Fast repeating mechanism

DE102023131627B4Active Publication Date: 2026-06-11POE LANG ENTERPRISE
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Patent Information

Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
POE LANG ENTERPRISE
Filing Date
2023-11-14
Publication Date
2026-06-11

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Abstract

Fast repeating mechanism, including: a main pistol body (1) the upper end of which is provided with an arrow receiving section (11) and a firing section (12) assembled with a bowstring assembly (2) and the lower end of which is provided with a trigger section (13) wherein the trigger section (13) is equipped with a trigger assembly (3); a controllable arrangement (4) which is housed in the arrow receptacle (11) of the main pistol body (1) and is partly located inside the main pistol body (1) and partly exposed outside the arrow receptacle (11), wherein when the controllable arrangement (4) is moved in the direction of the firing section (12) it moves away from the trigger arrangement (3) and when the controllable arrangement (4) is moved in the direction opposite to the firing section (12) it rests movably against the trigger arrangement (3); an arrow magazine (5) attached to the upper end of the main pistol body (1), wherein the multiple arrow bodies (51) located in the arrow magazine (5) fall successively into the position in which the controllable arrangement (4) on the arrow receiving section (11) is exposed; and a control grip assembly (6) the one end of which is pivotably combined with the main pistol body (1) and is located below the arrow receptacle section (11), wherein the control grip assembly (6) is pivotably combined with the controllable assembly (4), wherein when the control grip assembly (6) is pivoted relative to the main pistol body (1) in the direction of the firing section (12), the controllable assembly (4) is driven to move in the direction of the firing section (12) to form a bowstring cocking mode, wherein when the control grip assembly (6) is pivoted in the direction opposite to the firing section (12), the controllable assembly (4) is driven to return to its original position to form a firing mode; wherein the displacement of the controllable arrangement (4) on the arrow receiving section (11) is controlled by each pivoting of the control handle arrangement (6), wherein in string-drawing mode the controllable arrangement (4) is not in contact with the trigger arrangement (3) and the release section (13) remains in the trigger arrangement (3), wherein when the controllable arrangement (4) is moved in the direction opposite to the shooting section (12) and is in shooting mode, the controllable arrangement (4) is in contact with the trigger arrangement (3), whereby the controllable arrangement (4) is driven by triggering the trigger arrangement (3) in such a way that the bowstring arrangement (2) is released to fire the multiple arrow bodies (51) successively, wherein the controllable arrangement (4) further comprises an arrow slide seat (41) and an actuating unit (42), wherein the arrow slide seat (41) is slidably arranged on the arrow receiving section (11), a mounting opening (411) is provided at the end of the arrow slide seat (41) corresponding to the actuating unit (42), a part of the actuating unit (42) is engaged in the mounting opening (411), and a part of the control handle arrangement (6) is pivotably combined with the actuating unit (42), wherein, if the actuating unit (42) has not yet been moved in the direction of the firing section (12), a part of the trigger arrangement (3) rests against the actuating unit (42), furthermore, the arrow slide seat (41) is provided with an arrow receiving groove (412) to match the arrow magazine (5), and the several arrow bodies (51) located in the arrow magazine (5) are successively inserted into the arrow receiving groove. (412) fall.
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Description

[0001] The present invention relates to the technical field of shooting and in particular to a rapid repeating device.

[0002] The subject under consideration is a bow that must be drawn to nock an arrow (see patent TW I591314 B, "bowstring drawing device"), or a crossbow that requires a rotary mechanism to nock an arrow (see patent TW M641344 U, "bowstring drawing structure for crossbows"). Both types require a specific procedure for re-firing. However, both types share a common problem. Aside from the time required for operation, the most obvious issue lies in the trigger pull procedure.

[0003] With the first type, the finger holding the trigger must be removed each time an arrow is nocked to pivot the drawbar. This most likely impairs the user's shooting accuracy. With the second type, the finger holding the trigger must also be removed to operate the roller. This likewise impairs the user's shooting accuracy. Furthermore, some types have a trigger that moves along with the trigger. If the user's finger is removed too late, it can become trapped between the trigger and the trigger guard, posing a risk of injury. Therefore, the industry involved in this technology needs to consider how to resolve the aforementioned problems.

[0004] US Patent 2,516,341 A discloses a gravity-fed magazine for multiple arrows that fall sequentially from a magazine chamber. A trigger mechanism can effectively capture the arrows and release them for firing.

[0005] US 10 663 249 B1 discloses a crossbow with a cocking device that allows the crossbow to fire multiple projectiles from a magazine in succession.

[0006] CN 201 607 167 U discloses a device that facilitates the cocking of a crossbow string and causes it to perform a longer stroke in order to increase the power and accuracy of a shot.

[0007] US 9 395 142 B2 discloses a crossbow with a clip or magazine assembly that can receive projectiles and selectively introduces a projectile into the firing path of the crossbow after the crossbow string has been cocked.

[0008] The object of the invention is to enable the user to operate a bow continuously without having to remove their finger from the trigger, thereby advantageously not only reducing the operating time but also ensuring finger safety and maintaining accuracy and stability during shooting. This object is achieved by the teaching of the independent claims.

[0009] Preferred embodiments of the invention are the subject of the dependent claims. Fig. Figure 1 shows a schematic perspective view according to the present invention. Fig. Figure 2 shows a schematic perspective view according to the present invention from a different perspective. Fig. Figure 3 shows a schematic perspective exploded view of the main pistol body and the arrow magazine according to the present invention. Fig. Figure 4 shows a schematic perspective exploded view of the main pistol body and the controllable arrangement according to the present invention. Fig. Figure 5 shows a schematic perspective exploded view of the details of the controllable arrangement according to the present invention. Fig. Figure 6 shows a schematic perspective exploded view of the main pistol body and the control handle arrangement according to the present invention. Fig. Figure 7 shows a schematic sectional view along section line VII-VII according to Fig. 2. Fig. Figure 7A shows a schematic enlarged partial view according to Fig. 7. Fig. Figure 8 shows a schematic view of the actuation according to Fig. 7, in which the control handle arrangement is pivoted in the direction of the firing section and the controllable arrangement is moved in the direction of the firing section. Fig. Figure 9 shows a schematic view of the actuation according to Fig. 8, in which the controllable arrangement moves back and pulls the bowstring of the bowstring arrangement to straighten after the control handle arrangement has been swung back. Fig. Figure 10 shows a schematic view of the actuation according to Fig. 9, in which the lowest arrow body of the several arrow bodies located in the arrow receiving chamber falls into the arrow receiving groove after the controllable arrangement has been reset to its original position. Fig. Figure 11 shows a schematic sectional view according to Fig. 10, in which the safety lock is switched and the withdrawal of the withdrawal order is blocked. Fig. Figure 12 shows a schematic view of the actuation according to Fig. 10, in which the trigger mechanism for firing is pressed. Fig. Figure 12A shows a schematic enlarged partial view according to Fig. 12. Fig. Figure 13 shows a schematic top view of the actuation according to the present invention, in which the folding shaft is pivoted and folded.

[0010] It will be directed to the Fig. 1, Fig. 2, Fig. 3, Fig. 4, Fig. 5, Fig. 6, Fig. 7, Fig. 8, Fig. 9, Fig. 10, Fig. 11, Fig. 12 to Fig. Reference is made to 13. The rapid repeating device according to the invention comprises the following: a main pistol body 1, the upper end of which is provided with an arrow receptacle 11 and a firing section 12 assembled with a bowstring assembly 2, and the lower end of which is provided with a trigger section 13 and a grip section 14 intended to be held by the user, the trigger section 13 being equipped with a trigger assembly 3; a controllable assembly 4, which is housed in the arrow receptacle 11 of the main pistol body 1 and is partly located inside the main pistol body 1 and partly exposed outside the arrow receptacle 11,wherein, when the controllable arrangement 4 moves towards the firing section 12, it moves away from the trigger arrangement 3 and engages the bowstring arrangement 2, and when the controllable arrangement 4 moves in the direction opposite to the firing section 12, it rests movably against the trigger arrangement 3; an arrow magazine 5 attached to the upper end of the main pistol body 1, wherein the multiple arrow bodies 51 located in the arrow magazine 5 fall successively into the position in which the controllable arrangement 4 is exposed on the arrow receptacle 11; and a control grip arrangement 6, one end of which is pivotably combined with the main pistol body 1 and is located below the arrow receptacle 11, wherein the control grip arrangement 6 uses the aforementioned pivot point as its center point and pivots relative to the main pistol body 1 and is pivotably combined with the controllable arrangement 4, wherein,When the control grip assembly 6 is pivoted relative to the main pistol body 1 in the direction of the firing section, the controllable assembly 4 is driven to move in the direction of the firing section to form a string-cocking mode, wherein when the control grip assembly 6 is pivoted in the direction opposite to the firing section 12, the controllable assembly 4 is driven to return to its original position to form a firing mode. The displacement of the controllable assembly 4 on the arrow receptacle 11 is controlled by each pivot of the control grip assembly 6, wherein in the string-cocking mode the controllable assembly 4 is not in contact with the trigger assembly 3 (the controllable assembly 4 is located away from the trigger assembly 3) and the release section 13 remains in the trigger assembly 3, wherein,When the controllable arrangement 4 is moved in the direction opposite to the shooting section 12 and is in shooting mode, the controllable arrangement 4 is in contact with the trigger arrangement 3, thereby driving the controllable arrangement 4 by triggering the trigger arrangement 3 in such a way that the bowstring arrangement 2 is released to fire the several arrow bodies 51 successively.

[0011] Based on the description above, the user, holding grip section 14 with one hand, holds the control grip assembly 6 with the other hand and pivots it back and forth. Pivoting the control grip assembly 6 controls the back-and-forth movement of the controllable assembly 4 on the arrow retrieval section 11. When the control grip assembly 6 is pivoted forward, the controllable assembly 4 moves toward the shooting section 12. Once the controllable assembly 4 is in the position of the bowstring assembly 2, it can be engaged. The control grip assembly 6 is then pivoted in the opposite direction. At this point, the controllable assembly 4 is pulled and returned along its original path. During the movement of the controllable assembly 4, the bowstring assembly 2 is pulled to stretch and draw the bow.After the control handle assembly 6 has been reset and positioned in its original position, the arrow bodies 51 can fall onto the controllable assembly 4 of the arrow receiving section 11. At this point, the bowstring assembly 2, tensioned by the controllable assembly 4, is at the end of an arrow body 51. Subsequently, the trigger assembly 3 is pressed. The bowstring assembly 2 can be released by the interaction of the trigger assembly 3 and the controllable assembly 4. In this way, an arrow body 51 can be shot by the bowstring assembly 2 without any deviation, thus maintaining stability and accuracy during archery.

[0012] First, attention will be paid to the Fig. 4, Fig. 5 to Fig. 6. In order for the controllable arrangement 4 to reliably and easily drive the bowstring arrangement 2, the controllable arrangement 4 further comprises an arrow slide seat 41 and an actuating unit 42, wherein the arrow slide seat 41 is strip-shaped and slidably arranged on the arrow receiving section 11, a mounting opening 411 is provided at the end of the arrow slide seat 41 corresponding to the actuating unit 42, a part of the actuating unit 42 is engaged in the mounting opening 411, and a part of the control handle arrangement 6 is pivotably combined with the actuating unit 42. If the actuating unit 42 has not yet been moved in the direction of the firing section 12, a part of the trigger arrangement 3 rests against the actuating unit 42. Furthermore, the arrow slide seat 41 is provided with an arrow receiving groove 412 to match the arrow magazine 5. The several arrow bodies 51 located in the arrow magazine 5 fall one after the other into the arrow receiving groove 412.When the user switches from string-drawing mode to shooting mode, the arrow bodies 51 do not fall completely onto the arrow-receiving groove 412, but are blocked by the bowstring assembly 2. The arrow bodies 51 can fall completely onto the arrow-receiving groove 412 in time before switching to shooting mode. The main purpose is to avoid the risk of a sudden shot that would cause the bowstring assembly 2 to be actuated and push the arrow bodies 51 forward to release.

[0013] Continuing the above description, in the present invention the actuating unit 42 further comprises a shell 421 (formed by assembling two mutually symmetrical housings), a contact block 422, a movable block 423 and a tendon retention seat 424, wherein a receiving chamber 4211 is provided inside the shell 421, one end of the contact block 422 is pivotably combined in the receiving chamber 4211, the other end of the contact block 422 rests against the trigger assembly 3 in firing mode, the movable block 423 is pivotably arranged in the receiving chamber 4211, furthermore the two ends of the moving element 43 are each locked to one end of the contact block 422 and the movable block 423, the contact block 422 and the movable block 423 are movable together by the moving element 43, and a part of the tendon retention seat 424 is pivotably arranged in the receiving chamber 4211 is arranged and a part protrudes from the mounting opening 411,The section of the tendon retention seat 424 protruding from the mounting opening 411 serves to limit or release the bowstring assembly 2. The movable block 423 is provided with a detent stop section 4231, corresponding to the tendon retention seat 424, and the detent stop section 4231 rests movably against the lower end of the tendon retention seat 424. Since the tendon retention seat 424 also has a recess in the form of a detent seat recess 4241, the detent stop section 4231 of the movable block 423 can rest against the tendon retention seat 424. An axle rod 44 passes through the detent seat recess 4241 of the tendon retention seat 424 and is pivotably connected to the inner walls of the two sides of the receiving space 4211. An auxiliary axle 45 is pivotally combined with the receiving chamber 4211 and is located near the tendon retention seat 424. A torsion spring 46 is mounted on the axle rod 44.wherein one end of the torsion spring 46 is hooked onto the auxiliary axis 45 and the other end of the torsion spring 46 is elastically engaged in the wall of the detent recess 4241. The tendon retainer 424 is driven by the torsion spring 46 so that it returns to its original position. Therefore, due to the arrangement of the torsion spring 46, when the device is in tendon tensioning mode during operation, the tendon retainer 424 is pressed by the bowstring assembly 2 during the displacement process of the controllable assembly 4 and initially pivoted clockwise. After the bowstring assembly 2 has passed the tendon retainer 424, the tendon retainer 424 is elastically reset by the elastic force of the torsion spring 46. At this point, the bowstring assembly 2 lands behind the tendon retention seat 424, with the detent stop section 4231 engaging with the tendon retention seat 424 to preventthat excessive pivoting impairs the firing of the bowstring assembly 2. At this point, the string-drawing process is complete. Subsequently, the bowstring assembly 2 can be retracted to switch to firing mode. In addition, part of the control handle assembly 6 is pivotably integrated into the shell 421 and drives the actuating unit 42, thereby moving it closer to or away from the firing section 12, as shown in the . Fig. 8, Fig. 9 and Fig. 10 shown.

[0014] In addition to the torsion spring 46, which enables the elastic return function of the tendon retention seat 424, the movable block 423, which can limit the pivoting of the tendon retention seat 424, must also be controlled, which is why a positioning section 4212 is provided at the bottom of the receiving space 4211, wherein an elastic element 47 is arranged between the positioning section 4212 and the movable block 423 and the two ends of the elastic element 47 each bear elastically against the lower end of the movable block 423 and against the positioning section 4212.Because the movable block 423 is pressed for elastic return by the elastic force of the elastic element 47, and thus the detent stop section 4231 normally rests against the lower end of the string retention seat 424, it can be prevented that the bowstring assembly 2 is accidentally ejected when the trigger assembly 3 is not pressed, thereby reducing the risk of a misfire, see the . Fig. 8, Fig. 9 to Fig. 10. To increase safety during firing, a safety lock 48 is further arranged in the receiving chamber 4211 of the tray 421 in the present invention. Part of the safety lock 48 is pivotably integrated in the receiving chamber 4211, and another part of the safety lock 48 projects out of the mounting opening 411, with a sliding rod 481 extending from two sides of the projecting section of the safety lock 48, the section of the safety lock 48 located in the receiving chamber 4211 being further provided with a limiting hole 482, and the safety lock 48 being pivoted about the section located in the receiving chamber 4211. In shooting mode, when the user controls the two sliding rods 481 so that they approach the tendon retention seat 424, the end of the safety lock 48 with the limiting hole 482 is removed from the movable block 423, allowing the movable block 423 to pivot.At this point, the user can press the trigger assembly 3 to fire. Conversely, if, in firing mode, the user controls the two sliding rods 481 so that they are moved away from the string retainer seat 424, one end of the movable block 423 is inserted into the limiting hole 482 to restrict the pivoting motion. Thus, the movable block 423 is not pivoted, and the trigger assembly 3 is indirectly controlled so that it cannot be pressed. In this way, it is prevented that the user accidentally presses the trigger assembly 3 and fires an arrow body 51, thereby avoiding the creation of a hazard (see figure). Fig. 11 and Fig. 12.

[0015] It will be directed to the Fig. 5, Fig. 6, Fig. 7, Fig. 8, Fig. 9 to Fig. Reference is made to Section 10. The section on the control handle assembly 6 constitutes the main control feature. In the present invention, the control handle assembly 6 primarily comprises a co-movement element 61 and a control handle 62, wherein one end of the control handle 62 is pivotably combined with the firing section 12 of the main pistol body 1, the other end of the control handle 62 extends downwards, one end of the co-movement element 61 is pivotably combined within the control handle 62, and the other end of the co-movement element 61 is pivotably combined with the controllable assembly 4. When the control handle 62 is pivoted closer to the firing section 12, the co-movement element 61 is simultaneously pulled to move the controllable assembly 4 in the direction of the firing section 12.Conversely, when the control handle 62 is pivoted in the opposite direction to the firing section 12, the co-movement element 61 is simultaneously controlled to drive the controllable arrangement 4 so that it is moved and reset. Furthermore, the control handle 62 has an outer grip section 621 and an inner grip section 622, wherein the side of the outer grip section 621 facing the firing section 12 is provided with a slot 6211, an end of the inner grip section 622 is pivotably combined with the interior of the outer grip section 621, a portion of the inner grip section 622 is exposed outside the slot 6211, a hook element 6221 projects from the upper end of the inner grip section 622 and is movably hooked onto a positioning axis 63, and the positioning axis 63 is located in the main pistol body 1.By pivoting the inner grip section 622 relative to the outer grip section 621, the hook element 6221 is controlled so that it is hooked onto or released from the positioning axis 63. To control the control handle 62, the user must first pivot the control handle 62 slightly towards the grip section 14 so that the hook element 6221 is first released from the positioning axis 63. Then, the inner grip section 622 is pressed, which properly separates the hook element 6221 from the positioning axis 63. Once this is complete, the control handle 62 can be pivoted towards the firing section. During the pivoting process, the controllable assembly 4 can be simultaneously moved by the co-movement element 61. In this way, the string-drawing mode can be completed, whereby the bowstring assembly 2 can be reliably controlled by the string retainer 424 so that it is drawn for power storage.

[0016] Next, the arrow magazine 5 will be described. The present invention mainly enables the continuous firing of several arrow bodies 51. The arrow magazine 5 can be used for continuous firing.Furthermore, the arrow magazine 5 comprises a lower magazine element 52 and a movable magazine seal 53, wherein the lower magazine element 52 is combined with the arrow receiving section 11 and the firing section 12 of the main pistol body 1, an arrow receiving chamber 521 is recessed on the upper side of the lower magazine element 52 to correspond to the arrow receiving section 11, the lower magazine element 52 has a recess in the form of a pivoting space 522 to correspond to the firing section 12, one end of the movable magazine seal 53 is pivotably combined with the pivoting space 522, the other end of the movable magazine seal 53 is pivoted towards or away from the arrow receiving chamber 521, and furthermore a spring element 7 is arranged at the opening of the arrow receiving chamber 521 of the lower magazine element 52.Because one end of the spring element 7 is combined at the opening of the arrow receiving chamber 521 and the other end of the spring element 7 extends obliquely towards the interior of the arrow receiving chamber 521 and rests against the uppermost arrow body 51 of the several arrow bodies 51, the lowermost arrow body 51 can fall into the arrow receiving groove 412 by the spring element 7 in anticipation of being fired, after the controllable arrangement 4 has been driven each time by the control handle arrangement 6 to displace and subsequently return to its original position (see the . Fig. 1, Fig. 2, Fig. 3, Fig. 4 to Fig. 5).

[0017] The end of the main pistol body 1 opposite the firing section 12 is further pivotably combined with a folding stock 8, one end of which is pivotably mounted on the main pistol body 1 and can be pivoted to one side relative to the main pistol body 1 to form a folded position. When the folding stock 8 is pivoted so that it is coaxial with the main pistol body 1, the overall length increases. For stable shooting, the other end of the folding stock 8 can be pressed against the shoulder socket, see Figure 1. Fig. 13. In the present invention, the trigger assembly 3 further comprises a trigger element 31 and an elongated pressure block 32, wherein the trigger element 31 is pivotably combined with the trigger guard 311 of the release section 13, a recess in the form of an insertion recess 312 is provided on the inner end face of the trigger element 31, a portion of the elongated pressure block 32 is inserted into the insertion recess 312, and the other end of the elongated pressure block 32 extends towards the controllable assembly 4 and projects out of the insertion recess 312. When the controllable assembly 4 is moved towards the firing section 12 and subsequently reset, the projecting portion of the elongated pressure block 32 rests against the controllable assembly 4.The elongated pressure block 32 is controlled by the trigger element 31 in such a way that it presses the contact block 422 of the controllable arrangement 4 in order to indirectly control the tendon retention seat 424 for position limitation and release of the bowstring arrangement 2, see . Fig. 5.

[0018] In the present invention, the bowstring assembly 2 primarily comprises a limb 21 and a bowstring 22, wherein a combination hole 121 is provided in the longitudinal direction of the shooting section 12, the bowstring 22 is attached to both ends of the limb 21, the limb 21 passes through the combination hole 121 and its central section is limited in the combination hole 121, the limb 21 is curved, and the bowstring 22 falls into the space formed between the arrow receptacle 11 and the arrow magazine 5. In conjunction with the above actuation, namely with the control of the pivoting of the control handle assembly 6, the string retainer 424 can be indirectly controlled such that it moves towards the shooting section 12 and is hooked onto the bowstring 22; subsequently, the bowstring 22 is driven such that it is moved away from the shooting section 12 and is tensioned.After an arrow body 51 has fallen into the arrow groove 412, the trigger assembly 3 is pressed to control the pivoting of the movable block 423. When the movable block 423 is pivoted downwards, the protruding section of the string retainer 424 is driven by the elastic force generated by the drawn bowstring 22 to pivot towards the firing section 12. As soon as the bowstring 22 is no longer restricted by the string retainer 424, it can immediately eject the arrow body 51 for release. Throughout the entire process, the trigger assembly 3 remains within the trigger guard 311 and does not move. In this way, the user can keep their fingers within the trigger guard 311 to control the trigger assembly 3 for continuous firing. Compared to prior art, there is no risk of finger pinching.Furthermore, the invention allows stability and accuracy to be maintained during continuous shooting. Reference symbol list 1 Main pistol body 11 Arrow Pickup Section 12 Shooting Section 121 combination hole 13 Trigger section 14 Handle section 2 Bowstring arrangement 21 throwing arm 22 Bowstring 3. Withdrawal order 31 Extraction element 311 Trigger guard 312 Insertion recess 32 oblong printing blocks 4 controllable arrangement 41 Arrow sliding seat 411 Mounting opening 412 Arrow groove 42 Actuating unit 421 bowl 4211 Recording Room 4212 Positioning section 422 Investment block 423 movable block 4231 Rast stop section 424 Tendon retention seat 4241 Rest seat recess 43 Moving piece 44 axle bar 45 Auxiliary axle 46 Torsion spring 47 elastic element 48 Security lock

Claims

Rapid repeating device comprising: a main pistol body (1) the upper end of which is provided with an arrow receptacle (11) and a firing section (12) assembled with a bowstring assembly (2) and the lower end of which is provided with a trigger section (13), the trigger section (13) being equipped with a trigger assembly (3); a controllable assembly (4) which is housed in the arrow receptacle (11) of the main pistol body (1) and is partly located inside the main pistol body (1) and partly exposed outside the arrow receptacle (11), wherein, when the controllable assembly (4) is moved towards the firing section (12), it moves away from the trigger assembly (3) and, when the controllable assembly (4) is moved in the opposite direction to the firing section (12), it rests movably against the trigger assembly (3); an arrow magazine (5) which is attached to the upper end of the main pistol body (1),wherein the several arrow bodies (51) located in the arrow magazine (5) fall successively into the position in which the controllable arrangement (4) on the arrow receiving section (11) is exposed; and a control grip arrangement (6) the one end of which is pivotably combined with the main pistol body (1) and is located below the arrow receiving section (11), wherein the control grip arrangement (6) is pivotably combined with the controllable arrangement (4), wherein when the control grip arrangement (6) is pivoted relative to the main pistol body (1) in the direction of the firing section (12), the controllable arrangement (4) is driven to move in the direction of the firing section (12) to form a string-drawing mode, wherein when the control grip arrangement (6) is pivoted in the direction opposite to the firing section (12), the controllable arrangement (4) is driven to return to its original position,to form a shooting mode; wherein the displacement of the controllable arrangement (4) on the arrow receiving section (11) is controlled by each pivoting of the control handle arrangement (6), wherein in the bowstringing mode the controllable arrangement (4) does not bear against the trigger arrangement (3) and the release section (13) remains in the trigger arrangement (3), wherein when the controllable arrangement (4) is moved in the direction opposite to the shooting section (12) and is in shooting mode, the controllable arrangement (4) bears against the trigger arrangement (3), whereby the controllable arrangement (4) is driven by triggering the trigger arrangement (3) such that the bowstring arrangement (2) is released to fire the multiple arrow bodies (51) successively, wherein the controllable arrangement (4) further comprises an arrow slide seat (41) and an actuating unit (42), wherein the arrow slide seat (41) is slidably on the Arrow receiver section (11) is arrangedA mounting opening (411) is provided at the end of the arrow slide seat (41) corresponding to the actuating unit (42), a part of the actuating unit (42) is engaged in the mounting opening (411), and a part of the control handle assembly (6) is pivotably combined with the actuating unit (42), wherein, if the actuating unit (42) has not yet been moved in the direction of the firing section (12), a part of the trigger assembly (3) rests against the actuating unit (42), furthermore, the arrow slide seat (41) is provided with an arrow receiving groove (412) to match the arrow magazine (5), and the several arrow bodies (51) located in the arrow magazine (5) fall one after the other into the arrow receiving groove (412). A rapid repeating device according to claim 1, wherein the actuating unit (42) further comprises a shell (421), a mounting block (422), a movable block (423), and a tendon retention seat (424), wherein a receiving chamber (4211) is provided inside the shell (421), one end of the mounting block (422) is pivotably combined in the receiving chamber (4211), the other end of the mounting block (422) rests against the trigger assembly (3) in firing mode, the movable block (423) is pivotably arranged in the receiving chamber (4211), furthermore, the two ends of a moving part (43) are each locked with one end of the mounting block (422) and the movable block (423), a part of the tendon retention seat (424) is pivotably arranged in the receiving chamber (4211), and a part protrudes from the mounting opening (411), which is The section of the tendon retention seat (424) protruding from the mounting opening (411) serves to limit and release the bowstring assembly (2),The movable block (423) is provided with a detent-stop section (4231) to fit the tendon retention seat (424), and the detent-stop section (4231) rests movably against the lower end of the tendon retention seat (424). Rapid repeating device according to claim 2, wherein a positioning section (4212) is provided at the bottom of the receiving space (4211), wherein furthermore an elastic element (47) is arranged between the positioning section (4212) and the movable block (423), and the two ends of the elastic element (47) each bear elastically against the lower end of the movable block (423) and against the positioning section (4212), wherein the movable block (423) is pressed for elastic return by the elastic force of the elastic element (47), so that the detent stop section (4231) normally bears against the lower end of the tendon retention seat (424). A rapid repeating device according to claim 2 or 3, wherein a safety lock (48) is further arranged in the receiving space (4211) of the shell (421), a part of the safety lock (48) is pivotably combined in the receiving space (4211), and a further part of the safety lock (48) projects out of the mounting opening (411), wherein a sliding rod (481) extends from each of the two sides of the projecting section of the safety lock (48), the section of the safety lock (48) located in the receiving space (4211) is further provided with a limiting hole (482), and the safety lock (48) is pivoted about the section located in the receiving space (4211), wherein, when the two sliding rods (481) approach the tendon retention seat (424), the end of the safety lock (48) provided with the limiting hole (482) is removed from the movable block (423), so that the movable block (423) can be pivoted, wherein,When the two sliding rods (481) are moved away from the tendon retention seat (424), one end of the movable block (423) is inserted into the limiting hole (482) to limit the pivoting motion, and thus the movable block (423) is not pivoted, so that the trigger assembly (3) is indirectly controlled so that it cannot be pulled. Rapid repeating device comprising: a main pistol body (1) the upper end of which is provided with an arrow receptacle (11) and a firing section (12) assembled with a bowstring assembly (2) and the lower end of which is provided with a trigger section (13), the trigger section (13) being equipped with a trigger assembly (3); a controllable assembly (4) which is housed in the arrow receptacle (11) of the main pistol body (1) and is partly located inside the main pistol body (1) and partly exposed outside the arrow receptacle (11), wherein, when the controllable assembly (4) is moved towards the firing section (12), it moves away from the trigger assembly (3) and, when the controllable assembly (4) is moved in the opposite direction to the firing section (12), it rests movably against the trigger assembly (3); an arrow magazine (5) which is attached to the upper end of the main pistol body (1),wherein the several arrow bodies (51) located in the arrow magazine (5) fall successively into the position in which the controllable arrangement (4) on the arrow receiving section (11) is exposed; and a control grip arrangement (6) the one end of which is pivotably combined with the main pistol body (1) and is located below the arrow receiving section (11), wherein the control grip arrangement (6) is pivotably combined with the controllable arrangement (4), wherein when the control grip arrangement (6) is pivoted relative to the main pistol body (1) in the direction of the firing section (12), the controllable arrangement (4) is driven to move in the direction of the firing section (12) to form a string-drawing mode, wherein when the control grip arrangement (6) is pivoted in the direction opposite to the firing section (12), the controllable arrangement (4) is driven to return to its original position,to form a shooting mode; wherein the displacement of the controllable arrangement (4) on the arrow receiving section (11) is controlled by each pivoting of the control handle arrangement (6), wherein in the bowstringing mode the controllable arrangement (4) is not in contact with the trigger arrangement (3) and the release section (13) remains in the trigger arrangement (3), wherein when the controllable arrangement (4) is moved in the direction opposite to the shooting section (12) and is in shooting mode, the controllable arrangement (4) is in contact with the trigger arrangement (3), whereby the controllable arrangement (4) is driven by triggering the trigger arrangement (3) such that the bowstring arrangement (2) is released to fire the multiple arrow bodies (51) successively, wherein the control handle arrangement (6) primarily comprises a co-movement element (61) and a control handle (62),wherein one end of the control handle (62) is pivotably combined with the firing section (12) of the main pistol body (1), the other end of the control handle (62) extends downwards, one end of the co-movement element (61) is pivotably combined in the control handle (62), and the other end of the co-movement element (61) is pivotably combined with the controllable arrangement (4), wherein, when the control handle (62) is pivoted closer to the firing section (12), the co-movement element (61) is simultaneously pulled to move the controllable arrangement (4) in the direction of the firing section (12); wherein, conversely, when the control handle (62) is pivoted in the opposite direction to the firing section (12), the co-movement element (61) is simultaneously controlled to drive the controllable arrangement (4) so ​​that it is moved and reset. Rapid repeating device according to one of claims 1 to 4, wherein the control handle arrangement (6) primarily comprises a co-movement element (61) and a control handle (62), wherein one end of the control handle (62) is pivotably combined with the firing section (12) of the main pistol body (1), the other end of the control handle (62) extends downwards, one end of the co-movement element (61) is pivotably combined in the control handle (62), and the other end of the co-movement element (61) is pivotably combined with the controllable arrangement (4), wherein, when the control handle (62) is pivoted closer to the firing section (12), the co-movement element (61) is simultaneously pulled to move the controllable arrangement (4) in the direction of the firing section (12);Conversely, when the control handle (62) is pivoted in the opposite direction to the firing section (12), the co-movement element (61) is simultaneously controlled to drive the controllable arrangement (4) so ​​that it is moved and reset. Rapid repeating device according to claim 6, wherein the control handle (62) has an outer grip section (621) and an inner grip section (622), wherein the side of the outer grip section (621) facing the firing section (12) is provided with a slot (6211), an end of the inner grip section (622) is pivotably combined with the interior of the outer grip section (621), a portion of the inner grip section (622) is exposed outside the slot (6211), a hook element (6221) projects from the upper end of the inner grip section (622) and is movably hooked onto a positioning axis (63), and the positioning axis (63) is located in the main pistol body (1), wherein the hook element (6221) is controlled by pivoting the inner grip section (622) relative to the outer grip section (621) such that it is positioned on the positioning axis (63). is either hacked or released. Rapid repeating device comprising: a main pistol body (1) the upper end of which is provided with an arrow receptacle (11) and a firing section (12) assembled with a bowstring assembly (2) and the lower end of which is provided with a trigger section (13), the trigger section (13) being equipped with a trigger assembly (3); a controllable assembly (4) which is housed in the arrow receptacle (11) of the main pistol body (1) and is partly located inside the main pistol body (1) and partly exposed outside the arrow receptacle (11), wherein, when the controllable assembly (4) is moved towards the firing section (12), it moves away from the trigger assembly (3) and, when the controllable assembly (4) is moved in the opposite direction to the firing section (12), it rests movably against the trigger assembly (3); an arrow magazine (5) which is attached to the upper end of the main pistol body (1),wherein the several arrow bodies (51) located in the arrow magazine (5) fall successively into the position in which the controllable arrangement (4) on the arrow receiving section (11) is exposed; and a control grip arrangement (6) the one end of which is pivotably combined with the main pistol body (1) and is located below the arrow receiving section (11), wherein the control grip arrangement (6) is pivotably combined with the controllable arrangement (4), wherein when the control grip arrangement (6) is pivoted relative to the main pistol body (1) in the direction of the firing section (12), the controllable arrangement (4) is driven to move in the direction of the firing section (12) to form a string-drawing mode, wherein when the control grip arrangement (6) is pivoted in the direction opposite to the firing section (12), the controllable arrangement (4) is driven to return to its original position,to form a shooting mode; wherein the displacement of the controllable arrangement (4) on the arrow receiving section (11) is controlled by each pivoting of the control handle arrangement (6), wherein in the bowstringing mode the controllable arrangement (4) is not in contact with the trigger arrangement (3) and the release section (13) remains in the trigger arrangement (3), wherein when the controllable arrangement (4) is moved in the direction opposite to the shooting section (12) and is in shooting mode, the controllable arrangement (4) is in contact with the trigger arrangement (3), whereby the controllable arrangement (4) is driven by triggering the trigger arrangement (3) such that the bowstring arrangement (2) is released to fire the multiple arrow bodies (51) successively, wherein the arrow magazine (5) comprises a lower magazine element (52) and a movable magazine sealing piece (53),the lower magazine element (52) is combined with the arrow receiving section (11) and the firing section (12) of the main pistol body (1), an arrow receiving chamber (521) is recessed on the upper side of the lower magazine element (52) to match the arrow receiving section (11), the lower magazine element (52) has a recess in the form of a pivoting space (522) to match the firing section (12), one end of the movable magazine sealing piece (53) is pivotably combined with the pivoting space (522), the other end of the movable magazine sealing piece (53) is pivoted towards or away from the arrow receiving chamber (521), and furthermore a spring element (7) is arranged at an opening of the arrow receiving chamber (521) of the lower magazine element (52),wherein one end of the spring element (7) is combined at the opening of the arrow receiving chamber (521) and the other end of the spring element (7) extends obliquely towards the interior of the arrow receiving chamber (521) and rests against the uppermost arrow body (51) of the several arrow bodies (51). Rapid repeating device according to one of claims 1-7, wherein the arrow magazine (5) comprises a lower magazine element (52) and a movable magazine seal (53), the lower magazine element (52) is combined with the arrow receiving section (11) and the firing section (12) of the main pistol body (1), an arrow receiving chamber (521) is recessed on an upper surface of the lower magazine element (52) to match the arrow receiving section (11), the lower magazine element (52) has a recess in the form of a pivoting space (522) to match the firing section (12), one end of the movable magazine seal (53) is pivotably combined with the pivoting space (522), the other end of the movable magazine seal (53) is pivoted towards or away from the arrow receiving chamber (521), and furthermore a spring element (7) is arranged at an opening of the arrow receiving chamber (521) of the lower magazine element (52).wherein one end of the spring element (7) is combined at the opening of the arrow receiving chamber (521) and the other end of the spring element (7) extends obliquely towards the interior of the arrow receiving chamber (521) and rests against the uppermost arrow body (51) of the several arrow bodies (51). Rapid repeating device according to one of the preceding claims, wherein the end of the main pistol body (1) opposite the firing section (12) is further pivotably combined with a folding stock (8), wherein one end of the folding stock (8) is pivotably arranged on the main pistol body (1) and is pivotable to one side relative to the main pistol body (1) to form a folded mode, wherein when the folding stock (8) is pivoted so that it is coaxial with the main pistol body (1), the overall length increases, wherein for stable firing the other end of the folding stock (8) is pressed against a shoulder socket. Rapid repeating device comprising: a main pistol body (1) the upper end of which is provided with an arrow receptacle (11) and a firing section (12) assembled with a bowstring assembly (2) and the lower end of which is provided with a trigger section (13), the trigger section (13) being equipped with a trigger assembly (3); a controllable assembly (4) which is housed in the arrow receptacle (11) of the main pistol body (1) and is partly located inside the main pistol body (1) and partly exposed outside the arrow receptacle (11), wherein, when the controllable assembly (4) is moved towards the firing section (12), it moves away from the trigger assembly (3) and, when the controllable assembly (4) is moved in the opposite direction to the firing section (12), it rests movably against the trigger assembly (3); an arrow magazine (5) which is attached to the upper end of the main pistol body (1),wherein the several arrow bodies (51) located in the arrow magazine (5) fall successively into the position in which the controllable arrangement (4) on the arrow receiving section (11) is exposed; and a control grip arrangement (6) the one end of which is pivotably combined with the main pistol body (1) and is located below the arrow receiving section (11), wherein the control grip arrangement (6) is pivotably combined with the controllable arrangement (4), wherein when the control grip arrangement (6) is pivoted relative to the main pistol body (1) in the direction of the firing section (12), the controllable arrangement (4) is driven to move in the direction of the firing section (12) to form a string-drawing mode, wherein when the control grip arrangement (6) is pivoted in the direction opposite to the firing section (12), the controllable arrangement (4) is driven to return to its original position,to form a shooting mode; wherein the displacement of the controllable arrangement (4) on the arrow receiving section (11) is controlled by each pivoting of the control handle arrangement (6), wherein in the bowstringing mode the controllable arrangement (4) does not bear against the trigger arrangement (3) and the release section (13) remains in the trigger arrangement (3), wherein when the controllable arrangement (4) is moved in the opposite direction to the shooting section (12) and is in shooting mode, the controllable arrangement (4) bears against the trigger arrangement (3), whereby the controllable arrangement (4) is driven by triggering the trigger arrangement (3) such that the bowstring arrangement (2) is released to fire the multiple arrow bodies (51) successively, wherein the trigger arrangement (3) further comprises a trigger element (31) and an elongated pressure block (32), wherein the trigger element (31) is pivotably connected to a The trigger guard (311) of the release section (13) is combined,a recess in the form of an insertion slot (312) is provided on an inner end face of the trigger element (31), a part of the elongated pressure block (32) is inserted into the insertion slot (312) and the other end of the elongated pressure block (32) extends towards the controllable arrangement (4) and protrudes from the insertion slot (312), wherein, when the controllable arrangement (4) is moved towards the firing section (12) and subsequently reset, the protruding part of the elongated pressure block (32) rests against the controllable arrangement (4). Rapid repeating device according to one of claims 1-10, wherein the trigger arrangement (3) further comprises a trigger element (31) and an elongated pressure block (32), wherein the trigger element (31) is pivotably combined with a trigger guard (311) of the release section (13), a recess in the form of an insertion recess (312) is provided on an inner end surface of the trigger element (31), a part of the elongated pressure block (32) is inserted into the insertion recess (312) and the other end of the elongated pressure block (32) extends in the direction of the controllable arrangement (4) and protrudes from the insertion recess (312), wherein, when the controllable arrangement (4) is moved in the direction of the firing section (12) and subsequently reset, the protruding part of the elongated pressure block (32) rests against the controllable arrangement (4). Rapid repeating device according to one of the preceding claims, wherein the bowstring arrangement (2) primarily comprises a throwing arm (21) and a bowstring (22), wherein a combination hole (121) is provided in the longitudinal direction of the shooting section (12), the bowstring (22) is attached to both ends of the throwing arm (21), the throwing arm (21) is passed through the combination hole (121) and its central section is limited in the combination hole (121) and the bowstring (22) falls into the space formed between the arrow receiving section (11) and the arrow magazine (5).

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