Transmitter, transmitter combination, transmitting toy and toy
By designing a launcher that can connect with various accessories, and combining components such as acceleration gears and push plates, the toy achieves diverse ways of playing, solves the problem of insufficient playability of existing toys, and enhances children's entertainment experience and interactivity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ALPHA GROUP CO LTD
- Filing Date
- 2025-06-23
- Publication Date
- 2026-08-04
AI Technical Summary
Existing toys lack playability, diversity, and interactivity, making it difficult to meet children's diverse entertainment needs.
A launcher was designed that can be detachably connected to various accessories, including an acceleration mechanism and a launch mechanism. Through the cooperation of components such as acceleration gears and push plates, the object to be launched is rotated and launched, supporting a variety of combination forms and play methods.
It enriches the playability of toys, improves children's motor skills and coordination, promotes interaction and teamwork among children, and enhances entertainment fun.
Smart Images

Figure CN224585352U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of toy technology, and in particular to a launcher, a launcher assembly, a launching toy, and a toy. Background Technology
[0002] Some toys can launch objects, providing entertainment and play for children, improving their motor skills and coordination, promoting interaction and teamwork among children, and benefiting their growth and development. However, the playability of these toys currently on the market still needs improvement. Utility Model Content
[0003] This application aims to at least partially solve one of the technical problems in the related art. To this end, this application proposes a transmitter.
[0004] To achieve the above objectives, this application discloses a transmitter adapted for mounting an object to be launched thereon and adapted for detachable connection with at least one of a variety of accessories. The same position of the transmitter is adapted for detachable connection with at least two positions of the same accessory. The transmitter includes an acceleration mechanism and a launching mechanism. The acceleration mechanism is adapted to be driven by the accessory to rotate the object to be launched, and the launching mechanism is adapted to be driven by the accessory to launch the object to be launched.
[0005] In some embodiments of this application, the acceleration mechanism includes an acceleration gear adapted to mesh with the object to be launched, the acceleration mechanism being adapted to be driven by the accessory to rotate the acceleration gear, and the acceleration gear being adapted to drive the object to be launched to rotate when rotating.
[0006] In some embodiments of this application, the launching mechanism includes:
[0007] A push plate, wherein the object to be launched is adapted to move the push plate when installed in the launcher;
[0008] A locking element is adapted to lock the push plate when the push plate moves to a preset position, and is adapted to be driven by the accessory to unlock the push plate;
[0009] When the locking member unlocks the push plate, the push plate is adapted to reset under the action of elastic force to drive the object to be launched.
[0010] In some embodiments of this application, the launching mechanism includes a push rod adapted to be driven by the accessory to cause the locking member to unlock the push plate, the direction of movement of the push rod intersecting the direction of movement of the locking member.
[0011] In some embodiments of this application, the launching mechanism includes a rotating member adapted to be driven to rotate by the accessory to abut against the locking member and cause the locking member to unlock the push plate. The rotating member is also adapted to be driven to rotate in the opposite direction by the accessory to separate from the locking member.
[0012] In some embodiments of this application, the rotating member has a first contact portion and a second contact portion, the first contact portion being adapted to be driven by the accessory to cause the rotating member to reciprocate, so that the second contact portion is adapted to abut against and disengage from the locking member.
[0013] A second aspect of this application discloses a transmitter assembly comprising a handle and the aforementioned transmitter, wherein the handle is one of a variety of accessories.
[0014] In some embodiments of this application, the transmitter has a first connecting portion, and the handle has a second connecting portion and a third connecting portion, wherein the second connecting portion and the third connecting portion are adapted to be detachably connected to the first connecting portion, so that the transmitter can be combined to form at least two configurations.
[0015] In some embodiments of this application, the object to be launched is adapted to be launched forward from the launcher, the launcher is provided with the first connecting portion on the left side, the right side and the rear side respectively, the second connecting portion is adapted to be detachably connected to any one of the first connecting portion on the left side, the first connecting portion on the right side and the first connecting portion on the rear side, and the third connecting portion is adapted to be detachably connected to the first connecting portion on the rear side.
[0016] In some embodiments of this application, the handle includes a release mechanism adapted to act on the launching mechanism to cause the launching mechanism to launch the object to be launched.
[0017] A third aspect of this application discloses a launching toy, the launching toy comprising a pull member and the aforementioned launcher assembly, the pull member being one of a variety of the aforementioned accessories, the pull member being adapted to insert into and remove from the launcher, the pull member being adapted to act on the acceleration mechanism to cause the acceleration mechanism to drive the object to be launched to rotate, and being adapted to act on the launching mechanism to cause the launching mechanism to launch the object to be launched.
[0018] In some embodiments of this application, the pulling member includes an accelerating part and a launching part. The accelerating part is adapted to drive the accelerating mechanism when the pulling member is inserted into and / or pulled out of the launcher, so that the accelerating mechanism drives the object to be launched to rotate. The launching part is adapted to drive the launching mechanism when the pulling member is inserted into and / or pulled out of the launcher, so that the launching mechanism launches the object to be launched.
[0019] In some embodiments of this application, the pulling member is adapted to first drive the acceleration mechanism via the acceleration part and then drive the launching mechanism via the launching part when pulled out;
[0020] Alternatively, the pulling member is adapted to first drive the acceleration mechanism via the acceleration part and then drive the launching mechanism via the launching part during insertion.
[0021] In some embodiments of this application, the accelerating part is configured as a rack and pinion structure, and when the accelerating mechanism includes an accelerating gear, the accelerating part and the accelerating gear are connected in a transmission manner.
[0022] In some embodiments of this application, the transmitting part forms a groove structure;
[0023] When the launching mechanism includes a push plate, a locking member, and a rotating member, and the rotating member has a first contact portion and a second contact portion;
[0024] The first contact portion is adapted to sequentially engage and disengage from the launching portion when the pulling member moves in one of the directions of insertion and disengagement, so as to rotate the rotating member and cause the second contact portion and the locking member to abut against each other, thereby driving the locking member to unlock the push plate and launching the object to be launched;
[0025] The first contact portion is adapted to sequentially engage and disengage from the launching portion when the pulling member moves in the opposite direction of insertion and disengagement, so as to cause the rotating member to rotate in the opposite direction and to separate the second contact portion from the locking member.
[0026] In some embodiments of this application, when the transmitter is provided with a first connecting part on the left side, right side and rear side respectively and the handle is provided with a second connecting part and a third connecting part, the second connecting part is adapted to connect to the first connecting part on one of the left side and right side of the transmitter.
[0027] The fourth aspect of this application discloses a launching toy, which includes a first accessory and the launcher assembly described above. The first accessory is one of a variety of accessories. The first accessory, the handle, and the launcher are connected to form a sword shape.
[0028] The first accessory is adapted to act on the acceleration mechanism to cause the acceleration mechanism to drive the object to be launched to rotate, and the handle is adapted to act on the launching mechanism to cause the launching mechanism to drive the object to be launched to launch.
[0029] In some embodiments of this application, the first accessory includes a first slider and a first clutch gear, wherein the first slider is reciprocating.
[0030] When the acceleration mechanism includes an acceleration gear;
[0031] When the first slider moves in one of the reciprocating directions, it drives the first clutch gear to rotate, so that the first clutch gear rotates to the first engagement position and is connected to the acceleration gear.
[0032] When the first slider moves in the other direction of the reciprocating motion, it drives the first clutch gear to rotate in the opposite direction, so that the first clutch gear rotates to the first disengagement position and separates from the acceleration gear.
[0033] In some embodiments of this application, the first accessory includes a first arc-shaped groove, the first clutch gear is rotatably disposed in the first arc-shaped groove, one end of the first arc-shaped groove constitutes the first engagement position, and the other end constitutes the first disengagement position.
[0034] In some embodiments of this application, the first accessory includes a first rack and a first input gear, the first slider is connected to the first rack and can drive the first rack to reciprocate, the first rack meshes with the first input gear, and the first input gear is connected to the first clutch gear in a transmission connection.
[0035] In some embodiments of this application, the first accessory includes a first body portion, the first accessory is adapted to be connected to the transmitter via the first body portion, the first slider is sleeved on the first body portion, and the first rack, the first input gear and the first clutch gear are disposed on the first body portion.
[0036] In some embodiments of this application, the first accessory includes a clutch buckle, the first rack has a first connecting end, the clutch buckle is disposed on the first slider, and the clutch buckle is adapted to engage with the first connecting end when the first slider is sleeved on the first body part, so as to drive the first rack to reciprocate.
[0037] In some embodiments of this application, the first accessory includes a first limiting mechanism disposed on the first slider. The first limiting mechanism is adapted to be stopped by the first body portion when the first slider moves to a preset position in a first direction to prevent the first slider from disengaging from the first body portion.
[0038] In some embodiments of this application, the first body portion is provided with a slot, and the first limiting mechanism includes a movable locking tongue, which is adapted to be stopped by engaging the slot when the first slider moves to a preset position along the first direction, and is adapted to disengage from the slot when the first slider moves along a second direction opposite to the first direction.
[0039] In some embodiments of this application, when the transmitter is provided with a first connecting part on the left side, right side and rear side respectively and the handle is provided with a second connecting part and a third connecting part, the second connecting part is adapted to connect to the first connecting part on the rear side of the transmitter.
[0040] The fifth aspect of this application discloses a launching toy, which includes a second accessory and the launcher assembly described above. The second accessory is one of a variety of accessories. The second accessory, the handle, and the launcher are connected to form a gun.
[0041] The second accessory is adapted to act on the acceleration mechanism to cause the acceleration mechanism to drive the object to be launched to rotate, and the handle is adapted to act on the launching mechanism to cause the launching mechanism to drive the object to be launched to launch.
[0042] In some embodiments of this application, the second accessory includes a second slider and a second clutch gear, the second slider being reciprocating;
[0043] When the acceleration mechanism includes an acceleration gear;
[0044] When the second slider moves in one of the reciprocating directions, it drives the second clutch gear to rotate, so that the second clutch gear rotates to the second engagement position and is connected to the acceleration gear transmission.
[0045] When the second slider moves in the other direction of the reciprocating motion, it drives the second clutch gear to rotate in the opposite direction, so that the second clutch gear rotates to the second disengaged position and separates from the acceleration gear.
[0046] In some embodiments of this application, the second accessory includes a second arc-shaped groove, the second clutch gear is rotatably disposed in the second arc-shaped groove, one end of the second arc-shaped groove constitutes the second engagement position, and the other end constitutes the second disengagement position.
[0047] In some embodiments of this application, the second accessory includes a second rack and a second input gear, the second slider is connected to the second rack and can drive the second rack to reciprocate, the second rack meshes with the second input gear, and the second input gear is connected to the second clutch gear in a transmission connection.
[0048] In some embodiments of this application, the second accessory includes:
[0049] A second body portion, the second accessory adapted to be connected to the transmitter via the second body portion, the second slider, the second rack, the second input gear, and the second clutch gear disposed on the second body portion; and
[0050] A second limiting mechanism is provided on the second body part, and the second limiting mechanism is adapted to stop the second rack when the second slider moves to a preset position in a third direction.
[0051] In some embodiments of this application, the second accessory includes an extension portion adapted to connect with the second body portion. When the extension portion is connected to the second body portion, it drives the second limiting mechanism to avoid the second rack, so that the second rack passes over the second limiting mechanism when the second slider moves along the third direction.
[0052] In some embodiments of this application, the second limiting mechanism includes a baffle, and the extended portion includes a push rod, which is adapted to drive the baffle to avoid the second rack when the extended portion and the second body portion are connected.
[0053] In some embodiments of this application, the extended portion includes a power supply module, the second accessory includes a power consumption module disposed on the second body portion, the power supply module and the power consumption module are adapted to be connected to form a circuit loop when the extended portion and the second body portion are connected, and the power consumption module is adapted to emit light and / or sound when energized.
[0054] In some embodiments of this application, one of the power supply module and the power consumption module is provided with a pin and the other is provided with a socket, and the pin is adapted to be inserted into the socket.
[0055] In some embodiments of this application, when the transmitter is provided with a first connecting part on the left side, right side and rear side respectively and the handle is provided with a second connecting part and a third connecting part, the third connecting part is adapted to connect to the first connecting part on the rear side of the transmitter.
[0056] The sixth aspect of this application discloses a toy comprising a launch object and the aforementioned launching toy.
[0057] Other advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description or may be learned by practice of this application. Attached Figure Description
[0058] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other designs can be obtained based on the structures shown in these drawings without creative effort.
[0059] Figure 1 This is a schematic diagram of the object to be launched being mounted on the transmitter in some embodiments;
[0060] Figure 2 This is a schematic diagram of the transmitter in some embodiments;
[0061] Figure 3 This is another schematic diagram of the transmitter in some embodiments;
[0062] Figure 4 This is a third schematic diagram of the transmitter in some embodiments;
[0063] Figure 5 This is a fourth schematic diagram of the transmitter in some embodiments;
[0064] Figure 6 This is a schematic diagram showing the cooperation between the object to be launched, the acceleration mechanism, and the launching mechanism in some embodiments;
[0065] Figure 7 This is a schematic diagram showing the cooperation between the object to be launched and the acceleration mechanism in some embodiments;
[0066] Figure 8 This is a schematic diagram showing the cooperation between the object to be launched and the launching mechanism in some embodiments;
[0067] Figure 9 for Figure 8 The diagram shown is an exploded view of the structure.
[0068] Figure 10 Schematic diagram of the rotating component in some embodiments;
[0069] Figure 11 This is a schematic diagram showing the connection between the second connecting part and the first connecting part on the left side in some embodiments;
[0070] Figure 12 This is a schematic diagram showing the connection between the second connecting part and the first connecting part on the right side in some embodiments;
[0071] Figure 13 This is a schematic diagram showing the connection between the second connecting part and the first connecting part on the rear side in some embodiments;
[0072] Figure 14 This is a schematic diagram showing the connection between the third connecting part and the rear first connecting part in some embodiments;
[0073] Figure 15 This is a schematic diagram of the handle in some embodiments;
[0074] Figure 16 This is another schematic diagram of the handle in some embodiments;
[0075] Figure 17 This is a schematic diagram of the release mechanism in some embodiments;
[0076] Figure 18 Exploded view of the release mechanism in some embodiments;
[0077] Figure 19 This is another schematic diagram of the release mechanism in some embodiments;
[0078] Figure 20 Another exploded view of the release mechanism in some embodiments;
[0079] Figure 21 This is a schematic diagram of the assembly of the handle, launcher, and pull member in some embodiments;
[0080] Figure 22 This is a schematic diagram showing the cooperation between the pulling member and the acceleration mechanism in some embodiments;
[0081] Figure 23 This is a schematic diagram showing the cooperation between the pulling member and the launching mechanism in some embodiments;
[0082] Figure 24 These are schematic diagrams of the pull element in some embodiments;
[0083] Figure 25 This is a schematic diagram of the assembly of the handle, transmitter, and first accessory in some embodiments;
[0084] Figure 26 for Figure 25 The diagram shown is an exploded view of the structure.
[0085] Figure 27 This is a schematic diagram of the first component in some embodiments;
[0086] Figure 28 This is an exploded view of the first component in some embodiments;
[0087] Figure 29 This is a schematic diagram of the transmission connection between the first rack and the acceleration gear in some embodiments (the first clutch gear is in the first disengaged position);
[0088] Figure 30 This is a schematic diagram of the transmission connection between the first rack and the acceleration gear in some embodiments (the first clutch gear is in the first meshing position);
[0089] Figure 31 This is a schematic diagram of the first body portion in some embodiments (showing the bottom shell of the first body portion);
[0090] Figure 32 This is a schematic diagram of the first slider in some embodiments (showing the bottom shell of the first slider);
[0091] Figure 33 This is a schematic diagram showing the cooperation between the clutch latch, the first limiting mechanism, and the first body part in some embodiments;
[0092] Figure 34 This is a schematic diagram of the assembly of the handle, transmitter, and second accessory in some embodiments;
[0093] Figure 35 for Figure 34 The diagram shown is an exploded view of the structure.
[0094] Figure 36 This is a schematic diagram of the second component in some embodiments;
[0095] Figure 37 This is an exploded view of the second component in some embodiments;
[0096] Figure 38 This is a schematic diagram of the engagement between the second rack and the acceleration gear in some embodiments (the extended part has not yet been installed into the main body);
[0097] Figure 39 A schematic diagram of the engagement between the second rack and the acceleration gear in some embodiments (showing the arcuate groove);
[0098] Figure 40 This is a schematic diagram showing the second clutch gear in the second disengaged position in some embodiments;
[0099] Figure 41 This is a schematic diagram showing the second clutch gear in the second engagement position in some embodiments;
[0100] Figure 42 This is a schematic diagram of the extension portion being installed onto the second body portion in some embodiments;
[0101] Figure 43 These are schematic diagrams of partial structures of the extended portion in some embodiments;
[0102] Figure 44 This is a schematic diagram of the second body part in some embodiments.
[0103] Explanation of icon numbers:
[0104] Launcher 1000, Acceleration Mechanism 1100, Acceleration Gear 1110, First Transmission Gear 1120, Launch Mechanism 1200, Push Plate 1210, Locking Part 1220, Push Rod 1230, Push Rod Inclined Surface 1231, Rotating Part 1240, First Contact Part 1241, Second Contact Part 1242, First Connecting Part 1300, Handle 2000, Release Mechanism 2100, Button 2110, Trigger 2120, Transmission Part 2130, Lever 2140, Second Connecting Part 2200, Third Connecting Part 2300, Pulling Part 3000, Acceleration Part 3100, Launching Part 3200, First Accessory 4000, First Slider 4100, First Body Part 4200, Slot 4210, Guide Inclined Surface 4220, First Rack 4300, First Connecting End 4310, First Input gear 4400, first clutch gear 4500, first arc groove 4600, first engagement position 4610, first disengagement position 4620, clutch latch 4700, abutment slope 4710, first limiting mechanism 4800, locking tongue 4810, fixing plate 4820, second accessory 5000, second slider 5100, second body part 5200, second rack 5300, second input gear 5400, second clutch gear 5500, second arc groove 5600, second engagement position 5610, second disengagement position 5620, second limiting mechanism 5700, baffle 5710, power module 5800, socket 5810, extension part 5900, push rod 5910, push rod slope 5911, power supply module 5920, pin 5921, object to be launched 6000.
[0105] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0106] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0107] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0108] In this application, unless otherwise expressly specified and limited, the terms "connection," "fixed," etc., should be interpreted broadly. For example, "fixed" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0109] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. If the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed in this application.
[0110] The first aspect of this application discloses a transmitter 1000, which, in some embodiments, is combined with Figures 1 to 16 As shown, the transmitter 1000 is adapted to mount the object to be launched 6000 thereon and is adapted to be detachably connected to at least one of a variety of accessories. The same position of the transmitter 1000 is adapted to be detachably connected to at least two positions of the same accessory. The transmitter 1000 includes an acceleration mechanism 1100 and a launching mechanism 1200. The acceleration mechanism 1100 is adapted to be driven by the accessory to rotate the object to be launched 6000, and the launching mechanism 1200 is adapted to be driven by the accessory to launch the object to be launched 6000.
[0111] The transmitter 1000 has a position for mounting the object to be launched 6000. This position can have various structural forms, as long as it allows for the mounting of the object to be launched 6000. The transmitter 1000 is equipped with an acceleration mechanism 1100 and a launching mechanism 1200. The acceleration mechanism 1100 is used to drive the object to be launched 6000 to rotate. "Driven" means causing relevant parts to move accordingly; this can be achieved directly or indirectly. Through the action of the acceleration mechanism 1100, the object to be launched 6000 rotates. The launching mechanism 1200 is used to drive the object to be launched 6000 to launch. Through the action of the launching mechanism 1200, the launching mechanism 1200 can generate a launching force on the object to be launched 6000, causing it to launch.
[0112] The rotation and launch of the launcher 6000 are achieved by the acceleration mechanism 1100 and the launch mechanism 1200 acting on the launcher 6000 respectively. The acceleration mechanism 1100 and the launch mechanism 1200 do not interfere with each other. The launcher 6000 can be rotated by the acceleration mechanism 1100 alone, or it can be launched by the launch mechanism 1200 alone. Alternatively, the launcher 6000 can be rotated by the acceleration mechanism 1100 first, and then launched by the launch mechanism 1200 in a rotating state. This expands the playability of the launcher 1000 and meets more play needs.
[0113] For example, the object to be launched 6000 is a gyroscope, which has a rotating part and a fixed part. The rotating part can rotate relative to the fixed part. The gyroscope is mounted to the transmitter 1000 through the fixed part, and the fixed part cooperates with the launching mechanism 1200. The rotating part cooperates with the acceleration mechanism 1100. In this way, the acceleration mechanism 1100 can drive the rotating part of the gyroscope to rotate, and the launching mechanism 1200 acts on the fixed part to drive the gyroscope to be launched in a rotating state.
[0114] The acceleration mechanism 1100's ability to rotate the launch object 6000 requires the action of accessories. These accessories cause a corresponding change in the acceleration mechanism 1100, generating a rotational force on the launch object 6000, thus causing it to rotate. Similarly, the launch mechanism 1200's ability to launch the launch object 6000 also requires the action of accessories. These accessories cause a corresponding change in the launch mechanism 1200, generating a launching force on the launch object 6000, thus launching it.
[0115] Therefore, in this embodiment, the transmitter 1000 is suitable for detachable connection with at least one of a variety of accessories. "Various" means two or more. The detachable connection between the transmitter 1000 and at least one of the accessories includes, but is not limited to, the following: connection with only one accessory to achieve rotation of the object to be launched 6000; connection with only one accessory to achieve launch of the object to be launched 6000; connection with only one accessory to achieve both rotation and launch of the object to be launched 6000; and connection with two accessories, where one accessory achieves rotation of the object to be launched 6000 and the other accessory achieves launch of the object to be launched 6000. With this configuration, users can assemble the device according to their actual needs, enhancing the enjoyment of play. The connection between the transmitter 1000 and different accessories can also form different configurations, satisfying more play scenarios.
[0116] Furthermore, in this embodiment, the same position of the transmitter 1000 is suitable for detachable connection with at least two positions of the same accessory. With this arrangement, the connection position between the accessory and the transmitter 1000 can be switched without changing the accessory, allowing the transmitter 1000 and the accessory to form more combination forms, further enriching the playability of the transmitter 1000.
[0117] In some embodiments, combined with Figure 2 , Figure 3 , Figure 6 and Figure 7 As shown, the acceleration mechanism 1100 includes an acceleration gear 1110, which is adapted to mesh with the object to be launched 6000. The acceleration mechanism 1100 is adapted to be driven by the accessory to make the acceleration gear 1110 rotate, and the acceleration gear 1110 is adapted to drive the object to be launched 6000 to rotate when rotating.
[0118] When the accessory drives (acts on) the acceleration mechanism 1100, it transforms into the rotation of the acceleration gear 1110. Since the acceleration gear 1110 meshes with the object to be launched 6000, the rotation of the acceleration gear 1110 can drive the object to be launched 6000 to rotate. In other words, the object to be launched 6000 has a toothed structure. When the object to be launched 6000 is installed on the launcher 1000, the toothed structure of the object to be launched 6000 meshes with the acceleration gear 1110. When the acceleration gear 1110 rotates, it can drive the object to be launched 6000 to rotate. Through this cooperation, when the object to be launched 6000 is launched, it is also easy to quickly separate the object to be launched 6000 and the acceleration gear 1110.
[0119] Continuing with the example of the launch object 6000 as a gyroscope, the gyroscope has a rotating part and a fixed part. The rotating part can rotate relative to the fixed part and has a gear structure. The gyroscope is installed on the launcher 1000 through the fixed part. The rotating part meshes with the acceleration gear 1110 through the gear structure. Thus, when the acceleration gear 1110 rotates, it can drive the rotating part of the gyroscope to rotate.
[0120] In some embodiments, combined with Figure 2 , Figure 6 , Figure 8 and Figure 9 As shown, the launching mechanism 1200 includes a push plate 1210 and a locking member 1220. The object to be launched 6000 is adapted to drive the push plate 1210 to move when it is installed on the launcher 1000. The locking member 1220 is adapted to lock the push plate 1210 when it moves to a preset position, and is adapted to be driven by an accessory to unlock the push plate 1210. When the locking member 1220 unlocks the push plate 1210, the push plate 1210 is adapted to reset under the action of elastic force to drive the object to be launched 6000 to launch.
[0121] The object to be launched 6000 is movably mounted on the launcher 1000. For example, the object to be launched 6000 can be mounted on the launcher 1000 by moving from front to back. When the object to be launched 6000 is mounted on the launcher 1000, the object to be launched 6000 and the push plate 1210 abut together. The object to be launched 6000 drives the push plate 1210 to move backward. During the backward movement of the push plate 1210, the elastic element that cooperates with the push plate 1210 undergoes elastic deformation and accumulates elastic potential energy. When the push plate 1210 moves to a preset position (i.e., the position where it can be locked by the locking element 1220), it will be locked by the locking element 1220. Due to the locking by the locking element 1220, the push plate 1210 will not reset and will drive the object to be launched 6000 out. It can be understood that the force generated by the elastic element on the push plate 1210 can be direct or indirect. The same applies to the force applied by other elastic elements in this article, which will not be repeated here.
[0122] The user-controllable accessories act on the launching mechanism 1200, which drives the locking member 1220, thereby unlocking the push plate 1210. When the push plate 1210 is unlocked, the elastic potential energy of the elastic member is released, that is, the elastic member generates elastic force on the push plate 1210, thereby driving the push plate 1210 to reset (move forward). When the push plate 1210 is reset, it supports the object to be launched 6000, thereby generating force on the object to be launched 6000, causing the object to be launched 6000 to be launched.
[0123] In some embodiments, combined with Figure 8 and Figure 9 As shown, the launching mechanism 1200 includes a push rod 1230, which is adapted to be driven by an accessory to drive the locking member 1220 to unlock the push plate 1210. The direction of movement of the push rod 1230 intersects the direction of movement of the locking member 1220.
[0124] The accessory does not act directly on the locking element 1220, but rather on the push rod 1230. The push rod 1230 acts on the locking element 1220, and the direction of movement of the push rod 1230 intersects with the direction of movement of the locking element 1220, which helps to achieve a more reasonable structural arrangement. For example, the push rod 1230 is provided with a push rod inclined surface 1231. When the accessory drives the push rod 1230 to move, the push rod 1230 abuts against the corresponding part of the locking element 1220 through the push rod inclined surface 1231. In this way, a component force that causes the locking element 1220 to move can be generated through the push rod inclined surface 1231. At this time, the direction of movement of the push rod 1230 and the direction of movement of the locking element 1220 can intersect, for example, be perpendicular. A more detailed description is provided below.
[0125] In some embodiments, combined with Figures 8 to 10As shown, the launching mechanism 1200 includes a rotating member 1240, which is adapted to be rotated by an accessory to abut against the locking member 1220 and thereby unlock the locking member 1220 from the push plate 1210. The rotating member 1240 is also adapted to be rotated in the opposite direction by the accessory to separate from the locking member 1220. The accessory does not act directly on the locking member 1220, but rather on the rotating member 1240, thereby causing the locking member 1220 to unlock the push plate 1210 through rotation.
[0126] For example, the rotating member 1240 has a first contact portion 1241 and a second contact portion 1242. The first contact portion 1241 is adapted to be driven by the accessory to make the rotating member 1240 reciprocate, so that the second contact portion 1242 is adapted to abut against and disengage from the locking member 1220. In this embodiment, the reciprocating rotation is manifested as reciprocating oscillation. One direction of the reciprocating rotation of the rotating member 1240 can drive the second contact portion 1242 to abut against the locking member 1220, thereby driving the locking member 1220 to move and unlock the push plate 1210. The other direction of the reciprocating rotation can drive the second contact portion 1242 to disengage from the locking member 1220 without driving the locking member 1220 to move. A more detailed description is provided below.
[0127] Since the transmitter 1000 can be detachably connected to at least one of a variety of accessories, a push rod 1230 and a rotating component 1240 are provided. The push rod 1230 and the rotating component 1240 can correspond to different accessories to meet the launch requirements of the object 6000 under different combination configurations.
[0128] A second aspect of this application discloses a transmitter assembly, combined with Figures 1 to 16 As shown, the launcher assembly includes a handle 2000 and the aforementioned launcher 1000, with the handle 2000 being one of the various accessories described. The handle 2000 and the launcher are combined, and when the user is playing, the user can hold the handle 2000, which provides a point of leverage.
[0129] In some embodiments, combined with Figures 11 to 16 As shown, the transmitter 1000 has a first connecting part 1300, and the handle 2000 has a second connecting part 2200 and a third connecting part 2300. The second connecting part 2200 and the third connecting part 2300 are adapted to be detachably connected to the first connecting part 1300, so that the transmitter can be combined to form at least two forms.
[0130] The handle 2000 can be connected to the first connecting part 1300 via the second connecting part 2200, thus combining the transmitter 1000 and the handle 2000 into one configuration. Alternatively, the handle 2000 can be connected to the first connecting part 1300 via the third connecting part 2300, thus combining the transmitter 1000 and the handle 2000 into another configuration. The second connecting part 2200 and the third connecting part 2300 are structures for connecting to the first connecting part 1300 and are located at different positions on the handle 2000. This allows the same position on the transmitter 1000 to be detachably connected to at least two positions of the same accessory, enabling at least two configurations to be achieved using the same handle 2000.
[0131] In some embodiments, combined with Figures 11 to 16 As shown, the object to be launched 6000 is adapted to be launched forward from the launcher 1000. The launcher 1000 is provided with a first connecting part 1300 on the left side, the right side and the rear side respectively. A second connecting part 2200 is adapted to be detachably connected to any one of the first connecting part 1300 on the left side, the first connecting part 1300 on the right side and the first connecting part 1300 on the rear side. A third connecting part 2300 is adapted to be detachably connected to the first connecting part 1300 on the rear side.
[0132] For example, the second connecting part 2200 is connected to the first connecting part 1300 on the left side, so that the launcher 1000 and the handle 2000 are combined to form a basic shape, at which time the handle 2000 and the launcher 1000 are set approximately perpendicularly; the second connecting part 2200 is connected to the first connecting part 1300 on the right side, so that the launcher 1000 and the handle 2000 are combined to form a basic shape, at which time the handle 2000 and the launcher 1000 are set approximately perpendicularly; the second connecting part 2200 is connected to the first connecting part 1300 on the rear side, so that the launcher 1000 and the handle 2000 are combined to form a sword shape (also called a knife shape), at which time the handle 2000 and the launcher 1000 are arranged approximately in a straight line; the third connecting part 2300 is connected to the first connecting part 1300 on the rear side, so that the launcher 1000 and the handle 2000 are combined to form a gun shape, at which time there is an angle between the handle 2000 and the launcher 1000. This configuration allows the handle 2000 and the transmitter to be combined in various configurations.
[0133] In some embodiments, combined with Figures 11 to 16 As shown, the handle 2000 includes a release mechanism 2100, which is adapted to act on the launching mechanism 1200 to cause the launching mechanism 1200 to launch the object to be launched 6000.
[0134] The launching mechanism 1200 can be triggered by the release mechanism 2100 of the handle 2000. The user operates the release mechanism 2100 so that the release mechanism 2100 acts on the launching mechanism 1200, so that the launching mechanism 1200 generates a launching force on the projectile.
[0135] The release mechanism 2100 only needs to drive the launching mechanism 1200. It can be structured in various ways. For example, the release mechanism 2100 includes a lever 2140, a transmission component 2130, a button 2110, and a trigger 2120. By pulling the trigger 2120 or pressing the button 2110, the trigger 2120 or the button 2110 drives the transmission component 2130 to rotate, thereby causing the transmission component 2130 to drive the lever 2140 to extend. The extended lever 2140 can then push the push rod 1230. Alternatively, the release mechanism 2100 can include a reciprocating lever 2140, which the user can directly drive to push the push rod 1230. Of course, the release mechanism 2100 can also adopt other structural types.
[0136] Taking the example of the handle 2000 being connected to the rear first connecting part 1300 via the second connecting part 2200 or the third connecting part 2300, the user pulls the trigger 2120 or presses the button 2110, thereby causing the transmission member 2130 to rotate. The transmission member 2130 drives the lever 2140 to extend forward and support the push rod 1230. The push rod 1230 moves forward and abuts against the locking member 1220 through the push rod inclined surface 1231. The locking member 1220 moves downward and unlocks the push plate 1210. The push plate 1210 resets and supports the object to be launched 6000, thus launching the object to be launched forward.
[0137] A third aspect of this application discloses a launching toy, which, in some embodiments, combines... Figures 1 to 21 As shown, the launching toy includes a pull member 3000 and the aforementioned launcher assembly. The pull member 3000 is one of a variety of accessories. The pull member 3000 is adapted to be inserted into and removed from the launcher 1000. The pull member 3000 is adapted to act on the acceleration mechanism 1100 to make the acceleration mechanism 1100 drive the object to be launched 6000 to rotate, and is also adapted to act on the launching mechanism 1200 to make the launching mechanism 1200 launch the object to be launched 6000.
[0138] When the transmitter 1000 is engaged with the pull member 3000, the handle 2000 needs to be connected to the first connection member 1300 on the left or the second connection member 2200 on the right via the second connection member 2200. The user holds the handle 2000 with one hand and the pull member 3000 with the other hand, thereby controlling the pull member 3000 to insert and pull it out of the transmitter 1000. The insertion and pulling action of the pull member 3000 acts on the acceleration mechanism 1100 and the launching mechanism 1200, thereby causing the object to be launched 6000 to rotate and launch.
[0139] Specifically, the pulling member 3000 includes an acceleration part 3100 and a launching part 3200. The acceleration part 3100 is adapted to drive the acceleration mechanism 1100 when the pulling member 3000 is inserted into and / or pulled out of the launcher 1000, so that the acceleration mechanism 1100 drives the object to be launched 6000 to rotate. The launching part 3200 is adapted to drive the launching mechanism 1200 when the pulling member 3000 is inserted into and / or pulled out of the launcher 1000, so that the launching mechanism 1200 launches the object to be launched 6000.
[0140] The rotation of the object to be launched 6000 can be achieved through the insertion process of the pulling member 3000. That is, during the process of the pulling member 3000 being inserted into the transmitter 1000, the acceleration member 3100 drives the acceleration mechanism 1100, thereby causing the acceleration mechanism 1100 to drive the object to be launched 6000 to rotate. The rotation of the object to be launched 6000 can also be achieved through the removal process of the pulling member 3000. That is, during the process of the pulling member 3000 being removed from the transmitter 1000, the acceleration member 3100 drives the acceleration mechanism 1100, thereby causing the acceleration mechanism 1100 to drive the object to be launched 6000 to rotate.
[0141] The launch of the object to be launched 6000 can be achieved through the insertion process of the pull member 3000. That is, during the process of the pull member 3000 being inserted into the launcher 1000, the launch part 3200 drives the launch mechanism 1200, thereby causing the launch mechanism 1200 to launch the object to be launched 6000. The launch of the object to be launched 6000 can also be achieved through the removal process of the pull member 3000. That is, during the process of the pull member 3000 being removed from the launcher 1000, the launch part 3200 drives the launch mechanism 1200, thereby causing the launch mechanism 1200 to launch the object to be launched 6000.
[0142] In some embodiments, the pulling member 3000 is adapted to first drive the acceleration mechanism 1100 via the acceleration part 3100 and then drive the launching mechanism 1200 via the launching part 3200 when pulled out.
[0143] When the pulling member 3000 is pulled away from the transmitter 1000 (i.e., the pulling member 3000 is pulled away from the transmitter 1000 from the state of being inserted into the transmitter 1000), the pulling member 3000 first drives the acceleration mechanism 1100 through the acceleration unit 3100, and then drives the launching mechanism 1200 through the launching unit 3200. The acceleration unit 3100 drives the acceleration mechanism 1100, thereby causing the acceleration mechanism 1100 to drive the object to be launched 6000 to rotate. The launching unit 3200 drives the launching mechanism 1200, thereby causing the launching mechanism 1200 to drive the object to be launched 6000 to launch. Since the pulling member 3000 first drives the acceleration mechanism 1100 and then the launching mechanism 1200 when it is pulled out, the object to be launched 6000 will rotate on the launcher 1000 under the action of the acceleration unit 3100 until the pulling member 3000 is pulled out to the preset position. At this point, the launching unit 3200 drives the launching mechanism 1200, which in turn launches the object to be launched 6000. Similarly, the pulling member 3000 can also be adapted to drive the acceleration mechanism 1100 first and then the launching mechanism 1200 when it is inserted, which will not be explained again.
[0144] In some embodiments, combined with Figures 22 to 24 As shown, the acceleration unit 3100 has a rack and pinion structure. When the acceleration mechanism 1100 includes an acceleration gear 1110, the acceleration unit 3100 and the acceleration gear 1110 are connected in a transmission manner.
[0145] For example, the acceleration mechanism 1100 also includes a first transmission gear 1120. The acceleration part 3100 is adapted to mesh with the first transmission gear 1120 to drive the first transmission gear 1120 to rotate. The first transmission gear 1120 meshes with the acceleration gear 1110 to drive the acceleration gear 1110 to rotate. The acceleration part 3100 has a rack and pinion structure. The movement of the pulling member 3000 is a linear motion. Through the cooperation of the acceleration part 3100 and the first transmission gear 1120, it can be converted into the rotation of the first transmission gear 1120. With this arrangement, the pulling member 3000 can move more quickly, thus making the rotation speed of the first transmission gear 1120 faster, which in turn makes the rotation speed of the object to be launched 6000 faster. The first transmission gear 1120 meshes with the acceleration gear 1110, so the acceleration part 3100 drives the first transmission gear 1120 to rotate, the first transmission gear 1120 drives the acceleration gear 1110 to rotate, and the acceleration gear 1110 drives the object to be launched 6000 to rotate.
[0146] In some embodiments, combined with Figures 22 to 24 As shown, the launching part 3200 forms a groove structure when the launching mechanism 1200 includes a push plate 1210, a locking member 1220 and a rotating member 1240, and the rotating member 1240 has a first contact part 1241 and a second contact part 1242;
[0147] The first contact portion 1241 is adapted to sequentially engage and disengage the launching portion 3200 when the pulling member 3000 moves in one of the directions of insertion and disengagement, so as to rotate the rotating member 1240 and cause the second contact portion 1242 and the locking member 1220 to abut and drive the locking member 1220 to unlock the push plate 1210, thereby launching the object to be launched 6000.
[0148] The first contact portion 1241 is adapted to sequentially engage and disengage from the launching portion 3200 when the pulling member 3000 moves in the opposite direction of insertion and disengagement, so as to cause the rotating member 1240 to rotate in the opposite direction and to separate the second contact portion 1242 from the locking member 1220.
[0149] The following description uses the example of the launching unit 3200 driving the rotating member 1240 to rotate when the pulling member 3000 is pulled out, so that the rotating member 1240 drives the locking member 1220 to unlock the push plate 1210, and driving the rotating member 1240 to rotate in the opposite direction when the pulling member 3000 is inserted, so that the rotating member 1240 and the locking member 1220 are separated.
[0150] For example, when the pull member 3000 is inserted, the first contact part 1241 is engaged with the launching part 3200. As the pull member 3000 continues to be inserted, the first contact part 1241 is disengaged from the launching part 3200. During the disengagement of the first contact part 1241 from the launching part 3200, the rotating member 1240 rotates (clockwise). The rotation of the rotating member 1240 causes the second contact part 1242 to rotate as well, so that the second contact part 1242 is separated from the locking member 1220. Since the second contact part 1242 is separated from the locking member 1220, the second contact part 1242 will not drive the locking member 1220 to unlock the push plate 1210, thus keeping the locking member 1220 locked to the push plate 1210. When the puller 3000 is pulled away, the first contact part 1241 is engaged with the launcher 3200. As the puller 3000 continues to be pulled away, the first contact part 1241 is disengaged from the launcher 3200. During the process of the first contact part 1241 disengaging from the launcher 3200, the rotating part 1240 rotates in the opposite direction (counterclockwise). The counterclockwise rotation of the rotating part 1240 causes the second contact part 1242 to rotate as well, so that the second contact part 1242 drives the locking part 1220 to move downward and unlock the push plate 1210.
[0151] The pull member 3000 is adapted to engage the first contact portion 1241 with the launching portion 3200 under the action of elastic force. For example, before the pull member 3000 is inserted into the launching unit 1000, the first contact portion 1241 protrudes downwards, and the locking member 1220 is located on the counterclockwise rotation path of the second contact portion 1242. When the rotating member 1240 rotates clockwise, the second contact portion 1242 disengages from the locking member 1220. When the rotating member 1240 rotates counterclockwise, the second contact portion 1242 drives the locking member 1220 to unlock the push plate 1210.
[0152] When the pull member 3000 is inserted into the transmitter 1000, the pull member 3000 pushes the first contact part 1241, causing the rotating member 1240 to rotate clockwise until the transmitter 3200 and the first contact part 1241 correspond. Under the action of the elastic force, the rotating member 1240 rotates counterclockwise, causing the first contact part 1241 to be inserted into the transmitter 3200 (at this time, the first contact part 1241 protrudes downward). As the pull member 3000 continues to be inserted, it pushes the first contact part 1241, causing the rotating member 1240 to rotate clockwise, so that the first contact part 1241 is disengaged from the transmitter 3200. Under the action of the elastic force, the first contact part 1241 and the pull member 3000 slide and abut against each other.
[0153] When the puller 3000 is pulled away from the transmitter 1000, the rotating member 1240, under the action of the elastic force, causes the first contact portion 1241 and the puller 3000 to slide and abut against each other until the transmitter 3200 and the first contact portion 1241 correspond. Under the action of the elastic force, the rotating member 1240 rotates counterclockwise, causing the first contact portion 1241 to be engaged in the transmitter 3200 (at this time, the first contact portion 1241 protrudes downward). As the puller 3000 continues to be pulled away, it pushes the first contact portion 1241, causing the rotating member 1240 to rotate counterclockwise so that the first contact portion 1241 is disengaged from the transmitter 3200. During this process, the rotating member 1240 drives the locking member 1220 to unlock the push plate 1210 through the second contact portion 1242. Until the puller 3000 is completely pulled away, under the action of the elastic force, the rotating member 1240 rotates clockwise so that the first contact portion 1241 is reset to protrude downward.
[0154] The fourth aspect of this application discloses a launching toy, combined with Figures 1 to 20 as well as Figures 25 to 26 As shown, the launching toy includes a first accessory 4000 and the aforementioned launcher assembly. The first accessory 4000 is one of a variety of accessories. The first accessory 4000, the handle 2000, and the launcher 1000 are connected to form a sword shape. The first accessory 4000 is adapted to act on the acceleration mechanism 1100 to make the acceleration mechanism 1100 drive the object to be launched 6000 to rotate. The handle 2000 is adapted to act on the launching mechanism 1200 to make the launching mechanism 1200 drive the object to be launched 6000 to launch.
[0155] In this embodiment, the handle 2000 is connected to the rear first connecting part 1300 via the second connecting part 2200. The handle 2000, the launcher 1000, and the first accessory 4000 are arranged in a roughly straight line. The handle 2000 forms the hilt of a sword, and the launcher 1000 and the first accessory 4000 form the blade of a sword. The user can hold the first accessory 4000 with one hand and the handle 2000 with the other. By controlling the first accessory 4000 to act on the acceleration mechanism 1100, the acceleration mechanism 1100 changes and generates a rotational force on the object to be launched 6000, causing the object to be launched 6000 to rotate. By controlling the handle 2000 to act on the launching mechanism 1200, such as through the release mechanism 2100 of the handle 2000, the launching mechanism 1200 changes and generates a launching force on the object to be launched 6000, causing the object to be launched 6000 to be launched.
[0156] The first accessory 4000 acts on the acceleration mechanism 1100 and the handle 2000 acts on the launching mechanism 1200 without interfering with each other. The object to be launched 6000 can be rotated on the launcher 1000 by the first accessory 4000 acting on the acceleration mechanism 1100 alone, or the object to be launched 6000 can be launched and detached from the launcher 1000 by the handle 2000 acting on the launching mechanism 1200 alone. Alternatively, the object to be launched 6000 can be rotated on the launcher 1000 by the first accessory 4000 acting on the acceleration mechanism 1100 alone, and then launched in a rotating state by the handle 2000 acting on the launching mechanism 1200.
[0157] In some embodiments, combined with Figures 27 to 30 As shown, the first component 4000 includes a first slider 4100 and a first clutch gear 4500, and the first slider 4100 is reciprocating.
[0158] When the acceleration mechanism 1100 includes an acceleration gear 1110;
[0159] When the first slider 4100 moves in one of the reciprocating directions, it drives the first clutch gear 4500 to rotate, so that the first clutch gear 4500 rotates to the first engagement position 4610 and is connected to the acceleration gear 1110 for transmission.
[0160] When the first slider 4100 moves in the other direction of the reciprocating motion, it drives the first clutch gear 4500 to rotate in the opposite direction, so that the first clutch gear 4500 rotates to the first disengagement position 4620 and separates from the acceleration gear 1110.
[0161] The reciprocating motion of the first slider 4100 acts on the acceleration gear 1110, causing the acceleration gear 1110 to rotate. In other words, there is a transmission connection between the first slider 4100 and the acceleration gear 1110. The design of the first slider 4100 facilitates user operation to achieve continuous acceleration of the object to be launched 6000. For example, the user holds the handle 2000 with one hand and the first slider 4100 with the other, controlling the first slider 4100 to reciprocate in the back-and-forth direction. This drives the acceleration gear 1110 to rotate. The hand holding the handle 2000 controls the release mechanism 2100, which acts on the launching mechanism 1200, causing the launching mechanism 1200 to launch the object to be launched 6000. In particular, the faster the reciprocating speed of the first slider 4100, the more beneficial it is to the rotational acceleration of the object to be launched 6000. The faster the object to be launched 6000 rotates, the more advantageous it is for competitive combat.
[0162] By setting the first clutch gear 4500, during the reciprocating movement of the first slider 4100, only one direction of the reciprocating movement can drive the acceleration gear 1110 to rotate, while the other direction of the reciprocating movement cannot drive the acceleration gear 1110 to rotate. For example, when the first slider 4100 reciprocates in the front-to-back direction, when the first slider 4100 moves in one of the two directions, front-to-back and back-to-front, it drives the first clutch gear 4500 to rotate to the first engagement position 4610. At this time, the first clutch gear 4500 and the acceleration gear 1110 are connected (they can be directly engaged or indirectly engaged), thus driving the acceleration gear 1110 to rotate. When it moves in the other direction, the first clutch gear 4500 rotates in the opposite direction to the first disengagement position 4620. At this time, the first clutch gear 4500 and the acceleration gear 1110 are disengaged, and thus the rotation of the first clutch gear 4500 cannot drive the acceleration gear 1110 to rotate. Thus, under the action of the first slider 4100 times of reciprocating motion, the acceleration gear 1110 can achieve continuous rotation and acceleration.
[0163] To facilitate the switching between the first engagement position 4610 and the first disengagement position 4620 when the first clutch gear 4500 is driven by the first slider 4100, in some embodiments, combined with Figure 31As shown, the first component 4000 includes a first arc-shaped groove 4600, and a first clutch gear 4500 is rotatably disposed in the first arc-shaped groove 4600. One end of the first arc-shaped groove 4600 forms a first engagement position 4610, and the other end forms a first disengagement position 4620. When rotating, the first clutch gear 4500 can move along the first arc-shaped groove 4600. Since the first slider 4100 can reciprocate, the first clutch gear 4500 has two directions of rotation. When rotating in one direction, the first clutch gear 4500 moves along the first arc-shaped groove 4600 to the first engagement position 4610, and when rotating in the other direction, it moves along the first arc-shaped groove 4600 to the first disengagement position 4620. This arrangement, while ensuring that the first clutch gear 4500 switches between the first engagement position 4610 and the first disengagement position 4620, helps to simplify the structure.
[0164] The first slider 4100 can drive the first clutch gear 4500 to rotate through the following scheme: in some embodiments, combined with... Figure 29 and Figure 30 As shown, the first component 4000 includes a first rack 4300 and a first input gear 4400. The first slider 4100 is connected to the first rack 4300 and can drive the first rack 4300 to reciprocate. The first rack 4300 meshes with the first input gear 4400, and the first input gear 4400 is connected to the first clutch gear 4500 in a transmission connection.
[0165] The first slider 4100 and the first rack 4300 are connected, so that the reciprocating movement of the first slider 4100 drives the reciprocating movement of the first rack 4300. Since the first rack 4300 meshes with the first input gear 4400, it drives the first input gear 4400 to rotate. The first input gear 4400 is connected to the first clutch gear 4500, which can be directly or indirectly meshed. This arrangement facilitates the arrangement of the components. Optionally, the first rack 4300 can be connected to an elastic element such as a tension spring, which provides the force for the first rack 4300 and the first slider 4100 to return to their original positions.
[0166] In some embodiments, combined with Figures 28 to 33As shown, the first accessory 4000 includes a first body portion 4200, which is adapted to connect with the transmitter 1000 via the first body portion 4200. A first slider 4100 is sleeved on the first body portion 4200, and a first rack 4300, a first input gear 4400, and a first clutch gear 4500 are disposed on the first body portion 4200. Since the first slider 4100 needs to reciprocate, the first body portion 4200 provides support for the first slider 4100. The first slider 4100, sleeved on the first body portion 4200, can form a wrap around the first body portion 4200, resulting in stronger overall assembly stability. Furthermore, the first body portion 4200 ensures that the first accessory 4000 and the transmitter 1000 have a certain length after assembly, facilitating the launch of the object 6000 from the transmitter 1000 along the first accessory 4000.
[0167] In some embodiments, combined with Figure 32 and Figure 33 As shown, the first accessory 4000 includes a clutch buckle 4700, the first rack 4300 is provided with a first connecting end 4310, the clutch buckle 4700 is provided on the first slider 4100, and the clutch buckle 4700 is adapted to engage with the first connecting end 4310 when the first slider 4100 is sleeved on the first body part 4200, so as to drive the first rack 4300 to reciprocate.
[0168] The first slider 4100 has a hollow structure, and the clutch buckle 4700 is located inside the first slider 4100. When the first slider 4100 is fitted onto the first body part 4200, as the first slider 4100 is fitted into place, the clutch buckle 4700 and the first connecting end 4310 of the first rack 4300 are fastened together, thus facilitating the assembly of the first slider 4100 and the first body part 4200.
[0169] For example, the clutch buckle 4700 is rotatable and has an abutting slope 4710. As the first slider 4100 is fitted onto the first body part 4200, the abutting slope 4710 abuts against the first connecting end 4310. Based on the action of the abutting slope 4710, the clutch buckle 4700 rotates to avoid the first connecting end 4310 until the first slider 4100 is fitted into place. Then, the clutch buckle 4700 resets under the action of the elastic force and is fastened together with the first connecting end 4310.
[0170] In order to restrict the reciprocating movement of the first slider 4100 and prevent the first slider 4100 from disengaging from the first body part 4200 during the reciprocating movement, in some embodiments, combined with Figure 32 and Figure 33As shown, the first accessory 4000 includes a first limiting mechanism 4800, which is disposed on the first slider 4100. The first limiting mechanism 4800 is adapted to be stopped by the first body part 4200 when the first slider 4100 moves to a preset position in the first direction, so as to prevent the first slider 4100 from falling out of the first body part 4200.
[0171] The preset position is a position pre-set according to the product requirements to prevent the first slider 4100 from disengaging from the first body part 4200 during reciprocating movement. For example, the first direction is defined as the direction from back to front, and the second direction is the direction from front to back. The first slider 4100 is fitted onto the first body part 4200 along the second direction. The first slider 4100 reciprocates along the first and second directions. When the first slider 4100 moves along the first direction until it reaches the preset position, the first limiting mechanism 4800 will be stopped by the first body part 4200. In this way, the first slider 4100 cannot continue to move along the first direction and disengage from the first body part 4200. However, when it moves along the second direction, the first limiting mechanism 4800 will not be stopped by the first body part 4200.
[0172] Specifically, the first body portion 4200 is provided with a slot 4210, and the first limiting mechanism 4800 includes a movable locking tongue 4810. The locking tongue 4810 is adapted to engage with the slot 4210 to be stopped when the first slider 4100 moves to a preset position in a first direction, and is adapted to disengage from the slot 4210 when the first slider 4100 moves in a second direction opposite to the first direction. Through the cooperation of the locking tongue 4810 and the slot 4210, the locking tongue 4810 can engage with the slot 4210 and disengage from the slot 4210. When the first slider 4100 moves in the first direction, the locking tongue 4810 engages with the slot 4210 and is restricted by the slot 4210, thus preventing the first slider 4100 from moving in the first direction and passing the preset position. When the first slider 4100 moves in the second direction, the locking tongue 4810 disengages from the slot 4210 without obstructing the movement of the first slider 4100.
[0173] The locking tongue 4810 can be engaged in the slot 4210 by the following method: the locking tongue 4810 can be engaged in the slot 4210 under the action of elastic force. That is, when the first slider 4100 is moving along the first direction and has not yet moved to the preset position, the locking tongue 4810 slides against the corresponding part of the first body part 4200 under the action of elastic force until the first slider 4100 moves to the preset position. Then, the locking tongue 4810 is engaged in the slot 4210 under the action of elastic force. In this way, the locking tongue 4810 is restricted by the slot 4210, so that the first slider 4100 cannot continue to move along the first direction.
[0174] The locking tongue 4810 can disengage from the slot 4210 through the following scheme: the slot 4210 is provided with a guide slope 4220, and the locking tongue 4810 is adapted to abut against the guide slope 4220 to disengage from the slot 4210 when the first slider 4100 moves in the second direction. That is, when the first slider 4100 moves in the second direction, the locking tongue 4810 will move accordingly, and the locking tongue 4810 abuts against the guide slope 4220. Through the guiding effect of the guide slope 4220, the locking tongue 4810 disengages from the slot 4210.
[0175] In some embodiments, combined with Figure 32 As shown, the first limiting mechanism 4800 includes a fixing plate 4820, which is connected to the first slider 4100 to clamp the locking tongue 4810. For example, the fixing plate 4820 is connected to the inner wall of the first slider 4100, thus clamping the locking tongue 4810 and facilitating the installation of the locking tongue 4810.
[0176] The fifth aspect of this application discloses a launching toy, which in some embodiments combines... Figures 1 to 20 as well as Figures 34 to 35 As shown, the launching toy includes a second accessory 5000 and the aforementioned launcher assembly. The second accessory 5000 is one of many accessories. The second accessory 5000, handle 2000, and launcher 1000 are connected to form a gun shape. The second accessory 5000 is adapted to act on the acceleration mechanism 1100 to make the acceleration mechanism 1100 drive the object to be launched 6000 to rotate. The handle 2000 is adapted to act on the launching mechanism 1200 to make the launching mechanism 1200 drive the object to be launched 6000 to launch.
[0177] In this embodiment, the handle 2000 is connected to the rear first connecting part 1300 via the third connecting part 2300. There is an angle between the handle 2000 and the launcher 1000. The launcher 1000 and the second accessory 5000 are arranged approximately in a straight line. The handle 2000 constitutes a gun handle, and the launcher 1000 and the second accessory 5000 constitute a gun body. The user can hold the second accessory 5000 with one hand and the handle 2000 with the other hand. By controlling the second accessory 5000 to act on the acceleration mechanism 1100, the acceleration mechanism 1100 changes and generates a rotational force on the object to be launched 6000, causing the object to be launched 6000 to rotate. By controlling the handle 2000 to act on the launching mechanism 1200, such as through the release mechanism 2100 of the handle 2000, the launching mechanism 1200 changes and generates a launching force on the object to be launched 6000, causing the object to be launched 6000 to be launched.
[0178] The second accessory 5000 acts on the acceleration mechanism 1100 and the handle 2000 acts on the launching mechanism 1200 without interfering with each other. The object to be launched 6000 can be rotated on the launcher 1000 by the second accessory 5000 acting on the acceleration mechanism 1100 alone, or the object to be launched 6000 can be launched and detached from the launcher 1000 by the handle 2000 acting on the launching mechanism 1200 alone. Alternatively, the object to be launched 6000 can be rotated on the launcher 1000 by the second accessory 5000 acting on the acceleration mechanism 1100 first, and then launched in a rotating state by the handle 2000 acting on the launching mechanism 1200.
[0179] In some embodiments, combined with Figures 36 to 41 As shown, the second component 5000 includes a second slider 5100 and a second clutch gear 5500, and the second slider 5100 is reciprocating.
[0180] When the acceleration mechanism 1100 includes an acceleration gear 1110;
[0181] When the second slider 5100 moves in one of the reciprocating directions, it drives the second clutch gear 5500 to rotate, so that the second clutch gear 5500 rotates to the second engagement position 5610 and is connected to the acceleration gear 1110 for transmission.
[0182] When the second slider 5100 moves in the other direction of the reciprocating motion, it drives the second clutch gear 5500 to rotate in the opposite direction, so that the second clutch gear 5500 rotates to the second disengagement position 5620 and separates from the acceleration gear 1110.
[0183] The reciprocating motion of the second slider 5100 acts on the acceleration gear 1110, causing the acceleration gear 1110 to rotate. In other words, there is a transmission connection between the second slider 5100 and the acceleration gear 1110. The design of the second slider 5100 facilitates user operation to achieve continuous acceleration of the object to be launched 6000. For example, the user holds the handle 2000 with one hand and the second slider 5100 with the other, controlling the second slider 5100 to reciprocate in the back-and-forth direction. This drives the acceleration gear 1110 to rotate. The hand holding the handle 2000 controls the release mechanism 2100, which acts on the launching mechanism 1200, causing the launching mechanism 1200 to launch the object to be launched 6000. In particular, the faster the reciprocating speed of the second slider 5100, the more beneficial it is to the rotational acceleration of the object to be launched 6000. The faster the object to be launched 6000 rotates, the more advantageous it is for competitive combat.
[0184] By setting the second clutch gear 5500, during the reciprocating movement of the second slider 5100, only one direction of the reciprocating movement can drive the acceleration gear 1110 to rotate, while the other direction of the reciprocating movement cannot drive the acceleration gear 1110 to rotate. For example, when the second slider 5100 reciprocates in the front-to-back direction, when the second slider 5100 moves in one of the two directions, front-to-back and back-to-front, it drives the second clutch gear 5500 to rotate to the second engagement position 5610. At this time, the second clutch gear 5500 and the acceleration gear 1110 are connected (they can be directly engaged or indirectly engaged), thus driving the acceleration gear 1110 to rotate. When it moves in the other of the two directions, front-to-back and back-to-front, it drives the second clutch gear 5500 to rotate in the opposite direction to the second disengagement position 5620. At this time, the second clutch gear 5500 and the acceleration gear 1110 are disengaged, and thus the rotation of the second clutch gear 5500 cannot drive the acceleration gear 1110 to rotate. Thus, under the action of the second slider 5100 times of reciprocating motion, the acceleration gear 1110 can achieve continuous rotation and acceleration.
[0185] To facilitate the switching of the second engagement position 5610 and the second disengagement position 5620 when the second clutch gear 5500 is driven by the second slider 5100, in some embodiments, combined with Figure 39 As shown, the second component 5000 includes a second arc-shaped groove 5600, and a second clutch gear 5500 is rotatably disposed in the second arc-shaped groove 5600. One end of the second arc-shaped groove 5600 constitutes a second engagement position 5610, and the other end constitutes a second disengagement position 5620. When rotating, the second clutch gear 5500 can move along the second arc-shaped groove 5600. Since the second slider 5100 can reciprocate, the second clutch gear 5500 has two directions of rotation. When rotating in one direction, the second clutch gear 5500 moves along the second arc-shaped groove 5600 to the second engagement position 5610, and when rotating in the other direction, it moves along the second arc-shaped groove 5600 to the second disengagement position 5620. This arrangement, while ensuring that the second clutch gear 5500 switches between the second engagement position 5610 and the second disengagement position 5620, helps to simplify the structure.
[0186] The second slider 5100 can drive the second clutch gear 5500 to rotate through the following scheme: in some embodiments, combined with... Figure 39 As shown, the second accessory 5000 includes a second rack 5300 and a second input gear 5400. The second slider 5100 is connected to the second rack 5300 and can drive the second rack 5300 to reciprocate. The second rack 5300 meshes with the second input gear 5400, and the second input gear 5400 is connected to the second clutch gear 5500 for transmission.
[0187] The second slider 5100 is connected to the second rack 5300, so that the reciprocating movement of the second slider 5100 drives the reciprocating movement of the second rack 5300. Since the second rack 5300 meshes with the second input gear 5400, it drives the second input gear 5400 to rotate. The second input gear 5400 is connected to the second clutch gear 5500, which can be directly or indirectly meshed. This arrangement facilitates the layout of the components. Optionally, the second rack 5300 can be connected to an elastic element such as a tension spring, which provides the force for the second rack 5300 and the second slider 5100 to return to their original positions.
[0188] In some embodiments, combined with Figure 39 As shown, the second accessory 5000 includes a second body portion 5200 and a second limiting mechanism 5700. The second accessory 5000 is adapted to be connected to the transmitter 1000 through the second body portion 5200. The second slider 5100, the second rack 5300, the second input gear 5400, and the second clutch gear 5500 are disposed on the second body portion 5200. The second limiting mechanism 5700 is disposed on the second body portion 5200 and is adapted to stop the second rack 5300 when the second slider 5100 moves to a preset position in a third direction.
[0189] Since the second slider 5100 needs to reciprocate, the second body 5200 provides support for it. The second slider 5100 partially wraps around the second body 5200 circumferentially, achieving a semi-enclosed state. This makes it easier for the user to hold the second slider 5100 and move it back and forth when the launcher 1000, handle 2000, and second accessory 5000 are connected to form a gun. The third direction can be from back to front, the fourth direction, or from front to back.
[0190] Since the second slider 5100 drives the second rack 5300 to reciprocate, a second limiting mechanism 5700 is provided to limit the reciprocating movement of the second rack 5300. For example, when the second rack 5300 moves from back to front, it will be stopped by the second limiting mechanism 5700. The second limiting mechanism 5700 restricts the reciprocating stroke of the second rack 5300.
[0191] In some embodiments, combined with Figure 37 , Figure 38 and Figure 42As shown, the second accessory 5000 includes an extension portion 5900, which is adapted to connect with the second body portion 5200. When the extension portion 5900 is connected with the second body portion 5200, it drives the second limiting mechanism 5700 to avoid the second rack 5300, so that the second rack 5300 passes over the second limiting mechanism 5700 when the second slider 5100 moves in a third direction.
[0192] The extended portion 5900 is adapted to be detachably connected to the second body portion 5200. The extended portion 5900 can be connected to the second body portion 5200 or detached from the second body portion 5200. When the extended portion 5900 and the second body portion 5200 are detached from each other, due to the stop of the second limiting mechanism 5700, the second rack 5300 can only reciprocate on the second body portion 5200, forming a first reciprocating stroke. After the extended portion 5900 and the second body portion 5200 are connected and fixed together, the extended portion 5900 drives the second limiting mechanism 5700 to avoid the second rack 5300. In this way, the second rack 5300 can reciprocate on the second body portion 5200 and the extended portion 5900, forming a second reciprocating stroke. The second reciprocating stroke is longer than the first reciprocating stroke, that is, the reciprocating stroke of the second slider 5100 is also longer. This is more conducive to accelerating the object 6000 to be launched and improving playability.
[0193] In some embodiments, combined with Figure 42 and Figure 44 As shown, the second limiting mechanism 5700 includes a baffle 5710, and the extension part 5900 includes a push rod 5910. The push rod 5910 is adapted to drive the baffle 5710 to avoid the second rack 5300 when the extension part 5900 and the second body part 5200 are connected.
[0194] In other words, before the extension part 5900 is installed into the second body part 5200, the baffle 5710 is located in the movement path of the second rack 5300, thereby stopping the continued movement of the second rack 5300. When the extension part 5900 is installed into the second body part 5200, the baffle 5710 is moved away from the movement path of the second rack 5300 by the cooperation of the push rod 5910 and the baffle 5710. In this way, the second rack 5300 can pass over the baffle 5710 during reciprocating movement, thereby extending the reciprocating stroke.
[0195] For example, the baffle 5710 can reciprocate linearly, and the push rod 5910 is provided with a push rod inclined surface 5911. When the extension part 5900 is installed on the second body part 5200, the push rod 5910 abuts against the corresponding part of the baffle 5710 through the push rod inclined surface 5911. In this way, a component force that causes the baffle 5710 to move can be generated through the push rod inclined surface 5911. At this time, the direction of movement of the baffle 5710 and the direction of movement of the push rod 5910 intersect, for example, are perpendicular. Of course, the baffle 5710 can also be designed to be rotatable, rotating out of the movement path of the second rack 5300 by the push of the push rod 5910.
[0196] In some embodiments, combined with Figures 42 to 44 As shown, the extension part 5900 includes a power supply module 5920, and the second accessory 5000 includes a power consumption module 5800 disposed on the second body part 5200. The power supply module 5920 and the power consumption module 5800 are adapted to be connected to form a circuit loop when the extension part 5900 and the second body part 5200 are connected. The power consumption module 5800 is adapted to emit light and / or sound when powered on. A switch can be provided on the power supply module 5920 to control the connection and disconnection of the circuit loop. The power consumption module 5800 includes, but is not limited to, a speaker, an LED light, etc., thereby enhancing the functionality and fun of the launching toy.
[0197] For example, one of the power supply module 5920 and the power consumption module 5800 is provided with a pin 5921 and the other is provided with a socket 5810. The pin 5921 is suitable for insertion into the socket 5810, so that the power supply module 5920 and the power consumption module 5800 are connected to form a circuit loop. The setting of the socket 5810 and the pin 5921 facilitates the electrical connection between the power supply module 5920 and the power consumption module 5800.
[0198] The sixth aspect of this application discloses a toy, in some embodiments, combined with Figures 1 to 44 As shown, the toy includes a launch object 6000 and the aforementioned launching toy. The launching toy in this embodiment employs the technical solution of the above-described embodiments, and therefore possesses at least the beneficial effects brought about by the technical solution of the above-described embodiments, which will not be repeated here.
[0199] The above description is merely a preferred embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.
Claims
1. A transmitter (1000), characterized by, The transmitter (1000) is adapted to mount an object to be launched (6000) thereon and is adapted to be detachably connected to at least one of a variety of accessories. The same position of the transmitter (1000) is adapted to be detachably connected to at least two positions of the same accessory. The transmitter (1000) includes an acceleration mechanism (1100) and a launching mechanism (1200). The acceleration mechanism (1100) is adapted to be driven by the accessory to rotate the object to be launched (6000). The launching mechanism (1200) is adapted to be driven by the accessory to launch the object to be launched (6000).
2. The transmitter (1000) according to claim 1, characterized in that The acceleration mechanism (1100) includes an acceleration gear (1110) adapted to mesh with the object to be launched (6000). The acceleration mechanism (1100) is adapted to be driven by the accessory to rotate the acceleration gear (1110). The acceleration gear (1110) is adapted to drive the object to be launched (6000) to rotate when rotating.
3. The transmitter (1000) according to claim 1, characterized by The launching mechanism (1200) includes: A push plate (1210) is provided, wherein the object to be launched (6000) is adapted to move the push plate (1210) when it is installed on the transmitter (1000); The locking member (1220) is adapted to lock the push plate (1210) when the push plate (1210) moves to a preset position, and is adapted to be driven by the accessory to unlock the push plate (1210); When the locking member (1220) unlocks the push plate (1210), the push plate (1210) is adapted to reset under the action of elastic force to drive the object to be launched (6000) to be launched.
4. The transmitter (1000) according to claim 3, characterized by The launching mechanism (1200) includes a push rod (1230) adapted to be driven by the accessory to drive the locking member (1220) to unlock the push plate (1210), the direction of movement of the push rod (1230) intersecting the direction of movement of the locking member (1220).
5. The transmitter (1000) according to claim 3, characterized by The launching mechanism (1200) includes a rotating member (1240) adapted to be driven by the accessory to rotate, so as to abut against the locking member (1220) and drive the locking member (1220) to unlock the push plate (1210). The rotating member (1240) is also adapted to be driven by the accessory to rotate in the opposite direction, so as to separate from the locking member (1220).
6. The transmitter (1000) according to claim 5, characterized by The rotating member (1240) has a first contact portion (1241) and a second contact portion (1242). The first contact portion (1241) is adapted to be driven by the accessory to cause the rotating member (1240) to reciprocate, so that the second contact portion (1242) is adapted to abut against and disengage from the locking member (1220).
7. A transmitter combination, characterized in that Includes a handle (2000) and a transmitter (1000) as described in any one of claims 1 to 6, wherein the handle (2000) is one of the various accessories described.
8. The transmitter combination of claim 7, wherein The transmitter (1000) has a first connecting part (1300), and the handle (2000) has a second connecting part (2200) and a third connecting part (2300). The second connecting part (2200) and the third connecting part (2300) are adapted to be detachably connected to the first connecting part (1300) in one of them, so that the transmitter can be combined to form at least two forms.
9. The transmitter combination of claim 8, wherein, The object to be launched (6000) is adapted to be launched forward from the transmitter (1000). The transmitter (1000) is provided with the first connecting part (1300) on the left, right and rear sides respectively. The second connecting part (2200) is adapted to be detachably connected to any one of the first connecting part (1300) on the left, the first connecting part (1300) on the right and the first connecting part (1300) on the rear side. The third connecting part (2300) is adapted to be detachably connected to the first connecting part (1300) on the rear side.
10. The transmitter combination of claim 7, wherein, The handle (2000) includes a release mechanism (2100) adapted to act on the launching mechanism (1200) via the release mechanism (2100) to cause the launching mechanism (1200) to launch the object to be launched (6000).
11. A launching toy characterized by The assembly includes a pull member (3000) and a launcher as described in any one of claims 7 to 10, wherein the pull member (3000) is one of the various said accessories, the pull member (3000) is adapted to insert into and remove from the launcher (1000), the pull member (3000) is adapted to act on the acceleration mechanism (1100) to cause the acceleration mechanism (1100) to drive the object to be launched (6000) to rotate, and is adapted to act on the launch mechanism (1200) to cause the launch mechanism (1200) to launch the object to be launched (6000).
12. The launching toy of claim 11, wherein, The pulling member (3000) includes an acceleration part (3100) and a launching part (3200). The acceleration part (3100) is adapted to drive the acceleration mechanism (1100) when the pulling member (3000) is inserted into and / or pulled out of the launcher (1000), so that the acceleration mechanism (1100) drives the object to be launched (6000) to rotate. The launching part (3200) is adapted to drive the launching mechanism (1200) when the pulling member (3000) is inserted into and / or pulled out of the launcher (1000), so that the launching mechanism (1200) launches the object to be launched (6000).
13. The launching toy of claim 12, wherein, The pulling member (3000) is adapted to first drive the acceleration mechanism (1100) through the acceleration part (3100) and then drive the launching mechanism (1200) through the launching part (3200) when pulled out; Alternatively, the pulling member (3000) is adapted to drive the acceleration mechanism (1100) first via the acceleration part (3100) and then drive the launching mechanism (1200) via the launching part (3200) during insertion.
14. The launching toy of claim 12, wherein the launching toy is a toy gun. The acceleration unit (3100) is configured as a rack and pinion structure. When the acceleration mechanism (1100) includes an acceleration gear (1110), the acceleration unit (3100) and the acceleration gear (1110) are connected in a transmission manner.
15. The launching toy of claim 12, wherein, The transmitting part (3200) forms a groove structure; When the launching mechanism (1200) includes a push plate (1210), a locking member (1220) and a rotating member (1240), and the rotating member (1240) has a first contact portion (1241) and a second contact portion (1242); The first contact portion (1241) is adapted to sequentially engage and disengage from the launching portion (3200) when the pulling member (3000) moves in one of the directions of insertion and disengagement, so as to rotate the rotating member (1240) and cause the second contact portion (1242) and the locking member (1220) to abut against each other, thereby driving the locking member (1220) to unlock the push plate (1210) and launch the object to be launched (6000); The first contact portion (1241) is adapted to sequentially engage and disengage from the launching portion (3200) when the pulling member (3000) moves in the opposite direction of insertion and disengagement, so that the rotating member (1240) rotates in the opposite direction and the second contact portion (1242) and the locking member (1220) are separated.
16. The launching toy of claim 11, wherein, When the transmitter (1000) is provided with a first connecting part (1300) on the left, right and rear sides respectively, and the handle (2000) is provided with a second connecting part (2200) and a third connecting part (2300), the second connecting part (2200) is adapted to connect to the first connecting part (1300) on one of the left and right sides of the transmitter (1000).
17. A launching toy characterized by The device includes a first accessory (4000) and a launcher assembly as described in any one of claims 7 to 10, wherein the first accessory (4000) is one of a variety of the accessories, and the first accessory (4000), the handle (2000) and the launcher (1000) are connected to form a sword shape. The first accessory (4000) is adapted to act on the acceleration mechanism (1100) to cause the acceleration mechanism (1100) to drive the object to be launched (6000) to rotate, and the handle (2000) is adapted to act on the launching mechanism (1200) to cause the launching mechanism (1200) to drive the object to be launched (6000) to launch.
18. The launching toy of claim 17, wherein, The first component (4000) includes a first slider (4100) and a first clutch gear (4500), wherein the first slider (4100) is reciprocating. When the acceleration mechanism (1100) includes an acceleration gear (1110); When the first slider (4100) moves in one of the reciprocating directions, it drives the first clutch gear (4500) to rotate, so that the first clutch gear (4500) rotates to the first engagement position (4610) and is connected to the acceleration gear (1110) for transmission. When the first slider (4100) moves in the other direction of reciprocating motion, it drives the first clutch gear (4500) to rotate in the opposite direction, so that the first clutch gear (4500) rotates to the first disengagement position (4620) and separates from the acceleration gear (1110).
19. The launching toy of claim 18, wherein, The first accessory (4000) includes a first arc-shaped groove (4600), and the first clutch gear (4500) is rotatably disposed in the first arc-shaped groove (4600). One end of the first arc-shaped groove (4600) constitutes the first engagement position (4610), and the other end constitutes the first disengagement position (4620).
20. The launching toy of claim 18, wherein, The first accessory (4000) includes a first rack (4300) and a first input gear (4400). The first slider (4100) is connected to the first rack (4300) and can drive the first rack (4300) to reciprocate. The first rack (4300) meshes with the first input gear (4400), and the first input gear (4400) is connected to the first clutch gear (4500) in a transmission connection.
21. The launching toy of claim 20, wherein, The first accessory (4000) includes a first body part (4200), the first accessory (4000) is adapted to be connected to the transmitter (1000) through the first body part (4200), the first slider (4100) is sleeved on the first body part (4200), and the first rack (4300), the first input gear (4400) and the first clutch gear (4500) are disposed on the first body part (4200).
22. The launching toy of claim 21, wherein, The first accessory (4000) includes a clutch buckle (4700), the first rack (4300) is provided with a first connecting end (4310), the clutch buckle (4700) is provided on the first slider (4100), and the clutch buckle (4700) is adapted to engage with the first connecting end (4310) when the first slider (4100) is sleeved on the first body part (4200), so as to drive the first rack (4300) to reciprocate.
23. The launching toy as claimed in claim 21, characterized in that, The first accessory (4000) includes a first limiting mechanism (4800), which is disposed on the first slider (4100). The first limiting mechanism (4800) is adapted to be stopped by the first body part (4200) when the first slider (4100) moves to a preset position in a first direction to prevent the first slider (4100) from dislodging from the first body part (4200).
24. The launching toy of claim 23, wherein, The first body part (4200) is provided with a slot (4210), and the first limiting mechanism (4800) includes a movable locking tongue (4810). The locking tongue (4810) is adapted to be stopped by engaging the slot (4210) when the first slider (4100) moves to a preset position along the first direction, and is adapted to disengage from the slot (4210) when the first slider (4100) moves along a second direction opposite to the first direction.
25. The launching toy of claim 17, wherein the toy is a dart. When the transmitter (1000) is provided with a first connecting part (1300) on the left, right and rear sides respectively, and the handle (2000) is provided with a second connecting part (2200) and a third connecting part (2300), the second connecting part (2200) is adapted to connect to the first connecting part (1300) on the rear side of the transmitter (1000).
26. A launching toy, characterized in that, The gun includes a second accessory (5000) and a launcher assembly as described in any one of claims 7 to 10, wherein the second accessory (5000) is one of a variety of the accessories, and the second accessory (5000), the handle (2000) and the launcher (1000) are connected to form a gun. The second accessory (5000) is adapted to act on the acceleration mechanism (1100) to cause the acceleration mechanism (1100) to drive the object to be launched (6000) to rotate, and the handle (2000) is adapted to act on the launching mechanism (1200) to cause the launching mechanism (1200) to drive the object to be launched (6000) to launch.
27. The launching toy as claimed in claim 26, characterized in that, The second component (5000) includes a second slider (5100) and a second clutch gear (5500), the second slider (5100) being reciprocating; When the acceleration mechanism (1100) includes an acceleration gear (1110); The second slider (5100) is adapted to drive the second clutch gear (5500) to rotate when it moves in one of the reciprocating directions, so that the second clutch gear (5500) rotates to the second engagement position (5610) and is connected to the acceleration gear (1110) for transmission. When the second slider (5100) moves in the other direction of reciprocating motion, it drives the second clutch gear (5500) to rotate in the opposite direction, so that the second clutch gear (5500) rotates to the second disengaged position (5620) and separates from the acceleration gear (1110).
28. The launching toy as claimed in claim 27, characterized in that, The second accessory (5000) includes a second arc-shaped groove (5600), and the second clutch gear (5500) is rotatably disposed in the second arc-shaped groove (5600). One end of the second arc-shaped groove (5600) constitutes the second engagement position (5610), and the other end constitutes the second disengagement position (5620).
29. The launching toy as claimed in claim 27, characterized in that, The second accessory (5000) includes a second rack (5300) and a second input gear (5400). The second slider (5100) is connected to the second rack (5300) and can drive the second rack (5300) to reciprocate. The second rack (5300) meshes with the second input gear (5400), and the second input gear (5400) is connected to the second clutch gear (5500) in a transmission connection.
30. The launching toy of claim 29, wherein the toy is a dart. The second accessory (5000) includes: A second body part (5200), a second accessory (5000) adapted to be connected to the transmitter (1000) via the second body part (5200), a second slider (5100), a second rack (5300), a second input gear (5400), and a second clutch gear (5500) disposed on the second body part (5200); and A second limiting mechanism (5700) is provided on the second body part (5200). The second limiting mechanism (5700) is adapted to stop the second rack (5300) when the second slider (5100) moves to a preset position in a third direction.
31. The launching toy as described in claim 30, characterized in that, The second accessory (5000) includes an extension (5900) adapted to connect with the second body part (5200). When the extension (5900) is connected with the second body part (5200), it drives the second limiting mechanism (5700) to avoid the second rack (5300), so that the second rack (5300) passes over the second limiting mechanism (5700) when the second slider (5100) moves in the third direction.
32. The launching toy of claim 31, wherein the toy is a dart. The second limiting mechanism (5700) includes a baffle (5710), and the extended portion (5900) includes a push rod (5910). The push rod (5910) is adapted to drive the baffle (5710) to avoid the second rack (5300) when the extended portion (5900) and the second body portion (5200) are connected.
33. The launching toy as described in claim 31, characterized in that, The extended portion (5900) includes a power supply module (5920), and the second accessory (5000) includes a power consumption module (5800) disposed on the second body portion (5200). The power supply module (5920) and the power consumption module (5800) are adapted to be connected to form a circuit loop when the extended portion (5900) and the second body portion (5200) are connected. The power consumption module (5800) is adapted to emit light and / or sound when energized.
34. The launching toy as described in claim 33, characterized in that, One of the power supply module (5920) and the power consumption module (5800) is provided with a pin (5921) and the other is provided with a socket (5810), the pin (5921) being adapted to be inserted into the socket (5810).
35. The launching toy as described in claim 26, characterized in that, When the transmitter (1000) is provided with a first connecting part (1300) on the left, right and rear sides respectively, and the handle (2000) is provided with a second connecting part (2200) and a third connecting part (2300), the third connecting part (2300) is adapted to connect to the first connecting part (1300) on the rear side of the transmitter (1000).
36. A toy, characterized in that, Includes the object to be launched (6000) and the launching toy as described in any one of claims 11 to 35.