Rapid fire device
By designing a rapid-fire device, the control handle group controls the displacement of the controlled components on the main gun body, solving the problem of instability and accuracy interruption in the existing bow-type arrow-loading operation, realizing rapid continuous shooting and finger safety, and maintaining shooting stability and accuracy.
Patent Information
- Application Number
- CN202311076751.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-25
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2043-08-25
AI Technical Summary
Existing bow designs can easily disrupt shooting stability and accuracy during the arrow-loading process, and pose a risk of finger pinching injuries.
Design a rapid-fire device that controls the displacement of the controlled component on the main body of the gun by means of a control handle assembly, avoiding the finger from being pulled away from the trigger, and achieving continuous arrow loading and firing. The controlled component and the trigger assembly are independent mechanisms, and the pivoting operation of the control handle assembly controls the tensioning and release of the bowstring assembly.
Shorten operation time, maintain shooting stability and accuracy, avoid finger pinching injuries, and achieve rapid continuous shooting.
Smart Images

Figure CN119509247B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application is a rapid continuous shooting device, which is mainly used in the field of shooting. The present application can help users to shoot continuously, shorten the operation time of drawing the arrow and string, maintain the concentration during shooting, and achieve high accuracy and stability. BACKGROUND
[0002] The most important thing in archery is to maintain stability and accuracy during shooting. Therefore, how to achieve the above is a problem that needs to be overcome. Generally, the arrow needs to be reloaded after each shot, which may cause the loss of the aiming point and the interruption of stability. Today, we are discussing a folding bow that needs to be drawn to load the arrow. Please see Patent No. I591314 "Folding Bow String Drawing Device". Alternatively, we are discussing a bow that needs to be rotated to load the arrow. Please see Patent No. M641344 "Crossbow String Drawing Structure". Both of the above-mentioned bows must be operated in a special way to shoot again. Both of the above-mentioned bows have the same problem, which is the step of releasing the trigger. In addition to the time-consuming operation, the most obvious problem is the step of releasing the trigger.
[0003] The first type of bow mentioned above must remove the finger pressing the trigger from the trigger to perform the lever pivoting operation each time the arrow is loaded. This method is most likely to interrupt the user's accuracy during shooting. The second type of bow mentioned above also requires the finger pressing the trigger to be removed to operate the reel. This method also interrupts the user's accuracy during shooting. In addition, some bows have a trigger that moves with the movement of the user's finger. If the user's finger cannot be removed in time, it will be pinched between the trigger and the trigger guard, which may cause injury. Therefore, relevant manufacturers must think about how to improve the above-mentioned problems. SUMMARY
[0004] To improve the problems listed in the prior art, such as the risk of pinching the finger during operation, the removal and insertion of the finger affecting the stability and accuracy that have been maintained, the present application provides a rapid continuous shooting device. The device allows the user to perform continuous shooting operation of the folding bow without removing the finger from the trigger position, which not only shortens the operation time, but also protects the safety of the finger and maintains the accuracy and stability during shooting.
[0005] The technical solution adopted by the present application to solve its technical problems is:
[0006] A rapid continuous firing device, comprising: a main gun body, a top end of which is provided with an arrow setting part and a shooting part for installing a bowstring assembly, and a bottom end of which is provided with a cocking part, and a trigger assembly is installed on the cocking part; a controlled assembly is installed on the arrow setting part of the main gun body, and the controlled assembly is partially located inside the main gun body, and the controlled assembly is partially exposed outside the arrow setting part, and when the controlled assembly moves towards the shooting part, the controlled assembly is away from the trigger assembly, and when the controlled assembly moves in the opposite direction of the shooting part, the controlled assembly is in contact with the trigger assembly; an arrow magazine is installed on the top end of the main gun body, and a plurality of arrow bodies located in the arrow magazine are sequentially dropped into the controlled assembly exposed at the arrow setting part; and a control handle assembly is pivotally connected to the main gun body at one end and located below the arrow setting part, the control handle assembly is pivotally connected with the controlled assembly, and when the control handle assembly pivots towards the shooting part relative to the main gun body, the control handle assembly drives the controlled assembly to move towards the shooting part to form a string drawing mode, and when the control handle assembly pivots in the opposite direction of the shooting part, the control handle assembly drives the controlled assembly to return to the original position to form a shooting mode; wherein the controlled assembly is controlled to move on the arrow setting part through each pivoting movement of the control handle assembly, and in the string drawing mode, the controlled assembly is not in contact with the trigger assembly, and the trigger assembly is located in the cocking part, and when the controlled assembly moves in the opposite direction of the shooting part to be in the shooting mode, the controlled assembly is in contact with the trigger assembly, and the trigger assembly is driven to operate the controlled assembly to release the bowstring assembly to sequentially fire the plurality of arrow bodies.
[0007] The beneficial effect of the present application is that the control handle assembly controls the displacement of the controlled assembly, and the movement of the controlled assembly does not cause the trigger assembly to move together, and the controlled assembly and the trigger assembly are independent mechanisms, so that the movement of the controlled assembly does not cause the trigger assembly to move, which can avoid the finger compression of the prior art, and the pivoting operation of the control handle assembly can enable the user to quickly and continuously load arrows, draw strings, and fire, which can greatly save the operation time and maintain the stability and accuracy required by the user during shooting. BRIEF DESCRIPTION OF DRAWINGS
[0008] The present application will be further described below in conjunction with the drawings and examples.
[0009] Figure 1 The present application is a perspective view.
[0010] Figure 2 The present application is another perspective view.
[0011] Figure 3 The present application is an exploded perspective view of the main gun body and the arrow magazine.
[0012] Figure 4 The present application is an exploded perspective view of the main gun body and the controlled assembly.
[0013] Figure 5 Fig. 3 is a exploded perspective view of the controlled component of the present application.
[0014] Figure 6 Fig. 4 is a exploded perspective view of the main gun body and the handle set of the present application.
[0015] Figure 7 Fig. 5 is a sectional view of the arrow body in the arrow holding chamber of the present application. Figure 2 Fig. 6 is a sectional view of the arrow body in the arrow holding slot of the present application.
[0016] Figure 7A Fig. 7 is a sectional view of the safety latch of the present application. Figure 7 Fig. 8 is a sectional view of the trigger set of the present application.
[0017] Figure 8 Fig. 9 is a sectional view of the long push block of the present application. Figure 7 Fig. 10 is a schematic view of the handle set pivoting towards the shooting part and the controlled component displacing towards the shooting part.
[0018] Figure 9 Fig. 11 is a schematic view of the handle set pivoting back and the controlled component displacing back and drawing the bowstring in the bowstring set. Figure 8 Fig. 12 is a schematic view of the lowermost arrow body in the arrow holding chamber falling into the arrow holding slot after the controlled component returns to the original position.
[0019] Figure 10 Fig. 13 is a sectional view of the safety latch switching and limiting the trigger set from firing. Figure 9 Fig. 14 is a schematic view of the trigger set being pressed to fire.
[0020] Figure 11 Fig. 15 is a sectional view of the long push block of the present application. Figure 10 Fig. 16 is a sectional view of the safety latch switching and limiting the trigger set from firing.
[0021] Figure 12 Fig. 17 is a sectional view of the trigger set being pressed to fire. Figure 10 Fig. 18 is a sectional view of the long push block of the present application.
[0022] Figure 12A Fig. 19 is a sectional view of the safety latch switching and limiting the trigger set from firing. Figure 12 Fig. 20 is a sectional view of the trigger set being pressed to fire.
[0023] Figure 13 Fig. 21 is a top view of the folding support of the present application.
[0024] Fig. 22 is a sectional view of the arrow body in the arrow holding chamber of the present application.
[0025] Main gun body 1 Arrow holding part 11 Shooting part 12 Combined hole 121 Firing part 13 Grip part 14 Bowstring set 2 Bow arm 21 Bowstring 22 Trigger set 3 Trigger 31 Bow guard 311 Insert slot 312 Long push block 32
[0026] Controlled component 4 arrow seat 41 installation port 411 Arrow slot 412 actuator group 42 housing 421 Housing 4211 positioning portion 4212 stop block 422 Movable block 423 stop portion 4231 string clamping seat 424 Clamping seat groove 4241 connecting piece 43 shaft 44 Auxiliary shaft 45 torsion spring 46 elastic member 47 Safety latch 48 push rod 481 limiting hole 482 Arrow magazine 5 arrow body 51 bottom magazine part 52 Arrow accommodating chamber 521 pivot groove 522 movable sealing magazine part 53 Control handle group 6 connecting rod 61 control handle 62 Outer handle portion 621 split opening 6211 inner handle portion 622 Hook piece 6221 positioning shaft 63
[0027] Spring 7 folding support 8 DETAILED DESCRIPTION
[0028] In order to clearly illustrate the above-mentioned purposes and effects that can be achieved by the present application, the characteristics and effects of the embodiments of the present application are described in detail with reference to the drawings. Please refer to Figures 1 to 13As shown, the present application is a rapid firing device, which comprises: a main gun body 1, the top end of which is provided with an arrow part 11 and a shooting part 12 for installing a bowstring assembly 2, while the bottom end of the main gun body 1 is provided with a trigger part 13 and a handle part 14 for providing the user to hold, and a trigger assembly 3 is installed on the trigger part 13; a controlled assembly 4 is installed on the arrow part 11 of the main gun body 1, and the controlled assembly 4 is partially located inside the main gun body 1, while the controlled assembly 4 is partially exposed outside the arrow part 11, and when the controlled assembly 4 moves towards the shooting part 12, it is away from the trigger assembly 3 and hooks the bowstring assembly 2, while when the controlled assembly 4 moves in the opposite direction of the shooting part 12, it will abut against the trigger assembly 3; an arrow magazine 5 is installed on the top end of the main gun body 1, and a plurality of arrow bodies 51 in the arrow magazine 5 will fall into the controlled assembly 4 exposed at the arrow part 11 one by one; and a control handle assembly 6 is pivotally connected to the main gun body 1 at one end and located below the arrow part 11, and the control handle assembly 6 will pivotally swing relative to the main gun body 1 around the above-mentioned pivot connection point, the control handle assembly 6 is pivotally connected with the controlled assembly 4, and when the control handle assembly 6 pivots towards the shooting part relative to the main gun body 1, it will drive the controlled assembly 4 to move towards the shooting part to form a stringing mode, while when the control handle assembly 6 swings in the opposite direction of the shooting part 12, it will drive the controlled assembly 4 to return to the original position and form a shooting mode; wherein, through the pivoting movement of the control handle assembly 6, the displacement of the controlled assembly 4 on the arrow part 11 is controlled, and in the stringing mode, the controlled assembly 4 will not abut against the trigger assembly 3 (the controlled assembly 4 is away from the trigger assembly 3), while the trigger assembly 3 is retained in the trigger part 13, and when the controlled assembly 4 moves in the opposite direction of the shooting part and is in the shooting mode, the controlled assembly 4 will abut against the trigger assembly 3, so that the trigger assembly 3 will be driven to operate the controlled assembly 4 to release the bowstring assembly 2 to shoot the plurality of arrow bodies 51 one by one.
[0029] According to the above description, after the user holds the handle part 14 with one hand, the other hand holds the control handle assembly 6 and swings it forward and backward, and the swinging of the control handle assembly 6 controls the forward and backward displacement of the controlled assembly 4 on the arrow part 11, when the control handle assembly 6 swings forward, it will drive the controlled assembly 4 to move towards the shooting part 12, and after the controlled assembly 4 moves to the position of the bowstring assembly 2, it will be hooked, then the control handle assembly 6 is swung in the opposite direction, at this time the controlled assembly 4 will be pulled to return along the original path, and in the process of moving, the controlled assembly 4 will pull the bowstring assembly 2 to stretch and tighten, until the control handle assembly 6 returns to the original position and is positioned, the arrow body 51 will fall on the controlled assembly 4 on the arrow part 11, at this time the bowstring assembly 2 pulled by the controlled assembly 4 is at the arrow tail of the arrow body 51, then the trigger assembly 3 is pressed, and the release of the bowstring assembly 2 is performed through the cooperation between the trigger assembly 3 and the controlled assembly 4, in this way the bowstring assembly 2 can shoot the arrow body 51, and the error will not be deviated, thereby maintaining the stability and accuracy when shooting.
[0030] In light of the above description, actual operation, further technical features or more detailed features of the present application will be described as follows. First, please see Figures 4 to 6 As shown, in order to ensure that the controlled component 4 can drive the bowstring assembly 2 smoothly, the controlled component 4 further comprises an arrow mounting slide 41 and a trigger mechanism 42. The arrow mounting slide 41 is in the shape of a long strip and is slidably arranged in the arrow mounting portion 11. One end of the arrow mounting slide 41 is provided with a mounting hole 411, and the trigger mechanism 42 is partially clamped in the mounting hole 411. The handle assembly 6 is pivotally arranged in the trigger mechanism 42, and the trigger assembly 3 partially abuts against the trigger mechanism 42 when the trigger assembly 3 is not moved towards the shooting portion 12. In addition, the arrow mounting slide 41 is provided with an arrow slot 412 corresponding to the arrow magazine 5. The arrow bodies 51 in the arrow magazine 5 are sequentially dropped into the arrow slot 412. When the user operates the handle assembly 6 to change the mode from the string winding mode to the shooting mode, the arrow bodies 51 will not completely fall into the arrow slot 412 but will be blocked by the bowstring assembly 2. Only when the shooting mode is reached, the arrow bodies 51 will completely fall into the arrow slot 412. This is mainly to avoid the danger of sudden shooting and to ensure the safe operation of the bowstring assembly 2.
[0031] Continuing the above description, the trigger assembly 42 of the present application further comprises a housing 421 (mainly formed by two symmetrical shells), a block 422, a movable block 423, and a string seat 424. The housing 421 has an accommodating chamber 4211 formed inside. One end of the block 422 is pivotally connected to the accommodating chamber 4211, and the other end of the block 422 abuts against the trigger assembly 3 in the shooting mode. The movable block 423 is pivotally arranged in the accommodating chamber 4211, and the two ends of the connecting piece 43 are respectively connected to one end of the block 422 and the movable block 423. The connecting piece 43 is arranged to enable the block 422 and the movable block 423 to be connected. The string seat 424 is partially pivotally arranged in the accommodating chamber 4211 and partially protrudes from the mounting hole 411. The part of the string seat 424 protruding from the mounting hole 411 is mainly used to move and limit the string assembly 2 and release the string assembly 2. The movable block 423 is provided with a clamping portion 4231 corresponding to the string seat 424. The clamping portion 4231 abuts against the bottom end of the string seat 424. The clamping portion 4231 of the movable block 423 can abut against the string seat 424, and the string seat 424 is further provided with a clamping groove 4241. The shaft 44 penetrates the clamping groove 4241 of the string seat 424 and is pivotally connected to the inner walls of the two sides of the accommodating chamber 4211. The auxiliary shaft 45 is pivotally arranged in the accommodating chamber 4211 and close to the string seat 424. The torsion spring 46 is sleeved on the shaft 44, one end of the torsion spring 46 is hooked on the auxiliary shaft 45, and the other end of the torsion spring 46 is elastically clamped on the groove wall of the clamping groove 4241. The torsion spring 46 elastically drives the string seat 424 to reset. Therefore, when the user operates and places the string mode, the string seat 424 is pushed by the string assembly 2 and first swings in the same direction during the displacement of the controlled assembly 4. After the string assembly 2 exceeds the string seat 424, the string seat 424 is elastically reset by the elastic force of the torsion spring 46. At this time, part of the string assembly 2 falls behind the string seat 424, and the clamping portion 4231 clamps the string seat 424 to prevent excessive swinging from affecting the firing of the string assembly 2. At this time, the string placing is completed, and then the string assembly 2 can be pulled backward to convert into the shooting mode. The handle assembly 6 is partially pivotally arranged in the housing 421 and drives the trigger assembly 42 to move close to and away from the shooting part, as shown in Figure 8 、 Figure 9 、 Figure 10
[0032] As described above, in addition to the torsion spring 46 providing the buckle string seat 424 with elastic return, the movable block 423 that can limit the swing of the buckle string seat 424 also needs to be controlled, so the bottom end of the accommodating chamber 4211 is provided with a positioning portion 4212, and an elastic member 47 is arranged between the positioning portion 4212 and the movable block 423, the two ends of the elastic member 47 are respectively elastically pushed against the bottom end of the movable block 423 and the positioning portion 4212, the elastic member 47 elastically returns the movable block 423 by elastic force and makes the blocking portion 4231 always abut against the bottom end of the buckle string seat 424, thereby the bowstring assembly 2 cannot be randomly ejected when the trigger assembly 3 is not buckled, and the risk of misfiring is reduced, please see Figures 8 to 10 In addition, in order to improve the safety of shooting, the accommodating chamber 4211 of the shell 421 is further provided with a safety latch 48, the safety latch 48 is partially pivotally arranged in the accommodating chamber 4211, the other part of the safety latch 48 protrudes out of the mounting port 411, the two sides of the protruding part of the safety latch 48 are respectively protruded / extended with push rods 481, and the part of the safety latch 48 located in the accommodating chamber 4211 is further provided with a limiting hole 482, the safety latch 48 pivots around the part located in the accommodating chamber 4211, when the user controls the two push rods 481 to approach the buckle string seat 424 in the shooting mode, one end of the safety latch 48 provided with the limiting hole 482 is away from the movable block 423, so that the movable block 423 can pivotally swing, at this time, the trigger assembly 3 can be buckled to shoot, on the contrary, when the user moves the two push rods 481 away from the buckle string seat 424 in the shooting mode, one end of the movable block 423 is inserted into the limiting hole 482 to limit the swing, and the movable block 423 cannot swing, thereby indirectly controlling the trigger assembly 3 cannot be pulled, so that the user cannot buckle the trigger assembly 3 to fire the arrow body 51, and the danger is avoided, please see Figure 11 、 Figure 12 .
[0033] After understanding the shooting operation related features of the controlled assembly 4, please see Figures 8 to 10As shown, the part related to the control handle group 6 is also the main control feature, and the control of the control handle group 6 of the present application mainly includes the connecting rod 61 and the control handle 62, one end of the control handle 62 is pivoted to the shooting part 12 of the main gun body 1, the other end of the control handle 62 extends downward, and one end of the connecting rod 61 is pivoted inside the control handle 62, and the other end of the connecting rod 61 is pivoted to the controlled component 4. When the control handle 62 pivots towards the shooting part 12, the connecting rod 61 is simultaneously pulled to move the controlled component 4 towards the shooting part 12; on the contrary, when the control handle 62 swings towards the opposite direction of the shooting part 12, the connecting rod 61 is simultaneously controlled to move the controlled component 4 back to the original position. Further, the control handle 62 further includes the outer handle part 621 and the inner handle part 622, the side of the outer handle part 621 facing the shooting part 12 is provided with a cutout 6211, the inner handle part 622 is pivoted at one end inside the outer handle part 621, and the inner handle part 622 is partially exposed outside the cutout 6211, the top end of the inner handle part 622 is provided with a hook 6221 to hook the positioning shaft 63 inside the main gun body 1, and the pivoting of the inner handle part 622 relative to the outer handle part 621 controls the hook 6221 to hook or release the positioning shaft 63. When the user controls the control handle group 6, the control handle 62 needs to be slightly swung towards the handle part 14 to make the hook 6221 first disengage from the positioning shaft 63, then the inner handle part 622 is pressed to make the hook 6221 definitely disengage from the positioning shaft 63, and then the control handle 62 can be held to pivot towards the shooting part, and in the pivoting process, the controlled component 4 is simultaneously displaced through the connecting rod 61, so that the operation of the upper string mode is completed, and the bowstring component 2 is definitely controlled to be pulled to store energy, please see Figures 5 to 8 As shown.
[0034] The present application is mainly described in the part of the main gun body 1, and the arrow magazine 5 is described. The present application mainly provides continuous shooting of multiple arrow bodies 51, so that the continuous shooting use can be provided in the use of the arrow magazine 5. The arrow magazine 5 further comprises a bottom magazine part 52 and a movable sealing magazine part 53. The bottom magazine part 52 is assembled on the arrow placing part 11 and the shooting part 12 of the main gun body 1. The arrow containing chamber 521 is arranged on the top surface of the bottom magazine part 52 corresponding to the arrow placing part 11. The pivot groove 522 is arranged on the bottom magazine part 52 corresponding to the shooting part 12. One end of the movable sealing magazine part 53 is pivoted on the pivot groove 522. The other end of the movable sealing magazine part 53 is movably pivoted towards and away from the arrow containing chamber 521. In addition, the elastic pressing part 7 is arranged on the chamber opening of the arrow containing chamber 521. One end of the elastic pressing part 7 is arranged on the chamber opening of the arrow containing chamber 521. The other end of the elastic pressing part 7 is inclinedly extended towards the inside of the arrow containing chamber 521 and abuts against the uppermost arrow body 51 among the arrow bodies 51. Therefore, after each displacement and reset of the controlled assembly 4 driven by the handle assembly 6, the lowermost arrow body 51 falls into the arrow placing groove 412 to wait for shooting. Figures 1 to 5
[0035] In order to abut against the shoulder nest for stable shooting, the main gun body 1 further comprises the folding support part 8 pivoted on one end of the main gun body 1 opposite to the shooting part 12. One end of the folding support part 8 is pivoted on the main gun body 1 and pivoted towards one side of the main gun body 1 to be folded. When the folding support part 8 is pivoted to be coaxial with the main gun body 1, the total length is increased. The other end of the folding support part 8 abuts against the shoulder nest for stable shooting. Figure 13 In the arrangement of the trigger assembly 3, the trigger assembly 3 further comprises the trigger part 31 and the long push block 32. One end of the trigger part 31 is pivoted on the guard 311 of the trigger part 13. The inner end surface of the trigger part 31 is cut to form the insertion groove 312. The long push block 32 is partially inserted into the insertion groove 312. The other end of the long push block 32 is extended towards the controlled assembly 4 and protrudes from the insertion groove 312. When the controlled assembly 4 is displaced and reset towards the shooting part, the protruding part of the long push block 32 abuts against the controlled assembly 4. Therefore, the long push block 32 controlled by the trigger part 31 pushes the resistance block 422 in the controlled assembly 4 to indirectly control the limit and release of the bowstring assembly 2 by the resistance block 424. Figure 5
[0036] In summary, the bowstring assembly 2 of the present application mainly comprises a bow arm 21 and a bowstring 22, a combined hole 121 is longitudinally arranged in the shooting portion 12, the bowstring 22 is bound to the two ends of the bow arm 21, the bow arm 21 passes through the combined hole 121 and is limited in the combined hole 121 by the middle section, the bow arm 21 is arc-shaped, and the bowstring 22 falls in the space formed between the arrow placing portion 11 and the arrow case 5. The above-mentioned operation, that is, the pivoting of the handle set 6, can indirectly control the movement of the string seat 424 towards the shooting portion 12 and hooking the bowstring 22, and drive the bowstring 22 to move away from the shooting portion 12 to be tightened. After the arrow body 51 falls into the arrow placing groove 412, the trigger set 3 is pressed to control the swing of the movable block 423. When the movable block 423 can swing, the elastic force of the bowstring 22 pulled to be tightened pushes the protruding part of the string seat 424 to swing towards the shooting portion 12. After the bowstring 22 is not limited by the string seat 424, the arrow body 51 can be instantly launched to be fired. During the whole process, the trigger set 3 is located in the bow guard 311 and does not move. Therefore, the user can keep the fingers in the bow guard 311 to control the trigger set 3 to continuously shoot, which is different from the prior art, and the problem of pinching the hand does not occur. Moreover, the stability and accuracy of continuous shooting are maintained.
[0037] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Any simple modification, equivalent change and modification of the above embodiment according to the technical essence of the present application still belongs to the scope of the technical solution of the present application.
Claims
1. A quick repeat device, characterized by It comprises: a main gun body, the top end of which is provided with an arrow part and a shooting part for installing a bowstring assembly, and the bottom end of which is provided with a trigger part, and a trigger assembly is installed on the trigger part; a controlled assembly installed on the arrow part of the main gun body, and the controlled assembly is partially located inside the main gun body and partially exposed outside the arrow part, and when the controlled assembly moves towards the shooting part, it moves away from the trigger assembly, and when the controlled assembly moves in the opposite direction of the shooting part, it moves to abut against the trigger assembly; an arrow magazine installed on the top end of the main gun body, and a plurality of arrow bodies in the arrow magazine fall into the controlled assembly exposed at the arrow part one by one; and a control handle assembly pivoted at one end of the main gun body below the arrow part, the control handle assembly is pivoted with the controlled assembly, and when the control handle assembly pivots towards the shooting part relative to the main gun body, it drives the controlled assembly to move towards the shooting part to form a drawing mode, and when the control handle assembly pivots in the opposite direction of the shooting part, it drives the controlled assembly to return to the original position and forms a shooting mode; wherein the displacement of the controlled assembly on the arrow part is controlled through each pivoting of the control handle assembly, and in the drawing mode, the controlled assembly does not abut against the trigger assembly, and the trigger assembly remains in the trigger part, and when the controlled assembly moves in the opposite direction of the shooting part and is in the shooting mode, the controlled assembly abuts against the trigger assembly, and the trigger assembly is driven to operate the controlled assembly to release the bowstring assembly to shoot the plurality of arrow bodies one by one.
2. The quick repeat device of claim 1, wherein The controlled assembly further comprises an arrow sliding seat and a toggle assembly, the arrow sliding seat is slid on the arrow part, the arrow sliding seat is provided with a mounting hole corresponding to one end of the toggle assembly, the toggle assembly is partially clamped in the mounting hole, and the control handle assembly is partially pivoted on the toggle assembly, and the trigger assembly partially abuts against the trigger assembly when the toggle assembly has not moved towards the shooting part, and the arrow sliding seat is provided with an arrow slot corresponding to the recess of the arrow magazine, and the plurality of arrow bodies in the arrow magazine fall into the arrow slot one by one.
3. The quick repeat device of claim 2, wherein, The toggle assembly further comprises a housing, an abutting block, a movable block, and a string release seat, the housing forms a containing room inside, one end of the abutting block is pivoted in the containing room, the other end of the abutting block abuts against the trigger assembly in the shooting mode, the movable block is pivoted in the containing room, and two ends of a connecting piece are respectively connected to one end of the abutting block and the movable block, and the string release seat is partially pivoted in the containing room and partially protrudes from the mounting hole, the string release seat protruding from the mounting hole moves to limit and release the bowstring assembly, the movable block is provided with a clamping block corresponding to the string release seat, and the clamping block abuts against the bottom end of the string release seat.
4. The quick repeat device of claim 3, wherein The bottom end of the containing room is provided with a positioning part, and a spring is arranged between the positioning part and the movable block, and the two ends of the spring abut against the bottom end of the movable block and the positioning part, respectively, the spring pushes the movable block to elastically reset and makes the clamping block abut against the bottom end of the string release seat.
5. The quick repeat device of claim 3, wherein The buckle seat is further provided with a clamping groove, and a shaft is penetrated through the clamping groove of the buckle seat to be pivotally arranged on the inner wall of the accommodating chamber. An auxiliary shaft is further arranged in the accommodating chamber and close to the buckle seat. A torsion spring is further arranged around the shaft, and one end of the torsion spring is hooked on the auxiliary shaft, and the other end of the torsion spring is elastically clamped on the groove wall of the clamping groove. The torsion spring elastically drives the buckle seat to reset. The control handle is partially pivotally arranged in the interior of the shell and drives the trigger assembly to move close to and away from the shooting part.
6. The quick repeat device of claim 3, wherein A safety latch is further arranged in the mounting chamber of the shell. One part of the safety latch is pivotally arranged in the accommodating chamber, and the other part of the safety latch protrudes out of the mounting port. Two push rods are respectively protruded / extended on both sides of the protruding part of the safety latch. The part of the safety latch located in the accommodating chamber is further provided with a limiting hole. The safety latch is pivotally arranged around the part located in the accommodating chamber. When the two push rods move close to the buckle seat, one end of the safety latch provided with the limiting hole is away from the movable block, so that the movable block can pivotally move. When the two push rods move away from the buckle seat, one end of the movable block is inserted into the limiting hole to limit the pivoting movement of the movable block. The pivoting movement of the movable block indirectly controls the trigger assembly to be unable to be pulled.
7. The quick repeat device of claim 1, wherein The control handle further comprises a connecting rod and a handle. One end of the handle is pivotally arranged on the shooting part of the main gun body, and the other end of the handle extends downward. One end of the connecting rod is pivotally arranged in the handle, and the other end of the connecting rod is pivotally arranged on the controlled assembly. When the handle pivots towards the shooting part, the connecting rod is simultaneously pulled to drive the controlled assembly to move towards the shooting part. Conversely, when the handle pivots in the opposite direction of the shooting part, the connecting rod is simultaneously controlled to drive the controlled assembly to move back to the original position.
8. The quick repeat device of claim 7, wherein, The handle further comprises an outer handle part and an inner handle part. One side of the outer handle part facing the shooting part is provided with a cutout. One end of the inner handle part is pivotally arranged in the interior of the outer handle part, and the inner handle part is partially exposed outside the cutout. The top end of the inner handle part protrudes a hooking piece to be movably hooked on a positioning shaft arranged in the main gun body. The pivoting of the inner handle part relative to the outer handle part controls the hooking piece to be hooked on and released from the positioning shaft.
9. The quick repeat device of claim 1, wherein, The arrow magazine further comprises a bottom magazine part and a movable sealing magazine part. The bottom magazine part is assembled on the arrow placing part and the shooting part of the main gun body. An arrow accommodating chamber is provided on the top surface of the bottom magazine part corresponding to the arrow placing part. A pivot groove is provided on the bottom magazine part corresponding to the shooting part. One end of the movable sealing magazine part is pivotally arranged in the pivot groove, and the other end of the movable sealing magazine part is pivotally arranged to move close to and away from the arrow accommodating chamber. In addition, a spring pressing part is further arranged at the chamber opening of the arrow accommodating chamber. One end of the spring pressing part is arranged at the chamber opening of the arrow accommodating chamber, and the other end of the spring pressing part is inclinedly extended towards the interior of the arrow accommodating chamber and abuts against the uppermost arrow among a plurality of arrow bodies.
10. The quick repeat device of claim 1, wherein, One end of the folding support part is pivotally arranged on the main gun body and pivots relative to one side of the main gun body to be in a folding mode. When the folding support part is pivoted to be coaxial with the main gun body, the total length is increased. The other end of the folding support part abuts against the shoulder socket to stabilize the shooting.
11. The quick repeat device of claim 1, wherein The trigger assembly further comprises a trigger member and a long push block, the trigger member is pivoted to the guard of the trigger, and the inner end surface of the trigger member is provided with an insertion slot, the long push block is partially inserted into the insertion slot, and the other end of the long push block extends towards the controlled component and protrudes out of the insertion slot, the protruding part of the long push block abuts against the controlled component when the controlled component is displaced towards the shooting part and then returned.
12. The quick repeat device of claim 1, wherein, The bowstring assembly further comprises a bow arm and a bowstring, a combined hole is provided in the longitudinal direction of the shooting part, the bowstring is bound to the two ends of the bow arm, the bow arm passes through the combined hole and is limited in the combined hole by the middle section, and the bowstring falls in the space formed between the arrow placing part and the arrow case.
Citation Information
Patent Citations
Bowstring pulling device for bent bow
CN107796264A
Arrow box continuous shooting device of hand-pull bow
CN111692909A