panel 22 surround the trigger body 5 and the sear 6 to form a working area for mechanical transmission.

[0034] The reverse fastener 2 is provided with a second flip plate 21 and a second vertical panel 22. The second flip plate 21 and the second vertical panel 22 are a stamped integrally formed structure. The other three of the narrow hole 12 and the wide hole 14 are vertically fixed inside the second vertical panel 22. The second vertical panel 22 is locked together with the first vertical panel 11 through the locking pin portion 3.

[0035] It should be noted that the first vertical panel 11 , the first flip plate 13 , the second flip plate 21 and the second vertical panel 22 surround the trigger body 5 and the sear 6 to form a working area for mechanical transmission.

[0036] The locking pin portion 3 is provided with a sleeve 31 and a pin 32. There are more than six pins 32 and they are respectively installed on the left and right sides of the three sleeves 31. The sleeve 31 and the pin 32 adopt an interference fit. The pin 32 horizontally passes through the interior of the axis of the narrow hole 12 and the pin cap is nested with the wide hole 14.

[0037] It should be noted that the pin 32 presses the first facade panel 11 and the second facade panel 22 into the wide hole 14, so that the tail of the pin 32 passes through the narrow hole 12 and clamps the first facade panel 11 and the second facade panel 22 with the sleeve 31 to interlock them.

[0038] The trigger body 5 is provided with a first pin hole 51, a second pin hole 52, and a pull piece 53. The first pin hole 51 and the second pin hole 52 are both fixedly provided on the inner side of the top of the pull piece 53. The pull piece 53 and the sear block 6 push each other.

[0039] It should be noted that by pushing the trigger 53 and the iron block 6 against each other, the trigger 53 can be pulled twice. The trigger 53 first pushes the iron block 6 to prepare for laser aiming and loading, which is "one fire". After the trigger 53 is reset, it pushes the iron block 6 a second time to trigger laser emission, which is "two fires". Therefore, "one fire, two fires" is a professional term used in firearms, which means pulling the trigger once and pulling the trigger twice.

[0040] The blocking iron block 6 is provided with a first slot hole 61, a second slot hole 62, and a trigger blocking iron 63, the first slot hole 61 and the second slot hole 62 are both fixed in the inside of the trigger blocking iron 63, and the trigger blocking iron 63 and the trigger piece 53 push each other.

[0041] It should be noted that the first slot hole 61 and the second slot hole 62 facilitate the reservation of the trigger body 5 to push the first and second activity intervals, so that the two-sided pushing transmission components can be mechanically linked to replace the spring to achieve the mechanical reset operation of the trigger blocking iron 63.

[0042] The bottom of the blocking iron block 6 is provided with a key block 7, the bottom of the key block 7 is tightly attached to a supporting plate 8, the working groove composed of the positive buckle 1 and the reverse buckle 2 is provided with a top cylinder 9, and the top cylinder 9 is inserted into the inside of the blocking iron block 6.

[0043] It should be noted that the top cylinder 9 is inserted into the first slot hole 61 and the second slot hole 62 of the blocking iron block 6, the trigger body 5 pushes the supporting plate 8 to push the key block 7 and the blocking iron block 6, thereby linking the top cylinder 9 to move upward to butt joint the firearm switch to form the effect of pulling the trigger to fire and emit laser beam line, and this action can form two times of pulling the trigger body 5, the first slot hole 61 first pushes the top cylinder 9 to prepare for laser sighting and loading, which is "one shot", and the second slot hole 62 secondly pushes the top cylinder 9 to trigger laser emission, which is "two shots", so "one shot, two shots" is the professional term of the firearm, which means pulling the trigger once and twice.

[0044] The staff processes a series of simulation components such as the positive buckle 1, the reverse buckle 2, the lock pin 3, the torsion spring pipe frame 4, the trigger body 5, the blocking iron block 6, the key block 7, the supporting plate 8, and the top cylinder 9 by stamping, and then the first vertical panel 11, the first flip buckle 13, the second flip buckle 21, and the second vertical panel 22 surround the trigger piece 53 and the trigger blocking iron 63 to form a mechanical transmission working area, through simple and convenient assembly operation of slots and holes, cylinders and nails, the processing mold cost is saved, multiple spring combinations are replaced by mechanical assembly operation, multiple spring continuous pulling of the trigger is avoided to affect the mechanical compactness, a single spring torsion spring pipe frame 4 is used to cooperate with mechanical transmission to make the spring anti-deformation efficiency high, and the top pushing mechanical transmission of the trigger piece 53 and the trigger blocking iron 63 can realize the effect of pulling the trigger twice, the continuous trigger reset prevents loosening and stabilizes, and the mechanical assembly structure of the trigger is simplified for easy disassembly.

[0045] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A new trigger structure, characterized by: The invention comprises a positive fastener (1), a negative fastener (2), a locking pin portion (3), a torsion spring tube frame (4), a trigger body (5), and an iron stopper (6). The positive fastener (1) is fastened with the negative fastener (2) through the locking pin portion (3) to form a working groove. The trigger body (5) is mechanically connected to the locking pin portion (3) through the torsion spring tube frame (4) and can be elastically reset. The iron stopper (6) is installed inside the working groove. The torsion spring tube frame (4) can be pushed and reset once and twice through the trigger body (5) and the iron stopper (6).

2. A novel trigger structure according to claim 1, characterized in that: The positive fastener (1) is provided with a first vertical panel (11), a narrow hole (12), a first flip-fastener plate (13), and a wide hole (14); the first vertical panel (11) and the first flip-fastener plate (13) are a stamped integrally formed structure; the narrow hole (12) and the wide hole (14) are a stamped integrally punched structure; six narrow holes (12) and six wide holes (14) are provided, and three of them are vertically fixed inside the first vertical panel (11); the first vertical panel (11) is locked with the locking pin portion (3) through the narrow hole (12).

3. A novel trigger structure according to claim 2, characterized in that: The reverse fastener (2) is provided with a second flip-fastener plate (21) and a second vertical panel (22); the second flip-fastener plate (21) and the second vertical panel (22) are a stamped integrally formed structure; the other three of the narrow hole (12) and the wide hole (14) are vertically fixed inside the second vertical panel (22); the second vertical panel (22) is locked together with the first vertical panel (11) via a locking pin portion (3).

4. A novel trigger structure according to claim 1 or 2, characterized in that: The locking pin portion (3) is provided with a sleeve (31) and a pin (32). There are six or more pins (32) and they are respectively installed on the left and right sides of the three sleeves (31). The sleeves (31) and the pins (32) are interference-fitted. The pins (32) horizontally penetrate the interior of the axis of the narrow hole (12) and the pin cap is nested in the wide hole (14).

5. The novel trigger structure according to claim 1, characterized in that: The trigger body (5) is provided with a first pin hole (51), a second pin hole (52), and a pull piece (53). The first pin hole (51) and the second pin hole (52) are both fixedly arranged on the inner side of the top of the pull piece (53). The pull piece (53) and the iron block (6) push each other.

6. A novel trigger structure according to claim 1 or 5, characterized in that: The sear block (6) is provided with a first slotted hole (61), a second slotted hole (62), and a trigger sear (63); the first slotted hole (61) and the second slotted hole (62) are both fixedly arranged inside the trigger sear (63); the trigger sear (63) and the trigger member (53) push each other.

7. The novel trigger structure according to claim 1, characterized in that: A button block (7) is installed at the bottom of the iron block (6), and a support plate (8) is tightly attached to the bottom of the button block (7). A top cylinder (9) is installed in the working groove formed by the positive fastener (1) and the reverse fastener (2), and the top cylinder (9) is inserted into the interior of the iron block (6).