Toy launcher
By employing a detachable plug-in structure of mounting blocks and slots in the toy launcher, and utilizing the mechanical locking of the clamping part and the alignment slot, the problem of loose connection and misalignment between the supply mechanism and the launcher body is solved, achieving a stable connection and precise positioning of the supply mechanism, and ensuring a stable supply of projectiles.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANTOU PAIFAN TOYS CO LTD
- Filing Date
- 2025-05-04
- Publication Date
- 2026-04-17
AI Technical Summary
The supply mechanism of existing toy launchers is loosely connected to the launcher body and is prone to detachment. Furthermore, misalignment during assembly can lead to poor supply of projectiles.
The device employs a detachable plug-in structure for the mounting block and slot. The mechanical locking of the clamping part and the alignment groove ensures a stable connection between the supply mechanism and the mounting base. The guide ramp and alignment groove are used to precisely guide the sliding insertion of the mounting block to achieve positioning and fixation.
It improves the stability of the connection between the supply mechanism and the main body, prevents loosening and detachment, ensures the stability and accuracy of the launcher supply, and eliminates poor supply caused by misalignment.
Smart Images

Figure CN224126555U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of toys, and more particularly to toy launchers. Background Technology
[0002] A toy launcher typically includes a launching mechanism for launching and a supply mechanism for supplying the projectile. The supply mechanism is connected to the launching mechanism. During operation, the projectile in the supply mechanism is transferred to the launching mechanism, which imparts kinetic energy to the projectile, allowing it to be launched with a certain initial velocity. The supply mechanism varies in structure depending on the projectile. For example, different shapes or structures are required for liquid projectiles, toy soft bullets, water bullets, and various other projectiles in existing technology.
[0003] However, the supply mechanism often has certain shortcomings in actual use: First, in order to improve the ease of launching, the supply mechanism is usually configured to be detachable, but during long-term use, the connection between the supply mechanism and the launcher body is prone to loosening or even detachment, resulting in poor connection reliability of the supply mechanism. Second, the assembly between the supply mechanism and the launcher body lacks positioning, which can easily lead to misalignment and poor launching. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a toy launcher.
[0005] This utility model provides a toy launcher, which includes:
[0006] ontology;
[0007] The launching mechanism is mounted on the main body;
[0008] The supply mechanism is equipped with interconnected storage cavities and supply outlets; and
[0009] The locking mechanism includes a mounting base, a mounting block, a slot, an alignment groove, and a locking part. The mounting base is disposed on the body and communicates with the launching mechanism. One of the mounting block and the slot is located on the mounting base, and the other of the mounting block and the slot is located on the supply port. The alignment groove is located on the groove wall of the slot, and the locking part is located on the groove wall of the alignment groove.
[0010] The mounting block is detachably inserted into the slot, aligning the mounting block with the alignment groove, allowing the mounting block to slide into the alignment groove. This allows the locking part to detachably lock the mounting block, thereby locking the relative position of the supply mechanism and the mounting base.
[0011] Preferably, the mounting block has a locking groove, and the locking part can be detachably locked into the locking groove.
[0012] Preferably, a guide slope is provided at the connection position between the clamping part and the groove wall of the alignment groove.
[0013] Preferably, the mounting base has two slots, each slot has an alignment groove on its groove wall, and each alignment groove has a locking part on its groove wall;
[0014] Two mounting blocks are provided on the supply port;
[0015] The two mounting blocks are detachably inserted into the two slots, one for each other.
[0016] Preferably, the supply mechanism includes a storage box, the storage box having a storage cavity inside, and a portion of the sidewall of the storage box extending outward to form the supply port;
[0017] The mounting base is also provided with a positioning groove, which is connected to each of the slots and each of the alignment slots respectively, and the supply port is detachably inserted into the positioning groove.
[0018] Preferably, the mounting base is provided with a connecting cylinder, one end of which is connected to the launching mechanism, and the other end of which is exposed in the positioning groove.
[0019] Preferably, the launching mechanism includes a motor, a gear transmission assembly, a piston, a pump cylinder, and a nozzle;
[0020] The motor is disposed within the main body and is driven and connected to the piston via the gear transmission assembly. The pump cylinder is disposed within the main body, and the piston is slidably disposed within the pump cylinder. The nozzle is disposed at the output port of the pump cylinder, and the input port of the pump cylinder is connected to the supply port via the mounting base.
[0021] Preferably, the gear transmission assembly includes an intermittent gear, two racks, and several transmission gears;
[0022] The transmission gears mesh sequentially, the motor drive is connected to one of the transmission gears, the other transmission gear is coaxially connected to the intermittent gear, the two racks are parallel to each other and both racks are connected to the piston, and the intermittent gear is located between the two racks;
[0023] The motor drives the intermittent gear to rotate through each of the transmission gears. The intermittent gear intermittently meshes with the two racks, thereby causing the piston to reciprocate within the pump barrel.
[0024] Preferably, the toy launcher further includes a power supply mechanism, which includes a battery and a cover. The battery is disposed in the main body, and the cover is detachably mounted on the main body to cover the battery. The battery is electrically connected to the launch mechanism.
[0025] Preferably, the toy launcher further includes a control mechanism, which includes a control switch and a trigger. The control switch is disposed within the main body, the battery is electrically connected to the launching mechanism through the control switch, and the trigger is movably disposed on the main body and movably abuts against the control switch.
[0026] The following are the beneficial effects of implementing this utility model:
[0027] This utility model relates to a toy launcher. The toy launcher has a detachable plug-in structure for the mounting block and the slot. When the mounting block slides along the slot into the alignment groove, the locking part and the mounting block form a mechanical lock, so that the connection between the supply mechanism and the mounting base has a self-locking function, which effectively improves the stability of the connection between the two and avoids the problem of loosening and falling out due to vibration or external force during long-term use.
[0028] Because the supply mechanism and the main body are connected by a sliding insertion of an alignment groove and a mounting block, when the mounting block is inserted into the slot, the groove wall of the alignment groove can accurately guide and limit the mounting block, ensuring that the assembly position between the supply mechanism and the main body is unique and fixed, and eliminating the phenomenon of poor supply of projectiles caused by misalignment. Attached Figure Description
[0029] The above and other objects, features and advantages of the present invention will become more apparent from the accompanying drawings, in which like reference numerals generally denote like parts.
[0030] Figure 1 This is a schematic diagram of the structure of the toy launcher in some embodiments of this utility model;
[0031] Figure 2 This is an exploded view of the toy launcher in some embodiments of this utility model;
[0032] Figure 3 yes Figure 2 A partial structural diagram of the toy launcher shown.
[0033] Figure 4 yes Figure 3 A magnified view of the toy launcher at point A;
[0034] Figure 5 This is a partial structural schematic diagram of the toy launcher in some embodiments of this utility model;
[0035] Figure 6 From another perspective Figure 5 The diagram shows the structure of the toy launcher.
[0036] Figure 7 This is a schematic diagram of the launching mechanism in some embodiments of this utility model. Detailed Implementation
[0037] Embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. While embodiments of the present invention are shown in the drawings, it should be understood that the present invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that the present invention will be more thorough and complete, and will fully convey the scope of the present invention to those skilled in the art.
[0038] It should be understood that although the terms "first," "second," "third," etc., may be used in this invention to describe various information, this information should not be limited to these terms. These terms are only used to distinguish information of the same type from one another. For example, without departing from the scope of this invention, first information may also be referred to as second information, and similarly, second information may also be referred to as first information. Thus, features defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.
[0039] In the description of this utility model, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0040] Unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0041] Figure 1The toy launcher 10 of some embodiments of the present invention is shown below; please refer to them together. Figure 2 and Figure 3 The toy launcher 10 includes a body 1, a launching mechanism 2, a supply mechanism 3, and a locking mechanism 4. The body 1 supports and mounts the other mechanisms and components, and its shape can be flexibly configured. The launching mechanism 2 is mounted on the body 1 and is used to impart kinetic energy to the projectile, causing it to be launched outside the body 1. The supply mechanism 3 is detachably mounted to the body 1 via the locking mechanism 4, and is also connected to the launching mechanism 2 via the locking mechanism 4. The supply mechanism 3 is used to hold the projectile to be launched.
[0042] It should be noted that the object to be launched can be a liquid, or it can be a toy soft bullet, toy water bullet, or other types of projectiles commonly found in the prior art. Of course, the launching mechanism 2 can be configured accordingly for different types of projectiles so that it can adapt to the corresponding type of projectile to complete the launch.
[0043] like Figure 5 and Figure 6 As shown, the launching mechanism 2 is mounted on the main body 1; the supply mechanism 3 is provided with a storage cavity 311 and a supply port 32 that are interconnected.
[0044] Understandably, the receiving cavity 311 is used to store the object to be launched. The supply port 32 connects the receiving cavity 311 and the launching mechanism 2, and is used to transport the object to be launched to the launching mechanism 2. Of course, the supply port 32 is only correctly connected to the launching mechanism 2 after the supply mechanism 3 is correctly aligned and installed.
[0045] like Figures 4 to 6 As shown, the locking mechanism 4 includes a mounting base 41, a mounting block 42, a slot 43, an alignment groove 44, and a locking part 45. The mounting base 41 is disposed on the body 1 and connected to the launching mechanism 2. One of the mounting block 42 and the slot 43 is located on the mounting base 41, and the other of the mounting block 42 and the slot 43 is located on the supply port 32. The alignment groove 44 is located on the groove wall of the slot 43, and the locking part 45 is located on the groove wall of the alignment groove 44.
[0046] The mounting block 42 is detachably inserted into the slot 43, so that the mounting block 42 is aligned with the alignment slot 44, and the mounting block 42 can be slidably inserted into the alignment slot 44, thereby the locking part 45 can detachably lock the mounting block 42, thereby locking the relative position of the supply mechanism 3 and the mounting base 41.
[0047] Understandably, the mounting base 41 is fixed to the body 1 and communicates with the launching mechanism 2 to receive the object to be launched from the supply port 32. The object to be launched can be further transmitted to the launching mechanism 2 through the mounting base 41.
[0048] Mounting block 42 and slot 43 are respectively disposed on mounting base 41 and supply port 32, and the initial positioning of supply mechanism 3 and mounting base 41 is achieved by insertion. Alignment groove 44 is located on the groove wall of slot 43, so that alignment groove 44 can guide mounting block 42 to slide along a preset direction to the target position in slot 43. When mounting block 42 slides into alignment groove 44, locking part 45 and mounting block 42 form a mechanical lock, fixing the relative position of supply mechanism 3 and mounting base 41.
[0049] Furthermore, in some embodiments of the toy launcher 10, the width of the alignment groove 44 can be configured to gradually decrease along the sliding installation direction of the mounting block 42, thereby clamping and fixing the mounting block 42 through the groove wall of the alignment groove 44, thereby further improving the installation stability of the mounting block 42.
[0050] The mounting block 42 and the slot 43 can be positioned in at least two of the following ways:
[0051] Firstly, the mounting block 42 is located on the mounting base 41, and the slot 43 is located on the supply port 32. Specifically, the mounting block 42 is fixed to the surface of the mounting base 41 as a protruding structure, forming an integral or separate connection with the mounting base 41. The slot 43 is formed on the supply port 32, and the shape of the slot 43 matches that of the mounting block 42, for receiving the insertion of the mounting block 42.
[0052] Secondly, the slot 43 is located on the mounting base 41, and the mounting block 42 is located on the supply port 32. Specifically, the slot 43 is formed as a groove on the surface of the mounting base 41. The mounting block 42 is fixed to the supply port 32 as a protrusion, and the size of the mounting block 42 is adapted to the opening of the slot 43.
[0053] It should be noted that both implementations of the mounting block 42 and slot 43 can achieve quick connection between the supply mechanism 3 and the main body 1.
[0054] like Figures 4 to 6 As shown, in some embodiments of the toy launcher 10, the mounting block 42 is provided with a locking groove 451, and the locking part 45 is detachably locked into the locking groove 451.
[0055] Understandably, the opening direction of the locking groove 451 is consistent with the sliding insertion direction of the mounting block 42. When the mounting block 42 slides into the alignment groove 44, the locking part 45 forms a locking fit with the side wall of the mounting block 42 through the locking groove 451. The limiting effect of the locking groove 451 prevents the mounting block 42 from accidentally sliding out, thereby enhancing the locking stability.
[0056] It should be noted that the mechanical cooperation between the locking groove 451 and the mounting block 42 reduces the risk of locking failure caused by vibration or external force, and ensures the long-term reliability of the connection between the supply mechanism 3 and the mounting base 41.
[0057] like Figure 4 As shown, in some embodiments of the toy launcher 10, a guide slope 441 is provided at the connection position between the locking part 45 and the groove wall of the alignment groove 44.
[0058] Understandably, during the process of inserting the mounting block 42 into the slot 43 and sliding it into the alignment groove 44, the guide slope 441 contacts the end of the mounting block 42. The guide slope 441 guides the sliding of the mounting block 42, so that it automatically corrects the offset and accurately enters the locking range of the clamping part 45. At the same time, it can also prevent the mounting block 42 from getting stuck at the connection position between the clamping part 45 and the alignment groove 44.
[0059] like Figures 4 to 6 As shown, in some embodiments of the toy launcher 10, the mounting base 41 has two slots 43, each slot 43 has an alignment groove 44 on its wall, and each alignment groove 44 has a locking part 45 on its wall. The supply port 32 has two mounting blocks 42. The two mounting blocks 42 are detachably inserted into the two slots 43, corresponding one-to-one.
[0060] Understandably, during the assembly process of the supply mechanism 3, the two mounting blocks 42 will be inserted into the two slots 43 at the same time, and each mounting block 42 will be independently locked by its respective alignment slot 44 and locking part 45, forming a two-point symmetrical fixation.
[0061] It should be noted that the symmetrical layout of the double slots 43 and the double mounting blocks 42 disperses the force on the locking mechanism, avoiding the off-center load or torsion that may occur with single-point locking, and further improving the connection strength and assembly position accuracy between the supply mechanism 3 and the body 1.
[0062] like Figure 5 and Figure 6 As shown, in some embodiments of the toy launcher 10, the supply mechanism 3 includes a storage box 31, a storage cavity 311 is provided inside the storage box 31, and a portion of the side wall of the storage box 31 extends outward to form a supply port 32.
[0063] The mounting base 41 is also provided with a positioning groove 411, which is connected to each slot 43 and each alignment slot 44 respectively. The supply port 32 can be detachably inserted into the positioning groove 411.
[0064] Understandably, the positioning groove 411 provides precise insertion guidance for the supply port 32, ensuring that the docking position between the supply port 32 and the mounting base 41 is unique and fixed. After the supply port 32 is inserted into the positioning groove 411, the receiving cavity 311 is connected to the mounting base 41 through the channel of the supply port 32, realizing the stable delivery of the projectile. Of course, the channel on the mounting base 41 can be a pipe or other hollow structure that can be used for projectile delivery.
[0065] It should be noted that the limiting function of the positioning groove 411 further prevents the supply mechanism 3 from shifting during assembly, avoiding blockage or leakage of the supply path due to misalignment. Of course, the insertion and engagement of the supply port 32 with the positioning groove 411 also simplifies the assembly process and improves operational convenience.
[0066] It should also be noted that in some embodiments where the mounting block 42 is disposed on the supply port 32, the mounting block 42 may be configured to be integrally formed on the peripheral sidewall of the supply port 32, and the mounting block 42 has a certain amount of protrusion relative to the peripheral sidewall of the supply port 32. Furthermore, the mounting block 42 may be configured to be formed by protruding outward from the peripheral sidewall of the supply port 32.
[0067] like Figures 4 to 6 As shown, in some embodiments of the toy launcher 10, a connecting tube 412 is provided on the mounting base 41, one end of the connecting tube 412 is connected to the launching mechanism 2, and the other end of the connecting tube 412 is exposed in the positioning groove 411.
[0068] Understandably, when the supply port 32 is inserted into the positioning slot 411, the supply port 32 mates with the exposed end of the connecting cylinder 412, forming a continuous transmission channel from the receiving cavity 311 to the launching mechanism 2. The rigid structure of the connecting cylinder 412 avoids the risk of bending of flexible hose connectors, ensuring the reliability of the projectile delivery path.
[0069] It should be noted that the connecting cylinder 412 can be integrally molded onto the mounting base 41 to reduce the number of parts and reduce the complexity of production and assembly.
[0070] like Figure 3 and Figure 7 As shown, in some embodiments of the toy launcher 10, the launching mechanism 2 includes a motor 21, a gear transmission assembly 22, a piston 23, a pump barrel 24, and a nozzle 25;
[0071] The motor 21 is installed inside the main body 1. The motor 21 is driven and connected to the piston 23 through the gear transmission assembly 22. The pump cylinder 24 is installed inside the main body 1. The piston 23 is slidably installed inside the pump cylinder 24. The nozzle 25 is installed at the output port 241 of the pump cylinder 24. The input port 242 of the pump cylinder 24 is connected to the supply port 32 through the mounting base 41.
[0072] Understandably, the gear transmission assembly 22 can be configured to include multiple gears, with the motor driving one of the gears to rotate. This allows the torque output by the motor 21 to be transmitted to the piston 23 through the various gears, thereby driving the piston 23 to reciprocate within the pump barrel 24. In other words, the motor 21 converts rotational motion into linear motion of the piston 23 via the gear transmission assembly 22, enabling the projectile to be drawn in from the pump barrel 24 inlet 242, compressed, and then ejected at high speed from the nozzle 25.
[0073] like Figure 7 As shown, in some embodiments of the toy launcher 10, the gear transmission assembly 22 includes an intermittent gear 221, two racks 222 and a plurality of transmission gears 223;
[0074] Each transmission gear 223 meshes in sequence. The motor 21 drives one of the transmission gears 223. The other transmission gear 223 is coaxially connected to the intermittent gear 221. The two racks 222 are parallel to each other and are both connected to the piston 23. The intermittent gear 221 is located between the two racks 222.
[0075] The motor 21 drives the intermittent gear 221 to rotate through each transmission gear 223. The intermittent gear 221 intermittently meshes with two racks 222, thereby causing the piston 23 to reciprocate within the pump cylinder 24.
[0076] Understandably, the motor 21 drives the intermittent gear 221 through various transmission gears 223, and the teeth of the intermittent gear 221 alternately mesh with the two racks 222.
[0077] When the intermittent gear 221 meshes with the rack 222 on one side, it pushes the piston 23 to compress into the pump cylinder 24. After the rack 222 on that side disengages from the intermittent gear 221, the intermittent gear 221, which continues to rotate, will mesh with the rack 222 on the other side, thereby pushing the piston 23 to move in the opposite direction, realizing the reciprocating movement of the piston 23, and achieving the purpose of pumping out the projectile.
[0078] It should be noted that the number of transmission gears 223 can be configured to be one or more. The structure in which multiple transmission gears 223 mesh one by one to achieve torque transmission is a common gear transmission structure in the prior art, and this common transmission structure in the prior art will not be described in detail here.
[0079] It should also be noted that the two racks 222 are not symmetrical to each other. They are slightly misaligned in the direction of their length extension. This ensures that after the intermittent gear 221 disengages from one rack 222, it can engage with the other rack 222 in a timely manner, thus ensuring the continuity of the reciprocating movement of the piston 23. In other words, it prevents the piston 23 from pausing for too long after moving to its limit position in one direction.
[0080] like Figure 2 and Figure 3 As shown, in some embodiments of the toy launcher 10, the toy launcher 10 also includes a power supply mechanism 5, which includes a battery 51 and a cover 52. The battery 51 is disposed inside the body 1, and the cover 52 is detachably mounted on the body 1 to cover the battery 51. The battery 51 is electrically connected to the launching mechanism 2.
[0081] Understandably, the battery 51 is installed inside the main body 1 to provide power to the transmitting mechanism 2. The cover 52 is detachably mounted to the main body 1 by snaps or threads, covering the mounting area of the battery 51. The battery 51 can be configured as a rechargeable battery or a non-rechargeable battery. A slot for storing the battery 51 can be provided on the main body 1, and the cover 52 can cover the slot.
[0082] like Figure 2 and Figure 3 As shown, in some embodiments of the toy launcher 10, the toy launcher 10 also includes a control mechanism 6, which includes a control switch 61 and a trigger 62. The control switch 61 is disposed inside the body 1, and the battery 51 is electrically connected to the launching mechanism 2 through the control switch 61. The trigger 62 is movably disposed on the body 1 and movably abuts against the control switch 61.
[0083] Understandably, trigger 62 is movably mounted outside the main body 1 via a pivot or slide rail, with its end abutting against the trigger terminal of control switch 61. In actual use, when the user pulls trigger 62, the mechanical movement of trigger 62 forces control switch 61 to close, connecting the circuit to start motor 21. After releasing trigger 62, control switch 61 automatically resets and disconnects, and motor 21 stops working.
[0084] The following are the beneficial effects of implementing this utility model:
[0085] This utility model relates to a toy launcher. The toy launcher has a detachable plug-in structure for the mounting block and the slot. When the mounting block slides along the slot into the alignment groove, the locking part and the mounting block form a mechanical lock, so that the connection between the supply mechanism and the mounting base has a self-locking function, which effectively improves the stability of the connection between the two and avoids the problem of loosening and falling out due to vibration or external force during long-term use.
[0086] Because the supply mechanism and the main body are connected by a sliding insertion of an alignment groove and a mounting block, when the mounting block is inserted into the slot, the groove wall of the alignment groove can accurately guide and limit the mounting block, ensuring that the assembly position between the supply mechanism and the main body is unique and fixed, and eliminating the phenomenon of poor supply of projectiles caused by misalignment.
[0087] The present invention has been described in detail above with reference to the accompanying drawings. In the above embodiments, the descriptions of each embodiment have different focuses; for parts not described in detail in a certain embodiment, please refer to the relevant descriptions of other embodiments. Those skilled in the art should also understand that the actions and modules involved in the specification are not necessarily essential to the present invention. Furthermore, it is understood that the steps in the method of the present invention embodiments can be adjusted, combined, and deleted according to actual needs, and the modules in the device of the present invention embodiments can be combined, divided, and deleted according to actual needs.
[0088] The various embodiments of the present invention have been described above. These descriptions are exemplary and not exhaustive, nor are they limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen to best explain the principles, practical application, or improvement of the technology in the market, or to enable others skilled in the art to understand the embodiments disclosed herein.
Claims
1. A toy launcher, characterized in that, include: ontology; The launching mechanism is mounted on the main body; The supply mechanism is equipped with interconnected storage cavities and supply outlets; and The locking mechanism includes a mounting base, a mounting block, a slot, an alignment groove, and a locking part. The mounting base is disposed on the body and communicates with the launching mechanism. One of the mounting block and the slot is located on the mounting base, and the other of the mounting block and the slot is located on the supply port. The alignment groove is located on the groove wall of the slot, and the locking part is located on the groove wall of the alignment groove. The mounting block is detachably inserted into the slot, aligning the mounting block with the alignment groove, allowing the mounting block to slide into the alignment groove. This allows the locking part to detachably lock the mounting block, thereby locking the relative position of the supply mechanism and the mounting base.
2. The toy launcher of claim 1, wherein, The mounting block has a locking groove, and the locking part can be detachably locked into the locking groove.
3. The toy launcher of claim 2, wherein, A guide slope is provided at the connection position between the clamping part and the groove wall of the alignment groove.
4. A toy launcher according to any one of claims 1 to 3, wherein, The mounting base has two slots, each slot has an alignment groove on its wall, and each alignment groove has a locking part on its wall. Two mounting blocks are provided on the supply port; The two mounting blocks are detachably inserted into the two slots, one for each other.
5. The toy launcher of claim 4, wherein, The supply mechanism includes a storage box, the storage box is provided with the storage cavity, and a portion of the side wall of the storage box extends outward to form the supply port; The mounting base is also provided with a positioning groove, which is connected to each of the slots and each of the alignment slots respectively, and the supply port is detachably inserted into the positioning groove.
6. The toy launcher of claim 5, wherein, The mounting base is provided with a connecting cylinder, one end of which is connected to the launching mechanism, and the other end of which is exposed in the positioning groove.
7. The toy launcher of claim 1, wherein, The launching mechanism includes a motor, a gear transmission assembly, a piston, a pump cylinder, and a nozzle; The motor is disposed within the main body and is driven and connected to the piston via the gear transmission assembly. The pump cylinder is disposed within the main body, and the piston is slidably disposed within the pump cylinder. The nozzle is disposed at the output port of the pump cylinder, and the input port of the pump cylinder is connected to the supply port via the mounting base.
8. The toy launcher of claim 7, wherein, The gear transmission assembly includes an intermittent gear, two racks, and several transmission gears; The transmission gears mesh sequentially, the motor drive is connected to one of the transmission gears, the other transmission gear is coaxially connected to the intermittent gear, the two racks are parallel to each other and both racks are connected to the piston, and the intermittent gear is located between the two racks; The motor drives the intermittent gear to rotate through each of the transmission gears. The intermittent gear intermittently meshes with the two racks, thereby causing the piston to reciprocate within the pump barrel.
9. The toy launcher of claim 1 or 7, wherein, The toy launcher also includes a power supply mechanism, which includes a battery and a cover. The battery is disposed inside the main body, and the cover is detachably mounted on the main body to cover the battery. The battery is electrically connected to the launch mechanism.
10. The toy launcher of claim 9, wherein, The toy launcher further comprises a control mechanism, the control mechanism comprises a control switch and a trigger, the control switch is arranged in the body, the battery is electrically connected to the launching mechanism through the control switch, and the trigger is movably arranged on the body and movably abuts against the control switch.