Integrated multi-shot rubber band gun

By using an integrated design and a special groove structure, the rubber band gun solves the problems of complex parts and inconvenient triggers, achieving multiple functions and reducing production costs.

CN224151530UActive Publication Date: 2026-04-21丁靖扬
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
丁靖扬
Filing Date
2025-05-26
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing rubber band guns have complex parts and require multiple components to work together. The trigger design of rubber band guns with compliant mechanisms is not easy to hold and is prone to accidental activation. Traditional designs are difficult and costly to manufacture.

Method used

It adopts an integrated design and utilizes a special groove structure to achieve continuous firing function. It is triggered by the index finger, and the staggered rod structure reduces moving parts. The end of the rod is designed with a limiting arc to prevent the rubber band from falling off.

Benefits of technology

It realizes a multi-shot rubber band gun that does not require assembly, improves the operating feel, reduces production difficulty and cost, and has an educational function.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an integrated multi-shot rubber band gun which comprises a gun rack and a finger groove, the finger groove is formed in the gun rack, the integrated multi-shot rubber band gun further comprises a tail end mounting rod, and the tail end mounting rod is integrally connected to the gun rack and used for mounting one end of a rubber band; the winding opening is formed in the gun rack and is used for winding the rubber band; and the re-loading groove is formed in the gun rack and communicates with the finger groove, meanwhile, the re-loading groove is further formed between the tail end mounting rod and the winding opening and used for mounting the other end of the rubber band, and the other end of the rubber band sequentially bypasses the re-loading groove, the finger groove and the winding opening and is mounted on the tail end mounting rod. According to the utility model, the forefinger instead of other fingers can be used for triggering, so that the operation hand feeling is improved; the product can be used after being produced by only one part, and does not need to be assembled, so that the production difficulty can be greatly reduced, and the production cost is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of toys, and in particular to an integrated multi-shot rubber band gun. Background Technology

[0002] A rubber band gun is a toy gun that uses a rubber band as its power source and a rubber band as its projectile. The principle is that one end of the rubber band is hooked onto the front of the gun, and then the rubber band can be stretched backward. After stretching a certain distance, it is released, the rubber band contracts, and the gun flies out. Most rubber band guns on the market today use mechanical structures to accomplish this process. These guns usually contain multiple parts that work together to launch the rubber band, requiring a certain level of precision in the fit between the parts. However, a small number of rubber band guns use only one part. These utilize a compliant mechanism, which uses the deformation of a rod to achieve the movement of a component. Rubber band guns using a compliant mechanism integrate all moving parts into one unit. However, the trigger of these guns is usually not finger-activated but rather activated with the thumb or other fingers. This design may be inconvenient to hold and may pose a risk of accidental activation. Utility Model Content

[0003] The present invention aims to provide an integrated multi-shot rubber band gun to overcome or at least partially solve the above-mentioned problems.

[0004] To achieve the above objectives, the technical solution of this utility model is specifically implemented as follows:

[0005] This utility model provides an integrated multi-shot rubber band gun, including a gun frame and a finger groove, wherein the finger groove is formed inside the gun frame, and also includes...

[0006] An end-mounted rod is integrally connected to the gun mount and is used to mount one end of a rubber band.

[0007] The opening is located on the gun mount and is used for looping rubber bands around it.

[0008] The reloading slot is located on the gun mount and communicates with the finger slot. The reloading slot is also located between the end mounting rod and the loop, and is used to mount the other end of the rubber band. The other end of the rubber band passes through the reloading slot, the finger slot and the loop in sequence, and is mounted on the end mounting rod.

[0009] The loading trough is internally connected to a mounting rod 1, a mounting rod 2, a mounting rod 3, a conveying rod 1, and a conveying rod 2 for mounting and conveying rubber bands. The mounting rod 1, the mounting rod 2, and the mounting rod 3 are located on the left side of the loading trough, and the conveying rod 1 and the conveying rod 2 are located on the right side of the loading trough. The mounting rod 1, the mounting rod 2, the mounting rod 3, the conveying rod 1, and the conveying rod 2 are arranged alternately.

[0010] As a further embodiment of this utility model, the end mounting rod is provided with an end mounting port.

[0011] As a further embodiment of this utility model, the surface of the mounting rod that contacts the rubber band is a smooth plane.

[0012] As a further embodiment of this utility model, a limiting arc is connected to both the second mounting rod and the surface of the mounting rod that contacts the rubber band.

[0013] As a further embodiment of this utility model, a gap is provided between the first mounting rod, the second mounting rod, the third mounting rod, the first transmission rod, and the second transmission rod to allow the rubber band to pass through.

[0014] As a further embodiment of this utility model, the opening includes an upper opening, which is located at the upper end of the gun mount.

[0015] As a further embodiment of this invention, the opening also includes a lower opening, which is located at the lower end of the gun mount.

[0016] This utility model provides an integrated multi-shot rubber band gun, which has the following advantages:

[0017] (1) By cleverly using the movement of rubber bands, multiple rubber bands can be loaded and ejected even without any moving mechanism.

[0018] (2) It can be triggered with the index finger instead of other fingers, which improves the feel of operation;

[0019] (3) This product has only one part, meaning it can be used immediately after production without assembly, which greatly reduces production difficulty and production costs.

[0020] (4) This product uses a special geometric shape to achieve all functions and has a certain educational effect. Attached Figure Description

[0021] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0022] Figure 1 This is a schematic diagram of the gun mount structure of the present invention, in which the medium and heavy load slot is located above the finger slot.

[0023] Figure 2 This is a schematic diagram of the structure of the reloading groove in this utility model.

[0024] Figure 3 This is a schematic diagram of the gun mount structure in this utility model, where the load-bearing groove is located below the finger groove.

[0025] Figure 4 This is a structural diagram of an integrated single-shot rubber band gun.

[0026] Figure 5 This is a cross-sectional schematic diagram of the reloading groove with the rubber band attached in this utility model.

[0027] Figure 6 This is a demonstration diagram of the rubber band moving from one of the mounting rods to one of the transmission rods in Embodiment 1 of this utility model.

[0028] Figure 7 This is a demonstration diagram of the rubber band being attached to the second mounting pole in Embodiment 1 of this utility model.

[0029] Figure 8 This is a schematic diagram of the structure in Embodiment 1 of this utility model, showing the second rubber band being hung on the second mounting rod.

[0030] Figure 9 This is a demonstration diagram of the second rubber band being hung on the second mounting pole in Embodiment 1 of this utility model.

[0031] Figure 10 This is a schematic diagram of the structure completed by attaching three rubber bands in Embodiment 1 of this utility model.

[0032] Figure 11 This is a schematic diagram of the structure in Embodiment 2 of this utility model where the rubber band is attached to the mounting rod.

[0033] Figure 12 This is a demonstration diagram of the rubber band moving from one of the hanging rods to one of the conveying rods in Embodiment 2 of this utility model.

[0034] Figure 13 This is a demonstration diagram of the second rubber band being hung on the second mounting pole in Embodiment 2 of this utility model.

[0035] Figure 14 This is a demonstration diagram of the rubber band being hung on the first mounting rod in Embodiment 3 of this utility model.

[0036] Figure 15 This is a demonstration diagram of the hanging of the rubber band around the lower opening in Embodiment 3 of this utility model.

[0037] Figure 16 This is a demonstration diagram of the hanging of the rubber band around the upper opening in Embodiment 3 of this utility model.

[0038] Figure 17 This is a schematic diagram of the structure after the rubber band is attached in Embodiment 3 of this utility model.

[0039] Figure 18 This is a demonstration diagram of finger pulling on the rubber band in Embodiment 3 of this utility model.

[0040] Figure 19 This is a demonstration diagram of the rubber band movement in Embodiment 3 of this utility model.

[0041] Figure 20 This is a side view of the mounting rod in this utility model.

[0042] Figure 21 This is a demonstration diagram of the rubber band movement in this utility model.

[0043] Figure 22 This is a schematic diagram of the limiting arc structure in this utility model.

[0044] Figure 23 This is a demonstration diagram showing the rubber band positioned at the limiting arc in this utility model.

[0045] Figure 24 This is a schematic diagram of the transmission rod in this utility model.

[0046] In the diagram: 1. Gun mount; 2. End mount; 3. Loading slot; 4. Upper opening; 5. Lower opening; 6. Finger slot; 21. End mount port; 31. Mounting rod one; 32. Mounting rod two; 33. Mounting rod three; 34. Transfer rod one; 35. Transfer rod two; 36. Limiting arc. Detailed Implementation

[0047] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.

[0048] Example 1

[0049] See Figure 1 , Figure 2 , Figure 5-10 This utility model provides an integrated multi-shot rubber band gun, including a gun holder 1 and a finger groove 6. The finger groove 6 is formed inside the gun holder 1. It also includes...

[0050] End mounting rod 2 is integrally connected to the gun mount 1 and is used to mount one end of the rubber band.

[0051] Upper opening 4 is located at the upper end of gun holder 1 and is used for looping rubber bands.

[0052] Lower opening 5, located at the lower end of gun holder 1, is used for looping rubber bands around.

[0053] The heavy-load slot 3 is located at the upper part of the gun mount 1 and is connected to the finger slot 6. The heavy-load slot 3 is also located between the end mounting rod 2 and the loop, and is used to mount the other end of the rubber band. The other end of the rubber band passes through the heavy-load slot 3, the finger slot 6 and the loop in sequence, and is mounted on the end mounting rod 2.

[0054] The loading tank 3 is internally connected with a series of mounting rods for hanging and conveying rubber bands: mounting rod 1 31, mounting rod 2 32, mounting rod 33, conveying rod 1 34, and conveying rod 2 35. Mounting rod 1 31, mounting rod 2 32, and mounting rod 33 are located on the left side of the loading tank 3 and are arranged sequentially from top to bottom. Conveying rod 1 34 and conveying rod 2 35 are located on the right side of the loading tank 3, with conveying rod 1 34 positioned above conveying rod 2 35. Mounting rod 1 31, mounting rod 2 32, mounting rod 33, conveying rod 1 34, and conveying rod 2 35 are arranged in an alternating manner.

[0055] The end mounting rod 2 has an end mounting port 21.

[0056] The surface of the mounting rod 31 that contacts the rubber band is a smooth plane.

[0057] Both the second mounting rod 32 and the surface of the mounting rod that contacts the rubber band are connected with limiting arcs 36.

[0058] A gap is left between the mounting rod 31, the mounting rod 32, the mounting rod 33, the transmission rod 34, and the transmission rod 35 to allow the rubber band to pass through.

[0059] In use, the basic principle of the automatic loading mechanism of this invention is to add a special slot, called the reloading slot 3, to the single-shot base design. Its function is to increase the continuous firing capability. To illustrate the principle, the reloading slot 3 is demonstrated as a three-shot design. In actual production, the reloading slot 3 can be extended to a four-shot or five-shot design. The reloading slot 3 is directly added above the mounting rod in the base design, such as... Figure 1 As shown,

[0060] To allow users to launch the device simply by pulling their index finger backward, several rod-shaped structures on the left side of the loading slot 3 are designed as mounting rods, and several rod-shaped structures on the right side of the loading slot 3 are designed as transmission rods. The transmission rods and mounting rods are intertwined, and the ends of the transmission rods and mounting rods coincide horizontally. From top to bottom, they are the topmost transmission rod 1 34, transmission rod 2 35, mounting rod 1 31, mounting rod 2 32, and mounting rod 3 33.

[0061] First, hang the rubber band on the first mounting rod 31. At the same time, the second mounting rod 32 and the third mounting rod 33 should be inserted into the rubber band. For the convenience of the following explanation, the part of the rubber band that moves and contacts within the structure of the loading tank 3 is regarded as a point. This point is called the contact node. The movement of the rubber band on the structure of the loading tank 3, as well as the movement of the rubber band between the mounting rod and the transmission rod, will be explained in conjunction with the movement of the contact node.

[0062] When attaching the first rubber band, ensure that the entire load-bearing slot 3 is fully inserted into the rubber band. This means that the first mounting rod 31, the second mounting rod 32, and the third mounting rod 33 should all be inserted into the rubber band simultaneously. (For illustration...) Figure 5 This is a cross-sectional view of the reloading slot 3, which has already been fitted with rubber bands;

[0063] Insert your index finger into the finger groove 6 and pull the rubber band backward. The backward movement of the index finger causes the rubber band located at the mounting rod 31 to move backward, and the contact node moves backward until the rubber band detaches from the mounting rod 31. At this point, the index finger is positioned at the rear of the finger groove 6. Then, under its own elasticity, the rubber band's contact node falls onto the transmission rod 34. Because the finger is now positioned at the rear of the finger groove 6, the rubber band remains on the transmission rod 34, and the contact node remains on the transmission rod 34, unable to move. This state is as follows: Figure 6 ;

[0064] When the index finger is released, under the elastic force of the rubber band, the node moves downward along the slope of the first conveyor rod 34, the index finger returns to the front end of the finger groove 6, finally leaves the node, and falls onto the second hanging rod 32, completing one cycle. Figure 7 ;

[0065] After the index finger repeats the action twice, the node will fall onto the mounting rod 33. At this time, if the index finger is pulled back again, the rubber band will be released from the mounting rod 33 and launched.

[0066] To achieve continuous firing, the rubber bands should be attached to the three mounting rods (mounted rod 31, 32, and 33) in sequence as follows. The first rubber band should be attached to mounting rod 31 as described above. When attaching the second and third rubber bands, note that starting with the second rubber band, the rubber bands should be loaded from... Figure 8 The rubber band is threaded through the notch for mounting;

[0067] When attaching the second elastic band, first thread the elastic band through the notch, then attach it to the mounting rod 2 (32) as described above. Note that the second elastic band should include both mounting rod 2 (32) and mounting rod 3 (33). See the detailed instructions below. Figure 9 ;

[0068] Figure 10 This is a picture after all three rubber bands have been attached. After attaching, pull your index finger back three times in the index finger groove to shoot out all three attached rubber bands.

[0069] Example 2

[0070] See Figure 2 , Figure 11-13 This utility model provides an integrated multi-shot rubber band gun, including a gun holder 1 and a finger groove 6. The finger groove 6 is formed inside the gun holder 1. It also includes...

[0071] End mounting rod 2 is integrally connected to the gun mount 1 and is used to mount one end of the rubber band.

[0072] Upper opening 4 is located at the upper end of gun holder 1 and is used for looping rubber bands.

[0073] The heavy-load slot 3 is located at the lower part of the gun mount 1 and is connected to the finger slot 6. The heavy-load slot 3 is also located between the end mounting rod 2 and the loop, and is used to mount the other end of the rubber band. The other end of the rubber band passes through the heavy-load slot 3, the finger slot 6 and the loop in sequence, and is mounted on the end mounting rod 2.

[0074] The loading tank 3 is internally connected with a series of mounting rods for hanging and conveying rubber bands: mounting rod 1 31, mounting rod 2 32, mounting rod 33, conveying rod 1 34, and conveying rod 2 35. Mounting rod 1 31, mounting rod 2 32, and mounting rod 3 33 are located on the left side of the loading tank 3 and are arranged sequentially from bottom to top. Conveying rod 1 34 and conveying rod 2 35 are located on the right side of the loading tank 3, with conveying rod 1 34 positioned below conveying rod 2 35. Mounting rod 1 31, mounting rod 2 32, mounting rod 33, conveying rod 1 34, and conveying rod 2 35 are arranged in an alternating manner.

[0075] The end mounting rod 2 has an end mounting port 21.

[0076] The surface of the mounting rod 31 that contacts the rubber band is a smooth plane.

[0077] Both the second mounting rod 32 and the surface of the mounting rod that contacts the rubber band are connected with limiting arcs 36.

[0078] A gap is left between the mounting rod 31, the mounting rod 32, the mounting rod 33, the transmission rod 34, and the transmission rod 35 to allow the rubber band to pass through.

[0079] In the process of using this utility model, the rubber band is first hung on the first hanging rod 31, and the second hanging rod 32 and the third hanging rod 33 should be inserted into the rubber band. For the convenience of the following description, the part of the rubber band that moves and contacts within the structure of the loading trough 3 is regarded as a point, which is named the contact node. The movement of the rubber band on the structure of the loading trough 3 and the movement of the rubber band between the hanging rod and the conveying rod will be explained in conjunction with the movement of the contact node.

[0080] When attaching the first rubber band, ensure that the entire load-bearing slot 3 is fully fitted inside the rubber band, meaning that the first mounting rod 31, the second mounting rod 32, and the third mounting rod 33 are simultaneously fitted inside the rubber band. Figure 11 As shown;

[0081] Insert your index finger into the finger groove 6 and pull the rubber band backward. The backward movement of the index finger causes the rubber band located at the mounting rod 31 to move backward, and the contact node moves backward until the rubber band detaches from the mounting rod 31. At this point, the index finger is positioned at the rear of the finger groove 6. Then, under its own elasticity, the rubber band's contact node falls onto the transmission rod 34. Because the finger is now positioned at the rear of the finger groove 6, the rubber band remains on the transmission rod 34, and the contact node remains on the transmission rod 34, unable to move. This state is as follows: Figure 12 ;

[0082] When the index finger is released, under the elastic force of the rubber band, the node moves downward along the slope of the first conveyor rod 34, the index finger returns to the front end of the finger groove 6, finally leaves the node, and falls onto the second hanging rod 32, completing one cycle. Figure 13 ;

[0083] After the index finger repeats the action twice, the node will fall onto the mounting rod 33. At this time, if the index finger is pulled back again, the rubber band will be released from the mounting rod 33 and launched.

[0084] Example 3

[0085] See Figure 4 , Figure 14-19 This utility model provides an integrated single-shot rubber band gun, including a gun holder 1 and a finger groove 6, the finger groove 6 being formed inside the gun holder 1, and also including...

[0086] End mounting rod 2 is integrally connected to the gun mount 1 and is used to mount one end of the rubber band.

[0087] Upper opening 4 is located at the upper end of gun holder 1 and is used for looping rubber bands.

[0088] Lower opening 5, located at the lower end of gun holder 1, is used for looping rubber bands around.

[0089] The heavy-load slot 3 is located at the upper part of the gun mount 1 and is connected to the finger slot 6. The heavy-load slot 3 is also located between the end mounting rod 2 and the loop, and is used to mount the other end of the rubber band. The other end of the rubber band passes through the heavy-load slot 3, the finger slot 6 and the loop in sequence, and is mounted on the end mounting rod 2.

[0090] The internal structure of the loading slot 3 is integrally connected to a mounting rod 31 for mounting and transmitting rubber bands.

[0091] The end mounting rod 2 has an end mounting port 21.

[0092] The surface of the mounting rod 31 that contacts the rubber band is a smooth plane.

[0093] In use, the rubber band is first hung on the mounting rod 31, then pulled downwards until it passes the lower loop 5, as shown. Figure 14 Then, after passing the entire rubber band through the lower loop 5, pull it upwards so that it passes through the upper loop 4. Pass the entire rubber band through the upper loop 4, then pull the rubber band to the other side and secure it to the upper loop 4. Figure 15 and 16 Then stretch it forward until it reaches the end mounting rod 2, and attach the rubber band to the end mounting port 21, as shown. Figure 17Once mounted, insert your index finger into finger slot 6 and press... Figure 18 Hook the rubber band backward in the direction of the black arrow to detach it from the mounting bar, and pull backward until the rubber band is released. The rubber band will then move along... Figure 19 The black arrow in the picture indicates the movement of the rubber band, which passes through the lower loop 5 and the upper loop 4 in sequence, and is finally ejected through the end mounting rod 2 to achieve single-shot firing.

[0094] If the width of the loading slot 3 (the initial distance between the mounting rod and the conveyor rod) is fixed, and the length of the conveyor rod is also fixed, then the overlap length between the ends of the conveyor rod and the mounting rod depends on the length of the mounting rod. Because the rubber band has high elasticity, when the mounting rod containing the rubber band is far from the finger groove 6 (the point of application), the effect of the backward pull of the index finger on it will be smaller. Furthermore, since the rubber band is at the very end of the loading slot 3, it is stretched the longest, which further reduces the effect of the pull. Therefore, the index finger needs to pull backward a greater distance, doing more work and exerting more force to detach the rubber band from its mounting rod. Conversely, if the mounting rod containing the rubber band is closest to the finger groove 6, the rubber band's stretch is the smallest, the pull has the greatest effect, the required pulling distance is smaller, and the work done is minimal. To ensure that pulling backward the same distance will detach all the rubber bands on the mounting rods while minimizing effort, the mounting rod closest to the finger groove 6 should be the longest, and the lengths of the other mounting rods should gradually decrease. Figure 20 For example.

[0095] Assuming the length of mounting rod 1 (31) is *a*, the length of mounting rod 2 (32) is *b*, and the length of mounting rod 3 (33) is *c*, then the relationship between their lengths should be:

[0096] a <b<c

[0097] This design demonstrates a three-round burst configuration, with potential for expansion to four or six rounds. Experience shows that the length of the three mounting bars in this design decreases by approximately 1 / 5. When using more mounting bars, the length reduction should be greater than 1 / 5.

[0098] In practical use, the following situation may occur: when the rubber band is transferred from the mounting pole to the conveyor pole, or from the conveyor pole to the mounting pole, and the contact point of the rubber band is located at the end of the conveyor pole or mounting pole, the rubber band will, due to a specific angle, travel along the... Figure 21 The direction of the black arrow ignores all the control of the rod-like structures and flies directly out of the heavy load slot 3.

[0099] The above situation can lead to instability during launch and safety issues during use. Here are two methods to resolve this problem:

[0100] The first method involves adding a raised arc to the end of each hanger post. This arc is called the limiting arc 36. The limiting arc 36 is a raised arc section at the end of the hanger post, such as... Figure 22 Its function is twofold: when the rubber band falls from the conveyor rod to the hanging rod, the limiting arc 36 will guide the rubber band to the inner side of the hanging rod, thereby preventing the rubber band from accidentally falling off.

[0101] Figure 23 This demonstrates how the limiting arc 36 prevents accidental detachment and uncontrolled flight.

[0102] The limiting arc 36 also increases the damping when the index finger pulls the rubber band, which allows the rubber band to quickly detach from the mounting rod, increases the stability of the rubber band when transferring from the mounting rod to the transmission rod, thereby reducing the probability of instability during launch and ensuring that there will be no accidental detachment.

[0103] The second method is to make the ramp on the conveyor rod gentler. If the ramp is too steep, there is a risk of the rubber band accidentally falling off. When the index finger pulls the rubber band from the mounting rod to the conveyor rod, the index finger will remain at the rear end of the finger groove 6, forcing the rubber band to stay on the conveyor rod. For a conveyor rod with a steep ramp, when the index finger starts to move towards the front end of the finger groove 6, at a certain position, the rubber band, under the combined action of the finger and the ramp, will slide directly out of the loading groove 3 along the contour of the conveyor rod, causing the rubber band to accidentally fall off.

[0104] Furthermore, the horizontal position between the reloading groove 3 and the finger groove 6 in this design can also be reversed; for example, the reloading groove 3 can also be below the finger groove 6. Figure 24 .

[0105] The above are merely embodiments of this application and are not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of the claims of this application.

Claims

1. An integrated multi-shot rubber band gun comprising a gun frame (1) and a finger slot (6), the finger slot (6) being formed in the interior of the gun frame (1), characterized in that, It also includes, End mounting rod (2), which is integrally connected to the gun frame (1) and is used to mount one end of the rubber band; The opening is provided on the gun holder (1) for the rubber band to pass through; The heavy-load slot (3) is opened on the gun mount (1) and communicates with the finger slot (6). The heavy-load slot (3) is also set between the end mounting rod (2) and the loop, for mounting the other end of the rubber band. The other end of the rubber band passes through the heavy-load slot (3), the finger slot (6) and the loop in sequence and is mounted on the end mounting rod (2). The loading trough (3) is internally connected with a first mounting rod (31), a second mounting rod (32), a third mounting rod (33), a first conveyor rod (34), and a second conveyor rod (35) for mounting and conveying rubber bands. The first mounting rod (31), the second mounting rod (32), and the third mounting rod (33) are located on the left side of the loading trough (3), and the first conveyor rod (34) and the second conveyor rod (35) are located on the right side of the loading trough (3). The first mounting rod (31), the second mounting rod (32), the third mounting rod (33), the first conveyor rod (34), and the second conveyor rod (35) are arranged alternately.

2. The integrated multi-shot rubber band gun of claim 1, wherein, The end mounting rod (2) is provided with an end mounting port (21).

3. The integrated multi-shot rubber band gun according to claim 1, characterized in that, The surface of the mounting rod (31) that contacts the rubber band is a smooth plane.

4. The integrated multi-shot rubber band gun of claim 3, wherein, The second mounting rod (32) and the surface of the mounting rod that contacts the rubber band are both connected with limiting arcs (36).

5. The integrated multi-shot rubber band gun of claim 4, wherein, A gap is left between the first (31), second (32), third (33), first (34), and second (35) of the mounting rod for the rubber band to pass through.

6. The integrated multi-shot rubber band gun of claim 1, wherein, The opening includes an upper opening (4), which is located at the upper end of the gun mount (1).

7. The integrated multi-shot rubber band gun of claim 6, wherein, The opening also includes a lower opening (5), which is located at the lower end of the gun mount (1).